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3D Structured Abrasive Belt – Cloth-backed Pyramid Belt
3D Structured Abrasive Belt – Cloth-backed Pyramid Belt
3D Structured Abrasive Belt – Cloth-backed Pyramid Belt
3D Structured Abrasive Belt – Cloth-backed Pyramid Belt
3D Structured Abrasive Belt – Cloth-backed Pyramid Belt
3D Structured Abrasive Belt – Cloth-backed Pyramid Belt
3D Structured Abrasive Belt – Cloth-backed Pyramid Belt
3D Structured Abrasive Belt – Cloth-backed Pyramid Belt
3D Structured Abrasive Belt – Cloth-backed Pyramid Belt
3D Structured Abrasive Belt – Cloth-backed Pyramid Belt

3D Structured Cloth-backed Pyramid Belt

Cloth-backed Pyramid Belt

3D pyramid structures gradually break down to maintain stable cutting efficiency
Cloth-Backed Belt for High Stability
Reduced glazing during grinding of titanium and stainless steel
Lower grinding temperature and minimized burn marks
Predictable and repeatable surface finish
Widely used in robotic grinding systems, medical component finishing, titanium surface brushing and precision metal polishing
material
stainless steel wire drawing
artificial knee joint
turbine blade
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Engineered Pyramid Structure for Consistent Precision Grinding

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Advanced Micro-Replicated Abrasive Structure
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3D Structured Abrasive Belt uses precisely engineered pyramid-shaped abrasive structures formed through micro-replication technology.
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Unlike traditional abrasive belts where abrasive grains quickly become dull and cause glazing, the pyramid structures gradually wear during grinding. As the outer layer breaks down, new sharp abrasive particles are exposed, maintaining continuous cutting efficiency.
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Alternative to 3M 337DC Structured Belts(For manufacturers seeking a reliable 3M 337DC equivalent, this structured abrasive belt offers comparable performance for precision metal finishing, provides consistent surface finishing in applications where Trizact structured abrasive belts are commonly used. )
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Typical industries replacing Trizact belts include: sanitary hardware polishing medical device finishing titanium surface finishing aerospace component grinding
turbine blade polishing

Solve Common Problems of Conventional Abrasive Belts

Traditional abrasive belts often experience abrasive glazing when grinding hard metals such as titanium or stainless steel. Once glazing occurs, cutting performance drops significantly and excessive heat may cause burn marks on the workpiece surface.

The 3D Structured Abrasive Belt addresses these issues by using pyramid abrasive structures that renew the cutting edges continuously during grinding.

This allows manufacturers to achieve:

  • stable grinding efficiency
  • reduced heat generation
  • improved surface quality
  • longer belt lifespan

Typical Applications

Robotic Grinding and Automated Finishing

Widely used as robotic grinding belts in automated polishing systems for consistent surface finishing.

Sanitary Hardware and Metal Fixtures

Surface polishing for faucets, valves and stainless steel hardware.

Medical Devices

Precision finishing for surgical instruments, orthopedic implants and artificial joints.

Titanium Surface Finishing

Ideal structured abrasive belt for titanium brushing and polishing.

Aerospace Components

Grinding and finishing of turbine blades and precision engine parts.

PCB and Electronic Components

Used in precision grinding processes for electronic manufacturing components.

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info@moresuperhard.com
+86 17324838957
+86 17324838957

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