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Vp Engineering Additive Manufacturing Jobs (NOW HIRING)

VP Engineering

Asheville, NC ยท On-site

$150 - $200/hr

VP Engineering# VP EngineeringAvl Technology Park - Asheville, NC 28804Start Date 07/30/2026 ... Collaborate closely with Operations, Product Management, Manufacturing, Quality, Sales, Purchasing ...

VP Engineering

Asheville, NC ยท On-site

$250/hr

SummaryThe Vice President of Engineering is a strategic executive leader responsible for leading ... Collaborate closely with Operations, Product Management, Manufacturing, Quality, Sales, Purchasing ...

VP Engineering

Asheville, NC ยท On-site

$170K - $219K/yr

The Vice President of Engineering is accountable for engineering execution, technical risk ... Collaborate closely with Operations, Product Management, Manufacturing, Quality, Sales, Purchasing ...

VP Engineering

New York, NY ยท On-site +1

$260K - $320K/yr

VP Engineering The true B2B data pioneer, Bombora connects the B2B ecosystem in a one-of-a kind Data Cooperative-enabling a holistic view of an account's research and consumption behavior. From this ...

Engineering Reports To: Vice President of Operations About Us SICAM has been accelerating customers ... Position Overview We're looking for a hands-on Additive Manufacturing Engineer to join our fast ...

VP Engineering

New York, NY ยท On-site +1

$260K - $320K/yr

VP Engineering The true B2B data pioneer, Bombora connects the B2B ecosystem in a one-of-a kind Data Cooperative-enabling a holistic view of an account's research and consumption behavior. From this ...

Engineering Reports To: Vice President of Operations About Us SICAM has been accelerating customers ... Position Overview We're looking for a hands-on Additive Manufacturing Engineer to join our fast ...

VP, Engineering

Kenilworth, NJ ยท On-site

$279K/yr

The Vice President of Engineering is accountable for building out RACER's demonstration and commercial facilities: leading the engineering execution and physical build of the RACER process from the ...

Vice President, Engineering

Hodgkins, IL ยท On-site

$225K - $300K/yr

Voyant Beauty is a company that specializes in the development and manufacturing, of beauty ... A Brief Overview The Vice President of Engineering is a strategic and operational leader ...

$200 - $250/hr

Voyant Beauty is a company that specializes in the development and manufacturing, of beauty ... A Brief Overview The Vice President of Engineering is a strategic and operational leader ...

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Vp Engineering Additive Manufacturing information

See salary details

$112.5K

$215.6K

$398.5K

How much do vp engineering additive manufacturing jobs pay per year?

As of Sep 8, 2026, the average yearly pay for vp engineering additive manufacturing in the United States is $215,595.00, according to ZipRecruiter salary data. Most workers in this role earn between $180,000.00 and $232,000.00 per year, depending on experience, location, and employer.

What does a VP Engineering Additive Manufacturing do?

A VP of Engineering in Additive Manufacturing oversees the engineering teams responsible for developing and implementing additive manufacturing (3D printing) technologies and processes within an organization. They set technical strategy, manage research and development projects, and ensure that innovative solutions align with business goals. This role also involves collaborating with other departments, staying current with industry trends, and ensuring compliance with quality and safety standards.

What are the key skills and qualifications needed to thrive as a VP Engineering Additive Manufacturing?

To thrive as a VP of Engineering in Additive Manufacturing, you need deep expertise in engineering principles, additive manufacturing technologies, and a strong track record of leadership, often supported by an advanced degree in engineering or materials science. Familiarity with CAD software, 3D printing platforms, production management systems, and relevant industry certifications such as Six Sigma or Lean Manufacturing are typically required. Strategic thinking, excellent communication, and the ability to inspire and manage cross-functional teams are vital soft skills in this role. These skills enable effective leadership, drive innovation, and ensure the successful integration of additive manufacturing solutions in a competitive market.

What are some common challenges faced by a VP Engineering Additive Manufacturing, and how can candidates prepare to address them?

A VP of Engineering in Additive Manufacturing often faces challenges such as rapidly evolving technology, integrating new additive processes into existing production lines, and ensuring cross-functional collaboration between R&D, operations, and quality teams. Candidates should be prepared to navigate regulatory requirements, manage complex projects with tight deadlines, and foster a culture of innovation while maintaining cost efficiency. Demonstrating strong leadership skills, a track record of successful technology adoption, and the ability to align diverse teams toward common goals will be key to overcoming these challenges and driving organizational growth.

What is the difference between Vp Engineering Additive Manufacturing vs Vp Engineering Mechanical?

AspectVp Engineering Additive ManufacturingVp Engineering Mechanical
CredentialsEngineering degree, additive manufacturing certificationsEngineering degree, mechanical engineering certifications
Work EnvironmentFocus on 3D printing labs, additive production facilitiesDesign, testing, and manufacturing environments
Industry UsagePrimarily in aerospace, automotive, healthcareBroad industry use including manufacturing, automotive, aerospace

The Vp Engineering Additive Manufacturing specializes in 3D printing technologies and additive processes, focusing on developing and implementing additive solutions. In contrast, the Vp Engineering Mechanical oversees traditional mechanical design, testing, and manufacturing processes. Both roles require engineering expertise, but their focus areas and work environments differ significantly.

What are popular job titles related to Vp Engineering Additive Manufacturing jobs?

For Vp Engineering Additive Manufacturing jobs, the most frequently searched job titles are:

Infographic showing various Vp Engineering Additive Manufacturing job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 91% Full Time, 4% Part Time, 3% Contract, and 1% Nights. Highlights an 83% Physical, 4% Hybrid, and 13% Remote job distribution, with an average salary of $215,595 per year, or $103.7 per hour.

Vice President, Engineering

Global Laser Enrichment LLC

Wilmington, NC โ€ข On-site

$150 - $200/hr

Other

Re-posted 22 days ago


Job description

Vice President, Engineering

Wilmington, NC | Full-Time | On-Site | Q-Clearance Required or Eligible

Reporting to the CEO and working closely with Company stakeholders, The VP Engineering is a newly created senior leadership role that provides strategic and technical leadership for all technology maturation, hardware design, and engineering activities supporting GLEโ€™s commercialization strategy.

This position holds ultimate design authority for the production facility, systems, and equipment, ensuring that business-driven product requirements are translated into mature, robust technical specifications. The role drives the parallel maturation of technology, prototype validation, manufacturing processes, plant engineering, and safety-by-design principles to enable a seamless transition from prototyping to a deployable commercial-scale plant. By maintaining clear technical accountability and disciplined trade-off processes, the VP Engineering ensures that technical decisions are optimized for performance, cost, schedule, and regulatory compliance.

NOTE: This role is restricted to U.S. persons (i.e., U.S. citizens, permanent residents, or other protected individuals under the Immigration and Naturalization Act, 8 U.S.C. 1324b(a)(3)) due to access to U.S. exportโ€‘controlled technology. GLE will require proof of U.S. person status prior to employment. The selected candidate must also be able to acquire and maintain an NRC Qโ€‘clearance for access to Restricted Data.

Roles and Responsibilities
  • Oversee the core technology maturation program, including conceptual design, detailed hardware engineering, system integration, and iterative design reviews.
  • Define and maintain the technology maturation roadmap and technical risk register from TRL 6 through TRL 9, including MRL alignment, gating criteria, and success metrics.
  • Prioritize technical workstreams to maximize FOAK technical risk reduction, balancing initial performance and reliability vs. speed to market.
  • Develop and execute strategies for manufacturability, process scaleโ€‘up, supplyโ€‘chain readiness, and industrialization of critical components and assemblies.
  • Collaborate closely with the projects team to align manufacturing requirements with overall project execution and cost baselines.
  • Establish and maintain a robust configuration management system and technical baseline that serves as the single source of truth for production facility designs.
  • Provide design authority and leadership for the overall production facility architecture, balanceโ€‘ofโ€‘plant systems, process flow diagrams, piping and instrumentation diagrams (P&IDs), and equipment specifications.
  • Ensure facility and system designs meet performance, reliability, and availability targets while maturing in parallel with technology development.
  • Champion โ€œsafety by designโ€ principles by leading integrated safety analyses, hazard identification, probabilistic risk assessments, and development of the safety basis documentation.
  • Embed safety and regulatory requirements into all design, testing, and manufacturing activities from the earliest stages.
  • Oversee operation of all test facilities, prototype assembly, commissioning, data acquisition, diagnostics, and performance validation campaigns.
  • Ensure rigorous test plans, failure mode analysis, and lessonsโ€‘learned processes are institutionalized to deโ€‘risk technology prior to fullโ€‘scale deployment.
  • Serve as the final technical decision authority on design tradeโ€‘offs, ensuring that business and product requirements drive all technology maturation efforts.
  • Establish and chair key technical governance forums (e.g., Design Review Board, Change Control Board) and maintain strong interfaces with crossโ€‘functional teams to ensure seamless handoffs and alignment.
  • Build, mentor, and retain a highโ€‘performing engineering organization; foster a culture of technical excellence, innovation, and accountability.
  • Represent the companyโ€™s technical baseline with regulators, investors, and external stakeholders as required.
Qualifications and Experience
  • Bachelorโ€™s degree in Nuclear Engineering, Mechanical Engineering, Chemical Engineering, Materials Science, or a closely related field; Masterโ€™s or PhD strongly preferred.
  • 15+ years of progressive experience in engineering and technology development, with at least 8โ€“10 years in a senior leadership role (e.g., Director of Engineering or equivalent) in the nuclear, advanced energy, aerospace, or complex hardware/systems industry.
  • Demonstrated track record of leading technology maturation from concept through prototype testing to industrialization, including handsโ€‘on experience with hardware design, system integration, and test facility operations.
  • Strong background in safetyโ€‘byโ€‘design principles, integrated safety analysis, and embedding regulatory requirements into technical baselines.
  • Experience establishing and maintaining design authority, configuration management, and technical governance processes in a regulated environment.
  • Proven ability to build, mentor, and scale highโ€‘performing multidisciplinary engineering teams while fostering a culture of technical excellence, innovation, and accountability.
  • Familiarity with nuclear regulatory frameworks (e.g., NRC guidelines) and experience representing technical positions to regulators, investors, or external stakeholders is highly desirable.
  • Excellent strategic thinking, crossโ€‘functional collaboration, and communication skills, with the ability to balance technical tradeโ€‘offs against business, schedule, and cost drivers.
  • Comfortable with ambiguity and iteration inherent in FOAK development.
  • High accountability mindset with bias toward execution.
  • Active DOE/NRC Qโ€‘clearance or equivalent (DOD TS).
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