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Microstructure evolution and thermal stability of nanocrystalline Cu-Nb alloys during heat treatment

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【作者】 雷若姗汪明朴郭明星李周董琦祎

【Author】 LEI Ruo-shan,WANG Ming-pu,GUO Ming-xing,LI Zhou,DONG Qi-yi School of Materials Science and Engineering,Central South University,Changsha 410083,China

【机构】 School of Materials Science and Engineering, Central South University

【摘要】 The microstructure evolution and high thermal stability of the mechanically-alloyed supersaturated nanocrystalline Cu-10%Nb alloy during subsequent heat treatment were investigated by X-ray diffractometry and transmission electron microscopy(TEM). The results show that no significant change of the microstructure of the solid solution can be detected after annealing at 300-400 ℃. The pronounced phase separation can be detected at 700 ℃. After annealing for 30 min at 900 ℃,almost all the Nb atoms precipitate from the solid solution,and the average Cu grain size is about 37 nm. As the solute atoms hinder the migration of fcc phase,at Cu grain boundaries,no significant grain growth occurs before large amount of Nb atoms precipitates from Cu matrix,and the decrease of internal strain and density of dislocation is small. Furthermore,the nanosized Nb precipitates can also help to reduce the Cu grains growth through precipitating pinning effect. Therefore,the mechanically-alloyed nanocrystalline Cu-Nb alloys have a high thermal stability. And the contaminations brought into the Cu matrix by milling can influence the phase formation and the thermal stability of Cu-Nb alloys during heat treatment.

【Abstract】 The microstructure evolution and high thermal stability of the mechanically-alloyed supersaturated nanocrystalline Cu-10%Nb alloy during subsequent heat treatment were investigated by X-ray diffractometry and transmission electron microscopy(TEM). The results show that no significant change of the microstructure of the solid solution can be detected after annealing at 300-400 ℃. The pronounced phase separation can be detected at 700 ℃. After annealing for 30 min at 900 ℃,almost all the Nb atoms precipitate from the solid solution,and the average Cu grain size is about 37 nm. As the solute atoms hinder the migration of fcc phase,at Cu grain boundaries,no significant grain growth occurs before large amount of Nb atoms precipitates from Cu matrix,and the decrease of internal strain and density of dislocation is small. Furthermore,the nanosized Nb precipitates can also help to reduce the Cu grains growth through precipitating pinning effect. Therefore,the mechanically-alloyed nanocrystalline Cu-Nb alloys have a high thermal stability. And the contaminations brought into the Cu matrix by milling can influence the phase formation and the thermal stability of Cu-Nb alloys during heat treatment.

【基金】 Project(2006AA03Z517) supported by the National High-Tech Research and Development Program of China
  • 【文献出处】 Transactions of Nonferrous Metals Society of China ,中国有色金属学会会刊(英文版) , 编辑部邮箱 ,2009年02期
  • 【分类号】TG146.11
  • 【被引频次】7
  • 【下载频次】86
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