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Role of initial stored energy on hydrogen microalloying of ZrCoAI(Nb) bulk metallic glasses

机译:初始储存能量对ZrCoai(Nb)散装金属玻璃氢微合金化的作用

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摘要

In this paper, the role of primary stored energy and structural heterogeneity on the subsequent effects of hydrogen microalloying in glassy alloys was studied. For this purpose, two bulk metallic glasses with different chemical compositions and initial stored energy, i.e. Zr_(60)Co_(30)Al(10) and Zr_(55)Co_(30)Al_(10)Nb_5, were fabricated in a hydrogen-induced environment. Dynamic mechanical analysis and nanoindentation tests were carried out to evaluate relaxation behavior and mechanical properties of bulk metallic glasses, respectively. The nanoindentation results indicated declining serrations in load-displacement curves of hydrogen-affected samples. This event was related to the annihilation of localized deformation in hydrogen-affected samples under the external load. Moreover, the dynamic mechanical analysis showed that the hydrogen microalloying process improved the plasticity behavior of metallic glasses by activating fast β' relaxation. Finally, the results unveiled that the higher initial structural heterogeneity and stored energy in the bulk metallic glass with the alloying composition of Zr_(55)Co_(30)Al_(10)Nb_5 led to the improvement of microalloying effects on the corresponding properties.
机译:本文研究了初级储存能量和结构异质性对玻璃合金中氢微合金的后续作用的作用。为此目的,两种具有不同化学组成和初始储存能量的散装金属玻璃,即Zr_(60)CO_(30)Al(10)和Zr_(55)CO_(30)Al_(10)Nb_5在氢气中制造诱导的环境。进行动态力学分析和纳米狭窄试验,以分别评估散装金属玻璃的弛豫行为和机械性能。纳米狭窄结果表明氢受影响样品的载荷 - 位移曲线中的锯齿下降。该事件与外部负荷下氢受影响样品中的局部变形的湮灭有关。此外,动态力学分析表明,氢微合金化过程通过激活快速β'松弛来提高金属玻璃的可塑性行为。最后,结果推出了散装金属玻璃中较高的初始结构异质性和储存的能量,其中Zr_(55)CO_(30)AL_(10)NB_5的合金化组合物导致对相应性质的微合金效应的改善。

著录项

  • 来源
    《Applied Physics》 |2021年第1期|28.1-28.7|共7页
  • 作者单位

    Aerospace Department Faculty of Engineering Universiti Putra Malaysia Seri Kembangan Malaysia;

    Aerospace Department Faculty of Engineering Universiti Putra Malaysia Seri Kembangan Malaysia;

    Department of Chemistry College of Science Diyala University Baquba Iraq;

    Kazan Federal University Kazan Russian Federation;

    Department of Infectious Diseases Sechenov First Moscow State Medical University Moscow Russian Federation 119991;

    Department of Chemistry College of Science Diyala University Baquba Iraq;

    Kazan Federal University Kazan Russian Federation;

    Department of Mining Engineering National Institute of Technology Karnataka Surathkal Mangaluru India;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bulk metallic glass; Hydrogen microalloying; Heterogeneity; Mechanical properties;

    机译:散装金属玻璃;氢微合金化;异质性;机械性能;
  • 入库时间 2022-08-19 00:55:49

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