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Diamond coatings on tungsten carbide and their erosive wear properties

机译:碳化钨上的金刚石涂层及其腐蚀磨损性能

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Diamond coatings up to similar to 60-mum thick have been grown by microwave plasma CVD (MPCVD) on sintered tungsten carbide (WC) substrates, and their erosive wear properties are investigated under high velocity air-sand erosion testing. Two different sintered tungsten carbide (WC) substrates have been investigated and compared, the binder being either 6% Co or 5% Ni by weight. Significant differences in morphology, residual stress, adhesion and erosion performance are seen as a function of pre-deposition treatment, deposition conditions and the source of the substrates. Adherent coatings could be deposited to a thickness of similar to 35 mum. They offer significantly better erosion resistance compared to uncoated substrates, with the erosion rate being lowered by up to a factor between similar to 5 and 20 for particle test velocities of 148 and 63 m s(-1), respectively. The steady-state erosion rates of the coatings are a function of a gradual micro-chipping mechanism. However, the life of the coating is dependent on the progression of sub-surface damage promoted by sub-surface shear stresses associated with the particle impacts. It is thought that the coating debonding is driven by the shear stresses interacting with the grain boundary porosity at the substrate/coating interface. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 43]
机译:已经通过微波等离子体CVD(MPCVD)在烧结的碳化钨(WC)基底上生长了厚度接近60微米的金刚石涂层,并在高速风沙腐蚀测试下研究了它们的腐蚀磨损性能。已经研究和比较了两种不同的烧结碳化钨(WC)基体,该粘合剂是按重量计6%的Co或5%的Ni。形态,残余应力,附着力和腐蚀性能的显着差异被视为预沉积处理,沉积条件和基材来源的函数。可以将附着的涂层沉积到大约35毫米的厚度。与未涂覆的基材相比,它们提供了更好的耐蚀性,对于148和63 m s(-1)的颗粒测试速度,其腐蚀速率降低了近5到20之间。涂层的稳态腐蚀速率是渐进式微碎屑机制的函数。但是,涂层的寿命取决于与颗粒碰撞相关的次表面剪切应力促进的次表面损伤的进展。可以认为,涂层的剥离力是由与基体/涂层界面处的晶界孔隙率相互作用的剪切应力驱动的。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:43]

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