首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Micro-Slurry-jet Erosion (MSE) testing of CVD TiC/TiN and TiC coatings
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Micro-Slurry-jet Erosion (MSE) testing of CVD TiC/TiN and TiC coatings

机译:CVD TiC / TiN和TiC涂层的微浆喷射侵蚀(MSE)测试

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摘要

Several different experimental techniques are normally used to evaluate tribological properties of thin hard coatings. However, most of the tests cannot assess properties of coating, substrate and interface independently. In this study, the potential of a Micro-Slurry-jet Erosion (MSE) test to swiftly evaluate the intrinsic wear properties of thin single layered and multilayered coatings is demonstrated. A slurry containing 1.2 μm alumina particles was impacted at high velocity perpendicular to CVD TiC/TiN (TiN on top of TiC) and TiC coatings deposited on cemented carbide. In addition, nano-indentation and XRD, GDOES, AFM analyses were done for the original and worn surfaces. For the TiC/TiN coating, the wear depth of the TiN layer increased linearly until the TiC layer was reached. There after the wear occurred at a lower rate but tended to increase towards the TiC/substrate interlayer. The single layered TiC coating showed the same wear behaviour as the TiC layer of the TiC/TiN coating. The wear rate was constant within the individual TiN and TiC layers, but changed near the interfaces. The micro-topographies of the worn surfaces observed by AFM correlated to the difference in the wear rate of the individual layers and the change in wear rate at the interface to the substrate. The TiC layer proved to have about two times higher wear resistance than the TiN layer. Consequently, the MSE test can distinguish between small differences in the properties of the coatings and of the interlayer zones, and can be used as a screening test when evaluating multilayered as well as single layered coatings.
机译:通常使用几种不同的实验技术来评估薄硬涂层的摩擦学性能。但是,大多数测试无法独立评估涂层,基材和界面的性能。在这项研究中,证明了微泥浆喷射侵蚀(MSE)测试可以快速评估薄单层和多层涂层的固有磨损性能的潜力。垂直于CVD TiC / TiN(TiC顶部的TiN)和沉积在硬质合金上的TiC涂层,以高速冲击包含1.2μm氧化铝颗粒的浆液。此外,还对原始表面和磨损表面进行了纳米压痕和XRD,GDOES,AFM分析。对于TiC / TiN涂层,TiN层的磨损深度线性增加,直到达到TiC层。之后,磨损以较低的速率发生,但趋向于向TiC /衬底中间层增加。单层TiC涂层显示出与TiC / TiN涂层的TiC层相同的磨损行为。在各个TiN和TiC层中,磨损率是恒定的,但在界面附近会发生变化。通过AFM观察到的磨损表面的微观形貌与各层的磨损率的差异和与基材的界面处的磨损率的变化有关。事实证明,TiC层的耐磨性是TiN层的两倍。因此,MSE测试可以区分涂层和夹层区域的细微差别,并且可以用作评估多层和单层涂层的筛选测试。

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