[SIMULIA] Structural Analysis Engineer

Functional Value

Efficiently specify and apply spatially varying loads and pre-defined fields with the use of analytical expressions

Simulate the performance of large assemblies with an efficient user experience for defining bonding between components

Improve the computational accuracy of generalized polyhedral volumes with hex meshes using a midpoint subdivision algorithm

Define and re-use contact conditions between components across simulations by defining it as part of the model setup

Create high fidelity models of paperboard structures with the new Paperboard material options

Easily and reliably design to achieve a target life with the Factor of Strength (FOS) option in the durability case

User Experience Value

Efficiently assess fidelity of a FE model with the enhanced Model Checker options

Easily review the mesh quality matrix of selective meshes with the enhanced Quality Report

Select and group objects for more efficient set up, results exploration, and visibility control

I
Efficiently assess fidelity of a FE model with the enhanced and extended Model Checker options

I
Easily review the mesh quality matrix of selective meshes with the enhanced Quality Report

I
Efficiently specify and apply spatially varying loads and pre-defined fields with the use of analytical expressions

I
Simulate the performance of large assemblies with an efficient user experience for defining bonding between components

I
Improve the computational accuracy and efficiency of generalized polyhedral volumes with high-quality hex/hex-dominated meshes using a midpoint subdivision algorithm

I
Define and re-use contact conditions between components across simulations by defining contact as part of the model setup with the ability to refine the definitions during the scenario setup

I
Create high fidelity FE representations of paperboard structures with the new Paperboard material options

I
Select and group objects for more efficient set up, results exploration, and visibility control

I
Easily and reliably identify the intensity of stress change required to achieve a target design life highlighting opportunities to save material with the Factor of Strength (FOS) functionality in the durability case