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Abaqus Jobs in Indiana (NOW HIRING)

Mechanical Engr

Crane, IN · On-site

$80 - $110/hr

Proficiency in CAD software (e.g., SolidWorks, Siemens NX, Creo) and finite element analysis (FEA) tools (e.g., ANSYS, Abaqus). * Strong problem‑solving skills and the ability to analyze complex ...

Proficiency in CAD software (e.g., SolidWorks, Siemens NX, Creo) and finite element analysis (FEA) tools (e.g., ANSYS, Abaqus). * Strong problem-solving skills and the ability to analyze complex ...

Proficiency in CAD software (e.g., SolidWorks, Siemens NX, Creo) and finite element analysis (FEA) tools (e.g., ANSYS, Abaqus). * Strong problem-solving skills and the ability to analyze complex ...

Abaqus information

See Indiana salary details

$45.5K

$90.4K

$153.7K

How much do abaqus jobs pay per year?

As of Sep 3, 2026, the average yearly pay for abaqus in Indiana is $90,369.00, according to ZipRecruiter salary data. Most workers in this role earn between $63,276.00 and $112,960.00 per year, depending on experience, location, and employer.

What is an Abaqus?

An Abaqus job refers to the process of setting up, running, and analyzing a simulation using Abaqus, a powerful finite element analysis (FEA) software. It involves defining a model, applying boundary conditions, assigning material properties, and specifying loading conditions. Once submitted, the software solves the problem numerically and generates results, which can be visualized and interpreted for engineering insights. Abaqus jobs are commonly used in structural, thermal, and multiphysics simulations across industries like aerospace, automotive, and civil engineering.

What does an Abaqus do?

Professionals using Abaqus are typically responsible for setting up and running simulations to analyze the behavior of structures or materials under various conditions. Their daily tasks often include creating and refining finite element models, conducting pre- and post-processing of simulation data, and collaborating with engineers or design teams to interpret and report findings. Regular responsibilities also involve troubleshooting simulation issues, optimizing model performance, and maintaining thorough documentation. This role often requires close teamwork with other engineering disciplines to validate results and ensure that project objectives are met efficiently.

What are the key skills and qualifications needed to thrive in the Abaqus position?

To thrive in a role specialized in Abaqus, you need an in-depth understanding of finite element analysis (FEA), engineering mechanics, and proficiency in numerical modeling, typically supported by a degree in mechanical, aerospace, or civil engineering. Mastery of the Abaqus software suite, familiarity with Python scripting for automation, and knowledge of CAD integration are highly valued; certifications in FEA or simulation tools can be advantageous. Strong problem-solving, attention to detail, and effective communication skills distinguish top performers in this field. These capabilities ensure accurate modeling, efficient project workflow, and the ability to clearly present technical results to teams and clients.

Infographic showing various Abaqus job openings in Indiana as of August 2026, with employment types broken down into 86% Full Time, and 14% Contract. Highlights an 90% In-person, and 10% Remote job distribution, with an average salary of $90,369 per year, or $43.4 per hour.

Mechanical Engr

Saic

Crane, IN • On-site

$80 - $110/hr

Other

Re-posted 1 hour ago


SAIC rating

7.8

Company rating: 7.8 out of 10

Based on 80 frontline employees who took The Breakroom Quiz

88th of 226 rated it services


Job description

Description

SAIC is seeking a motivated and highly skilled Mechanical Engineer to join our team focused on the design, development, and deployment of innovative maritime off-board countermeasure systems. This role offers a unique opportunity to contribute to developing advanced mechanical systems that protect naval vessels from threats.

The successful candidate will be a creative problem-solver, applying a strong mechanical engineering foundation to support the system lifecycle, from concept development to production and delivery. Knowledge or experience in maritime domain systems and/or countermeasure technologies is highly desirable.

Key Responsibilities
  1. Collaborate with multi-disciplinary teams (engineers, designers, and analysts) to design, develop, and test mechanical systems and components for maritime countermeasure technologies.
  2. Participate in all phases of the product lifecycle, including requirements analysis, system design, fabrication, testing, and product improvement.
  3. Conduct structural, thermal, and fluid dynamic analyses to validate designs and ensure performance requirements are met.
  4. Design for harsh, dynamic, and maritime operational environments, considering factors such as corrosion resistance, water pressure, and reliability.
  5. Engage in hands‑on integration, troubleshooting, and performance optimization of mechanical components and systems in both lab and field environments.
  6. Prepare detailed documentation, including drawings, technical reports, manufacturing instructions, and test specifications ensuring compliance with industry standards (MIL-STD, ASME).
  7. Collaborate with suppliers/manufacturers to oversee prototyping and production processes, ensuring on‑time and on‑budget delivery.
  8. Stay informed about emerging trends in maritime defense technology and innovation.
Qualifications Basic Qualifications
  • Bachelor's Degree in Mechanical Engineering or related field.
  • 3-5 years of hands‑on experience in mechanical design, analysis, and testing.
  • Proficiency in CAD software (e.g., SolidWorks, Siemens NX, Creo) and finite element analysis (FEA) tools (e.g., ANSYS, Abaqus).
  • Strong problem‑solving skills and the ability to analyze complex systems.
  • Understanding of material selection for environments exposed to seawater, high loads, and dynamic conditions.
  • Experience with rapid prototyping, 3D printing, or additive manufacturing processes.
  • Strong written and verbal communication skills, enabling collaboration across technical and non-technical stakeholders.
Preferred Qualifications
  • Familiarity with maritime defense or off‑board countermeasure systems (e.g., torpedo defense, decoys, anti‑air/anti‑surface systems).
  • Background or experience with MIL‑STD or related testing requirements for the defense industry.
  • Understanding of systems engineering principles and integration processes in maritime environments.
  • Exposure to hydrodynamic systems, buoyancy‑driven devices, or marine vehicle/structure design.
  • Hands‑on experience in designing for dynamic and shock‑tested applications (e.g., MIL‑S-901).
  • Active or ability to obtain/maintain a security clearance.
  • Master's Degree in Mechanical Engineering or related field.
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