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首页> 外文期刊>Tribology International >Co & ndash;P alloy matrix composite deposits reinforced by nano-MoS2 solid lubricant: An alternative tribological coating to hard chromium coatings
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Co & ndash;P alloy matrix composite deposits reinforced by nano-MoS2 solid lubricant: An alternative tribological coating to hard chromium coatings

机译:CO&Ndash;纳米MOS2固体润滑剂加固P合金基质复合沉积物:硬铬涂料的替代摩擦学涂层

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摘要

The hard chromium coatings have drawn vast attention due to their fascinating tribological behavior, however, there is a serious determination to alleviate their industrial applications. In this assay, an attempt is made to evaluate whether the electrodeposited Co?P?MoS2 films with various loadings of MoS2 nanoparticles, 0?20 g/L, fabricated under different current densities from 20 to 35 A dm-2 are suitable alternative tribological coatings to hard chromium. The tribomechanical behavior of layers was assessed using Vickers microhardness and pin-ondisc surveys. Co?P-10 g/L MoS2 film obtained at 25 A dm-2 offers the highest wear resistance. An increase of 18% in microhardness, a decrease of 50% in the coefficient of friction, and a decrease of 95% in wear volume loss are obtained.
机译:硬铬涂层因其优异的摩擦学性能而受到广泛关注,然而,缓解其工业应用却有着重大的决心。在该分析中,试图评估电沉积的Co?P不同负载量的MoS2纳米颗粒的MoS2薄膜,0?20 g/L,在20至35 A dm-2的不同电流密度下制备,是硬铬的合适替代摩擦学涂层。使用维氏显微硬度和pin-ondisc测量评估了各层的摩擦力学行为。有限公司?在25 A dm-2下获得的P-10 g/L MoS2薄膜具有最高的耐磨性。显微硬度提高18%,摩擦系数降低50%,磨损体积损失降低95%。

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