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Cu-Fe-Cr-Ni原位复合材料的结构与性能
引用本文:孟永强,孙世清,毛 磊,刘宗茂.Cu-Fe-Cr-Ni原位复合材料的结构与性能[J].河北科技大学学报,2006,27(4):297-301.
作者姓名:孟永强  孙世清  毛 磊  刘宗茂
作者单位:河北科技大学材料科学与工程学院,河北石家庄,050054
基金项目:河北省自然科学基金资助项目(503372),河北科技大学科研基金资助项目(XL2005001)
摘    要:通过感应熔炼、浇铸、热轧和冷拔制备了Cu-Fe-Cr-Ni原位复合材料,采用XRD,SEM和TEM研究了Ni元素和拉拔变形量对其显微结构的影响。用拉伸实验测试了材料的强度,用标准四探针方法测量了材料的电阻。在Cu-Fe-Cr-Ni合金铸锭中,bcc结构的第2相为近球形颗粒形态,经过后续的变形加工,颗粒演变成了近圆形横截面的纤维。对Cu-Fe-Cr-Ni原位复合材料只进行了1次550℃中间退火,就可以获得较高的拉拔变形量(η=5.32),表明Ni的加入可以改善原位复合材料的塑性。随着拉拔变形量的增大,Cu-Fe-Cr-Ni原位复合材料的强度增加,电导率下降。

关 键 词:原位复合材料  Ni元素  塑性  强度  电导率
文章编号:1008-1542(2006)04-0297-05
收稿时间:2006/5/12 0:00:00
修稿时间:2006年5月12日

Structure and properties of Cu-Fe-Cr-Ni in-situ composites
MENG Yong-qiang,SUN Shi-qing,MAO Lei and LIU Zong-mao.Structure and properties of Cu-Fe-Cr-Ni in-situ composites[J].Journal of Hebei University of Science and Technology,2006,27(4):297-301.
Authors:MENG Yong-qiang  SUN Shi-qing  MAO Lei and LIU Zong-mao
Affiliation:College of Material Science and Engineering,Hebei University of Science and Technology,Shijiazhuang Hebei 050054,China;College of Material Science and Engineering,Hebei University of Science and Technology,Shijiazhuang Hebei 050054,China;College of Material Science and Engineering,Hebei University of Science and Technology,Shijiazhuang Hebei 050054,China;College of Material Science and Engineering,Hebei University of Science and Technology,Shijiazhuang Hebei 050054,China
Abstract:Cu-Fe-Cr-Ni in-situ composite wires were manufactured by inductive melting,casting,hot rolling and cold drawing.The effects of Ni element and drawn strains on microstructures were investigated by XRD,SEM and TEM.The evaluation of mechanical strength of wires was carried out on a tensile test machine,and electrical resistivity measurements were made by(using) a standard four-probe technique.In the as-cast ingot of Cu-Fe-Cr-Ni alloy,the secondary phases(bcc structure)appears to be array of nearly spherical particles.After subsequent deformation processes,the particles formed nearly circular morphology on the cross-section of filaments in the Cu-Fe-Cr-Ni in-situ composites.A drawing strain of 5.32 was achieved only with once intermediate annealing at 550 ℃,suggesting the addition of Ni can improve the ductility of Cu-Fe-Cr-Ni in-situ composites.With increasing drawn strains of Cu-Fe-Cr-Ni in-situ composites,the strength increases and the electrical conductivity decreases.
Keywords:in-situ composite  Ni element  ductility  strength  electrical conductivity
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