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02 Draw right part
SnejNielsen
169 подписчиков
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200 видео с канала:
SnejNielsen
02 Draw right part
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04 left part assign beam section orientation, render profile
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01 Draw left part
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05 left part seed, element type, mesh and check
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03 left part section, profile, material
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ExII 01 change geometry and regenerate
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05 select element type
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17 Change From Charniere To Fixed
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17 Export plots to an image
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18 Export plots to text
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09 Generate the inp file
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ResidualStress simple
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01 Work directory and save model
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21 Display node and element numbers
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13 create job and submit for analysis
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08 Verify the mesh
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06 right part section to mesh
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09 Partition for load and remesh
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12 FieldOutputRequest
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07 Display element numbers and node numbers
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15 Make an X Y plot of two field variables using combine
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06 Choose global element size and mesh part
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15 ShowDisplacements with max and min label
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05 Seed edge
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02 create part and draw geometry
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08 Apply supports and symmetry considitions
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07 Assemble parts
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11 open the result file odb in the visualization module
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20 Obtain information on the mesh and elements
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07 Assemble part
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ExternalLoad With Rstress as init
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02 Mesh control
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14 Extract the nodal reactionforces
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22 Change the deformationscale
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03 Assign section and materials to part
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01 Draw geometry
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ExternalLoad
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04 Choose mesh control Triangles or Quad
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10 Supports
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23 Show results for selected elements
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Buckling
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14 ShowSectionMoments
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11 Lineload
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06 Info on element and mesh
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16 Remesh
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16 Show the results along a path
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13 Show contourplots and change fontsize
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12 Show deformations
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09 Create a new step for the load and apply a concentrated force
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04 Global seeding og mesh
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03 Element type
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08 Charniere
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10 create a job and run the analysis
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24 Set the colorscale used for contourplots
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19 Find value in specific node by clicking
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ExII 03 change thinkness on an existing section
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07c Stress discontinuities
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ExII 10 operate on XY data
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2019-Blast-FEM_model_01
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05 Springs and Boundary conditions
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01 create part and draw fin
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08b Spring force
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ExII 05 Distributed load, both uniform and varying
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01 girder part using linear pattern
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07b Max principal stress and query of values
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11691 Buckling
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04 Mesh, element type and assembly
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ExII 02 datum plane and partition edge and face
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ExII 07 show discontinuities
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06 static step, loads and job
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I4
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02 Partition & Sets
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Plast01 Creating a plastic material
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02 joint part using trim, fillets and offset
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ExII 06 Define cylindrical coordinatesystem and transform stresses
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ExII 08 display only parts of the results eg for a specific material
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03 Section, materials and section assignments
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amplitude load
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09 Buckling
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swing motion
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Plast03 plot stress vs displacement
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ExII 09 path along a circle
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Plast02 Modifying time step and show results at different steps
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08a Reaction forces
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2019-Blast-Energy dissipating joint
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I2
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07a Show results for deflections
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ExII 04 assign multiple materials and sections
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03 assembly, using joint part as tool for cut in the girder
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ExV coupling constrain and move instance
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01 position cutting tool
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02 perform cut
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03 Create part and scale the sketch
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02 Import Iges file to a sketch
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01 AutoCAD export as IGES file
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ExV Create Step, BC's, Load, Field Output, Run Job, see some results
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ExV coupling constraint
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ExV Assemble and place the two parts
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ExV initially created parts
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ExV section forces
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ExV Create step, apply concentrated load and run analysis
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ExV Assembly and set BC
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ExV Seed and choose elements
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ExV Create and assign section and beam orientation
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ExV Creating a part containing a wire
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Exercise35 q1 2 Orientation,elementType,meshSeed
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Exercise35 q1 1 part,section,material
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Exercise35 q1 3 Assemble,BoundaryConditions
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Exercise35 q3 3 plot LPF as a function of the displacement at a node
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Exercise35 q1 4 BuckleStep,apply shell edge load, run job, find eigenvalues and modeshapes
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part5 section assignments
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part1 Sketch Geometry
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part21 Inplane loading
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PythonScript in JNL file
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part15 Update the section assignment
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part12 Creating job and submit
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part10 New step static step
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part13 Include non linear geometric effects
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Exercise35 q3 2 ChangeStep,changeloads,LPF
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part2 partition
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part9 Supports
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part17 Viscoelastic material for the interlayer
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Exercise35 q3 4 CheckTheImperfectionForces
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part18 Viscoelastic material for the interlayer
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part11 Loading, uniform lateral load
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Exercise35 q2 2 MembraneForces,Eigenvalues and mode shapes
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PythonScript in MacroFile file
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part20 Buckle Step
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part19 Viscoelastic material for the interlayer
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Exercise35 q3 1 Partition,remesh
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part8 Assembly
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part3 material definitions
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SC 1 part03 SectionDefinition
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02 OrthotropicMaterial
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part6 elementtype
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part7 seeding and meshing
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Exercise35 q2 1 StaticStep,selfweight,pressure,run
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03 PitFEM Assembly, initial condition using analytical expression
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part14 new section definition for solid elements
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part16 Changing elementtype for the interlayer
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part4 section definitions
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SC 1 part07 Assembly
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SC 1 part05 SelectingElementType
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PitFEM Seeding edge biased and mesh part
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part22 viewing egenvalues and buckling modes
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03 PitFEM coupled Elementtype and meshing
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PitFEM Partition face and Datum plane
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SC 1 part09 Step
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SC 1 part10 Load
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SC 1 part11 Submit analysis
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05 PitFEM heat Create and run job, show temperature contour plot
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04 PitFEM heat Create new step and apply temperature BC and convection BC
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OrthotropicMaterial PlaneStress
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SC 1 part02 Material
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06 PitFEM heat TimePoints and output request
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SC 1 part13 Maco in the Visulisation module
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PitFEM Partition edge and Datum point
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SC 1 part08 Supports and symmetry conditions
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SC 1 part01 Geometry and scripting
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01 CreatePartAxisymmetric
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SC 1 part12 StressTransformation
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01 PitFEM heat Part,section,material
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DTIC til DS
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SC 1 part06 SeedingElements & Meshing
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SC 1 part04 AssignSection
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02 PitFEM Element type, seeding and mesh
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MaterialOrientation
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13 ElementType
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10 CreateSections Homogenous
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13 GlobalSeeding
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07 PartitionAnEdgeUsingDatumPoint
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11 AssignSections
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09 Material LineElastic
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08 SaveSet
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06 DefineDatumPoint enterParameter
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12 AssignMeshControl
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defineTemperature
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07 PitFEM largeDeflec Create step and apply a pressure load
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02 PitFEM coupled Create coupled step
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05 PitFEM largeDeflec Seed the mesh, select elements and mesh the part
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01 PitFEM coupled create 3D part
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09 PitFEM largeDeflec Create job and submit the analysis
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DefineTRSmaterial
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01 PitFEM largeDeflec create part
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08 PitFEM largeDeflec Add section forces SF to the field output
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05 SupressResumeDelete a partition
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10 PitFEM largeDeflec Display output at different section points
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11 PitFEM largeDeflec Creating a part using a spline
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06 PitFEM largeDeflec Assembly and create support,symmetry conditions
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12 PitFEM largeDeflec Geometrically non linear analysis switch on off
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03 PartitionDatumnplane
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04 PartitionUsingSketch
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39 PlotXY Stress Displacement
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40 TransformingStressesToCylindricalCoordinateSystem
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15 SeedEdgeBiased
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02 Datumn plane
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18 SupportsInInitialStep
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19 ConcentratedForce
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03 PitFEM largeDeflec Create and assign section and material properties
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02 PitFEM largeDeflec Partition edge and create sets
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Канал: SnejNielsen
02 Draw right part
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04 left part assign beam section orientation, render profile
Скачать
01 Draw left part
Скачать
05 left part seed, element type, mesh and check
Скачать
03 left part section, profile, material
Скачать
ExII 01 change geometry and regenerate
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05 select element type
Скачать
17 Change From Charniere To Fixed
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17 Export plots to an image
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18 Export plots to text
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09 Generate the inp file
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ResidualStress simple
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01 Work directory and save model
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21 Display node and element numbers
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13 create job and submit for analysis
Скачать
08 Verify the mesh
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06 right part section to mesh
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09 Partition for load and remesh
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12 FieldOutputRequest
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07 Display element numbers and node numbers
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15 Make an X Y plot of two field variables using combine
Скачать
06 Choose global element size and mesh part
Скачать
15 ShowDisplacements with max and min label
Скачать
05 Seed edge
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02 create part and draw geometry
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08 Apply supports and symmetry considitions
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07 Assemble parts
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11 open the result file odb in the visualization module
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20 Obtain information on the mesh and elements
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07 Assemble part
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ExternalLoad With Rstress as init
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02 Mesh control
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14 Extract the nodal reactionforces
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22 Change the deformationscale
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03 Assign section and materials to part
Скачать
01 Draw geometry
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ExternalLoad
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04 Choose mesh control Triangles or Quad
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10 Supports
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23 Show results for selected elements
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Buckling
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14 ShowSectionMoments
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11 Lineload
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06 Info on element and mesh
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16 Remesh
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16 Show the results along a path
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13 Show contourplots and change fontsize
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12 Show deformations
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09 Create a new step for the load and apply a concentrated force
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04 Global seeding og mesh
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03 Element type
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08 Charniere
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10 create a job and run the analysis
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24 Set the colorscale used for contourplots
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19 Find value in specific node by clicking
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ExII 03 change thinkness on an existing section
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07c Stress discontinuities
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ExII 10 operate on XY data
Скачать
2019-Blast-FEM_model_01
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05 Springs and Boundary conditions
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01 create part and draw fin
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08b Spring force
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ExII 05 Distributed load, both uniform and varying
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01 girder part using linear pattern
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07b Max principal stress and query of values
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11691 Buckling
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04 Mesh, element type and assembly
Скачать
ExII 02 datum plane and partition edge and face
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ExII 07 show discontinuities
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06 static step, loads and job
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I4
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02 Partition & Sets
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Plast01 Creating a plastic material
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02 joint part using trim, fillets and offset
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ExII 06 Define cylindrical coordinatesystem and transform stresses
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ExII 08 display only parts of the results eg for a specific material
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03 Section, materials and section assignments
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amplitude load
Скачать
09 Buckling
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swing motion
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Plast03 plot stress vs displacement
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ExII 09 path along a circle
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Plast02 Modifying time step and show results at different steps
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08a Reaction forces
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2019-Blast-Energy dissipating joint
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I2
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07a Show results for deflections
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ExII 04 assign multiple materials and sections
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03 assembly, using joint part as tool for cut in the girder
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ExV coupling constrain and move instance
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01 position cutting tool
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02 perform cut
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03 Create part and scale the sketch
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02 Import Iges file to a sketch
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01 AutoCAD export as IGES file
Скачать
ExV Create Step, BC's, Load, Field Output, Run Job, see some results
Скачать
ExV coupling constraint
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ExV Assemble and place the two parts
Скачать
ExV initially created parts
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ExV section forces
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ExV Create step, apply concentrated load and run analysis
Скачать
ExV Assembly and set BC
Скачать
ExV Seed and choose elements
Скачать
ExV Create and assign section and beam orientation
Скачать
ExV Creating a part containing a wire
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Exercise35 q1 2 Orientation,elementType,meshSeed
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Exercise35 q1 1 part,section,material
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Exercise35 q1 3 Assemble,BoundaryConditions
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Exercise35 q3 3 plot LPF as a function of the displacement at a node
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Exercise35 q1 4 BuckleStep,apply shell edge load, run job, find eigenvalues and modeshapes
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part5 section assignments
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part1 Sketch Geometry
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part21 Inplane loading
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PythonScript in JNL file
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part15 Update the section assignment
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part12 Creating job and submit
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part10 New step static step
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part13 Include non linear geometric effects
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Exercise35 q3 2 ChangeStep,changeloads,LPF
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part2 partition
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part9 Supports
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part17 Viscoelastic material for the interlayer
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Exercise35 q3 4 CheckTheImperfectionForces
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part18 Viscoelastic material for the interlayer
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part11 Loading, uniform lateral load
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Exercise35 q2 2 MembraneForces,Eigenvalues and mode shapes
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PythonScript in MacroFile file
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part20 Buckle Step
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part19 Viscoelastic material for the interlayer
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Exercise35 q3 1 Partition,remesh
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part8 Assembly
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part3 material definitions
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SC 1 part03 SectionDefinition
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02 OrthotropicMaterial
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part6 elementtype
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part7 seeding and meshing
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Exercise35 q2 1 StaticStep,selfweight,pressure,run
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03 PitFEM Assembly, initial condition using analytical expression
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part14 new section definition for solid elements
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part16 Changing elementtype for the interlayer
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part4 section definitions
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SC 1 part07 Assembly
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SC 1 part05 SelectingElementType
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PitFEM Seeding edge biased and mesh part
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part22 viewing egenvalues and buckling modes
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03 PitFEM coupled Elementtype and meshing
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PitFEM Partition face and Datum plane
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SC 1 part09 Step
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SC 1 part10 Load
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SC 1 part11 Submit analysis
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05 PitFEM heat Create and run job, show temperature contour plot
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04 PitFEM heat Create new step and apply temperature BC and convection BC
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OrthotropicMaterial PlaneStress
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SC 1 part02 Material
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06 PitFEM heat TimePoints and output request
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SC 1 part13 Maco in the Visulisation module
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PitFEM Partition edge and Datum point
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SC 1 part08 Supports and symmetry conditions
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SC 1 part01 Geometry and scripting
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01 CreatePartAxisymmetric
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SC 1 part12 StressTransformation
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01 PitFEM heat Part,section,material
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DTIC til DS
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SC 1 part06 SeedingElements & Meshing
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SC 1 part04 AssignSection
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02 PitFEM Element type, seeding and mesh
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MaterialOrientation
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13 ElementType
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10 CreateSections Homogenous
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13 GlobalSeeding
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07 PartitionAnEdgeUsingDatumPoint
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11 AssignSections
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09 Material LineElastic
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08 SaveSet
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06 DefineDatumPoint enterParameter
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12 AssignMeshControl
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defineTemperature
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07 PitFEM largeDeflec Create step and apply a pressure load
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02 PitFEM coupled Create coupled step
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05 PitFEM largeDeflec Seed the mesh, select elements and mesh the part
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01 PitFEM coupled create 3D part
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09 PitFEM largeDeflec Create job and submit the analysis
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DefineTRSmaterial
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01 PitFEM largeDeflec create part
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08 PitFEM largeDeflec Add section forces SF to the field output
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05 SupressResumeDelete a partition
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10 PitFEM largeDeflec Display output at different section points
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11 PitFEM largeDeflec Creating a part using a spline
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06 PitFEM largeDeflec Assembly and create support,symmetry conditions
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12 PitFEM largeDeflec Geometrically non linear analysis switch on off
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03 PartitionDatumnplane
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04 PartitionUsingSketch
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39 PlotXY Stress Displacement
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40 TransformingStressesToCylindricalCoordinateSystem
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15 SeedEdgeBiased
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02 Datumn plane
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18 SupportsInInitialStep
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19 ConcentratedForce
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03 PitFEM largeDeflec Create and assign section and material properties
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02 PitFEM largeDeflec Partition edge and create sets
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