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2-D to 3-D Analysis Restrictions

Contacts, Targets, and Boundary Conditions

The extrusion process generates the 3-D contact and target elements with the solid elements. All 2- D rigid target elements are deleted, and corresponding 3-D rigid target elements are generated.

When you issue the MAP2DTO3D,START,LDSTEP,SBSTEP command followed by the EEXTRUDE command, boundary conditions, pressure loads, applied nodal forces, applied nodal displacements, and applied nodal temperatures are transferred automatically from the 2-D mesh to the corresponding entities in the extruded 3-D mesh. (If you specify the MAP2DTO3D command’s NOBC option, none

of those attributes except for the nodal temperatures transfer to the extruded 3-D mesh.)

After extrusion, proceed to Step 4: Map Solution Variables from 2-D to 3-D Mesh (p. 161).

6.4.4. Step 4: Map Solution Variables from 2-D to 3-D Mesh

Issue the MAP2DTO3D,FINISH command to map the solved node and element solutions automatically from the original 2-D mesh to the new 3-D mesh.

No residual balancing is done and only the solution variables are mapped from the 2-D mesh to the extruded 3-D mesh.

After mapping solution variables to the 3-D mesh, proceed to Step 5: Perform an Initial-State-Based 3- D Analysis (p. 161).

6.4.5. Step 5: Perform an Initial-State-Based 3-D Analysis

After successfully mapping the solved variables from the old 2-D mesh to the new 3-D mesh, you can continue your 3-D analysis by reading in the 2-D to 3-D results as initial state conditions (INISTATE,READ) and adding new loads for the 3-D analysis.

For more information, see Initial State in the Basic Analysis Guide.

6.5. 2-D to 3-D Analysis Restrictions

The following limitations apply to a 2-D to 3-D analysis:

You cannot use remeshing commands within the 2-D to 3-D analysis environment (after MAP2DTO3D,START and before MAP2DTO3D,FINISH). The incompatible commands include REMESH,READ, REMESH,SPLIT,

and AREMESH.

Axisymmetric extrusion with zero offset of nodes about the Y axis is not supported.

2-D plane stress (KEYOPT(3) = 0 or KEYOPT(3) = 3) and generalized plane strain (KEYOPT(3) = 5) elements are not supported.

Layered or reinforced solid elements are not supported.

Enhanced strain element technology is not supported.

2-D to 3-D analysis is not available in Distributed ANSYS.

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of ANSYS, Inc. and its subsidiaries and affiliates.

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of ANSYS, Inc. and its subsidiaries and affiliates.