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Additive Manufacturing Engineer Jobs in Connecticut

Manufacturing Engineer

Watertown, CT · On-site

$80K - $90K/yr

Manufacturing Engineer Location: Watertown, CT Salary: $80k - $90k Base + Bonus We've partnered with a growing automotive manufacturing organization looking to add a Manufacturing Engineer to support ...

Manufacturing Engineer

North Haven, CT · On-site

$72K - $93K/yr

Manufacturing Engineer Location: North Haven, CT Summary Seeking an experienced Manufacturing Engineer to provide hands-on support for medical device production, ensuring process readiness ...

Manufacturing Engineer

Manchester, CT · On-site

$73K - $94K/yr

You'll be joining a team where manufacturing engineering has a direct impact on product success-helping turn ambitious designs into reliable, repeatable hardware. You'll have meaningful ownership ...

HiFyve is hiring a Manufacturing Engineer / CNC Programmer in the Aerospace industry in Meriden, CT! Salary: $90,000 - $125,000 per year Shift: 1st Shift | 7:00 AM - 3:00 PM Location: On-Site ...

Manufacturing Engineer

Waterbury, CT

$74K - $96K/yr

AMETEK is seeking a Manufacturing Engineer to support our Waterbury, CT facility. This role performs a wide range of duties to analyze, develop, and improve manufacturing processes, including ...

Manufacturing Engineer

Windsor, CT · On-site

$75K - $90K/yr

Manufacturing Engineer Who We Are: Quest Global delivers world-class end-to-end engineering solutions by leveraging our deep industry knowledge and digital expertise. By bringing together ...

Manufacturing Engineer Who We Are: Quest Global delivers world-class end-to-end engineering solutions by leveraging our deep industry knowledge and digital expertise. By bringing together ...

Manufacturing Engineer Who We Are: Quest Global delivers world-class end-to-end engineering solutions by leveraging our deep industry knowledge and digital expertise. By bringing together ...

$73K - $94K/yr

Advance has an immediate opening for Manufacturing Engineers to develop manufacturing processes planning and coordinate the production of complex machined, mechanical, and welded assemblies. Must be ...

Manufacturing Engineer

Waterbury, CT · On-site

$74K - $96K/yr

AMETEK is seeking a Manufacturing Engineer to support our Waterbury, CT facility. This role performs a wide range of duties to analyze, develop, and improve manufacturing processes, including ...

Manufacturing Engineer

Hartford, CT

$73K - $94K/yr

Our award-winning client is seeking a Manufacturing Engineer to join their team. This role is a critical hire due to the retirement of a long-tenured team member and offers the opportunity to take ...

Manufacturing Engineer

Farmington, CT

$77K - $99K/yr

Manufacturing Engineer - Stanley Access Technologies, Farmington, CT Stanley Access Technologies is recognized as an industry leader in the manufacturing, installation, and servicing of automatic ...

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Showing results 1-20

Additive Manufacturing Engineer information

See Connecticut salary details

$45.2K

$81.4K

$114.2K

How much do additive manufacturing engineer jobs pay per year?

As of Jun 29, 2026, the average yearly pay for additive manufacturing engineer in Connecticut is $81,443.00, according to ZipRecruiter salary data. Most workers in this role earn between $69,400.00 and $89,400.00 per year, depending on experience, location, and employer.

What does an additive manufacturing engineer do?

An additive manufacturing engineer designs, develops, and optimizes 3D printing processes and parts using various additive manufacturing technologies. They work with CAD software, select appropriate materials, and ensure quality control to produce functional prototypes or end-use components. The role often requires knowledge of engineering principles, materials science, and familiarity with 3D printing equipment.

What is an Additive Manufacturing Engineer job?

An Additive Manufacturing Engineer specializes in designing, developing, and optimizing 3D printing processes and materials. They work with various additive manufacturing technologies to produce prototypes, functional parts, and end-use products. Their responsibilities include process improvement, material selection, machine calibration, and ensuring product quality. Additionally, they collaborate with design and production teams to implement innovative manufacturing solutions efficiently.

What engineers make $500,000?

Senior additive manufacturing engineers with extensive experience, advanced skills in 3D printing technologies, and leadership roles can earn salaries approaching or exceeding $500,000, especially in high-demand industries like aerospace and medical devices. Achieving this level often requires specialized certifications, a strong track record, and working in senior or executive positions.

Is additive manufacturing a good career?

Additive manufacturing engineering is a growing field that involves designing and optimizing 3D printing processes using various materials and technologies. It offers opportunities in industries such as aerospace, healthcare, and automotive, often requiring skills in CAD software, materials science, and process optimization. The profession can provide stable employment and advancement potential for those with technical expertise and relevant certifications.

What are the key skills and qualifications needed to thrive in the Additive Manufacturing Engineer position, and why are they important?

To thrive as an Additive Manufacturing Engineer, you need a strong background in engineering principles, CAD design, and materials science, often supported by a bachelor's degree in mechanical, manufacturing, or related engineering fields. Familiarity with 3D printing technologies, software like SolidWorks or AutoCAD, and certifications such as SME Additive Manufacturing Certification are commonly required. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities make candidates stand out in this role. These competencies ensure you can develop innovative solutions, maintain high-quality production standards, and successfully collaborate across multidisciplinary teams.

What engineers make $300,000 a year?

Additive Manufacturing Engineers with extensive experience, advanced skills in 3D printing technologies, and specialized certifications can reach annual salaries of $300,000 or more, especially in senior or leadership roles within high-tech industries. Such positions often require a strong background in engineering, project management, and proficiency with additive manufacturing tools and software.

What are some of the main challenges Additive Manufacturing Engineers face in their daily work?

Additive Manufacturing Engineers often encounter challenges related to optimizing print quality, selecting the most suitable materials, and troubleshooting equipment or process issues. Staying current with rapidly evolving technologies and finding ways to efficiently scale prototypes into full production can also be demanding. Collaboration with design engineers, quality teams, and production staff is essential to ensure that final parts meet all specifications and regulatory standards. Embracing these challenges offers valuable learning experiences and helps build advanced expertise in this innovative and growing field.

What are the most commonly searched types of Additive Manufacturing Engineer jobs in Connecticut? The most popular types of Additive Manufacturing Engineer jobs in Connecticut are:
What are popular job titles related to Additive Manufacturing Engineer jobs in Connecticut? For Additive Manufacturing Engineer jobs in Connecticut, the most frequently searched job titles are:
What job categories do people searching Additive Manufacturing Engineer jobs in Connecticut look for? The top searched job categories for Additive Manufacturing Engineer jobs in Connecticut are:
Infographic showing various Additive Manufacturing Engineer job openings in Connecticut as of June 2026, with employment types broken down into 88% Full Time, 4% Part Time, and 8% Contract. Highlights an 94% Physical, 2% Hybrid, and 4% Remote job distribution, with an average salary of $81,443 per year, or $39.2 per hour.
Innovative Material and Processing R&D Engineer Welding Engineering Advanced Concepts Team

Innovative Material and Processing R&D Engineer Welding Engineering Advanced Concepts Team

General Dynamics Electric Boat

Groton, CT • On-site

Full-time

Posted 3 days ago


General Dynamics Electric Boat rating

8.2

Company rating: 8.2 out of 10

Based on 159 frontline employees who took The Breakroom Quiz

77th of 521 rated manufacturers


Job description

The Electric Boat Welding Engineering Advanced Concepts Team has multiple openings in support of research and development and production innovation from project initiation to implementation into our product – nuclear submarines. This recently formed group is in the process of building a dynamic team responsible for emerging and innovative R&D on welding materials, additive manufacturing, and process technologies, including robotic welding, at Electric Boat. Projects principally involve welding metallurgy, advanced/novel material process development, or both.  This high visibility position involves interaction with a number of other organizations within Electric Boat, suppliers of equipment and welding consumables, the Navy customer, and various national and international research laboratories and organizations.

This challenging, fast paced position involves development and follow through of projects to further enhance the capabilities of our submarine force, while ensuring the final product and technologies will reliably meet or exceed the performance and quality requirements set forth by the Navy. Project focus areas include, but are not limited to, the metallurgical approach to design and develop welding materials (including those used in additive manufacturing), control of weld mechanical properties and cracking, shipyard and procurement viability of newly developed welding consumables and advanced processes, characterizing weld metal and heat affected zone mechanical properties, and consistent and repeatable weld quality.

Work conducted by this team will have significant influence on the design and performance of the next generation submarine, and will also influence submarine classes already under construction. Many projects are long term with many interconnected technologies and requirements due to the expectations for service performance and increased capabilities over the life of the submarine. These projects have high visibility within Electric Boat and in the Navy community, and offer the potential for significant personal, technical, and project management growth to those on the team.

This position has the following specific functions:

  • Investigate new or modified base materials with respect to welding, additive manufacturing, robotic welding, and fabrication effects.
  • Investigate and/or develop new welding or additive manufacturing consumables for fabrication of new or modified base materials.
  • Responsibility for the quality, operability, and suitability of newly developed welding consumable procurement to operate successfully in the shipyard, providing consistent attainment of weld metal mechanical properties and freedom from cracking.
  • Conduct research and development investigations to develop and test new structural fabrication processes, design concepts, procedures, and various process consumables.
  • Investigate, characterize, and potentially qualify and implement additive manufacturing technologies.
  • Conduct research and development to support design efforts, modify requirements, and provide methods to address metallurgical concerns with welds.
  • Evaluate new developments in the welding and additive manufacturing fields (such as processes and equipment) for possible application to current welding problems or production processes.
  • Serve as project lead and/or technical lead on both in-house and externally funded development and process improvement/cost reduction tasks.
  • Design test programs and prepare technical reports as a result of testing, research and development, and investigations.
  • Implementation of projects into the shipyard.
  • Typical work week – Approximately 30% laboratory observation/evaluation (working alongside developmental welders), 70% analysis, test plan/report writing, solution development and problem adjudication. Attend and present at conferences, technical meetings and vendors as needed for specific projects.

Required:

  • Bachelor of Science or higher in Metallurgy/Metallurgical Engineering, Materials Engineering (focus on metals preferred to non-metallics), Welding Engineering or equivalent engineering field.
  • 5+ years of postgraduate Engineering experience
  • The ability to understand basic principles of welding and non-destructive testing
  • Must be able to read and interpret specifications, procedures, drawings and other documents
  • The ability to critically analyze problems and to develop and implement solutions

Preferred:

  • Experience in an industrial environment, shipbuilding, or other heavy fabrication
  • Mechanical aptitude and hands-on laboratory experience
  • Familiarity or experience with basic arc welding processes
  • Prior experience in project management including idea initiation to implementation
  • Previous project management experience  
  • Familiarity with Microsoft Office Suite
  • Basic familiarity with data analysis and the application of statistics and regression
  • Familiarity with Military and Commercial Specifications with regards to Welding and Brazing Procedure Qualification and Fabrication of pipe and structure, Tech Pub 248, Tech Pub 1688, Tech Pub 278, AWS, and ASME

Skills:

  • Team player, comfortable working and communicating with all levels
  • Ability to communicate clearly and concisely, both verbally and in writing.
  • Ability to author test plans, technical reports and other correspondence


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