Process Engineer (New Grad December 2026)
Freeform
| Company | Freeform |
| Category | Engineering |
| Location | Los Angeles |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Not stated |
| Salary | Not stated by the employer |
| Posted | 7 Aug 2026 |
| Last verified | 8 Aug 2026 |
| Source | Employer ATS (greenhouse) |
Description
PROCESS ENGINEER (NEW GRAD DECEMBER 2026)
Freeform builds AI-native manufacturing systems that unify software, hardware, and physics to produce industrial-scale parts at the speed of human ideation. By treating manufacturing as a single integrated system, we unlock a new era of innovation where complex hardware is designed, built, and scaled without limits.
As a Process Engineer at Freeform, you will have the unique opportunity to help invent novel processes for the world's most advanced metal 3D printing systems. You will work alongside senior engineers to deep dive into complex, multi physics phenomena, gaining a fundamental understanding of the system and using those learnings to support the creation of new state of the art processes. You will collaborate with an interdisciplinary team of mechanical, software, and simulations engineers to analyze massive in situ data sets as well as post print material characteristics, helping rapidly iterate on improving the printing technology with machine learning.
3D printing experience is not required to be successful here, rather we look for smart, motivated, collaborative engineers who love solving hard problems and creating amazing technology!
Responsibilities:
Support the Process Engineering team in developing a deep understanding of the metal additive process and hardware operation by analyzing massive in situ data sets to gain insight into physical mechanisms of the printing process
Assist in the execution of experiments, analyze data, and help develop and optimize processes on a metal additive system
Perform post build metrology measurements and analysis of material properties such as tensile strength, surface roughness, and alloy microstructure
Generate and track quality metrics of printed customer parts such as dimensional accuracy, defect distribution, and surface roughness
Assist in the development and implementation of tool qualification procedures
Collaborate with mechanical, software, and simulations engineers to analyze data and support rapid improvement of printing processes
Basic Qualifications:
Bachelor's degree in materials science, physics, mechanical engineering, or a similar engineering discipline from an ABET accredited university or college
First principles thinker with strong fundamentals in physics
Coursework or research experience with experimental design and statistical data analysis
Strong data analysis skills and ability to interpret important information from large data sets
Experience with Python and/or MATLAB
Nice to Have:
Advanced degree (Master's, PhD) in materials science, physics, or a similar engineering discipline
Undergraduate research experience in material science, physics, or mechanical engineering
Process development experience from cutting edge industries such as semiconductor, solar, or displays
Experience with statistical data analysis software such as R, JMP, or Minitab
Experience operating complex equipment
Familiarity with metallurgical sample preparation such as cutting, grinding, polishing, acid etching, and optical microscopy
Passion for developing new processes from scratch
Comfortable working in fast paced, ambiguous environments and iterating quickly (comfortable building the plane as we fly it)
Excellent verbal and written communication skills
Demonstrated indicators of excellence and/or achieving success against adversity (i.e. top academic performance, leadership in engineering clubs, first generation college student, or other examples of resilience and achievement
Location:
Based in Hawthorne, our vertically integrated facility brings technology development, R&D, and production together under one roof. We operate at the center of LA’s deep tech ecosystem, surrounded by some of the most ambitious hardware innovation happening anywhere in the country.
Our fast-paced, cross-functional environment is built on close collaboration, and as s