4.7 Article

High-pressure synthesis and performance analysis of WC-cBN-MoS2 self-lubricating ceramic composites

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ELSEVIER SCI LTD
DOI: 10.1016/j.ijrmhm.2022.105989

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High pressure high temperature; Tungsten carbide; Cubic boron nitride; Self-lubrication; MoS2

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WC-cBN-MoS2 self-lubricating ceramics with excellent self-lubricating and mechanical properties were synthesized using high pressure and high temperature sintering method. The interrelationship between mechanical and self-lubricating properties was analyzed and self-lubricating performance optimization criterion were proposed accordingly.
WC-cBN-MoS2 self-lubricating ceramics were synthesized by using high pressure and high temperature sintering method. An analytical model of the self-lubricating properties has been developed to reveal the interrelationship between mechanical and self-lubricating properties. The influence of mechanical and self-lubricating properties of ceramics on the wear rate were analyzed. Self-lubricating performance optimization criterion are proposed accordingly. It was found that MoC, WS2 can be formed during sintering, which can ensure self-lubricating and low temperature sintering properties. Adhesive wear is the main wear mechanism, the extent of which varies with the content of self-lubricating components. The high modulus of elasticity is the main reason for the excellent self-lubricating and mechanical properties of composites. The well-sintered WC-cBN-MoS(2 )bulks present an excellent self-lubricating property with a hardness of 26.3 GPa and fracture toughness of 10.5 MPa.m(1/2), which is improved at least by 52% and 46% respectively compared with the traditional self-lubricating ceramics.

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