Machined Plastics
Plastics
Machined Plastic Parts Materials ABS Plastic for Machined Parts & Prototypes Acetal & Delrin MachiningAcrylic Plastic Materials & MachiningCOC/COP Plastic Materials & MachiningCPVC Plastic Material & MachiningCTFE/KEL-F Plastic Material & MachiningDelrin AF Plastic Material & Machining ECTFE/Halar Plastic Material & Machining Fluorosint® 500 and 207 Plastic Materials & MachiningHDPE Plastic Material & MachiningLDPE Plastic Material & MachiningNoryl® Plastic Material & MachiningNylatron GS: Self Lubricating Nylon for Precision MachiningNylon 6/6 Material & Machining PBT Plastic Material & MachiningPEEK Plastic Machining for Medical, Life Science & Aerospace OEMsPES (Radel A) Plastic Material & MachiningPlastic Machining With PETPhenolics/G10 Plastic Machining Polycarbonate Plastic & MachiningPolypropylene Plastic Material & MachiningPolysulfone Plastic Matetial & MachiningPPS Plastic Material & MachiningPVC Plastic & Machining PVDF Plastic Material & MachiningRadel® Plastic Material & MachiningRexolite® Plastic Material & Machining Tecadur Plastic Material & MachiningTeflon® Plastic Machining (PTFE) | Controlled FluidicsTorlon PlasticMaterial & MachiningUHMW Plastic Materials & MachiningUltem® (PEI) Plastic Material & MachiningVespel® Plastic MachiningPOLYMER OPTIONS
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GET EXPERT DFM SUPPORT FOR YOUR DEVICE

Hit your specs, stay on schedule, & reduce risk. All with one manufacturer.

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Medical and clinical teams are under pressure to launch more complex devices faster while managing several priorities, including evolving regulations, supplier instability, and aggressive cost targets. We help you de‑risk the plastic side of your design with precise machining, bonded manifolds, and documentation that stands up to audits. 

NOT SURE WHERE TO START?

ADVANCED MEDICAL PLASTICS: SHAPING THE FUTURE OF HEALTHCARE

Download the “Advanced Medical Plastics: Shaping the Future of Healthcare” white paper to make smarter and better decisions. It distills key considerations around material properties, sterilization methods, manufacturing processes, and real‑world applications. Now engineering, procurement, and quality can align before designs are locked in. 

Inside, you’ll find how to: 

  • Match medical‑grade plastics to biocompatibility, durability, and strength‑to‑weight requirements.

 

  • Choose materials that survive your actual sterilization method without premature degradation.

 

  • Compare injection molding, CNC machining, and additive manufacturing for cost, volume, and flexibility.

 

  • See how manifolds and advanced plastics are already transforming real devices and care scenarios.
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CURRENTLY WORKING ON A PLASTIC MEDICAL PROJECT?

Then send us your concept to discuss DFM options & get a quote