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The Relationship Between Creep Deformation And Materials Structure Of Metal Thin Films
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Xi’an Rare Metal Materials Institute Co.Ltd

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National Natural Science Foundation of China (52101099),Natural Science Foundation of Shaanxi Province(2021JQ-977, 2020JQ-924, 2021JQ-976)

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    Abstract:

    The relationship between the microstructure and the creep behavior of metal films at room temperature was evaluated by nanoindentation experiment. Nanocrystalline body center-cubic (BCC) metal Mo, nanocrystalline face center-cubic (FCC) metal Ni and amorphous CuZr were selected as the study materials, and the loading rates were 0.005, 0.05, 0.1 and 0.2s-1.According to research, the creep deformation of BCC-Mo, FCC-Ni and amorphous CuZr exhibits strong loading strain rate dependence, and the main reason is related to the dominant deformation mechanism.The creep behavior of BCC-Mo is dominated by the mixed dislocation movement dominated by screw dislocation, the creep behavior of FCC-Ni is dominated by the grain boundary emission incomplete dislocation, and the creep behavior of amorphous CuZr is dominated by the shear deformation transition zone (STZ).

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[Wu Jinping, Li Chuncheng, Zhao Bin, Qiu Longshi, Xin Chao, Pan Xiaolong, Zhao Heng, Li Huan, Zhao Jing. The Relationship Between Creep Deformation And Materials Structure Of Metal Thin Films[J]. Rare Metal Materials and Engineering,2022,51(5):1674~1680.]
DOI:10.12442/j. issn.1002-185X.20210833

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History
  • Received:September 18,2021
  • Revised:November 10,2021
  • Adopted:November 25,2021
  • Online: June 09,2022
  • Published: May 30,2022