HyperLife User's Guide
HyperLife User's Guide

2020.1

  1. Home
  2. Tutorials

    Discover HyperLife functionality with interactive tutorials.

  3. Random Response Fatigue Analysis

    Perform random response fatigue analysis using a S-N (stress-life) approach.

  • What's New
  • Get Started
  • Tutorials
  • Fatigue Analysis Overview
  • Setup Analysis
  • Evaluate
  • Manage Files and Data
  • Additional Post-Processing Options
Index
  HyperLife User's Guide

2020.1

HyperLife User's Guide
  • What's New

    View new features for HyperLife 2020.1.

  • Get Started

    Learn the basics and discover the workspace.

  • Tutorials

    Discover HyperLife functionality with interactive tutorials.

    • Access the Model Files

      Learn how to access and download required tutorial files.

    • Uniaxial Fatigue Analysis

      Perform uniaxial fatigue analysis using S-N (stress-life) and E-N (strain-life) approaches for predicting the life (number of loading cycles) of a structure under cyclical loading.

    • Multiaxial Fatigue Analysis

      Perform multiaxial fatigue analysis using S-N (stress-life), E-N (strain-life), and Dang Van Criterion (Factor of Safety) approaches for predicting the life (number of loading cycles) of a structure under cyclical loading.

    • Weld Fatigue Analysis

      Perform seam and spot weld fatigue analysis.

    • Transient Fatigue Analysis

      Perform transient fatigue analysis using a S-N (stress-life) approach.

    • Random Response Fatigue Analysis

      Perform random response fatigue analysis using a S-N (stress-life) approach.

      • HL-T: 1080 Random Fatigue Analysis Using PSD Stresses

      • HL-T: 1090 Random Fatigue Analysis Using FRF Stresses and Power Spectral Density of Loading Versus Frequency (Input PSD)

    • Modal Superposition Fatigue Analysis

      Perform modal superposition fatigue analysis using a S-N (stress-life) approach.

    • Sine Sweep Fatigue Analysis

      Perform sine sweep fatigue analysis using a S-N (stress-life) approach.

  • Fatigue Analysis Overview

    Fatigue Analysis is intended for solutions to structures in a large number of loading cycles.

  • Setup Analysis

    Set up your model for analysis.

  • Evaluate

    Run the model and view results.

  • Manage Files and Data

    Learn how to create, open, import and save models.

  • Additional Post-Processing Options

    Explore additional post-processing options related to the input result files.

View All Altair HyperWorks Help

  HyperLife User's Guide
HyperLife User's Guide

2020.1

  1. Home
  2. ...
    • Tutorials

      Discover HyperLife functionality with interactive tutorials.

  3. Random Response Fatigue Analysis

    Perform random response fatigue analysis using a S-N (stress-life) approach.

  • What's New
  • Get Started
  • Tutorials
  • Fatigue Analysis Overview
  • Setup Analysis
  • Evaluate
  • Manage Files and Data
  • Additional Post-Processing Options
Index

ON THIS PAGE

    Random Response Fatigue Analysis

    Perform random response fatigue analysis using a S-N (stress-life) approach.

    • HL-T: 1080 Random Fatigue Analysis Using PSD Stresses
    • HL-T: 1090 Random Fatigue Analysis Using FRF Stresses and Power Spectral Density of Loading Versus Frequency (Input PSD)

    ON THIS PAGE

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