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Effect of deformation temperature on the hot compressive behavior of metal matrix composites with misaligned whiskers
作者姓名:LI  Aibin  MENG  Qingyuan  GENG  Lin  DENG  Chunfeng  YAN  Yiwu
作者单位:[1]School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China [2]Department of Astronautical Engineering and Mechanics, Harbin Institute of Technology, Harbin 150001, China
摘    要:A multi-inclusion cell model is used to investigate the effect of deformation temperature and whisker rotation on the hot compressive behavior of metal matrix composites with misaligned whiskers. Numerical results show that deformation temperature influences the work-hardening behavior of the matrix and the rotation behavior of the whiskers. With increasing temperature, the work hardening rate of the matrix decreases, but the whisker rotation angle increases. Both whisker rotation and the increase of deformation temperature can induce reductions in the load supported by whisker and the load transferred from matrix to whisker. Additionally, it is found that during large strain deformation at higher temperatures, the enhancing of deformation temperature can reduce the effect of whisker rotation. Meanwhile, the stress-strain behavior of the composite is rather sensitive to deformation temperature. At a relatively lower temperature (150℃), the composite exhibits work hardening due to the matrix work hardening, but at relatively higher temperatures (300℃ and above), the composite shows strain softening due to whisker rotation. It is also found that during hot compression at higher temperatures, the softening rate of the composite decreases with increasing temperature. The predicted stress-strain behavior of the composite is approximately in agreement with the experimental results.

关 键 词:金属基复合材料  偏移晶须  形变温度  热压缩变形
收稿时间:2006-02-24

Effect of deformation temperature on the hot compressive behavior of metal matrix composites with misaligned whiskers
LI Aibin MENG Qingyuan GENG Lin DENG Chunfeng YAN Yiwu.Effect of deformation temperature on the hot compressive behavior of metal matrix composites with misaligned whiskers[J].Rare Metals,2007,26(2):182-192.
Authors:LI Aibin  MENG Qingyuan  GENG Lin  DENG Chunfeng  YAN Yiwu
Affiliation:1. School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China;2. Department of Astronautics, Engineering and Mechanics, Harbin Institute of Technology, Harbin 150001, China;1. Division of Material Sciences, Graduate School of Natural Science and Technology, Kanazawa University, Kakuma-machi, Kanazawa, Ishikawa 920-1192, Japan;2. Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 599-8531, Japan
Abstract:A multi-inclusion cell model is used to investigate the effect of deformation temperature and whisker rotation on the hot compressive behavior of metal matrix composites with misaligned whiskers. Numerical results show that deformation temperature influences the work-hardening behavior of the matrix and the rotation behavior of the whiskers. With increasing temperature, the work hardening rate of the matrix decreases, but the whisker rotation angle increases. Both whisker rotation and the increase of deformation temperature can induce reductions in the load supported by whisker and the load transferred from matrix to whisker. Additionally, it is found that during large strain deformation at higher temperatures, the enhancing of deformation temperature can reduce the effect of whisker rotation. Meanwhile, the stress-strain behavior of the composite is rather sensitive to deformation temperature. At a relatively lower temperature (150℃), the composite exhibits work hardening due to the matrix work hardening, but at relatively higher temperatures (300℃ and above),the composite shows strain softening due to whisker rotation. It is also found that during hot compression at higher temperatures, the softening rate of the composite decreases with increasing temperature. The predicted stress-strain behavior of the composite is approximately in agreement with the experimental results.
Keywords:metal matrix composite  hot compressive behavior  deformation temperature  finite element method
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