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StressCheck Tutorial: v12 Getting Started Guide

Home ShopLinear Elasticity SolverStressCheck Tutorial: v12 Getting Started Guide
StressCheck Tutorial: v12 Getting Started Guide

StressCheck Tutorial: v12 Getting Started Guide

Abstract: step-by-step tutorial as outlined in the StressCheck v12 Getting Started Guide. Import 3D geometry, automesh, apply boundary conditions, solve a linear p-extension, and perform the four (4) key quality checks.

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Related Content:

  • StressCheck Tutorial: v11 Getting Started Guide
  • StressCheck Tutorial: Defining Solution and Extraction Settings for Parametric Models
  • StressCheck Tutorial: Sample Global-Local Workflow for a 3D Rib Stress Analysis
  • StressCheck Tutorial: Embedding 3-Point Plane for Resultant Extractions
  • StressCheck Tutorial: Checking ITP Viability for Solving Nonlinear Events


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Categories: Linear Elasticity Solver, StressCheck Core, StressCheck Professional. Tags: Boundary Conditions, Convergence Extraction, Detailed Stress, Linear Analysis, Meshing, Numerical Simulation, Plot Extraction, Points Extraction, Results, Solid Modeling, StressCheck GUI.

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Testimonials

“At DST Group, we have effectively used StressCheck over the last 10 years to determine accurate stress intensity factors. The results have been used to improve our residual strength and structural life estimates for aircraft in service with the Royal Australian Airforce, including C-130, P-3C and F/A-18 A/B. We have found it to be extremely easy to use and a very versatile code with which to create parametric models.

We have recently used StressCheck to obtain improved stress intensity factor solutions (Improved stress intensity factors for selected configurations in cracked plates and Improved stress intensity factors for a single corner crack at a loaded fastener hole) for five key generic configurations. These transferable parametric results have been published externally. One specific example is the non-linear contact analysis of a cracked, filled fastener hole, with both fastener and remote plate loading.”

Dr. Manfred Heller, Head, Structural & Damage Mechanics, DST Group

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