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Improving wear resistance of aluminium alloys by developing FTC and TiC based composite coatings using plasma powder arc welding process

机译:通过使用等离子粉末弧焊工艺开发FTC和TiC基复合涂层来提高铝合金的耐磨性

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摘要

The aluminium alloys have enormous potentional of weight saving that are drastically gaining importance in the production of transport systems, for example, automobiles, aircraft and aerospace vehicles as well as in production of machines. Owing to the lack of sufficient abrasive wear resistance of aluminium components their application has, so far, been restricted. However, the application range of aluminium components will be extensible through the improvement of the abrasive wear resistance. The main objective of this work is the development of high wear resistant composite coatings on aluminium components by plasma transferred arc (PPA) welding. In this paper the development of the fused tungsten carbide and TiC based composite coatings with a thickness range of a few millimetres is presented. Aluminium alloys are used as matrix material and fused tungsten carbide and TiC are used as hard particles. The weldability of the powder systems with varying welding parameters is examined. The developed coating systems are tested with regard to their specific properties and their wear resistance. Finally, their application potential is presented.
机译:铝合金具有减轻重量的巨大潜力,在运输系统的生产中,例如在汽车,飞机和航空航天器的生产中以及在机器的生产中,铝合金的重要性日益显着。迄今为止,由于铝部件缺乏足够的耐磨性,因此其应用受到了限制。但是,铝构件的应用范围将通过提高耐磨性而扩展。这项工作的主要目的是通过等离子转移弧焊(PPA)焊接在铝部件上开发高耐磨复合涂层。在本文中,提出了厚度范围为几毫米的熔融碳化钨和TiC基复合涂层的开发。铝合金用作基质材料,熔融碳化钨和TiC用作硬质颗粒。研究了具有不同焊接参数的粉末系统的可焊接性。对开发的涂层系统进行了性能和耐磨性测试。最后,介绍了它们的应用潜力。

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