I will perform fea structural and thermal simulations

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Muhammad A.

About this gig

NOTE: Please make sure that you discuss your project before placing order. Bases on the discussuion we can decide the budget and timeline of the project.


This gig is related to providin you a design analyses of your CAD models. I will look for potential failure modes (fracture, yielding, buckling, large deformations) in the model and will optimize the model for the application.


I can use either ANSYS or SolidWorks.


The basic workflow will be:

  1. Either you provide me with the CAD model or I will design it for you (Charges applicable).
  2. You provide me with intricate details of the physics of the system, so that I can properly put boundary conditions.
  3. I will run the analysis on the system and can optimize the model based on the given constraints (dimensions, economics, etc.)


Core Engineering Capabilities:

  • Structural Analysis; Non-linear Modeling; Thermal Assessment; Coupled Physics; and Numerical Verification (where possible).


Deliverables include high-resolution contour plots and technical summaries of boundary conditions, safety factors, and failure predictions.

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 Muhammad A.

Muhammad A.

Mechanical Design Engineer, Advanced FEA, Simulation Specialist

  • FromPakistan
  • Member sinceApr 2026
  • Avg. response time1 hour
  • Languages

    English
Mechanical Engineers (M.S. MechE) specializing in the end-to-end development of mechanical systems and high-fidelity engineering simulations. We offer 3D modeling and technical validation through Finite Element Analysis (FEA). Our expertise includes: * Advanced FEA: Linear and non-linear structural analysis, including material yielding and large-strain formulations. * Thermal Management: Steady-state and coupled thermal-structural analysis for electronics and industrial cooling. * Machine Design: Full-cycle development from power/torque calculations to laser-cut ready prototypes.

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