This series of stainless steel precision parts is tailor-made for medical equipment and is the core component of surgical instruments, medical imaging equipment, in vitro diagnostic instruments, etc. Made of medical-grade stainless steel and manufactured with high-precision processing technology, it has excellent biocompatibility, high strength and corrosion resistance. The parts precisely match the operation requirements of medical equipment to ensure stable, safe and efficient operation of the equipment, provide reliable support for medical diagnosis and treatment, and help medical workers carry out precision medical services.
Flexible customization service: We can provide one-stop customization service from design, material selection to processing according to the special needs of different medical devices. Whether it is complex minimally invasive surgical instrument parts or key components of large-scale imaging equipment, they can be customized on demand to meet the diverse medical equipment manufacturing needs.
Test items | Testing standard | Significance of testing |
Dimensional accuracy | ±0.005mm | Ensure the fit of parts and the accuracy of equipment operation |
Surface roughness | Ra≤0.4μm | Reduce bacterial adhesion and improve biosafety |
Biocompatibility | Complies with ISO 10993 standard | Ensure patient safety |
Corrosion resistance | Passed 48-hour salt spray test | Adapt to long-term use in medical environment |
3. Product Details
Material and Performance: Mainly 316L and 304 medical grade stainless steel. 316L stainless steel has excellent corrosion resistance and is not easy to rust in human environments containing chloride ions or disinfection environments. It is suitable for instruments that directly contact the human body; 304 stainless steel has high strength and good toughness, and can be used to manufacture medical equipment frames and connectors that require high mechanical properties. Both materials are non-magnetic and will not interfere with the normal operation of medical imaging equipment such as MRI.
Manufacturing process: The production process combines advanced manufacturing technology with strict process standards. The five-axis linkage CNC machining center can achieve high-precision machining of complex curved parts; EDM technology can produce micron-level fine structures. The surface treatment process uses electrolytic polishing and passivation treatment to make the surface of the parts as smooth as a mirror, which not only reduces the risk of bacterial attachment, but also improves the corrosion resistance and aesthetics of the parts.
Application areas: In surgical instruments, it is used to manufacture key components such as surgical blades and vascular staplers to ensure precise surgical operations; in medical imaging equipment, it is used as a precision connector for CT machines and MRI machines to ensure stable equipment operation and imaging quality; in in vitro diagnostic instruments, it provides high-precision parts for sample collection and analysis modules to facilitate accurate disease detection and diagnosis.