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Effect of Heat Treatment on the Al-Cu Feedstock Powders for Cold Spray Deposition

机译:热处理对冷喷雾沉积的铝原料粉末的影响

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This paper examines the effects of heat treatment on the Al-Cu feedstock powders used for cold spray deposition. In particular, we relate improvement of the powder to changes in the spray characteristics and microstructure of cold-sprayed coatings. The inert-gas-atomized Al-Cu powders were solutionized at 535 degrees C for 2 hours using a rotary furnace, followed by a water quench. Heat treatment of the powders not only eliminated most of the cellular solidification structure generated by the gas atomization process but also resulted in significant grain growth in the powder particles. After solution treatment, the copper content in the alpha-aluminum matrix increased as expected. After heat treatment, the powders were immediately cold sprayed onto AA2024 substrates. Heat treatment of Al-Cu feedstock powders significantly increased the deposition efficiency for all compositions tested. For heat-treated powders, the deposition efficiency systematically decreased with the increasing copper content, while the coating hardness increased. The formation of GP zones or theta ''/theta' strengthening precipitates through natural aging was not generally observed in the powder particles, but theta ''/theta' precipitates were observed in some cases for the cold-sprayed material with higher copper content. (C) The Minerals, Metals & Materials Society and ASM International 2019
机译:本文研究了热处理对冷喷雾沉积的Al-Cu原料粉末的影响。特别是,我们涉及粉末的改善,以改变冷喷涂层的喷射特性和微观结构。使用旋转炉将惰性气体雾化的Al-Cu粉末在535℃下溶液2小时,然后进行水淬灭。粉末的热处理不仅消除了气体雾化过程产生的大部分细胞凝固结构,而且导致粉末颗粒中的显着晶粒生长。在溶液处理后,α-铝基中的铜含量随预期的增加。在热处理后,将粉末立即喷涂到AA2024底物上。 Al-Cu原料粉末的热处理显着提高了测试的所有组合物的沉积效率。对于热处理的粉末,沉积效率随着铜含量的增加而系统地降低,而涂层硬度增加。在粉末颗粒中通常不观察到通过天然老化的GP区或θ/θ'加强沉淀物,但在一些铜含量的冷喷涂材料中观察到沉淀物的沉淀物。 (c)2019年矿物质,金属和材料协会和ASM国际

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