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Full Time Additive Manufacturing Engineer Jobs in Raleigh, NC

Quality Engineer

Apex, NC

$54K - $70K/yr

Participate in and facilitate Lean Manufacturing initiatives such as Kaizen events and defect ... The salary for this role will range from 56,430 to 105,000 annually based on full-time employment.

Quality Engineer

Apex, NC · On-site

$54K - $70K/yr

Participate in and facilitate Lean Manufacturing initiatives such as Kaizen events and defect ... The salary for this role will range from 56,430 to 105,000 annually based on full-time employment.

Grantek is a recognized leading provider of integrated automation, smart manufacturing and ... Have full-time access to a personal vehicle. * Willingness to travel up to 30-50% within USA.

Overview About ERMCO Electric Research and Manufacturing Cooperative, Inc. (ERMCO) is the leading ... Job LocationsUS-NC-RaleighEmployment Type: FULL_TIME

Embedded Software Engineer

Raleigh, NC · On-site

$112K - $148K/yr

Overview About ERMCO Electric Research and Manufacturing Cooperative, Inc. (ERMCO) is the leading ... Job LocationsUS-NC-RaleighEmployment Type: FULL_TIME

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Showing results 1-20

Full Time Additive Manufacturing Engineer information

See Raleigh, NC salary details

$39.9K

$90.7K

$151.6K

How much do full time additive manufacturing engineer jobs pay per year?

As of Jun 9, 2026, the average yearly pay for full time additive manufacturing engineer in Raleigh, NC is $90,704.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,000.00 and $109,400.00 per year, depending on experience, location, and employer.

What is a Full Time Additive Manufacturing Engineer?

A Full Time Additive Manufacturing Engineer is a professional who specializes in designing, developing, and optimizing products and processes using additive manufacturing technologies, such as 3D printing. They work on creating prototypes, end-use parts, and tools by layering materials based on digital models. Their responsibilities often include material selection, process improvement, quality control, and collaborating with design and production teams to ensure efficient and accurate manufacturing. Working full time means they are employed as a regular staff member, typically working standard business hours.

What are some common challenges faced by a Full Time Additive Manufacturing Engineer, and how can they be addressed?

Full Time Additive Manufacturing Engineers often encounter challenges such as optimizing print parameters for different materials, ensuring part quality and consistency, and troubleshooting equipment malfunctions. Overcoming these challenges requires staying updated on the latest advancements in additive manufacturing technologies, collaborating closely with design and production teams, and applying rigorous testing and validation processes. Effective communication and continuous learning are key, as the field rapidly evolves and often involves multidisciplinary teamwork.

What is the difference between Full Time Additive Manufacturing Engineer vs Additive Manufacturing Technician?

AspectFull Time Additive Manufacturing EngineerAdditive Manufacturing Technician
CredentialsBachelor's or higher in engineering or related field; certifications like AMF or 3D printing certificationsTechnical diploma or associate degree; hands-on training in 3D printing
Work EnvironmentDesign, development, and process optimization in R&D or manufacturing settingsEquipment setup, operation, and maintenance on the production floor
Industry UsageUsed across aerospace, automotive, healthcare, and industrial sectorsPrimarily in manufacturing plants and labs for production support

The Full Time Additive Manufacturing Engineer focuses on designing, developing, and optimizing additive manufacturing processes, requiring higher education and engineering expertise. In contrast, the Additive Manufacturing Technician handles equipment operation and maintenance, with a more hands-on role. Both roles are essential in the additive manufacturing industry but differ in responsibilities and qualifications.

What are the key skills and qualifications needed to thrive as a Full Time Additive Manufacturing Engineer, and why are they important?

A Full Time Additive Manufacturing Engineer typically needs a degree in engineering (such as mechanical or materials engineering), strong knowledge of additive manufacturing processes, and experience with CAD software. Familiarity with 3D printing equipment, simulation tools, and certifications like SME Additive Manufacturing Certification are often required. Attention to detail, problem-solving abilities, and effective communication are vital soft skills for success in this role. These skills and qualifications ensure precise design, efficient production, and successful collaboration in the rapidly evolving field of additive manufacturing.
What are the most commonly searched types of Additive Manufacturing Engineer jobs in Raleigh, NC? The most popular types of Additive Manufacturing Engineer jobs in Raleigh, NC are:
Process Engineer

Full-time

Posted 3 days ago


Alcami rating

7.3

Company rating: 7.3 out of 10

Based on 5 frontline employees who took The Breakroom Quiz


Job description

 

At Alcami, we deliver reliable solutions that unlock the potential of transformative medicines from discovery to commercialization, through trusted partnership with our clients, recognized industry expertise and proven regulatory track record.

Are you interested in joining our team?

Job Summary

A Process Engineer designs, implements, and optimizes manufacturing processes to improve efficiency, quality, safety, and/or reduce cost. The Process Engineer analyzes production workflows, identifies bottlenecks, and develops solutions using engineering principles and data analysis. Process engineers also ensure compliance with industry standards and regulatory requirements, while monitoring system performance and troubleshooting issues.

On-Site Expectations
  • 100% on-site position.
  • 1st Shift: Monday - Friday, 8:00am - 5:00pm.
Responsibilities
  • Develop new or modified processes, equipment, and layouts to meet specific production goals.
  • Analyze existing processes, identify areas for improvement, and implement changes to enhance efficiency, reduce costs, and improve product quality.
  • Diagnose and resolve issues related to process performance, equipment malfunctions, and quality control.
  • Machine troubleshooting and problem-solving. When manufacturing issues arise, the process engineer must quickly identify and troubleshoot the problem. This includes understanding root causes, developing potential solutions, and testing these solutions in a safe, controlled environment.
  • Collect, analyze, and interpret data related to process performance, identify trends, and generate reports for management.
  • Manage process improvement projects, including planning, scheduling, budgeting, and resource allocation.
  • Work with cross-functional teams, including production, engineering, and quality control, to achieve common goals.
  • Stay informed about the latest technologies and best practices in process engineering to continuously improve processes and ensure the most efficient and effective use of resources.
Qualifications
  • Bachelor's degree in Engineering. Chemical, mechanical, or industrial engineering degree preferred.
  • Minimum two years of pharmaceutical experience.
Knowledge, Skills, and Abilities
  • Strong analytical and problem-solving skills. Ability to analyze data, identify problems, and develop solutions.
  • Understanding of manufacturing processes and systems. Knowledge of various manufacturing technologies and equipment.
  • Effective communication and interpersonal skills. Ability to work effectively with teams, communicate technical information clearly, and collaborate with stakeholders.
  • Project management skills. Ability to plan, organize, and manage projects effectively.
  • Familiarity with safety regulations and procedures. Understanding of relevant safety regulations and best practices.
Travel Expectations
  • Up to 10% travel expected.
Physical Demands and Work Environment

The physical demands and work environment described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions. While performing the duties of this job, the employee will regularly stand, walk, and use hands, frequently reach, stoop, kneel, crouch or crawl and talk or hear, and occasionally sit and climb or balance. In this role, you will frequently work in an office, lab, or manufacturing areas. You will occasionally be exposed to wet or humid conditions, work near moving mechanical parts, work in high places, near toxic or caustic chemicals, in outdoor weather conditions and exposure to vibration. The noise level that is typical for this position is loud at times when near working equipment.

Employment Type: FULL_TIME