MIM Watch Ring Forming – Precision Laser Processing by AQ-Laser
MIM Watch Ring Forming
 

MIM Watch Ring Forming – Precision Laser Solution

This is a high-precision laser system for forming MIM watch rings, ideal for jewelry and precision engineering, delivering exceptional accuracy.

The MIM Watch Ring Forming system from AQ-Laser is an advanced laser processing solution designed for high-precision micromachining of watch rings produced through Metal Injection Molding (MIM) techniques, using materials like stainless steel and titanium alloys. Tailored for industries such as jewelry manufacturing, watchmaking, and precision engineering, this system delivers clean, burr-free cuts and precise forming with minimal thermal impact. Optimized for the complex geometries of MIM components, it enables intricate designs critical for high-end watch components and decorative elements. Equipped with automated features such as precise positioning and focusing, it ensures efficient, high-quality production for sophisticated applications.

Key Features:

  • High-Precision Forming: Achieves forming accuracy of ≤±10μm for intricate, burr-free watch ring designs.
  • Material Versatility: Processes MIM materials like stainless steel and titanium alloys with high strength and corrosion resistance.
  • Low Thermal Impact: Advanced fiber laser technology minimizes heat-affected zones, preserving material integrity.
  • Automated Efficiency: Includes automatic positioning, focusing, and feeding systems for streamlined production.
  • CleanCut Technology: Ensures carbonization-free edges, enhancing technical cleanliness and aesthetic quality.
  • Durability: Supports MIM materials’ excellent wear and corrosion resistance for long-lasting components.

Certification and Standards:

Certified to ISO9001 and IATF16949 standards, ensuring consistent quality for jewelry and precision engineering applications. Compliant with CE marking and RoHS directives for safety and environmental sustainability.

Materials

MIM Materials

Metal Injection Molding (MIM) materials, such as stainless steel and titanium alloys, are high-strength alloys known for their excellent durability and corrosion resistance. Ideal for precision components in watchmaking, medical devices, and aerospace, they enable complex geometries with superior mechanical properties.

Alumina

Alumina is a versatile ceramic renowned for its high thermal conductivity, electrical insulation, and mechanical strength. Widely used in medical devices, microelectronics, and high-power electronics, it offers excellent durability and reliability in precision applications.

Zirconia

Zirconia ceramics are high-performance materials valued for their superior strength, fracture toughness, and biocompatibility. Perfect for medical implants, precision electronics, and high-frequency applications, they provide excellent wear resistance and thermal stability.

Tungsten Steel

Tungsten steel is a robust alloy distinguished by its extreme hardness, high melting point, and superior wear resistance. Ideal for surgical tools, aerospace components, and precision engineering, it ensures exceptional durability in demanding environments.

Application
  • High-precision forming of MIM watch rings for luxury watchmaking and jewelry.
  • Cutting and shaping for intricate decorative components in precision engineering.
  • Processing of stainless steel and titanium alloy MIM parts for high-durability applications.
  • Suitable for complex geometries in aerospace and medical device components.
Specifications
  • Laser Type: High-performance fiber laser
  • Forming Accuracy: ≤±10μm
  • Seam Width: 15–30μm
  • Material Compatibility: Stainless steel, titanium alloys (MIM components)
  • Processing Capabilities: Cutting, forming, and marking
  • Automation: Automatic positioning, focusing, and feeding systems
  • Supported Formats: Gerber, DXF, DWG, SVG, and other 2D CAD formats

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  • Cobalt-chrome cutting for medical implants.
  • Platinum-iridium materials for fine applications.
  • Reliable machines for ultra-thin metals.
  • Supplying nitinol and cobalt-chrome alloys.
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