I will stress and fatigue analysis using abaqus and hypermesh

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Abhay Patel

About this gig

I provide professional stress, fatigue, and structural analysis services using Abaqus and HyperMesh, backed by 4+ years of hands-on experience in heavy equipment manufacturing (Caterpillar) and product development (ZF Group).

I help clients validate designs against strength, durability, and vibration requirements through:

  • Static & dynamic structural FEA (linear/nonlinear)
  • Fatigue & durability life prediction (including creep-based fatigue)
  • Modal & vibration analysis with test data correlation
  • Root cause analysis for structural/field failures
  • Design optimization for weight reduction without compromising strength

I build finite element models from your CAD/geometric data, apply appropriate material data and design allowables, and deliver clear, actionable reports whether you need a one-off analysis, failure investigation, or ongoing simulation support.

I've worked across IC engines, pumps, valves, pulleys, aftercoolers, and EV assemblies, and bring the same rigor to any metallic structural component you need analyzed.

Let's discuss your project send me the details and I'll get started.

Delivery style preference

Please inform the freelancer of any preferences or concerns regarding the use of AI tools in the completion and/or delivery of your order.

Get to know Abhay Patel

Abhay Patel

FEA Engineer

  • FromIndia
  • Member sinceSep 2026
  • Avg. response time4 hours
  • Languages

    Hindi, English
I'm Abhay, a Stress/Structural Analysis Engineer with 4+ years of experience in heavy equipment manufacturing. I specialize in static and dynamic FEA of metallic structural components under service, thermal, and fatigue loading, using Abaqus and HyperMesh. My expertise covers linear/nonlinear FEA, modal & vibration analysis, thermo-mechanical simulation, and fatigue & durability assessment Services I offer: FEA modeling & structural simulation (static/dynamic, linear/nonlinear) Modal/vibration analysis and test correlation Design optimization for weight reduction and structural integrity