Repeated rejuvenation from relaxed metallic glasses through the memory effect
收藏中国科学院兰州化学物理研究所科学数据中心2025-12-18 更新2026-01-10 收录
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Rejuvenation through the memory effect has shown huge potential in tailoring both the physical and mechanical
properties of relaxed metallic glasses (MGs). Here, the effects of repeated rejuvenation through the memory
effect on the mechanical properties and structural changes of the relaxed Zr-based MGs were systematically
investigated. Six thermal cycles are conducted on the relaxed samples. When the number of cycles is less than
three times, the values of the relaxation enthalpy of all the rejuvenated samples can be recovered 20 % of that of
the as-cast sample, and the plastic strains of all the rejuvenated samples are better than that of the as-cast sample.
Further increasing the number of cycles to six, the plastic strain gradually decreases and finally becomes lower
than that of the as-cast sample. In addition, the evolutions of the boson heat capacity peak and the fictive
temperature are also revealed, and all of them show memory effects during the cycles of the relaxation-
rejuvenation process. A relationship between the properties and boson heat capacity peak height is discussed.
An analysis of the structural changes shows that the increased spatial heterogeneity is responsible for the
improved plasticity. The successful repetition of rejuvenation through the memory effect would spark interest in
recycling MGs.
提供机构:
中国科学院兰州化学物理研究所科学数据中心
创建时间:
2025-12-18



