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Welding Engineer Jobs in Tennessee (NOW HIRING)

Weld Engineer

Lawrenceburg, TN

$33.50 - $46.25/hr

This position serves as the technical authority for welding processes, equipment, automation, training, and quality standards while working closely with engineering, quality, maintenance, and ...

Weld Engineer

Watertown, TN · On-site

$34.25 - $47.25/hr

Interface with manufacturing and maintenance to resolve welding and welding system issues. · ... This full-time salary-exempt role is a part of our corporate engineering team and reports to the ...

Weld Engineer

Watertown, TN · On-site

$34.25 - $47.25/hr

Interface with manufacturing and maintenance to resolve welding and welding system issues. • Assist with MRO crib activities. • Support project engineering on new and existing programs. • ...

Weld Engineer

Ethridge, TN · On-site

$32.75 - $45.25/hr

Provide technical welding expertise to the welding lab, including personnel, equipment, documents ... Provide Engineering and Quality Assurance personnel as assigned with welding expertise to support ...

Weld Engineer

Ethridge, TN · On-site

$32.75 - $45.25/hr

Provide technical welding expertise to the welding lab, including personnel, equipment, documents ... Provide Engineering and Quality Assurance personnel as assigned with welding expertise to support ...

Welder Apprentice

Greeneville, TN · On-site

$19 - $23/hr

Perform basic welding tasks using MIG, TIG, and stick processes under supervision * Read blueprints ... Collaborate with welders, engineers, and team members to meet production goals and resolve issues

Perform basic welding tasks using MIG, TIG, and stick processes under supervision * Read blueprints ... Collaborate with welders, engineers, and team members to meet production goals and resolve issues

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Welding Engineer information

See Tennessee salary details

$22

$37

$51

How much do welding engineer jobs pay per hour?

As of Aug 12, 2026, the average hourly pay for welding engineer in Tennessee is $37.77, according to ZipRecruiter salary data. Most workers in this role earn between $31.20 and $42.98 per hour, depending on experience, location, and employer.

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

To thrive as a Welding Engineer, you need a solid background in metallurgy, welding processes, materials science, and an engineering degree, often supplemented by certification such as a Certified Welding Engineer (CWE). Familiarity with CAD software, welding simulation tools, and industry standards like AWS or ASME codes is typically required. Strong problem-solving skills, attention to detail, and the ability to communicate technical information clearly help professionals excel in this role. These skills ensure weld quality, safety, and compliance with specifications, which are critical for successful engineering projects.

How much does a welding engineer get paid?

Welding engineers typically earn a median annual salary of around $70,000 to $100,000, depending on experience, location, and industry. Those with specialized skills, certifications, or working in high-demand sectors may earn higher wages and additional benefits.

What does a welding engineer do?

As a welding engineer, your job is to make recommendations on equipment for each project, create a plan for each construction job, demonstrate how to weld unusual materials together, and ensure the final product meets the client specifications. Welding engineers typically work in an industrial environment, and you may coordinate with suppliers, ensure designs are cost-effective, and communicate with project managers. Welding engineers are also responsible for ensuring safety guidelines are followed, researching new techniques and equipment, and providing documentation of the welding process. This job involves a significant amount of stooping, bending, and lifting, as well as the use of close, distance, peripheral, and color vision.

What are some typical challenges welding engineers face when working on complex fabrication projects?

Welding Engineers often encounter challenges such as selecting appropriate welding processes for diverse materials, ensuring weld quality meets strict standards, and troubleshooting unexpected defects during fabrication. They must also coordinate closely with design, production, and quality teams to resolve issues quickly and keep projects on schedule. Continuous learning about new welding technologies and adapting to evolving industry codes is also essential to overcome these challenges and ensure successful project outcomes.

What is a welding engineer?

Welding engineers are professionals who specialize in the design, development, and implementation of welding processes used to join metals and other materials. They apply principles of engineering, materials science, and metallurgy to create safe, efficient, and cost-effective welding solutions. Their responsibilities often include selecting appropriate welding techniques, developing procedures, overseeing quality control, and troubleshooting welding problems. Welding engineers work in industries such as manufacturing, construction, automotive, aerospace, and energy. They play a critical role in ensuring the structural integrity and safety of welded products and structures.

What is the difference between Welding Engineer vs Welding Technician?

AspectWelding EngineerWelding Technician
CredentialsBachelor's degree in engineering, certifications like CWE or AWS Certified Welding EngineerTechnical diploma or associate degree, certifications like AWS Certified Welding Inspector or Technician
Work EnvironmentDesigning welding processes, overseeing quality, and ensuring standards in manufacturing or constructionPerforming welding operations, inspecting welds, and assisting in production
Industry UsageUsed in engineering design, quality assurance, and process developmentCommonly found in manufacturing, fabrication, and maintenance

Welding Engineers focus on designing and improving welding processes, ensuring quality, and applying engineering principles. Welding Technicians support these processes by performing welding tasks, inspecting welds, and maintaining equipment. Both roles are essential in manufacturing and construction, but Welding Engineers typically require more advanced education and focus on process development, while Welding Technicians are more hands-on with daily operations.

What are the most commonly searched types of Welding Engineer jobs in Tennessee? The most popular types of Welding Engineer jobs in Tennessee are:
What are popular job titles related to Welding Engineer jobs in Tennessee? For Welding Engineer jobs in Tennessee, the most frequently searched job titles are:
What job categories do people searching Welding Engineer jobs in Tennessee look for? The top searched job categories for Welding Engineer jobs in Tennessee are:
What cities in Tennessee are hiring for Welding Engineer jobs? Cities in Tennessee with the most Welding Engineer job openings:
Infographic showing various Welding Engineer job openings in Tennessee as of August 2026, with employment types broken down into 93% Full Time, and 7% Part Time. Highlights an 100% In-person job distribution, with an average salary of $78,558 per year, or $37.8 per hour.

Weld Engineer

Top Gun Staffing Inc

Lawrenceburg, TN

$33.50 - $46.25/hr

Full-time

Re-posted yesterday


Job description

Position Summary

A growing manufacturing organization is seeking a Weld Engineer to support welding operations, process development, quality improvement, and production efficiency initiatives. This position serves as the technical authority for welding processes, equipment, automation, training, and quality standards while working closely with engineering, quality, maintenance, and production teams.

The ideal candidate will have expertise in robotic and manual welding processes, welding automation, process validation, and continuous improvement within a manufacturing environment.

Key Responsibilities

  • Provide technical leadership and subject matter expertise for welding processes, equipment, tooling, and production operations.
  • Evaluate existing welding methods and recommend improvements to enhance safety, quality, productivity, and cost performance.
  • Support engineering, quality, and manufacturing teams with welding-related technical guidance for both existing and new product programs.
  • Develop and maintain welding procedures, work instructions, process documentation, and quality standards.
  • Establish welding parameters and specifications to ensure compliance with product, customer, and industry requirements.
  • Support welding process validation, qualification, and certification activities.
  • Develop and deliver training programs for production personnel on welding techniques, procedures, quality requirements, and best practices.
  • Provide technical training and support to maintenance personnel regarding troubleshooting and repair of welding equipment and automation systems.
  • Lead root cause analysis and corrective action activities related to welding defects, process variation, and equipment performance.
  • Participate in Advanced Product Quality Planning (APQP), process development, and new product launch activities.
  • Support the design, development, and implementation of welding cells, fixtures, tooling, and manufacturing processes.
  • Collaborate with design and manufacturing teams to recommend product and process improvements that enhance manufacturability and quality.
  • Support robotic welding operations, including robot setup, programming coordination, process optimization, and troubleshooting.
  • Maintain welding drawings, specifications, records, and technical documentation.
  • Monitor welding process performance and implement continuous improvement initiatives.
  • Prepare technical reports, performance metrics, and project updates as required.
  • Interface with customers, suppliers, and internal stakeholders regarding welding processes, quality concerns, and technical requirements.
  • Participate in departmental meetings, training programs, audits, and customer visits as needed.
  • Support company quality, safety, and operational objectives.
  • Perform additional duties and special projects as assigned.

Qualifications

Required

  • Bachelor's Degree in Welding Engineering, Manufacturing Engineering, Mechanical Engineering, Metallurgical Engineering, or a related technical discipline; equivalent experience may be considered.
  • Experience supporting welding operations in a manufacturing environment.
  • Knowledge of welding processes, welding metallurgy, and fabrication techniques.
  • Experience developing welding procedures, process documentation, and work instructions.
  • Strong understanding of welding quality standards, inspection methods, and process control techniques.
  • Proficiency with Microsoft Office applications and standard engineering software.

Preferred

  • Experience with robotic welding systems and welding automation.
  • Experience with GMAW (MIG), GTAW (TIG), resistance welding, or other industrial welding processes.
  • Knowledge of APQP, PFMEA, Control Plans, and manufacturing quality systems.
  • Welding certifications or industry-recognized credentials are a plus.
  • Experience supporting automotive, heavy industrial, metal fabrication, or high-volume manufacturing operations.
  • Familiarity with robotic programming and automated manufacturing equipment.

Knowledge, Skills & Abilities

  • Strong technical understanding of welding processes and welding quality requirements.
  • Excellent problem-solving and root cause analysis skills.
  • Ability to develop, implement, and improve manufacturing processes.
  • Strong project management and organizational abilities.
  • Effective communication skills with the ability to present technical information to a variety of audiences.
  • Ability to work collaboratively with engineering, quality, maintenance, production, customers, and suppliers.
  • Strong attention to detail and commitment to product quality.
  • Ability to manage multiple projects and priorities simultaneously.
  • Customer-focused mindset with a commitment to continuous improvement and operational excellence.

Work Environment

  • Combination of office, laboratory, and manufacturing production environments.
  • Frequent interaction with welding equipment, automation systems, production personnel, and engineering teams.
  • Exposure to heat, noise, welding operations, and industrial manufacturing conditions.
  • Personal protective equipment (PPE) required in designated production areas.
  • Travel to customer, supplier, and manufacturing locations may be required based on business needs.