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Characterization and sliding behavior of HFCVD diamond coatings on WC-Co

机译:WC-Co上HFCVD金刚石涂层的表征和滑动行为

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The effect of three conditioning treatments (scratching, S; scratching and nitric acid etching, SE; scratching, Murakami etching and nitric acid etching, SM) on the properties and dry sliding wear behavior of diamond coatings on WC-Co substrates produced by hot filament CVD was investigated. In specimen S the critical strain energy G{sub}c for coating spallation was found to be similar to the available strain energy due to the residual stresses alone, G{sub}0. In the other two specimens, where cobalt was removed from the substrate surface before coating, G{sub}c was found to be 1.1 (specimen SE) and 1.8 (specimen SM) times G{sub}0. The dry sliding tests against an austenitic stainless steel counterface revealed, for all the coatings, a high run-in friction coefficient (about 0.6) followed by a tribological stage characterized by a very low friction coefficient (about 0.05). However, due to the high counterface ductility a transfer layer was soon formed, which increased friction coefficient and, thereby, the applied friction stress. In specimens S, this produced a rapid removal of the coating by buckling. In the other two specimens, only localized damage regions were detected, due to buckling for specimen SE and wedging for specimen SM. Additional sliding tests of specimen SM were carried out against an Al alloy counterface, a very soft material, and a granite, a very hard and brittle material, in order to highlight the influence of counterface on the dry sliding behavior of the coating. In the case of sliding against the Al alloy counterface, transfer phenomena started immediately after the run-in stage and a tribological stage with a low friction coefficient was not observed. In the case of sliding against granite, the friction coefficient continuously decreased during sliding tending to zero.
机译:三种调理处理(划痕,S;划痕和硝酸蚀刻,SE;划痕,村上蚀刻和硝酸蚀刻,SM)对由热丝生产的WC-Co基底上金刚石涂层的性能和干滑磨损行为的影响研究了CVD。在样品S中,发现涂层剥落的临界应变能G {sub} c与可用应变能相似,这是因为仅存在残余应力G {sub} 0。在另外两个样品中,在涂覆之前从基底表面除去了钴,发现G {sub} c是G {sub} 0的1.1(标本SE)和1.8(标本SM)。对于所有涂层,针对奥氏体不锈钢对接面的干滑试验表明,磨合摩擦系数高(约0.6),随后是摩擦系数极低的摩擦阶段(约0.05)。然而,由于高的对接面延展性,很快形成了转移层,这增加了摩擦系数,从而增加了施加的摩擦应力。在样品S中,这通过屈曲快速去除了涂层。在其他两个样本中,由于样本SE的弯曲和样本SM的楔入,仅检测到局部损坏区域。样品SM的其他滑动测试是针对非常柔软的铝合金表面和坚硬而脆性的花岗岩进行的,目的是强调反面对涂层干滑性能的影响。在与铝合金相对面滑动的情况下,在磨合阶段之后立即开始转移现象,并且未观察到摩擦系数低的摩擦学阶段。在花岗岩上滑动的情况下,摩擦系数在滑动过程中连续下降,趋于零。

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