China Titanium Coating Supplier | Factory for Diamond Protection & Heat Dissipation Solutions
Descriptions
Coated metal can improve heat dissipation and reduce heat damage, thus protecting the diamond by decreasing diamond carbonization when sintering at ultrahigh temperatures.
Roughening the diamond particle surface enhances the mechanical retention between the diamond and the bonds.
Chemical Nickel Coating
Mainly designed for resin bond products.
Electroplated Nickel Coating
Mainly designed for resin bond products.
Copper Coating
Mainly designed for metal bond products.
Ti Coating
Mainly designed for metal and ceramic bond products.
- Increase the strength of diamond and provide longer tool life.
- Improves the retention force between diamond and bond.
- Prevents diamond surfaces from chemical etching and oxidation.
- Helps in heat dissipation, withstand the highest grinding force and temperature.
Frequently Asked Questions
How does coated metal protect the diamond during sintering?
Coated metal improves heat dissipation and reduces heat damage, which decreases diamond carbonization when sintering at ultrahigh temperatures.
What is the benefit of roughening the diamond particle surface?
Roughening the diamond particle surface enhances the mechanical retention between the diamond and the bond materials, resulting in a stronger connection.
What specifications are available for the diamond coating?
Currently, we offer a 2% coated (by weight) specification.
Which coating types correspond to which bond products?
Chemical nickel and electroplated nickel coatings are mainly for resin bond products. Copper coating is mainly for metal bond products. Ti (Titanium) coating is mainly used for metal and ceramic bond products.
How does the coating prevent chemical damage to the diamond?
The coating acts as a barrier that prevents the diamond surfaces from experiencing chemical etching and oxidation during operation.
Can these coatings withstand high grinding forces?
Yes, the coating increases the strength of the diamond and improves the overall retention force, allowing it to withstand the highest grinding forces and temperatures.
