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High thermal stability and sluggish crystallization kinetics of high-entropy bulk metallic glasses

机译:高熵大块金属玻璃的高热稳定性和缓慢的结晶动力学

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摘要

Metallic glasses are metastable and their thermal stability is critical for practical applications, particularly at elevated temperatures. The conventional bulk metallic glasses (BMGs), though exhibiting high glass-forming ability (GFA), crystallize quickly when being heated to a temperature higher than their glass transition temperature. This problem may potentially be alleviated due to the recent developments of high-entropy (or multi-principle-element) bulk metallic glasses (HE-BMGs). In this work, we demonstrate that typical HE-BMGs, i.e., ZrTiHfCuNiBe and ZrTiCuNiBe, have higher kinetic stability, as compared with the benchmark glass Vitreoyl (Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5)) with a similar chemical composition. The measured activation energy for glass transition and crystallization of the HE-BMGs is nearly twice that of Vitreloy 1. Moreover, the sluggish crystallization region ΔT_(pl-pf), defined as the temperature span between the last exothermic crystallization peak temperature T_(pl) and the first crystallization exothermic peak temperature T_(pf), of all the HE-BMGs is much wider than that of Vitreloy 1. In addition, high-resolution transmission electron microscopy characterization of the crystallized products at different temperatures and the continuous heating transformation diagram which is proposed to estimate the lifetime at any temperature below the melting point further confirm high thermal stability of the HE-BMGs. Surprisingly, all the HE-BMGs show a small fragility value, which contradicts with their low GFA, suggesting that the underlying diffusion mechanism in the liquid and the solid of HE-BMGs is different.
机译:金属玻璃是亚稳态的,其热稳定性对于实际应用至关重要,特别是在高温下。常规的块状金属玻璃(BMG)尽管表现出高的玻璃形成能力(GFA),但是当被加热到高于其玻璃化转变温度的温度时,其快速结晶。由于高熵(或多原理元素)的块状金属玻璃(HE-BMGs)的最新发展,该问题可能得到缓解。在这项工作中,我们证明了典型的HE-BMG,即ZrTiHfCuNiBe和ZrTiCuNiBe,与基准玻璃玻璃体(Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5)相比,具有更高的动力学稳定性。 ))具有相似的化学成分。测得的HE-BMG的玻璃化转变和结晶活化能几乎是Vitreloy 1的两倍。此外,缓慢的结晶区域ΔT_(pl-pf)定义为最后一个放热结晶峰温度T_(pl)之间的温度跨度。 )和所有HE-BMG的第一个结晶放热峰温度T_(pf)比Vitreloy 1宽得多。此外,在不同温度下结晶产物的高分辨率透射电子显微镜表征以及连续加热转变用来估计在低于熔点的任何温度下的寿命的图表进一步证实了HE-BMG的高热稳定性。出乎意料的是,所有HE-BMG都显示出较小的脆性值,这与它们的低GFA相矛盾,这表明HE-BMG在液体和固体中的基本扩散机理是不同的。

著录项

  • 来源
    《Journal of Applied Physics》 |2016年第24期|245112.1-245112.7|共7页
  • 作者单位

    State Key Laboratory for Advance Metals and Materials, University of Science and Technology, Beijing 10083, People's Republic of China,Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong;

    State Key Laboratory for Advance Metals and Materials, University of Science and Technology, Beijing 10083, People's Republic of China;

    Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong;

    State Key Laboratory for Advance Metals and Materials, University of Science and Technology, Beijing 10083, People's Republic of China;

    State Key Laboratory for Advance Metals and Materials, University of Science and Technology, Beijing 10083, People's Republic of China;

    State Key Laboratory for Advance Metals and Materials, University of Science and Technology, Beijing 10083, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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