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Sliding Wear Investigation of Suspension Sprayed WC-Co Nanocomposite Coatings.

机译:悬浮喷涂WC-Co纳米复合涂层的滑动磨损研究。

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摘要

Sliding wear evaluation of nanostructured coatings deposited by Suspension High Velocity Oxy-Fuel (S-HVOF) and conventional HVOF (Jet Kote (HVOF-JK) and JP5000 (HVOF-JP)) spraying were evaluated. S-HVOF coatings were nanostructured and deposited via an aqueous based suspension of the WC-Co powder, using modified HVOF (TopGun) spraying. Microstructural evaluations of these hardmetal coatings included X-ray Diffraction (XRD) and Scanning Electron Microscopy (SEM) equipped with Energy Dispersive X-ray Spectroscopy (EDX). Sliding wear tests on coatings were conducted using a ball-on-flat test rig against steel, silicon nitride (Si3N4) ceramic and WC-6Co balls. Results indicated that nanosized particles inherited from the starting powder in S-HVOF spraying were retained in the resulting coatings. Significant changes in the chemical and phase composition were observed in the S-HVOF coatings. Despite decarburization, the hardness and sliding wear resistance of the S-HVOF coatings was comparable to the HVOF-JK and HVOF-JP coatings. The sliding wear performance was dependent on the ball-coating test couple. In general a higher ball wear rate was observed with lower coating wear rate. Comparison of the total (ball and coating) wear rate indicated that for steel and ceramic balls, HVOF-JP coatings performed the best followed by the S-HVOF and HVOF-JK coatings. For the WC-Co ball tests, average performance of S-HVOF was better than that of HVOF-JK and HVOF-JP coatings. Changes in sliding wear behavior were attributed to the support of metal matrix due to relatively higher tungsten, and uniform distribution of nanoparticles in the S-HVOF coating microstructure. The presence of tribofilm was also observed for all test couples.
机译:评估了通过悬浮高速度含氧燃料(S-HVOF)和常规HVOF(Jet Kote(HVOF-JK)和JP5000(HVOF-JP))喷涂沉积的纳米结构涂层的滑动磨损评估。使用改良的HVOF(TopGun)喷涂,将S-HVOF涂层进行纳米结构化并通过WC-Co粉末的水基悬浮液进行沉积。这些硬质合金涂层的微观结构评估包括X射线衍射(XRD)和配备能量色散X射线光谱仪(EDX)的扫描电子显微镜(SEM)。使用对钢,氮化硅(Si3N4)陶瓷和WC-6Co球进行的平球测试台对涂层进行滑动磨损测试。结果表明,在S-HVOF喷涂中从起始粉末继承的纳米级颗粒保留在所得涂层中。在S-HVOF涂层中观察到化学和相组成的重大变化。尽管进行了脱碳处理,但S-HVOF涂层的硬度和抗滑动磨损性能与HVOF-JK和HVOF-JP涂层相当。滑动磨损性能取决于球涂测试对。通常,观察到较高的球磨损率和较低的涂层磨损率。总磨损率的比较表明,对于钢球和陶瓷球,HVOF-JP涂层表现最好,其次是S-HVOF和HVOF-JK涂层。对于WC-Co球测试,S-HVOF的平均性能优于HVOF-JK和HVOF-JP涂层。滑动磨损行为的变化归因于钨含量较高的金属基体的支撑,以及S-HVOF涂层微观结构中纳米颗粒的均匀分布。在所有测试对中也观察到了摩擦膜的存在。

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