Mirror finish - List of Manufacturers, Suppliers, Companies and Products

Mirror finish Product List

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Ultra-precision mirror surface processing "Electrolytic Composite Polishing"

"Electrolytic composite polishing" that achieves a nano-level mirror finish.

This is a polishing method that achieves a nano-level ultra-smooth surface by simultaneously combining electrochemical polishing and physical polishing with abrasives. 【Features of Electrolytic Composite Polishing】 ◆ Achieves a high mirror finish at the nano level Even pure titanium can be finished to an average roughness of 0.002 µm (2 nm) from an average roughness of 0.2 µm. Furthermore, depending on the polishing conditions, it is also possible to achieve an average roughness of 0.001 µm (1 nm). ◆ No distortion of the metal surface due to heat In physical polishing, distortion of the metal surface due to heat may occur, but this does not happen in electrolytic composite polishing. ◆ Clean surface properties with minimal alteration No compressed altered layer forms on the metal surface. Additionally, there is no entrapment of abrasives, resulting in a very clean surface. ◆ High non-adhesiveness and cleanability A smooth metal surface exhibits excellent non-adhesiveness and cleanability. ◇◇ For more details, please download the catalog or contact us ◇◇

  • Metalwork

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Plastic molding and plastic molds - Mold surface mirror finishing

We carry out consistent production in-house from plastic product mold design, mold manufacturing, mold prototyping, to molding.

Our company provides a consistent production process in-house, including mold design, mold manufacturing, mold prototyping, and molding for plastic products. We also accept orders for processing that involves only mirror finishing on the product surface. The finishing of the mold surface varies depending on the mold material and customer requests, but it is possible to achieve up to #10,000, with a typical finish being around #2,000. 【Features】 ■ Processing that involves only mirror finishing on the product surface is also possible. ■ The typical finish is #8,000. *For more details, please refer to the PDF document or feel free to contact us.

  • others

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Plastic molding and plastic molds, convex free-form surface mirror processing.

The machined material is electroless Ni-P plating, with a surface roughness Ra of 0.007 μm. Here we introduce a technical example of mirror finishing for convex freeform surfaces.

We would like to introduce our company's technology case for "convex freeform mirror surface processing." Material being processed: Electroless Ni-P plating, Tool: r5 SCD cutting tool, Surface roughness ra: 0.007μm for a convex freeform mirror surface. The shape accuracy is Pv5.762μm. You can check the details in the PDF download below. 【Overview】 ■ Material being processed: Electroless Ni-P plating ■ Tool: r5 SCD cutting tool ■ Surface roughness ra: 0.007μm ■ Shape accuracy is Pv5.762μm *For more details, please refer to the PDF document or feel free to contact us.

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  • Processing Technology

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Citizen Electronics' precision machining technology: ultra-precision cutting and mirror finishing of freeform surfaces.

Ultimate mirror finish without polishing through cutting processes that contribute to various optical components! We accommodate flat, spherical, aspherical, and freeform surfaces.

Based on the precision plastic mold manufacturing technology developed through clock parts, we have formed expertise in mirror surface processing through the machining of optical components related to LEDs. By using cutting processing finishing, we can achieve complex mirror surface processing as per design specifications. Our capabilities range from flat surfaces to freeform surfaces, contributing to all types of optical components. 【Features】 - Achieves nanoscale surface processing without polishing - High shape and surface accuracy through cutting finishing - Processed under thorough temperature control - Capable of handling everything from mold manufacturing to injection molding *For more details, please visit our company website or feel free to contact us.

  • others

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