High Frenquency Polishing Stone Media

High frequency polishing stone media is a metal surface polishing material. Its surface is fine and wear-resistant, and its hardness is dozens of times higher than that of ordinary polishing stones. Commonly used for aluminum alloy, zinc alloy, copper alloy, stainless steel, white iron, titanium alloy, resin (plastic) and other materials surface polishing, light cutting, fine polishing, vibration, surface treatment before chemical treatment, fine grinding before plating.

Product Specification:

Cylindrical 1.3 × 3, 1.5 × 5, 2 × 8, 2.5 × 8, 3 × 10, 3.5 × 10, 4 × 14, 4.5 × 14, 5 × 16, 7 × 23.

 

No matter it is rough grinding or fine grinding, burrs removal or finishing, if you want to achieve the effect, It is necessary to use the abrasive liquid and brightener together, because in the vibration grinding process, whether the surface of the part is bright, whether it can meet the requirements, the abrasive and brightener play a decisive role!

 

Product Specification:

Cylindrical 1.3 × 3, 1.5 × 5, 2 × 8, 2.5 × 8, 3 × 10, 3.5 × 10, 4 × 14, 4.5 × 14, 5 × 16, 7 × 23.

 

No matter it is rough grinding or fine grinding, burrs removal or finishing, if you want to achieve the effect, It is necessary to use the abrasive liquid and brightener together, because in the vibration grinding process, whether the surface of the part is bright, whether it can meet the requirements, the abrasive and brightener play a decisive role.

 

Product Application:

Vibration-type grinding and polishing machines, barrel-type grinding and polishing machines, centrifugal polishing machines, and eddy current finishing machines.

 

Zirconia Mirror Polishing Media

Zirconia Mirror Polishing Media is a specialized type of abrasive media designed for high-precision mirror finishing processes. Its unique composition of zirconia and other materials makes it an ideal choice for polishing a wide range of materials, including metals, ceramics, and composites. The uniform shape and size of the zirconia particles provide a smooth and consistent surface finish, making it an excellent choice for applications that require a high level of precision and accuracy.

One of the key benefits of Zirconia Mirror Polishing Media is its ability to produce a high-quality mirror finish, even on complex shapes. It is also highly effective in removing scratches, blemishes, and other imperfections, making it an excellent choice for a variety of surface preparation and finishing tasks.

 

Application:

Electronics Sector

Inks & Paints

Ceramic Materials

 

Sizes: Dia 1mm, Dia 2mm, Dia 3mm and others

 

Porcelain

Porcelain in ACT shape

Porcelain in ACC shape

Porcelain in Ball shape

Porcelain in SCE shape

Porcelain in GSCT shape

Porcelain in SCTl shape

Anti-Adhesion Beads

Anti-Adhesion Beads are a type of media used in mass finishing processes to improve the efficiency and consistency of the finishing process. They are added to the finishing solution along with other media such as ceramic beads, plastic pellets, or steel shot to prevent parts from sticking to the walls of the mass finishing machine or to each other. This helps to prevent scratches or other damage to the surface finish of the parts.

Anti-Adhesion Beads are typically spherical in shape and made of materials that are resistant to adhesion, such as Teflon, nylon, or other engineering plastics. They are chosen to be compatible with the finishing solution and the parts being finished.

The use of Anti-Adhesion Beads in mass finishing helps to improve the surface finish and geometry of the parts by allowing them to tumble freely in the machine. By preventing adhesion, the beads also reduce the risk of damage to the parts and the machine. In conclusion, Anti-Adhesion Beads play a crucial role in ensuring the efficiency and consistency of mass finishing processes.

 

Application:

Food and Beverage

Pharmaceutical Industries

Chemical Industry

 

Sizes: Dia 0.05 – 0.25mm, Dia 0.1 – 0.3mm & Dia 0.3 – 09mm.

 

For further information, you can contact our Sales Engineer, or you can contact us directly or here.