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首页> 外文期刊>Tribology in Industry >Wear Micro-Mechanisms of Composite WC-Co/Cr - NiCrFeBSiC Coatings. Part I: Dry Sliding
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Wear Micro-Mechanisms of Composite WC-Co/Cr - NiCrFeBSiC Coatings. Part I: Dry Sliding

机译:WC-Co / Cr-NiCrFeBSiC复合涂层的磨损微观机制。第一部分:干滑

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The influence of the cermet fraction in cermet/ metal composite coatings developed by High-Velocity Oxyfuel Flame (HVOF) spraying on their tribological behaviour was studied. Five series of coatings, each one containing different proportion of cermet-metal components, prepared by premixing commercially available feedstocks of NiCrFeBSiC metallic and WC-Co/Cr cermet powders were deposited on AISI 304 stainless steel substrate. The microstructure of as-sprayed coatings was characterized by partial decomposition of the WC particles, lamellar morphology and micro-porosity among the solidified splats. Tribological behavior was studied under sliding friction conditions using a Si3N4 ball as counterbody and the friction coefficient and volume loss were determined as a function of the cermet fraction. Microscopic examinations of the wear tracks and relevant cross sections identified the wear mechanisms involved. Coatings containing only the metallic phase were worn out through a combination of ploughing, micro-cracking and splat exfoliation, whilst those containing only the cermet phase primarily by micro-cracking at the individual splat scale. The wear mechanisms of the composite coatings were strongly affected by their randomly stratified structure. In-depth cracks almost perpendicular to the coating/ substrate interface occurring at the wear track boundaries resulted in cermet trans-splat fracture.
机译:研究了高速火焰火焰喷涂(HVOF)喷涂金属陶瓷/金属复合涂层中金属陶瓷成分对其摩擦学性能的影响。通过将NiCrFeBSiC金属和WC-Co / Cr金属陶瓷粉末的市售原料进行预混合而制得的五种系列涂层(每个涂层包含不同比例的金属陶瓷成分)沉积在AISI 304不锈钢基底上。喷涂后的涂层的微观结构的特征是,WC颗粒部分分解,层状形态和凝固孔之间的微孔。在以Si3N4球为对体的滑动摩擦条件下研究了摩擦学行为,并确定了摩擦系数和体积损失与金属陶瓷分数的关系。磨损轨迹和相关横截面的微观检查确定了所涉及的磨损机理。通过犁耕,微裂纹和剥落剥落的组合,仅包含金属相的涂层被磨损,而仅包含金属陶瓷相的涂层则主要通过在单个裂片上的微裂纹来磨损。复合涂层的磨损机理受到其随机分层结构的强烈影响。在磨损轨迹边界处发生的几乎垂直于涂层/基材界面的深度裂纹导致金属陶瓷横裂断裂。

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