Tantalum Carbide Coated Plate

Tantalum carbide coating is an advanced surface coating technology that uses tantalum carbide material to form a hard, wear-resistant and corrosion-resistant protective layer on the surface of the substrate. This coating has excellent properties that significantly increase the material’s hardness, high temperature resistance and chemical resistance, while reducing friction and wear. Tantalum carbide coatings are widely used in various fields, including industrial manufacturing, aerospace, automotive engineering and medical equipment, to extend material life, improve production efficiency and reduce maintenance costs. Whether protecting metal surfaces from corrosion or enhancing the wear resistance and oxidation resistance of mechanical parts, tantalum carbide coatings provide a reliable solution for a variety of applications.

Semicera biedt gespecialiseerde tantalum carbide (TAC) coatings voor verschillende componenten en dragers. Semicera toonaangevend coatingproces stelt tantalum carbide (TAC) coatings in staat om een ​​hoge zuiverheid, stabiliteit met hoge temperatuur en hoge chemische tolerantie te bereiken, de productkwaliteit van SIC/GAN -kristallen en EPI -lagen te verbeteren ((Graphiet gecoate TAC Susceptor), and extending the life of key reactor components. The use of tantalum carbide TaC coating is to solve the edge problem and improve the quality of crystal growth, and Semicera Semicera has breakthrough solved the tantalum carbide coating technology (CVD), reaching the international advanced level.

 

Na jaren van ontwikkeling heeft Semicera de technologie veroverd van CVD TAC met de gezamenlijke inspanningen van de R & D -afdeling. Defecten zijn gemakkelijk op te treden in het groeiproces van SIC -wafels, maar na het gebruik TAC, the difference is significant. Below is a comparison of wafers with and without TaC, as well as Simicera’ parts for single crystal growth 

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met en zonder tac

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Na het gebruik van TAC (rechts)

In addition, the service life of Semicera’s TaC coating products is longer and more resistant to high temperature than that of SiC coating. After a long time of laboratory measurement data, our TaC can work for a long time at a maximum of 2300 degrees Celsius. The following are some of our samples:

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(a) Schematic diagram of SiC single crystal ingot growing device by PVT method (b) Top TaC coated seed bracket (including SiC seed) (c) TAC-coated graphite guide ring

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