Place of Origin: | Hunan, China |
Brand Name: | Infi |
Model Number: | JSD |
Minimum Order Quantity: | 10pcs |
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Price: | To be negotiated |
Packaging Details: | packed in box then into carton |
Delivery Time: | 7 working days |
Payment Terms: | T/T, Western Union, PayPal |
Supply Ability: | 100pcs/7days |
Size: | 10x10x0.3mm | Color: | Colorless |
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Product Name: | Cvd Diamond Plate | Hardness (microhardness): | 80~150GPa |
Young's Modulus: | 1150~130OGPa | Thermal Expansion Coefficient: | 10-.K-l |
Coefficient Of Friction: | 0.05~0.05 | Thermal Conductivity: | 1500-2000 W/ (m·K) |
Highlight: | 10x10x0.3mm Lab Grown Diamond Seeds,Rough Lab Grown Diamond Seeds,CVD Diamond Plate Mechanical Grade |
Attribute | Value |
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Size | 10x10x0.3mm |
Color | Colorless |
Product Name | CVD Diamond plate |
Hardness (microhardness) | 80~150GPa |
Young's modulus | 1150~1300GPa |
Thermal expansion coefficient | 10-.K-l |
Coefficient of friction | 0.05~0.05 |
Thermal conductivity | 1500-2000 w/ (m·K) |
10x10x0.3mm CVD Diamond Seeds Lab Grown Rough Diamond CVD Diamond Plate Large Size For CVD Growing
Single crystal diamond CVD (chemical vapor deposition) refers to a type of diamond that is produced using the CVD process. In this process, a mixture of carbon-containing gases is decomposed under controlled conditions, resulting in the formation of a single crystal diamond layer on a substrate.
Compared to other forms of synthetic diamond, single crystal diamond CVD has a highly ordered crystal structure, which gives it improved physical and mechanical properties. This makes it a desirable material for a range of high-performance applications, where its hardness and thermal conductivity are important factors.
Diamond material has the highest thermal conductivity among natural materials known so far. The thermal conductivity of artificial CVD single crystal diamond is similar to that of natural diamond (up to 2200W/(m K), which is 7.5 times that of AIN and 4.5 times that of SiC. At the same time, diamond has the characteristics of stable chemical properties, high insulation, and small dielectric constant. Based on these excellent properties, single crystal diamond is the first choice for the next generation of high-power, high-frequency and low-power electronic device applications Material.
Using the microwave plasma-assisted chemical vapor deposition method (MPACVD), the microwave resonance system is used to break down the carbon-containing gas and corrosive gas at low and medium pressures to generate plasma, and the growth strategy of the single-crystal diamond crystal model is designed, so that the diamond crystal can be used Homoepitaxial growth is achieved in the 100 and 110 and 111 growth directions of the type IIb diamond seed crystal.
Contact Person: Mrs. Alice Wang
Tel: + 86 13574841950