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首页> 外文期刊>Journal of Materials Research >Contact damage evolution in diamondlike carbon coatings on ductile substrates
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Contact damage evolution in diamondlike carbon coatings on ductile substrates

机译:韧性基底上类金刚石碳涂层的接触损伤演变

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A diamondlike carbon (DLC) thin film was deposited onto a stainless steel substrate using a plasma-enhanced chemical vapor deposition (PECVD) process. Nanoindentation, coupled with focused-ion-beam (FIB) milling, was used to investigate contact-induced deformation and fracture in this coating system. Following initial elastic contact between the coating and the indenter and apparent plastic yield of the substrate, pop-ins were observed in the load-displacement curve, indicative of coating fracture. However, FIB cross-sectional images of indentations revealed the presence of ring, radial, and lateral cracks at loads much lower than the critical load for the first observed pop-ins. Finite element modeling was used, and the properties of the substrate and the film were calibrated by fitting the simulated load-displacement curves to experimental data. Then, based upon the experimental observations of damage evolution in this coating system, the stress distributions relevant to initiate ring, radial, and lateral cracks in the coating were ascertained. Furthermore, the effects of substrate yield stress and coating residual stress on the formation of these cracks were investigated.
机译:使用等离子增强化学气相沉积(PECVD)工艺将类金刚石碳(DLC)薄膜沉积到不锈钢基板上。纳米压痕结合聚焦离子束(FIB)铣削,用于研究这种涂层系统中接触引起的变形和断裂。在涂层和压头之间最初的弹性接触以及基材的表观塑性屈服之后,在载荷-位移曲线中观察到弹跳,表明涂层破裂。但是,FIB压痕的横截面图像显示,在远低于首次观察到的弹夹的临界载荷的载荷下,存在环形,径向和横向裂纹。使用有限元建模,并且通过将模拟的载荷-位移曲线拟合到实验数据来校准衬底和薄膜的特性。然后,基于在该涂层系统中损伤演变的实验观察,确定了与涂层中产生环,径向和侧向裂纹有关的应力分布。此外,研究了基底屈服应力和涂层残余应力对这些裂纹形成的影响。

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