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Temporary Finite Element Analysis Jobs in Raleigh, NC

The ideal candidate will bring a deep understanding of finite element analysis (FEA) and multi-physics simulations and have strong project management skills. RESPONSIBILITIES: * Project Management:

The ideal candidate will bring a deep understanding of finite element analysis (FEA) and multi-physics simulations and have strong project management skills. RESPONSIBILITIES: * Project Management:

Mechanical Engineer II

Raleigh, NC Β· On-site

$55 - $60/hr

Proficiency in CAD software (e.g., SolidWorks, AutoCAD) and engineering analysis tools (e.g., Finite Element Analysis). * Strong understanding of mechanical engineering principles, including statics ...

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Proficiency in CAD software (e.g., SolidWorks, AutoCAD) and engineering analysis tools (e.g., Finite Element Analysis). * Strong understanding of mechanical engineering principles, including statics ...

Ability to explain signal processing for biosignals, finite element analysis, drug delivery systems, and medical device design principles while preparing students for biomedical engineering ...

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Temporary Finite Element Analysis information

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$11

$63

$87

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

As of Sep 14, 2026, the average hourly pay for temporary finite element analysis in Raleigh, NC is $63.32, according to ZipRecruiter salary data. Most workers in this role earn between $53.27 and $74.09 per hour, depending on experience, location, and employer.

What is a temporary finite element analysis job?

A Temporary Finite Element Analysis (FEA) job involves short-term employment focused on using FEA software to simulate and analyze how products or structures respond to various physical forces. These roles are commonly found in industries like engineering, automotive, aerospace, and manufacturing, where accurate modeling is crucial for design and safety. Temporary FEA professionals work on specific projects, often helping teams meet deadlines or manage peak workloads. They use specialized tools to create models, run simulations, and interpret results to improve product designs or solve engineering problems.

What are the key skills and qualifications needed to thrive as a temporary finite element analysis engineer?

To thrive as a Temporary Finite Element Analysis Engineer, you need a solid background in mechanical or structural engineering, experience with FEA methodologies, and preferably a relevant engineering degree. Proficiency in FEA software such as ANSYS, Abaqus, or SolidWorks Simulation, along with familiarity in CAD systems, is typically required. Strong analytical thinking, attention to detail, and effective communication skills set standout candidates apart in this role. These skills ensure accurate simulations, insightful reporting, and efficient collaboration on time-sensitive engineering projects.

What are some common challenges faced in a temporary finite element analysis role and how can they be managed effectively?

In a temporary FEA position, you may encounter challenges such as quickly acclimating to new software platforms, understanding project-specific requirements, and integrating with established engineering teams. To manage these effectively, it’s important to communicate proactively with team members, clarify the scope of your analysis early on, and leverage documentation or previous project examples provided by the company. Staying organized and setting clear milestones can also help ensure you deliver accurate results within tight deadlines commonly associated with temporary roles.

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

AspectTemporary Finite Element AnalysisMechanical Design Engineer
Required CredentialsEngineering degree, FEA software proficiencyEngineering degree, CAD software proficiency
Work EnvironmentAnalysis labs, engineering teamsDesign offices, manufacturing settings
Industry UsageEngineering analysis, product validationProduct development, design optimization

Temporary Finite Element Analysis focuses on performing detailed simulations to evaluate product performance, while Mechanical Design Engineers develop and refine product designs. Both roles require engineering backgrounds and technical software skills, but their core functions differ: analysis versus design. Understanding these differences helps employers and professionals identify the right skill sets and career paths in the engineering industry.

What are the most commonly searched types of Finite Element Analysis jobs in Raleigh, NC?

The most popular types of Finite Element Analysis jobs in Raleigh, NC are:

What are popular job titles related to Temporary Finite Element Analysis jobs in Raleigh, NC?

For Temporary Finite Element Analysis jobs in Raleigh, NC, the most frequently searched job titles are:

What job categories do people searching Temporary Finite Element Analysis jobs in Raleigh, NC look for?

The top searched job categories for Temporary Finite Element Analysis jobs in Raleigh, NC are:

What cities near Raleigh, NC are hiring for Temporary Finite Element Analysis jobs?

Cities near Raleigh, NC with the most Temporary Finite Element Analysis job openings:

Infographic showing various Temporary Finite Element Analysis job openings in Raleigh, NC as of September 2026, with employment types broken down into 1% Internship, 79% Full Time, 14% Part Time, and 6% Contract. Highlights an 76% Physical, 4% Hybrid, and 20% Remote job distribution, with an average salary of $131,696 per year, or $63.3 per hour.

Modeling and Simulation Manager

Raleigh, NC β€’ On-site

Full-time

Re-posted 13 days ago


Job description

Vulcan Elements is manufacturing American rare-earth permanent magnets for a secure, resilient future. With a focus on national security and economic resiliency, we serve critical industries such as defense, aerospace, and automotive powering a high-technology future. Vulcan Elements is building a team of ambitious professionals committed to Mission Focus, Technical Excellence and Transparency.

As the Modeling and Simulation Manager you will grow and lead a multidisciplinary team of computational scientists and engineers, driving physics-based and data-based modeling efforts that directly improve magnet performance, production yields, and process efficiency. 

This is a hands-on technical leadership role. You will both contribute directly to modeling work and grow a team with deep expertise across a variety of modeling and simulation modalities, including but not limited to mechanical, fluid dynamics, electronic structure, and mathematical and image analysis. Your group's output will shape process decisions, reduce experimental iteration cycles, and create quantitative links between structure, processing conditions, and final properties.  

This role will initially support pilot-scale and R&D activities (RTP, NC), with the potential to contribute to commercial plant operations (Benson, NC) in the next year.  

The ideal candidate has hands-on experience with one or more of COMSOL, Fluent, finite element analysis, thermodynamic modeling (FactSage, ThermoCalc), mathematical and image analyses, and density functional theorgy, as well as experience as a people leader.  

Responsibilities 

Build and manage a matrixed modeling and simulations team with broad expertise spanning Finite element analysis, Computational fluid dynamics, Stress/Strain analysis, thermodynamic modeling, mathematical/image analysis, and DFT; define hiring roadmap, team structure, and capability milestones. 

  • Translate R&D priorities into a modeling agenda with clear deliverables, timelines, and success criteria in partnership with process engineering, materials science, and production teams. 
  • Foster a culture of scientific rigor, reproducibility, and rapid iteration; establish standards for model validation, documentation, and peer review. 
  • Present results and recommendations to technical and executive stakeholders; communicate uncertainty and model limitations clearly. 

 Responsibilities and tasks outlined are not exhaustive and may change as determined by the needs of the business.

Qualifications 

  •  Ph.D. or M.S. in Materials Science, Chemical Engineering, Mechanical Engineering, Applied Physics, or a related quantitative field. 
  • 5+ years of hands-on experience with COMSOL, Fluent, or equivalent; demonstrated ability to build and validate coupled multiphysics models and finite element analysis (FEA). 
  • Strong mathematical modeling background; experience with image analysis, machine learning, statistical modeling, or signal processing applied to materials characterization data. 
  • Familiarity with rare earth magnets, NdFeB alloy systems, or related metallic/magnetic materials. 
  • Experience leading or mentoring a small technical team; ability to set priorities, provide technical guidance, and develop junior researchers. 
  • Proficiency in Python, MATLAB, Git, or equivalents for scripting, data analysis, and model post-processing. 
  • Strong written and verbal communication skills; able to produce clear technical reports and present complex results to non-specialist audiences. 

Must be a U.S. Person due to required access to U.S. export-controlled information or facilities

Preferred Qualifications 

  • Direct experience with DFT codes (VASP, Quantum ESPRESSO, or similar) or demonstrated ability to direct and interpret DFT studies. 
  • Background in rare earth processing, hydrometallurgy, or magnet manufacturing. 
  • Experience with grain boundary diffusion processes or sintering simulation. 
  • Familiarity with thermodynamic modeling and databases such as FactSage, or ThermoCalc 
  • Knowledge of machine learning principles for data analysis 
  • Familiarity with electron microscopy image analysis (SEM/EDS/EBSD) and quantitative microstructural characterization. 
  • Publication record in computational materials science, process simulation, or permanent magnets. 
  • Experience managing budgets, external collaborators, or academic partnerships.