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Volunteer Finite Element Analysis Jobs in Indiana

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 ...

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Volunteer Finite Element Analysis information

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

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

What job categories do people searching Volunteer Finite Element Analysis jobs in Indiana look for?

The top searched job categories for Volunteer Finite Element Analysis jobs in Indiana are:

What cities in Indiana are hiring for Volunteer Finite Element Analysis jobs?

Cities in Indiana with the most Volunteer Finite Element Analysis job openings:

Infographic showing various Volunteer Finite Element Analysis job openings in Indiana as of August 2026, with employment types broken down into 85% Full Time, 13% Part Time, and 2% Contract. Highlights an 81% Physical, 5% Hybrid, and 14% Remote job distribution.

Structural Analysis Engineer (Prometheus)

Kratos Defense

Bloomington, IN

Full-time

Posted 4 days ago


Kratos Defense & Security Solutions rating

7.8

Company rating: 7.8 out of 10

Based on 10 frontline employees who took The Breakroom Quiz


Job description

Prometheus Energetics is seeking an experienced Structural Analyst / Senior Structural Analyst to serve as a primary technical authority for the structural integrity, finite element analysis (FEA), and fracture mechanics of Solid Rocket Motor (SRM) structures. Reporting directly to the Director of Engineering, this role owns the structural lifecycle—from initial sizing and material characterization through coupled load modeling, qualification testing, and high-rate production support.
Solid Rocket Motor hardware operates under severe structural environments: extreme internal pressures, high motor case growth, intense thermal-mechanical stresses, structural vibration, high-g acceleration, and viscoelastic grain strain. The ideal candidate brings 4 to 10 years of hands-on structural engineering experience in composite/metallic pressure vessels, nozzles, or energetic propellant grain mechanics, combining advanced computational modeling skills with practical experience in structural test correlation and factory floor integration.

Key Responsibilities

Structural Design & Material Evaluation

  • Lead structural sizing, margin-of-safety assessments, and strength evaluations for solid rocket motor components, including composite filament-wound cases, metallic pressure vessels, nozzle structures, igniter housings, and interstage structures.
  • Evaluate orthotropic and anisotropic material behavior for composite structures (e.g., carbon fiber/epoxy wet-wound and prepreg layups) and high-strength metallic alloys (e.g., titanium, maraging steel, aluminum).
  • Characterize viscoelastic material behavior, structural margin, and cumulative damage models for solid propellant grains, liners, and insulation bond lines across storage, transportation, thermal cycling, and operational firing profiles.
  • Define structural interface requirements, fastener joint designs, skirts, polar cleats, and bond line shear limits to ensure structural integrity across proof testing, flight, and post-burn heat-soak environments.
  • Support scalable manufacturing processes (e.g., fiber placement, automated tape laying, hand layup, hydrotesting, and machining) to transition structural designs from prototype into high-rate production.

Structural Modeling & Analysis

  • Develop and maintain complex 2D and 3D finite element models (FEM) using industry-standard tools (e.g., Abaqus, ANSYS, Nastran/Patran, HyperMesh, or custom solvers).
  • Perform linear and non-linear static, dynamic, modal, random vibration, transient response, and buckling analyses for primary and secondary motor structures.
  • Conduct coupled thermal-structural and pressure-stress analyses, incorporating temperature-dependent material properties, internal ballistics pressure-time curves, and aerodynamic flight loads.
  • Execute fracture mechanics, damage tolerance, fatigue life, and composite ply-by-ply progressive failure analyses (e.g., Tsai-Wu, Hashin criteria) to establish structural margins of safety.
  • Conduct trade studies and optimization to minimize structural mass while maintaining required structural safety factors (e.g., MIL-STD-1522A, NASA-STD-5001).

Structural Testing, Qualification & Model Correlation

  • Plan, execute, and analyze structural test campaigns, including hydroburst testing, proof pressure testing, modal survey testing, structural load cell calibration, and environmental vibration/shock tests.
  • Collaborate with test engineers to define instrumentation requirements, specifying strain gauge placement, rosette configurations, displacement sensors (LVDTs, DIC), and load cell locations.
  • Correlate analytical predictions against measured test data (strain profiles, growth rates, burst pressures, resonance frequencies) to validate and refine finite element models.
  • Lead structural root-cause investigations and failure review boards (FRACAS/MRB) for structural anomalies, such as composite delamination, bond line debonding, yield nonconformances, or premature pressure vessel failure.

Cross-Functional Leadership & Program Support

  • Work directly with internal ballisticians, thermal analyst counterparts, materials scientists, and manufacturing engineers to deliver fully integrated motor designs on schedule.
  • Author clear structural analysis reports (SAR), stress documentation, material design allowables decks, and qualification verification artifacts.
  • Present technical findings, margin summaries, and structural design rationale at major program milestones (PDR, CDR, TRR, MRB).
  • Serve as a technical mentor to junior engineering staff in finite element techniques, composite failure criteria, and structural verification methodologies.
  • Ensure strict compliance with ITAR, EAR, site energetics safety standards, and environmental safety guidelines across all design and lab operations.

Required Qualifications

Bachelor's degree in Aerospace Engineering, Mechanical Engineering, Structural Engineering, or a closely related technical field from an accredited institution.

Experience:

  • Structural Analyst: Minimum of 4-6 years of relevant experience in finite element analysis, composite materials stress analysis, or aerospace structural engineering.
  • Senior Structural Analyst: 7-10+ years of progressive engineering experience owning structural stress analysis, composite pressure vessel sizing, and structural qualification for solid rocket motors or launch vehicles.
  • Proficiency in advanced FEA environments (e.g., Abaqus, ANSYS, Nastran, Patran, HyperMesh) and composite layup analysis tools.
  • Strong foundation in solid mechanics, composite materials theory, fracture mechanics, non-linear material response, and fatigue/damage tolerance analysis.
  • Direct experience planning or supporting structural testing (hydroburst, proof pressure, strain gauge instrumentation, modal testing).
  • Regulatory: U.S. Citizenship required (position involves ITAR/EAR restricted technology).
  • Clearance: Ability to obtain and maintain a U.S. Government Secret Security Clearance.

Preferred Qualifications

  • Master's Degree or Ph.D. in Aerospace, Mechanical, or Structural Engineering with a focus on composite materials, non-linear FEA, or structural dynamics.
  • Active U.S. Government Secret Security Clearance.
  • Direct experience with Filament Wound Composite Pressure Vessels (COPV), composite skirt joint design, or nozzle structural analysis.
  • Experience with viscoelastic material modeling for solid propellant grain structural integrity (slump, thermal stress, storage aging).
  • Applied scripting experience in Python, MATLAB, or APDL/Abaqus user subroutines (UMAT/VUMAT) for automated mesh generation, post-processing, or custom material law implementation.
  • Knowledge of aerospace pressure vessel standards (e.g., AIAA S-080/S-081, MIL-STD-1522A, NASA-STD-5001).

Work Environment & Physical Requirements

  • Work is performed in office, machine shop, laboratory, and energetics manufacturing environments, including high-hazard areas subject to enhanced safety and security controls.

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