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Completion In HYPERMESH(S-CH-7326)

  • Last updated Oct, 2026
  • Certified Course

Course Includes

  • Duration1 Month
  • Enrolled0
  • Lectures25
  • Videos0
  • Notes0
  • CertificateYes

What you'll learn

HyperMesh is a professional CAE pre-processing and finite element model preparation course designed for learners who want to develop practical skills in geometry cleanup, 1D/2D/3D meshing, mesh quality improvement, connectors, materials, properties, boundary conditions, and solver-ready model preparation.

The course provides hands-on exposure to the complete CAD-to-CAE workflow, starting from CAD geometry import and cleanup and progressing to advanced meshing, assembly connectivity, structural model preparation, automotive crash applications, morphing and automation concepts.

Students will learn how to create high-quality finite element models suitable for different engineering simulation workflows and understand the role of HyperMesh in structural, automotive, crash and other CAE applications.

What You Will Learn

  • HyperMesh interface and CAE workflow
  • CAD geometry import and preparation
  • Geometry cleanup and repair
  • 1D, 2D and 3D meshing
  • Shell and solid element concepts
  • Mesh quality checking and improvement
  • Node and element editing
  • Connectors and assembly modeling
  • Spot weld and fastener modeling concepts
  • Material and property assignment
  • Components and model organization
  • Boundary conditions and load preparation
  • Solver interfaces and input deck concepts
  • Structural analysis model preparation
  • Automotive and crash model preparation
  • Advanced meshing techniques
  • Morphing and model optimization
  • Tcl scripting and automation concepts
  • Complete CAE pre-processing projects

Who Can Join?

  • Mechanical Engineering Students
  • Automobile Engineering Students
  • Aerospace Engineering Students
  • Production Engineering Students
  • Industrial Engineering Students
  • Mechatronics Students
  • CAE/FEA Learners
  • Diploma Engineering Students
  • CAD/CAM Professionals
  • Mechanical Designers
  • Simulation Engineering Aspirants
  • Automotive CAE Professionals

Prerequisite

  • Basic computer knowledge
  • Basic engineering drawing knowledge
  • Basic understanding of mechanical engineering concepts
  • Basic knowledge of CAD is helpful
  • Fundamentals of FEA/CAE are beneficial but not mandatory

Course Outcome

After completing the course, learners will be able to:

  • Understand HyperMesh and CAE pre-processing workflows
  • Import and clean CAD geometry
  • Create 1D, 2D and 3D finite element meshes
  • Evaluate and improve mesh quality
  • Create and manage connectors
  • Assign materials and element properties
  • Prepare components and assemblies for simulation
  • Apply basic constraints and load definitions
  • Prepare solver-ready CAE models
  • Understand structural and crash model preparation
  • Perform advanced mesh editing and morphing
  • Understand automation and scripting concepts
  • Develop professional CAE pre-processing projects

Career & Learning Opportunities

  • HyperMesh Engineer Trainee
  • CAE Engineer Trainee
  • CAE Pre-Processing Engineer
  • FEA Engineer Trainee
  • CAE Analyst Trainee
  • Meshing Engineer
  • Automotive CAE Engineer Trainee
  • Crash Analysis Engineer Trainee
  • Simulation Engineer Trainee
  • Structural Analysis Engineer Trainee
  • CAD/CAE Engineer
  • CAE Model Preparation Engineer
  • Finite Element Modeling Engineer
  • Engineering Simulation Assistant
  • Automotive Simulation Project Assistant


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Course Syllabus

Module 1 – Introduction to HyperMesh

  • Introduction to Altair HyperMesh
  • Role of HyperMesh in CAE
  • Pre-processing concepts
  • HyperMesh interface and workspaces
  • Model navigation and visualization
  • CAE simulation workflow

Module 2 – Geometry Import & Model Setup

  • Importing CAD geometry
  • Supported CAD data concepts
  • Geometry cleanup
  • Model organization
  • Units and model setup
  • Geometry preparation for meshing

Module 3 – Geometry Cleanup & Repair

  • Identifying geometry defects
  • Surface connectivity
  • Gaps and overlaps
  • Free edges and duplicate surfaces
  • Surface trimming and editing
  • Geometry quality improvement

Module 4 – 1D Meshing

  • Introduction to 1D elements
  • Rod and beam elements
  • Creating connectors
  • Rigid elements
  • Spring and mass elements
  • 1D element quality checks

Module 5 – 2D Meshing

  • Introduction to shell elements
  • 2D mesh generation
  • Quads and trias
  • Mesh density and element size
  • Surface-based meshing
  • Mesh quality improvement

Module 6 – 3D Meshing

  • Introduction to solid elements
  • Tetrahedral meshing
  • Hexahedral meshing concepts
  • Volume meshing
  • 3D mesh refinement
  • Solid element quality checks

Module 7 – Mesh Quality & Quality Criteria

  • Importance of mesh quality
  • Element quality parameters
  • Aspect ratio
  • Skewness
  • Warpage
  • Jacobian and other quality criteria
  • Mesh quality optimization

Module 8 – Mesh Editing & Optimization

  • Moving and replacing nodes
  • Splitting and combining elements
  • Element deletion and creation
  • Mesh smoothing
  • Node equivalencing
  • Local mesh refinement
  • Automated mesh cleanup

Module 9 – Connectors & Assembly Modeling

  • Introduction to CAE connectors
  • Spot weld representation
  • Bolt and fastener modeling concepts
  • Seam connections
  • Rigid connections
  • Connector realization
  • Assembly connectivity

Module 10 – Materials & Property Definition

  • Material concepts in CAE
  • Material cards
  • Property creation
  • Shell thickness
  • Solid properties
  • Material assignment
  • Property organization

Module 11 – Component & Model Organization

  • Components and collectors
  • Model hierarchy
  • Entity organization
  • Naming conventions
  • Layer and visibility management
  • Model cleanup and management

Module 12 – Boundary Conditions & Load Preparation

  • Introduction to boundary conditions
  • Constraints and degrees of freedom
  • Load definitions
  • Force and pressure loads
  • Gravity and acceleration concepts
  • Load collectors
  • Load case preparation

Module 13 – Solver Interface & Export

  • Introduction to CAE solvers
  • Solver profiles
  • Solver-specific model preparation
  • Input deck concepts
  • Exporting solver files
  • Model validation before solving
  • Common export issues

Module 14 – HyperMesh for Structural Analysis

  • Structural analysis workflow
  • Static analysis model preparation
  • Stress and deformation analysis setup
  • Structural constraints
  • Load application
  • Solver model preparation
  • Result interpretation concepts

Module 15 – HyperMesh for Crash & Automotive Applications

  • Introduction to automotive CAE
  • Crash analysis concepts
  • Vehicle model preparation
  • Spot weld and connector modeling
  • Shell mesh strategies
  • Automotive model organization
  • Crash model preparation workflow

Module 16 – Advanced Meshing Techniques

  • Batch meshing concepts
  • Automeshing techniques
  • Advanced surface meshing
  • Mid-surface extraction concepts
  • Complex geometry meshing
  • Mesh transition techniques
  • Advanced quality improvement

Module 17 – Morphing & Model Optimization

  • Introduction to morphing
  • Node and mesh morphing
  • Shape modification
  • Design variation concepts
  • Mesh deformation
  • Optimization-oriented model preparation
  • Practical morphing applications

Module 18 – HyperMesh Automation & Productivity

  • Introduction to automation
  • Macros and scripting concepts
  • Tcl scripting fundamentals
  • Repetitive task automation
  • Batch processing concepts
  • Model checking automation
  • Productivity improvement techniques

Module 19 – Practical HyperMesh Projects

  • Automotive component meshing
  • Mechanical bracket meshing
  • Sheet metal component preparation
  • Assembly connectivity project
  • Crash model preparation
  • Structural analysis model preparation
  • Mesh quality improvement project

Module 20 – Final HyperMesh Project & Assessment

  • Complete CAD-to-CAE workflow
  • Geometry cleanup
  • 2D and 3D meshing
  • Material and property assignment
  • Connector creation
  • Boundary condition preparation
  • Solver export
  • Final model quality assessment
  • Project documentation and presentation


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