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Impact Wear Performance of Thin Hard Coatings on TiC Cermets

机译:薄硬质涂层对TiC金属陶瓷的冲击磨损性能

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摘要

During metal forming processes like deep drawing of steel, tools are subjected to various loads. Besides adhesion, abrasion, and tribo-oxidation, successive impacts during forming induce Herzian contact pressures and cause fatigue failure. The present study focuses on TiC-based composites with Ni/Mo binders and thin coatings (TiN, (Ti,AI)N, TiCN, nc-(AI,Ti)N/x-Si_3N_4) produced by the physical vapor deposition technique. The adhesion of the coatings was characterized by Rockwell test and nano-scratch tests in single- and multi-scratch mode. The impact wear tests were performed using the rotating hammer-type surface fatigue wear tester for single spot testing. The effect of substrate surface roughness on the overall substrate/coating system was investigated. Selected surface contact damage sites in all materials were subjected to close examination by high power optical microscopy. Nanocomposite nc-(AI,Ti)N/x-Si_3N_4 coatings showed the highest hardness value. In addition, these coatings also have lower modulus values, which make them the best candidate for demanding wear applications. TiCN coatings have the second highest hardness value, but due to poor adhesion qualities, especially at higher roughness values, delamination was found to be present even directly after the coating process without any load. This is assumed to be related to the higher inherent residual stresses of TiCN coatings with TiC-Ni/Mo cermets. In this system the gradient nature of the top layer and presence of more ductile additional layer provide better performance in impact wear conditions.
机译:在诸如钢的深冲之类的金属成形过程中,工具承受各种载荷。除了粘附,磨损和摩擦氧化外,成型过程中的连续冲击还会引起Herzian接触压力并导致疲劳破坏。本研究的重点是通过物理气相沉积技术生产的具有Ni / Mo粘结剂和薄涂层(TiN,(Ti,Al)N,TiCN,nc-(AI,Ti)N / x-Si_3N_4)的TiC基复合材料。通过罗克韦尔测试和纳米划痕测试以单划痕和多划痕模式表征涂层的附着力。冲击磨损测试是使用旋转锤式表面疲劳磨损测试仪进行的单点测试。研究了基材表面粗糙度对整个基材/涂层系统的影响。通过高功率光学显微镜对所有材料中选定的表面接触损伤部位进行了仔细检查。纳米复合nc-(Al,Ti)N / x-Si_3N_4涂层显示出最高的硬度值。此外,这些涂层还具有较低的模量值,这使其成为要求苛刻的磨损应用的最佳选择。 TiCN涂层具有第二高的硬度值,但是由于较差的附着力质量,尤其是在较高的粗糙度值下,即使在没有任何负载的涂层过程之后,也立即发现了分层现象。认为这与使用TiC-Ni / Mo金属陶瓷的TiCN涂层固有的较高残余应力有关。在该系统中,顶层的梯度性质和更具延展性的附加层的存在在冲击磨损条件下提供了更好的性能。

著录项

  • 来源
    《18th International IFHTSE congress》|2010年|404-419|共16页
  • 会议地点 Rio de Janeiro(BR)
  • 作者单位

    Dept. of Materials Engineering, Tallinn Univ. of Technology, Ehitajate tee 5, Tallinn,Estonia;

    Dept. of Materials Engineering, Tallinn Univ. of Technology, Ehitajate tee 5, Tallinn,Estonia;

    Faculty of Mechanical Engineering, RWTH Aachen, Templergraben 55, 52056, Aachen,Germany;

    Centre for Materials Research, Tallinn Univ. of Technology, Ehitajate tee 5, Tallinn,Estonia;

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

    TiC cermets, PVD coating, fatigue testing;

    机译:TiC金属陶瓷,PVD涂层,疲劳测试;
  • 入库时间 2022-08-26 14:04:04

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