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Metal Additive Manufacturing Research Jobs (NOW HIRING)

Shape the future of aerospace defense by leading cutting-edge metal additive manufacturing research at the University of Dayton Research Institute (UDRI). UDRI is a national leader in scientific and ...

Shape the future of aerospace defense by leading cutting-edge metal additive manufacturing research at the University of Dayton Research Institute (UDRI). UDRI is a national leader in scientific and ...

... of efforts from R&D, to prototype development, to supporting design and build tasks for ... Hands-on experience with metal additive manufacturing engineering * Experience with and basic ...

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Metal Additive Manufacturing Research information

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How much do metal additive manufacturing research jobs pay per hour?

As of Sep 9, 2026, the average hourly pay for metal additive manufacturing research in the United States is $22.22, according to ZipRecruiter salary data. Most workers in this role earn between $17.31 and $23.80 per hour, depending on experience, location, and employer.

What is metal additive manufacturing research?

Metal additive manufacturing research involves studying and developing new methods, materials, and technologies for producing metal parts using 3D printing techniques. Researchers in this field focus on improving the quality, efficiency, and capabilities of metal additive manufacturing processes such as selective laser melting or electron beam melting. They also work on understanding material properties, optimizing designs for additive manufacturing, and addressing challenges like residual stress and surface finish. This research is essential for advancing applications in aerospace, automotive, healthcare, and other industries.

What are the key skills and qualifications needed to thrive in metal additive manufacturing research?

To excel in Metal Additive Manufacturing Research, a strong background in materials science, mechanical engineering, or a related field is essential, often supported by advanced degrees such as an MS or PhD. Familiarity with additive manufacturing technologies (like SLM, EBM), CAD software, simulation tools, and process monitoring systems is typically required. Analytical thinking, problem-solving, and effective communication are vital soft skills for collaborating on multidisciplinary research and presenting findings. These skills and qualifications are crucial for driving innovation, optimizing processes, and advancing the field of metal additive manufacturing.

What are some common challenges faced in metal additive manufacturing research, and how are they typically addressed?

Professionals in Metal Additive Manufacturing Research often encounter challenges such as optimizing process parameters for new alloys, ensuring material consistency, and overcoming defects like porosity or residual stress. Addressing these issues usually involves iterative experimentation, advanced simulation techniques, and close collaboration with material scientists and production engineers. Staying updated with the latest industry advancements and working in multidisciplinary teams is key to overcoming these obstacles and driving innovation in metal AM technologies.

What are popular job titles related to Metal Additive Manufacturing Research jobs?

For Metal Additive Manufacturing Research jobs, the most frequently searched job titles are:

Infographic showing various Metal Additive Manufacturing Research job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 1% As Needed, 88% Full Time, 9% Part Time, and 1% Contract. Highlights an 79% Physical, 3% Hybrid, and 18% Remote job distribution, with an average salary of $46,222 per year, or $22.2 per hour.

SENIOR ADDITIVE MANUFACTURING ENGINEER

Long Beach, CA โ€ข On-site

$95K - $130K/yr

Other

Medical, Dental, Vision, Life

Re-posted 25 days ago


Job description

Department: Engineering

Reports to: Director of Engineering

Classification/Status: Exempt / Full-Time

Location: (On-site)

Company Overview

Operating from the modern Nikon AM Technology Center in Long Beach, Nikon AM Synergy is a provider of holistic solutions in additive manufacturing, R&D, and engineering. Our mission is to accelerate customer adoption and scaling of metal AM for cuttingโ€‘edge applications, with a particular focus on the defense, aerospace, and energy sectors. This will be through both Nikon SLM Solutionsโ€™ industryโ€‘leading laser powder bed fusion (L-PBF) technology enhanced by premier metallurgy and metrology capabilities. Nikon AM Synergy offers specialized capabilities within an ultraโ€‘secure environment, meeting the stringent security requirements of defense and aerospace clients. These capabilities are bolstered by our collaborative and handsโ€‘on approach, as well as technical and business development teams with extensive industry knowledge and expertise, consistently delivering results for our strategic customers.

Position Overview

The Senior Additive Manufacturing (AM) Engineer at Nikon AM Synergy supports the design, development, and manufacturing of hardware using metal additive manufacturing processes. This role collaborates closely with engineering, manufacturing, and quality teams to ensure parts meet customer and industry requirements. The AM Engineer contributes to process development, optimization, and problemโ€‘solving in a dynamic, rapidly evolving environment while maintaining compliance with aerospace quality standards.

Key Responsibilities
  • Develop and implement additive manufacturing processes for hardware production.
  • Collaborate with crossโ€‘functional teams to support onโ€‘time delivery of parts.
  • Apply Design for Additive Manufacturing (DfAM) techniques to optimize part designs.
  • Support R&D initiatives, process improvement projects, and new application development.
  • Assist in maintaining and enhancing industrial equipment used in additive manufacturing.
  • Adhere to company safety policies and ensure a safe working environment.
  • Maintain awareness of AM industry trends, materials, and technologies.
Essential Duties and Responsibilities
  • Verify and document customer requirements for additive manufacturing parts and processes.
  • Generate technical documentation and manufacturing process plans.
  • Support engineering proposals in response to customer RFPs.
  • Collaborate with project managers, engineers, and technicians to implement process improvements.
  • Assist in testing, evaluation, and troubleshooting of additive manufacturing processes and equipment.
  • Maintain compliance with AS9100 quality standards and contribute to quality process documentation.
  • Continuously learn new AM technologies and methods to support organizational capabilities.
  • Other duties may be assigned.
Required Qualifications
  • Bachelorโ€™s Degree in Mechanical, Aerospace, Materials, or Manufacturing Engineering (or related field).
  • 3 - 6 years of experience in metal additive manufacturing or related manufacturing environment.
  • Proficiency with metal AM systems (e.g., DMLS, powder bed fusion).
  • Basic understanding of GD&T principles.
  • Knowledge of thermalโ€‘mechanical behavior, materials science, and metallurgy.
  • Proficiency in CAD modeling and engineering drawings interpretation.
  • Must meet U.S. Person requirements under ITAR regulations.
  • Must be eligible to obtain and maintain a U.S. Department of Defense security clearance.
Preferred Qualifications
  • U.S. citizenship preferred; lawful permanent residents (Green Card holders) may be considered.
  • Experience with CNC machining, heat treatment, assembly, surface treatment, NDT, or other related manufacturing processes.
  • Exposure to aerospace or defense manufacturing environments.
  • Experience in process improvement or manufacturing optimization projects.
  • Advanced coursework or certifications in additive manufacturing.
Working Conditions and Requirements
  • Work Environment: Work is performed in both office and manufacturing environments, including additive manufacturing labs, prototype areas, and production floors. Regular exposure to industrial machinery and additive manufacturing (AM) equipment is expected.
  • Work Culture: A handsโ€‘on, collaborative, and technologyโ€‘driven environment focused on process innovation, production efficiency, and continuous improvement within additive manufacturing operations.
  • Schedule and Flexibility: Typically a fullโ€‘time position, with occasional extended hours or weekend work to meet project deadlines, support production schedules, or conduct equipment trials.
  • Travel: Occasional travel to customer sites, suppliers, or training events may be required.
Performance Competencies
  • Technical Expertise: Strong understanding of additive manufacturing design, processes, and materials.
  • Problem Solving: Ability to troubleshoot manufacturing issues and optimize processes.
  • Collaboration: Effective teamwork with engineering, manufacturing, and quality personnel.
  • Communication: Clear verbal and written communication with internal teams.
  • Quality Focus: Commitment to AS9100 and aerospace manufacturing standards.
  • Continuous Learning: Dedication to professional growth, technology adoption, and process improvement.
Benefits Package

We offer a comprehensive benefits package, including Medical, Dental, and Vision insurance, as well as Life and Accidental Death & Dismemberment (AD&D) coverage. Additional voluntary and supplemental benefits include Voluntary Life & AD&D, Pet Insurance, Accident Insurance, and Hospital Confinement coverage. Employees also have access to Flexible Spending Accounts (Health Care FSA and Dependent Care FSA) and a Health Savings Account (HSA), where applicable.

Equal Employment Opportunity

Nikon AM Synergy Inc. is an equal opportunity employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, gender, sexual orientation, gender identity or expression, national origin, age, disability, protected veteran status, genetic information, or any other characteristic protected by applicable law.

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