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Stress Analyst Engineer Remote Jobs in Raleigh, NC

Skilled at breaking down free body diagram construction, stress analysis, and thermal system design ... Emphasizes systematic engineering problem-solving approaches and connects mechanical engineering to ...

Skilled at breaking down free body diagram construction, stress analysis, and thermal system design ... Emphasizes systematic engineering problem-solving approaches and connects mechanical engineering to ...

Enablement and Integration Engineer

Cary, NC · On-site +1

$97K - $131K/yr

Working with customers, developers, analysts, implementation teams, R&D, and vendors, you will help ... remote managed environments. * Define and validate project scope, confirm requests align with ...

Work with Higharc Product and Procure team to facilitate programming * Collect and analyze Builder ... Remote work means more time with family, less time commuting, and the flexibility to blend work and ...

Work with Higharc Product and Procure team to facilitate programming * Collect and analyze Builder ... Remote work means more time with family, less time commuting, and the flexibility to blend work and ...

Showing results 41-60

Stress Analyst Engineer Remote information

See Raleigh, NC salary details

$87.5K

$144K

$175.5K

How much do stress analyst engineer remote jobs pay per year?

As of Sep 15, 2026, the average yearly pay for stress analyst engineer remote in Raleigh, NC is $143,994.00, according to ZipRecruiter salary data. Most workers in this role earn between $126,400.00 and $160,400.00 per year, depending on experience, location, and employer.

What does a stress analyst engineer do when working remotely?

A remote Stress Analyst Engineer evaluates the structural integrity and performance of components, typically in industries like aerospace, automotive, or civil engineering, while working from a remote location. They use computer-aided engineering (CAE) software to simulate and analyze stresses, strains, and loads on materials or structures. Their tasks often include running finite element analyses (FEA), creating detailed reports, and collaborating with design teams through virtual meetings to ensure safety and compliance with engineering standards. Remote Stress Analysts need strong communication skills and proficiency with relevant software to work effectively from a distance.

What are the key skills and qualifications needed to thrive as a stress analyst engineer remote?

A Stress Analyst Engineer typically requires a degree in mechanical or aerospace engineering, a solid grasp of structural analysis principles, and experience with finite element analysis (FEA). Familiarity with technical tools such as ANSYS, NASTRAN, or ABAQUS, as well as proficiency in CAD software and engineering documentation systems, is expected. Strong problem-solving, attention to detail, and effective remote communication skills distinguish top performers in this role. These capabilities ensure accurate analysis, reliable design recommendations, and seamless collaboration within distributed engineering teams.

How does a remote stress analyst engineer effectively collaborate with design and manufacturing teams?

As a remote Stress Analyst Engineer, collaboration is often managed through digital communication tools, virtual meetings, and shared platforms for data and model exchange. Engineers regularly coordinate with design teams to review CAD models, discuss loading scenarios, and provide feedback on structural integrity. They also work closely with manufacturing teams to ensure that analysis results are understood and incorporated into production processes. Strong communication skills and proficiency with collaborative software are essential to bridge the gap between remote analysis and on-site execution.

What is the difference between Stress Analyst Engineer Remote vs Stress Engineer?

AspectStress Analyst Engineer RemoteStress Engineer
CredentialsBachelor's or Master's in Mechanical, Aerospace, or Civil Engineering; relevant certificationsBachelor's or Master's in Mechanical, Aerospace, or Civil Engineering; relevant certifications
Work EnvironmentRemote, often collaborating with teams via digital toolsOn-site or hybrid, working in labs or design offices
Industry UsageUsed in aerospace, automotive, and defense sectorsCommon in aerospace, automotive, and structural engineering industries
Search & ComparisonOften compared for remote work options and responsibilitiesCompared for on-site vs remote roles and project scope

While both roles focus on analyzing stress factors in engineering designs, Stress Analyst Engineers Remote typically work remotely with a focus on analysis and simulation, whereas Stress Engineers may work on-site with broader responsibilities including testing and validation. The choice depends on work environment preferences and project requirements.

What are the most commonly searched types of Stress Analyst Engineer jobs in Raleigh, NC?

The most popular types of Stress Analyst Engineer jobs in Raleigh, NC are:

What are popular job titles related to Stress Analyst Engineer Remote jobs in Raleigh, NC?

For Stress Analyst Engineer Remote jobs in Raleigh, NC, the most frequently searched job titles are:

What job categories do people searching Stress Analyst Engineer Remote jobs in Raleigh, NC look for?

The top searched job categories for Stress Analyst Engineer Remote jobs in Raleigh, NC are:

Substation Physical Lead Engineer

Raleigh, NC • On-site, Remote

$150K/yr

Full-time

Posted 20 days ago


Key responsibilities

  • Lead the design and engineering of physical substation layouts, including equipment placement, grounding, lightning protection, illumination, clearances, and structural considerations.

  • Oversee the development of engineering deliverables such as general arrangements, plans, elevations, grounding plans, cable plans, equipment specifications, calculations, bills of materials, and construction documentation.

  • Manage and mentor a team of engineers and designers, coordinate with project teams and stakeholders, and ensure project deliverables meet industry standards, codes, and client requirements.


Job description

Location(s)

  • Remote
  • Charlotte, North Carolina
  • Raleigh, North Carolina

Compensation

  • $150,000 annually

Position Summary

The Lead Physical Engineer leads physical substation engineering and design for large-scale, transmission-interconnected renewable energy projects while providing technical leadership and mentorship to a team of engineers and designers. This role directs the development of coordinated substation deliverables, supports multiple projects, and ensures designs meet stakeholder requirements, applicable codes, industry standards, and quality expectations.

Job Function

  • Lead the design and engineering of 35 kV to 500 kV physical substation layouts, including equipment placement, grounding, lightning protection, illumination, clearances, and structural considerations.
  • Lead development of general arrangements, plan and elevation views, grounding plans, cable trough and conduit plans, major primary equipment specifications, design calculations, bills of materials, construction documentation, and engineering studies.
  • Perform or oversee grounding, lightning, illumination, bus fault stress analysis, and insulation coordination studies.
  • Lead and mentor a physical design team of three to five engineers and/or designers, including performance planning, monthly one-on-one meetings, and expense and timesheet review and approval.
  • Provide technical support for procurement, vendor drawing reviews, and construction activities.
  • Work closely with physical designers and coordinate with internal and external project team members, including transmission line, distribution line, telecommunications, protection and control, and civil/structural disciplines.
  • Follow department processes and procedures while maintaining a strong customer-focused approach.
  • Provide clear and constructive feedback to project teams, external stakeholders, and clients.
  • Develop approaches to accommodate unique client requests and advise management on opportunities to maximize team return on investment.
  • Oversee multiple projects simultaneously, managing timelines and resources to support successful project delivery.
  • Prepare and review engineering calculations, detailed drawings, specifications, and reports for accuracy and compliance with industry standards.
  • Ensure designs comply with applicable codes, standards, regulations, and local utility requirements.
  • Implement quality-control processes and coordinate cross-discipline design checks with other substation and service leads.
  • Mentor junior engineers and technical staff to support professional development and technical growth.
  • Participate in client and stakeholder meetings, present design concepts and project updates, and address questions or feedback.
  • Stay current with industry trends, technologies, and best practices and contribute to continuous improvement and innovative engineering solutions.
  • Travel up to approximately 10% to project sites and/or client offices as needed.

Education and Experience

  • Bachelor's degree in Electrical Engineering from a recognized accredited program.
  • Minimum of 7-9 years of experience in substation design and engineering.
  • Professional Engineer (PE) license required.
  • Previous experience in a consulting environment preferred.
  • Previous experience with large-scale renewable energy projects preferred.
  • Previous project and/or discipline team leadership experience preferred.
  • Previous experience as a direct supervisor preferred.

Qualifications

  • Strong understanding of electrical systems and substation layouts, grounding, lightning protection, illumination, and electrical clearances.
  • Strong written and verbal communication skills.
  • Excellent problem-solving skills and attention to detail.
  • Familiarity with applicable industry standards and codes, including ANSI, IEEE, NEC, NESC, and NERC.
  • General knowledge of substation industry and technology trends.
  • Proficiency in assessing mechanical forces and thermal effects of high fault currents on rigid bus.
  • Familiarity with major substation equipment and specifications, including high- and medium-voltage circuit breakers, power transformers, instrument transformers, disconnect switches, bus work, surge arresters, steel, foundations, capacitor banks, and reactors.
  • General knowledge of substation construction practices preferred.
  • Familiarity with 3D design packages and software preferred.
  • Proficiency with engineering software such as AutoCAD, MicroStation, CDEGS, WinIGS, and AGI preferred.

Appealing Facts About Living in Charlotte, North Carolina

  • Charlotte is a major business and energy center with a strong professional community and access to a broad range of career opportunities.
  • The area offers a mix of urban neighborhoods and suburban communities, along with diverse dining, entertainment, arts, and professional sports.
  • Charlotte Douglas International Airport provides convenient domestic and international travel options.
  • Residents have access to parks, greenways, lakes, and outdoor recreation, with both the Blue Ridge Mountains and regional destinations within driving distance.

Appealing Facts About Living in Raleigh, North Carolina

  • Raleigh is part of North Carolina's Research Triangle, a region known for engineering, technology, research, education, and a highly skilled workforce.
  • The area combines a growing metropolitan economy with established neighborhoods, parks, greenways, restaurants, cultural attractions, and community amenities.
  • Raleigh-Durham International Airport provides convenient access to destinations throughout the United States.
  • Residents can enjoy year-round outdoor recreation and convenient access to both North Carolina's mountains and coastal destinations.

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Global Talent Resources, Inc. (GTR) is a power industry recruiting firm specializing in substation, transmission, and distribution careers. With 15+ years of experience, we connect engineering and leadership professionals to top roles with leading utilities, cooperatives, EPCs, and consulting firms nationwide.

Many opportunities aren't listed publicly. Contact the GTR team for insider access, expert guidance, and the next step in your electric utility career.