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Metal Fabrication Manufacturing Engineer Jobs (NOW HIRING)

Experience in a fabrication or metal manufacturing environment. * Hands-on experience with at least ... Ability to read and interpret engineering drawings and GD&T. * Mechanical aptitude and problem ...

Experience in a fabrication or metal manufacturing environment. * Hands-on experience with at least ... Ability to read and interpret engineering drawings and GD&T. * Mechanical aptitude and problem ...

Manufacturing engineering experience supporting machining, sheet metal fabrication, tooling ... manufacturing equipment, or similar production environments. * Experience developing, testing ...

As a Manufacturing Engineer supporting our sheet metal fabrication operations, you will play a key role in establishing world-class manufacturing processes that deliver exceptional safety, quality ...

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Metal Fabrication Manufacturing Engineer information

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$37.5K

$87.3K

$140K

How much do metal fabrication manufacturing engineer jobs pay per year?

As of Sep 10, 2026, the average yearly pay for metal fabrication manufacturing engineer in the United States is $87,296.00, according to ZipRecruiter salary data. Most workers in this role earn between $77,000.00 and $95,500.00 per year, depending on experience, location, and employer.

What does a metal fabrication manufacturing engineer do?

A Metal Fabrication Manufacturing Engineer is responsible for designing, developing, and improving manufacturing processes used to fabricate metal products and components. They work closely with production teams to optimize efficiency, ensure product quality, and implement new technologies or methods. Their tasks often involve selecting appropriate materials, developing process documentation, troubleshooting production issues, and ensuring compliance with safety and industry standards. By continuously improving processes, they help reduce costs and increase productivity within metal fabrication operations.

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

To thrive as a Metal Fabrication Manufacturing Engineer, you need a solid background in mechanical or manufacturing engineering, knowledge of metallurgy, and experience with fabrication processes, typically supported by a relevant engineering degree. Proficiency with CAD software, CNC programming, and familiarity with manufacturing standards and certifications such as Six Sigma or Lean Manufacturing are highly valued. Strong problem-solving abilities, attention to detail, and effective communication skills help in optimizing production and collaborating with cross-functional teams. These skills ensure efficient, high-quality metal fabrication processes that meet safety, cost, and design requirements.

What are some common challenges faced by metal fabrication manufacturing engineers, and how can they be addressed in the workplace?

Metal Fabrication Manufacturing Engineers often encounter challenges such as maintaining precision and quality while optimizing production efficiency, adapting to new technologies, and ensuring safety in operations. These challenges can be addressed by staying updated with the latest manufacturing techniques, collaborating closely with production and quality assurance teams, and implementing continuous improvement initiatives. Additionally, effective communication and problem-solving skills help engineers quickly resolve issues on the shop floor and contribute to a safer, more productive work environment.

What is the difference between Metal Fabrication Manufacturing Engineer vs Metal Fabricator?

AspectMetal Fabrication Manufacturing EngineerMetal Fabricator
CredentialsBachelor's degree in engineering or related field, certifications like Six SigmaHigh school diploma or equivalent, on-the-job training
Work EnvironmentDesign offices, manufacturing plants, project planningWorkshop floors, manufacturing facilities, assembly lines
Employer & Industry UsageEngineering firms, manufacturing companies, project managementMetal shops, fabrication plants, construction sites

The Metal Fabrication Manufacturing Engineer focuses on designing, planning, and improving fabrication processes, often working in office settings or engineering departments. In contrast, the Metal Fabricator is hands-on, working directly on the shop floor assembling and fabricating metal components. Both roles are essential in the metal manufacturing industry but differ in responsibilities, work environment, and required credentials.

What are popular job titles related to Metal Fabrication Manufacturing Engineer jobs?

For Metal Fabrication Manufacturing Engineer jobs, the most frequently searched job titles are:

Infographic showing various Metal Fabrication Manufacturing Engineer job openings in the United States as of September 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $87,296 per year, or $42 per hour.

Fabrication Manufacturing Engineer (GB)

Green Bay, WI • On-site

Fox Valley Metal Tech, Inc.
51 - 200 employees

$75K - $90K/yr

Full-time

Re-posted 2 days ago


Fox Valley Metal Tech rating

8.4

Company rating: 8.4 out of 10

Based on 5 frontline employees who took The Breakroom Quiz


Job description

THIS POSITION IS LOCATED IN GREEN BAY, WISCONSIN
Basic Job Purpose:

The Fabrication Manufacturing Engineer is a hands-on manufacturing role responsible for supporting and optimizing daily fabrication operations across laser cutting, waterjet cutting, press brake forming, and related fabrication equipment. This position ensures equipment is utilized effectively, processes are stable, and production teams have the tooling, training, and support needed to meet quality, delivery, and productivity goals.
In addition to operating and supporting key fabrication equipment, this role serves as the primary liaison between Engineering and Manufacturing to ensure designs are optimized for manufacturability, efficiency, and production capability.
A key part of this role is developing standardized processes, training operators, and improving consistency across fabrication operations.
Key Responsibilities
Fabrication Equipment Support & Operation

  • Operate and support a wide range of fabrication equipment including laser cutting systems, waterjet machines, press brakes, and related downstream processes.
  • Assist production teams with daily setup, troubleshooting, and optimization of fabrication equipment.
  • Support job changeovers, setup verification, and first-piece validation to ensure quality and repeatability.
  • Monitor machine performance and help resolve production issues to minimize downtime and bottlenecks.
  • Support preventive maintenance coordination and ensure equipment readiness for production schedules.

Engineering & Design for Manufacturability (DFM)
  • Act as the primary liaison between Engineering and Production to ensure designs are manufacturable and cost-effective.
  • Review engineering drawings and provide feedback on fabrication feasibility, tooling constraints, and process optimization.
  • Support Design for Manufacturability (DFM) initiatives to reduce setup time, improve flow, and minimize rework.
  • Collaborate with engineering teams during new product introduction (NPI) to ensure smooth transition into production.
  • Help align design intent with real-world fabrication capabilities and limitations.

Production Support, Tooling, Fixtures & Continuous Improvement
  • Develop and implement tooling, fixtures, and work holding improvements to reduce setup time and improve repeatability.
  • Evaluate and support procurement of fabrication tooling, dies, and auxiliary equipment.
  • Support continuous improvement initiatives focused on cycle time reduction, scrap reduction, labor efficiency, and throughput gains.
  • Collect and analyze production data to identify trends and improvement opportunities.
  • Assist in implementing corrective actions for recurring production or quality issues.

Training, Standard Work & Process Standardization
  • Develop and maintain standard work instructions for fabrication equipment setup, operation, and changeover procedures.
  • Create visual aids, setup guides, and process documentation to support operator training and consistency.
  • Train operators and production personnel on proper use of laser, waterjet, press brake, and related fabrication equipment.
  • Partner with supervisors and engineering to ensure training programs reflect current best practices and updated processes.

Minimum Requirements for Education, Skillset, Qualifications, and Experience:
Required
  • A minimum of an associate's degree in manufacturing engineering or related field; equivalent manufacturing experience may be considered.
  • Experience in a fabrication or metal manufacturing environment.
  • Hands-on experience with at least one of the following: laser cutting, waterjet cutting, or press brake operations.
  • Strong understanding of sheet metal fabrication processes and equipment.
  • Ability to read and interpret engineering drawings and GD&T.
  • Strong mechanical aptitude and problem-solving skills.
  • Ability to work directly on the shop floor in a fast-paced production environment.
  • Strong communication skills with both production personnel and engineering teams.

Preferred
  • Experience across multiple fabrication processes (laser, waterjet, press brake, forming, or finishing).
  • Experience developing or maintaining work instructions or standard operating procedures (SOPs).
  • Knowledge of tooling design and press brake setup optimization.
  • Experience with CAD/CAM software for fabrication programming or review.
  • Exposure to Lean Manufacturing or Continuous Improvement principles.
  • Familiarity with ERP/MRP systems or production scheduling tools.
  • Experience supporting NPI (New Product Introduction) or prototype manufacturing.
  • Basic understanding of machining or downstream weld/fabrication processes.

Success Measures
  • Reduced setup times and variation across shifts/operators
  • Improved machine uptime and utilization
  • Standardized fabrication processes across equipment and departments
  • Assist with effective onboarding and improved operator training effectiveness
  • Improved manufacturability feedback loop with Engineering

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