Rapidly change the shape of the FE mesh without severely sacrificing the mesh quality and create, edit, and apply
shapes for subsequent design optimization studies.
Examples of a typical workflow that can be followed to define a composite model in HyperMesh. The order of steps provided does not need to be strictly followed but should be used as a template.
Use the Composites panel to assign and review the element material orientation of a mesh of shell and continuum shell
elements, or to review the fiber direction (ply angle) of individual composite layers.
Kinematic Drape provides methods to predict manufacturability of composite parts with challenging shapes and to align
material direction for the structural simulation. Draping simulation predicts how the orientation of a ply will change
as the ply is placed in a tool/mold.
Composite stress toolbox functionality which supports calculation of engineering constants, compliance and stiffness
matrices, parameterized joint and panel analysis, and other traditional hand-calculation methods.
The Design Space environment is dedicated to topology optimization model build and setup. It facilitates rapid model creation by generating
the voxel design space for a number of different use cases.
Many essential utility tools using HyperWorks-Tcl have been developed over the years to support Aerospace customers. A few tools have been collected and upgraded to
be compatible with this release.
Composites Panel
Use the Composites panel to assign and review the element material orientation of a mesh of shell and continuum shell elements, or to review the fiber direction (ply angle) of individual composite layers.
Kinematic Drape
Kinematic Drape provides methods to predict manufacturability of composite parts with challenging shapes and to align material direction for the structural simulation. Draping simulation predicts how the orientation of a ply will change as the ply is placed in a tool/mold.