Advanced Precision Hexagonal Stainless Steel Conical Bore Milling Tools
The process starts with micro-milling for exact geometrical accuracy, followed by unique post-processing treatments: electropolishing for an ultra-smooth surface preventing contamination and enhancing fluid flow, and electroplating (options include gold or nickel) to improve hardness, corrosion resistance, and biocompatibility. This nozzle is a tailor-made machining solution for specific applications.



This precision spray nozzle is crafted for applications demanding accurate, consistent, and sterile fluid dispensing in medical and life sciences settings. Primary uses include:
| Parameter Category | Specification |
|---|---|
| Base Material | 316L Stainless Steel (Medical Grade) |
| Key Feature | Precision Machined Conical Internal Bore |
| Primary Machining | Precision Micro-Milling |
| Surface Finish 1 | Electropolishing |
| Surface Finish 2 | Electroplating (e.g., Gold, Nickel, etc.) |
| Service Type | Custom Machining & Manufacturing |






Our facility has obtained the GB/T 19001-2016/ISO 9001:2015 quality system certification, as well as the GB/T 42061-2022/ISO 13485:2016 medical device quality system certification. We focus on the research and production of non-standard metal medical device precision parts. We possess dozens of high-precision engraving lathes and CNC equipment, including CNC numerical control, centering machines, automatic lathes, and combined turning-milling machines.
Main materials include stainless steel tubes, stainless steel, copper, and aluminum alloy. We offer precision laser cutting processing and secondary processing for stainless steel thin-walled tubes. We are widely applied in tools, electronics, medical devices, and automotive industries.
We focus on processing and customizing products for medical device hardware. With a R&D team composed of senior engineers and technicians, we are committed to providing high-quality and high-precision processing services. Each product meets the strict standards and requirements of the medical device industry through continuous optimization of production processes.