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Constitutive Modeling Jobs (NOW HIRING)

Constitutive behavior models: Flow stress, work hardening, strain rate sensitivity * Formability & failure prediction models: FLD, FLC, earing, spring-back, bendability * Create and refine process ...

Constitutive behavior models: Flow stress, work hardening, strain rate sensitivity * Formability & failure prediction models: FLD, FLC, earing, spring-back, bendability * Create and refine process ...

Perform advanced numerical modelling using FLAC3D and industry-leading constitutive models to support complex geotechnical assessments. Support stope sequencing, mine design optimization, and ...

Working knowledge of solder constitutive models and fatigue life prediction methods. * Demonstrated correlation against physical measurement, and the judgment to distinguish a modeling error from a ...

Perform advanced numerical modelling using FLAC3D and industry-leading constitutive models to support complex geotechnical assessments. Support stope sequencing, mine design optimization, and ...

Perform advanced numerical modelling using FLAC3D and industry-leading constitutive models to support complex geotechnical assessments. Support stope sequencing, mine design optimization, and ...

Solid Mechanics Modeling Engineer

Corning, NY · On-site

$62K - $85K/yr

Experience developing constitutive material models and characterization approaches for brittle materials, supported by hands-on experience with materials testing, especially strength and fracture ...

... constitutive models to support complex geotechnical assessments. • Support stope sequencing, mine design optimization, and excavation stability assessments. • Design and evaluate: • Stope ...

Experience developing constitutive material models and characterization approaches for brittle materials, supported by hands-on experience with materials testing, especially strength and fracture ...

Develop geotechnical models for open-pit and underground mining operations. * Perform advanced numerical modelling using FLAC3D and industry-leading constitutive models to support complex ...

Working knowledge of solder constitutive models and fatigue life prediction methods. * Demonstrated correlation against physical measurement, and the judgment to distinguish a modeling error from a ...

Experience developing constitutive material models and characterization approaches for brittle materials, supported by hands-on experience with materials testing, especially strength and fracture ...

Develop geotechnical models for open-pit and underground mining operations. * Perform advanced numerical modelling using FLAC3D and industry-leading constitutive models to support complex ...

Showing results 41-60

Constitutive Modeling information

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$61K

$121K

$157.5K

How much do constitutive modeling jobs pay per year?

As of Sep 11, 2026, the average yearly pay for constitutive modeling in the United States is $121,012.00, according to ZipRecruiter salary data. Most workers in this role earn between $105,500.00 and $138,500.00 per year, depending on experience, location, and employer.

What is constitutive modeling?

Constitutive modeling is the process of developing mathematical models that describe how materials respond to different loads, deformations, or environmental conditions. These models are essential in engineering and science, as they help predict the behavior of materials such as metals, polymers, or biological tissues under various circumstances. Constitutive models take into account properties like elasticity, plasticity, viscosity, and damage to simulate real-world material responses. They are widely used in fields like civil engineering, biomechanics, and materials science to improve the design and safety of structures and products.

What are the key skills and qualifications needed to thrive as a constitutive modeler, and why are they important?

To thrive as a Constitutive Modeler, you need a strong background in continuum mechanics, materials science, and advanced mathematics, typically supported by a graduate degree in engineering or physics. Proficiency with computational tools such as finite element analysis (FEA) software, programming languages (e.g., Python, MATLAB), and experience with simulation platforms is essential. Strong problem-solving abilities, attention to detail, and effective communication skills distinguish top performers in this field. These competencies are crucial for accurately developing models that predict material behavior, which directly impacts the safety and reliability of engineering designs.

What are some common challenges faced by professionals working in constitutive modeling, and how can they be addressed?

Professionals in constitutive modeling often encounter challenges such as limited experimental data for model calibration, selecting appropriate material models for complex behaviors, and ensuring computational efficiency in large-scale simulations. These challenges can be addressed by collaborating closely with experimentalists to gather high-quality data, continuously updating knowledge on the latest modeling techniques, and leveraging advanced numerical methods or software tools tailored for constitutive modeling. Effective communication with multidisciplinary teams is also crucial for integrating models into broader engineering workflows.

What is the difference between Constitutive Modeling vs Finite Element Analysis?

AspectConstitutive ModelingFinite Element Analysis
Primary FocusDeveloping material behavior equationsSimulating physical systems using models
Required CredentialsEngineering degrees, knowledge of material scienceEngineering degrees, understanding of numerical methods
Work EnvironmentResearch labs, R&D departmentsDesign firms, engineering consulting, manufacturing
Industry UsageMaterial science, mechanical engineeringStructural engineering, aerospace, automotive

Constitutive Modeling focuses on creating equations that describe how materials respond under various conditions, while Finite Element Analysis uses these models to simulate and analyze the behavior of structures or components. Both roles often overlap in engineering projects but serve different purposes: one develops the material laws, the other applies them in simulations.

Infographic showing various Constitutive Modeling job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 87% Full Time, 10% Part Time, and 2% Contract. Highlights an 81% Physical, 4% Hybrid, and 15% Remote job distribution, with an average salary of $121,012 per year, or $58.2 per hour.

Senior Principal Engineer - Solid & Structural Mechanics (Hybrid)

East Hartford, CT • On-site

Prattwhitney
Engineering Professional Services • 10K+ employees

$99K - $135K/yr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted 25 days ago


Pratt & Whitney rating

8.8

Company rating: 8.8 out of 10

Based on 162 frontline employees who took The Breakroom Quiz


Job description

Date Posted: 2026-08-13 Country: United States of America Location: US-CT-EAST HARTFORD-RTRC K ~ 411 Silver Ln ~ RTRC K Position Role Type: Hybrid U.S. Citizen, U.S. Person, or Immigration Status Requirements: U.S. citizenship is required, as only U.S. citizens are authorized to access certain necessary systems. Security Clearance Type: None/Not Required Security Clearance Status: Not Required

At RTX, the world's largest aerospace and defense company, 185,000 great minds are united by purpose and inspired to make a difference solving the world’s most complex problems. With our three market leading businesses, world-class operations and investments in research and development, we offer capabilities and opportunity no one else can. Together, we push the boundaries of known science and find new ways to connect and protect our world. Join us and help shape the future of aerospace and defense.

What You Will Do

The Solid and Structural Mechanics team at RTX Technologies Research Center (RTRC) is seeking qualified candidates to join the team as a Senior Principal Engineer. The candidate is expected to provide technical contributions in the core area of mechanics of materials and structures as well as in the use and deployment of emerging Artificial Intelligence (AI) and Machine Learning (ML) tools to solve complex problems in those areas. Background and expertise in one or more core areas of mechanics such as constitutive modeling, damage mechanics, fracture mechanics, structural analysis, structural dynamics and vibrations, multi-scale modeling, finite element methods applied to metallic and/or composite materials are desired. The candidate will have exceptional communication skills, capable of interacting with RTRC senior management as well as members of the technical staff. The candidate must be able to provide timely, accurate, and detailed reports and presentations. Experience in developing innovative ideas, marketing them to internal and external funding agencies, and proposal writing is highly desirable.

Qualifications You Must Have
  • Typically requires a degree in Science, Technology, Engineering or Mathematics (STEM) and a minimum of 10 years of prior relevant experience unless prohibited by local laws/regulations, or An Advanced Degree in a related field and minimum 7 years experience MS or Ph.D. in Mechanical Engineering / Aerospace Engineering / Engineering Mechanics / Materials Science & Engineering
  • Proficiency in the following is required: (1) Development and deployment of AI/ML tools for solving mechanics/materials/structures problems (2) Linear and nonlinear Finite Element Analysis (FEA) using ANSYS or ABAQUS including writing user material subroutines
  • Proficiency in the following is desirable: Multi-scale and multi-physics modeling approaches leveraging AI/ML techniques is highly desired.
  • Excellent oral and written communication skills; proficient with Microsoft tools: Word, Excel and PowerPoint; high energy; team player

Please ensure the role type defined below is appropriate for your needs before applying to this role.

This position is classified as: Hybrid: Employees who are working in Hybrid roles will work regularly both onsite and offsite. Ratio of time working onsite will be determined in partnership with your leader. If you live within a reasonable commute of an RTX site with other colleagues you interact with, your manager will discuss whether there is a degree of onsite presence associated with this role. As part of our commitment to maintaining a secure hiring process, candidates may be asked to attend select steps of the interview process in-person at one of our office locations, regardless of whether the role is designated as on-site, hybrid or remote.

The salary range for this role is 132,400 USD - 251,600 USD. The salary range provided is a good faith estimate representative of all experience levels. RTX considers several factors when extending an offer, including but not limited to, the role, function and associated responsibilities, a candidate’s work experience, location, education/training, and key skills.

Hired applicants may be eligible for benefits, including but not limited to, medical, dental, vision, life insurance, short-term disability, long-term disability, 401(k) match, flexible spending accounts, flexible work schedules, employee assistance program, Employee Scholar Program, parental leave, paid time off, and holidays.

Specific benefits are dependent upon the specific business unit as well as whether or not the position is covered by a collective-bargaining agreement.

Hired applicants may be eligible for annual short-term and/or long-term incentive compensation programs depending on the level of the position and whether or not it is covered by a collective-bargaining agreement. Payments under these annual programs are not guaranteed and are dependent upon a variety of factors including, but not limited to, individual performance, business unit performance, and/or the company’s performance.

This role is a U.S.-based role. If the successful candidate resides in a U.S. territory, the appropriate pay structure and benefits will apply.

RTX anticipates the application window closing approximately 40 days from the date the notice was posted. However, factors such as candidate flow and business necessity may require RTX to shorten or extend the application window.

RTX is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, age, disability or veteran status, or any other applicable state or federal protected class. RTX provides affirmative action in employment for qualified Individuals with a Disability and Protected Veterans in compliance with Section 503 of the Rehabilitation Act and the Vietnam Era Veterans’ Readjustment Assistance Act.

Privacy Policy and Terms: Click on this link to read the Policy and Terms

RTX is an aerospace and defense company that provides advanced systems and services for commercial, military and government customers worldwide. It comprises three industry-leading businesses – Collins Aerospace, Pratt & Whitney, and Raytheon. Its 195,000 employees enable the company to operate at the edge of known science as they imagine and deliver solutions that push the boundaries in quantum physics, electric propulsion, directed energy, hypersonics, avionics and cybersecurity. The company, formed in 2020 through the combination of Raytheon Company and the United Technologies Corporation aerospace businesses, is headquartered in Arlington, Virginia.

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About Pratt & Whitney

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Pratt & Whitney has a long history of leadership and innovation in the field of aviation propulsion. Our story begins in the 1920s and has flourished throughout the decades. We have continuously transformed and reinvented our businesses to offer superior products and services to our customers. In 1925, the Pratt & Whitney Aircraft Company was founded by Frederick B. Rentschler, pioneer of the air-cooled radial engine design which enabled unprecedented power-to-weight ratio. Its first engine, the R-1340 Wasp engine, transformed military and commercial aviation and is still in use today. In 1928, the Canadian division of the Pratt & Whitney Aircraft Company was established. In 1944, Pratt & Whitney began its gas turbine and jet propulsion initiative. The company constructed a wind tunnel, laboratory and engineering center to support our allies’ efforts in World War II. In 1945, wartime production included more than 300,000 Pratt & Whitney engines, touted by service members as extremely dependable – a legacy that continues today. From there, Pratt & Whitney continued to design and innovate more powerful, agile, and reliable engines becoming a leader in the aerospace industry. Today, Pratt & Whitney has more than 85,000 engines in service and more than 16,000 customers worldwide.

Industry

Engineering professional services

Company size

10,000+ Employees

Headquarters location

East Hartford, CT, US