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Evolution of Microstructure, Mechanical Properties and Homogeneity of Al-Zn-Mg-Cu-Zr Alloy Plates Prepared by Different Percentage Reductions per Pass
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1.School of Materials Science and Engineering, Inner Mongolia University of Technology, Hohhot 010051, China;2.Inner Mongolia Key Laboratory of Light Metal, Hohhot 010051, China;3.GRINM Group Co., Ltd, Beijing 100088, China

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National Natural Science Foundation of China (51764043, 11762014); Scientific and Technological Program of Innovation and Guidance of Inner Mongolia (KCBJ2018017); Inner Mongolia Youth Talent Program of Science and Technology (NJYT-20-A16); Science Program for Returned Chinese Scholars of Inner Mongolia

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    Abstract:

    The effects of percentage reduction per pass (PRPP) on the effective strain, microstructure, mechanical properties and through-thickness homogeneity of AA7055 alloy plates were investigated through experiments and numerical simulations. Results show that with consistent total strain, the difference between the effective strain values in the surface and middle layer of AA7055 alloy plates decreases with the increase of PRPP. In the plate rolled with small PRPP, the surface layer of plate contains higher recrystallization fraction, while the middle layer comprises of large recrystallized grains. In contrast, the plate rolled with large PRPP has consistent recrystallized grain size with consistent recrystallization fraction along the thickness direction. Thus, an improved homogeneity of the microstructure and mechanical properties along the plate thickness direction can be obtained through the rolling process with large PRPP.

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[Yan Liangming, Hu Qiang, Wang Wenbo, Hou Xiaohu, Xu Junrui, Liu Huimin, Shen Jian. Evolution of Microstructure, Mechanical Properties and Homogeneity of Al-Zn-Mg-Cu-Zr Alloy Plates Prepared by Different Percentage Reductions per Pass[J]. Rare Metal Materials and Engineering,2021,50(7):2315~2320.]
DOI:10.12442/j. issn.1002-185X.20200856

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History
  • Received:November 08,2020
  • Revised:February 06,2021
  • Adopted:March 08,2021
  • Online: August 09,2021
  • Published: July 31,2021