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Mechanical Engineering Research Jobs in Colorado

About the Role This role is an exciting opportunity to grow your mechanical engineering career by ... Research design options and documents findings for project engineers and/or project managers.

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Mechanical Engineering Research information

See Colorado salary details

$47.8K

$108.2K

$175.1K

How much do mechanical engineering research jobs pay per year?

As of Sep 4, 2026, the average yearly pay for mechanical engineering research in Colorado is $108,178.00, according to ZipRecruiter salary data. Most workers in this role earn between $85,700.00 and $133,000.00 per year, depending on experience, location, and employer.

What is mechanical engineering research?

Mechanical engineering research involves the systematic investigation and development of new technologies, materials, processes, or methods within the field of mechanical engineering. Researchers in this area work to solve complex engineering problems, improve existing mechanical systems, and innovate in areas like robotics, thermodynamics, fluid mechanics, and materials science. The goal is to advance knowledge and contribute to technological progress in industries such as automotive, aerospace, energy, and manufacturing.

What are the key skills and qualifications needed to thrive in mechanical engineering research?

To thrive in Mechanical Engineering Research, you need a solid background in mechanical engineering principles, advanced mathematics, and often a graduate degree in engineering or a related field. Familiarity with CAD software, simulation tools like ANSYS or MATLAB, and experience with laboratory equipment are typically required. Strong analytical thinking, problem-solving abilities, and clear technical communication set outstanding researchers apart. These skills ensure rigorous, innovative research and effective collaboration, which are vital for advancing technology and solving complex engineering challenges.

What are some common challenges faced by professionals in mechanical engineering research roles?

Mechanical engineering research professionals often encounter challenges such as balancing theoretical analysis with experimental validation, managing tight project timelines, and staying current with rapidly evolving technologies. Collaboration with multidisciplinary teams is frequent, so strong communication skills are crucial for integrating input from different fields. Additionally, securing funding for research and publishing results in reputable journals can be competitive, requiring persistence and adaptability.

What is the difference between Mechanical Engineering Research vs Mechanical Design Engineer?

AspectMechanical Engineering ResearchMechanical Design Engineer
CredentialsBachelor's or Master's in Mechanical Engineering; often requires research experienceBachelor's or Master's in Mechanical Engineering; focus on design skills
Work EnvironmentLaboratories, research facilities, academic or corporate R&D centersDesign studios, manufacturing plants, engineering firms
Primary FocusDeveloping new theories, materials, or technologiesCreating and testing mechanical components and systems
Industry UsageResearch institutions, universities, R&D departmentsProduct development, manufacturing, engineering consulting

Mechanical Engineering Research involves exploring new concepts and technologies in labs, often within academic or corporate R&D settings. In contrast, Mechanical Design Engineers focus on designing, prototyping, and refining mechanical systems for practical application. Both roles require a strong foundation in mechanical engineering but differ in their primary objectives and work environments.

How to become a researcher in mechanical engineering?

To become a researcher in mechanical engineering, typically a bachelor's degree in mechanical engineering or a related field is required, followed by a master's or Ph.D. for advanced research roles. Developing strong analytical, problem-solving, and technical skills, along with experience in laboratory work and familiarity with engineering software, is essential for success in this field.

What do you do in mechanical engineering research?

Mechanical engineering research involves investigating and developing new technologies, materials, and systems related to mechanics, thermodynamics, and materials science. Researchers design experiments, analyze data, and use tools like CAD software and simulation programs to solve engineering problems and advance knowledge in the field.

What are popular job titles related to Mechanical Engineering Research jobs in Colorado?

For Mechanical Engineering Research jobs in Colorado, the most frequently searched job titles are:

What job categories do people searching Mechanical Engineering Research jobs in Colorado look for?

The top searched job categories for Mechanical Engineering Research jobs in Colorado are:

What cities in Colorado are hiring for Mechanical Engineering Research jobs?

Cities in Colorado with the most Mechanical Engineering Research job openings:

Infographic showing various Mechanical Engineering Research job openings in Colorado as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $108,178 per year, or $52 per hour.

Research Engineer (Mechanical / Electromechanical) - 1644

Scientific Applications & Research Associates, Inc.

Colorado Springs, CO • On-site

$90 - $115/hr

Other

Medical, Dental, Vision, Life, Retirement

Posted 4 days ago


Job description

If you are unable to complete this application due to a disability, contact this employer to ask for an accommodation or an alternative application process.

Research Engineer (Mechanical / Electromechanical) - 1644

Full Time Colorado Springs, CO, US

3 days ago Requisition ID: 1644

Scientific Applications & Research Associates, Inc. (SARA) is a world-class Defense Research and Development enterprise, with a charter to create new and emerging technology innovations in support of Commercial & Government organizations. We have expertise in RF, EMP, Pulsed Power, Acoustics and Threat Warning Systems, and we prioritize partnering with our customers to address real-world problems with cost-effective solutions… that work.

The SARA, Inc. High Power Electromagnetics Division (HPEM) is looking for a highly motivated and skilled Research Engineer with a focus on mechanical engineering to join our interdisciplinary team in our Colorado Springs, CO location. The ideal candidate will combine strong mechanical engineering fundamentals with an investigative mindset and the ability to take technically challenging problems from initial research and analysis through modeling, prototyping, testing, and demonstration.

The successful candidate will be technically curious, resourceful, creative, and comfortable working on problems where the solution may not initially be well defined. Candidates must be strong team participants, possess excellent written and verbal communication skills, and be willing to contribute in a multidisciplinary, fast-paced research and engineering environment.

Responsibilities:

  • Research, conceptualize, analyze, design, prototype, and test mechanical systems and technologies supporting advanced R&D programs
  • Support the development and integration of UAS platforms, payloads, airframes, mechanical subsystems, and related technologies
  • Perform engineering analysis and simulation of mechanical systems, including structural, thermal, dynamic, vibration, aerodynamic, and other relevant analyses
  • Develop analytical and computational models to evaluate system performance, understand design tradeoffs, and guide technical decisions
  • Research and evaluate emerging technologies, materials, manufacturing methods, components, and mechanical concepts for potential application to current and future programs
  • Conduct feasibility studies and trade studies to compare technical approaches and identify promising solutions to complex engineering problems
  • Translate research concepts into practical designs, prototypes, test articles, and experimental systems
  • Plan and conduct laboratory, bench-top, and field experiments to validate models, characterize system performance, and evaluate new technologies
  • Analyze and interpret experimental and simulation data and use results to refine designs, models, and technical approaches
  • Support mechanical design and integration activities, including CAD modeling, drawing development, tolerance analysis, material selection, and design for manufacturing and assembly
  • Collaborate with electrical engineers, physicists, software engineers, technicians, machinists, manufacturing personnel, and other technical disciplines to develop integrated systems
  • Support UAS system integration and testing, including payload integration, mechanical interfaces, structural modifications, ground testing, and flight-test activities
  • Develop technical documentation including research findings, engineering analyses, design documentation, test plans, test reports, trade studies, and technical presentations
  • Communicate research findings and engineering recommendations to technical teams, program leadership, and customers
  • Maintain awareness of advancements in UAS, mechanical engineering, materials, manufacturing, modeling and simulation, and other technologies relevant to SARA's research programs
  • Support technical proposal development by performing background research, developing concepts, preparing technical content, supporting estimates, and contributing to statements of work and technical approaches
  • Develop an understanding of customer missions, technical needs, and funding opportunities and, with experience, contribute to the identification and development of new research and program opportunities
  • Participate in technical reviews, brainstorming sessions, design reviews, customer discussions, and program planning activities
  • Support field testing, demonstrations, and other off-site engineering activities as required

Technical Skillsets

  • Strong foundation in mechanical engineering fundamentals, including mechanics, dynamics, thermodynamics, materials, structures, and mechanical design
  • Knowledge of or experience with UAS/UAV development, integration, testing, or operation, including familiarity with airframes, propulsion, payload integration, structures, or related subsystems
  • Experience with mechanical modeling and simulation tools such as ANSYS, Abaqus, COMSOL, MATLAB/Simulink, or similar engineering analysis software
  • Experience with 3D CAD software such as SolidWorks, Creo, NX, or equivalent
  • Ability to develop analytical models and use first-principles engineering calculations to evaluate complex mechanical systems
  • Understanding of finite element analysis (FEA), structural analysis, thermal analysis, dynamics, vibration, or other applicable simulation methodologies
  • Familiarity with rapid prototyping and manufacturing methods, including machining, additive manufacturing, composites, sheet metal, and other fabrication processes
  • Ability to design and conduct experiments and appropriately select instrumentation, sensors, data‑acquisition equipment, and test methods
  • Proficiency with Python, MATLAB, or similar programming/scripting tools for modeling, simulation, data analysis, or engineering automation is preferred
  • Ability to analyze complex datasets, visualize results, identify trends, and translate findings into actionable engineering conclusions
  • Familiarity with UAS flight dynamics, aerodynamics, propulsion, composite structures, controls, or flight testing is beneficial
  • Ability to quickly research unfamiliar technical areas, evaluate available literature and technologies, and develop an engineering understanding sufficient to guide new research efforts
  • Technical curiosity and willingness to explore unfamiliar engineering problems
  • Strong analytical problem‑solving ability
  • Creativity and ability to develop solutions for open‑ended technical challenges
  • Hands‑on engineering mindset with an interest in building and testing hardware
  • Ability to balance analytical rigor with practical engineering considerations
  • Effective written and verbal communication
  • Ability to communicate complex technical concepts to both technical and non‑technical audiences
  • Strong collaboration in multidisciplinary engineering teams
  • Initiative, resourcefulness, and ability to work with limited direction
  • Strong organization and time‑management skills
  • Ability to manage multiple technical tasks in a fast‑paced R&D environment
  • Interest in developing technical leadership, customer interaction, and proposal‑writing capabilities
  • Bachelor's degree in Mechanical Engineering, Aerospace Engineering, Physics, or a closely related engineering discipline from an accredited institution
  • 5 – 7 years of experience in related engineering work (graduate degrees may be considered in lieu of experience)
  • Demonstrated strength in mechanical engineering fundamentals through academic research, internships, professional experience, or relevant technical projects
  • Experience performing engineering analysis, modeling, simulation, mechanical design, experimentation, or prototype development
  • Familiarity with UAS/UAV technologies, aerospace systems, robotics, autonomous systems, or other relevant multidisciplinary platforms
  • Experience with CAD and engineering analysis or simulation tools
  • Strong analytical and problem‑solving skills with the ability to apply engineering fundamentals to unfamiliar problems
  • Demonstrated ability to independently research technical topics and communicate findings
  • Effective written and verbal communication skills
  • Ability to document technical work through reports, presentations, analyses, and engineering documentation
  • Available for moderate levels of travel, field testing, flight testing, and off‑site work.
  • Ability to work collaboratively within multidisciplinary engineering and research teams
  • Must be a U.S. Citizen with the ability to obtain and maintain a Top Secret or equivalent DoD clearance
  • May require moderate physical effort or carrying/lifting up to 50 pounds
  • Working environment is primarily indoor, moderately quiet, reasonably clean, well‑lighted, and well‑ventilated; moderate physical hazards may exist during laboratory, fabrication, integration, or field‑test activities

Preferred Qualifications:

  • Master's or PhD in Mechanical Engineering, Aerospace Engineering, Physics, or a closely related technical discipline. PhD strongly preferred for candidates with significant research specialization
  • Graduate‑level research experience involving mechanical systems, UAS, aerospace systems, robotics, structures, dynamics, materials, controls, or related technologies
  • Hands‑on experience designing, building, modifying, integrating, or testing UAS platforms or subsystems
  • Experience performing structural, thermal, dynamic, vibration, aerodynamic, or multiphysics simulations
  • Experience developing experimental test methods and correlating experimental results with analytical or computational models
  • Experience with Python, MATLAB, or similar tools for engineering analysis, simulation, data processing, or automation
  • Demonstrated research capability through graduate research, technical publications, patents, conference presentations, internally funded R&D, or similar technical accomplishments
  • Familiarity with DoD research and development programs and the transition of emerging technologies from concept through prototype and demonstration
  • Exposure to technical proposal development, including technical writing, literature research, concept development, cost estimating, statement‑of‑work development, or preparation of technical approaches
  • Experience working directly with customers, government laboratories, universities, research organizations, or other external technical partners
  • Active DoD Secret or Top Secret clearance

SARA offers a competitive benefits package to include:

  • Medical, dental, vision, disability and life insurance; and other supplemental programs
  • 401(k) match/profit sharing
  • Employee Stock Ownership Plan (ESOP)

Pay Range

Salary at SARA is determined by various factors, including but not limited to location, the individual’s particular combination of education, knowledge, skills, competencies, and experience, as well as contract‑specific affordability and organizational requirements. The projected compensation range for this position is $90,000 to $115,000 (annualized USD). The estimate displayed represents the typical salary range for this position and is just one component of SARA’s total compensation package for employees. Positions are on‑site, unless indicated otherwise.

Application Deadline: September 2, 2026

SARA is an equal employment opportunity employer.

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