Importing Finite Element Data from a V4 Model

This task shows you how to import finite element data from a V4 model.
This import is based only on a result review.

The following V4 entities will be transferred:

  • FEM Model: mesh, selections, elements, materials, properties, axis system.
  • Preprocessing Specifications: restraints, loads, NS-masses.
 

Only available with the ELFINI Structural Analysis (EST) product.

 
  • The import of V4 data is only available for V4 models created using the CATIA FEA (Level 1.1 to Level 1.9) Tables. The Super-Elements, Thermal analysis, Axi-Symmetric analysis or Coupled analysis are not taken into account.
  • Before importing a V4 model, make sure the model has been saved in the ANPHYSIC, ANVISU or ANELFINI V4 functions or using a batch utility were GFIENV (mode 2) has been called.
  • The following entities are not transferred:
    • History file
    • ANMESH and ANSOLID specification
    • Links between geometry and Finite Element Model entities
    • Images
    • Solver entities (for example: matrices).
       
 
  1. Open a new .CATAnalysis.

  2. Right-click the Links Manager.1 set in the specification tree.

  3. Select the Import contextual menu .

    The File Selection dialog box appears.

  4. Select CATIA V4 model as Type of file option.

  5. Select the desired V4 model (.model).

  6. Click OK in the File Selection dialog box.

    You can find here an example of the result in the specification tree of a V4 model import.

 

Synchronizing

If the model has been modified outside of the V5 session, you can synchronize all the features of the analysis document with the performed modifications.
This functionality is limited for small changes in the model: mesh, material, properties or existing sets (Restraints, Loads, Masses).
Do not use the synchronization to replace a model by an other one.

The synchronization scans the V5 features that are concerned by an import, tries to retrieve the V4 objects that have provided the values for import.
If the V4 objects are not found, the V5 feature is deleted.
If the V4 object are found, the previous version of import is replaced by a new one and the list of V4 families (features under the Imported Mesh set) is also updated.

To synchronize:

  1. Double-click Link to File under the Links Manager.1 in the V5 specification tree.

    The Synchronize with Model dialog box appears.

  2. Click Synchronize if the Synchronization status is set to Not synchronized with source.

  3. Click OK.

 

You will find here the correspondence between V4 finite element data and V5 finite element data:

 
 

Mesh

All transferred meshes are grouped in one single mesh part under the Nodes and Elements set (in the V5 specification tree).

For connection mesh parts, it is possible to move some nodes of this mesh part according to some geometry constraints.

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Selections

All V4 SLG elements are automatically transferred as V5 user groups.
One V5 group entity is automatically created for each V4 SLG under the Groups set in the V5 specification tree.

You cannot modify transferred groups in a V5 session.

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Elements

The following tables give you the correspondence capabilities.

Membrane Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

TR3

TR3

Linear Triangle

Membrane
Composite Shell
Homogeneous Composite Shell

TR6

TR6

Parabolic Triangle

Membrane
Composite Shell
Homogeneous Composite Shell

QD4

QD4

Linear Quadrangle

Membrane
Composite Shell
Homogeneous Composite Shell

QD8

QD8

Parabolic Quadrangle

Membrane
Composite Shell
Homogeneous Composite Shell

Shear Panel Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

QD4SHEAR

QD4

Linear Quadrangle

Shear Panel
Composite Shell
Homogeneous Composite Shell

Shell Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

TR3S

TR3

Linear Triangle

Shell
Composite Shell
Homogeneous Composite Shell

TR6S

TR6

Parabolic Triangle

Shell
Composite Shell
Homogeneous Composite Shell

QD4S

QD4

Linear Quadrangle

Shell
Composite Shell
Homogeneous Composite Shell

QD8S

QD8

Parabolic Quadrangle

Shell
Composite Shell
Homogeneous Composite Shell

TR3S-HG

TR3

Linear Triangle

Homogeneous Composite Shell

TR6S-HG

TR6

Parabolic Triangle

Homogeneous Composite Shell

QD4S-HG

QD4

Linear Quadrangle

Homogeneous Composite Shell

QD8S-HG

QD8

Parabolic Quadrangle

Homogeneous Composite Shell

Beam Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

BEAM

BAR

Beam

Beam

BEAMV

BAR

Beam

Beam

BEAM-AEC

BAR

Beam

Beam

Bar Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

BAR

BAR

Linear Bar

Bar

BAR3

BAR

Parabolic Bar

Bar

Volume Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

TE4

TE4

Linear Tetrahedron

Solid

TE10

TE10

Parabolic Tetrahedron

Solid

WE6

WE6

Linear Pentahedron

Solid

WE6TE

Not transferred

WE15

WE15

Parabolic Pentahedron

Solid

HE8

HE8

Linear Hexahedron

Solid

HE8TE

Not transferred

HE20

HE20

Parabolic Hexahedron

Solid

Spring, Contact and Kinematics Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

SPRING

BAR

Spring

Spring

CONTACT

BAR

Contact Rod

Contact

RIG_BEAM

BAR

Rigid Beam

Rigid Body Motion

CLAMP_2

BAR

Rigid Beam

Rigid Body Motion

BALL_2

BAR

Rigid Beam

Rigid Body Motion

SLIDER_2

BAR

Rigid Beam

Rigid Body Motion

HINGE_2

BAR

Rigid Beam

Rigid Body Motion

ACTUATOR_2

BAR

Rigid Beam

Rigid Body Motion

RIG_BAR

BAR

Rigid Bar

Rigid Body Motion

RIG_CONN

Not transferred

CLAMP_3_R

Not transferred

BALL_3_R

Not transferred

SLIDER_3_R

Not transferred

HINGE_3_R

Not transferred

ACTUATOR_3_R

Not transferred

HINGE_3_N

Not transferred

ACTUATOR_3_N

Not transferred

CONSTR_3

SPIDER

Smooth Spider

Smooth Body Motion

CONSTR_4

SPIDER

Smooth Spider

Smooth Body Motion

CONSTR_5

SPIDER

Smooth Spider

Smooth Body Motion

CONSTR_N 

SPIDER

Smooth Spider

Smooth Body Motion

JOIN

SPIDER

Fastened Join

Smooth Body Motion

JOIN_RR

SPIDER

Fastened Join

Smooth Body Motion

JOIN_RT

SPIDER

Fastened Join

Smooth Body Motion

HOLE

Not transferred

Quasi-3D Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

TR3-Q3D

Not transferred

QD4-Q3D

Not transferred

TR6-Q3D

Not transferred

QD8-Q3D

Not transferred

Nearly Incompressible Volume Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

HE8I

Not transferred

Conductivity Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

BAR-TH

Not transferred

BAR3-TH

Not transferred

TR3-TH

Not transferred

QD4-TH

Not transferred

TR6-TH

Not transferred

QD8-TH

Not transferred

TE4-TH

Not transferred

WE6-TH

Not transferred

HE8-TH

Not transferred

TE10-TH

Not transferred

WE15-TH

Not transferred

HE20-TH

Not transferred

Convection Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

POINT-CONV

Not transferred

EDGE-CONV

Not transferred

EDGE3-CONV

Not transferred

FACE3-CONV

Not transferred

FACE4-CONV

Not transferred

FACE6-CONV

Not transferred

FACE8-CONV

Not transferred

3D-Axis-Symmetric Elements

V4 Elements

V5 Elements

Element

Connectivity

Element

Property

AXI3

Not transferred

AXI4

Not transferred

AXI6

Not transferred

AXI8

Not transferred

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Material

All transferred materials are grouped in one single object under the Materials set in the V5 specification tree.

The following table gives you all the correspondence capabilities:

V4 Materials

V5 Materials

ISOTROPIC

Isotropic Material

ORTHOTROP

Orthotropic Material

FIBER

Fiber Material

HONEYCOMB

Honey Comb Material

ISO-TH

Not transferred

ORTHO-TH

Not transferred

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Properties

All transferred properties are grouped in one single object under the Properties set in the V5 specification tree.

Any new property applied on V4 transferred elements will overload existing properties.
 

The following table gives you all the correspondence capabilities:

V4 Properties

V5 Properties

STANDARD

Membrane
Shear Panel
Shell
Solid
Beam
Bar
Spring
Contact
Rigid Body Motion
Smooth Body Motion

ORTHOTROP

Composite Shell
Homogeneous Composite Shell
Solid

SFIBER-SY

Composite Shell
Homogeneous Composite Shell

SFIBER-NSY

Composite Shell
Homogeneous Composite Shell

MFIBER-SY

Composite Shell
Homogeneous Composite Shell

MFIBER-NSY

Composite Shell
Homogeneous Composite Shell

SCOMP-SY

Composite Shell
Homogeneous Composite Shell

SCOMP-NSY

Composite Shell
Homogeneous Composite Shell

MCOMP-SY

Composite Shell
Homogeneous Composite Shell

MCOMP-NSY

Composite Shell
Homogeneous Composite Shell


The V4 property does not have any sense without an associated element.
For more details about the combination between elements and properties, you can also refer to the Elements section.

This is an example for the TR3S V4 element:

V4 Associated Properties

V5 Properties

STANDARD

Shell

ORTHOTROP

Homogeneous Composite Shell

SCOMP-SY

Composite Shell

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Axis System

The following table gives you all the correspondence capabilities:

V4 Axis System

V5 Axis System

TOPO1D

Orientation Vector

LOCAL2D

Local Axis
Material Angle *

LOCAL3D

Local Axis

AXIS1

Orientation Vector

AXIS2

Local Axis (Cartesian)

CAXIS

Local Axis (Cylindrical)

SAXIS

Local Axis (Spherical)

* only if the V4 property is FIBER or COMP.

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Preprocessing

All transferred preprocessing data are grouped in one single object under the All V4 Preprocessing Sets set in the V5 specification tree.


 

Loads and Masses

If the V4 model contains only computed data (from Compute and Purge option of the CATMSH utility), the data are transferred as preprocessing data.

For data stored in External Storage, the transfer requires DLName declaration both in V4 and V5.
Indeed, the external storage directory used for the V4 model computed data must be declared with DLName.
If it is not the case, the DLName association must be done in the V4 environment.

The path of this external storage directory must be associated with the same DLName in V5 document environment (Tools > Options > General > Document). DLName is not required for other files (V4 model or CATAnalysis containing an imported model).

When importing the V4 model, it is not necessary to make the DLName the current environment.

Note that you can transfer V4 external storage on Windows (by FTP) and work fully on Windows.

Restraints

One V4 Restraint set is converted into a V5 Restraint object.
All the entities of a V4 Restraint set are grouped in one single object in the V5 specification tree (this V5 object is created but hidden).

The following table gives you all the correspondence capabilities:

V4 Restraints

V5 Restraints

RESTRAINT

Displacement Restraint

TEMPERATUR

Not transferred

Masses

One V4 NS_Mass set is converted into one V5 Mass object.
All the entities of one V4 set are grouped in one single object in the V5 specification tree but (this V5 object is created but hidden).

The following table gives you all the correspondence capabilities:

V4 NS_Mass

V5 Masses

MANUALM

Point Mass

LMASS

Line Mass

SMASS

Surface Mass

STRUCTURAL

Not transferred

Axis-symmetric Loads

The following table gives you all the correspondence capabilities:

V4  Axis-symmetric Loads

V5  Axis-symmetric Loads

AX-MANUAL

Not transferred

AX-DISP

Not transferred

AX-PRESS

Not transferred

AX-SFLOW

Not transferred

AX-VFLOW

Not transferred

AX-LFLOW

Not transferred

AX-GRAVITY

Not transferred

THERMAL

Not transferred

AX-ROT

Not transferred

Thermal Loads

The following table gives you all the correspondence capabilities:

V4 Thermal Loads

V5 Thermal Loads

TEMPERATUR

Not transferred

PHEAT-RATE

Not transferred

LHEAT-RATE

Not transferred

SHEAT-RATE

Not transferred

VHEAT-RATE

Not transferred

Loads

One V4 Load set is converted into one V5 Load object.
All the entities of one V4 set are grouped in one single object in the V5 specification tree (this V5 object is created but hidden).

Combined load cases are transferred as any standard load case.

The following table gives you all the correspondence capabilities:

V4  Loads

V5 Loads

MANUAL

Distributed Force (point as support)
Moment  (point as support)

DISP

Enforced Displacement

PRESSURE

Pressure

SFLOW

Surface Force Density

VFLOW

Volume Force Density

LFLOW

Line Force Density

LFLOWM

Not transferred

GRAVITY

Translation Acceleration

CONTACT

Bearing Load

THERMAL

Temperature Field (at element)

THERMAL-S

Temperature Field (at element)

TEMP. MAP.

Not transferred

L-FORCE

Not transferred

C-MOMENT

Not transferred

ROT-ACCEL

Rotation

EDGE-PRESS

Not transferred

NFLOW

Not transferred

SELF-BALANCING

Self-balancing (load edition)

 

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