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Mechanical Design Analysis Engineer Jobs in Raleigh, NC

Lead Mechanical Engineer

Raleigh, NC · On-site

$97K - $143K/yr

As a Lead Mechanical Engineer, you will lead the mechanical design and development of product lines ... You will also contribute to product expansion projects, Value Analysis/Value Engineering (VAVE ...

Mechanical Designer/Engineer

Raleigh, NC

$67K - $91K/yr

Are you ready to design your future? Be our next Mechanical Designer/ Engineer! Your work environment at EXP: In this role, you will be a part of the Mechanical team, of the MEP Buildings sector ...

Mechanical Designer/Engineer

Raleigh, NC · On-site

$67K - $91K/yr

Are you ready to design your future? Be our next Mechanical Designer/ Engineer! Your work environment at EXP: In this role, you will be a part of the Mechanical team, of the MEP Buildings sector ...

Senior Mechanical Engineer

Raleigh, NC

$101K - $134K/yr

We're looking for a Senior Mechanical Engineer to join our growing Facilities division in North ... Lead the design and analysis of HVAC, plumbing, mechanical, and building systems for complex ...

Collaborate with mechanical engineers, architects, and other design disciplines to develop ... Strong organizational, analytical, communication, and collaboration skills. * Ability to manage ...

Showing results 41-60

Mechanical Design Analysis Engineer information

See Raleigh, NC salary details

$44.2K

$89K

$132.7K

How much do mechanical design analysis engineer jobs pay per year?

As of Aug 8, 2026, the average yearly pay for mechanical design analysis engineer in Raleigh, NC is $89,021.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,900.00 and $100,100.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a mechanical design analysis engineer?

To thrive as a Mechanical Design Analysis Engineer, you need a solid background in mechanical engineering principles, proficiency in design and analysis methodologies, and typically a bachelor's degree in mechanical engineering or a related field. Familiarity with CAD software (such as SolidWorks or AutoCAD), finite element analysis (FEA) tools, and relevant industry codes or certifications (like PE licensure) is essential. Strong problem-solving abilities, attention to detail, and effective communication skills help you excel in collaborating with cross-functional teams and presenting technical findings. These competencies ensure the development of reliable, efficient products and effective resolution of design challenges.

How does a mechanical design analysis engineer typically collaborate with cross-functional teams during a product development cycle?

Mechanical Design Analysis Engineers often work closely with product designers, manufacturing engineers, and quality assurance teams throughout the product development process. They provide critical analysis and simulation data to help refine designs, ensure manufacturability, and verify that products meet safety and performance standards. Regular meetings, design reviews, and collaborative problem-solving sessions are common, allowing for real-time feedback and iterative improvements. This collaborative environment ensures that the final product is optimized from both a design and engineering perspective.

What is the difference between Mechanical Design Analysis Engineer vs Mechanical Design Engineer?

AspectMechanical Design Analysis EngineerMechanical Design Engineer
Primary FocusAnalyzing mechanical systems for performance, stress, and durabilityCreating and developing mechanical components and assemblies
Skills & CertificationsFEM, CAD, analytical tools, engineering degreesCAD, design software, engineering degrees
Work EnvironmentDesign validation labs, simulation software, R&D teamsDesign offices, manufacturing plants, prototyping labs
Industry UsageAutomotive, aerospace, manufacturing, R&DProduct development, manufacturing, engineering firms

Both roles require engineering degrees and CAD skills, but the Mechanical Design Analysis Engineer specializes in evaluating and testing mechanical systems through analysis, while the Mechanical Design Engineer focuses on creating and developing new mechanical designs.

What does a mechanical design analysis engineer do?

A Mechanical Design Analysis Engineer is responsible for designing and analyzing mechanical components and systems to ensure they meet performance, safety, and reliability standards. They use computer-aided design (CAD) software and simulation tools to model and test designs under various conditions. Their work often involves collaborating with other engineers, reviewing technical drawings, and optimizing designs to improve efficiency and reduce costs. Additionally, they may be involved in prototype testing and troubleshooting to resolve any design issues before manufacturing.

Are mechanical design analysis engineers in demand?

Mechanical design analysis engineers are in strong demand due to the need for expertise in CAD software, finite element analysis, and materials testing across industries such as aerospace, automotive, and manufacturing. The role often requires problem-solving skills and knowledge of industry standards, with job growth driven by technological advancements and automation.
What job categories do people searching Mechanical Design Analysis Engineer jobs in Raleigh, NC look for? The top searched job categories for Mechanical Design Analysis Engineer jobs in Raleigh, NC are:
What cities near Raleigh, NC are hiring for Mechanical Design Analysis Engineer jobs? Cities near Raleigh, NC with the most Mechanical Design Analysis Engineer job openings:

Analysis Engineer - Process Modeling

Vulcan Elements

Durham, NC

Full-time

Re-posted 23 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.

We are seeking an Analysis Engineer - Process Modeling to develop and apply physics-based simulations of our NdFeB permanent magnet manufacturing processes. This individual will build and validate computational models of fluid dynamics, heat transfer, electromagnetic behavior, and mechanical response across key process steps, providing engineering insight that drives process optimization and supports product development. This is a technical role requiring strong fundamentals in computational mechanics, experience with commercial simulation platforms, and the ability to translate modeling results into actionable manufacturing guidance.

Responsibilities

  • Model thermal conditions during manufacturing processes such as sintering, heat treatment, and casting.
  • Create representative models for various manufacturing processes including fluid dynamics, mechanical behavior, heat transfer, and electromagnetic phenomena.
  • Use models combined with process data to support process improvement and optimization.
  • Build and refine simulations using ANSYS (Mechanical, Maxwell, ROCKY, Fluent), COMSOL Multiphysics, or equivalent commercial simulation platforms.
  • Collaborate with process, materials, and data engineers to integrate simulation outputs into process development and optimization workflows.
  • Design simulation studies to evaluate process sensitivities, identify failure modes, and guide experimental campaigns.
  • Document modeling assumptions, boundary conditions, validation results, and recommendations in a structured manner consistent with quality system requirements.
  • Support development of custom scripts and automation tools (Python, MATLAB, or similar) for pre/post-processing of simulation data.

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

Qualifications

  • B.S. or higher in Mechanical Engineering, Aerospace Engineering, Materials Science and Engineering, or a closely related field.
  • Demonstrated experience building and validating process models using ANSYS (e.g., Mechanical, Maxwell, ROCKY, Fluent), COMSOL Multiphysics, or equivalent commercial simulation software.
  • Strong working knowledge of computational fluid dynamics (CFD), heat transfer modeling, and mechanical stress/strain analysis.
  • Proficiency with scripting languages (Python, MATLAB, or similar) for simulation setup, data extraction, and post-processing.
  • Ability to work independently, manage multiple concurrent modeling efforts, and communicate results clearly to cross-functional teams.

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

Preferred Qualifications

  • Experience modeling metal manufacturing processes such as sintering, casting, powder compaction, forging, or heat treatment.
  • Experience modeling particle-level interactions including powder packing, granular flow, or discrete element methods (DEM).
  • Experience with electromagnetic modeling and simulation (e.g., ANSYS Maxwell) for magnetic field analysis or electromagnetic process design.
  • Familiarity with phase-field, CALPHAD, or other microstructure-evolution modeling approaches.
  • Experience with multiphysics coupled simulations (e.g., thermo-mechanical, fluid-structure interaction).
  • Familiarity with GPU-accelerated computing, HPC environments, or cloud-based simulation platforms.
  • Experience in a production, industrial, or R&D environment with exposure to manufacturing constraints and process validation.

Laboratory Safety and PPE Requirements

This position requires strict adherence to laboratory safety protocols and regulatory guidelines. Employees must consistently wear appropriate personal protective equipment (PPE), including lab coats, safety glasses, gloves, and any additional gear required for specific procedures or chemical handling. The role involves working with potentially hazardous materials, equipment, and processes, and team members must follow all established safety rules, maintain a clean and compliant work area, and promptly report any unsafe conditions. The individual must be able to complete required training, apply proper safety practices, and demonstrate a strong commitment to maintaining a safe laboratory environment.