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Remote Materials Engineer Jobs in Tennessee (NOW HIRING)

Senior-Level Process Engineer (Hybrid/Remote)

Oak Ridge, TN · On-site +1

$99K - $128K/yr

Senior-Level Process Engineer (Hybrid/Remote) Description: As a senior-level process engineer, you ... Experience with nuclear material or uranium processing systems * Experience working under a formal ...

Senior I&C Engineer Energy - Remote

Oak Ridge, TN · On-site +1

$99K - $137K/yr

... bills of materials, etc. * Interface with various engineering disciplines, suppliers, and other ... Remote Worker Type Employee Job Type Regular At AtkinsRéalis, we seek to hire individuals with ...

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Showing results 1-20

Remote Materials Engineer information

See Tennessee salary details

$36.8K

$84.1K

$107.6K

How much do remote materials engineer jobs pay per year?

As of Jul 27, 2026, the average yearly pay for remote materials engineer in Tennessee is $84,081.00, according to ZipRecruiter salary data. Most workers in this role earn between $76,200.00 and $93,000.00 per year, depending on experience, location, and employer.

What does a Remote Materials Engineer do?

A Remote Materials Engineer is responsible for researching, developing, and testing materials used in a wide range of products, often working from a location outside the traditional office or laboratory setting. They use digital tools to collaborate with teams, analyze data, and provide recommendations about materials selection, performance, and sustainability. These engineers play a key role in product development by ensuring materials meet specific technical and safety standards, often working in industries like aerospace, automotive, construction, and manufacturing.

How do Remote Materials Engineers effectively collaborate with on-site teams during the development and testing of new materials?

Remote Materials Engineers typically use a combination of virtual meetings, collaborative design platforms, and regular status updates to stay closely aligned with on-site teams. They may review test data, analyze results, and provide recommendations using secure file-sharing tools and laboratory management software. Proactive communication and clear documentation are essential to ensure that lab procedures, testing protocols, and project milestones remain synchronized. This collaborative approach helps bridge physical distance and keeps the engineering process efficient and cohesive.

What are the key skills and qualifications needed to thrive as a Remote Materials Engineer, and why are they important?

To thrive as a Remote Materials Engineer, you need a strong background in materials science, engineering principles, and problem-solving, typically supported by a relevant engineering degree. Proficiency with tools such as CAD software, materials testing systems, and simulation programs like ANSYS or COMSOL is usually required. Excellent communication, self-motivation, and time management are critical soft skills for collaborating with remote teams and managing independent projects. These skills and qualities ensure effective design, analysis, and innovation in material solutions while working efficiently from a remote setting.

What is the difference between Remote Materials Engineer vs Remote Mechanical Engineer?

AspectRemote Materials EngineerRemote Mechanical Engineer
Required CredentialsBachelor's in Materials Science or Engineering, certifications like ASM or NACEBachelor's in Mechanical Engineering, PE license often preferred
Work EnvironmentLaboratory, research facilities, or design offices (remote options available)Design, analysis, and testing environments, often remote or hybrid
Industry UsageManufacturing, aerospace, automotive, researchManufacturing, automotive, aerospace, product design
Search & Comparison IntentUnderstanding roles, qualifications, remote opportunitiesSimilar roles, qualifications, remote work options

Remote Materials Engineers focus on developing and testing materials for various industries, often requiring specialized certifications. Remote Mechanical Engineers design and analyze mechanical systems, with overlapping skills and remote work options. Both roles share similar credentials and industry usage, making them common comparison points for job seekers exploring remote engineering careers.

What are the most commonly searched types of Materials Engineer jobs in Tennessee? The most popular types of Materials Engineer jobs in Tennessee are:
What are popular job titles related to Remote Materials Engineer jobs in Tennessee? For Remote Materials Engineer jobs in Tennessee, the most frequently searched job titles are:
What job categories do people searching Remote Materials Engineer jobs in Tennessee look for? The top searched job categories for Remote Materials Engineer jobs in Tennessee are:
What cities in Tennessee are hiring for Remote Materials Engineer jobs? Cities in Tennessee with the most Remote Materials Engineer job openings:
Infographic showing various Remote Materials Engineer job openings in Tennessee as of July 2026, with employment types broken down into 98% Full Time, and 2% Contract. Highlights an 2% In-person, and 98% Remote job distribution, with an average salary of $84,081 per year, or $40.4 per hour.
Senior Mechanical Engineer, Remote Handling and Full Scale Integration

Senior Mechanical Engineer, Remote Handling and Full Scale Integration

Kairos Power

Oak Ridge, TN • Remote

$99K - $131K/yr

Other

Posted 21 days ago


Job description

Job Summary

Kairos Power is seeking a highly motivated Senior Mechanical Engineer focused on Remote Handling Special Components with expertise in modular hardware design for remotely operated systems.

This role is centered on the design, physical integration, and demonstration of remote handling technologies through full-scale mockups and prototype builds. The Senior Engineer will drive 1:1 scale integration efforts to validate interfaces, clearances, tolerances, and handling sequences-systematically derisking reactor maintenance strategies prior to deployment.

This position integrates remote handling requirements directly into component architecture and system interfaces to enable efficient assembly, maintenance, inspection, and long-term operability. The role emphasizes hands-on engineering, rapid build-test cycles, and cross-functional collaboration in a highly regulated environment.

Responsibilities

Modular Maintenance System Development

  • Apply lifecycle design principles including maintainability, inspectability, and decommissioning
  • Integrate remote handling requirements into hardware architecture and system interfaces
  • Develop and maintain interface control documentation supporting plant-level integration
  • Design, build, and evaluate 1:1 scale mockups and integration test articles to validate handling concepts
  • Develop structured test plans and acceptance criteria for full-scale demonstrations
  • Coordinate test readiness reviews with QA and Systems Engineering
  • Implement design updates based on mockup results, demonstrations, and operational feedback
  • Support project planning and cost estimation for integration and testing activities
  • Interface with vendors to ensure manufacturability and feasibility of specialized components
  • Conduct risk and reliability assessments for maintenance systems
  • Ensure compliance with nuclear regulations, safety standards, and applicable codes
  • Maintain configuration-controlled design documentation

Remote Handling Solutions

  • Develop remote handling hardware enabling efficient component repair and replacement
  • Lead hands-on design-build-test cycles to mature handling approaches
  • Execute full-scale integration mockups to validate reach, clearances, tooling alignment, ergonomics, and sequencing
  • Collaborate with reactor systems and operations teams to define online and offline maintenance strategies
  • Identify integration risks early and mitigate through rapid prototyping and physical demonstration

Testing and Validation

  • Align demonstration opportunities with reactor and facility schedules
  • Develop execution plans for rapid, high-value physical demonstrations
  • Support inspections, installations, shakedown, tuning, and commissioning activities
  • Capture lessons learned from mockups and integration testing to inform future designs

Collaboration

  • Partner with engineering, laboratory, shop, and materials teams to execute accelerated hardware development
  • Coordinate cross-disciplinary integration efforts to ensure cohesive system performance

Engineering Reports

  • Publish engineering reports documenting design details, mockup results, and integration findings
  • Contribute to design basis documentation and regulatory submittals

Team Contribution

  • Share technical knowledge and best practices across the organization
  • Mentor junior engineers in hardware design, integration, and prototype testing

Other duties as assigned

Qualifications

  • B.S. in Mechanical Engineering or equivalent
  • 8+ years of experience developing hardware for demanding applications
  • Demonstrated experience with full-scale prototypes, physical integration, and hardware demonstrations
  • Experience integrating mechanical and electrical systems for remote operation preferred
  • Experience in nuclear, aerospace, defense, or other regulated industries preferred
  • Molten salt or advanced reactor experience a plus
  • Background in low-voltage systems, optical systems, and compact packaging
  • Experience with servos, motors, electromagnets, or related power electronics
  • Working knowledge of ASME codes and piping standards preferred
  • Familiarity with data acquisition tools (LabVIEW, MATLAB, Python) a plus
  • Experience mentoring junior engineers preferred

Knowledge, Skills & Abilities

  • Expertise in high-temperature systems
  • Strong hands-on mechanical aptitude in laboratory and shop environments
  • Experience developing physical mockups and rapid prototypes
  • Familiarity with radiation effects and material degradation in extreme environments preferred
  • Knowledge of pressure and fluid systems
  • Familiarity with non-destructive inspection techniques
  • Strong written, verbal, and presentation skills
  • Ability to collaborate effectively in multidisciplinary teams
  • Practical, test-driven problem-solving approach
  • Commitment to safety and operational rigor

Physical Conditions 

  • Ascending or descending ladders, stairs, scaffolding, lifts, and similar equipment
  • Setting up and transferring temporary structures (e.g., scaffolding, ladders)
  • Working in tight or confined spaces
  • Remaining stationary for prolonged periods (standing or sitting)
  • Moving between worksites
  • Adjusting, transporting, or installing objects up to 30 pounds
  • Use of various hand tools
  • Communicating effectively with team members

Environmental Conditions

  • General office environment
  • Assessing the accuracy, neatness, and thoroughness of the work assigned
  • High-concentration, demanding, and fast-paced
  • Noisy environments
  • Small and/or enclosed spaces
  • Elevated heights

Safety and PPE 

  • Reading and interpreting hazardous warning signs
  • Reporting issues with equipment or unsafe conditions
  • Wearing proper PPE, to include face mask, face shields, gloves, safety shoes
  • Manipulating, cleaning, and disposal of hazardous materials

Travel 

  • Some travel may be required, up to 25% 

Additional Requirements

  • Requires occasional schedule flexibility
  • Requires occasional extended hours to support launch and critical project timelines