4.5 Article

Thermal rejuvenation in metallic glasses

期刊

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/14686996.2017.1280369

关键词

Metallic glass; rejuvenation; relaxation; molecular; dynamics simulation; mechanical property; local; structure

资金

  1. Ministry of Education, Sports, Culture, Science and Technology, Japan, Scientific Research (A) [23246109]
  2. 'Promoted Program for Interdisciplinary Research' of the Frontier Research Institute for Interdisciplinary Sciences (FRIS), Tohoku University
  3. Grants-in-Aid for Scientific Research [23246109] Funding Source: KAKEN

向作者/读者索取更多资源

Structural rejuvenation in metallic glasses by a thermal process (i.e. through recovery annealing) was investigated experimentally and theoretically for various alloy compositions. An increase in the potential energy, a decrease in the density, and a change in the local structure as well as mechanical softening were observed after thermal rejuvenation. Two parameters, one related to the annealing temperature, T-a/T-g, and the other related to the cooling rate during the recovery annealing process, V-c/V-i, were proposed to evaluate the rejuvenation phenomena. A rejuvenation map was constructed using these two parameters. Since the thermal history of metallic glasses is reset above 1.2T(g), accompanied by a change in the local structure, it is essential that the condition of T-a/T-g >= 1.2 is satisfied during annealing. The glassy structure transforms into a more disordered state with the decomposition of icosahedral short-range order within this temperature range. Therefore, a new glassy structure (rejuvenation) depending on the subsequent quenching rate is generated. Partial rejuvenation also occurs in a Zr55Al10Ni5Cu30 bulk metallic glass when annealing is performed at a low temperature (T-a/T-g similar to 1.07) followed by rapid cooling. This behavior probably originates from disordering in the weakly bonded (loosely packed) region. This study provides a novel approach to improving the mechanical properties of metallic glasses by controlling their glassy structure. [GRAPHICS]

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