Lead Materials Process Engineer
Overview
Placement Type:
Temporary
Salary:
$33.60-37.33 Hourly
up to $37.33/hr
Start Date:
Aug 17, 2026
Lead Materials Process Engineer
About the Role
We are seeking a Lead Materials Process Engineer to support the development, commercialization, and manufacturing readiness of advanced material technologies. In this role, you will serve as a technical bridge between materials innovation, process engineering, and global manufacturing teams to ensure new materials and processes can be scaled successfully into production.
You will partner with cross-functional teams including Materials, Product Development, Quality, Innovation, and Manufacturing Engineering, as well as external factory and supplier partners. The ideal candidate is a hands-on problem solver who can translate laboratory insights and manufacturing data into scalable processes, technical standards, and continuous improvements.
This is an on-site role with a hybrid schedule. Occasional evening meetings may be required to collaborate with global teams, and limited international travel may be needed.
What You'll Do
Lead the development, optimization, and validation of advanced material manufacturing processes from concept through commercialization
Partner with manufacturing teams and suppliers to improve process capability, scalability, and production readiness
Analyze material performance data, laboratory testing results, and manufacturing metrics to identify improvement opportunities
Develop and implement process controls, operating windows, validation plans, and engineering standards
Apply statistical methods including Statistical Process Control (SPC), Design of Experiments (DOE), and process capability analysis to reduce variation and improve quality
Lead root cause investigations related to material performance, process variation, and manufacturing challenges
Translate technical findings into Design for Manufacturing (DFM) guidelines and scalable production requirements
Support factory trials, process validation activities, and commercialization efforts with global manufacturing partners
Create technical documentation including process specifications, control plans, and manufacturing best practices
Collaborate across Materials, Product Creation, Quality, Supply Chain, and Manufacturing teams to drive technical decisions
What We're Looking For
Bachelor's degree in Polymer Engineering, Materials Science, Chemical Engineering, Mechanical Engineering, or a related technical discipline
3+ years of experience in materials development, polymer engineering, process engineering, or manufacturing engineering
Experience working with polymer materials and material characterization
Experience developing, testing, optimizing, or scaling materials and manufacturing processes
Strong analytical skills with experience interpreting technical data and using data-driven approaches to solve problems
Experience with process improvement methodologies such as SPC, DOE, process capability analysis, or similar techniques
Ability to work effectively in manufacturing environments and collaborate with factory or supplier partners
Strong communication skills with the ability to influence cross-functional teams
Self-starter who can independently manage projects, prioritize work, and drive results
Preferred Qualifications
Experience with polyurethane (PU) materials, elastomers, foams, coatings, adhesives, or similar polymer systems
Laboratory testing experience related to material performance, reliability, or validation
Experience supporting product commercialization, manufacturing scale-up, or new product introduction (NPI)
Experience with Design for Manufacturing (DFM) principles
Experience working with global manufacturing partners or suppliers
Familiarity with JMP, Minitab, or comparable statistical analysis software
Experience in apparel, footwear, sporting goods, consumer products, or other materials-driven industries
CNC, tooling, or manufacturing process certifications
What Success Looks Like
Materials and processes are validated, repeatable, and ready for commercial production
Manufacturing partners have clear technical requirements and process controls
Data-driven improvements reduce variation and increase product reliability
Cross-functional teams are aligned on technical decisions and commercialization milestones
Innovative materials successfully transition from development into scalable manufacturing
Work Environment
On-site position with a hybrid schedule
Collaboration with global teams across multiple time zones
Limited international travel may be required
Opportunity to work at the intersection of materials science, engineering, and manufacturing innovation
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