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铁基非晶粉体/Zn复合材料的制备及其显微结构
引用本文:罗军,朱正吼,刘勇,胡伟,孙建.铁基非晶粉体/Zn复合材料的制备及其显微结构[J].有色金属,2006,58(3):16-19,46.
作者姓名:罗军  朱正吼  刘勇  胡伟  孙建
作者单位:南昌大学,材料科学与工程学院,南昌,330047
摘    要:采用粉末冶金方法制备铁基非晶粉体/Zn复合材料。用X射线衍射仪、金相显微镜和扫描电镜(配备能谱仪)分析研究材料的界面及显微结构及其主要影响因素。结果表明。非晶粉体没有晶化,得到了铁基非晶粉体/Zn复合材料。复合材料界面和显微结构比较好。烧结温度和时间是影响非晶向晶体转变的主要因素,烧结温度越高。烧结时间越长。界面结合越好,但必须在一定的范围内。加入烧结助剂纳米TiO2有利于材料烧结。对材料界面有重要的影响。

关 键 词:金属材料  锌基复合材料  铁基非晶粉体  界面
文章编号:1001-0211(2006)03-0016-05
收稿时间:2004-12-24
修稿时间:2004-12-24

Preparation and Microstructure of Fe- based Amorphous Powder/Zn Composite
LUO Jun,ZHU Zheng-hou,LIU Yong,HU Wei,SUN Jian.Preparation and Microstructure of Fe- based Amorphous Powder/Zn Composite[J].Nonferrous Metals,2006,58(3):16-19,46.
Authors:LUO Jun  ZHU Zheng-hou  LIU Yong  HU Wei  SUN Jian
Affiliation:School of Materials Science and Engineering, Nanchang University, Nanchang 330047, China
Abstract:The Fe-based amorphous powder/Zn composite is prepared by powder metallurgy process,and some significant interface affecting factors and microstructure of the composite are investigated by X-ray diffractometer,metallograph and SEM(equipped with EDS).The results show that the product is Fe-based amorphous powder/Zn composite without crystallization,and has excellent performance on the interface and microstructure.The sintering temperature and retention time are the key parameters impacting on the transformation from amorphous state to crystalline.The higher the temperature and the longer the retention time in proper ranges,the better interface and the denser microstructure of the composite.The addition of nanoTiO_2 is beneficial to sintering results.
Keywords:metal material  Zn-based composite  Fe-based amorphous powder  interface
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