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Structural Welding Jobs in Connecticut (NOW HIRING)

Layout/Fitter (Structural Steel)

Hartford, CT · On-site

$20.50 - $26/hr

Analyze welding procedures, specifications, sketches and work orders in order to plan and execute ... Read and interpret structural steel drawings/blue prints to perform daily tasks. * Perform FCAW and ...

Analyze welding procedures, specifications, sketches and work orders in order to plan and execute ... Read and interpret structural steel drawings/blue prints to perform daily tasks. * Perform FCAW and ...

Layout/Fitter (Structural Steel)

Hartford, CT · On-site

$20.50 - $26/hr

Analyze welding procedures, specifications, sketches and work orders in order to plan and execute ... Read and interpret structural steel drawings/blue prints to perform daily tasks. * Perform FCAW and ...

Layout/Fitter (Structural Steel)

Hartford, CT · On-site

$20.50 - $26/hr

Analyze welding procedures, specifications, sketches and work orders in order to plan and execute ... Read and interpret structural steel drawings/blue prints to perform daily tasks. * Perform FCAW and ...

Showing results 21-40

Structural Welding information

See Connecticut salary details

$14

$23

$31

How much do structural welding jobs pay per hour?

As of Aug 23, 2026, the average hourly pay for structural welding in Connecticut is $23.20, according to ZipRecruiter salary data. Most workers in this role earn between $19.66 and $25.82 per hour, depending on experience, location, and employer.

What is structural welding?

Structural welding is a specialized type of welding that focuses on joining steel and metal components used in the construction of buildings, bridges, and other large structures. Structural welders use various welding techniques, such as MIG, TIG, and stick welding, to create strong and durable connections that meet strict safety and engineering standards. Their work is essential for ensuring the stability and integrity of construction projects. In addition to welding, they often read blueprints, follow detailed specifications, and inspect their work for quality assurance.

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

To thrive as a Structural Welder, you need a solid understanding of welding techniques, blueprint reading, and material properties, often backed by a welding certification or vocational training. Familiarity with welding equipment such as MIG, TIG, and arc welders, as well as safety systems and inspection tools, is typically required. Attention to detail, physical stamina, and teamwork are essential soft skills that help ensure quality and safety on the job site. These skills and qualifications are crucial for creating structurally sound welds that meet industry standards and keep projects on schedule.

What are some common challenges faced by structural welders on construction sites?

Structural welders often work in varying weather conditions and at different heights, which can present safety and logistical challenges. They must interpret complex blueprints and welding symbols to ensure accuracy and structural integrity. Collaboration with engineers, project managers, and other trades is crucial to resolve issues that arise during fabrication and installation. Additionally, maintaining consistent weld quality while meeting project deadlines requires strong attention to detail and time management skills.

What is the difference between Structural Welding vs Pipe Welding?

AspectStructural WeldingPipe Welding
CertificationsAWS D1.1, Structural Welding CodeAWS 6G, ASME Section IX
Work EnvironmentConstruction sites, bridges, buildingsRefineries, pipelines, industrial plants
Industry UsageConstruction, infrastructureOil & gas, utilities

Structural Welding involves joining steel components for buildings and bridges, focusing on large-scale frameworks. Pipe Welding specializes in joining pipes for fluid transport, often requiring more specialized certifications like 6G. Both roles demand strong welding skills, but they differ in work environment and specific industry applications.

Is structural welding a good career?

Structural welding is a skilled trade that involves joining steel and metal components used in construction, bridges, and buildings. It offers steady employment opportunities, especially for those with certifications and experience in safety protocols, and can provide a stable income with potential for advancement. However, it often requires working in physically demanding environments and adhering to strict safety standards.

What are popular job titles related to Structural Welding jobs in Connecticut?

For Structural Welding jobs in Connecticut, the most frequently searched job titles are:

What job categories do people searching Structural Welding jobs in Connecticut look for?

The top searched job categories for Structural Welding jobs in Connecticut are:

What cities in Connecticut are hiring for Structural Welding jobs?

Cities in Connecticut with the most Structural Welding job openings:

Infographic showing various Structural Welding job openings in Connecticut as of August 2026, with employment types broken down into 84% Full Time, 8% Part Time, 2% Temporary, 5% Contract, and 1% Nights. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $48,258 per year, or $23.2 per hour.

$35.50 - $49/hr

Full-time

Posted 17 days ago


General Dynamics Electric Boat rating

8.3

Company rating: 8.3 out of 10

Based on 164 frontline employees who took The Breakroom Quiz

66th of 544 rated manufacturers


Job description

The Electric Boat Welding Engineering Construction Support Team in Groton has multiple openings for engineering support of the welding program at the Electric Boat Groton shipyard. The team is engaged in structural and pipe welding operations across several current new construction programs, including VIRGINIA and COLUMBIA Class nuclear-powered submarines, as well as maintenance and overhaul programs for LOS ANGELES Class nuclear-powered submarines. Engineers on this team are responsible for support of production welding issues and implementation of operational improvements for nuclear and non-nuclear systems and structures from bow to stern of the submarine as nearly every system or structure requires welding in some capacity.

This position requires rapid problem evaluation and solution implementation methods, while quality is maintained to the highest standards to ensure that submarines are delivered to the Navy in support of fleet demands while meeting or exceeding the requirements for operating in the harsh and unforgiving undersea environment. Engineers on this team regularly provide on-site support during production welding to address in-process welding issues, or to provide oversight to prevent welding issues from occurring during welding of critical, high-risk joints. Engineers on this team also provide technical support to internal organizations, such as fluid, mechanical, or structural engineering groups at Electric Boat. Common projects include, but are not limited to repair of complex welding defects, repair of fabrication or machining errors, implementation of new processes, procedures, and technology into production welding operations, analysis of production welding performance trends and corresponding regulation of the production welding program to improve performance, and resolution of cross-discipline quality concerns that may bridge across several submarine hulls or even several submarine classes.

Work assigned to this team is often dynamic and includes both short-term and long-term projects. Completion of these projects often requires coordination between this team and other engineering, operations, and government organizations, and can include travel to Electric Boat welding programs at off-site locations, or to vendors that provide welding services or material to Electric Boat. Due to the nature of the role, engineers on this team are regularly exposed to career development opportunities, and become familiar with virtually all submarine systems and structures.

Welding/Materials Engineers in this role are responsible for the following functions:

  • Investigate welding and fabrication-related construction and design issues, and provide written and/or on-site corrective actions.
  • Develop, review, and issue technical engineering reports and work instructions.
  • Provide technical guidance and expertise on welding and fabrication-related issues to various engineering and operations organizations within the company responsible for welded structures, welded or brazed machinery and equipment, welded pressure vessels, and welded or brazed piping and mechanical systems.
  • Investigate, evaluate, and implement new mechanized, automated, or robotic welding equipment and provide production support as needed.
  • Interface with operations organizations to provide deckplate-level, hands-on support.
  • Serve as project lead or technical lead on process improvement/cost reduction tasks concerning welding and fabrication.
  • Interface with Electric Boat Engineering, Operations, Information Technology, and Training departments as well as with US government and Navy organizations as required.
  • Interpret fabrication, welding, non-destructive testing, and consumable specifications, both military and commercial, as required.
  • Develop and maintain company standards, procedures, and best practices in the areas of welding.

Required: 

  • Bachelor of Science or higher in Welding Engineering, Mechanical Engineering, Metallurgy/Metallurgical Engineering, Structural Engineering, Industrial Engineering, Manufacturing Engineering, or Materials Engineering (focus on metals as opposed to non-metallics).
  • 0-5 years of postgraduate engineering experience
  • Ability to read and interpret specifications, procedures, drawings, and other technical documents.
  • Ability to critically analyze problems and implement corrective actions and solutions.

Preferred: 

  • Experience in an industrial environment, though not required, would be beneficial.
  • Familiarity/personal experience with common industrial welding processes and non-destructive testing methods.
  • Familiarity with other fabrication operations related to welding, such as thermal cutting, brazing, metal-forming, etc.
  • Engineering experience in the design field with proficiency in reading and understanding drawings per ASME Y14 Standards and AWS A2.4 Welding Symbols.
  • Familiarity with commercial and/or government welding and fabrication codes and standards (e.g., ABS, AISC, ASME, AWS, MIL-SPEC, NAVSEA, etc.)

  • Capable of providing in-person hands-on support during the problem evaluation and solution process.
  • Motivated and well-organized with strong project management skills, thorough attention to detail, good analytical thinking and problem solving skills, and capable/willing to work both independently and in a team environment.
  • Capable of working and communicating with all levels of management
  • Ability to write and speak clearly and possess basic computer skills, preferably including use of Microsoft Word, Excel, Access, and Power Point.
  • Interpersonal and communication skills necessary to investigate problems by effectively asking questions, extracting necessary data from available sources, and working with others to determine root causes and implement appropriate solutions.
  • Ability to understand basic principles of welding metallurgy.
  • Ability to understand the role and importance of process and quality controls during all stages of fabrication, and the common types of defects that can result from a lapse in process and quality controls.

Climbing, Color Vision, Crawling, Heavy Lifting, Kneeling, Light Lifting, Medium Lifting, Pulling, Pushing, Reaching, Stooping, Twisting
Acids or Alkalis, Cold, Dry, Dusty, Fumes, Hot, Inside, Noise, Oily, Outside, Wet

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