1

Metal Matrix Composites Jobs (NOW HIRING)

Lead Carbon Nanomaterials Engineer

Los Angeles, CA ยท On-site

$110K - $145K/yr

At its core, Arcturus is developing a new class of carbon nanomaterial-infused metal matrix composites for high-performance conductor applications. Why you should join us This is a ground-floor ...

At its core, Arcturus is developing a new class of carbon nanomaterial-infused metal matrix composites for high-performance conductor applications. Why you should join us This is a ground-floor ...

Aid in the design, fabrication, and testing of advanced material systems across ceramics, metals, and ceramic/metal matrix composites; work spans design and analysis, process development and ...

Aid in the design, fabrication, and testing of advanced material systems across ceramics, metals, and ceramic/metal matrix composites; work spans design and analysis, process development and ...

Aid in the design, fabrication, and testing of advanced material systems across ceramics, metals, and ceramic/metal matrix composites; work spans design and analysis, process development and ...

This will cover a wide range of material systems including composites (fiber-reinforced polymers, ceramic matrix composites, metal matrix composites), elastomers, additively manufactured polymers ...

Experience processing advanced materials (ceramics, metal matrix composites, other) * Background with materials processing equipment (powders, furnaces, mixers) * Knowledge of materials ...

Experience processing advanced materials (ceramics, metal matrix composites, other) * Background with materials processing equipment (powders, furnaces, mixers) * Knowledge of materials ...

Experience processing advanced materials (ceramics, metal matrix composites, other) * Background with materials processing equipment (powders, furnaces, mixers) * Knowledge of materials ...

Materials science experience: metallurgy, composites, polymers, and emerging materials (metal matrix composites, advanced ceramics, carbon fiber applications) * CAD proficiency (SolidWorks or Creo ...

Materials science experience: metallurgy, composites, polymers, and emerging materials (metal matrix composites, advanced ceramics, carbon fiber applications) * CAD proficiency (SolidWorks or Creo ...

next page

Showing results 1-20

Metal Matrix Composites information

See salary details

$12

$21

$32

How much do metal matrix composites jobs pay per hour?

As of Aug 6, 2026, the average hourly pay for metal matrix composites in the United States is $21.74, according to ZipRecruiter salary data. Most workers in this role earn between $17.31 and $24.52 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a metal matrix composites engineer?

To thrive as a Metal Matrix Composites Engineer, you need a solid background in materials science, metallurgy, and mechanical engineering, typically supported by a relevant engineering degree. Familiarity with CAD software, materials characterization tools, and manufacturing processes such as powder metallurgy or casting is essential. Strong problem-solving skills, attention to detail, and effective teamwork are standout soft skills in this role. These skills ensure the successful design, analysis, and production of high-performance composite materials for demanding applications.

What is the difference between Metal Matrix Composites vs Materials Engineers?

AspectMetal Matrix CompositesMaterials Engineers
CredentialsEngineering degree, specialized training in compositesEngineering degree, materials science certification
Work EnvironmentManufacturing plants, research labsDesign firms, manufacturing, research labs
Industry UsageAdvanced composites in aerospace, automotiveBroad industry applications including metals, polymers

Metal Matrix Composites focus on developing composite materials with metal matrices, often requiring specialized knowledge in composites manufacturing. Materials Engineers have a broader scope, working with various materials and applications. While both roles require engineering credentials and work in similar environments, Metal Matrix Composites specialists are more focused on composite-specific processes, whereas Materials Engineers handle a wider range of materials and projects.

What are some typical challenges faced when working with metal matrix composites in an engineering role?

Engineers working with Metal Matrix Composites often encounter challenges such as selecting the right combination of matrix and reinforcement materials to achieve desired properties, ensuring uniform distribution of reinforcements, and addressing issues related to machining and joining MMC components. Additionally, the manufacturing processes for MMCs can be more complex and costly compared to traditional metals, requiring specialized equipment and expertise. Collaboration with materials scientists, production teams, and quality assurance specialists is essential to overcome these challenges and ensure successful product development.

What are metal matrix composites?

Metal matrix composites (MMCs) are materials made by combining metal with other materials, such as ceramics or fibers, to enhance properties like strength, stiffness, wear resistance, and thermal stability. The metal serves as the matrix or base, while the added materials act as reinforcements. MMCs are used in industries like aerospace, automotive, and sports equipment where superior mechanical performance is required. They offer advantages over traditional metals, including improved durability and reduced weight.
More about Metal Matrix Composites jobs
What cities are hiring for Metal Matrix Composites jobs? Cities with the most Metal Matrix Composites job openings:
What states have the most Metal Matrix Composites jobs? States with the most job openings for Metal Matrix Composites jobs include:
Infographic showing various Metal Matrix Composites job openings in the United States as of August 2026, with employment types broken down into 100% Full Time. Highlights an 82% In-person, 9% Hybrid, and 9% Remote job distribution, with an average salary of $45,214 per year, or $21.7 per hour.

Lead Carbon Nanomaterials Engineer

Arcturus

Los Angeles, CA โ€ข On-site

$110K - $145K/yr

Full-time

Re-posted 27 days ago


Job description

Lead Nanomaterials Engineer

Los Angeles, CA (in-person)

About Arcturus

Arcturus is creating a new wire technology stack that uses carbon nanomaterials to overcome the materials limitations of metals where performance breaks down, at real operating temperatures. Our technology is designed to significantly improve the performance of electric motors for drones and robotics, heat sinks, and ultimately the entire energy grid. At its core, Arcturus is developing a new class of carbon nanomaterial-infused metal matrix composites for high-performance conductor applications.

Why you should join us

This is a ground-floor opportunity to help build something that has never been done before.

You would join as a founding engineer and become Arcturus’ first nanomaterials engineer, with the chance to define the company’s carbon nanomaterials strategy from the beginning. As the founding nanomaterials engineer, you will work directly with the founder and CEO to shape the technical direction of the company, translate scientific insight into real product performance, and help build a category-defining materials platform from scratch.

Purpose

We are seeking a lead nanomaterials engineer who can set the technical direction for our carbon nanomaterials strategy and translate fundamental science into measurable, scalable improvements in conductor performance. This person will help define how carbon nanomaterials are integrated into metal matrix composites, including approaches related to covetics and other carbon-metal interface architectures, to unlock meaningful improvements in electrical, thermal, and mechanical performance.

The role

This role reports directly to the CEO

Materials strategy and integration

  • Own the nanomaterials roadmap R&D, including carbon nanomaterial selection, orientation morphology, purity, infusion percentages, functionalizations, etc.

  • Define integration approaches into aluminum and copper that improve electrical performance through process technology

  • Lead dispersion and interface engineering strategy, including verification methods and technical decision gates

Characterization and scientific rigor

  • Build the characterization stack that links structure to performance, including Raman, SEM/EDS, and other methods as needed

  • Define metrics for dispersion quality, interface integrity, and degradation, then standardize how those measurements are made

  • Partner with engineering to translate scientific results into material specs, process windows, and acceptance criteria

Reliability and durability

  • Own hypotheses and experiments for long-term stability, including thermal cycling, corrosion, oxidation, environmental exposure, and processing effects

  • Define accelerated aging and failure mode discovery plans aligned with real-world use cases

  • Leadership and driving IP disclosures. Help shape patent strategy

  • Help build and lead a small but world-class scientific team over time

Basic qualifications

  • PhD or MS in materials science, chemistry, chemical engineering, physics, or a related field

  • 8+ years of applied research leadership with demonstrated impact on products, processes, or commercialization

  • Deep expertise in carbon nanomaterials and strong intuition for process-structure-property relationships

  • Strong scientific writing skills, including clear technical documentation, experimental plans, and invention disclosures

Preferred qualifications

  • Experience with carbon nanomaterial-metal composites, metal matrix composites, covetics, or carbon/metal interface chemistry

  • Familiarity with graphene, carbon nanotubes, graphene growth methods, including localized or laser-inducted graphene

  • Startup experience

What we offer

  • Competitive cash compensation and meaningful equity

  • Scientific ownership with direct product impact

  • The chance to define the playbook for nanomaterial-enhanced conductors

  • Relocation support for candidates moving from outside the Los Angeles area

  • Visa sponsorship for highly qualified candidates (H-1B transfers, F-1, or STEM OTP)