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电化学浸渗法制备纤维/铜基复合材料
引用本文:罗学涛,吴清良,黄前军,陈立富.电化学浸渗法制备纤维/铜基复合材料[J].复合材料学报,2003,20(6):151-154.
作者姓名:罗学涛  吴清良  黄前军  陈立富
作者单位:厦门大学,材料科学与工程系,厦门,361005
摘    要:基于电化学浸渗技术(ECI)在室温下制备了连续铜纤维、碳纤维和玻璃纤维增强铜基复合材料。实验结果表明,在本实验工艺条件下可获得致密的纤维/Cu基复合材料,并具有优良的力学性能。复合材料的断口形貌及显微结构的SEM观察表明,纤维与铜基体之间的界面结合良好,纤维不受任何损伤。证实了ECI在室温下快速制备纤维增强金属基复合材料的可行性。

关 键 词:铜基复合材料  电化学浸渗  显微结构  力学性能
文章编号:1000-3851(2003)06-0151-04
收稿时间:2002-08-27
修稿时间:2002年8月27日

FIBER-REINFORCED COPPER MATRIX COMPOSITES FABRICATED BY ELECTROCHEMICAL INFILTRATION TECHNIQUE
LUO Xuetao,WU Qingliang,HUANG qianjun,CHEN Lifu.FIBER-REINFORCED COPPER MATRIX COMPOSITES FABRICATED BY ELECTROCHEMICAL INFILTRATION TECHNIQUE[J].Acta Materiae Compositae Sinica,2003,20(6):151-154.
Authors:LUO Xuetao  WU Qingliang  HUANG qianjun  CHEN Lifu
Affiliation:Department of Materials Science &|Engineering, Xiamen University, Xiamen 361005,China
Abstract:Continuous-fiber-reinforced Cu matrix composites were fabricated based on the electrochemical infiltration technique (ECI). The experimental results show that the dense fiber/Cu composites have been obtained on the present condition, which possess good mechanical properties. The fracture surface morphology and microstructures of the composites have been observed by SEM. It is indicated that the interfacial bond between fibers and Cu matrix is very well and the fibers do not have any damage. The ECI is feasible to prepare rapidly fiber-reinforced metal matrix composites at room temperature.
Keywords:copper matrix composite  electrochemical infiltration  microstructure  mechanical property
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