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Ansys Jobs in Oklahoma (NOW HIRING)

Experience with engineering analysis tools like ANSYS for structural or finite element analysis. * Strong understanding of material properties and selection for various operating environments ...

Pro - Ansys Mechanical - CAESAR II - SolidWorks - NozzlePro Working at Zeeco means being part of a people-centric culture and environment built on mutual respect, personal encouragement, professional ...

Pro - Ansys Mechanical - CAESAR II - SolidWorks - NozzlePro Working at Zeeco means being part of a people-centric culture and environment built on mutual respect, personal encouragement, professional ...

Pro - Ansys Mechanical - CAESAR II - SolidWorks - NozzlePro Working at Zeeco means being part of a people-centric culture and environment built on mutual respect, personal encouragement, professional ...

FEA (Ansys), Thermal-Structural Analysis, Modal Analysis. * Prototyping & Manufacturing: Rapid Prototyping, Machining, Molding, Assembly, and Testing sometimes within an aggressive timeline.

Engineering SW such as Ansys SCADE, CATIA,Polarion, etc. * IT Governance frameworks * Familiarity with FedRAMP, TAA, & CMMC Please Note * Please only post if you are a US Citizen only. (Green Card ...

Engineering SW such as Ansys SCADE, CATIA,Polarion, etc. * IT Governance frameworks * Familiarity with FedRAMP, TAA, & CMMC Please Note * Please only post if you are a US Citizen only. (Green Card ...

Engineering SW such as Ansys SCADE, CATIA, Polarion, etc. * IT Governance frameworks * Familiarity with FedRAMP, TAA, & CMMC Please Note * Please only post if you are a US Citizen only. (Green Card ...

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Ansys information

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How much do ansys jobs pay per hour?

As of Jul 31, 2026, the average hourly pay for ansys in Oklahoma is $21.63, according to ZipRecruiter salary data. Most workers in this role earn between $18.65 and $23.75 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an Ansys Engineer, and why are they important?

To thrive as an Ansys Engineer, you need a solid understanding of engineering principles, proficiency in finite element analysis (FEA), and typically a degree in mechanical, aerospace, or related engineering fields. Mastery of Ansys simulation software, relevant CAD tools, and possibly certifications like Ansys Certified Expert are commonly required. Strong analytical thinking, problem-solving abilities, and effective communication help professionals interpret simulation results and collaborate with multidisciplinary teams. These skills ensure accurate simulations, efficient design processes, and successful project outcomes in industries where precision and innovation are critical.

What is the difference between Ansys vs Mechanical Engineer?

AspectAnsysMechanical Engineer
Required CredentialsEngineering degree, certifications in simulation softwareEngineering degree, often with specialization in mechanical systems
Work EnvironmentDesign and simulation software, engineering labs, R&DManufacturing plants, design offices, R&D departments
Industry UsageProduct design, aerospace, automotive, energyProduct development, manufacturing, systems design
Common Search/ComparisonSimulation tools, engineering softwareMechanical design, engineering roles

While Ansys focuses on simulation and analysis software used by engineers, Mechanical Engineers are professionals who design, analyze, and develop mechanical systems. Ansys is a tool often used by Mechanical Engineers to perform simulations, making their roles interconnected but distinct. Understanding the differences helps in choosing the right career path or software expertise.

What is Ansys and what do Ansys engineers do?

Ansys is a widely used engineering simulation software designed to analyze and solve complex engineering problems related to structural mechanics, fluid dynamics, thermal analysis, and electromagnetics. Ansys engineers use this software to model, simulate, and optimize the performance of products and systems in a virtual environment before physical prototypes are made. Their work helps companies reduce development costs, improve product reliability, and accelerate time to market. They often collaborate with design and manufacturing teams to interpret simulation results and recommend design improvements.

What types of projects do engineers typically work on when using Ansys software in a professional setting?

Engineers who use Ansys software are often involved in simulation-driven projects such as finite element analysis (FEA), computational fluid dynamics (CFD), and electromagnetic field simulations. These projects can range from optimizing the structural integrity of automotive components to improving thermal management in electronics or simulating fluid flow in aerospace designs. Collaboration with cross-functional teams—including design, manufacturing, and testing—is common to ensure simulation results align with real-world performance. The work often involves iterating on models, validating results, and communicating findings to stakeholders, making strong communication and analytical skills essential.
What are the most commonly searched types of Ansys jobs in Oklahoma? The most popular types of Ansys jobs in Oklahoma are:
What are popular job titles related to Ansys jobs in Oklahoma? For Ansys jobs in Oklahoma, the most frequently searched job titles are:
What cities in Oklahoma are hiring for Ansys jobs? Cities in Oklahoma with the most Ansys job openings:
Infographic showing various Ansys job openings in Oklahoma as of July 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $44,982 per year, or $21.6 per hour.

Senior Specialist, Mechanical Engineer

L3HHCM20

Tulsa, OK

$78K - $103K/yr

Other

Re-posted 27 days ago


Job description

Job Title: Senior Specialist, Mechanical Engineer

Job Code: 41104

Job Location: Tulsa, OK

Job Schedule: 9/80 Work Schedule - (Every other Friday is a non-workday.)

Job Description:

A highly skilled and innovative Senior Mechanical Engineer to perform design, development, analysis, prototyping, manufacturing, and validating precision components and mechanisms as well as integrating opto-mechanical assemblies in a program team environment.  Program support and technical leadership including, but not limited to, requirements definition, trade studies, design sensitivity, optimization studies, assembly, integration and testing.

Able to drive projects from concept through manufacturing and final operational test. Candidate must have proven expertise in CAD modeling, FEA simulation for thermal/structural, design for manufacturing and ensuring compliance with stringent AS9100 design standards. The Candidate must be able to work independently or within a multi-disciplined team environment.

Essential Functions:

  • Responsible for leading a multi-disciplinary Engineering Team through system requirements, design, analysis, test, hardware build, delivery and launch.
  • Defines and establishes the technical approach to meet assigned objectives. Including:
    • Mechanical Design: Experience with Precision Mechanisms, Opto-Mechanical Systems, GD&T (ASME Y14.5), Tolerance Analysis, Electro-Mechanical design, and motion systems.
    • Optical Sensors & Components: Experience with Lens Mounting, Alignment Strategies, Focus Systems, and Laser System Integration.
    • Simulation & Analysis: FEA (Ansys), Thermal-Structural Analysis, Modal Analysis.
    • Prototyping & Manufacturing: Rapid Prototyping, Machining, Molding, Assembly, and Testing sometimes within an aggressive timeline.
    • Software: Experience with Siemens NX, or other high-end integrated CAD/CAM package, and Ansys Zemax optical design and simulation software or similar. 
  • Develops and performs testing to show proof-of-concept and/or qualification of new designs.
  • Prepares reports, formal documentation and presentation materials summarizing analysis results and present results to both external and internal groups, including leadership and customers.
  • Must be able to obtain and maintain a Top Secret security clearance.

Qualifications:

  • Bachelor's degree in engineering, physics, or a related field and 6 years opto-mechanical systems experience or Master's degree and 4 years of experience.  In lieu of degree, 10 years of mechanical engineering experience.
  • Experience in the design and sustainment of complex opto-mechanical systems.
  • Designed or optimized complex opto-mechanical sub-assemblies for imaging systems.
  • Experience performing advanced FEA on precision components, enhancing structural integrity and reducing failure rates.
  • Experience with selected, integrated, and aligned high-precision optical sensors with tolerance.

Preferred Additional Skills:

 

  • Strong knowledge of electro-optical principles and image sciences.
  • Proficiency in analyzing and interpreting infrared imagery and data.
  • Familiarity with maintenance and sustainment practices for complex systems.
  • Proficiency in design and 3D modeling of solids, surfaces, and assemblies (primary CAD tool will be Siemens NX)
  • Drafted detailed drawings with GD&T, collaborating with vendors for custom fabrication. 
  • Proficiency in tolerance stack-up analysis for mechanical designs.