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首页> 外文期刊>Journal of Tribology >Numerical Analysis of the Effect of Coating Microstructure on Three-Dimensional Crack Propagation in the Coating Under Rolling Contact Fatigue Conditions
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Numerical Analysis of the Effect of Coating Microstructure on Three-Dimensional Crack Propagation in the Coating Under Rolling Contact Fatigue Conditions

机译:滚动接触疲劳条件下涂层微观结构对涂层三维裂纹扩展影响的数值分析

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摘要

Hard protective coatings produced by the physical vapor deposition (PVD) processes can potentially be used to prevent rolling contact fatigue (RCF) failures in gears and rolling bearings. Although TiN appears to be an attractive material for such applications, the RCF performance of PVD TiN coatings is limited by their columnar microstructure. One possible solution is to use interlayers interrupting the column growth in TiN to achieve a more equiaxed grain morphology. In this paper, the effect of the coating layer structure on the propagation of a three-dimensional crack through the coating thickness is studied theoretically. Numerical simulations of both planar and kinked three-dimensional cracks under cyclic contact loading are performed using a new numerical approach recently developed by the authors, which is based on a combination of the fast Fourier transform (FFT) technique, the eigenstrain theory, and the conjugate gradient method. The simulation results indicate that high-endurance TiN-based coatings can in principle be produced by alternating relatively thick TiN layers with much thinner interlayers made of another material.
机译:通过物理气相沉积(PVD)工艺产生的硬质保护涂层可潜在地用于防止齿轮和滚动轴承中的滚动接触疲劳(RCF)故障。尽管TiN似乎是此类应用的诱人材料,但PVD TiN涂层的RCF性能受到其柱状微结构的限制。一种可能的解决方案是使用中间层来中断TiN中柱的生长,以实现更加等轴的晶粒形态。本文从理论上研究了涂层结构对三维裂纹在涂层厚度范围内扩展的影响。作者最近使用一种新的数值方法对平面和扭折的三维裂纹进行了数值模拟,该方法是基于快速傅里叶变换(FFT)技术,本征应变理论和应变理论的结合而开发的。共轭梯度法。模拟结果表明,原则上可以通过将相对较厚的TiN层与由另一种材料制成的更薄的中间层交替来生产高耐久性的TiN基涂层。

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