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Brazing Welding Jobs (NOW HIRING)

Weld Engineer

Windsor, CT · On-site

$80 - $100/hr

This position will focus on the manufacturing and restart of legacy heat exchanger products while supporting welding, brazing, machining, sheet metal manufacturing, process development, production ...

Weld Engineer

Windsor Locks, CT · On-site

$125K - $150K/yr

Support manufacturing activities involving aluminum and steel brazing, welding, machining, and sheet metal processes. * Develop, mark up, edit, and update welding process specifications.

Support manufacturing activities involving aluminum and steel brazing, welding, machining, and sheet metal processes. * Develop, mark up, edit, and update welding process specifications.

Adjust MIG, Spot and Arc Brazing Welding Schedules on Medar, Lincoln, Fronius and Panasonic Weld Controllers * Maintain equipment to ensure machines produce quality parts * Responsible for daily ...

Welder- (2nd Shift)

Chaska, MN · On-site

$26.16 - $32.97/hr

Our production areas include machine operators, assembly, brazing, welding, crating, tube fabrication, material handler. * Utilize work orders and blueprints to ensure work is assembled according to ...

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Brazing Welding information

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How much do brazing welding jobs pay per hour?

As of Sep 8, 2026, the average hourly pay for brazing welding in the United States is $20.65, according to ZipRecruiter salary data. Most workers in this role earn between $17.31 and $24.04 per hour, depending on experience, location, and employer.

What is a brazing welder?

Brazing welders are skilled technicians who join metal parts together using a filler metal that melts at a lower temperature than the base metals. Unlike traditional welding, brazing does not melt the workpieces themselves; instead, it relies on capillary action to distribute the molten filler and bond the metals. Brazing welders work in industries such as manufacturing, automotive, aerospace, and HVAC, creating strong, leak-proof joints for various applications. They must be knowledgeable about different metals, safety procedures, and the proper use of specialized equipment.

What are the key skills and qualifications needed to thrive as a brazing welder?

To thrive as a Brazing Welder, you need a solid understanding of metallurgy, blueprint reading, and hands-on brazing techniques, usually gained through vocational training or apprenticeships. Familiarity with oxy-fuel torches, soldering irons, and welding safety equipment is essential, and certifications like AWS Brazing Certification can be advantageous. Attention to detail, manual dexterity, and strong problem-solving skills are important soft skills for producing high-quality joints and addressing challenges. These competencies ensure the structural integrity and reliability of metal assemblies, which are critical for safety and performance in manufacturing and construction.

What are some common challenges faced by brazing welders, and how can they be addressed?

Brazing welders often encounter challenges such as ensuring proper joint cleanliness, maintaining precise temperature control, and selecting compatible filler materials. Contaminants or improper surface preparation can lead to weak joints, so thorough cleaning is essential before starting. Additionally, monitoring temperature closely helps prevent overheating or insufficient bonding. Collaborating with experienced team members and staying current with safety standards can also improve work quality and efficiency.

What is the difference between Brazing Welding vs Soldering?

AspectBrazing WeldingSoldering
CredentialsCertifications in welding and brazing techniquesTypically requires basic soldering skills, sometimes certifications
Work EnvironmentIndustrial settings, manufacturing, metal fabricationElectronics, plumbing, small metalwork
Industry UsageHeavy industry, aerospace, automotiveElectronics, HVAC, jewelry

While both brazing welding and soldering involve joining metals using heat, brazing welding uses higher temperatures and stronger filler metals, making it suitable for structural applications. Soldering operates at lower temperatures and is ideal for delicate work like electronics. Understanding these differences helps choose the right technique for your project or career path.

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Infographic showing various Brazing Welding 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 $42,959 per year, or $20.7 per hour.

Welding & Brazing Manufacturing Engineer (Onsite)

Prattwhitney

East Hartford, CT • On-site

$100 - $125/hr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 28 days ago


Pratt & Whitney rating

8.8

Company rating: 8.8 out of 10

Based on 162 frontline employees who took The Breakroom Quiz

13th of 72 rated aerospace companies


Job description

Location: Hartford, CT (US-CT-EAST, 400 Main St, BLDG J)

Job Type: Onsite. Citizenship: U.S. citizenship required. Security Clearance: None not required.

What You Will Do

Pratt & Whitney is seeking a highly skilled Welding & Brazing Manufacturing Engineer to lead and support advanced joining technologies, primarily for Original Equipment Manufacturer (OEM) operations, with additional support for Maintenance Repair Operations (MRO) activities. This role is ideal for an experienced technical leader who thrives in complex aerospace manufacturing environments and wants to help shape the future of turbine engine joining technologies. You will work closely with cross‑functional teams to develop, validate, and optimize welding and brazing processes critical to Pratt & Whitney’s next‑generation propulsion systems. You will join the Manufacturing Processes and Advanced Technology (MPAT) group within the Operational Excellence Organization.

Responsibilities
  • Serve as a subject matter expert for advanced brazing and welding processes across Pratt & Whitney’s Core Manufacturing Engineering organization.
  • Collaborate with Brazing & Welding Fellow to lead Joining Technologies Council initiatives, including co‑leading meetings and improving standard work.
  • Develop, validate, and implement new welding and brazing technologies, including automated welding cells, furnace brazing systems, and modernization of joining processes.
  • Lead capital equipment projects from specification through installation and release to production.
  • Partner with internal sites and suppliers to create PFMEAs, control plans, and ensure Manufacturing Readiness Level (MRL) progression for high‑risk joining operations.
  • Reduce scrap, rework, repairs, quality escapes, and cost of poor quality (COPQ) through effective root cause analysis and implementation of corrective actions.
  • Support process investigations, technical escalations, and continuous improvement efforts in welding and brazing.
  • Participate in assessments of joining process capability, readiness, equipment health, and supplier capability, presenting results to stakeholders and leadership.
  • Develop and maintain processes for new product introductions, including First Article Inspection and control of manufacturing software.
  • Collaborate with cross‑functional teams including quality, design engineering, IPTs, operations, tool design, weld test lab, and NDT inspection.
  • Contribute to lean/CORE initiatives to improve efficiency, safety, and cost performance.
  • Develop curriculum and deliver training to enhance workforce capabilities and ensure knowledge transfer.
  • As needed develop, review, and maintain work instructions to align with operational standards and best practices.
What You Will Learn
  • Advanced aerospace joining technologies, including laser welding, TIG/GTAW, electron beam welding, vacuum brazing, and induction brazing.
  • Best practices in heat‑treat interactions, cleaning, metallurgy, automation, process control, and precision fixturing.
  • Hands‑on problem solving in high‑mix aerospace manufacturing and MRO environments.
  • Cross‑functional collaboration across global supply chain, operations, and engineering teams.
  • Enterprise‑wide Pratt & Whitney business processes, including the CORE Operating System, Leadership Operating Model, and cross‑functional areas such as Material Control Labs, Engineering Support to Operations, Quality, and Engineering Source Approval.
Qualifications

You Must Have:

  • Bachelor’s degree in Mechanical, Manufacturing, Materials, Welding Engineering, or related technical field.
  • 10+ years of experience in manufacturing engineering or shop operations.
  • 5+ years of aerospace experience in brazing, welding, or joining processes (TIG/GTAW, laser, electron beam, vacuum brazing, induction).
  • Experience programming or supporting automated joining systems, robotics, welding controls, or furnace controls.
  • U.S. Citizenship required.

We Prefer:

  • Advanced engineering degree (MS or PhD).
  • Experience with Lean, Six Sigma, ACE/CORE, Red X, SPC, and RCCA methodologies.
  • Familiarity with Siemens NX, CAD/CAM, 3D modeling, NC programming, and GD&T.
  • Experience with NDT techniques such as visual, FPI and X‑ray inspection.
Benefits
  • Medical, dental, vision, life insurance, short‑term disability, long‑term disability.
  • 401(k) match, flexible spending accounts, flexible work schedules, employee assistance program, Employee Scholar Program, parental leave, paid time off, holidays.
  • Eligibility for annual short‑term and/or long‑term incentive compensation programs depending on level and collective‑bargaining agreement.
EEO Statement

RTX is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, age, disability or veteran status, or any other applicable state or federal protected class. RTX provides affirmative action in employment for qualified Individuals with a Disability and Protected Veterans in compliance with Section 503 of the Rehabilitation Act and the Vietnam Era Veterans’ Readjustment Assistance Act.

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About Pratt & Whitney

Sourced by ZipRecruiter

Pratt & Whitney has a long history of leadership and innovation in the field of aviation propulsion. Our story begins in the 1920s and has flourished throughout the decades. We have continuously transformed and reinvented our businesses to offer superior products and services to our customers. In 1925, the Pratt & Whitney Aircraft Company was founded by Frederick B. Rentschler, pioneer of the air-cooled radial engine design which enabled unprecedented power-to-weight ratio. Its first engine, the R-1340 Wasp engine, transformed military and commercial aviation and is still in use today. In 1928, the Canadian division of the Pratt & Whitney Aircraft Company was established. In 1944, Pratt & Whitney began its gas turbine and jet propulsion initiative. The company constructed a wind tunnel, laboratory and engineering center to support our allies’ efforts in World War II. In 1945, wartime production included more than 300,000 Pratt & Whitney engines, touted by service members as extremely dependable – a legacy that continues today. From there, Pratt & Whitney continued to design and innovate more powerful, agile, and reliable engines becoming a leader in the aerospace industry. Today, Pratt & Whitney has more than 85,000 engines in service and more than 16,000 customers worldwide.

Industry

Engineering professional services

Company size

10,000+ Employees

Headquarters location

East Hartford, CT, US