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Additive Manufacturing Engineer Jobs (NOW HIRING)

Position Overview We're looking for a hands-on Additive Manufacturing Engineer to join our fast-paced production team. You'll play a key role in managing client projects, optimizing print processes ...

Position Overview We're looking for a hands-on Additive Manufacturing Engineer to join our fast-paced production team. You'll play a key role in managing client projects, optimizing print processes ...

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Additive Manufacturing Engineer information

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$47.5K

$85.6K

$120K

How much do additive manufacturing engineer jobs pay per year?

As of Jul 20, 2026, the average yearly pay for additive manufacturing engineer in the United States is $85,613.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,000.00 and $94,000.00 per year, depending on experience, location, and employer.

What is an Additive Manufacturing Engineer job?

An Additive Manufacturing Engineer specializes in designing, developing, and optimizing 3D printing processes and materials. They work with various additive manufacturing technologies to produce prototypes, functional parts, and end-use products. Their responsibilities include process improvement, material selection, machine calibration, and ensuring product quality. Additionally, they collaborate with design and production teams to implement innovative manufacturing solutions efficiently.

What are the key skills and qualifications needed to thrive in the Additive Manufacturing Engineer position, and why are they important?

To thrive as an Additive Manufacturing Engineer, you need a strong background in engineering principles, CAD design, and materials science, often supported by a bachelor's degree in mechanical, manufacturing, or related engineering fields. Familiarity with 3D printing technologies, software like SolidWorks or AutoCAD, and certifications such as SME Additive Manufacturing Certification are commonly required. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities make candidates stand out in this role. These competencies ensure you can develop innovative solutions, maintain high-quality production standards, and successfully collaborate across multidisciplinary teams.

What are some of the main challenges Additive Manufacturing Engineers face in their daily work?

Additive Manufacturing Engineers often encounter challenges related to optimizing print quality, selecting the most suitable materials, and troubleshooting equipment or process issues. Staying current with rapidly evolving technologies and finding ways to efficiently scale prototypes into full production can also be demanding. Collaboration with design engineers, quality teams, and production staff is essential to ensure that final parts meet all specifications and regulatory standards. Embracing these challenges offers valuable learning experiences and helps build advanced expertise in this innovative and growing field.

What cities are hiring for Additive Manufacturing Engineer jobs? Cities with the most Additive Manufacturing Engineer job openings:
What are the most commonly searched types of Additive Manufacturing Engineer jobs? The most popular types of Additive Manufacturing Engineer jobs are:
Who are the top companies hiring for Additive Manufacturing Engineer jobs? The top employers for Additive Manufacturing Engineer jobs are:
What states have the most Additive Manufacturing Engineer jobs? States with the most job openings for Additive Manufacturing Engineer jobs include:
Infographic showing various Additive Manufacturing Engineer job openings in the United States as of July 2026, with employment types broken down into 1% As Needed, 91% Full Time, 5% Part Time, 2% Contract, and 1% Nights. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $85,613 per year, or $41.2 per hour.
Lead Additive Manufacturing Engineer

Lead Additive Manufacturing Engineer

Arcturus

Los Angeles, CA โ€ข On-site

Full-time

Re-posted 10 days ago


Job description

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.

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 Arcturusโ€™ first additive manufacturing engineer, with the chance to define the companyโ€™s metal printing strategy from the beginning. You will work directly with the Founder and CEO to shape the technical direction of our manufacturing platform and help build a category-defining materials company from scratch.

Purpose

We are seeking a Lead Additive Manufacturing Engineer who can own the development of Arcturusโ€™ metal printing platform across LPBF and DED-based approaches, starting with aluminum and copper systems infused with carbon nanomaterials like graphene and carbon nanotubes. This person should be deeply fluent in how metal additive systems actually work, from lasers and optics to melt pool behavior, thermal history, shielding environments, material delivery, and process control, and be able to translate that knowledge into repeatable, scalable manufacturing capability.

The role

This role reports directly to the CEO

What youโ€™ll do

  • Own Arcturusโ€™ additive manufacturing roadmap across LPBF and DED workflows for infused metal parts and wire

  • Define and optimize print processes for copper and aluminum, including parameter development, thermal management, build strategy, and system-level tradeoffs

  • Establish process windows that preserve conductivity, mechanical integrity, and nanomaterial performance through fabrication

  • Serve as the companyโ€™s internal expert on metal AM process physics, machine behavior, lasers, and print quality

  • Lead design-for-additive-manufacturing decisions, including build orientation, support strategy, scan strategy, and geometry tradeoffs that affect printability and final part performance

  • Diagnose and solve print failures including porosity, cracking, distortion, poor bonding, and geometry drift

  • Build qualification plans, process documentation, and acceptance criteria for repeatable development and future scale-up

  • Define feedstock, shielding gas, and contamination-control practices that preserve material quality and process repeatability

  • Use DOE, data analysis, and structured root-cause methods to optimize process windows and improve yield, repeatability, throughput, and cost

  • Partner closely with nanomaterials, characterization, mechanical, and product engineering to connect print process to final conductor performance

  • Contribute to invention disclosures, patent strategy, and internal technical documentation with a high bar for rigor and clarity

Basic qualifications

  • MS, or PhD in metallurgical engineering, mechanical engineering, materials science, manufacturing engineering, welding engineering, physics, or a related field

  • 8+ years of hands-on experience in metal additive manufacturing, advanced process development, or closely related manufacturing systems

  • Deep expertise in metal AM processes, especially LPBF and ideally DED or laser-based directed energy systems

  • Strong understanding of lasers, optics, melt pool physics, heat transfer, solidification, residual stress, and metallurgical process-structure-property relationships

  • Demonstrated experience developing, optimizing, troubleshooting, and scaling AM processes in real hardware environments

  • Strong scientific and technical writing skills, including clear documentation of process development, test plans, specifications, and invention disclosures

Preferred qualifications

  • Experience printing aluminum and/or copper alloys

  • Experience with machine-level AM development, including motion systems, powder handling, feedstock delivery, sensing, or controls

  • Experience qualifying and scaling AM hardware in a high-performance manufacturing environment

  • Familiarity with CAD and AM build preparation tools, including slicing, scan strategy setup, support generation, and print simulation workflows

  • Familiarity with metal matrix composites or other non-standard AM material systems

What we offer

  • Competitive cash compensation and meaningful equity

  • Direct technical ownership over a core manufacturing platform

  • The chance to define the playbook for nanomaterial-enhanced metal additive manufacturing

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

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