论金属玻璃的结构演变动力学

IF 5.7 1区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY International Journal of Engineering Science Pub Date : 2024-09-28 DOI:10.1016/j.ijengsci.2024.104146
S.Y. Liang , F. Zhu , Yun-Jiang Wang , E. Pineda , T. Wada , H. Kato , J.C. Qiao
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引用次数: 0

摘要

经典的现象学模型无法描述无定形固体蠕变变形的物理现象。本文研究了化学成分为 La62Al14Ag2.34Ni10.83Co10.83、Pd20Pt20Cu20Ni20P20 和 Cu46Zr39Hf8Al7 的典型金属玻璃的蠕变行为。相反,我们尝试使用一种基于物理学的改良分层关联模型来实现金属玻璃的蠕变行为。蠕变的非弹性变形分为两个不同的部分,即对退火敏感的高相关变形单元和与扩散弛豫相关的低相关单元。相关单元随着结构老化而减小。这些发现验证了模型的正确性,而推导出的参数则为了解金属玻璃的结构和动力学特性提供了启示。特征时间的缩短和相关系数的对比表明了均匀的结构和较低的能态。此外,通过对蠕变过程中双重变形机制的相对强度进行定性评估,可以确定 β 弛豫形式的特征,从而揭示不同类型金属玻璃的内在属性。这种方法还有助于检测结构老化和年轻化现象。
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On the kinetics of structural evolution in metallic glasses
The classic phenomenological models fail to describe the physical landscape of creep deformation for amorphous solids. In this paper, creep behavior of typical metallic glasses with chemical compositions La62Al14Ag2.34Ni10.83Co10.83, Pd20Pt20Cu20Ni20P20 and Cu46Zr39Hf8Al7 were studied. Instead, we attempt to use a modified hierarchically correlated model informed by physics to realize the creep behaviors of metallic glasses. The anelastic deformation of creep is categorized into two distinct components, i.e., the highly correlated deformation unit sensitive to annealing and the low correlated unit associated with diffusion relaxation. The correlated component diminishes with structural aging. The validity of the model is verified by these findings, and the derived parameters provide insights into the structural and kinetic characteristics of metallic glasses. Decreased characteristic times and contrasting correlation factors indicate homogeneous structure and lower energy states. Moreover, a qualitative evaluation of the relative strengths of the dual deformation mechanisms during creep enables the characterization of β relaxation forms, shedding light on the intrinsic attributes of different types of metallic glasses. This methodology additionally facilitates the detection of structural aging and rejuvenation phenomena.
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来源期刊
International Journal of Engineering Science
International Journal of Engineering Science 工程技术-工程:综合
CiteScore
11.80
自引率
16.70%
发文量
86
审稿时长
45 days
期刊介绍: The International Journal of Engineering Science is not limited to a specific aspect of science and engineering but is instead devoted to a wide range of subfields in the engineering sciences. While it encourages a broad spectrum of contribution in the engineering sciences, its core interest lies in issues concerning material modeling and response. Articles of interdisciplinary nature are particularly welcome. The primary goal of the new editors is to maintain high quality of publications. There will be a commitment to expediting the time taken for the publication of the papers. The articles that are sent for reviews will have names of the authors deleted with a view towards enhancing the objectivity and fairness of the review process. Articles that are devoted to the purely mathematical aspects without a discussion of the physical implications of the results or the consideration of specific examples are discouraged. Articles concerning material science should not be limited merely to a description and recording of observations but should contain theoretical or quantitative discussion of the results.
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