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Brand Name : Chenguang
MOQ : 10pcs
Payment Terms : T/T, Western Union, PayPal
Available size : 1-50mm
Material : Diamond
Thermal Conductivity : Highest thermal conductivity of any material (2000-2500 W/mK)
Hardness : Extreme hardness (10 on Mohs scale)
Electrical Conductivity : High electrical resistivity
Biocompatibility : Biocompatible and non-toxic
Applications : Widely used in industrial, scientific, and medical applications
Production Method : Chemical Vapor Deposition (CVD)
Thickness : Can be grown to desired thickness
Size : Available in various sizes and shapes
Purity : High purity (>99.9%)
Wear Resistance : Excellent wear resistance
Price : To be negotiated
Packaging Details : packed in box then into carton
Delivery Time : 7 working days
Supply Ability : 100pcs/7days
Polycrystalline Chemical Vapor Deposition (CVD) diamond is a synthetic diamond material produced through a process called chemical vapor deposition. In this method, carbon-containing gases are decomposed at high temperatures, and the carbon atoms are deposited onto a substrate, forming a polycrystalline diamond layer. Unlike single-crystal diamonds, polycrystalline CVD diamond consists of numerous small diamond crystals, giving it unique properties.
Key Properties:
High Hardness: Comparable to natural diamond, making it extremely wear-resistant.
Excellent Thermal Conductivity: Ideal for heat dissipation in high-power applications.
Chemical Inertness: Resistant to most chemicals, suitable for harsh environments.
Electrical Insulation: Useful in electronic applications.
Applications:
Industrial Cutting and Grinding Tools: Due to its exceptional hardness, it is used in cutting, drilling, and grinding tools for machining hard materials.
Thermal Management: Its high thermal conductivity makes it ideal for heat spreaders in electronics, such as in high-power lasers and LED devices.
Optical Windows: Polycrystalline CVD diamond is used in infrared windows and lenses due to its transparency and durability.
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Synthetic Polycrystalline CVD Diamond Thermal Spreader High Hardness Synthetic Images |