Premium Electro-Polished Stainless Steel Hexagonal Bore Milling Tools

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Product Description

Basic Specifications

Model NO.
Y2699
Standard
GB
Customized
Customized
Material
Stainless Steel
Application
Metal Processing Machinery Parts
Transport Package
Vacuum Packaging; Cardboard Box
Specification
300*300*260
HS Code
7301200000
Production Capacity
51,000 pieces/Year

Product Description

Premium Electro-Polished Stainless Steel Hexagonal Bore Milling Tools

Our high-precision 316L stainless steel medical spray nozzle is custom-crafted for stringent industry standards. Its defining feature is a precision-machined conical bore essential for precise spray pattern and flow control. The manufacturing process starts with precision micro-milling for precise geometrical tolerances, followed by advanced post-processing: electropolishing for an ultra-smooth, passive surface enhancing contamination resistance and fluid flow, plus electroplating (gold or nickel options) to boost hardness, corrosion resistance, and biocompatibility. This nozzle is available as a bespoke machining solution, tailored to specific application requirements.

Medical Spray Nozzle 1
Medical Spray Nozzle 2
Medical Spray Nozzle 3

Key Product Usage

  • Medical Devices: Integrated into surgical tools, drug delivery systems, and diagnostic equipment.
  • Lab Automation & Diagnostics: Used in automated analyzers and DNA sequencers for reagent dispensing.
  • Minimally Invasive Surgery: Utilized for irrigation, cooling, or applying therapeutic agents.
  • Specialty Medical Sprays: Ideal for nasal, topical, or wound care sprays where dosage control is crucial.
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
Bore Milling Detail 1
Bore Milling Detail 2
Bore Milling Detail 3

Manufacturing Capabilities

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. Equipped with dozens of high-precision engraving lathes and CNC equipment, including CNC numerical control, centering machines, automatic lathes, and turning-milling combined machines.

Workshop Overview

Our process flow is stable and efficient, integrating industry and trade for rapid delivery. We provide non-standard part prototyping and batch production, supporting custom drawings and sample customization. Main materials processed include stainless steel tubes, copper, aluminum alloy, and other metals for high-end industrial applications.

Quality Control 1
Quality Control 2
Quality Control 3

Quality Certifications

ISO Certifications

Frequently Asked Questions

Q: What specific material is used for the medical spray nozzles? A: We primarily use 316L Medical Grade Stainless Steel, known for its excellent corrosion resistance and biocompatibility.
Q: Can you provide custom surface finishes? A: Yes, we offer electropolishing for ultra-smooth surfaces and electroplating options such as Gold and Nickel to enhance hardness and chemical resistance.
Q: What quality management standards does your facility follow? A: Our production is certified under ISO 9001:2015 for general quality management and ISO 13485:2016 specifically for medical device manufacturing.
Q: What is your typical production capacity for these precision parts? A: Our current production capacity is approximately 51,000 pieces per year, supporting both prototyping and batch production.
Q: Do you support manufacturing based on custom technical drawings? A: Yes, we specialize in non-standard part customization and can manufacture parts precisely according to your provided technical drawings or samples.
Q: Which industries use these precision milled tools? A: Our parts are widely applied in medical devices, laboratory automation, electronics, automotive components, and other high-precision transportation industries.

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