สรุป: This video provides a case-style overview of how 304 and 316L stainless steel capillary tubes are transformed into precision medical components. You will see the advanced manufacturing process, including high-precision laser cutting, micro-grooving, and surface finishing, used to create parts for minimally invasive surgical instruments and micro-fluidic delivery systems. Discover how these techniques ensure reliability and adherence to stringent medical industry standards.
คุณสมบัติของผลิตภัณฑ์ที่เกี่ยวข้อง:
Custom processing of AISI 304 and 316L stainless steel capillary tubes for medical-grade components.
High-precision laser cutting and micro-grooving for accurate dimensions and complex shapes.
Controlled sandblasting for consistent surface finishes and improved cleanliness.
Precision flaring and diameter reduction to meet specific connection and fluid dynamics needs.
Excellent corrosion resistance and biocompatibility, especially with 316L material.
Customizable outer and inner diameters, wall thickness, and lengths per client specifications.
Tight dimensional tolerances, typically within ±0.05mm or better for precision.
Suitable for minimally invasive instruments, implants, and diagnostic equipment applications.
คำถามที่พบบ่อย:
What medical applications are these stainless steel capillary parts used for?
These precision parts are primarily used in high-end medical devices, including minimally invasive surgical instruments, micro-fluidic delivery systems for drug delivery or biopsies, endoscopic and catheter-based components, implantable devices, and diagnostic or laboratory equipment.
What materials are used, and why are they suitable for medical applications?
The parts are made from AISI 304 or AISI 316L stainless steel, chosen for their excellent corrosion resistance, high strength, good formability, and biocompatibility—especially 316L, which meets stringent medical standards for safety and performance.
How customizable are the dimensions and features of these capillary tubes?
They are fully customizable, with outer diameters typically from below 0.5mm to several millimeters, customizable inner diameters and wall thicknesses, and lengths cut to specification. Additional features like laser grooving, flaring, or diameter reduction can be applied based on client drawings.