rename 2DHoneycomb and 2DLattice to LateralHoneycomb and LateralLattice (#10423)
* rename 2DHoneycomb and 2DLattice to LateralHoneycomb and LateralLattice * more renaming
This commit is contained in:
@@ -10771,10 +10771,10 @@ msgstr ""
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msgid "3D Honeycomb"
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msgstr ""
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr ""
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msgid "Cross Hatch"
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@@ -10789,19 +10789,19 @@ msgstr ""
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msgid "Gyroid"
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msgstr ""
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr ""
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr ""
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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@@ -12286,10 +12286,10 @@ msgstr "Panal d'abella"
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msgid "3D Honeycomb"
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msgstr "Panal d'abella 3D"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr "Gelosia 2D"
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msgid "Cross Hatch"
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@@ -12304,21 +12304,21 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Giroide"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr "Angle de gelosia 1"
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"L'angle del primer conjunt d'elements de gelosia 2D en la direcció Z. El "
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"zero és vertical."
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr "Angle de gelosia 2"
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"L'angle del segon conjunt d'elements de gelosia 2D en la direcció Z. El zero "
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@@ -11509,10 +11509,10 @@ msgstr "Plástev"
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msgid "3D Honeycomb"
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msgstr "3D Plástev"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr ""
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msgid "Cross Hatch"
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@@ -11527,19 +11527,19 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Gyroid"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr ""
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr ""
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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@@ -12433,10 +12433,10 @@ msgstr "Bienenwabe"
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msgid "3D Honeycomb"
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msgstr "3D-Waben"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr "2D-Waben"
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr "2D-Gitter"
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msgid "Cross Hatch"
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@@ -12451,21 +12451,21 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Gyroid"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr "Gitterwinkel 1"
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"Der Winkel des ersten Satzes von 2D-Gitterelementen in der Z-Richtung. Null "
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"ist vertikal."
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr "Gitterwinkel 2"
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"Der Winkel des zweiten Satzes von 2D-Gitterelementen in der Z-Richtung. Null "
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@@ -11061,10 +11061,10 @@ msgstr ""
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msgid "3D Honeycomb"
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msgstr ""
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr ""
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msgid "Cross Hatch"
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@@ -11079,19 +11079,19 @@ msgstr ""
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msgid "Gyroid"
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msgstr ""
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr ""
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr ""
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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@@ -12200,10 +12200,10 @@ msgstr "Panal de abeja"
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msgid "3D Honeycomb"
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msgstr "Panal 3D"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr ""
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msgid "Cross Hatch"
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@@ -12218,19 +12218,19 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Giroide"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr ""
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr ""
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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@@ -12444,10 +12444,10 @@ msgstr "Nid d'abeille"
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msgid "3D Honeycomb"
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msgstr "Nid d'abeille 3D"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr "Treillis 2D"
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msgid "Cross Hatch"
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@@ -12462,21 +12462,21 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Gyroïde"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr "Angle de treillis 1"
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"Angle du premier ensemble d’éléments de treillis 2D dans la direction Z. "
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"Zéro correspond à la verticale."
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr "Angle de treillis 2"
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"Angle de la deuxième série d’éléments de treillis 2D dans la direction Z. "
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@@ -11377,10 +11377,10 @@ msgstr "Méhsejt"
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msgid "3D Honeycomb"
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msgstr "3D-méhsejt"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr ""
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msgid "Cross Hatch"
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@@ -11395,19 +11395,19 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Gyroid"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr ""
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr ""
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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@@ -12359,10 +12359,10 @@ msgstr "Nido d'ape"
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msgid "3D Honeycomb"
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msgstr "Nido d'ape 3D"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr "Reticolo 2D"
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msgid "Cross Hatch"
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@@ -12377,21 +12377,21 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Giroide"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr "Angolo reticolo 1"
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"L'angolo della prima serie di elementi reticolari 2D nell'asse Z. Zero è "
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"verticale."
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr "Angolo reticolo 2"
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"L'angolo della seconda serie di elementi reticolari 2D nell'asse Z. Zero è "
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@@ -11112,10 +11112,10 @@ msgstr "ハニカム"
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msgid "3D Honeycomb"
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msgstr "3D ハニカム"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr ""
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msgid "Cross Hatch"
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@@ -11130,19 +11130,19 @@ msgstr ""
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msgid "Gyroid"
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msgstr "ジャイロイド"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr ""
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr ""
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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@@ -11780,10 +11780,10 @@ msgstr "벌집"
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msgid "3D Honeycomb"
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msgstr "3D 벌집"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr "2D 격자"
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msgid "Cross Hatch"
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@@ -11798,19 +11798,19 @@ msgstr ""
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msgid "Gyroid"
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msgstr "자이로이드"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr "격자 각도 1"
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr "Z 방향의 첫 번째 2D 격자 요소 집합의 각도입니다. 0은 수직입니다."
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr "격자 각도 2"
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr "Z 방향에서 두 번째 2D 격자 요소 세트의 각도입니다. 0은 수직입니다."
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@@ -12159,10 +12159,10 @@ msgstr "Korys"
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msgid "3D Honeycomb"
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msgstr "3D korys"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr "2D grotelės"
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msgid "Cross Hatch"
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@@ -12177,21 +12177,21 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Giroidas"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr "Rašto kampas 1"
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"Pirmojo 2D grotelių elementų rinkinio kampas Z kryptimi. Nulis yra "
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"vertikalus."
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr "Rašto kampas 2"
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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"Antrojo 2D grotelių elementų rinkinio kampas Z kryptimi. Nulis yra "
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@@ -11548,10 +11548,10 @@ msgstr "Honinggraad"
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msgid "3D Honeycomb"
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msgstr "3D Honingraat"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr ""
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msgid "Cross Hatch"
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@@ -11566,19 +11566,19 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Gyroide"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr ""
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msgid ""
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"The angle of the first set of 2D lattice elements in the Z direction. Zero "
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"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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msgid "Lattice angle 2"
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msgid "Lateral lattice angle 2"
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msgstr ""
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msgid ""
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"The angle of the second set of 2D lattice elements in the Z direction. Zero "
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"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
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"is vertical."
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msgstr ""
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@@ -12210,10 +12210,10 @@ msgstr "Plaster miodu"
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msgid "3D Honeycomb"
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msgstr "Plaster miodu 3D"
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msgid "2D Honeycomb"
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msgid "Lateral Honeycomb"
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msgstr ""
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msgid "2D Lattice"
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msgid "Lateral Lattice"
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msgstr "Siatka 2D"
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msgid "Cross Hatch"
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@@ -12228,21 +12228,21 @@ msgstr ""
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msgid "Gyroid"
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msgstr "Gyroidalny"
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msgid "Lattice angle 1"
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msgid "Lateral lattice angle 1"
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msgstr "Kąt siatki 1"
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msgid ""
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||||
"The angle of the first set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
"Kąt nachylenia pierwszej linii dla wzorca wypełnienia „siatka 2D” względem "
|
||||
"osi Z. Zero oznacza pionową."
|
||||
|
||||
msgid "Lattice angle 2"
|
||||
msgid "Lateral lattice angle 2"
|
||||
msgstr "Kąt siatki 2"
|
||||
|
||||
msgid ""
|
||||
"The angle of the second set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
"Kąt nachylenia drugiej linii dla wzorca wypełnienia \"2D siatka\" względem "
|
||||
|
||||
@@ -12250,10 +12250,10 @@ msgstr "Favo de Mel"
|
||||
msgid "3D Honeycomb"
|
||||
msgstr "Favo de Mel 3D"
|
||||
|
||||
msgid "2D Honeycomb"
|
||||
msgid "Lateral Honeycomb"
|
||||
msgstr ""
|
||||
|
||||
msgid "2D Lattice"
|
||||
msgid "Lateral Lattice"
|
||||
msgstr "Treliça 2D"
|
||||
|
||||
msgid "Cross Hatch"
|
||||
@@ -12268,21 +12268,21 @@ msgstr ""
|
||||
msgid "Gyroid"
|
||||
msgstr "Giroide"
|
||||
|
||||
msgid "Lattice angle 1"
|
||||
msgid "Lateral lattice angle 1"
|
||||
msgstr "Ângulo de treliça 1"
|
||||
|
||||
msgid ""
|
||||
"The angle of the first set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
"O ângulo do primeiro conjunto de elementos de treliça 2D na direção Z. Zero "
|
||||
"é vertical."
|
||||
|
||||
msgid "Lattice angle 2"
|
||||
msgid "Lateral lattice angle 2"
|
||||
msgstr "Ângulo de treliça 2"
|
||||
|
||||
msgid ""
|
||||
"The angle of the second set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
"O ângulo do segundo conjunto de elementos de treliça 2D na direção Z. Zero é "
|
||||
|
||||
@@ -12413,10 +12413,10 @@ msgstr "Соты"
|
||||
msgid "3D Honeycomb"
|
||||
msgstr "3D соты"
|
||||
|
||||
msgid "2D Honeycomb"
|
||||
msgid "Lateral Honeycomb"
|
||||
msgstr ""
|
||||
|
||||
msgid "2D Lattice"
|
||||
msgid "Lateral Lattice"
|
||||
msgstr "2D решётка"
|
||||
|
||||
msgid "Cross Hatch"
|
||||
@@ -12431,21 +12431,21 @@ msgstr ""
|
||||
msgid "Gyroid"
|
||||
msgstr "Гироид"
|
||||
|
||||
msgid "Lattice angle 1"
|
||||
msgid "Lateral lattice angle 1"
|
||||
msgstr "Угол №1 (2D решётка)"
|
||||
|
||||
msgid ""
|
||||
"The angle of the first set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
"Угол наклона первой линии для шаблона заполнения «2D решётка» относительно "
|
||||
"вертикальной оси Z (0 - вертикально)."
|
||||
|
||||
msgid "Lattice angle 2"
|
||||
msgid "Lateral lattice angle 2"
|
||||
msgstr "Угол №2 (2D решётка)"
|
||||
|
||||
msgid ""
|
||||
"The angle of the second set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
"Угол наклона второй линии для шаблона заполнения «2D решётка» относительно "
|
||||
|
||||
@@ -11320,10 +11320,10 @@ msgstr "Honeycomb"
|
||||
msgid "3D Honeycomb"
|
||||
msgstr "3D Honeycomb"
|
||||
|
||||
msgid "2D Honeycomb"
|
||||
msgid "Lateral Honeycomb"
|
||||
msgstr ""
|
||||
|
||||
msgid "2D Lattice"
|
||||
msgid "Lateral Lattice"
|
||||
msgstr ""
|
||||
|
||||
msgid "Cross Hatch"
|
||||
@@ -11338,19 +11338,19 @@ msgstr ""
|
||||
msgid "Gyroid"
|
||||
msgstr "Gyroid"
|
||||
|
||||
msgid "Lattice angle 1"
|
||||
msgid "Lateral lattice angle 1"
|
||||
msgstr ""
|
||||
|
||||
msgid ""
|
||||
"The angle of the first set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
|
||||
msgid "Lattice angle 2"
|
||||
msgid "Lateral lattice angle 2"
|
||||
msgstr ""
|
||||
|
||||
msgid ""
|
||||
"The angle of the second set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
|
||||
|
||||
@@ -12080,10 +12080,10 @@ msgstr "Petek"
|
||||
msgid "3D Honeycomb"
|
||||
msgstr "3D petek"
|
||||
|
||||
msgid "2D Honeycomb"
|
||||
msgid "Lateral Honeycomb"
|
||||
msgstr "2D petek"
|
||||
|
||||
msgid "2D Lattice"
|
||||
msgid "Lateral Lattice"
|
||||
msgstr "2D Kafes"
|
||||
|
||||
msgid "Cross Hatch"
|
||||
@@ -12098,20 +12098,20 @@ msgstr "Tpms-fk"
|
||||
msgid "Gyroid"
|
||||
msgstr "Jiroid"
|
||||
|
||||
msgid "Lattice angle 1"
|
||||
msgid "Lateral lattice angle 1"
|
||||
msgstr "Kafes açısı 1"
|
||||
|
||||
msgid ""
|
||||
"The angle of the first set of 2D lattice elements in the Z direction. Zero is "
|
||||
"The angle of the first set of Lateral lattice elements in the Z direction. Zero is "
|
||||
"vertical."
|
||||
msgstr ""
|
||||
"İlk 2 boyutlu kafes elemanları grubunun Z yönündeki açısı. Sıfır dikeydir."
|
||||
|
||||
msgid "Lattice angle 2"
|
||||
msgid "Lateral lattice angle 2"
|
||||
msgstr "Kafes açısı 2"
|
||||
|
||||
msgid ""
|
||||
"The angle of the second set of 2D lattice elements in the Z direction. Zero is "
|
||||
"The angle of the second set of Lateral lattice elements in the Z direction. Zero is "
|
||||
"vertical."
|
||||
msgstr ""
|
||||
"İkinci 2 boyutlu kafes elemanları grubunun Z yönündeki açısı. Sıfır dikeydir."
|
||||
|
||||
@@ -12215,10 +12215,10 @@ msgstr "Медові стільники"
|
||||
msgid "3D Honeycomb"
|
||||
msgstr "3D медові стільники"
|
||||
|
||||
msgid "2D Honeycomb"
|
||||
msgid "Lateral Honeycomb"
|
||||
msgstr ""
|
||||
|
||||
msgid "2D Lattice"
|
||||
msgid "Lateral Lattice"
|
||||
msgstr "2D Решітка"
|
||||
|
||||
msgid "Cross Hatch"
|
||||
@@ -12233,21 +12233,21 @@ msgstr ""
|
||||
msgid "Gyroid"
|
||||
msgstr "Гіроїд"
|
||||
|
||||
msgid "Lattice angle 1"
|
||||
msgid "Lateral lattice angle 1"
|
||||
msgstr "Кут решітки 1"
|
||||
|
||||
msgid ""
|
||||
"The angle of the first set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
"Кут першого набору 2D-решіткових елементів у напрямку Z. Нуль означає "
|
||||
"вертикальне розташування."
|
||||
|
||||
msgid "Lattice angle 2"
|
||||
msgid "Lateral lattice angle 2"
|
||||
msgstr "Кут решітки 1"
|
||||
|
||||
msgid ""
|
||||
"The angle of the second set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr ""
|
||||
"Кут другого набору 2D-решіткових елементів у напрямку Z. Нуль означає "
|
||||
|
||||
@@ -11223,10 +11223,10 @@ msgstr "蜂窝"
|
||||
msgid "3D Honeycomb"
|
||||
msgstr "3D 蜂窝"
|
||||
|
||||
msgid "2D Honeycomb"
|
||||
msgid "Lateral Honeycomb"
|
||||
msgstr ""
|
||||
|
||||
msgid "2D Lattice"
|
||||
msgid "Lateral Lattice"
|
||||
msgstr ""
|
||||
|
||||
msgid "Cross Hatch"
|
||||
@@ -11241,19 +11241,19 @@ msgstr ""
|
||||
msgid "Gyroid"
|
||||
msgstr "螺旋体"
|
||||
|
||||
msgid "Lattice angle 1"
|
||||
msgid "Lateral lattice angle 1"
|
||||
msgstr ""
|
||||
|
||||
msgid ""
|
||||
"The angle of the first set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr "第一组二维晶格单元在Z方向的角度。零表示垂直。"
|
||||
|
||||
msgid "Lattice angle 2"
|
||||
msgid "Lateral lattice angle 2"
|
||||
msgstr ""
|
||||
|
||||
msgid ""
|
||||
"The angle of the second set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr "第二组二维晶格单元在Z方向的角度。零表示垂直。"
|
||||
|
||||
|
||||
@@ -11412,10 +11412,10 @@ msgstr "蜂窩"
|
||||
msgid "3D Honeycomb"
|
||||
msgstr "3D 蜂窩"
|
||||
|
||||
msgid "2D Honeycomb"
|
||||
msgid "Lateral Honeycomb"
|
||||
msgstr ""
|
||||
|
||||
msgid "2D Lattice"
|
||||
msgid "Lateral Lattice"
|
||||
msgstr "2D 網格結構"
|
||||
|
||||
msgid "Cross Hatch"
|
||||
@@ -11430,19 +11430,19 @@ msgstr ""
|
||||
msgid "Gyroid"
|
||||
msgstr "螺旋體"
|
||||
|
||||
msgid "Lattice angle 1"
|
||||
msgid "Lateral lattice angle 1"
|
||||
msgstr "網格結構角度 1"
|
||||
|
||||
msgid ""
|
||||
"The angle of the first set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the first set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr "Z 軸方向第一組 2D 網格結構的角度,0° 表示垂直方向。"
|
||||
|
||||
msgid "Lattice angle 2"
|
||||
msgid "Lateral lattice angle 2"
|
||||
msgstr "網格結構角度 2"
|
||||
|
||||
msgid ""
|
||||
"The angle of the second set of 2D lattice elements in the Z direction. Zero "
|
||||
"The angle of the second set of Lateral lattice elements in the Z direction. Zero "
|
||||
"is vertical."
|
||||
msgstr "Z 軸方向第二組 2D 網格結構的角度,0° 表示垂直方向。"
|
||||
|
||||
|
||||
|
Before Width: | Height: | Size: 1.1 KiB After Width: | Height: | Size: 1.1 KiB |
|
Before Width: | Height: | Size: 852 B After Width: | Height: | Size: 852 B |
@@ -68,13 +68,13 @@ struct SurfaceFillParams
|
||||
float solid_infill_speed = 0;
|
||||
|
||||
// Params for lattice infill angles
|
||||
float lattice_angle_1 = 0.f;
|
||||
float lattice_angle_2 = 0.f;
|
||||
float lateral_lattice_angle_1 = 0.f;
|
||||
float lateral_lattice_angle_2 = 0.f;
|
||||
float infill_lock_depth = 0;
|
||||
float skin_infill_depth = 0;
|
||||
bool symmetric_infill_y_axis = false;
|
||||
|
||||
// Params for 2D honeycomb
|
||||
// Params for Lateral honeycomb
|
||||
float infill_overhang_angle = 60.f;
|
||||
|
||||
bool operator<(const SurfaceFillParams &rhs) const {
|
||||
@@ -103,8 +103,8 @@ struct SurfaceFillParams
|
||||
RETURN_COMPARE_NON_EQUAL(sparse_infill_speed);
|
||||
RETURN_COMPARE_NON_EQUAL(top_surface_speed);
|
||||
RETURN_COMPARE_NON_EQUAL(solid_infill_speed);
|
||||
RETURN_COMPARE_NON_EQUAL(lattice_angle_1);
|
||||
RETURN_COMPARE_NON_EQUAL(lattice_angle_2);
|
||||
RETURN_COMPARE_NON_EQUAL(lateral_lattice_angle_1);
|
||||
RETURN_COMPARE_NON_EQUAL(lateral_lattice_angle_2);
|
||||
RETURN_COMPARE_NON_EQUAL(symmetric_infill_y_axis);
|
||||
RETURN_COMPARE_NON_EQUAL(infill_lock_depth);
|
||||
RETURN_COMPARE_NON_EQUAL(skin_infill_depth); RETURN_COMPARE_NON_EQUAL(infill_overhang_angle);
|
||||
@@ -130,8 +130,8 @@ struct SurfaceFillParams
|
||||
this->sparse_infill_speed == rhs.sparse_infill_speed &&
|
||||
this->top_surface_speed == rhs.top_surface_speed &&
|
||||
this->solid_infill_speed == rhs.solid_infill_speed &&
|
||||
this->lattice_angle_1 == rhs.lattice_angle_1 &&
|
||||
this->lattice_angle_2 == rhs.lattice_angle_2 &&
|
||||
this->lateral_lattice_angle_1 == rhs.lateral_lattice_angle_1 &&
|
||||
this->lateral_lattice_angle_2 == rhs.lateral_lattice_angle_2 &&
|
||||
this->infill_lock_depth == rhs.infill_lock_depth &&
|
||||
this->skin_infill_depth == rhs.skin_infill_depth &&
|
||||
this->infill_overhang_angle == rhs.infill_overhang_angle;
|
||||
@@ -653,8 +653,8 @@ std::vector<SurfaceFill> group_fills(const Layer &layer, LockRegionParam &lock_p
|
||||
params.pattern = region_config.sparse_infill_pattern.value;
|
||||
params.density = float(region_config.sparse_infill_density);
|
||||
params.multiline = int(region_config.fill_multiline);
|
||||
params.lattice_angle_1 = region_config.lattice_angle_1;
|
||||
params.lattice_angle_2 = region_config.lattice_angle_2;
|
||||
params.lateral_lattice_angle_1 = region_config.lateral_lattice_angle_1;
|
||||
params.lateral_lattice_angle_2 = region_config.lateral_lattice_angle_2;
|
||||
params.infill_overhang_angle = region_config.infill_overhang_angle;
|
||||
params.angle = 0.;
|
||||
if (params.pattern == ipLockedZag) {
|
||||
@@ -1041,8 +1041,8 @@ void Layer::make_fills(FillAdaptive::Octree* adaptive_fill_octree, FillAdaptive:
|
||||
params.resolution = resolution;
|
||||
params.use_arachne = surface_fill.params.pattern == ipConcentric || surface_fill.params.pattern == ipConcentricInternal;
|
||||
params.layer_height = layerm->layer()->height;
|
||||
params.lattice_angle_1 = surface_fill.params.lattice_angle_1;
|
||||
params.lattice_angle_2 = surface_fill.params.lattice_angle_2;
|
||||
params.lateral_lattice_angle_1 = surface_fill.params.lateral_lattice_angle_1;
|
||||
params.lateral_lattice_angle_2 = surface_fill.params.lateral_lattice_angle_2;
|
||||
params.infill_overhang_angle = surface_fill.params.infill_overhang_angle;
|
||||
|
||||
// BBS
|
||||
@@ -1320,14 +1320,14 @@ Polylines Layer::generate_sparse_infill_polylines_for_anchoring(FillAdaptive::Oc
|
||||
case ipMonotonicLine:
|
||||
case ipAlignedRectilinear:
|
||||
case ipGrid:
|
||||
case ip2DLattice:
|
||||
case ipLateralLattice:
|
||||
case ipTriangles:
|
||||
case ipStars:
|
||||
case ipCubic:
|
||||
case ipLine:
|
||||
case ipConcentric:
|
||||
case ipHoneycomb:
|
||||
case ip2DHoneycomb:
|
||||
case ipLateralHoneycomb:
|
||||
case ip3DHoneycomb:
|
||||
case ipGyroid:
|
||||
case ipTpmsD:
|
||||
@@ -1381,8 +1381,8 @@ Polylines Layer::generate_sparse_infill_polylines_for_anchoring(FillAdaptive::Oc
|
||||
params.resolution = resolution;
|
||||
params.use_arachne = false;
|
||||
params.layer_height = layerm.layer()->height;
|
||||
params.lattice_angle_1 = surface_fill.params.lattice_angle_1;
|
||||
params.lattice_angle_2 = surface_fill.params.lattice_angle_2;
|
||||
params.lateral_lattice_angle_1 = surface_fill.params.lateral_lattice_angle_1;
|
||||
params.lateral_lattice_angle_2 = surface_fill.params.lateral_lattice_angle_2;
|
||||
params.infill_overhang_angle = surface_fill.params.infill_overhang_angle;
|
||||
params.multiline = surface_fill.params.multiline;
|
||||
|
||||
|
||||
@@ -41,7 +41,7 @@ Fill* Fill::new_from_type(const InfillPattern type)
|
||||
switch (type) {
|
||||
case ipConcentric: return new FillConcentric();
|
||||
case ipHoneycomb: return new FillHoneycomb();
|
||||
case ip2DHoneycomb: return new Fill2DHoneycomb();
|
||||
case ipLateralHoneycomb: return new FillLateralHoneycomb();
|
||||
case ip3DHoneycomb: return new Fill3DHoneycomb();
|
||||
case ipGyroid: return new FillGyroid();
|
||||
case ipTpmsD: return new FillTpmsD();//from creality print
|
||||
@@ -52,7 +52,7 @@ Fill* Fill::new_from_type(const InfillPattern type)
|
||||
case ipMonotonic: return new FillMonotonic();
|
||||
case ipLine: return new FillLine();
|
||||
case ipGrid: return new FillGrid();
|
||||
case ip2DLattice: return new Fill2DLattice();
|
||||
case ipLateralLattice: return new FillLateralLattice();
|
||||
case ipTriangles: return new FillTriangles();
|
||||
case ipStars: return new FillStars();
|
||||
case ipCubic: return new FillCubic();
|
||||
|
||||
@@ -79,12 +79,12 @@ struct FillParams
|
||||
// Layer height for Concentric infill with Arachne.
|
||||
coordf_t layer_height { 0.f };
|
||||
|
||||
// For 2D lattice
|
||||
coordf_t lattice_angle_1 { 0.f };
|
||||
coordf_t lattice_angle_2 { 0.f };
|
||||
// For Lateral lattice
|
||||
coordf_t lateral_lattice_angle_1 { 0.f };
|
||||
coordf_t lateral_lattice_angle_2 { 0.f };
|
||||
InfillPattern pattern{ ipRectilinear };
|
||||
|
||||
// For 2D Honeycomb
|
||||
// For Lateral Honeycomb
|
||||
float infill_overhang_angle { 60 };
|
||||
|
||||
// BBS
|
||||
|
||||
@@ -3025,7 +3025,7 @@ bool FillRectilinear::fill_surface_by_multilines(const Surface *surface, FillPar
|
||||
}
|
||||
}
|
||||
|
||||
if ((params.pattern == ip2DLattice || params.pattern == ip2DHoneycomb ) && params.multiline >1 )
|
||||
if ((params.pattern == ipLateralLattice || params.pattern == ipLateralHoneycomb ) && params.multiline >1 )
|
||||
remove_overlapped(fill_lines, line_width);
|
||||
|
||||
if (!fill_lines.empty()) {
|
||||
@@ -3090,16 +3090,16 @@ Polylines FillGrid::fill_surface(const Surface *surface, const FillParams ¶m
|
||||
return polylines_out;
|
||||
}
|
||||
|
||||
Polylines Fill2DLattice::fill_surface(const Surface *surface, const FillParams ¶ms)
|
||||
Polylines FillLateralLattice::fill_surface(const Surface *surface, const FillParams ¶ms)
|
||||
{
|
||||
Polylines polylines_out;
|
||||
coordf_t dx1 = tan(Geometry::deg2rad(params.lattice_angle_1)) * z;
|
||||
coordf_t dx2 = tan(Geometry::deg2rad(params.lattice_angle_2)) * z;
|
||||
coordf_t dx1 = tan(Geometry::deg2rad(params.lateral_lattice_angle_1)) * z;
|
||||
coordf_t dx2 = tan(Geometry::deg2rad(params.lateral_lattice_angle_2)) * z;
|
||||
if (! this->fill_surface_by_multilines(
|
||||
surface, params,
|
||||
{ { float(M_PI / 2.), float(dx1) }, { float(M_PI / 2.), float(dx2) } },
|
||||
polylines_out))
|
||||
BOOST_LOG_TRIVIAL(error) << "Fill2DLattice::fill_surface() failed to fill a region.";
|
||||
BOOST_LOG_TRIVIAL(error) << "FillLateralLattice::fill_surface() failed to fill a region.";
|
||||
|
||||
if (this->layer_id % 2 == 1)
|
||||
for (int i = 0; i < polylines_out.size(); i++)
|
||||
@@ -3172,9 +3172,9 @@ Polylines FillQuarterCubic::fill_surface(const Surface* surface, const FillParam
|
||||
return polylines_out;
|
||||
}
|
||||
|
||||
Polylines Fill2DHoneycomb::fill_surface(const Surface *surface, const FillParams ¶ms)
|
||||
Polylines FillLateralHoneycomb::fill_surface(const Surface *surface, const FillParams ¶ms)
|
||||
{
|
||||
// the 2D honeycomb is generated based on a base pattern of an inverted Y with its junction at height zero
|
||||
// the lateral honeycomb is generated based on a base pattern of an inverted Y with its junction at height zero
|
||||
// |
|
||||
// |
|
||||
// 0 --+--
|
||||
@@ -3211,7 +3211,7 @@ Polylines Fill2DHoneycomb::fill_surface(const Surface *surface, const FillParams
|
||||
surface, multiline_params,
|
||||
{ { half_pi, horizontal_offset } },
|
||||
polylines_out))
|
||||
BOOST_LOG_TRIVIAL(error) << "Fill2DHoneycomb::fill_surface() failed to fill a region.";
|
||||
BOOST_LOG_TRIVIAL(error) << "FillLateralHoneycomb::fill_surface() failed to fill a region.";
|
||||
} else {
|
||||
FillParams multiline_params = params;
|
||||
multiline_params.density *= 2 / (1*(2/3.) + 2*(1/3.));
|
||||
@@ -3222,7 +3222,7 @@ Polylines Fill2DHoneycomb::fill_surface(const Surface *surface, const FillParams
|
||||
surface, multiline_params,
|
||||
{ { half_pi, -horizontal_position + horizontal_offset }, { half_pi, horizontal_position + horizontal_offset } },
|
||||
polylines_out))
|
||||
BOOST_LOG_TRIVIAL(error) << "Fill2DHoneycomb::fill_surface() failed to fill a region.";
|
||||
BOOST_LOG_TRIVIAL(error) << "FillLateralHoneycomb::fill_surface() failed to fill a region.";
|
||||
}
|
||||
|
||||
if (this->layer_id % 2 == 1)
|
||||
|
||||
@@ -76,11 +76,11 @@ protected:
|
||||
float _layer_angle(size_t idx) const override { return 0.f; }
|
||||
};
|
||||
|
||||
class Fill2DLattice : public FillRectilinear
|
||||
class FillLateralLattice : public FillRectilinear
|
||||
{
|
||||
public:
|
||||
Fill* clone() const override { return new Fill2DLattice(*this); }
|
||||
~Fill2DLattice() override = default;
|
||||
Fill* clone() const override { return new FillLateralLattice(*this); }
|
||||
~FillLateralLattice() override = default;
|
||||
Polylines fill_surface(const Surface *surface, const FillParams ¶ms) override;
|
||||
|
||||
protected:
|
||||
@@ -140,11 +140,11 @@ protected:
|
||||
float _layer_angle(size_t idx) const override { return 0.f; }
|
||||
};
|
||||
|
||||
class Fill2DHoneycomb : public FillAlignedRectilinear
|
||||
class FillLateralHoneycomb : public FillAlignedRectilinear
|
||||
{
|
||||
public:
|
||||
Fill* clone() const override { return new Fill2DHoneycomb(*this); }
|
||||
~Fill2DHoneycomb() override = default;
|
||||
Fill* clone() const override { return new FillLateralHoneycomb(*this); }
|
||||
~FillLateralHoneycomb() override = default;
|
||||
Polylines fill_surface(const Surface *surface, const FillParams ¶ms) override;
|
||||
};
|
||||
|
||||
|
||||
@@ -396,13 +396,13 @@ coordf_t Layer::get_sparse_infill_max_void_area()
|
||||
case ipAlignedRectilinear:
|
||||
case ipOctagramSpiral:
|
||||
case ipHilbertCurve:
|
||||
case ip2DHoneycomb:
|
||||
case ipLateralHoneycomb:
|
||||
case ip3DHoneycomb:
|
||||
case ipArchimedeanChords:
|
||||
max_void_area = std::max(max_void_area, spacing * spacing);
|
||||
break;
|
||||
case ipGrid:
|
||||
case ip2DLattice:
|
||||
case ipLateralLattice:
|
||||
case ipHoneycomb:
|
||||
case ipLightning:
|
||||
max_void_area = std::max(max_void_area, 4.0 * spacing * spacing);
|
||||
|
||||
@@ -792,7 +792,7 @@ static std::vector<std::string> s_Preset_print_options {
|
||||
"layer_height", "initial_layer_print_height", "wall_loops", "alternate_extra_wall", "slice_closing_radius", "spiral_mode", "spiral_mode_smooth", "spiral_mode_max_xy_smoothing", "spiral_starting_flow_ratio", "spiral_finishing_flow_ratio", "slicing_mode",
|
||||
"top_shell_layers", "top_shell_thickness", "top_surface_density", "bottom_surface_density", "bottom_shell_layers", "bottom_shell_thickness",
|
||||
"extra_perimeters_on_overhangs", "ensure_vertical_shell_thickness", "reduce_crossing_wall", "detect_thin_wall", "detect_overhang_wall", "overhang_reverse", "overhang_reverse_threshold","overhang_reverse_internal_only", "wall_direction",
|
||||
"seam_position", "staggered_inner_seams", "wall_sequence", "is_infill_first", "sparse_infill_density","fill_multiline", "sparse_infill_pattern", "lattice_angle_1", "lattice_angle_2", "infill_overhang_angle", "top_surface_pattern", "bottom_surface_pattern",
|
||||
"seam_position", "staggered_inner_seams", "wall_sequence", "is_infill_first", "sparse_infill_density","fill_multiline", "sparse_infill_pattern", "lateral_lattice_angle_1", "lateral_lattice_angle_2", "infill_overhang_angle", "top_surface_pattern", "bottom_surface_pattern",
|
||||
"infill_direction", "solid_infill_direction", "counterbore_hole_bridging","infill_shift_step", "sparse_infill_rotate_template", "solid_infill_rotate_template", "symmetric_infill_y_axis","skeleton_infill_density", "infill_lock_depth", "skin_infill_depth", "skin_infill_density",
|
||||
"align_infill_direction_to_model",
|
||||
"minimum_sparse_infill_area", "reduce_infill_retraction","internal_solid_infill_pattern","gap_fill_target",
|
||||
|
||||
@@ -161,8 +161,8 @@ static t_config_enum_values s_keys_map_InfillPattern {
|
||||
{ "lightning", ipLightning },
|
||||
{ "honeycomb", ipHoneycomb },
|
||||
{ "3dhoneycomb", ip3DHoneycomb },
|
||||
{ "2dhoneycomb", ip2DHoneycomb },
|
||||
{ "2dlattice", ip2DLattice },
|
||||
{ "lateral-honeycomb", ipLateralHoneycomb },
|
||||
{ "lateral-lattice", ipLateralLattice },
|
||||
{ "crosshatch", ipCrossHatch },
|
||||
{ "tpmsd", ipTpmsD },
|
||||
{ "tpmsfk", ipTpmsFK },
|
||||
@@ -2414,8 +2414,8 @@ void PrintConfigDef::init_fff_params()
|
||||
def->enum_values.push_back("lightning");
|
||||
def->enum_values.push_back("honeycomb");
|
||||
def->enum_values.push_back("3dhoneycomb");
|
||||
def->enum_values.push_back("2dhoneycomb");
|
||||
def->enum_values.push_back("2dlattice");
|
||||
def->enum_values.push_back("lateral-honeycomb");
|
||||
def->enum_values.push_back("lateral-lattice");
|
||||
def->enum_values.push_back("crosshatch");
|
||||
def->enum_values.push_back("tpmsd");
|
||||
def->enum_values.push_back("tpmsfk");
|
||||
@@ -2440,8 +2440,8 @@ void PrintConfigDef::init_fff_params()
|
||||
def->enum_labels.push_back(L("Lightning"));
|
||||
def->enum_labels.push_back(L("Honeycomb"));
|
||||
def->enum_labels.push_back(L("3D Honeycomb"));
|
||||
def->enum_labels.push_back(L("2D Honeycomb"));
|
||||
def->enum_labels.push_back(L("2D Lattice"));
|
||||
def->enum_labels.push_back(L("Lateral Honeycomb"));
|
||||
def->enum_labels.push_back(L("Lateral Lattice"));
|
||||
def->enum_labels.push_back(L("Cross Hatch"));
|
||||
def->enum_labels.push_back(L("TPMS-D"));
|
||||
def->enum_labels.push_back(L("TPMS-FK"));
|
||||
@@ -2452,20 +2452,20 @@ void PrintConfigDef::init_fff_params()
|
||||
def->enum_labels.push_back(L("Octagram Spiral"));
|
||||
def->set_default_value(new ConfigOptionEnum<InfillPattern>(ipCrossHatch));
|
||||
|
||||
def = this->add("lattice_angle_1", coFloat);
|
||||
def->label = L("Lattice angle 1");
|
||||
def = this->add("lateral_lattice_angle_1", coFloat);
|
||||
def->label = L("Lateral lattice angle 1");
|
||||
def->category = L("Strength");
|
||||
def->tooltip = L("The angle of the first set of 2D lattice elements in the Z direction. Zero is vertical.");
|
||||
def->tooltip = L("The angle of the first set of Lateral lattice elements in the Z direction. Zero is vertical.");
|
||||
def->sidetext = "°"; // degrees, don't need translation
|
||||
def->min = -75;
|
||||
def->max = 75;
|
||||
def->mode = comAdvanced;
|
||||
def->set_default_value(new ConfigOptionFloat(-45));
|
||||
|
||||
def = this->add("lattice_angle_2", coFloat);
|
||||
def->label = L("Lattice angle 2");
|
||||
def = this->add("lateral_lattice_angle_2", coFloat);
|
||||
def->label = L("Lateral lattice angle 2");
|
||||
def->category = L("Strength");
|
||||
def->tooltip = L("The angle of the second set of 2D lattice elements in the Z direction. Zero is vertical.");
|
||||
def->tooltip = L("The angle of the second set of Lateral lattice elements in the Z direction. Zero is vertical.");
|
||||
def->sidetext = "°"; // degrees, don't need translation
|
||||
def->min = -75;
|
||||
def->max = 75;
|
||||
|
||||
@@ -70,7 +70,7 @@ enum InfillPattern : int {
|
||||
ipLine, ipGrid,
|
||||
ipTriangles, ipStars,
|
||||
ipCubic, ipAdaptiveCubic, ipQuarterCubic, ipSupportCubic, ipLightning,
|
||||
ipHoneycomb, ip3DHoneycomb, ip2DHoneycomb, ip2DLattice,
|
||||
ipHoneycomb, ip3DHoneycomb, ipLateralHoneycomb, ipLateralLattice,
|
||||
ipCrossHatch, ipTpmsD, ipTpmsFK, ipGyroid,
|
||||
ipConcentric, ipHilbertCurve, ipArchimedeanChords, ipOctagramSpiral,
|
||||
ipSupportBase, ipConcentricInternal,
|
||||
@@ -981,8 +981,8 @@ PRINT_CONFIG_CLASS_DEFINE(
|
||||
((ConfigOptionString, sparse_infill_rotate_template))
|
||||
((ConfigOptionPercent, sparse_infill_density))
|
||||
((ConfigOptionEnum<InfillPattern>, sparse_infill_pattern))
|
||||
((ConfigOptionFloat, lattice_angle_1))
|
||||
((ConfigOptionFloat, lattice_angle_2))
|
||||
((ConfigOptionFloat, lateral_lattice_angle_1))
|
||||
((ConfigOptionFloat, lateral_lattice_angle_2))
|
||||
((ConfigOptionFloat, infill_overhang_angle))
|
||||
((ConfigOptionBool, align_infill_direction_to_model))
|
||||
((ConfigOptionEnum<FuzzySkinType>, fuzzy_skin))
|
||||
|
||||
@@ -1098,8 +1098,8 @@ bool PrintObject::invalidate_state_by_config_options(
|
||||
|| opt_key == "bottom_surface_density"
|
||||
|| opt_key == "initial_layer_line_width"
|
||||
|| opt_key == "small_area_infill_flow_compensation"
|
||||
|| opt_key == "lattice_angle_1"
|
||||
|| opt_key == "lattice_angle_2"
|
||||
|| opt_key == "lateral_lattice_angle_1"
|
||||
|| opt_key == "lateral_lattice_angle_2"
|
||||
|| opt_key == "infill_overhang_angle") {
|
||||
steps.emplace_back(posInfill);
|
||||
} else if (opt_key == "sparse_infill_pattern"
|
||||
@@ -3785,10 +3785,10 @@ void PrintObject::combine_infill()
|
||||
((infill_pattern == ipRectilinear ||
|
||||
infill_pattern == ipMonotonic ||
|
||||
infill_pattern == ipGrid ||
|
||||
infill_pattern == ip2DLattice ||
|
||||
infill_pattern == ipLateralLattice ||
|
||||
infill_pattern == ipLine ||
|
||||
infill_pattern == ipHoneycomb ||
|
||||
infill_pattern == ip2DHoneycomb) ? 1.5f : 0.5f) *
|
||||
infill_pattern == ipLateralHoneycomb) ? 1.5f : 0.5f) *
|
||||
layerms.back()->flow(frSolidInfill).scaled_width();
|
||||
for (ExPolygon &expoly : intersection)
|
||||
polygons_append(intersection_with_clearance, offset(expoly, clearance_offset));
|
||||
|
||||
@@ -566,7 +566,7 @@ void ConfigManipulation::toggle_print_fff_options(DynamicPrintConfig *config, co
|
||||
|
||||
// Infill patterns that support multiline infill.
|
||||
InfillPattern pattern = config->opt_enum<InfillPattern>("sparse_infill_pattern");
|
||||
bool have_multiline_infill_pattern = pattern == ipGyroid || pattern == ipGrid || pattern == ipRectilinear || pattern == ipTpmsD || pattern == ipTpmsFK || pattern == ipCrossHatch || pattern == ipHoneycomb || pattern == ip2DLattice || pattern == ip2DHoneycomb ||
|
||||
bool have_multiline_infill_pattern = pattern == ipGyroid || pattern == ipGrid || pattern == ipRectilinear || pattern == ipTpmsD || pattern == ipTpmsFK || pattern == ipCrossHatch || pattern == ipHoneycomb || pattern == ipLateralLattice || pattern == ipLateralHoneycomb ||
|
||||
pattern == ipCubic || pattern == ipStars || pattern == ipAlignedRectilinear || pattern == ipLightning || pattern == ip3DHoneycomb || pattern == ipAdaptiveCubic || pattern == ipSupportCubic;
|
||||
toggle_line("fill_multiline", have_multiline_infill_pattern);
|
||||
|
||||
@@ -875,8 +875,8 @@ void ConfigManipulation::toggle_print_fff_options(DynamicPrintConfig *config, co
|
||||
toggle_line("interlocking_depth", use_beam_interlocking);
|
||||
toggle_line("interlocking_boundary_avoidance", use_beam_interlocking);
|
||||
|
||||
bool lattice_options = config->opt_enum<InfillPattern>("sparse_infill_pattern") == InfillPattern::ip2DLattice;
|
||||
for (auto el : { "lattice_angle_1", "lattice_angle_2"})
|
||||
bool lattice_options = config->opt_enum<InfillPattern>("sparse_infill_pattern") == InfillPattern::ipLateralLattice;
|
||||
for (auto el : { "lateral_lattice_angle_1", "lateral_lattice_angle_2"})
|
||||
toggle_line(el, lattice_options);
|
||||
|
||||
//Orca: hide rotate template for solid infill if not support
|
||||
@@ -895,7 +895,7 @@ void ConfigManipulation::toggle_print_fff_options(DynamicPrintConfig *config, co
|
||||
toggle_line("solid_infill_rotate_template", show_solid_infill_rotate_template);
|
||||
|
||||
|
||||
toggle_line("infill_overhang_angle", config->opt_enum<InfillPattern>("sparse_infill_pattern") == InfillPattern::ip2DHoneycomb);
|
||||
toggle_line("infill_overhang_angle", config->opt_enum<InfillPattern>("sparse_infill_pattern") == InfillPattern::ipLateralHoneycomb);
|
||||
}
|
||||
|
||||
void ConfigManipulation::update_print_sla_config(DynamicPrintConfig* config, const bool is_global_config/* = false*/)
|
||||
|
||||
@@ -106,7 +106,7 @@ std::map<std::string, std::vector<SimpleSettingData>> SettingsFactory::PART_CAT
|
||||
}},
|
||||
{ L("Strength"), {{"wall_loops", "",1},{"top_shell_layers", L("Top Solid Layers"),1},{"top_shell_thickness", L("Top Minimum Shell Thickness"),1},{"top_surface_density", L("Top Surface Density"),1},
|
||||
{"bottom_shell_layers", L("Bottom Solid Layers"),1}, {"bottom_shell_thickness", L("Bottom Minimum Shell Thickness"),1},{"bottom_surface_density", L("Bottom Surface Density"),1},
|
||||
{"sparse_infill_density", "",1},{"sparse_infill_pattern", "",1},{"lattice_angle_1", "",1},{"lattice_angle_2", "",1},{"infill_overhang_angle", "",1},{"infill_anchor", "",1},{"infill_anchor_max", "",1},{"top_surface_pattern", "",1},{"bottom_surface_pattern", "",1}, {"internal_solid_infill_pattern", "",1},
|
||||
{"sparse_infill_density", "",1},{"sparse_infill_pattern", "",1},{"lateral_lattice_angle_1", "",1},{"lateral_lattice_angle_2", "",1},{"infill_overhang_angle", "",1},{"infill_anchor", "",1},{"infill_anchor_max", "",1},{"top_surface_pattern", "",1},{"bottom_surface_pattern", "",1}, {"internal_solid_infill_pattern", "",1},
|
||||
{"align_infill_direction_to_model", "", 1},
|
||||
{"infill_combination", "",1}, {"infill_combination_max_layer_height", "",1}, {"infill_wall_overlap", "",1},{"top_bottom_infill_wall_overlap", "",1}, {"solid_infill_direction", "",1}, {"infill_direction", "",1}, {"bridge_angle", "",1}, {"internal_bridge_angle", "",1}, {"minimum_sparse_infill_area", "",1}
|
||||
}},
|
||||
|
||||
@@ -2221,8 +2221,8 @@ void TabPrint::build()
|
||||
optgroup->append_single_option_line("symmetric_infill_y_axis", "strength_settings_infill#zig-zag");
|
||||
optgroup->append_single_option_line("infill_shift_step", "strength_settings_infill#cross-hatch");
|
||||
|
||||
optgroup->append_single_option_line("lattice_angle_1", "strength_settings_infill#2d-lattice");
|
||||
optgroup->append_single_option_line("lattice_angle_2", "strength_settings_infill#2d-lattice");
|
||||
optgroup->append_single_option_line("lateral_lattice_angle_1", "strength_settings_infill#2d-lattice");
|
||||
optgroup->append_single_option_line("lateral_lattice_angle_2", "strength_settings_infill#2d-lattice");
|
||||
optgroup->append_single_option_line("infill_overhang_angle", "strength_settings_infill#2d-honeycomb");
|
||||
optgroup->append_single_option_line("infill_anchor_max", "strength_settings_infill#anchor");
|
||||
optgroup->append_single_option_line("infill_anchor", "strength_settings_infill#anchor");
|
||||
|
||||
Reference in New Issue
Block a user