HyperMesh is a high-performance Finite Element Analysis (FEA) pre-processing software developed by Altair Engineering. It is widely used in industries such as automotive, aerospace, defense, and industrial machinery to create finite element models for structural, thermal, and fluid analyses.
HyperMesh provides a powerful, efficient, and user-friendly environment for geometry import, mesh generation, and model setup, enabling engineers to prepare complex models for simulation quickly and accurately. Its advanced meshing capabilities ensure high-quality, reliable meshes, which are critical for accurate analysis results.
Essential for engineers in CAE, FEA, and structural simulation fields.
Reduces errors and preparation time for complex simulation models.
Enables high-quality mesh generation for accurate, reliable analysis results.
Prepares learners for careers in automotive, aerospace, defense, and manufacturing industries.
High-Quality Meshing – Generates 1D, 2D, and 3D meshes for structural and thermal simulations.
Geometry Cleanup & Preparation – Import CAD models and prepare them for analysis efficiently.
Advanced Solver Interfaces – Compatible with solvers such as OptiStruct, Abaqus, ANSYS, and LS-DYNA.
Parametric & Automated Workflows – Automate repetitive tasks and manage large assemblies effectively.
Visualization & Quality Checks – Ensure mesh quality and integrity before simulation.
Industry Applications – Used in automotive crash analysis, aerospace structural analysis, and mechanical component simulations.
Crashworthiness and impact analysis of vehicles.
Structural analysis of chassis, suspension, and body components.
Finite element modeling of aircraft structures and components.
Stress, thermal, and vibration analysis for aerospace systems.
Structural and thermal analysis of machinery and mechanical components.
Fatigue and durability studies for critical parts.
Prepare CAD models for simulation and optimize design before production.
Mesh generation for molds, dies, and tooling components.
Coupled structural, thermal, and dynamic analysis.
Integration with solvers such as OptiStruct, Abaqus, LS-DYNA for simulation-driven design.
By the end of this course, learners will be able to:
Import and clean CAD geometry to prepare models for finite element analysis.
Generate high-quality meshes for 1D, 2D, and 3D elements suitable for structural and thermal simulations.
Set up finite element models including material properties, boundary conditions, and loads.
Work with assemblies and manage large models efficiently.
Perform mesh quality checks and optimization to ensure accurate simulation results.
Integrate HyperMesh with solvers such as OptiStruct, Abaqus, and LS-DYNA for analysis.
Prepare simulation-ready models for crash, vibration, thermal, and structural studies.
Automate repetitive tasks and parametric workflows to save time and improve efficiency.
Interpret and troubleshoot meshing and model issues to ensure reliability.
Apply HyperMesh skills to real-world engineering projects in automotive, aerospace, mechanical, and industrial applications.
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