Medical Devices
Published time:
2025-06-10
Titanium Alloy's Biocompatibility + Cobalt-Chromium Alloy's Wear Resistance Align with Stringent Requirements for Implantable Devices: Orthopedic Implants: Joint prostheses, bone screws (Titanium alloy's compatibility with bone tissue prevents rejection); Surgical Instruments: Forceps, endoscope components (Nickel-based alloys withstand high-temperature sterilization); Cardiac Devices: Pacemaker housings (Titanium castings provide electromagnetic interference shielding). Technical Advantages: Production in cleanrooms compliant with ISO 13485 medical standards; surface finish achieves Ra 0.8μm.
The biocompatibility of titanium alloy + the wear resistance of cobalt-chromium alloy meet the stringent requirements of implanted medical devices:
- Orthopedic Implants: Artificial joints, bone pins (titanium alloy is compatible with bone tissue, avoiding rejection);
- Surgical Instruments: Surgical forceps, endoscope parts (nickel-based alloy can be sterilized at high temperatures);
- Cardiac Devices: Pacemaker housing (titanium castings shield electromagnetic interference).
Technical Advantages: Cleanroom production meets ISO 13485 medical standards, surface finish Ra0.8μm.
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