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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Hardness effect of stainless steel substrates on tribological properties of water-lubricated DLC films against AISI 440C ball
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Hardness effect of stainless steel substrates on tribological properties of water-lubricated DLC films against AISI 440C ball

机译:不锈钢基材的硬度对水润滑DLC膜对AISI 440C球的摩擦学性能的影响

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摘要

Diamond-like carbon (DLC) films were deposited on stainless steel substrates with different hardness by thermal electron excited plasma CVD method, and their tribological properties in water-lubricated conditions were investigated. EDS was used to estimate the wear of the films. The results show that the hardness of the substrates has little effect on the friction and, the wear loss of the films is much smaller than that measured by an optical interferometer. The deep wear track is mainly due to the plastic deformation of the substrates and the films but not due to wear. However, the failure of the films is closely related to the hardness of their substrates. The harder the substrate, the higher the failure-resistant capability. The film deposited on a soft substrate is easy to crack and fail due to the low deformation resistance of the substrate and rubbing at a high contact-pressure. On the other hand, the wear of the counter balls increases with the hardness of the substrates.
机译:通过热电子激发等离子体CVD法在不同硬度的不锈钢基底上沉积类金刚石碳(DLC)膜,并研究了其在水润滑条件下的摩擦学性能。 EDS用于估计薄膜的磨损。结果表明,基材的硬度对摩擦几乎没有影响,并且薄膜的磨损损失比用光学干涉仪测量的要小得多。较深的磨损轨迹主要是由于基材和薄膜的塑性变形,而不是由于磨损。然而,薄膜的失效与它们的基材的硬度密切相关。基材越硬,抗故障能力越高。沉积在软基底上的膜易于破裂,并且由于基底的低变形阻力和在高接触压力下的摩擦而破裂。另一方面,对应球的磨损随着基板的硬度而增加。

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