Nano SiC powder 150-200nm for Electroplating solution

Nano SiC powder 150-200nm for Electroplating solution

Nano SiC powder is an excellent additives for Electroplating solution. Particle size of 150-200nm with of α-SiC and β-SiC are both works.

Here are some advantages of it:

1. Enhance the wear resistance and hardness of the coating.

Nano silicon carbide particles can be embedded into metal coatings, significantly improving the hardness and wear resistance of the coatings. This is because silicon carbide itself has extremely high hardness, which can effectively resist external wear and erosion, thereby extending the service life of the coating.

2. Improve the uniformity and adhesion of the coating.

The addition of nano SiC powder can improve the grain growth and distribution during the electroplating process, making the coating more uniform. Meanwhile, nanoparticles can enhance the interface strength between the coating and the substrate, improve the adhesion of the coating, and reduce the risk of coating peeling.

3. Improve the corrosion resistance of the coating.

Nano silicon carbide particles can fill the tiny pores in the coating, reduce the penetration path of external corrosive media, and thus improve the corrosion resistance of the coating. This is particularly important for components used in harsh environments.

4. Adjust the conductivity and thermal conductivity of the coating.

Due to the certain conductivity and thermal conductivity of silicon carbide, adding it to the plating solution can adjust the conductivity and thermal conductivity of the final coating, which is very helpful for application scenarios that require special conductivity or heat dissipation performance.

In summary, the application of nano silicon carbide in electroplating solutions can significantly improve the overall performance of metal coatings, especially in terms of wear resistance, hardness, adhesion, and corrosion resistance. These improvements enable coatings containing nano silicon carbide to perform excellently in various high-performance applications.

Send your message to us:

Scroll to Top