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Mechanical Simulation Jobs in Arizona (NOW HIRING)

Mechanical Engineer

Tucson, AZ · On-site

$65K - $85K/yr

Mechanical Engineer As a Mechanical Engineer II, you will be responsible for designing, developing ... Support product validation activities, simulation efforts, and design verification testing.

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Mechanical Simulation information

What is mechanical simulation?

Mechanical simulation is the use of computer software to model, analyze, and predict the behavior of mechanical systems under various conditions. It allows engineers to visualize how parts and assemblies will perform in real-world scenarios, such as under stress, heat, or motion, without the need for physical prototypes. This process helps identify potential issues early, optimize designs, and save both time and resources in product development.

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

To thrive as a Mechanical Simulation Engineer, you need a solid background in mechanical engineering principles, mathematics, and physics, usually supported by a relevant engineering degree. Expertise with simulation software such as ANSYS, Abaqus, or SolidWorks, along with proficiency in programming languages like Python or MATLAB, is commonly required. Strong analytical thinking, problem-solving abilities, and effective communication skills help you interpret results and collaborate with multidisciplinary teams. These skills ensure accurate modeling, efficient problem resolution, and successful project outcomes in complex engineering environments.

What are some typical collaboration points between mechanical simulation engineers and other departments within a company?

Mechanical simulation engineers frequently work alongside design, manufacturing, and testing teams to ensure that virtual models accurately represent real-world conditions. They often consult with design engineers to clarify requirements and with manufacturing teams to address feasibility concerns. Regular meetings and reviews help align simulation results with project goals, and close collaboration with testing teams ensures that simulation outcomes are validated against physical prototypes. This multidisciplinary interaction is crucial for optimizing product performance and reducing development time.

What is the difference between Mechanical Simulation vs Mechanical Design?

AspectMechanical SimulationMechanical Design
Primary FocusAnalyzing and testing mechanical systems using simulation softwareCreating and developing mechanical components and assemblies
Required SkillsKnowledge of FEA, CAD, and simulation toolsCAD design, engineering principles, and product development
Work EnvironmentOften involves software modeling, testing labs, or virtual environmentsDesign studios, engineering offices, or manufacturing settings
Common CertificationsFEA certifications, CAD software certificationsProfessional engineering licenses, CAD certifications

Mechanical Simulation and Mechanical Design are closely related roles within the engineering field. Mechanical Simulation focuses on analyzing and validating mechanical systems through software tools, while Mechanical Design emphasizes creating and developing those systems. Both roles often require similar technical skills and certifications, but their core activities differ—one tests and predicts performance, the other designs and develops products.

What cities in Arizona are hiring for Mechanical Simulation jobs?

Cities in Arizona with the most Mechanical Simulation job openings:

Senior Mechanical Design Engineer - Simulations

Scottsdale, AZ


Axon
Public Safety Statistics Centers and Offices • 501 - 1,000 employees

8.8

Company rating: 8.8 out of 10

Based on 15 frontline employees who took The Breakroom Quiz

14th of 159 rated electronics manufacturers

People enjoy working here

Good employer

Recommended by parents


$90K - $124K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 2 days ago

New


Job description

What You'll Do

  • Lead simulation efforts for next-generation Axon products from concept development through production.
  • Develop, validate, and maintain high-fidelity simulation models for mechanical components and complex system-level assemblies.
  • Perform nonlinear static and dynamic analyses including impact, vibration, fatigue, drop, shock, and other mechanical loading conditions.
  • Support simulation-driven product development by providing early analytical insight during concept development, prototyping, and product validation.
  • Partner closely with Mechanical Design, Electrical Engineering, Product Management, Industrial Design, Manufacturing, Quality & Reliability, Failure Analysis, and Test Engineering to influence product architecture through simulation-driven design. Correlate simulation results with laboratory testing to improve model accuracy and increase
    confidence in design decisions.
  • Identify design risks early and provide actionable engineering recommendations that improve durability, reliability, manufacturability, and overall product performance.
  • Apply topology optimization, parametric studies, and analytical methods to develop lightweight, robust, and manufacturable designs.
  • Troubleshoot complex mechanical reliability issues throughout the product development lifecycle.
  • Present simulation results, technical findings, and design recommendations to cross-functional teams and engineering leadership.
  • Continuously improve simulation methodologies, modeling standards, and best practices to accelerate product development.

What You'll Bring

  • Bachelor's degree in mechanical engineering or related discipline; Master's degree preferred.
  • Minimum 8 years of experience applying mechanical simulation and engineering analysis to product development for consumer electronics, aerospace, automotive, defense, robotics,
    public safety, or other high-reliability products.
  • Advanced proficiency with simulation tools such as ANSYS, Abaqus, LS-DYNA, HyperMesh, or
    equivalent.
  • Strong understanding of solid mechanics, nonlinear material behavior, fatigue, impact, vibration, numerical methods, and failure analysis.
  • Demonstrated experience developing and validating simulation models through correlation with physical testing.
  • Experience performing system-level simulations for complex electro-mechanical assemblies.
  • Ability to translate simulation results into practical design recommendations that improve product performance, reliability, and manufacturability.
  • Working knowledge of 3D CAD tools and mechanical design principles.
  • Excellent analytical, communication, and presentation skills.
  • Ability to balance competing technical constraints through simulation, testing, and engineering judgment.
  • Collaborative mindset with experience working across multidisciplinary engineering teams in a fast-paced product development environment.

Preferred Qualifications

  • Experience with ruggedization standards such as MIL-STD-810 or equivalent environmental and reliability test methods.
  • Experience with topology optimization, parametric optimization, and design optimization techniques.
  • Experience performing steady-state and transient thermal analysis using finite element methods.
  • Experience simulating complex fluid phenomena including computational fluid dynamics (CFD), gas dynamics, aerodynamics, and thermal-fluid systems.
  • Experience analyzing or resolving electromagnetic and Multiphysics simulation problems.
  • Experience with Fluid-Structure Interaction (FSI), Immersed Computational Fluid Dynamics (ICFD), or coupled Multiphysics simulations.
  • Familiarity with scripting and automation tools such as Python or MATLAB to streamline simulation workflows.

Benefits that Benefit You

  • Competitive salary, bonus, RSUs, and 401(k) with employer match
  • Discretionary paid time off
  • Paid parental leave for all
  • Medical, Dental, and Vision plans
  • Fitness programs
  • Emotional & Mental Wellness support
  • Learning & Development programs
  • And yes, we have snacks in our offices


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