rename 2DHoneycomb and 2DLattice to LateralHoneycomb and LateralLattice (#10423)

* rename 2DHoneycomb and 2DLattice to LateralHoneycomb and LateralLattice

* more renaming
This commit is contained in:
SoftFever
2025-08-17 23:49:06 +08:00
committed by GitHub
parent 9e0df24b9a
commit 6ae89f7d9b
36 changed files with 191 additions and 191 deletions

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@@ -10771,10 +10771,10 @@ msgstr ""
msgid "3D Honeycomb"
msgstr ""
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr ""
msgid "Cross Hatch"
@@ -10789,19 +10789,19 @@ msgstr ""
msgid "Gyroid"
msgstr ""
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 ""

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@@ -12286,10 +12286,10 @@ msgstr "Panal d'abella"
msgid "3D Honeycomb"
msgstr "Panal d'abella 3D"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr "Gelosia 2D"
msgid "Cross Hatch"
@@ -12304,21 +12304,21 @@ msgstr ""
msgid "Gyroid"
msgstr "Giroide"
msgid "Lattice angle 1"
msgid "Lateral lattice angle 1"
msgstr "Angle de gelosia 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 ""
"L'angle del primer conjunt d'elements de gelosia 2D en la direcció Z. El "
"zero és vertical."
msgid "Lattice angle 2"
msgid "Lateral lattice angle 2"
msgstr "Angle de gelosia 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 ""
"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"
msgid "3D Honeycomb"
msgstr "3D Plástev"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr ""
msgid "Cross Hatch"
@@ -11527,19 +11527,19 @@ 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 ""

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@@ -12433,10 +12433,10 @@ msgstr "Bienenwabe"
msgid "3D Honeycomb"
msgstr "3D-Waben"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr "2D-Waben"
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr "2D-Gitter"
msgid "Cross Hatch"
@@ -12451,21 +12451,21 @@ msgstr ""
msgid "Gyroid"
msgstr "Gyroid"
msgid "Lattice angle 1"
msgid "Lateral lattice angle 1"
msgstr "Gitterwinkel 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 ""
"Der Winkel des ersten Satzes von 2D-Gitterelementen in der Z-Richtung. Null "
"ist vertikal."
msgid "Lattice angle 2"
msgid "Lateral lattice angle 2"
msgstr "Gitterwinkel 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 ""
"Der Winkel des zweiten Satzes von 2D-Gitterelementen in der Z-Richtung. Null "

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@@ -11061,10 +11061,10 @@ msgstr ""
msgid "3D Honeycomb"
msgstr ""
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr ""
msgid "Cross Hatch"
@@ -11079,19 +11079,19 @@ msgstr ""
msgid "Gyroid"
msgstr ""
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 ""

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@@ -12200,10 +12200,10 @@ msgstr "Panal de abeja"
msgid "3D Honeycomb"
msgstr "Panal 3D"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr ""
msgid "Cross Hatch"
@@ -12218,19 +12218,19 @@ msgstr ""
msgid "Gyroid"
msgstr "Giroide"
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 ""

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@@ -12444,10 +12444,10 @@ msgstr "Nid d'abeille"
msgid "3D Honeycomb"
msgstr "Nid d'abeille 3D"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr "Treillis 2D"
msgid "Cross Hatch"
@@ -12462,21 +12462,21 @@ msgstr ""
msgid "Gyroid"
msgstr "Gyroïde"
msgid "Lattice angle 1"
msgid "Lateral lattice angle 1"
msgstr "Angle de treillis 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 ""
"Angle du premier ensemble déléments de treillis 2D dans la direction Z. "
"Zéro correspond à la verticale."
msgid "Lattice angle 2"
msgid "Lateral lattice angle 2"
msgstr "Angle de treillis 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 ""
"Angle de la deuxième série déléments de treillis 2D dans la direction Z. "

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@@ -11377,10 +11377,10 @@ msgstr "Méhsejt"
msgid "3D Honeycomb"
msgstr "3D-méhsejt"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr ""
msgid "Cross Hatch"
@@ -11395,19 +11395,19 @@ 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 ""

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@@ -12359,10 +12359,10 @@ msgstr "Nido d'ape"
msgid "3D Honeycomb"
msgstr "Nido d'ape 3D"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr "Reticolo 2D"
msgid "Cross Hatch"
@@ -12377,21 +12377,21 @@ msgstr ""
msgid "Gyroid"
msgstr "Giroide"
msgid "Lattice angle 1"
msgid "Lateral lattice angle 1"
msgstr "Angolo reticolo 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 ""
"L'angolo della prima serie di elementi reticolari 2D nell'asse Z. Zero è "
"verticale."
msgid "Lattice angle 2"
msgid "Lateral lattice angle 2"
msgstr "Angolo reticolo 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 ""
"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"
msgid "3D Honeycomb"
msgstr "3D ハニカム"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr ""
msgid "Cross Hatch"
@@ -11130,19 +11130,19 @@ msgstr ""
msgid "Gyroid"
msgstr "ジャイロイド"
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 ""

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@@ -11780,10 +11780,10 @@ msgstr "벌집"
msgid "3D Honeycomb"
msgstr "3D 벌집"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr "2D 격자"
msgid "Cross Hatch"
@@ -11798,19 +11798,19 @@ msgstr ""
msgid "Gyroid"
msgstr "자이로이드"
msgid "Lattice angle 1"
msgid "Lateral lattice angle 1"
msgstr "격자 각도 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 방향의 첫 번째 2D 격자 요소 집합의 각도입니다. 0은 수직입니다."
msgid "Lattice angle 2"
msgid "Lateral lattice angle 2"
msgstr "격자 각도 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 방향에서 두 번째 2D 격자 요소 세트의 각도입니다. 0은 수직입니다."

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@@ -12159,10 +12159,10 @@ msgstr "Korys"
msgid "3D Honeycomb"
msgstr "3D korys"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr "2D grotelės"
msgid "Cross Hatch"
@@ -12177,21 +12177,21 @@ msgstr ""
msgid "Gyroid"
msgstr "Giroidas"
msgid "Lattice angle 1"
msgid "Lateral lattice angle 1"
msgstr "Rašto kampas 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 ""
"Pirmojo 2D grotelių elementų rinkinio kampas Z kryptimi. Nulis yra "
"vertikalus."
msgid "Lattice angle 2"
msgid "Lateral lattice angle 2"
msgstr "Rašto kampas 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 ""
"Antrojo 2D grotelių elementų rinkinio kampas Z kryptimi. Nulis yra "

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@@ -11548,10 +11548,10 @@ msgstr "Honinggraad"
msgid "3D Honeycomb"
msgstr "3D Honingraat"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr ""
msgid "Cross Hatch"
@@ -11566,19 +11566,19 @@ msgstr ""
msgid "Gyroid"
msgstr "Gyroide"
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 ""

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@@ -12210,10 +12210,10 @@ msgstr "Plaster miodu"
msgid "3D Honeycomb"
msgstr "Plaster miodu 3D"
msgid "2D Honeycomb"
msgid "Lateral Honeycomb"
msgstr ""
msgid "2D Lattice"
msgid "Lateral Lattice"
msgstr "Siatka 2D"
msgid "Cross Hatch"
@@ -12228,21 +12228,21 @@ msgstr ""
msgid "Gyroid"
msgstr "Gyroidalny"
msgid "Lattice angle 1"
msgid "Lateral lattice angle 1"
msgstr "Kąt siatki 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 ""
"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 "

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@@ -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 "

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@@ -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 "

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@@ -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 ""

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@@ -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."

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@@ -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 "

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@@ -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。"

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@@ -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。"

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@@ -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;

View File

@@ -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();

View File

@@ -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

View File

@@ -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 &param
return polylines_out;
}
Polylines Fill2DLattice::fill_surface(const Surface *surface, const FillParams &params)
Polylines FillLateralLattice::fill_surface(const Surface *surface, const FillParams &params)
{
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 &params)
Polylines FillLateralHoneycomb::fill_surface(const Surface *surface, const FillParams &params)
{
// 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)

View File

@@ -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 &params) 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 &params) override;
};

View File

@@ -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);

View File

@@ -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",

View File

@@ -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;

View File

@@ -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))

View File

@@ -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));

View File

@@ -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*/)

View File

@@ -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}
}},

View File

@@ -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");