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Comparative study of wear performance of ceramic/iron composite coatings under two different wear modes

机译:两种不同磨损模式下陶瓷/铁复合涂层磨损性能的比较研究

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摘要

WC-SHA coatings (SHA: high carbon iron alloy) with varying WC contents were successfully fabricated on Al-Mg-Si alloy substrates by resistance seam welding. The microstructures and phase compositions were investigated. Wear performance of the coatings was evaluated by both rubber wheel test and ball-on-disc test. The results showed that dense and thick WC-SHA coatings, consisting of WC reinforcement, SHA binder, A6061 and FeAl3, were fabricated on A6061 alloy using different powders. With increasing the contents of WC particles, the surface wear resistance and hardness increases. Moreover, the WC particles behaved significantly different during different wear tests, resulting in different wear mechanisms of the coating. In rubber wheel test, the WC particles relieved the abrasive wear on A6061 and SHA components from abrasive particles. While in ball-on-disc test, the WC particles supported the pressure from counterpart and protected other components until the WC particles were peeled off, leading to three body abrasive wear. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过电阻焊缝焊接在Al-Mg-Si合金基板上成功制造了WC-SHA涂层(SHA:高碳铁合金)。研究了微观结构和相组合物。通过橡胶轮测试和球盘测试评估涂层的磨损性能。结果表明,采用不同粉末的A6061合金制造了由WC加固,SHA粘合剂,A6061和FEAL3组成的致密和厚的WC-SHA涂层。随着WC颗粒的含量增加,表面耐磨性和硬度增加。此外,在不同的磨损试验期间,WC颗粒的表现显着不同,导致涂层的不同磨损机构。在橡胶轮测试中,WC颗粒在磨料颗粒上放松了A6061和SHA部件上的研磨磨损。虽然在球盘测试中,WC颗粒来自对应物的压力并受到保护的其他组分,直到剥离WC颗粒,导致三个体磨料磨损。 (c)2016 Elsevier B.v.保留所有权利。

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