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Remote Metallurgy Jobs in Layton, UT (NOW HIRING)

Remote Metallurgy information

See Layton, UT salary details

$30K

$85.4K

$132.2K

How much do remote metallurgy jobs pay per year?

As of Sep 4, 2026, the average yearly pay for remote metallurgy in Layton, UT is $85,432.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,400.00 and $98,600.00 per year, depending on experience, location, and employer.

What is a remote metallurgist?

A remote metallurgist is a professional who specializes in the study and application of metals and their properties, but works from a location outside of a traditional laboratory or industrial setting, often from home or a remote office. They may analyze metal samples, interpret data, provide technical support, and collaborate with engineering teams virtually. Advances in technology allow remote metallurgists to use digital tools for data analysis, simulation, and even remote monitoring of production processes. This role is common in industries like mining, manufacturing, and engineering, where expertise is needed across multiple sites or projects.

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

To thrive as a Remote Metallurgist, you need a solid background in materials science, metallurgy, and engineering principles, usually supported by a relevant degree. Experience with metallurgical analysis tools, laboratory information management systems (LIMS), and remote data monitoring software is commonly required. Strong problem-solving, attention to detail, and effective communication skills are crucial for interpreting results and collaborating with off-site teams. These skills ensure accurate remote analysis, informed decision-making, and seamless project execution in geographically dispersed environments.

What are some common challenges faced when working remotely as a metallurgist, and how can they be addressed?

Remote metallurgists often face challenges such as limited access to physical lab equipment and samples, which can make hands-on testing and analysis difficult. Effective communication with on-site teams is crucial to ensure accurate data collection and interpretation. Many remote metallurgists rely on digital tools for data analysis, simulations, and virtual collaboration, so being comfortable with these platforms is essential. To address these challenges, maintaining regular communication, establishing clear protocols for sample handling, and leveraging remote-access technologies can help ensure productivity and high-quality results.

What are popular job titles related to Remote Metallurgy jobs in Layton, UT?

For Remote Metallurgy jobs in Layton, UT, the most frequently searched job titles are:

What job categories do people searching Remote Metallurgy jobs in Layton, UT look for?

The top searched job categories for Remote Metallurgy jobs in Layton, UT are:

What cities near Layton, UT are hiring for Remote Metallurgy jobs?

Cities near Layton, UT with the most Remote Metallurgy job openings:

Infographic showing various Remote Metallurgy job openings in Layton, UT as of August 2026, with employment types broken down into 85% Full Time, and 15% Part Time. Highlights an 100% Remote job distribution, with an average salary of $85,432 per year, or $41.1 per hour.

Structural Engineer - Stress, Design, Systems Engineer

SOGECLAIR

Clearfield, UT • On-site, Remote

Full-time

Posted 2 days ago

New


Job description

We are seeking experienced Structural Stress Engineers, Structural Design Engineers, and Systems Engineers to support advanced aerospace programs. Multiple opportunities are available across these engineering disciplines. Candidates do not need experience in all three areas; we are seeking engineers with strong expertise within their respective discipline.

The ideal candidates will bring hands-on aerospace experience supporting aircraft structures and/or systems, with experience working with metallic materials, composite materials, or both. Primary aircraft structure experience is strongly preferred.

Opportunities are available onsite in Wichita, Kansas and Falcon Hill, Utah, as well as remote positions depending on the specific program and engineering discipline.

Structural Design Engineering

Structural Design Engineers will support the development, modification, and integration of aircraft structural components and assemblies.

       Design and develop aircraft structural components, assemblies, and installations.

       Support metallic and composite aircraft structures, with primary structure experience preferred.

       Develop and modify 3D models, assemblies, and engineering drawings.

       Evaluate structural designs for manufacturability, installation, maintainability, and integration.

       Support design changes, modifications, repairs, and engineering investigations.

       Collaborate with Stress, Systems, Manufacturing, and other engineering organizations.

       Utilize CATIA V5 and SolidWorks in support of design activities.

Structural Stress Engineering

Structural Stress Engineers will perform analysis and substantiation of aircraft structures supporting new designs, modifications, repairs, and program requirements.

       Perform structural analysis of metallic and composite aircraft structures.

       Evaluate primary structural components and assemblies.

       Perform static strength, fatigue, durability, and damage-tolerance analysis as applicable.

       Support structural sizing, design optimization, modifications, and repairs.

       Develop engineering calculations, reports, and structural substantiation documentation.

       Perform finite element analysis using ANSYS and/or Abaqus.

       Collaborate closely with Structural Design Engineers to develop practical and structurally sound solutions.

Systems Engineering

Systems Engineers will support the development, integration, and verification of complex aircraft systems and their interfaces.

       Support aircraft systems development, integration, installation, and verification.

       Develop and manage system-level requirements and interfaces.

       Evaluate system architecture and integration requirements.

       Coordinate engineering activities across structural, electrical, mechanical, avionics, and other technical disciplines.

       Support system-level design reviews, technical investigations, and engineering changes.

       Identify and resolve interface and integration issues.

       Develop engineering documentation supporting system design, integration, and verification.

Requirements

       U.S. Citizenship is required.

       Bachelor's degree in Aerospace Engineering, Mechanical Engineering, Electrical Engineering, or a related engineering discipline preferred.

       Previous aerospace or defense engineering experience.

       Expertise in Structural Stress, Structural Design, or Systems Engineering.

       Experience supporting programs involving metallic structures, composite structures, or both.

       Primary aircraft structure experience is strongly preferred for Structural Stress and Structural Design positions.

       Experience with CATIA V5 and SolidWorks.

       Structural Stress candidates should have experience with ANSYS and/or Abaqus.

       Strong analytical, problem-solving, and technical communication skills.

       Ability to collaborate effectively within multidisciplinary engineering teams.

Benefits

These positions provide an opportunity to apply your aerospace engineering expertise to technically challenging programs involving advanced aircraft structures and systems. Whether your specialty is Structural Stress, Structural Design, or Systems Engineering, we are interested in engineers who bring strong technical experience, practical problem-solving skills, and an understanding of real-world aerospace design and development.