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Application of Nano-Crystalline Diamond in Tribology

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MATERIALS
卷 16, 期 7, 页码 -

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MDPI
DOI: 10.3390/ma16072710

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nano-crystalline diamond; tribology; friction reduction; wear resistance

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Nano-crystalline diamond has been extensively researched and applied in various fields, including tribology, optics, quantum information and biomedicine. It outperforms other materials in terms of wear resistance due to its hardness. Nano-crystalline diamond coatings can have a friction coefficient as low as single-crystal diamonds, making them ideal for friction reduction and wear resistance.
Nano-crystalline diamond has been extensively researched and applied in the fields of tribology, optics, quantum information and biomedicine. In virtue of its hardness, the highest in natural materials, diamond outperforms the other materials in terms of wear resistance. Compared to traditional single-crystalline and poly-crystalline diamonds, nano-crystalline diamond consists of disordered grains and thus possesses good toughness and self-sharpening. These merits render nano-crystalline diamonds to have great potential in tribology. Moreover, the re-nucleation of nano-crystalline diamond during preparation is beneficial to decreasing surface roughness due to its ultrafine grain size. Nano-crystalline diamond coatings can have a friction coefficient as low as single-crystal diamonds. This article briefly introduces the approaches to preparing nano-crystalline diamond materials and summarizes their applications in the field of tribology. Firstly, nano-crystalline diamond powders can be used as additives in both oil- and water-based lubricants to significantly enhance their anti-wear property. Nano-crystalline diamond coatings can also act as self-lubricating films when they are deposited on different substrates, exhibiting excellent performance in friction reduction and wear resistance. In addition, the research works related to the tribological applications of nano-crystalline diamond composites have also been reviewed in this paper.

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