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Additive Manufacturing Jobs in Connecticut (NOW HIRING)

AAA USA is actively hiring experienced Manufacturing Engineers to support aerospace, defense, transportation, industrial, and advanced manufacturing programs nationwide. We are seeking hands-on ...

Manufacturing Engineer

Enfield, CT · On-site

$80K - $110K/yr

Manufacturing Engineer - Composites ManufacturingPosition Summary We are seeking a Manufacturing Engineer to support the development, planning, and continuous improvement of composite manufacturing ...

Manufacturing Engineer

Hartford, CT · On-site

$90K - $110K/yr

Manufacturing Engineer Direct Hire | $90,000-$110,000+ DOE | Comprehensive Benefits Hartford Area, CT The Right Plan. The Right Materials. The Right Time. Successful manufacturing depends on more ...

Hiring for a NX Manufacturing Engineer in East Hartford, CT This role focuses on leading manufacturing engineering activities for aerospace components, specifically integrally bladed rotors and ...

Manufacturing Engineer

Windsor, CT · On-site

$52.88 - $72.12/hr

NPI Manufacturing Engineer Responsible for developing, optimizing, and maintaining CNC manufacturing processes to ensure efficiency, quality, and cost-effectiveness for new product introductions. You ...

Manufacturing Engineer

Meriden, CT · On-site

$90K - $125K/yr

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

Windsor, CT · On-site

$110K - $150K/yr

NPI Manufacturing Engineer Responsible for developing, optimizing, and maintaining CNC manufacturing processes to ensure efficiency, quality, and cost-effectiveness for new product introductions. You ...

Manufacturing Engineer

Berlin, CT · On-site

$100 - $125/hr

Manufacturing Engineer Full Time Berlin, CT, US 9 days ago Requisition ID: 1105 Salary Range: $100,000.00 To $130,000.00 Annually Join our team in Berlin, CT!! Summary of Position: Reporting to the ...

Manufacturing Engineer

Berlin, CT · On-site

$100K - $130K/yr

TOMZ manufactures parts via high precision metal machining, finishing, assembly, and anodize processes for Medical Devices. Essential Functions: * Support Production in reducing / eliminating ...

Manufacturing Engineer

Cromwell, CT · On-site

$73K - $95K/yr

With over 16,000 employees across 32 manufacturing sites in 12 countries we serve over 90% of the world's aircraft and engine manufacturers and achieved sales of 3.6bn in 2025. There are no limits to ...

Manufacturing Engineer

Cromwell, CT · On-site

$73K - $95K/yr

With over 16,000 employees across 32 manufacturing sites in 12 countries we serve over 90% of the world's aircraft and engine manufacturers and achieved sales of £3.6bn in 2025. There are no limits ...

Showing results 41-60

Additive Manufacturing information

See Connecticut salary details

$13

$23

$32

How much do additive manufacturing jobs pay per hour?

As of Sep 8, 2026, the average hourly pay for additive manufacturing in Connecticut is $23.73, according to ZipRecruiter salary data. Most workers in this role earn between $19.23 and $27.45 per hour, depending on experience, location, and employer.

What is additive manufacturing?

Additive manufacturing (AM) is the process of creating products by adding material using one or more techniques. This is the opposite of subtractive manufacturing, which produces products by removing material. Many products are produced using a combination of these two techniques. To manufacture a plastic shape, you may use additive manufacturing to layer plastic materials then use subtractive manufacturing to cut and shape the plastic. In recent years, AM has started to focus on advanced techniques like 3D printing, where complex products are created layer by layer, using one or more materials. The main job in AM is that of an additive manufacturing engineer, although rapid prototyping may utilize this process to create a small model of a potential product.

What is additive manufacturing?

Additive manufacturing, often referred to as 3D printing, is a process of creating objects by adding material layer by layer, based on a digital model. Unlike traditional manufacturing methods that remove material from a solid block, additive manufacturing builds products directly from raw materials such as plastics, metals, or composites. This technology enables complex designs, rapid prototyping, and customization that would be difficult or impossible with conventional manufacturing processes.

What are the key skills and qualifications needed to thrive in additive manufacturing, and why are they important?

To excel in Additive Manufacturing, a solid understanding of engineering principles, 3D modeling, and materials science is typically required, often supported by a degree in engineering or a related field. Familiarity with CAD software, 3D printers, and quality assurance systems, as well as certifications like SME Additive Manufacturing Certification, is highly beneficial. Strong problem-solving, attention to detail, and effective communication skills help professionals innovate and collaborate in dynamic production environments. These competencies are essential for ensuring precision, efficiency, and the successful implementation of advanced manufacturing technologies.

What are some typical challenges faced in an additive manufacturing role, and how can they be addressed?

Professionals in Additive Manufacturing often encounter challenges such as ensuring part quality, optimizing print parameters, and troubleshooting equipment malfunctions. Working closely with engineering teams and using advanced simulation software can help address issues related to design for additive processes. Regular calibration of machinery and staying updated on the latest material advancements are also key strategies for overcoming common hurdles. Collaboration and ongoing training play a significant role in maintaining production efficiency and quality standards.

What is the difference between Additive Manufacturing vs CNC Machinist?

AspectAdditive ManufacturingCNC Machinist
CredentialsTypically requires technical training or certification in 3D printing technologiesRequires machining certifications or technical training in CNC operations
Work EnvironmentWorks in labs or manufacturing facilities with 3D printers and related equipmentWorks in machine shops or manufacturing plants operating CNC machines
Industry UsageUsed in prototyping, custom parts, and complex geometriesUsed for precision manufacturing of metal and plastic parts
Search & Comparison IntentOften compared for manufacturing processes involving digital fabricationCompared for traditional subtractive manufacturing skills

While both roles are involved in manufacturing, Additive Manufacturing focuses on building parts layer-by-layer using 3D printing technologies, whereas CNC Machinists operate subtractive machines to carve parts from raw materials. Understanding these differences helps in choosing the right career path or job search focus within the manufacturing industry.

Is additive manufacturing a good career?

Additive manufacturing is a growing field that involves designing and operating 3D printing equipment, often requiring skills in CAD software and knowledge of materials. Careers in this area can offer opportunities in industries such as aerospace, healthcare, and automotive, with roles ranging from technician to engineer. Job prospects depend on industry demand, technical skills, and certifications in additive manufacturing technologies.

What are the most commonly searched types of Additive Manufacturing jobs in Connecticut?

The most popular types of Additive Manufacturing jobs in Connecticut are:

What are popular job titles related to Additive Manufacturing jobs in Connecticut?

For Additive Manufacturing jobs in Connecticut, the most frequently searched job titles are:

What cities in Connecticut are hiring for Additive Manufacturing jobs?

Cities in Connecticut with the most Additive Manufacturing job openings:

Infographic showing various Additive Manufacturing job openings in Connecticut as of September 2026, with employment types broken down into 67% Full Time, and 33% Contract. Highlights an 100% In-person job distribution, with an average salary of $49,362 per year, or $23.7 per hour.

Manufacturing Engineer

Windsor Locks, CT • On-site

$100 - $125/hr

Other

Medical, Dental, Vision, Retirement, PTO

Posted 13 days ago


Job description

Must be willing to travel/permanently relocate to Sandpoint,ID.

AAA USA is actively hiring experienced Manufacturing Engineers to support aerospace, defense, transportation, industrial, and advanced manufacturing programs nationwide. We are seeking hands-on engineering professionals who can work directly with production teams to improve manufacturing methods, solve build issues, optimize processes, and support Design for Manufacturability (DFM) initiatives.

The ideal candidate will have strong manufacturing engineering experience with the ability to independently manage day-to-day process improvements while recognizing when more complex or higher-risk decisions require support from senior engineering leadership. This is an excellent opportunity to join long-term manufacturing programs offering competitive pay, career growth, and opportunities to work with advanced production technologies and complex manufacturing systems.

Why Engineering Professionals Choose AAA USA:
  • Competitive Pay
  • Paid Lodging
  • Long-Term Manufacturing Programs
  • Multiple U.S. Locations
  • Relocation Assistance Available
  • Referral Programs
  • Medical, Dental & Vision Benefits
  • 401(k) with Company Match
  • Paid Time Off & Paid Holidays
  • Career Growth Opportunities
Essential Functions:
  • Work directly with mechanics, technicians, and production personnel to identify and resolve manufacturing and assembly issues.
  • Improve manufacturing methods, processes, ergonomics, work content, and production flow within assigned manufacturing areas.
  • Analyze build sequences and develop practical, efficient, and repeatable manufacturing processes.
  • Use CAD models, engineering drawings, and technical documentation to understand design intent and identify opportunities to improve manufacturability.
  • Develop and maintain manufacturing drawings, models, work instructions, process documentation, and other manufacturing engineering deliverables.
  • Ensure manufacturing changes remain traceable to engineering requirements and maintain required fit, form, function, quality, and configuration control.
  • Perform Design for Manufacturability (DFM) analysis and recommend design or process improvements to improve production efficiency and reduce manufacturing issues.
  • Develop and present engineering recommendations and design-change proposals to Design Engineering and manufacturing leadership.
  • Support initiatives focused on reducing labor hours, production costs, rework, scrap, and manufacturing cycle time.
  • Support tooling definition, fixture requirements, process development, and production equipment improvements.
  • Assist with ERP and manufacturing system alignment, including eBOM/mBOM reconciliation, routings, work content, and production data.
  • Identify root causes of manufacturing problems and implement corrective and preventive actions.
  • Collaborate with Engineering, Quality, Supply Chain, Production, Maintenance, and suppliers to resolve manufacturability and production issues.
  • Support supplier manufacturability reviews and resolution of production-related issues.
  • Ensure manufacturing processes comply with applicable quality, safety, engineering, and customer requirements.
  • Support continuous improvement, Lean Manufacturing, and operational excellence initiatives.
Requirements:
  • Bachelor’s degree in Aerospace, Mechanical, Industrial, Manufacturing Engineering, or a related field.
  • 5-7 years of manufacturing engineering experience, preferably in aerospace or complex assembly.
  • Strong hands-on understanding of machining, sheet metal, welding, composites, and mechanical or electrical assembly, with depth in at least one area and working knowledge across others.
  • Strong CAD proficiency and fluency reading and interpreting engineering drawings, including GD&T per ASME Y14.5.
  • Experience with DFM analysis and manufacturing-specific documentation, or strong aptitude and willingness to build this capability.
  • Working ERP experience such as Epicor or SAP, including eBOM/mBOM reconciliation and routings.
  • Credibility on the shop floor, good judgment, root-cause problem solving, and a track record of following through on assigned work.
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