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Manufacturing process of a titanium orthopedic implant on a 5-axis mill

Rapidly machining high-precision medical device parts

We offer a wide range of materials for CNC machining, including thermal- and chemical-resistant plastics, as well as medical-grade alloys ideal for producing medical components.

Precision CNC Machining for Medical Component Prototyping and Production

Precision CNC Machining for Medical Component Prototyping and Production

We provides the speed and precision essential for medical component prototyping and production. Our CNC machining services support engineers and device developers in the medical industry with the following key advantages:

Design for Manufacturability (DFM) Feedback: We offer DFM insights with every quote to ensure designs are optimized for efficient production.

Prototyping in Production-Grade Materials: We enable the creation of prototypes using materials that are production-grade, ensuring accuracy and functionality from the outset.

Fast Turnaround for Low-Volume, Precise Parts: We can deliver precise production parts in as little as one day, perfect for rapid iteration and development.

We can solve the following processing for you

Prototyping
Jigs & fixtures
Dental equipment
Pharmaceutical equipment
Laboratory equipment
Med-tech prototypes
Electronic medical devices
Handheld Devices
Enclosures and Housings
Instrument parts

Gallery of Medical parts

Why the Medical industry chooses us

Specialized network

Specialized network

Get access to cutting-edge capabilities and limitless capacity

Quality assurance

Quality assurance

Receive comprehensive documentation with every order

Quick quote

Quick quote

Get instant quotes with all pricing information upfront

Materials & surface finishes for medical parts

We give you access to a huge range of materials and surface finishes for every application through our global network of specialized manufacturing partners.

Medical materials

Medical materials

Choose from more than 30 metal alloys and hundreds of high-performance plastics.

Steel & stainless steel: 316/316L, 15-5, 1045, 4140, A36
Titanium: 1, 2, 5
Aluminum: 6061-T6, 7075-T6, 5052, 5083-H111, 2024-T351
Brass & copper alloys: C360, C110, C101
Thermoplastics: Polycarbonate (PC), ABS, PEEK, Nylon
Commodity polymers: Polyethylene (PE), Polypropylene (PP), PVC

Medical surface finishes

Medical surface finishes

Improve precision, wear-resistance, and more with a selection of finishes

Anodizing
Nano coating
Electroless nickel plating
Polishing
Black Oxide
Tumbling
Passivization

Processing scene

Processing scene

Imported equipment, Japan Mazak machining center, more accurate and faster for complex multi-faceted processing.

Learn about our planning and processing capabilities on the production floor

Medical manufacturing capabilities

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Why Choose US

Slinar is an ISO 9001:2015 and AS9100-certified manufacturer based in Shenzhen, China, with over 12 years of experience in high-precision CNC machining.

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FAQs

  • Are you compliant with medical industry standards and regulations?

    Yes. We operate under a ISO 13485 compliant quality management system specifically for medical device manufacturing. We provide full traceability and documentation for materials and processes, which is critical for your regulatory submissions (e.g., FDA).
  • What materials do you work with for biocompatible or sterilizable components?

    We machine a wide range of medically approved materials, including stainless steel (e.g., 316L), titanium (Ti6Al4V), and medical-grade plastics (e.g., PEEK, PEI). We understand the material certifications and cleanroom handling requirements for Class I, II, and III devices.
  • What is your experience with surgical instruments, implants, and diagnostic equipment parts?

    We have extensive experience producing high-precision components for surgical hand tools, non-implantable surgical components, and diagnostic device housings and assemblies. We understand the critical tolerances and surface finish requirements.

Let's Machine Your Vision, Together.

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