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首页> 外文期刊>Journal of Materials Science >Codeposition of nanocrystalline aluminides on a copper substrate
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Codeposition of nanocrystalline aluminides on a copper substrate

机译:在铜基板上共沉积纳米晶铝化物

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The present study concerns codeposition of nanocrystalline aluminide particles (NbAl3 and Cu9Al4) along with electrodeposition of Cu on a Cu substrate. It is shown that the success of codeposition primarily depends on the selection of an appropriate electrolyte. Following codeposition under an optimum deposition condition, the microstructure, phase identity and composition of the deposit layer have been studied. In addition, microhardness and electrical resistivity of the deposit have been determined. A suitable correlation of the microstructure and composition of the deposit with its properties suggests that codeposition of NbAl3 is more effective in enhancing the hardness. However, codeposition beyond a limit adversely affects the electrical conductivity. The optimum conditions for codeposition to enhance hardness without adversely affecting conductivity have been determined. Finally, it is predicted codeposition could be a suitable technique for developing a surface composite microstructure with uniform distribution of nanocrystalline aluminide particles. (C) 2001 Kluwer Academic Publishers. [References: 10]
机译:本研究涉及纳米晶铝化物颗粒(NbAl3和Cu9Al4)的共沉积以及在铜基板上电沉积铜。结果表明,共沉积的成功主要取决于适当电解质的选择。在最佳沉积条件下共沉积之后,已经研究了沉积层的微观结构,相同一性和组成。另外,已经确定了沉积物的显微硬度和电阻率。沉积物的微观结构和组成与其性能之间的适当关系表明,NbAl3的共沉积在提高硬度方面更为有效。然而,超过极限的共沉积不利地影响电导率。已经确定了共沉积以提高硬度而不会对导电性产生不利影响的最佳条件。最后,预计共沉积可能是开发具有均匀分布的纳米晶铝化物颗粒的表面复合微结构的合适技术。 (C)2001 Kluwer学术出版社。 [参考:10]

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