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Altair OptiStruct

Altair OptiStruct™ is a, FEA structural analysis and optimization solver for linear and nonlinear problems under static and dynamic loadings.  &  we continue to invest and develop unique and innovative functionality to help generate lightweight and efficient designs. We also recognize the need to simulate larger and more complex models.

Based on modern solver archi, OS provides streamlined workflows, with highly scalability, which produce high quality results.

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Key Capabilities:

  • Structural Analysis: Linear and nonlinear static/dynamic simulations for complex assemblies.
  • Vibrations & Acoustics: Predict natural frequencies, noise, and structural response under dynamic loads.
  • Fatigue Analysis: Assess durability and product lifecycle under real-world conditions.
  • Multiphysics Integration: Supports thermal-structural coupling, NVH, and other combined effects.
  • Advanced Optimization: Industry-leading topology, size, and shape optimization for lightweight and high-performance designs.

Performance and Scalability:

  • Built for HPC environments, leveraging parallel computing and GPU acceleration for efficient performance on large models.
  • Handles massive assemblies with millions of degrees of freedom while maintaining accuracy.

Openness and Flexibility:

  • Works seamlessly with Altair HyperWorks, SimLab, and other pre/post-processing tools.
  • Offers compatibility with industry-standard CAE workflows and formats for flexible integration.

Why Choose OptiStruct?

  • Optimization-Driven Design: Pioneer in topology optimization for weight reduction and material efficiency.
  • All-in-One Solution: Covers static, dynamic, fatigue, and multiphysics in one solver.
  • Cost and Time Efficiency: Reduce physical testing and accelerate product development cycles.
  • Award-winning optimization: Provides the most comprehensive library of performance criteria and manufacturing constraint.
  •  

“The Solver for linear and nonlinear Analysis”

Pervasive Optimization

Built-in Multi-physics

High Scalability

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