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Welding Phd Jobs (NOW HIRING)

Required Qualifications โ€ข Bachelor's or Master's degree in Mechanical Engineering (PhD preferred ... welding processes. โ€ข Familiarity with reliability standards (Telcordia, MIL-STD, JEDEC). โ€ข ...

Controls Engineer, Cell Line

Manteno, IL ยท On-site

$82K - $107K/yr

Requirements: * Education: * BS/MS/PhD in Electrical Engineering, Mechanical Engineering ... Knowledge of laser welding processes is a plus. * Proficiency in PLC programming, Siemens 1500 ...

Sr Heat Treat Process Engineer

Long Beach, CA ยท On-site

$109K - $141K/yr

Own heat treatment processes for L-PBF additively manufactured Inconel 718 parts and welded ... Advanced degree (MS/PhD) in Materials Science, Mechanical Engineering, or Manufacturing Engineering

Sr Heat Treat Process Engineer

Long Beach, CA ยท On-site

$109K - $141K/yr

Own heat treatment processes for L-PBF additively manufactured Inconel 718 parts and welded ... Advanced degree (MS/PhD) in Materials Science, Mechanical Engineering, or Manufacturing Engineering

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Welding Phd information

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$24

$41

$56

How much do welding phd jobs pay per hour?

As of Jun 15, 2026, the average hourly pay for welding phd in the United States is $41.61, according to ZipRecruiter salary data. Most workers in this role earn between $34.38 and $47.36 per hour, depending on experience, location, and employer.

What is a Welding PhD?

A Welding PhD is a doctoral degree focused on advanced research in welding engineering, metallurgy, materials science, or related fields. Individuals pursuing this degree contribute to innovations in welding processes, technology, and safety. Graduates often work in academia, research institutions, or industry, leading projects that advance welding science and manufacturing techniques. The degree typically involves original research, dissertation work, and the publication of scholarly articles.

What are the key skills and qualifications needed to thrive as a Welding PhD, and why are they important?

To thrive as a Welding PhD, you need advanced knowledge of welding processes, metallurgy, and materials science, typically supported by a doctoral degree in welding engineering or a related field. Experience with specialized research equipment, advanced welding simulation software, and familiarity with industry standards such as AWS and ASME codes are often required. Strong analytical thinking, problem-solving, and the ability to communicate complex ideas clearly are essential soft skills for success in academia or industry research. These skills enable the development of innovative welding technologies, ensure rigorous research outcomes, and facilitate effective collaboration within multidisciplinary teams.

What are some typical research and collaboration opportunities for a Welding PhD in an industrial or academic setting?

As a Welding PhD, you can expect to engage in advanced research projects focused on welding processes, materials science, and joining technologies. In academic settings, you may collaborate with multidisciplinary teams, supervise graduate students, and partner with industry sponsors to solve real-world manufacturing challenges. In industry, you often work closely with engineers, production teams, and R&D departments to develop innovative solutions, improve weld quality, and optimize manufacturing processes. These roles frequently offer opportunities to publish research, present at conferences, and contribute to the development of welding standards.

What is the difference between Welding Phd vs Welding Engineer?

AspectWelding PhdWelding Engineer
Required CredentialsPhD in Welding Engineering or related fieldBachelor's or Master's in Welding Engineering or related field
Work EnvironmentResearch labs, academia, advanced R&DManufacturing, construction sites, industrial settings
Industry UsageResearch institutions, universities, specialized R&DManufacturing companies, construction firms, quality assurance

Welding Phd professionals focus on advanced research, development, and teaching in welding technology, often working in academia or research labs. Welding Engineers apply their expertise in practical industrial settings, overseeing welding processes, quality control, and project management. While both roles require strong welding knowledge, the Phd emphasizes research and innovation, whereas the Engineer emphasizes application and implementation in industry.

Infographic showing various Welding Phd job openings in the United States as of June 2026, with employment types broken down into 90% Full Time, 6% Part Time, 2% Contract, and 2% Nights. Highlights an 90% Physical, 4% Hybrid, and 6% Remote job distribution, with an average salary of $86,554 per year, or $41.6 per hour.

Technical Leader IV - Advanced Manufacturing and Materials

Electric Power Research Institute, Inc.

Charlotte, NC โ€ข On-site

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 26 days ago


Job description

Job Title:Technical Leader IV - Advanced Manufacturing and MaterialsLocation:Charlotte, NC, Remote/Home BasedJob Summary and Description:

The Technical Leader IV - Advanced Manufacturing and Materials will plan, manage, and lead research and development (R&D) projects related to the development, evaluation, and implementation of advanced manufacturing methods and advanced materials in energy applications.

This role conducts research in complex; high impact technical fields related to advanced manufacturing and advanced materials for energy applications. Works independently with minimal supervision and regularly demonstrates responsibility for highly specialized technical objectives where relationships between cause and effect are difficult to establish and little or no precedent exists. Creative and imaginative thinking is required to develop new concepts, solve emerging industry challenges, and guide long term research directions.

This role will plan, manage, and lead research and development (R&D) projects within the Advanced Nuclear Technology Program, with opportunities to support cross sector initiatives including fusion, thermal fleet, and other power generation technologies. The Technical Leader IV will interface directly with EPRI members, OEMs, national laboratories, and regulatory stakeholders to identify needs, shape research portfolios, and deliver impactful technical products.

Responsibilities include:

  • Leads complex R&D projects related to advanced manufacturing, advanced materials, and their qualification and long-term operation for nuclear and other energy applications.

  • Develops and executes research strategies involving additive manufacturing, powder-metallurgy hot isostatic pressing, welding and joining, cladding, repair technologies, high temperature materials, and digital manufacturing/modeling approaches.

  • Applies deep technical expertise to identify emerging industry issues, research gaps, and opportunities for new or expanded R&D initiatives.

  • Provides high level engineering guidance, technical insight, and mentorship to junior staff.

  • Acts as a technical specialist for project tasks, ensuring technical quality, rigor, and alignment with member needs.

  • Regularly communicates complex strategies and results through reports, presentations, workshops, webcasts, and advisory meetings.

  • Organizes and oversees project activities to ensure technical and financial milestones are met.

  • Works closely with EPRI Member Services, sector leadership, and cross functional teams to support member engagement and identify new opportunities.

  • Leads proposal development, promotional work, and multi organization collaborative projects.

  • Represents EPRI in national and international technical networks, including standards committees, research consortia, academia, and industry working groups.

  • Supports development and application of relevant codes and standards (e.g., ASME, ASTM, etc.) for advanced manufacturing and materials technologies.

  • Develops research or opportunities of value to EPRI members that fit EPRI's mission and capabilities. This will include solving member problems, producing insights and information vital to the members, and delivering information in a manner that members and industry can and will apply.

Education:

  • Bachelor's degree in a technical field required

  • Advanced degree (MS/PhD) preferred

  • Significant relevant work experience may be considered in lieu of an advanced degree

Knowledge, Skills, and Abilities:

  • 10-15+ years of experience in R&D projects, new reactor design, fabrication, and construction, advanced concept development, or equivalent technical experience.

  • Demonstrated expertise in one or more of the following:

  • Additive manufacturing (metal AM, qualification, repair/replacement applications)

  • Welding, joining, cladding, and repair technologies

  • High temperature alloys and advanced materials for nuclear or energy systems

  • Digital manufacturing, modeling, or simulation

  • Codes and standards application and development (ASME, ASTM, etc., particularly ASME Section III Division 5)

  • Experience in new plant development, new plant regulatory issues, and related codes and standards is preferred

  • Specific experience with new plant engineering, procurement, and construction activities and issues is preferred.

  • Ability to recognize strategic issues and projects and build collaborative and successfully complete projects.

  • Experience in successful proposal preparation

  • Shows maturity of technical expertise and assumes responsibility for highly specialized technical objectives using creative imaginative solutions.

  • Excellent verbal and written communication skills

The Ideal Candidate:
The ideal candidate will provide thought leadership on industry needs to define and deliver both tactical and strategic research and development solutions. The candidate will possess the technical depth and breadth required to serve as a subject matter expert in advanced manufacturing and materials, with a strong understanding of the research and development lifecycle. Demonstrated experience in successful technical proposal development and business development activities is essential. Finally, the ideal candidate will work effectively within a highly skilled, multidisciplinary team, contributing to matrixed projects and group interactions, and will be willing to travel approximately 10-20% of the time, including internationally.

  • Works independently on technical activities without direct supervision.

  • Regularly demonstrates responsibility for highly specialized technical objectives or problems where the relationships between cause and effect are difficult to establish and little or no precedence exists, and the use of creative and imaginative thinking is required.

  • Assumes responsibility for highly specialized technical objectives or problems where the relationships between cause and effect are difficult to establish and little or no precedence exists, and the use of creative and imaginative thinking is required.

  • Works actively to identify research gaps in program technical portfolio.

  • Provides high-level engineering efforts to support requirements in development and design and provides guidance to junior staff.

  • Provides valuable insight in engineering aspects of the technical work.

  • Acts as technical specialist for projects or project tasks.

The salary range for this position is $170,000 USD to $182,500 USD annually.This salary range is an estimate, and the actual salary may vary based on various factors, including without limitation applicant's education, experience, skills, and abilities, as well as internal equity and alignment with market data. The salary may also be adjusted based on applicant's geographic location.This role is eligible to participate in EPRI's annual incentive program. The amount of incentive varies and is subject to the terms and conditions of the plan.This role is eligible to participate in EPRI's standard employee benefit programs, which currently include the following: medical, dental, vision, 401k, STD/LTD and paid family leave, life and accident insurance, paid time off (flexible vacation, sick leave, and holiday pay).EPRI participates in E-Verify, an online system operated jointly by the Department of Homeland Security and the Social Security Administration (SSA). EPRI uses the system to check the work status of new hires by comparing information from the employee's I-9 form against SSA and Department of Homeland Security databases.EPRI is an equal opportunity employer. EEO/AA/M/F/VETS/DisabledTogether . . . Shaping the Future of Energy.www.epri.com