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Finite Element Analysis Jobs in Indiana (NOW HIRING)

Through the design cycle and sustainability efforts, this person will leverage several software packages including Computer-Aided Design (CAD), Finite Element Analysis (FEA), Computational Fluid ...

Through the design cycle and sustainability efforts, this person will leverage several software packages including Computer-Aided Design (CAD), Finite Element Analysis (FEA), Computational Fluid ...

Stress and Lifing Engineer

Indianapolis, IN ยท On-site

$78K - $128K/yr

Perform mechanical integrity, stress, and lifing analyses of static components using finite element analysis and other numerical modeling tools under guidance from senior team members. * Support the ...

Stress and Lifing Engineer

Indianapolis, IN ยท Hybrid

$78K - $128K/yr

Perform mechanical integrity, stress, and lifing analyses of static components using finite element analysis and other numerical modeling tools under guidance from senior team members. * Support the ...

$140 - $200/hr

Proficiency in structural finite element analysis software, including RAM Concept, SAP2000, and ETABS. * Strong commitment to delivering practical, cost-effective, and constructible structural ...

Senior Mechanical Design Engineer

Columbia City, IN ยท On-site

$82K - $113K/yr

Experience performing Finite Element Analysis (FEA). * Project management or technical project leadership experience. * Knowledge of metallurgy and material selection principles. * Master's degree in ...

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Finite Element Analysis information

See Indiana salary details

$11

$61

$85

How much do finite element analysis jobs pay per hour?

As of Aug 24, 2026, the average hourly pay for finite element analysis in Indiana is $61.98, according to ZipRecruiter salary data. Most workers in this role earn between $52.16 and $72.50 per hour, depending on experience, location, and employer.

What is a finite element analysis?

A Finite Element Analysis (FEA) job involves using computer simulations to evaluate how products or systems respond to physical forces such as stress, heat, and vibration. Engineers in this role use specialized software like ANSYS, Abaqus, or SolidWorks to create models and analyze their behavior under various conditions. FEA helps optimize designs, reduce material costs, and ensure structural integrity before manufacturing. This role is common in industries like automotive, aerospace, and civil engineering.

What are the key skills and qualifications needed to thrive in finite element analysis?

To thrive in Finite Element Analysis, you need a strong background in mechanical or structural engineering principles, mathematics, and a solid understanding of physics, typically backed by an engineering degree. Proficiency with FEA software like ANSYS, Abaqus, or COMSOL, and familiarity with CAD tools and programming languages such as Python or MATLAB, are important assets. Excellent problem-solving abilities, attention to detail, and clear communication skills make candidates stand out in this analytical role. These skills are crucial for producing accurate simulations, optimizing designs, and effectively conveying complex technical findings to multidisciplinary teams.

What are some typical challenges faced by professionals working in finite element analysis?

Professionals in Finite Element Analysis often encounter challenges such as managing complex simulation models, ensuring the accuracy and reliability of their results, and interpreting data to provide meaningful engineering insights. You may also need to troubleshoot issues related to meshing, material properties, and boundary conditions, which require both technical expertise and patience. Regular collaboration with design, manufacturing, and testing teams helps address these challenges more effectively and leads to better end products. Developing strong analytical and communication skills can further help you thrive when working through the intricate details and interdisciplinary demands of the role.

Is finite element analysis a good career?

Finite Element Analysis (FEA) is a specialized engineering role that involves using software tools to simulate and analyze physical behaviors of structures and components. It is a growing field with demand in industries such as aerospace, automotive, and manufacturing, often requiring strong skills in mechanics, programming, and software like ANSYS or Abaqus. Careers in FEA can offer stability, competitive salaries, and opportunities for advancement for those with relevant technical expertise and certifications.

What are the most commonly searched types of Finite Element Analysis jobs in Indiana?

The most popular types of Finite Element Analysis jobs in Indiana are:

Infographic showing various Finite Element Analysis job openings in Indiana as of August 2026, with employment types broken down into 83% Full Time, 14% Part Time, and 3% Contract. Highlights an 83% Physical, 4% Hybrid, and 13% Remote job distribution, with an average salary of $128,917 per year, or $62 per hour.

Engineering - Lead Engineer, Simulation & Engineering Analysis

Grote Industries, Inc.

Madison, IN โ€ข On-site

$85 - $125/hr

Other

Re-posted 16 days ago


Job description

Madison, IN, USA

Position Summary

The Simulation & Engineering Analysis Engineer is responsible for providing engineering analysis and simulation support throughout the product development process. This role partners closely with Product Engineering, CAD, Manufacturing Engineering, Program Management, Quality, and Test Engineering to evaluate product designs, identify risks early, and support successful product launches.

Responsibilities
  • Perform Finite Element Analysis (FEA) using ANSYS to evaluate product designs, including static structural, thermal, vibration, and modal analysis.
  • Interpret simulation results and provide engineering reports containing recommendations that improve product performance, reliability, manufacturability, and cost.
  • Perform Computational Fluid Dynamics (CFD) simulations using ANSYS to evaluate airflow, cooling performance, and other fluid-related design requirements.
  • Present simulation findings and technical recommendations to engineering teams and leadership.
  • Lead formal Engineering Design Reviews, facilitating crossโ€‘functional discussions to identify technical risks and ensure product readiness.
  • Collaborate with CAD Designers, Product Engineers, Manufacturing Engineers, Quality Engineers, Program Managers, and other stakeholders throughout the product development process.
  • Support rootโ€‘cause investigations by using simulation tools to evaluate field failures, manufacturing issues, and design concerns.
  • Maintain and improve the Engineering Knowledge Management database by documenting lessons learned, best practices, design guidelines, and technical standards.
  • Assist in developing engineering standards, design guidelines, and simulation methodologies.
  • Continuously improve simulation processes, workflows, and engineering tools.
  • Support prototype evaluations and correlate simulation results with physical testing when applicable.
Qualifications
  • Bachelor's degree in Mechanical Engineering, Engineering Mechanics, or a related discipline.
  • Extensive experience performing Finite Element Analysis (FEA) using ANSYS.
  • Strong understanding of structural mechanics, heat transfer, and vibration analysis.
  • Proficiency in interpreting engineering drawings and 3D CAD models.
  • Excellent analytical, problemโ€‘solving, organizational, and communication skills.
  • Ability to effectively collaborate across crossโ€‘functional engineering teams while managing multiple projects in a fastโ€‘paced environment.
  • Preferred: eight or more years of experience using ANSYS for both FEA and Computational Fluid Dynamics (CFD) simulations.
  • Preferred: at least two years of experience with Creo Parametric.
  • Preferred: background in the automotive, transportation, or manufacturing industries.
  • Preferred: experience with Design Failure Mode and Effects Analysis (DFMEA), engineering design reviews, structured product development processes, and the development of engineering standards, design guidelines, or knowledge management systems.
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