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Room Temperature Recovery Behavior of Cold-Rolled Aluminum Foil Under Severe Plastic Deformation
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Affiliation:

1.Yong Jie New Material Co., Ltd, Hangzhou 311225, China;2.State Key Laboratory of Comprehensive Utilization of Low-Grade Refractory Gold Ores, Xiamen 361101, China;3.School of Materials Science and Engineering, Xiangtan University, Xiangtan 411105, China;4.Zhejiang Yong Jie Aluminium Co., Ltd, Hangzhou 311222, China;5.Faculty of Materials Metallurgy and Chemistry, Jiangxi University of Science and Technology, Ganzhou 341000, China

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Postdoctoral Science Foundation of Zhejiang Province (ZJ2020044)

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    Abstract:

    Pure aluminum foil (dilute Al-Fe-Si alloy series) with Cu or Mn addition was prepared by severe cold-rolling deformation, and the effect of room temperature storage or low temperature annealing on the tensile properties and microstructure was investigated through tensile tests, optical microscope, scanning electron microscope, electron back scatter diffraction, and atom probe microscope. Results show that the ultimate tensile strength and elongation simultaneously decrease after room temperature storage. The recovery mechanism of substructure, such as subgrain coalescence, leads to the decrease in tensile properties. The decrease in plasticity is more significant for the Mn-containing alloy due to the more significantly increased subgrain size. The atom cluster strengthening can compensate for the strength loss to some extent, whereas the effect of the secondary phases is negligible.

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[Chen Dengbin, Ren Jieke, Yin Fucheng, Song Pan, Tang Bokai, Chen Jiqiang, Wan Zequan, He Youwei. Room Temperature Recovery Behavior of Cold-Rolled Aluminum Foil Under Severe Plastic Deformation[J]. Rare Metal Materials and Engineering,2023,52(3):840~845.]
DOI:10.12442/j. issn.1002-185X.20220712

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History
  • Received:September 07,2022
  • Revised:October 25,2022
  • Adopted:November 10,2022
  • Online: March 31,2023
  • Published: March 24,2023