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Materialise Jobs in Boston, MA (NOW HIRING)

Materialise information

What does a Materialise professional do?

Materialise professionals typically work at Materialise, a company specializing in 3D printing software and services. They may include engineers, software developers, project managers, and application specialists who help customers turn digital designs into 3D-printed products for industries like healthcare, automotive, and aerospace. Their work often involves using advanced CAD tools, developing software solutions, optimizing 3D printing processes, and supporting clients in adopting additive manufacturing technologies.

What skills and qualifications are needed to thrive as a Materialise engineer?

To thrive as a Materialise Engineer, you need a solid background in engineering, CAD design, and 3D printing technologies, typically supported by a relevant degree. Familiarity with Materialise software (such as Magics, Mimics, or 3-matic) and experience with additive manufacturing systems are highly valued. Strong problem-solving abilities, attention to detail, and effective communication skills set top performers apart. These competencies ensure precise, innovative solutions and efficient project execution in the fast-evolving field of 3D printing and digital manufacturing.

What are common challenges faced by professionals working at Materialise and how can they be addressed?

Professionals at Materialise, a leader in 3D printing and additive manufacturing, often encounter challenges such as adapting to rapidly evolving technologies, managing complex projects with cross-functional teams, and ensuring high-quality standards under tight deadlines. To address these, employees benefit from continuous learning opportunities, strong internal communication, and a collaborative culture that encourages knowledge sharing. Embracing flexibility and being proactive in seeking feedback can also help team members stay ahead in this dynamic environment.

What is the difference between Materialise vs 3D Printing Technician?

AspectMaterialise3D Printing Technician
Required CredentialsRelevant degrees in engineering, design, or computer science; experience with 3D softwareTechnical diploma or certification in 3D printing or related field; hands-on experience
Work EnvironmentOffice-based with software development, design, and project management tasksManufacturing or workshop setting with hands-on 3D printing and post-processing
Industry UsageUsed by companies providing 3D printing services, software solutions, and product developmentEmployed in manufacturing facilities, prototyping labs, and service bureaus

Materialise and 3D Printing Technicians both operate within the 3D printing industry, but Materialise typically involves software development, project management, and design roles, while 3D Printing Technicians focus on hands-on printing and post-processing tasks. Understanding these differences helps job seekers identify the right career path in the additive manufacturing field.

What are popular job titles related to Materialise jobs in Boston, MA?

For Materialise jobs in Boston, MA, the most frequently searched job titles are:

What cities near Boston, MA are hiring for Materialise jobs?

Cities near Boston, MA with the most Materialise job openings:

Infographic showing various Materialise job openings in Boston, MA as of August 2026, with employment types broken down into 84% Full Time, and 16% Contract. Highlights an 85% Physical, and 15% Remote job distribution.

Process Engineer - Printing

Seurat Technologies

Wilmington, MA • On-site

Full-time

Re-posted 3 days ago


Job description

 

General Description: 

Seurat Technologies is seeking a Process Engineer - Printing to work on a revolutionary and proprietary Laser Powder Bed Fusion (LPBF) based Additive Manufacturing (AM) or 3D printing technology. This new Area Printing technology greatly enhances the quality and productivity of metal additive manufacturing process.

The ideal candidate demonstrates comprehensive capabilities to use additive manufacturing method to produce product and process materials that involves: (a) creating printing and manufacturing plan for specific product requirement, (b) tuning process parameters for optimal results, (c) operating the printer to print parts, (d) conducting design of experiment, (e) conducting basic troubleshooting and maintenance of printing and ancillary equipment.

Responsibilities:

  • Use in-house developed as well as commercial additive manufacturing data preparation software (Materialise Magics, Autodesk NetFabb, etc.) to create printing plan and printing files.
  • Develop part printing process based on first principles, materials characterization results, metrology data, process data, and modeling and simulation results.
  • Design part printing process to achieve geometrical features (overhangs, bridges, thin walls, support structures, surface finish, etc.)
  • Optimize process parameters (laser, gas flow, thermal, powder spreading, etc.).
  • Conduct Design of Experiments (DOEs), operate printers to print parts, and create test reports.
  • Guide technicians to conduct post processing of printed parts.
  • Conduct basic maintenance and troubleshooting tasks on production and ancillary equipment.
  • Collaborate with design engineers to improve printer performance.

Requirements:

  • S. or above in engineering disciplines.
  • 3+ years of experience in manufacturing, engineering, or R&D in related fields.
  • Strong verbal and written communication skills.
  • Work effectively with a cross functional and multidisciplinary team environment.
  • Travel up to 10%.

Preferred Qualifications:

  • Experience of working in commercial metal AM manufacturing facilities (service bureaus, manufacturing divisions, laboratories, etc.) is highly preferred.
  • Experience in Laser Powder Bed Fusion (LPBF) based metal printing is strongly preferred.
  • Experience in laser welding of commonly used metal (ferrous and nonferrous) materials.
  • Experience in designing and operating sophisticated industrial equipment.
  • Background in metallurgy, solid state physics, and mechanical design.

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