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Mechanical property of Fe-base metallic glass coating formed by gas tunnel type plasma spraying

机译:气体隧道式等离子喷涂形成的铁基金属玻璃涂层的力学性能

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Metallic glass has excellent functions such as high toughness and corrosion resistance. Therefore it is one of the most attractive materials, and many researchers have conducted various developmental research works. However, the metallic glass material is expensive and a composite material is preferred for the industrial application. Thermal spraying method is one of potential candidates to produce metallic glass composites. The gas tunnel type plasma system, which has high energy density and efficiency, is useful for smart plasma processing to obtain high quality ceramic coatings such as alumina (Al2O3) and zirconia (ZrO2) coatings. Also, the gas tunnel type plasma spraying can produce metallic glass coatings. In this study, the Fe-base metallic glass coatings were formed on the stainless-steel substrate by the gas tunnel type plasma spraying, and the microstructure and mechanical property were investigated. The Fe-base metallic glass coatings of about 200 mu m in thickness were dense with a Vickers hardness of about Hv = 1100 at plasma current of 300 A. The abrasive wear resistance of Fe-base metallic glass coating was higher than the SUS substrate. (C) 2007 Elsevier B.V. All rights reserved.
机译:金属玻璃具有优异的功能,例如高韧性和耐腐蚀性。因此,它是最有吸引力的材料之一,许多研究人员进行了各种开发研究工作。然而,金属玻璃材料是昂贵的,并且复合材料对于工业应用是优选的。热喷涂方法是生产金属玻璃复合材料的潜在候选方法之一。具有高能量密度和效率的气体隧道型等离子体系统可用于智能等离子体处理,以获得高质量的陶瓷涂层,例如氧化铝(Al2O3)和氧化锆(ZrO2)涂层。同样,气体隧道式等离子喷涂可产生金属玻璃涂层。在这项研究中,通过气体隧道式等离子喷涂在不锈钢基体上形成了铁基金属玻璃涂层,并研究了其微观结构和力学性能。在300 A的等离子电流下,厚度约为200μm的Fe基金属玻璃涂层致密,维氏硬度约为Hv =1100。Fe基金属玻璃涂层的耐磨性高于SUS基材。 (C)2007 Elsevier B.V.保留所有权利。

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