Structural element
- SESolid3D:
- Name
Name. | Constraints: Conditions: “” input must be non-empty. The name must be unique.
- Type:
str
- SEmaterial
Material: Structural element material . | Constraints: Conditions: Only concrete, steel or generic material can be used in solid section. Please, remove the solid sections to assign the material.
- Type:
Entity
- SEgeometry
Geometry: Structural element geometry.
- Type:
Entity
- KCsolid3D
Coordinate system: Coordinate system associated to the solid 3D structural element.
- Type:
Entity
- MeshTool3D
Mesh controls: Mesh controls for solid structural elements.
- Type:
MeshTool3D
- LocalMeshToolList
Local mesh controls: Group of local mesh controls associated to the structural element.
- Type:
List
- SEMeshInfo
Mesh info.: Information about the finite element mesh. | Constant: Constant value
- Type:
MeshInfo
- SubStructuralElements
Sub-elements: List of sub structural elements.
- Type:
PVectorConst
- SolidSections
Solid sections: List with the solid sections created in this structural element.
- Type:
List
- MeshInfo:
- SENumNodes
Number of nodes: Number of nodes of the finite element mesh attached to the structural element. | Constant: Constant value
- Type:
int
- SENumElements
Number of elements: Number of elements of the finite element mesh attached to the structural element. | Constant: Constant value
- Type:
int
- SESolid2D:
- Name
Name. | Constraints: Conditions: “” input must be non-empty. The name must be unique.
- Type:
str
- SEmaterial
Material: Structural element material . | Constraints: Conditions: Only concrete, steel or generic material can be used in solid section. Please, remove the solid sections to assign the material.
- Type:
Entity
- SEgeometry
Geometry: Structural element geometry.
- Type:
Entity
- SEtype
Type: Type of structural object.
- Type:
Enumerate: { Sol2DPStress, Sol2DPStrain }
- Sol2DThickness
Thickness: Thickness of the plane stress model.
- Type:
Double
- KCsolid2D
Coordinate system: Coordinate system associated to the solid 2D structural element.
- Type:
Entity
- MeshTool2D
Mesh controls: Mesh controls for surface and solid 2D structural elements.
- Type:
MeshTool2D
- LocalMeshToolList
Local mesh controls: Group of local mesh controls associated to the structural element.
- Type:
List
- SEMeshInfo
Mesh info.: Information about the finite element mesh. | Constant: Constant value
- Type:
MeshInfo
- SubStructuralElements
Sub-elements: List of sub structural elements.
- Type:
PVectorConst
- SolidSections
Solid sections: List with the solid sections created in this structural element.
- Type:
List
- SEShell:
- Name
Name. | Constraints: Conditions: “” input must be non-empty. The name must be unique.
- Type:
str
- SEmaterial
Material: Structural element material .
- Type:
Entity
- SEgeometry
Geometry: Structural element geometry.
- Type:
Entity
- LocalMeshToolList
Local mesh controls: Group of local mesh controls associated to the structural element.
- Type:
List
- SEMeshInfo
Mesh info.: Information about the finite element mesh. | Constant: Constant value
- Type:
MeshInfo
- SubStructuralElements
Sub-elements: List of sub structural elements.
- Type:
PVectorConst
- VarThickness
Variable thickness: Activate to define the variable shell thickness.
- Type:
bool
- VarThicknessData
Variable thickness: Properties to define the variable shell thickness.
- Type:
VariableThickness
- Thickness
Thickness: Thickness of the shell. | Constraints: Conditions: Value must be greater than 0.
- Type:
Double
- KCshell
Coordinate system: Coordinate system associated to the shell structural element.
- Type:
Entity
- Offset
Offset: Offset of the shell for each vertex.
- Type:
Double
- MeshTool2D
Mesh controls: Mesh controls for surface and solid 2D structural elements.
- Type:
MeshTool2D
- SolidSections
Solid sections: List with the solid sections created in this structural element.
- Type:
List
- VariableThickness:
- VarThicknessMethod
Method: Method to define the variable shell thickness.
- Type:
Enumerate: { MidSurf, TopSurf, BottomSurf }
- ThicknessKCSystem
Coordinate system: Coordinate system to define the gradient directions for variable shell thickness. | Constraints: Conditions: “” does not exist in the dropdown list.
- Type:
KCoordinateSystem
- GradX
Gradient X: Gradient of the shell thickness on structural element X direction.
- Type:
Double
- GradY
Gradient Y: Gradient of the shell thickness on structural element Y direction.
- Type:
Double
- SEShellSteel:
- Name
Name. | Constraints: Conditions: “” input must be non-empty. The name must be unique.
- Type:
str
- SEmaterial
Material: Structural element material . | Constraints: Conditions: “” does not exist in the dropdown list.
- Type:
Entity
- SEgeometry
Geometry: Structural element geometry.
- Type:
Entity
- VarThickness
Variable thickness: Activate to define the variable shell thickness.
- Type:
bool
- VarThicknessData
Variable thickness: Properties to define the variable shell thickness.
- Type:
VariableThickness
- Thickness
Thickness: Thickness of the shell. | Constraints: Conditions: Value must be greater than 0.
- Type:
Double
- KCshell
Coordinate system: Coordinate system associated to the shell structural element.
- Type:
Entity
- Offset
Offset: Offset of the shell for each vertex.
- Type:
Double
- MeshTool2D
Mesh controls: Mesh controls for surface and solid 2D structural elements.
- Type:
MeshTool2D
- LocalMeshToolList
Local mesh controls: Group of local mesh controls associated to the structural element.
- Type:
List
- SEMeshInfo
Mesh info.: Information about the finite element mesh. | Constant: Constant value
- Type:
MeshInfo
- SubStructuralElements
Sub-elements: List of sub structural elements.
- Type:
PVectorConst
- SolidSections
Solid sections: List with the solid sections created in this structural element.
- Type:
List
- StructuralElementsContainer:
- Find(FindEntity)
Find.
- Parameters:
FindEntity (Entity/str) – Entity name to find
- Returns:
Entity found
- Return type:
Entity
- ResetMeshTools()
ResetMeshTools.
- StructuralElements
Structural elements.
- Type:
PVector
- addGlobalMeshControl1D(entity, TypeMeshDiv, OptionMeshType, NumberOfSegments)
Apply controls: Add mesh controls to structural elements
Alias: addGMC1D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
TypeMeshDiv – Type: Mesh divisions type.
OptionMeshType – Control: Select the mesh control type.
NumberOfSegments – Number: Number of segments.
- addGlobalMeshControl1D(entity, TypeMeshDiv, OptionMeshType, Length)
Apply controls: Add mesh controls to structural elements
Alias: addGMC1D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
TypeMeshDiv – Type: Mesh divisions type.
OptionMeshType – Control: Select the mesh control type.
Length – Length: Maximum allowed length for the segments.
- addGlobalMeshControl1D(entity, TypeMeshDiv, OptionMeshType, NumberOfSegments, RelNumDiv)
Apply controls: Add mesh controls to structural elements
Alias: addGMC1D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
TypeMeshDiv – Type: Mesh divisions type.
OptionMeshType – Control: Select the mesh control type.
NumberOfSegments – Number: Number of segments.
RelNumDiv – Relation: Relation number of segments.
- addGlobalMeshControl1D(entity, TypeMeshDiv, OptionMeshType, VarLength1, VarLength2)
Apply controls: Add mesh controls to structural elements
Alias: addGMC1D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
TypeMeshDiv – Type: Mesh divisions type.
OptionMeshType – Control: Select the mesh control type.
VarLength1 – Length 1: Maximum allowed length for the segments L1.
VarLength2 – Length 2: Maximum allowed length for the segments L2.
- addGlobalMeshControl2D(entity, OptionMeshType, EType, AlgoType, SizeEdges, Transition, Tol)
Apply controls: Add mesh controls to structural elements
Alias: addGMC2D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
OptionMeshType – Control: Select the mesh control type.
EType – Element Type.
AlgoType – Algorithm: Type of algorithm to be used for meshing.
SizeEdges – Edges size: Maximum size for the edges.
Transition – Mesh transition parameter.
Tol – Tolerance merge.
- addGlobalMeshControl2D(entity, OptionMeshType, SizeEdges, EType, AlgoType, Transition, Auto, Tol)
Apply controls: Add mesh controls to structural elements
Alias: addGMC2D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
OptionMeshType – Control: Select the mesh control type.
SizeEdges – Edges size: Maximum size for the edges.
EType – Element Type.
AlgoType – Algorithm: Type of algorithm to be used for meshing.
Transition – Mesh transition parameter.
Auto – Autocalculate parameter.
Tol – Tolerance merge.
- addGlobalMeshControl2D(entity, OptionMeshType, EType, SizeEdges, CurvatureCheck, ChordalDeviation, MinElementSize, Extension, DirectApproach)
Apply controls: Add mesh controls to structural elements
Alias: addGMC2D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
OptionMeshType – Control: Select the mesh control type.
EType – Element Type.
SizeEdges – Edges size: Maximum size for the edges.
CurvatureCheck – Curvature check.
ChordalDeviation – Max. deviation: Maximum distance allowed between and element and geometry, relative to element length.
MinElementSize – Min. element size: Size is defined as a factor relative to element length.
Extension – Export format: Activate to change the export geometry from STEP to IGES format.
DirectApproach – Direct approach: Create parasolid geometry to mesh by direct approach.
- addGlobalMeshControl2D(entity, OptionMeshType, EType, AlgoType, VectorU, DivU, DivV, BiasFactorU, BiasFactorV, Tol)
Apply controls: Add mesh controls to structural elements
Alias: addGMC2D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
OptionMeshType – Control: Select the mesh control type.
EType – Element Type.
AlgoType – Algorithm: Type of algorithm to be used for meshing.
VectorU – U Direction: Coordinates of U direction. V direction is perpendicular to U.
DivU – Divisions U direction: Number of divisions in the U direction.
DivV – Divisions V direction: Number of divisions in the V direction.
BiasFactorU – Bias Factor U: Mesh transition parameter in U direction.
BiasFactorV – Bias Factor V: Mesh transition parameter in V direction.
Tol – Tolerance merge.
- addGlobalMeshControl3D(entity, OptionMeshType, Transition, Tol, SizeEdges)
Apply controls: Add mesh controls to structural elements
Alias: addGMC3D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
OptionMeshType – Control: Select the mesh control type.
Transition – Mesh transition parameter.
Tol – Tolerance merge.
SizeEdges – Edges size: Maximum size for the edges of the volume.
- addGlobalMeshControl3D(entity, OptionMeshType, ExtrudeSize, EType, AlgoType, SizeEdges, Transition, Tol)
Apply controls: Add mesh controls to structural elements
Alias: addGMC3D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
OptionMeshType – Control: Select the mesh control type.
ExtrudeSize – Extrude size: Maximum size for the extrusión of the surface mesh.
EType – Element Type.
AlgoType – Algorithm: Type of algorithm to be used for meshing.
SizeEdges – Edges size: Maximum size for the edges.
Transition – Mesh transition parameter.
Tol – Tolerance merge.
- addGlobalMeshControl3D(entity, OptionMeshType, RevolveNumDiv, EType, AlgoType, SizeEdges, Transition, Tol)
Apply controls: Add mesh controls to structural elements
Alias: addGMC3D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
OptionMeshType – Control: Select the mesh control type.
RevolveNumDiv – Revolve divisions: Number of divisions for the revolve of the surface mesh.
EType – Element Type.
AlgoType – Algorithm: Type of algorithm to be used for meshing.
SizeEdges – Edges size: Maximum size for the edges.
Transition – Mesh transition parameter.
Tol – Tolerance merge.
- addGlobalMeshControl3D(entity, OptionMeshType, SizeEdges, CurvatureCheck, ChordalDeviation, MinElementSize, InternalCoarsening, CoarseningFactor, ShortEdges, Extension, DirectApproach)
Apply controls: Add mesh controls to structural elements
Alias: addGMC3D- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
OptionMeshType – Control: Select the mesh control type.
SizeEdges – Edges size: Maximum size for the edges.
CurvatureCheck – Curvature check.
ChordalDeviation – Max. deviation: Maximum distance allowed between and element and geometry, relative to element length.
MinElementSize – Min. element size: Size is defined as a factor relative to element length.
InternalCoarsening – Internal coarsening.
CoarseningFactor – Coarsening factor: Lower values create more elements.
ShortEdges – Short edges: Activate to collapse short edges.
Extension – Export format: Activate to change the export geometry from STEP to IGES format.
DirectApproach – Direct approach: Create parasolid geometry to mesh by direct approach.
- addLocalMeshTool(entity, LocalMeshGeometries)
Add local control: Add a local mesh control to the structural element
Alias: addLMT- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
LocalMeshGeometries (List) – Geometries: Geometries associated to the local mesh control. Conditions: Geometries associated with the local mesh control must have the same topology.
- addLocalMeshTool(entity, LocalMeshGeometry)
Add local control: Add a local mesh control to the structural element
Alias: addLMT- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
LocalMeshGeometry (Entity) – Geometry: Geometry associated to the local mesh control.
- addSolidSection(entity, SolidSectionCoodSys)
Add solid section: Add a solid section to the structural element
Alias: addSS- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
SolidSectionCoodSys (KCoordinateSystem) – Coordinate system: Coordinate system which defines the origin and plane of the solid section. Conditions: “” does not exist in the dropdown list.
- calculateCog()
Calculate the COG by structural element
Alias: COG
- calculateCogBySE(entity)
Calculate COG
Alias: COGBySE- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
- calculateMass(entity)
Calculate mass
Alias: mass- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
- calculateTotalMass()
Calculate total mass
Alias: totalMass
- clearMeshSESelected(entity)
Clear mesh: Clear the mesh from the structural elements
Alias: clearMeshSEConstraints: Mesh- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
- cloneSE(entity, GeomList)
Clone: Clone the structural element to create new structural elements with the same properties as the one selected
- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
GeomList (List) – Geometry list. Conditions: “” does not exist in the dropdown list.
- createCoverCompositeMaterial(entity, Composite, Generic)
Create composite material: Create a composite material from shell bending reinforcement
- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
Composite (str) – Composite. Conditions: “” input must be non-empty.
Generic (str) – Generic. Conditions: “” input must be non-empty.
- createSEBeam(CrossSectionI, CrossSectionJ, SEgeometry)
Beam: Create the structural element for a beam
Alias: seBeam- Parameters:
CrossSectionI (Entity) – Cross Section I: Cross section at end I. Conditions: The input must be non-empty. “” does not exist in the dropdown list. The input must be non-empty.
CrossSectionJ (Entity) – Cross Section J: Cross section at end J. Conditions: The input must be non-empty. “” does not exist in the dropdown list.
SEgeometry (POCCGeomAxis) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSEBeam(CrossSectionI, CrossSectionJ, SEgeometries)
Beam: Create the structural element for a beam
Alias: seBeam- Parameters:
CrossSectionI (Entity) – Cross Section I: Cross section at end I. Conditions: The input must be non-empty. “” does not exist in the dropdown list. The input must be non-empty.
CrossSectionJ (Entity) – Cross Section J: Cross section at end J. Conditions: The input must be non-empty. “” does not exist in the dropdown list.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSEBeam(Name, CrossSectionI, CrossSectionJ, SEgeometry)
Beam: Create the structural element for a beam
Alias: seBeam- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
CrossSectionI (Entity) – Cross Section I: Cross section at end I. Conditions: The input must be non-empty. “” does not exist in the dropdown list. The input must be non-empty.
CrossSectionJ (Entity) – Cross Section J: Cross section at end J. Conditions: The input must be non-empty. “” does not exist in the dropdown list.
SEgeometry (POCCGeomAxis) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSEBeam(Name, CrossSectionI, CrossSectionJ, SEgeometries)
Beam: Create the structural element for a beam
Alias: seBeam- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
CrossSectionI (Entity) – Cross Section I: Cross section at end I. Conditions: The input must be non-empty. “” does not exist in the dropdown list. The input must be non-empty.
CrossSectionJ (Entity) – Cross Section J: Cross section at end J. Conditions: The input must be non-empty. “” does not exist in the dropdown list.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSECable(CrossSection, SEgeometry)
Cable: Create the structural element for a cable
Alias: seCabe- Parameters:
CrossSection (Entity) – Cross Section: Cross section at both ends. Conditions: “” does not exist in the dropdown list. The input must be non-empty.
SEgeometry (POCCGeomAxis) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSECable(CrossSection, SEgeometries)
Cable: Create the structural element for a cable
Alias: seCabe- Parameters:
CrossSection (Entity) – Cross Section: Cross section at both ends. Conditions: “” does not exist in the dropdown list. The input must be non-empty.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSECable(Name, CrossSection, SEgeometry)
Cable: Create the structural element for a cable
Alias: seCabe- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
CrossSection (Entity) – Cross Section: Cross section at both ends. Conditions: “” does not exist in the dropdown list. The input must be non-empty.
SEgeometry (POCCGeomAxis) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSECable(Name, CrossSection, SEgeometries)
Cable: Create the structural element for a cable
Alias: seCabe- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
CrossSection (Entity) – Cross Section: Cross section at both ends. Conditions: “” does not exist in the dropdown list. The input must be non-empty.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSEShell(SEmaterial, Thickness, SEgeometry)
Shell: Create the structural element for a shell
Alias: seShellConstraints: 3 dimensions- Parameters:
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Thickness (Double) – Thickness: Thickness of the shell. Conditions: Value must be greater than 0.
SEgeometry (POCCQuad) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSEShell(SEmaterial, Thickness, SEgeometries)
Shell: Create the structural element for a shell
Alias: seShellConstraints: 3 dimensions- Parameters:
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Thickness (Double) – Thickness: Thickness of the shell. Conditions: Value must be greater than 0.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSEShell(Name, SEmaterial, Thickness, SEgeometry)
Shell: Create the structural element for a shell
Alias: seShellConstraints: 3 dimensions- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Thickness (Double) – Thickness: Thickness of the shell. Conditions: Value must be greater than 0.
SEgeometry (POCCQuad) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSEShell(Name, SEmaterial, Thickness, SEgeometries)
Shell: Create the structural element for a shell
Alias: seShellConstraints: 3 dimensions- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Thickness (Double) – Thickness: Thickness of the shell. Conditions: Value must be greater than 0.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSEShellDummy(DummySolid3DList, DummyGeometryList)
Dummy Shell: Create the structural element for a dummy shell from solids 3D
Alias: seShellDummyConstraints: 3 dimensions- Parameters:
DummySolid3DList (PVectorConst) – Solids 3D: List with the solids 3d used to create the shell. Conditions: “” does not exist in the dropdown list.
DummyGeometryList (List) – Geometries: List with the geometries used to create the shell from solids 3d. Conditions: “” does not exist in the dropdown list.
- createSEShellDummy(Name, DummySolid3DList, DummyGeometryList)
Dummy Shell: Create the structural element for a dummy shell from solids 3D
Alias: seShellDummyConstraints: 3 dimensions- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
DummySolid3DList (PVectorConst) – Solids 3D: List with the solids 3d used to create the shell. Conditions: “” does not exist in the dropdown list.
DummyGeometryList (List) – Geometries: List with the geometries used to create the shell from solids 3d. Conditions: “” does not exist in the dropdown list.
- createSESolid2d(SEmaterial, SEtype, SEgeometry)
Solid: Create the structural element for a solid
Alias: seSolid2dConstraints: 2 dimensions- Parameters:
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Enumerate – { Sol2DPStress, Sol2DPStrain } SEtype: Type: Type of structural object.
SEgeometry (POCCQuad) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSESolid2d(SEmaterial, SEtype, SEgeometries)
Solid: Create the structural element for a solid
Alias: seSolid2dConstraints: 2 dimensions- Parameters:
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Enumerate – { Sol2DPStress, Sol2DPStrain } SEtype: Type: Type of structural object.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSESolid2d(SEmaterial, SEtype, Sol2DThickness, SEgeometry)
Solid: Create the structural element for a solid
Alias: seSolid2dConstraints: 2 dimensions- Parameters:
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Enumerate – { Sol2DPStress, Sol2DPStrain } SEtype: Type: Type of structural object.
Sol2DThickness (Double) – Thickness: Thickness of the plane stress model.
SEgeometry (POCCQuad) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSESolid2d(Name, SEmaterial, SEtype, SEgeometry)
Solid: Create the structural element for a solid
Alias: seSolid2dConstraints: 2 dimensions- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Enumerate – { Sol2DPStress, Sol2DPStrain } SEtype: Type: Type of structural object.
SEgeometry (POCCQuad) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSESolid2d(SEmaterial, SEtype, Sol2DThickness, SEgeometries)
Solid: Create the structural element for a solid
Alias: seSolid2dConstraints: 2 dimensions- Parameters:
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Enumerate – { Sol2DPStress, Sol2DPStrain } SEtype: Type: Type of structural object.
Sol2DThickness (Double) – Thickness: Thickness of the plane stress model.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSESolid2d(Name, SEmaterial, SEtype, SEgeometries)
Solid: Create the structural element for a solid
Alias: seSolid2dConstraints: 2 dimensions- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Enumerate – { Sol2DPStress, Sol2DPStrain } SEtype: Type: Type of structural object.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSESolid2d(Name, SEmaterial, SEtype, Sol2DThickness, SEgeometry)
Solid: Create the structural element for a solid
Alias: seSolid2dConstraints: 2 dimensions- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Enumerate – { Sol2DPStress, Sol2DPStrain } SEtype: Type: Type of structural object.
Sol2DThickness (Double) – Thickness: Thickness of the plane stress model.
SEgeometry (POCCQuad) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSESolid2d(Name, SEmaterial, SEtype, Sol2DThickness, SEgeometries)
Solid: Create the structural element for a solid
Alias: seSolid2dConstraints: 2 dimensions- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
Enumerate – { Sol2DPStress, Sol2DPStrain } SEtype: Type: Type of structural object.
Sol2DThickness (Double) – Thickness: Thickness of the plane stress model.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSESolid3d(SEmaterial, SEgeometry)
Solid: Create the structural element for a solid
Alias: seSolid3dConstraints: 3 dimensions- Parameters:
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
SEgeometry (POCCCylinder) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSESolid3d(SEmaterial, SEgeometries)
Solid: Create the structural element for a solid
Alias: seSolid3dConstraints: 3 dimensions- Parameters:
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSESolid3d(Name, SEmaterial, SEgeometry)
Solid: Create the structural element for a solid
Alias: seSolid3dConstraints: 3 dimensions- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
SEgeometry (POCCCylinder) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSESolid3d(Name, SEmaterial, SEgeometries)
Solid: Create the structural element for a solid
Alias: seSolid3dConstraints: 3 dimensions- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
SEmaterial (MaterialConcrete) – Material: Structural element material . Conditions: “” does not exist in the dropdown list. The input must be non-empty.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSETruss(CrossSectionI, CrossSectionJ, SEgeometry)
Truss: Create the structural element for a truss
Alias: seTruss- Parameters:
CrossSectionI (Entity) – Cross Section I: Cross section at end I. Conditions: “” does not exist in the dropdown list. The input must be non-empty.
CrossSectionJ (Entity) – Cross Section J: Cross section at end J. Conditions: “” does not exist in the dropdown list.
SEgeometry (POCCGeomAxis) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSETruss(CrossSectionI, CrossSectionJ, SEgeometries)
Truss: Create the structural element for a truss
Alias: seTruss- Parameters:
CrossSectionI (Entity) – Cross Section I: Cross section at end I. Conditions: “” does not exist in the dropdown list. The input must be non-empty.
CrossSectionJ (Entity) – Cross Section J: Cross section at end J. Conditions: “” does not exist in the dropdown list.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSETruss(Name, CrossSectionI, CrossSectionJ, SEgeometry)
Truss: Create the structural element for a truss
Alias: seTruss- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
CrossSectionI (Entity) – Cross Section I: Cross section at end I. Conditions: “” does not exist in the dropdown list. The input must be non-empty.
CrossSectionJ (Entity) – Cross Section J: Cross section at end J. Conditions: “” does not exist in the dropdown list.
SEgeometry (POCCGeomAxis) – Geometry: Structural element geometry. Conditions: “” does not exist in the dropdown list.
- createSETruss(Name, CrossSectionI, CrossSectionJ, SEgeometries)
Truss: Create the structural element for a truss
Alias: seTruss- Parameters:
Name (str) – Name. Conditions: “” input must be non-empty.
CrossSectionI (Entity) – Cross Section I: Cross section at end I. Conditions: “” does not exist in the dropdown list. The input must be non-empty.
CrossSectionJ (Entity) – Cross Section J: Cross section at end J. Conditions: “” does not exist in the dropdown list.
SEgeometries (List) – Geometries: Geometries attached to structural elements. Conditions: “” does not exist in the dropdown list.
- createSubSE(entity, GeomList)
Adds a sub-element: Creates a sub-structural element
- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
GeomList – Geometry list.
- meshSECongruent(entity)
Mesh congruent: Mesh auto-detecting common parts
- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
- meshSESelected(entity)
Mesh: Mesh the structural elements
Alias: meshSE- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
- removeLocalMeshTool(entity, LocalMeshToolList)
Remove local control: Remove a local mesh control from the structural element
Alias: removeLMT- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
LocalMeshToolList (List) – Mesh controls list.
- removeLocalMeshTool(entity, LocalMeshTool)
Remove local control: Remove a local mesh control from the structural element
Alias: removeLMT- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
LocalMeshTool (Entity) – Mesh controls. Conditions: The input must be non-empty.
- removeSolidSection(entity, SolidSections)
Remove solid section: Remove a solid section from the structural element
- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
SolidSections (List) – Solid sections: List with the solid sections created in this structural element.
- removeSubSE(entity, GeomList)
Removes a sub-element: Removes a sub-structural element
- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
GeomList – Geometry list.
- reverseOrientation(entity)
Reverse: Reverse the orientation
- Parameters:
entity ([Entity]) – Entity/Entities to apply the command
- StructuralElement(EntityName)
Obtains an entity given its name
- Parameters:
EntityName (str) – Entity name.
- StructuralElementsModelGroup(GroupName)
Obtains a group given its name
- Parameters:
GroupName (str) – Group name.