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Machine Learning Additive Manufacturing Jobs (NOW HIRING)

As an additive manufacturing engineer you will plan, design, and execute on both the manufacturing ... Standardize operation and maintenance instructions for additive machines and related auxiliary ...

As an additive manufacturing engineer you will plan, design, and execute on both the manufacturing ... Standardize operation and maintenance instructions for additive machines and related auxiliary ...

As an additive manufacturing engineer you will plan, design, and execute on both the manufacturing ... Standardize operation and maintenance instructions for additive machines and related auxiliary ...

Machine Learning Engineer

Fremont, CA · On-site

$150K - $220K/yr

We are seeking a Machine Learning Engineer to join our team developing machine learning solutions ... Prior experience in additive manufacturing or 3D printing is not required. We are particularly ...

We are seeking a Machine Learning Engineer to join our team developing machine learning solutions ... Prior experience in additive manufacturing or 3D printing is not required. We are particularly ...

We are seeking a Machine Learning Engineer to join our team developing machine learning solutions ... Prior experience in additive manufacturing or 3D printing is not required. We are particularly ...

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Machine Learning Additive Manufacturing information

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$14

$27

$62

How much do machine learning additive manufacturing jobs pay per hour?

As of Jun 7, 2026, the average hourly pay for machine learning additive manufacturing in the United States is $27.64, according to ZipRecruiter salary data. Most workers in this role earn between $20.43 and $28.85 per hour, depending on experience, location, and employer.

What are some common challenges faced by professionals working in Machine Learning for Additive Manufacturing, and how can they be addressed?

Professionals in Machine Learning for Additive Manufacturing often face challenges such as handling large and complex datasets, ensuring data quality, and integrating machine learning models with existing manufacturing systems. Another common hurdle is bridging the gap between domain expertise in manufacturing and technical knowledge in machine learning. These challenges can be addressed by fostering strong cross-disciplinary collaboration, staying updated with industry developments, and leveraging robust data management and validation practices. Continuous learning and effective communication with engineering and production teams are key to overcoming obstacles and driving innovation in the field.

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

To thrive in Machine Learning Additive Manufacturing, you need a solid background in engineering or computer science, strong understanding of additive manufacturing processes, and expertise in machine learning algorithms. Familiarity with programming languages (such as Python), CAD software, data analysis tools, and relevant certifications (like Six Sigma or AWS Machine Learning) is highly beneficial. Creativity, problem-solving, and effective collaboration are crucial soft skills for innovating and optimizing manufacturing workflows. These skills ensure efficient integration of advanced technologies, improve production quality, and drive innovation in a rapidly evolving industry.

What is the difference between Machine Learning Additive Manufacturing vs 3D Printing Technician?

AspectMachine Learning Additive Manufacturing3D Printing Technician
CredentialsTypically requires a degree in engineering, computer science, or related fields; knowledge of machine learning and additive manufacturingUsually has technical certifications or vocational training in 3D printing technologies
Work EnvironmentResearch labs, manufacturing facilities, or R&D departments involving software development and process optimizationManufacturing floors, workshops, or labs operating 3D printers and performing maintenance
Industry UsageUsed in advanced manufacturing, aerospace, automotive, and research sectors integrating AI and additive processesCommonly employed in prototyping, small-scale production, and maintenance in manufacturing industries

Machine Learning Additive Manufacturing focuses on integrating AI and machine learning techniques to optimize 3D printing processes, while 3D Printing Technicians operate and maintain 3D printers for production and prototyping. Both roles are essential in modern manufacturing but differ in technical complexity and focus areas.

What is a Machine Learning Additive Manufacturing Engineer?

A Machine Learning Additive Manufacturing Engineer is a professional who applies machine learning techniques to optimize and improve 3D printing (additive manufacturing) processes. This role involves analyzing data from 3D printers, creating predictive models, and developing algorithms to enhance product quality, reduce errors, and increase efficiency. These engineers often work closely with material scientists, mechanical engineers, and software developers to innovate in manufacturing workflows, automate quality control, and enable smarter production lines.
Infographic showing various Machine Learning Additive Manufacturing job openings in the United States as of May 2026, with employment types broken down into 98% Full Time, 1% Contract, and 1% Nights. Highlights an 94% Physical, 1% Hybrid, and 5% Remote job distribution, with an average salary of $57,494 per year, or $27.6 per hour.
Additive Manufacturing Engineer

Additive Manufacturing Engineer

Curtiss-Wright

East Farmingdale, NY • On-site

Full-time

Medical, Retirement, PTO

Posted 3 days ago


Curtiss-Wright rating

8.4

Company rating: 8.4 out of 10

Based on 34 frontline employees who took The Breakroom Quiz

72nd of 417 rated machine equipment manufacturers


Job description

Additive Manufacturing Engineer
We are looking for an Additive Manufacturing Engineer to join our Target Rock team!
As ourAdditive Manufacturing Engineer you will direct and/or perform the design, development, and execution of Additive Manufactured components and assemblies. You will direct and/or perform design and development activities on new design and redesign components for Additive Manufacturing including layout, detail, and assembly drawings. Additionally, you will coordinate Additive Manufacturing activities with the Design/Drafting group, Manufacturing Engineering, Welding Engineering and Project Engineering groups. You will interface with and support programming and setups of Additive Manufacturing machines. You will provide oversight of Additive Manufacturing activities conducted by sub-tier suppliers.
Location: East Farmingdale, NY
Salary/hourly rate: $83,800 to $111,400
Please note that the salary range information provided is a general guideline only, reflecting a position based in New York. Criteria such as the candidate's qualifications and relevant experience, the scope of the specific position, as well as market and business considerations will be evaluated when extending an offer.
We Take Care of Our People
Paid Time Off I 401K with Employer Match and Profit Sharing I Health and Wellness Benefits I Learning and Development Opportunities I Referral Program I Competitive Pay I Recognition I Employee Stock Purchase Plan I Inclusive & Supportive Culture *
Your Challenge
  • Acts as Project Manager (lead) for internally (PID) and externally funded Design/Development programs
  • Develop new manufacturing methods of producing valve components and assemblies via Additive Manufacturing
  • Review of specifications for compliance with proposed Additive Manufacturing technologies.
  • Evaluate and implement use of new Additive technology. Selects and recommends new Additive equipment. Oversees procurements and installations of new equipment. Develops Additive procedures and training of personnel for the utilization of new equipment. Supports operation of Additive equipment
  • Prepare 3D models, and 2D layouts, assembly, and detail drawings
  • Performs analysis and calculations to support and justify Additive Designs
  • Defines and executes qualification test programs for Additive Manufactured components/assemblies
  • Designs necessary tooling and fixtures required to support Additive Manufacturing processes.
  • Standardize processes for Additive Manufacturing Methods and manufacturing techniques.
  • Interface with Manufacturing, Welding and Quality Control to ensure manufacturability and inspectability of components designed.
  • Additional responsibilities as assigned by Supervisor/Manager.

What You Bring
  • Four (4) year Bachelor of Science degree in Engineering (Mechanical, Welding, or Manufacturing)
  • Must be a US citizen with (or ability to obtain) a Government Security Clearance
  • Minimum of two (2) years of 2D and 3D CAD experience
  • Knowledge of Additive Manufacturing technologies and industry requirements.
  • Knowledge of computer-controlled machine tools.
  • Knowledge of analysis techniques (tolerance/fit-up, structural, thermal, flow, etc.)
  • Working knowledge of NAVSEA 250-1500-1, ASME B&PV Code and/or SDB-63/VDM-71, as well as other applicable industry codes (e.g. Y14.5, B16.5, B16.34, B18.3, B31.1) preferred
  • Working knowledge of Welding technologies and processes
  • Knowledge of computer programs such as Microsoft Office Suite, Mathcad, LabVIEW, NX, Teamcenter and manufacturing equipment software.

Who We Are
Our Values
Environmental, Social and Governance
Founded in 1951 to meet the special severe service valve requirements of the United States Nuclear Navy, Target Rock is today the premier supplier of highly engineered, valves and related products to both the U.S. Navy nuclear fleet and the global nuclear power generation industry. The first Target Rock valves were installed on the U.S.S. Nautilus, the U.S. Navy's first nuclear powered submarine.
To learn more, please visit us at Curtiss-Wright EMS - Target Rock (cw-ems.com)
*Please note, benefits are country specific and may vary from location to location.
#LI-NK1
No unsolicited agency submittals please. Agency partners must be invited to participate in a search by our Talent Acquisition Team and have signed terms in place prior to any submittal. Resumes submitted directly to any Curtiss-Wright employee or affiliate will not qualify for fee payment, and therefore become the property of Curtiss-Wright.
Compliance Statement
This position may require exposure to export-controlled information and subject to additional security screening. In the event information provided during the security screening reveals ineligibility to access export-controlled information, any offer of employment may be reconsidered or withdrawn.
Curtiss-Wright is an equal opportunity employer. All qualified applicants will receive consideration for employment without regard to race, ethnicity, color, sexual orientation, gender identity, physical or mental disability, age, ancestry, legally protected medical condition, family care status, marital status, religion, veteran status, national origin, or any other legally protected status. If you require accommodation during the recruitment process, please contact Talent Acquisition.
For US Applicants: EEO is The Law - click here for more information.
If you require accommodation due to a disability at any time during the recruitment and/or assessment process, please contact Talent Acquisition and we will make all reasonable efforts to accommodate your request.

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About Curtiss-Wright

Sourced by ZipRecruiter

Curtiss-Wright Actuation Division designs, manufactures and supports electro-mechanical actuation products and systems for use in demanding applications in Aerospace, Defense and Industrial Automation markets. Our market leading solutions help improve the reliability, efficiency and performance of our customers' operations and platforms, as well as reducing their environmental impact with energy efficient electro-mechanical designs and technology. For the Aerospace market, we supply actuation systems for flight control, landing gear, utility and other applications on both commercial and military aircraft. In Ground & Naval Defense markets, we support a wide array of applications ranging from door assist, ramp and hatch actuation, weapons handling systems, radar and launch platform actuation, and robotic (AUV/ROV) actuation. In Industrial Automation, our Exlar® actuators are globally recognized as a leading brand offering high power density, precision and reliability for machine/process applications in automotive, food & beverage, oil & gas, robotics, entertainment and many other industries.

Industry

Computer and electronic product manufacturing

Company size

5,001 - 10,000 Employees

Headquarters location

Davidson, NC, US

Year founded

1929

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