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Preparation and tribological properties of plasma sprayed nano and micro-structure alumina-reinforced CuAl composite coatings

机译:等离子喷涂纳米和微结构氧化铝增强CuAl复合涂层的制备及其摩擦学性能

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Nano-structured alumina (n-Al2O3) powders prepared by spray drying granulation and micro-structured alumina (m-Al2O3) powders by fused-crushed method were used to fabricate Al2O3 reinforced CuAl coatings. The microstructure and phase composition of the coatings were analyzed, and their tribological properties were investigated in comparison with those of the CuAl coating. In both CuAl-Al2O3 and CuAl/m-Al2O3 coatings, the reinforcing Al2O3 exists as well-flattened splats, and shows good interfacial compatibility with the bronze matrix. The alumina existed as amorphous and gamma-Al2O3 phase in the CuAl/m-Al2O3 composite coating, while alpha-Al2O3 phase was contained in the CuAl-Al2O3 coating. Although the CuAl-Al2O3 composite coating gives a highest friction coefficient at all loads, it possesses superior wear-resistance as compared with the CuAl/m-Al2O3 coating and pure CuAl coating. (C) 2016 Elsevier Ltd. All rights reserved.
机译:采用喷雾干燥制粒法制备的纳米结构氧化铝(n-Al2O3)粉末和熔融粉碎法制备的微结构氧化铝(m-Al2O3)粉末,用于制备Al2O3增强CuAl涂层。分析了涂层的微观结构和相组成,并与CuAl涂层相比,研究了它们的摩擦学性能。在CuAl / n-Al2O3和CuAl / m-Al2O3涂层中,增强的Al2O3都是平整的片状,并且与青铜基体之间具有良好的界面相容性。氧化铝在CuAl / m-Al2O3复合涂层中以非晶态和γ-Al2O3相存在,而在AlAl / n-Al2O3涂层中包含α-Al2O3相。尽管CuAl / n-Al2O3复合涂层在所有载荷下均具有最高的摩擦系数,但与CuAl / m-Al2O3涂层和纯CuAl涂层相比,它具有出色的耐磨性。 (C)2016 Elsevier Ltd.保留所有权利。

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