• Micro Machining Metal Stainless Steel
  • Micro Machining Metal Stainless Steel
  • Micro Machining Metal Stainless Steel
  • Micro Machining Metal Stainless Steel
  • Micro Machining Metal Stainless Steel
  • Micro Machining Metal Stainless Steel
  • Micro Machining Metal Stainless Steel
  • Micro Machining Metal Stainless Steel
  • Micro Machining Metal Stainless Steel
  • Micro Machining Metal Stainless Steel

Micro Machining Metal Stainless Steel

Micro Machining Metal Stainless Steel

  • Material Capabilities:Hardened Metals, Aluminum, Brass, Bronze, Copper, Precious Metals, Stainless Steel, Steel Alloys, Other
  • Type:Turning
  • Material:Brass
  • Process:Cnc Machining+deburrs
  • Service:Customized OEM

USD: 16.73

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Product Description

Micro machining of stainless steel involves precision cutting and shaping of metal components with high accuracy. This process is ideal for producing intricate, small parts with tight tolerances. Using advanced CNC machines, it ensures superior surface finishes and durability. Stainless steel is known for its corrosion resistance, making it suitable for various industries. The micro machining technique allows for detailed designs and complex geometries. It is commonly used in medical devices, electronics, and aerospace applications.

Product parameters

ListDetails
Brand NameProfessional Precision Cnc Machining Parts
TypeCNC Machining
MaterialBrass
Surface treatmentCustomer's Request
ServiceCustomized OEM
ColorCustomized Color
EquipmentCNC Machining Centres
Process TypeTurning


Custom Process

1. Send inquiries

2. Drawing or samples

3. Quotation

4. Customer confirmation

5. Places order and pays

6. Mass production

7. Test & packing

8. Shipping & confirmation

Process Type

Honing

 

is a precision machining process used to improve the surface finish and dimensional accuracy of parts. It involves a honing tool with abrasive stones that rotate and reciprocate on the workpiece. Typically, it is used for cylindrical surfaces such as engine bores. Honing removes small amounts of material to achieve smoother surfaces and tighter tolerances. It is commonly applied in industries like automotive and aerospace. The process also enhances the part's durability and wear resistance.

Laser cutting

 

is a technology that uses a high-powered laser to cut through materials like metal, plastic, and wood. The laser beam melts or vaporizes the material along a precise path. It allows for highly accurate cuts with minimal thermal distortion. This process is used in industries such as automotive, aerospace, and manufacturing. Laser cutting is fast, efficient, and produces clean edges. It can handle complex shapes and intricate designs with ease.

Milling

 

is a machining process that uses rotary cutters to remove material from a workpiece. The workpiece is fed into the cutter, which rotates at high speeds to shape it into desired forms. It can produce a variety of features like holes, slots, and complex contours. Milling is used on materials like metal, plastic, and wood. There are different types of milling, including horizontal and vertical, depending on the setup. This process is widely used in industries like manufacturing, automotive, and aerospace for precision parts.

Material

Sliver

Brass

Copper

Quality Control

Quality control in micro machining of stainless steel ensures precise dimensions and flawless finishes. Advanced inspection tools like microscopes and laser scanners are used to measure tolerances. Each part undergoes rigorous checks for surface defects, such as scratches or burrs. Non-destructive testing methods verify material integrity. Process parameters are continuously monitored to maintain consistency. Final products are often tested for functionality, durability, and corrosion resistance to meet industry standards.

Processing capability

Micro machining of stainless steel offers high precision and the ability to create intricate, complex shapes. It can achieve tight tolerances, often within microns, ensuring accurate dimensions. The process is capable of producing detailed features like fine threads, small holes, and intricate patterns. Advanced CNC machines and tools enable the handling of small-scale parts with excellent surface finishes. Stainless steel's toughness and resistance to wear make it suitable for challenging machining operations. This capability is ideal for applications in medical, aerospace, and electronics industries.

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