首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >High-temperature mechanical and electrical properties of W-particle-reinforced Cu-matrix composites from improved electroless plated powders
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High-temperature mechanical and electrical properties of W-particle-reinforced Cu-matrix composites from improved electroless plated powders

机译:改进的化学镀粉末制备的W颗粒增强的Cu基复合材料的高温机械和电气性能

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Copper (Cu)-matrix composites combine the high electrical and thermal conductivities of Cu with the enhanced wear resistance and strength of the reinforcement material, and are therefore widely used for electrical contact applications in a diverse range of fields. In the current study, tungsten-reinforced copper (W-Cu) composite powders are fabricated using a novel electroless Cu plating process in which the homogeneity of the powder mixture is improved via the use of an ultrasonic agitation technique. The volume content of the tungsten particle reinforcement in the composite specimens is 3, 6, and 12 per cent, respectively, and standard powder metallurgical techniques are then applied to produce the final composite powders. The mechanical and electrical properties of the composite powders are evaluated at room temperature and at temperatures ranging from 100 to 300 ° C. Fracture surfaces of the composite samples are analysed using scanning electron microscopy. The results show that the mechanical properties of the W-Cu composite samples are significantly better than those of pure Cu specimens, particularly at higher temperatures. Furthermore, the addition of 3 vol% W particles to the W-Cu composite is found to yield a reduction of not more than 2 per cent in the electrical conductivity of the composite sample compared to that of a pure Cu specimen. Overall, the results indicate that the optimal mechanical and electrical properties are obtained by mixing pure Cu powder with 3 vol% of Cu-plated W particles with a mean dimension of 1 µm. [PUBLICATION ABSTRACT]
机译:铜(Cu)基复合材料结合了Cu的高导电性和导热性以及增强的增强的耐磨性和增强材料的强度,因此广泛用于各种领域的电接触应用中。在当前的研究中,使用新型化学镀铜工艺制造了钨增强铜(W-Cu)复合粉末,其中通过使用超声搅拌技术改善了粉末混合物的均匀性。复合样品中钨颗粒增强剂的体积含量分别为3%,6%和12%,然后采用标准粉末冶金技术生产最终的复合粉末。在室温和100至300℃的温度下评估复合粉末的机械和电性能。使用扫描电子显微镜分析复合样品的断裂表面。结果表明,W-Cu复合材料样品的机械性能明显优于纯Cu样品,特别是在较高温度下。此外,发现向W-Cu复合材料中添加3 vol%的W颗粒与纯Cu样品相比,复合材料样品的电导率降低不超过2%。总体而言,结果表明,通过将纯铜粉与3%(体积)平均尺寸为1 µm的镀铜W颗粒混合,可以获得最佳的机械和电气性能。 [出版物摘要]

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