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Part Time Abaqus Fea Jobs (NOW HIRING)

Demonstrated FEA experience (SolidWorks Simulation, ANSYS, or Abaqus) * Working knowledge of GD amp ... HireRight background check amp; drug screening Type of Employment: Part-Time (with potential to ...

Part Time Abaqus Fea information

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$9

$65

$89

How much do part time abaqus fea jobs pay per hour?

As of Jul 19, 2026, the average hourly pay for part time abaqus fea in the United States is $65.95, according to ZipRecruiter salary data. Most workers in this role earn between $56.49 and $77.40 per hour, depending on experience, location, and employer.

What is a Part Time Abaqus FEA specialist?

A Part Time Abaqus FEA specialist is a professional who works on a flexible or reduced-hour basis, using the Abaqus software to perform Finite Element Analysis (FEA) on engineering projects. Their responsibilities typically include creating and running simulations to test the structural, thermal, or mechanical behavior of products and materials. These specialists often support engineering teams by analyzing complex problems, interpreting results, and providing recommendations for design improvements. Part time roles are ideal for those seeking flexible work arrangements or supplementary income while utilizing their expertise in FEA and Abaqus.

What are the key skills and qualifications needed to thrive as a Part Time Abaqus FEA Engineer, and why are they important?

To excel as a Part Time Abaqus FEA Engineer, you need a solid background in mechanical or structural engineering, with expertise in finite element analysis (FEA) and experience using Abaqus software. Proficiency with CAD software, scripting languages like Python, and a grasp of simulation methodologies are also important, and some roles value certifications in FEA tools. Strong problem-solving skills, attention to detail, and effective communication make candidates stand out in collaborative engineering environments. These skills and qualifications are critical for delivering accurate simulations, optimizing designs, and ensuring project success within limited work hours.

What are some common challenges faced by part-time Abaqus FEA professionals, and how can they be managed effectively?

Part-time Abaqus FEA professionals often face challenges such as managing project deadlines with limited hours, staying updated with software updates, and ensuring clear communication with full-time team members. Effective time management and proactive status updates are essential to stay aligned with project goals. Utilizing collaborative tools and regular check-ins with the engineering team can help maintain workflow continuity and address issues before they escalate.

What is the difference between Part Time Abaqus Fea vs Part Time Structural Analyst?

AspectPart Time Abaqus FeaPart Time Structural Analyst
Required SkillsFinite Element Analysis (FEA), Abaqus software proficiency, basic engineering knowledgeStructural analysis, engineering principles, FEA software, report writing
Work EnvironmentEngineering firms, research labs, consulting companiesConstruction, manufacturing, engineering consulting
CertificationsEngineering degree, FEA training, Abaqus certification (preferred)Engineering degree, structural analysis certifications (optional)

Part Time Abaqus Fea focuses primarily on performing finite element analysis using Abaqus software, often in research or product development settings. Part Time Structural Analyst involves broader structural assessments, including design evaluation and safety analysis. While both roles require FEA skills, Part Time Abaqus Fea is more specialized in simulation work, whereas Part Time Structural Analyst covers a wider range of structural engineering tasks.

More about Part Time Abaqus Fea jobs
What are the most commonly searched types of Abaqus Fea jobs? The most popular types of Abaqus Fea jobs are:
Infographic showing various Part Time Abaqus Fea job openings in the United States as of July 2026, with employment types broken down into 6% Locum Tenens, 89% As Needed, 3% Full Time, and 2% Summer. Highlights an 93% Physical, 4% Hybrid, and 3% Remote job distribution, with an average salary of $137,183 per year, or $66 per hour.

Mechanical Engineer - Structural/Thermal

AVTC Group

Houston, TX โ€ข On-site, Remote

Part-time

Re-posted 14 days ago


Job description

Mechanical Engineering Analyst
US Citizen or Green Card Holder
Parttime Status - Increased compensation to offset less hours may be available .
As a Mechanical Engineering Analyst, you will be responsible for ensuring the structural integrity, thermal performance, and functional reliability of complex mechanical systems. You will utilize Finite Element Analysis (FEA) and analytical methodologies to validate designs before production, identifying potential failure modes and optimizing performance.
Key Responsibilities
  • Structural Analysis (Static & Dynamic): Perform detailed static structural simulations to evaluate stress, strain, and deformation under various operational loads. Execute dynamic analyses, including modal, vibration, and shock testing simulations to assess frequency response and structural resonance.
  • Thermal Analysis: Conduct steady-state and transient thermal simulations to evaluate heat transfer, temperature distribution, and thermal-induced stresses in mechanical assemblies.
  • Tolerance Stack-Up Analysis: Perform rigorous 1D, 2D, or 3D tolerance stack-up analyses using worst-case and statistical (RSS) methods to ensure proper fit, function, and manufacturability.
  • Simulation & Optimization: Utilize FEA tools to identify weight reduction opportunities and optimize design geometry without compromising safety factors or structural performance.
  • Failure Prediction: Conduct root cause analysis on equipment failures and provide data-driven recommendations for countermeasures and design modifications.
  • Technical Reporting: Document all analysis findings, including assumptions, boundary conditions, and results, in formal technical reports for peer review and customer certification.
  • Systems Integration: Interpret mechanical hardware requirement specifications from interfacing systems and analyze concept trade studies by providing mechanical expertise to evaluate design options. Collaborate with cross-functional teams, including electrical, systems, and quality engineers, to ensure project success.
Required Qualifications & Skills
  • Education: Bachelor's or Master's degree in Mechanical Engineering or a related technical field from an accredited university or college.
  • Software Proficiency: Expert knowledge of FEA software such as ANSYS Mechanical, Abaqus, or COMSOL Multiphysics. Experience with CAD integration (e.g., SolidWorks, NX, or CATIA) is essential.
  • Analytical Foundations: Deep understanding of structural mechanics, multi body thermodynamics, and material science. Demonstrated experience conducting trade studies for mechanical design optimization.
  • Mathematical Proficiency: Strong skills in numerical analysis and computational thinking for complex problem-solving. Competent with basic engineering calculations for stress, thermal, and dynamic analysis.
  • Communication: Ability to communicate highly technical analysis results to non-technical stakeholders and cross-functional design teams. Contribute to safety documentation as required.
  • Performing other duties as assigned to support project objectives.
  • Minimal travel required; occasional evening or weekend work may be necessary to meet project deadlines.
  • Excellent organizational and time management skills with sound engineering judgment.
  • Highly dependable, self-motivated, and accountable, with the ability to work effectively in a team or independently.
  • U.S. citizen or lawful permanent resident (Green Card holder). Must successfully complete a U.S. government background check.
Desired Qualifications
  • Professional Engineer (PE) license or Engineer-In-Training (EIT) status.
  • Proficiency in scripting/automation tools such as Python or MATLAB for data processing.
  • Certified SOLIDWORKS Simulation Professional (CSWP-S) and experience with SolidWorks PDM.
  • Proficiency with Thermal Desktop.
  • Experience designing, analyzing, and testing hardware for extreme environments (e.g., space, high-temperature, or high-vibration conditions).
  • Familiarity with industry standards for mechanical design, manufacturing, and testing in aerospace or spaceflight applications.