Stainless Steel Long-Axis Machining with Precision CNC Milling Techniques

CNC lathe milling
September 12, 2025
Category Connection: CNC Lathe Milling
Brief: Discover the precision and versatility of Stainless Steel Long-Axis Machining with advanced CNC Milling Techniques. Perfect for medical applications, these high-precision shafts and components are customizable, durable, and biocompatible, ensuring reliability in critical surgical and diagnostic equipment.
Related Product Features:
  • Fully customizable dimensions, tip geometries, and functional features to meet specific OEM requirements.
  • Available in premium stainless steel options including 316L/316LVM, 420J2, 17-4PH, and 304 for varied mechanical properties.
  • Meticulously polished surfaces ensure smoothness and burr-free finishes, minimizing tissue trauma.
  • Advanced cooling systems during machining prevent thermal deformation, ensuring dimensional stability.
  • Heat treatment options available for 420J2 and 17-4PH materials to enhance hardness and wear resistance.
  • Compatible with all standard sterilization methods and tested for biocompatibility (ISO 10993).
  • Precision manufacturing with diameter tolerance of ±0.005 mm and straightness ≤ 0.05 mm/100 mm.
  • Widely used in minimally invasive surgery, robotic systems, orthopedic devices, and endoscopic procedures.
Faqs:
  • What materials are available for the Stainless Steel Long-Axis Machining?
    The product is available in premium stainless steel options including 316L/316LVM, 420J2, 17-4PH, and 304, each offering unique properties like corrosion resistance, hardness, and biocompatibility.
  • Can the shafts be customized for specific medical applications?
    Yes, the shafts are fully customizable in dimensions, tip geometries, and functional features, including laser etching for identification, tailored to meet specific OEM instrument design requirements.
  • What are the key advantages of using these precision shafts in medical devices?
    Key advantages include material versatility, enhanced hardness for wear resistance, precision manufacturing for consistent quality, ultra-smooth surface finishes, and full compliance with medical device regulations.