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An experimental methodology for characterizing fracture of hard thin films under cyclic contact loading

机译:表征循环接触载荷下硬质薄膜断裂的实验方法

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摘要

Hard thin films are often employed as protective coatings for metal substrates and their fatigue/fracture property (especially that under contact) needs to be sufficiently understood. In this study, we present a combined experimental/computational framework for exploring the fracture characteristics of hard thin films upon both monotonic and cyclic contacts. The techniques of acoustic emission and corrosion potential fluctuation are combined to monitor the mode and initiation of crack, and numerical simulations based on the finite element method provide further information on the criterion of film fracture. For a model system of a TiN film physical vapor deposited onto a stainless steel substrate, ring cracks are produced when the stress in the film exceeds critical - such a critical moment arrives when the substrate undergoes excessive deformation, which makes the curvature of film bending critical just outside the contact zone. Since cyclic contact loading encourages large plastic deformation of substrate due to ratcheting plasticity, it is found that the critical contact force degrades, compared with monotonic loading. The present experimental/ computational methodology is useful for obtaining the information of film fracture property under both monotonic and cyclic contact loads.
机译:硬质薄膜通常用作金属基材的保护涂层,需要充分了解其疲劳/断裂性能(尤其是在接触状态下)。在这项研究中,我们提出了一个组合的实验/计算框架,用于探索硬质薄膜在单调和循环接触下的断裂特性。结合声发射和腐蚀电位波动技术来监测裂纹的模式和产生,基于有限元方法的数值模拟为薄膜断裂的判据提供了进一步的信息。对于将TiN薄膜物理气相沉积到不锈钢基材上的模型系统,当薄膜中的应力超过临界值时会产生环形裂纹-当基材经历过度变形时,临界时刻到来,这使得薄膜弯曲的曲率变得至关重要就在接触区之外。由于周期性接触载荷会由于棘轮塑性而促使基材发生较大的塑性变形,因此发现与单调载荷相比,临界接触力会降低。本实验/计算方法学对于在单调和循环接触载荷下获得薄膜断裂性能的信息是有用的。

著录项

  • 来源
    《Thin Solid Films》 |2010年第8期|2082-2089|共8页
  • 作者

    Akio Yonezu; Baoxing Xu; Xi Chen;

  • 作者单位

    Department of Mechanical Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka, Japan;

    rnDepartment of Earth and Environmental Engineering, MC 4711, Columbia University, 500 W 120th Street, New York, NY 10027, USA;

    rnDepartment of Earth and Environmental Engineering, MC 4711, Columbia University, 500 W 120th Street, New York, NY 10027, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    indentation; fatigue; fracture; thin film;

    机译:缩进;疲劳;断裂;薄膜;

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