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首页> 外文期刊>Journal of Materials Science >Contact damage of hard and brittle thin films on ductile metallic substrates: an analysis of diamond-like carbon on titanium substrates
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Contact damage of hard and brittle thin films on ductile metallic substrates: an analysis of diamond-like carbon on titanium substrates

机译:韧性金属基材上硬而脆的薄膜的接触损伤:钛基材上类金刚石碳的分析

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摘要

Friction and wear minimizing coatings are crucial for applications in combustion engines and medical implants. Their performance is typically limited by mechanical failure especially due to local overload. In this work, the contact damage creation, evolution, and final morphology of hydrogenated diamond-like carbon (DLC)-coated titanium (Ti) substrates are investigated. The influence of the DLC film thickness and the elastic–plastic deformation of the Ti on the contact damage are studied by microindentation and static finite-element analysis. Film thickness, indenter radius, and applied load as well as the elastic–plastic deformation of the Ti are shown to significantly affect contact damage. A failure plot is presented with the location of first failure in the DLC and compared to the experimental observation. In addition, a case study with variable fracture toughness of the DLC and its influence on the failure plot is shown. The stress distribution in the DLC follows a transition from a membrane-like to a plate-like deformation behavior upon increasing the DLC film thickness. Thin DLC films reveal increased cracking in the inner zone of the indent, while thicker DLC films reveal pronounced edge cracking. These edge cracks were correlated to pop-ins in force–displacement curves upon microindentation. Finally, a film thickness optimization process is presented for hard and brittle films on soft and ductile metallic substrates.
机译:减少摩擦和磨损的涂层对于内燃机和医疗植入物的应用至关重要。它们的性能通常受机械故障(特别是由于局部过载)的限制。在这项工作中,研究了氢化钻石状碳(DLC)涂层钛(Ti)基材的接触损伤产生,演变和最终形态。通过微压痕和静态有限元分析研究了DLC膜厚度和Ti的弹塑性变形对接触损伤的影响。薄膜厚度,压头半径和施加的载荷以及Ti的弹塑性变形显示出对接触损伤的显着影响。出现故障图,其中包含DLC中的首次故障位置,并与实验观察结果进行比较。此外,还显示了一个DLC断裂韧性可变的案例研究及其对破坏曲线的影响。在DLC中的应力分布在增加DLC膜厚度时遵循从膜状到板状的变形行为的转变。薄的DLC膜显示出凹痕内部区域的裂纹增加,而较厚的DLC膜显示出明显的边缘裂纹。这些边缘裂纹与微压痕作用力-位移曲线中的弹跳相关。最后,提出了一种膜厚优化工艺,用于在柔软和易延展的金属基材上形成硬而脆的膜。

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  • 来源
    《Journal of Materials Science 》 |2015年第7期| 2779-2787| 共9页
  • 作者单位

    Laboratory for Nanometallurgy Department of Materials ETH Zurich">(1);

    Laboratory for Nanometallurgy Department of Materials ETH Zurich">(1);

    Laboratory for Mechanics of Materials and Nanostructures Empa Swiss Federal Laboratories for Materials Science and Technology">(2);

    Structure and Nano-/Micromechanics of Materials Max-Planck-Institute für Eisenforschung GmbH">(4);

    Empa Swiss Federal Laboratories for Materials Science and Technology">(3);

    Empa Swiss Federal Laboratories for Materials Science and Technology">(3);

    Laboratory for Nanometallurgy Department of Materials ETH Zurich">(1);

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