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Materials Engineer: Metal Additive Manufacturing

HRL Laboratories · Malibu, CA1mo ago
$81k – $99k

BS-level R&D / Research roles on Crosslinked list a median of $126k (330 that show pay).

Develop metal additive manufacturing processes and characterize 3D printed materials for aerospace

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Worth knowing

Why it is interesting. Hands-on metal AM at a Boeing/GM-owned lab, with in-house CT, SEM, and mechanical testing on a high-profile funded program.

Might not be for you. Requires U.S. citizenship and ability to obtain a security clearance; focused on metals, not polymers.

Mostly at the benchHands-on execution First industry roleBS acceptable

Adjacent materials roleOperate laser powder bed fusion (LPBF) metal 3D printers; characterize 3D printed materials by pycnometry, x-ray computed tomography, metallography

Seniority
Entry level
Work
On-site
Type
Full-time
Degree
BS
Experience
0–3 yrs
Industry
Aerospace
Role
R&D / Research
Clearance
Ability to obtain
Visa
US citizenship required

Role details

HRL Laboratories pioneers the next frontiers of physical and information science. Delivering transformative technologies in automotive, aerospace and defense, HRL advances the critical missions of its customers to help them remove limitations and create competitive advantage. HRL then transitions the work back to customers – ready for real-world application. For more than 70 years, HRL’s rich portfolio of scientific discoveries and engineering innovations continues to build on each other — often in unexpected, profound and far-reaching ways. As a private company owned jointly by Boeing and GM, HRL prioritizes purpose over profit, significantly advancing the state of the art.

HRL Laboratories advances critical structural and functional materials and semiconductor devices that enable precision navigation, quantum technologies and extreme-environment performance. With expertise from design through deployment, we deliver scalable, high-performance solutions that transform our customers’ missions. Our work leverages digital manufacturing and scalable microfabrication techniques to meet tomorrow’s toughest challenges.

Position Summary

In this role, you will be part of a multidisciplinary team of engineers and scientists developing new materials and additive manufacturing processes for aerospace applications. This role offers the opportunity to make an immediate impact on a high-profile, America Makes funded project shaping the future of metal additive manufacturing. We are looking for a self-driven engineer interested in learning and advancing within our group.

HRL Laboratories advances critical structural and functional materials and semiconductor devices that enable precision navigation, quantum technologies and extreme-environment performance. With expertise from design through deployment, we deliver scalable, high-performance solutions that transform our customers’ missions. Our work leverages digital manufacturing and scalable microfabrication techniques to meet tomorrow’s toughest challenges.

Essential Duties

  • Operate laser powder bed fusion (LPBF) metal 3D printers
  • Design, CAD, fabricate, and assemble prototype components and systems using additive manufacturing and conventional machining
  • Characterize 3D printed materials by pycnometry, x-ray computed tomography, metallography, etc.
  • Perform optical and scanning electron microscopy
  • Set up and operate mechanical tests to characterize tensile strength and fatigue life
  • Coordinate outside vendors for specialty testing or analyses
  • Summarize key findings in written documents and slides

Required Qualifications

  • BA/BS or master’s degree in engineering or physical sciences
  • 0-3 years of experience
  • Understanding of the basic principles of metals and mechanical engineering
  • Experience applying the scientific method to plan, conduct, and record experiments
  • Experience with organizing, analyzing, and presenting scientific data to support conclusions and recommendations
  • Experience with CAD tools (e.g., SolidWorks)
  • Knowledge of at least one programming language for engineering (Python, MATLAB, Mathematica)
  • Hands-on experience with additive manufacturing equipment and techniques
  • Hands-on mechanical characterization experience
  • Creative problem solving and strong organizational skills
  • Excellent communication skills, both oral and written
  • Ability to work well in a team environment
  • Ability to operate independently

Preferred Qualifications

  • Experience with instrumentation and data acquisition

Physical Requirements: • Must be able to work for extended periods while standing or sitting at a computer workstation • Must be familiar with safe chemical handling practices and common laboratory safety procedures • Must be sufficiently mobile to work within a laboratory environment   Special Requirements:

U.S. Citizenship and the ability to obtain and maintain a U.S. Government security clearance   Compensation and Benefits:  Pay Range:  $81,100 - $98,900

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Common questions

What is the salary for the Materials Engineer: Metal Additive Manufacturing role at HRL Laboratories?

The listed annual base salary range is $81K–$99K. This figure is taken from the posting itself.

Does HRL Laboratories sponsor work visas for the Materials Engineer: Metal Additive Manufacturing role?

This role requires US citizenship — not just permanent residency.

Where is the Materials Engineer: Metal Additive Manufacturing role at HRL Laboratories based?

This role is based in Malibu, CA.

What degree is required for the Materials Engineer: Metal Additive Manufacturing role at HRL Laboratories?

This role requires a BS.

How many years of experience does this Materials Engineer: Metal Additive Manufacturing role require?

The posting calls for 0–3 years of relevant experience.

What polymers or materials does this Materials Engineer: Metal Additive Manufacturing role work with?

Metals.

What techniques or methods are required for this Materials Engineer: Metal Additive Manufacturing role?

pycnometry, x-ray computed tomography, metallography, optical microscopy, scanning electron microscopy, tensile testing.