Mach Industries
Thermal Engineer
About this role
Mach Industries is seeking a Thermal Engineer to design and optimize thermal management systems for defense vehicles. The role involves analyzing heat transfer impacts on performance and collaborating with multidisciplinary teams to ensure system reliability.
What you'll do
- Design and optimize thermal management systems
- Analyze heat transfer and thermal loads effects
- Collaborate with propulsion and aerodynamics teams
- Develop thermal testing procedures
- Provide insights on thermal management systems
- Create technical documentation and reports
What they're looking for
- Thermal analysis experience in aerospace
- Understanding of heat transfer principles
- Proficient in thermal analysis software
- Experience with thermal testing methods
- Strong collaboration and communication skills
- Bachelor's degree in relevant engineering field
- Familiarity with conjugate heat transfer and CFD
- Hands-on experience in rapid design and prototyping
Benefits
- Health insurance
- Retirement plans
- Professional development opportunities
- Highly competitive equity grants
- [unknown]
- [unknown]
Opens the application — the Jobs AI extension fills it for you. Set up autofill
Opens the official application on the employer’s site. No login required.
Mach Industries
Mach Industries is a defense technology startup developing autonomous defense systems and advanced propulsion technologies requiring precision manufacturing at scale. The company is hiring engineers across manufacturing (CNC tooling, automation), propulsion (controls), thermal management, and software to build mission-critical systems.
View all jobs at Mach IndustriesLikely interview questions
- Walk us through your experience with thermal analysis software like STAR-CCM+, Icepak, or Simscape. Which have you used most extensively, and what types of aerospace thermal problems have you solved?
- Describe a time you had to integrate thermal management solutions across multiple vehicle systems (propulsion, structural, aerodynamics). How did you handle competing design constraints?