Why do diamond products have such good thermal conductivity?
Category: Industry News
Jun 07,2022
Diamond productsThe main material is diamond, which is one of the materials with a high thermal conductivity coefficient, five times that of copper. The diamond atom consists of a simple carbon framework, which is an ideal molecular structure that can effectively transmit heat. Generally speaking, materials with simple chemical compositions and molecular structures tend to have high thermal conductivity values. This is why diamonds have different thermal conductivity coefficients.
The thermal conductivity and resistivity of diamond products are among the highest of all these materials. Utilizing this important characteristic, materials for electronic components and surface deposition of nanodiamond films can significantly reduce the size of their heat dissipation areas. This not only addresses the thermal conductivity issue but also provides possibilities for designing ultra-large-scale integrated circuits. Additionally, utilizing diamonds' excellent infrared penetration can enhance the infrared windows of satellites and high-power lasers. With the continuous innovation and development of social science management technology, diamonds will be applied in more and more fields in daily life.

Diamond products are an important component of many modern handheld electronic devices, playing a role in promoting heat dissipation and protecting sensitive computer components. The high thermal conductivity of diamonds also helps identify the authenticity of gemstones in jewelry; adding small amounts of diamond to tools and technologies can have a significant impact on their thermal conductivity.
The thermal conductivity of aluminum composite materials with diamond products largely depends on the preparation process, making composite processing methods particularly important in material research. There are various methods for preparing metal matrix composites. With advancements in technology and equipment, more new methods and processes are gradually emerging. Currently, mainstream preparation methods for diamond-alumina composites mainly include discharge plasma sintering, vacuum hot pressing sintering, pressureless infiltration, vacuum pressure infiltration, and extrusion casting.
Characteristic parameters of diamond products
Diamond productsThermal conductivity is one of the key factors affecting the thermal conductivity of composite materials. The thermal conductivity of diamond particles is related to their crystal structure and integrity. Synthetic diamonds require adding iron, nickel, cobalt, and manganese as catalysts during production; this introduces some impurities and defects within the diamond that inevitably reduce its intrinsic thermal conductivity.
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