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Surface finishing workshop

surface finishing workshop

Production WorkshopWe can provide high-precision metal surface treatment technology solutions and services for machined parts

Quality control procedures

Quality control procedures

Help CenterCNC Machining‌: surface roughness Ra ≤0.8μm (precision molds: Ra ≤0.2μm); tool wear compensation frequency ≤500 pieces/tool.

Mold finish standards

Mold finish standards

Help CenterSelect surface treatment processes based on mold material, application, and cost requirements

3D Cosmetic standards

3D Cosmetic standards

Help Center‌3D Printing surface Finishing Standards

3D Inspection standards

3D Inspection standards

Help Center3D printing inspection standards are crucial for ensuring the quality of 3D printed products, covering aspects such as dimensional accuracy, surface quality, mechanical properties, and material performance. Below are common inspection standards

Part cleaning & general finishing

Part cleaning & general finishing

Help CenterIn CNC machining, part cleaning and finishing are critical steps to ensure part quality and performance. Below are the standards and guidelines for part cleaning and general finishing

Cosmetic standards

Cosmetic standards

Help CenterIn CNC machining, surface treatment standards are established to ensure that parts meet specific functional, aesthetic, or durability requirements. Below are some common surface treatment standards and their applications

Bead Blasted + Anodized type II

Bead Blasted + Anodized type II

Surface finishingBead blasting cleans and evens out the surface of your custom parts, improving the functionality and cosmetic quality. It leaves a uniform matte or satin texture on machined parts by administering high-pressure glass beads on the components. A solely cosmetic option is available on request.

As machined

As machined

Surface finishingOur standard finish, parts are first machined to a surface roughness of Ra 3.2μm / Ra 126μin, deburred and sharp edges are chamfered.

Medical parts

Medical parts

MedicalBy combining brass with PTFE, the advantages of both materials can be fully utilized. In medical components, brass is often used to provide electrical conductivity or corrosion resistance, while PTFE is leveraged to reduce the coefficient of friction and enhance biocompatibility. This combination can be achieved by coating the surface of brass components with PTFE.

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