首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Characterization of gradient CuAl-B4C composites additively manufactured using a combination of wire-feed and powder-bed electron beam deposition methods
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Characterization of gradient CuAl-B4C composites additively manufactured using a combination of wire-feed and powder-bed electron beam deposition methods

机译:使用丝网和粉末床电子束沉积方法的组合塑性Cual-B4C复合材料的表征

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摘要

A combination of wire-feed and powder-bed electron beam additive deposition was applied for fabricating a gradient heterogeneous and wear-resistant CuAl-B4C multilayer composite with two different contents of the boron carbide particles. To improve the CuAl alloy wetting ability on the carbide powder bed, the latter was admixed with aluminum powder. A gradient distribution of the boron carbide in the aluminum bronze matrix was achieved for composites with 50 and 25 vol% B4C, which were characterized by microhardness, coefficient of friction, and wear resistance. The 50 vol% B4C sample demonstrated higher hardness but lower wear resistance against and coefficient of friction as compared to those of 25 vol% B4C one, when reciprocally rubbed against a 52,100 steel ball. (C) 2020 Elsevier B.V. All rights reserved.
机译:采用送丝和粉末床电子束添加剂沉积相结合的方法,制备了含有两种不同含量碳化硼颗粒的梯度非均匀耐磨CuAl-B4C多层复合材料。为了提高CuAl合金在碳化物粉床上的润湿能力,将后者与铝粉混合。B4C含量为50%和25%时,碳化硼在铝青铜基体中呈梯度分布,其特征是显微硬度、摩擦系数和耐磨性。当与52100钢球相互摩擦时,与25 vol%B4C试样相比,50 vol%B4C试样的硬度更高,但耐磨性和摩擦系数更低。(C) 2020爱思唯尔B.V.版权所有。

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