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How to find a job with FEA skills

What is FEA?

The Finite Element Analysis (FEA) is software that can simulate physical phenomenon with the help of numerical procedures. FEA helps companies in developing better and cost-effective products by reducing the number of physical prototypes.

How is FEA used?

Zippia reviewed thousands of resumes to understand how fea is used in different jobs. Explore the list of common job responsibilities related to fea below:

  • Championed the use of FEA and Modal Analysis on new product developments to reduce development cycle (Rapid Development Tools).
  • Established finite element analysis (FEA) capability for stress, strain, thermal, fluids, and electro-magnetics.
  • Eliminated design iterations by utilizing FEA simulation, identifying design risk early in development process and implementing virtual fixes.
  • Analyzed designs statically and dynamically using FEA software along with physical tests.
  • Direct and manage all FEA & CFD activities including hardware and software system activities.
  • Use ANSYS FEA software package with Inventor Pro 11 for structural analysis of parts and assemblies.

Are FEA skills in demand?

Yes, fea skills are in demand today. Currently, 2,476 job openings list fea skills as a requirement. The job descriptions that most frequently include fea skills are mechanical engineering director, fuel cell engineer, and machine design engineer.

How hard is it to learn FEA?

Based on the average complexity level of the jobs that use fea the most: mechanical engineering director, fuel cell engineer, and machine design engineer. The complexity level of these jobs is challenging.

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What jobs can you get with FEA skills?

You can get a job as a mechanical engineering director, fuel cell engineer, and machine design engineer with fea skills. After analyzing resumes and job postings, we identified these as the most common job titles for candidates with fea skills.

Mechanical Engineering Director

  • Mechanical Engineering
  • Solidworks
  • FEA
  • CAD
  • Fire Protection
  • Mechanical Engineering Design

Fuel Cell Engineer

Job description:

A fuel cell engineer is tasked with the design, evaluation, or construction of components or systems that make up a fuel cell. They are also tasked with designing and implementing any programs that deal with fuel cell testing or development. They write technical reports related to any engineering project and collaborate with other engineers to plan fuel cell reduction. On special occasions, they give specifications for materials that make up the fuel cell.

  • Data Analysis
  • FEA
  • LabVIEW
  • PEM
  • Test Results
  • Fuel Cell System

Machine Design Engineer

Job description:

A machine design engineer specializes in designing and developing machines, tools, and engines for different industries. Their duties include identifying and understanding project requirements, creating blueprints and prototypes, selecting ideal resources, establishing and implementing test plans, facilitating upgrades, and setting protocols and standards. They also enhance existing machines by identifying their strengths and weaknesses and providing solutions against potential issues. Additionally, a machine design engineer usually works in a team environment, which requires an open communication line for efficient workflow.

  • Solidworks
  • Project Management
  • FEA
  • Autocad
  • GD
  • PLC

Acoustical Engineer

Job description:

An acoustical engineer works primarily with sound; they reduce noise pollution in areas like construction sites and airports. Noise pollution is particularly hard to contain, which means an acoustical engineer is essential to manage the potential hazards of constant high-decibel sounds. Their job involves inspecting a location, determining the loudest areas, recommending measures to minimize noise pollution, and implementing all approved recommendations.

  • Transducers
  • Data Analysis
  • DSP
  • Data Acquisition
  • FEA
  • System Design

Products Mechanical Design Engineer

  • GD
  • Mechanical Design
  • Industrial Design
  • FEA
  • Prototyping
  • Design Reviews

Staff Mechanical Engineer

Job description:

A staff mechanical engineer designs and develops engines, tools, and machinery. Staff mechanical engineers create products like refrigerators, power tools, car engines, and turbines. They take part in cross-departmental and multi-functional design teams. They write handbooks, bulletins, and reports for use by department or staff. They have to lead project management from making ideas to launching the product. The skills they need to know to include mechanical design, product development, electrical systems, and detail orientation.

  • CAD
  • Mechanical Design
  • Solidworks
  • FEA
  • Mechanical Systems
  • Product Development

Senior Product Design Engineer

Job description:

A senior product design engineer oversees system development, developing processes, and methodologies geared at promoting customer satisfaction. They are charged with analyzing and directing recommendations for resolving problems to fulfill client expectations. Their responsibilities include planning projects, conducting standard functional analysis of products to translate customer specification into product performance criteria, conducting benchmarking studies, and analyzing products' market performance to facilitate competitive delivery of designs.

  • CAD
  • Solidworks
  • Prototype
  • GD
  • FEA
  • Prototyping

Design Development Engineer

Job description:

Design development engineers are engineering professionals who are responsible for testing products for various industries such as electronics and synthetic textiles. These engineers must collaborate with the research and development (R&D;) organization to carry out initial new product development projects. They are required to coordinate a project with clients and consultants to ensure the approval of project permits and construction feasibility. Design development engineers must also possess skills in using software such as SolidWorks to model complex product parts and components.

  • Solidworks
  • FEA
  • C++
  • Prototype
  • R
  • Product Development

Mechanical Development Engineer

Job description:

A mechanical development engineer plans and designs tools, engines, machines, and other mechanically functioning equipment. They perform duties such as overseeing the installation, operation, maintenance and repair of equipment and systems. They also produce specifications for new or modified systems. They supervise design engineering for a variety of facilities, and they coordinate the construction, assembly, and testing of equipment and systems.

  • CAD
  • Solidworks
  • FEA
  • Product Design
  • R
  • Mechanical Design

Mechanical Design Engineer

Job description:

A mechanical design engineer specializes in designing various mechanical devices that will be vital in developing machinery or large structures. One of their primary responsibilities revolves around conducting thorough research and analysis, establishing layouts and prototypes, producing progress reports, and working alongside fellow engineers and skilled professionals. Typically assigned in an office setting, a mechanical design engineer must visit construction sites or factories to test and observe equipment qualities. Furthermore, during production, there are instances when a mechanical engineer must coordinate with suppliers, contractors, and clients.

  • CAD
  • Mechanical Design
  • GD
  • Creo
  • FEA
  • UL

Lead Design Engineer

Job description:

A Lead Design Engineer produces design solutions that can be purchased, installed, and commissioned effectively. They are also responsible for the cost-effectiviness and safety of new designs.

  • CAD
  • Project Management
  • Lead Design
  • FEA
  • UL
  • System Design

Contract Mechanical Engineer

  • Solidworks
  • Assembly Drawings
  • Autocad
  • Prototype
  • FEA
  • R

How much can you earn with FEA skills?

You can earn up to $130,415 a year with fea skills if you become a mechanical engineering director, the highest-paying job that requires fea skills. Fuel cell engineers can earn the second-highest salary among jobs that use Python, $92,756 a year.

Job titleAverage salaryHourly rate
Mechanical Engineering Director$130,415$63
Fuel Cell Engineer$92,756$45
Machine Design Engineer$79,371$38
Acoustical Engineer$93,808$45
Products Mechanical Design Engineer$75,238$36

Companies using FEA in 2025

The top companies that look for employees with fea skills are Ford Motor, Tesla, and Raytheon Technologies. In the millions of job postings we reviewed, these companies mention fea skills most frequently.

RankCompany% of all skillsJob openings
1Ford Motor21%3,049
2Tesla9%2,021
3Raytheon Technologies7%1,748
4Caterpillar7%896
5L3Harris7%1,629

Departments using FEA

DepartmentAverage salary
Engineering$91,081

2 courses for FEA skills

Advertising disclosure

1. SOLIDWORKS: Introduction To Finite Element Analysis (FEA)

udemy
4.4
(280)

★★★ Master Basic Tools And Techniques Of SOLIDWORKS FEA Static Simulation Following Step By Step Training + CSWSA-FEA  Prep ★★★The problem is that most of the students..1. Don't have the right mind strategy to think like a designer2. They are not able to prepare model for the static analysis3. They don't know how to approach to the analysis4. Plus there are no many exam samples on the internet so you can't get familiar with the exam conceptIf you want come on the exam relaxed and full of confidence in your skills let me introduce you to the training that will get you prepare even if you never touched Solidworks static simulation before. In this course you will get skills, training and examples to overcome those obstacles and pass Solidworks CSWSA-FEA exam easily even with spare time left by going through...1. Setting up a simulation, how to prepare a model, how to define fixture and loads, how to create a mesh, how to run simulation and how to analyze results of Stress, Displacement and Strain of the Solid body.2. Learning how to define your own mesh, how to run multiple simulations, how to calculate stresses and strains at specific point of the model, how to create XY plots, how to re-modify model depending on the simulation results and how to create reports of the simulation study.3. Learning how to analyze planar symmetrical and circular symmetrical models using advanced tools. Those tools are huge help in saving the time and memory.4. Learning how to perform a static analysis of a shell body. There are compared two cases, one when object under analysis is created with surface tools and the second case when is created with sheet metal tools.5. Learning how to perform a static analysis of a frame body where body is treated like a truss. There are two examples. In first one body is created with weldments tools and in the second body is created with Extruded Boss feature. 6. Learning how to perform a static analysis of a frame body where body is treated like a beam. It is presented how to set up a simulation, what is the difference between beam and truss and how to present the results.7. Preparation for the CSWSA-FEA Exam.8. You'll gain confidence to negotiate for bigger salary9. You'll learn the secret tricks of the CSWSA - FEA exam10. You'll become familiar with Solidworks CSWSA - FEA exam concept11. You'll be able to start your Solidworks FEA designer career and start making money13. You'll be able to confidently list your SOLIDWORKS FEA skills in your resumeNow what makes me credible to teach you this topic?I have master's degree in mechanical engineering and I'm Solidworks certified professional designer. I have over 5 years industry experience in using Solidworks, CATIA and AutoCAD where I was designing resistance welding machines. On the other hand last two years I have enrolled over 30 000 students on my 12 courses with my average courses rate 4.6 out of 5. This course can transform your Solidworks skills, your career and at the end your life as you know but don't take my word for it. Read just few of these raving student testimonials for yourself…★★★★★ I really got to learn a lot from this course. Thank you so much for providing valuable basic knowledge of static simulation. I recommend this course to anyone wanting to learn the basics. So 5 star by me. - Akhil Vijayan★★★★★ Provides a review from my learning in Strength of Materials. - John Melvin V L.★★★★★ Excellent course, excellent teacher. - Sasa B.★★★★★" Very nicely explained and cover up all points - Amit K G. BONUS: Students who enroll today will receive my lifetime personal email support. So you can contact me anytime regarding any question you have.30-DAY GUARANTEE: If you don't see incredible results from this course within the next 30 days, Udemy will refund your entire investment! You literally have nothing to lose and so much to gain! ADD TO CART now to truly change your life forever!...

2. ANSYS from Drawing to Results Visualization - CFD and FEA

udemy
4.5
(228)

Welcome to our ANSYS professional course! We are glad to present this comprehensive course that contains at the beginning number of crucial fundamentals and basics related to the big idea of simulation and CFD in a simple and interesting way. After that, a detailed explanation of DesignModeler is presented with a high quality and organized content and examples with a step by step illustration. The next section is the ANSYS Meshing that has been divided into several videos with a well-organized flow of ideas in order to simplify the meshing process and generate high-quality structured hexa mesh. Also, the theory related to meshing is summarized in animated presentations. In addition, 3 special tools have been programmed for the purpose of meshing optimization. After meshing, 5 real-world application examples, with a special experimentally validated example that simulates the solar load, are solved using ANSYS Mechanical Thermal, ANSYS Mechanical Structural, and ANSYS FLUENT. Also, the parametric analysis has been used in one of the examples. Through those examples, you can see the powerful tools of ANSYS Workbench and the different results we can get. The results of the first four examples have been verified by comparing them to analytical calculations and empirical correlations. The last example is validated with the experimentally measured data for a box solar cooker using both solar load methods (i. e. experimental inputs and solar calculator). Throughout the course, multiple practice activities are continuously added to help the student mastering the key ideas of each section of the course...