CDH-AG

ATD-TH50

MODEL DESCRIPTION

The ATD-TH50 Finite Element (FE) model is based on the NHTSA drawing set for the THOR-50 Male dummy hardware.

The experience of the set up and enhanced development of the ATD Hybrid III models were incorporated into the model. Therefore, users of this model will quickly recognize the familiar structure and system and will be able to use the ATD-TH50 easily.

Some characteristics of the ATD-TH50 are:

  • Signal designations according to ISO-MME
  • Easy introduction to handling thanks to the familiar model structure analogous to ATD-H3 models
  • Understanding of structure through realistic mapping of the geometries

Application:

  • Foreseen for future U.S. NCAP oblique impact test

FE Pre-Processors

  • GNS Generator4
  • Beta CAE Systems ANSA
  • ANSYS LS-PrePost
  • Altair HyperMesh
  • Oasys PRIMER

FE Solver

  • ANSYS LS-DYNA®*
  • ESI VPS PAM-CRASH*
  • Dassault Systèmes ABAQUS®*

* The trade names are the property of the owning companies.

ATD Model Features

  • High accuracy owing to physics-based modeling techniques
  • FE models available for industry standard explicit FE codes
  • Commonality of modeling standards for all dummy models
  • Uniform discretization, nomenclature and numbering systems
  • Same scripts for pre and post processing
  • Same session file and application procedures
  • Full utilization of code-specific features of each solver

Advantages for Users

  • Systematic title nomenclature refers to the assembly groups
  • Prefix in each title description allows a fast adjustment to the nomenclature of the load case
  • Numeration not overlapping the assembly groups
  • Advantage in pre and post processing
  • Allows selection of assembly parts and groups
  • Each assembly group close defined for itself
  • Definition regarding the master, e.g. contacts relate to the assembly group

TRIAL INSTALLATION

You can try this product free of charge for 30 days.

Request trial license

Got a question about this product? We’d love to hear from you!

Contact Person: Christian Pieper
Telephone:  
E-Mail: