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Volunteer Finite Element Analysis Jobs in Appleton, WI

Design Engineer

Oshkosh, WI ยท On-site

$70K - $75K/yr

You will leverage finite element analysis and structural analytical methods to predict performance and ensure the integrity of designs under various conditions. Collaborating closely with cross ...

You will leverage finite element analysis and structural analytical methods to predict performance and ensure the integrity of designs under various conditions. Collaborating closely with cross ...

Mechanical Design Engineer

Green Bay, WI ยท On-site

$65K - $95K/yr

Prepare CAD models appropriate for more detailed analysis as necessary (i.e. finite element analysis (FEA). Requirements * AS or BA Degree in Mechanical Engineering or related field. * Proficiency in ...

Mechanical Engineer

Oshkosh, WI ยท On-site

$64K - $103K/yr

Exposure to engineering analysis tools such as MATLAB/Simulink, Python, or finite element analysis (FEA). * Understanding of GD&T and its application. * Understanding of mechanical design principles.

Mechanical Engineer

Oshkosh, WI ยท On-site

$64K - $103K/yr

Exposure to engineering analysis tools such as MATLAB/Simulink, Python, or finite element analysis (FEA). * Understanding of GD&T and its application. * Understanding of mechanical design principles.

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Volunteer Finite Element Analysis information

See Appleton, WI salary details

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How much do volunteer finite element analysis jobs pay per hour?

As of Sep 5, 2026, the average hourly pay for volunteer finite element analysis in Appleton, WI is $18.67, according to ZipRecruiter salary data. Most workers in this role earn between $14.09 and $19.71 per hour, depending on experience, location, and employer.

What is a volunteer finite element analysis?

A Volunteer Finite Element Analysis (FEA) refers to someone who offers their expertise in finite element modeling and simulation without compensation, often for non-profit organizations, research projects, or community initiatives. Their main role is to use FEA software to analyze and predict how products or structures will behave under various conditions. Volunteers may help with tasks such as building models, running simulations, interpreting results, and providing recommendations. This work supports teams that might lack the budget for professional FEA services while allowing the volunteer to gain experience and contribute to meaningful projects.

What skills and qualifications are needed to thrive as a volunteer finite element analysis engineer?

Success as a Volunteer Finite Element Analysis (FEA) Engineer requires a solid understanding of engineering principles, proficiency in FEA concepts, and often a degree in mechanical, civil, or related engineering fields. Familiarity with technical tools like ANSYS, Abaqus, or SolidWorks Simulation, and sometimes certification in FEA or related software, is typically expected. Outstanding problem-solving abilities, teamwork, and clear technical communication help differentiate top volunteers in this role. These skills ensure accurate analysis, effective collaboration, and valuable contributions to engineering projects, even in a volunteer capacity.

What are common challenges faced by volunteer finite element analysis professionals, and how can they be addressed?

Volunteer FEA professionals often encounter challenges such as limited access to software licenses, incomplete project data, and time constraints due to balancing volunteering with other commitments. To overcome these issues, volunteers can utilize open-source FEA tools, collaborate closely with team members to clarify requirements, and manage their time effectively by setting realistic deadlines. Regular communication with project leads ensures alignment and helps address technical hurdles early, fostering a supportive and productive volunteer environment.

What is the difference between Volunteer Finite Element Analysis vs Mechanical Engineer?

AspectVolunteer Finite Element AnalysisMechanical Engineer
CredentialsTypically requires knowledge of FEA software, engineering fundamentals, often self-taught or through coursesBachelor's or higher in Mechanical Engineering, professional licensure often preferred
Work EnvironmentVolunteer projects, research labs, non-profit organizations, often project-basedIndustry settings, manufacturing, design firms, offices, and labs
Industry UsageUsed in research, product testing, and academic projectsDesign, analysis, manufacturing, and product development

Volunteer Finite Element Analysis involves applying FEA techniques often on a volunteer basis for research or non-profit projects, requiring specific software knowledge but typically less formal credentials. Mechanical Engineers have formal degrees, industry experience, and often work in professional settings on product design and development. While both roles involve analysis, the main difference lies in the work environment, credentials, and scope of responsibilities.

What are popular job titles related to Volunteer Finite Element Analysis jobs in Appleton, WI?

For Volunteer Finite Element Analysis jobs in Appleton, WI, the most frequently searched job titles are:

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The top searched job categories for Volunteer Finite Element Analysis jobs in Appleton, WI are:

What cities near Appleton, WI are hiring for Volunteer Finite Element Analysis jobs?

Cities near Appleton, WI with the most Volunteer Finite Element Analysis job openings:

Infographic showing various Volunteer Finite Element Analysis job openings in Appleton, WI as of August 2026, with employment types broken down into 84% Full Time, 14% Part Time, and 2% Contract. Highlights an 85% Physical, 3% Hybrid, and 12% Remote job distribution, with an average salary of $38,838 per year, or $18.7 per hour.

Design Engineer

The Jor-mac Company Inc

Oshkosh, WI โ€ข On-site

$70K - $75K/yr

Full-time

Re-posted 26 days ago


Key responsibilities

  • Perform detailed mechanical design and solid modeling using SolidWorks and AutoCAD to develop components and assemblies.

  • Conduct finite element analysis (FEA) and stress analysis to evaluate structural integrity and optimize designs for performance and safety.

  • Collaborate with manufacturing, quality, and project teams to ensure designs meet functional requirements and production feasibility.


Job description

About Company:

The Jor-Mac Company is a contract manufacturer of metal fabrications and assemblies. We provide On-Time, High Quality & Cost Competitive metal fabrications to Original Equipment Manufacturers (OEM’s).

  • Established in 1952
  • Experienced Management Team & Skilled, Dedicated, Motivated & Productive “Non-Union” Workforce
  • Established & Diversified Fortune 1000 “Blue-Chip” and Middle Market Customer Base
  • ISO 9001: 2015 Certified & ISO 14001: 2004 Compliant
  • Fully Integrated ERP Business Operating System, EDI Capable
  • Full Metal Fabrication Engineering:  SolidWorks/Programming, Layout/Fixture Development
  • Financially Strong with Capital for Growth & Investment
  • Aggressive Cost Management, Lean Manufacturing & Continuous Improvement Disciplines
  • Proactive, Collaborative & Flexible Approach to Customer Relationship Management

About the Role:

As a Design Engineer, you will play a critical role in developing and optimizing mechanical components and systems through advanced design and analysis techniques. Your primary focus will be to create innovative, efficient, and reliable designs that meet project specifications and industry standards. You will leverage finite element analysis and structural analytical methods to predict performance and ensure the integrity of designs under various conditions. Collaborating closely with cross-functional teams, you will translate conceptual ideas into detailed models and drawings using CAD software. Ultimately, your work will contribute to the successful realization of products that are both manufacturable and durable, supporting the company’s commitment to engineering excellence.

Minimum Qualifications:

  • Bachelor’s degree in Mechanical Engineering or a related engineering discipline.
  • Proven experience with finite element analysis and structural analytical methods.
  • Proficiency in CAD software, specifically SolidWorks and AutoCAD.
  • Strong understanding of mechanical design principles and solid modeling techniques.
  • Ability to interpret and apply engineering standards and codes relevant to mechanical design.

Preferred Qualifications:

  • Master’s degree in Mechanical Engineering or related field.
  • Experience with advanced simulation tools beyond basic FEA, such as nonlinear or dynamic analysis.
  • Familiarity with product lifecycle management (PLM) software and version control systems.
  • Knowledge of manufacturing processes and materials selection to enhance design for manufacturability.
  • Professional Engineering (PE) license or equivalent certification.

Responsibilities:

  • Perform detailed mechanical design and solid modeling using SolidWorks and AutoCAD to develop components and assemblies.
  • Conduct finite element analysis (FEA) and stress analysis to evaluate structural integrity and optimize designs for performance and safety.
  • Collaborate with manufacturing, quality, and project teams to ensure designs meet functional requirements and production feasibility.
  • Prepare and maintain comprehensive technical documentation, including design specifications, analysis reports, and revision histories.
  • Review and validate design outputs to ensure compliance with industry standards and regulatory requirements.

Skills:

The required skills such as finite element analysis and structural analytical techniques are essential for evaluating and improving the mechanical performance of designs on a daily basis. Proficiency in SolidWorks and AutoCAD enables the creation of precise 3D models and detailed engineering drawings that serve as the foundation for product development. Mechanical design and solid modeling skills are applied to conceptualize and iterate designs efficiently, ensuring they meet functional and safety requirements. Stress analytical capabilities allow for the identification of potential failure points and the optimization of materials and geometry to enhance durability. Preferred skills like advanced simulation and knowledge of manufacturing processes further empower the engineer to deliver innovative, cost-effective, and manufacturable solutions.


Monday through Thursday 7:00am-4:00pm, Friday 7:00am-11:00am