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Automotive Composite Engineer Jobs (NOW HIRING)

MP&P Engineer 2 LOCATION: Berkeley, MO PAY RATE: $57.50/hour We are a national aerospace and ... Work in high-reliability/harsh environments (aerospace, automotive, medical, industrial) * Support ...

MP&P Engineer 2

Del Rey, CA · On-site

$86K - $114K/yr

... medical device, automotive, or industrial design/application experience. * Knowledgeable of ... study in engineering, computer science, mathematics, physics or chemistry. In the USA, ABET ...

Engineering Manager

Lithia, FL · Remote

$140K - $160K/yr

... composite prepreg materials for aerospace, defense, automotive, motorsport, marine, and industrial applications. This leadership role is responsible for building and developing a strong engineering ...

Lay up composite materials (e.g., prepreg, wet layup) according to engineering drawings and strict ... Minimum 10+ years of experience in the aerospace and/or automotive industry as an engineering ...

Lay up composite materials (e.g., prepreg, wet layup) according to engineering drawings and strict ... Minimum 10+ years of experience in the aerospace and/or automotive industry as an engineering ...

Lay up composite materials (e.g., prepreg, wet layup) according to engineering drawings and strict ... Minimum 10+ years of experience in the aerospace and/or automotive industry as an engineering ...

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Automotive Composite Engineer information

See salary details

$65K

$103.6K

$134K

How much do automotive composite engineer jobs pay per year?

As of Sep 10, 2026, the average yearly pay for automotive composite engineer in the United States is $103,596.00, according to ZipRecruiter salary data. Most workers in this role earn between $90,000.00 and $119,000.00 per year, depending on experience, location, and employer.

What does an automotive composite engineer do?

An Automotive Composite Engineer specializes in designing, developing, and testing composite materials—such as carbon fiber, fiberglass, and advanced plastics—for use in vehicles. Their work helps make cars lighter, stronger, and more fuel-efficient by replacing traditional metal components with composite alternatives. They collaborate closely with designers, manufacturing teams, and materials scientists to ensure composite parts meet performance, safety, and cost requirements. Additionally, they may be involved in research, prototyping, and overseeing the manufacturing process of composite parts.

What are some common challenges faced by automotive composite engineers during the vehicle development process?

Automotive Composite Engineers often encounter challenges such as balancing material performance with cost constraints, ensuring manufacturability of complex composite shapes, and meeting stringent safety and durability standards. Collaborating closely with design, manufacturing, and testing teams is essential to address these issues, as changes to materials or processes can have significant impacts on the final product. Staying updated on advancements in composite technologies and adapting designs accordingly is also key to overcoming these challenges and delivering lightweight, high-performance automotive components.

What are the key skills and qualifications needed to thrive as an automotive composite engineer, and why are they important?

To thrive as an Automotive Composite Engineer, you need a solid background in materials science, mechanical engineering, and composite manufacturing processes, typically supported by a relevant engineering degree. Familiarity with CAD software (such as CATIA or SolidWorks), finite element analysis tools, and knowledge of industry standards like ISO/TS 16949 is essential. Strong problem-solving abilities, attention to detail, and effective teamwork set outstanding professionals apart in this field. These skills enable engineers to design lightweight, durable automotive components that meet safety, performance, and cost requirements.

What is the difference between Automotive Composite Engineer vs Automotive Materials Engineer?

AspectAutomotive Composite EngineerAutomotive Materials Engineer
CredentialsBachelor's or Master's in Mechanical, Materials Science, or Aerospace Engineering; certifications in composite materialsBachelor's or Master's in Materials Science, Chemical Engineering; certifications in materials testing
Work EnvironmentDesign labs, manufacturing plants, R&D centersMaterials testing labs, manufacturing facilities, R&D centers
Industry UsageDeveloping lightweight composite parts for vehiclesResearching and selecting materials for vehicle components
Common Search/ComparisonYesYes

Automotive Composite Engineers focus on designing and testing composite materials for vehicle parts, emphasizing lightweight and strength properties. Automotive Materials Engineers work on selecting, testing, and developing various materials used throughout vehicle manufacturing. While both roles require knowledge of materials and work in similar environments, their primary focus differs: composites versus general materials.

What are popular job titles related to Automotive Composite Engineer jobs?

For Automotive Composite Engineer jobs, the most frequently searched job titles are:

Infographic showing various Automotive Composite Engineer job openings in the United States as of August 2026, with employment types broken down into 94% Full Time, 2% Part Time, and 4% Contract. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $103,596 per year, or $49.8 per hour.

Composite Materials & Process Engineer

Houston, TX • On-site

GP&C
Retail • 10K+ employees

Full-time

Re-posted 27 days ago


Genuine Parts Company rating

7.3

Company rating: 7.3 out of 10

Based on 63 frontline employees who took The Breakroom Quiz


Job description

Essential Duties & Responsibilities:
Materials Engineering
• Evaluate and support the selection of composite materials, including carbon fiber, fiberglass, aramid fibers, core materials, adhesives, and resin systems.
• Develop, maintain, and update material specifications, standards, and qualification requirements.
• Perform material testing and characterization to verify mechanical, thermal, and environmental performance.
• Review supplier-provided material data and support material qualification and approval processes.
• Assess material alternatives by comparing performance, manufacturability, availability, and cost to recommend the most suitable solution for each application.
• Support the evaluation, qualification, and implementation of new materials and advanced composite technologies to improve product performance and manufacturability.
Process Engineering
• Develop, document, and improve composite manufacturing processes.
• Establish process specifications, manufacturing instructions, and quality requirements.
• Support manufacturing methods including:
o Hand layup
o Vacuum bagging
o Resin infusion (VARTM)
o Resin Transfer Molding (RTM)
o Compression molding
o Injection molding
o Prepreg layup
o Autoclave curing
o Oven curing
o Composite assembly and bonding
• Define critical process parameters and process control methods.
• Support process validation and qualification activities.
Manufacturing Support
• Provide day-to-day technical support to production operations.
• Investigate manufacturing issues involving defects, yield loss, porosity, delamination, dimensional variation, or cure-related concerns.
• Lead root cause investigations and corrective action implementation.
• Collaborate with operators and supervisors to improve process consistency and productivity.
• Support manufacturing readiness activities for new product introduction (NPI).
Testing & Failure Analysis
• Coordinate and perform material and process validation testing.
• Analyze failures related to composite structures, bonding, environmental exposure, and manufacturing defects.
• Prepare technical reports summarizing findings and recommendations.
• Support qualification testing for customer and regulatory requirements.
Continuous Improvement
• Identify opportunities to reduce scrap, rework, cycle time, and manufacturing costs.
• Apply Lean Manufacturing and Six Sigma methodologies to process improvement projects.
• Analyze manufacturing and quality data to improve process capability and repeatability.
• Support automation and advanced manufacturing initiatives.
• Support customer technical reviews and audits when required.
Qualifications & Experience:
Education:
• Bachelor's degree in Materials Science, Mechanical Engineering, Aerospace Engineering, Chemical Engineering, Manufacturing Engineering, or a related discipline.
Experience:
• 2+ years of experience in composites engineering, manufacturing engineering, materials engineering, or a related role.
• Experience with composite manufacturing processes and materials.
• Knowledge of polymer matrix composites and composite fabrication methods.
• Experience interpreting engineering drawings and technical specifications.
• Familiarity with manufacturing documentation, process controls, and quality systems.
Preferred Qualifications:
• Experience in aerospace, defense, energy, industrial equipment, marine, automotive, or sporting goods industries.
• Familiarity with composite material testing standards (ASTM, ISO, SAE, or equivalent)
• Understanding of composite inspection methods including ultrasonic and non-destructive testing (NDT)
• Experience performing failure analysis and root cause investigations.
• Exposure to Lean Manufacturing, Six Sigma, or continuous improvement methodologies.
• Strong analytical and troubleshooting skills.
• Excellent written and verbal communication skills
Key Competencies
• Hands-on engineering approach
• Technical curiosity and continuous learning
• Structured problem solving
• Strong attention to detail
• Cross-functional collaboration
• Project management
• Initiative and accountability
• Customer-focused mindset
Technical Skills:
Materials Knowledge
• Carbon fiber composites.
• Fiberglass composites.
• Thermoset resin systems
• Epoxy systems
• Vinyl ester resins
• Core materials and adhesives
• Composite bonding technologies
Process Knowledge
• Vacuum infusion
• Autoclave processing
• Prepreg manufacturing
• Cure cycle development
• Process validation
• Tooling and fixture development
• Manufacturing process controls
Analytical Tools
• Root Cause Analysis (5 Why, Fishbone, 8D)
• Statistical Process Control (SPC)
• PFMEA
• Design of Experiments (DOE)
• Data analysis and reporting
Physical Requirements & Work Environment:
• Lab and office-based role with visits to manufacturing sites as needed.
• Stand or walk for extended periods.
• Occasionally lift items weighing up to 20 pounds.
• Adherence to all safety policies, procedures, and regulatory requirements is mandatory.
Equal Opportunity Employer
This employer is required to notify all applicants of their rights pursuant to federal employment laws.
For further information, please review the Know Your Rights notice from the Department of Labor.

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