Unraveling the complexity of Fe-based bulk metallic glasses: Insights into dynamic mechanical relaxation in atomic-scale

IF 5.8 2区 材料科学 Q2 CHEMISTRY, PHYSICAL Journal of Alloys and Compounds Pub Date : 2024-07-02 DOI:10.1016/j.jallcom.2024.175410
Parisa Rezaei-Shahreza, Saeed Hasani, Amir Seifoddini, Marcin Nabiałek, Pawel Czaja
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Abstract

This research conducts a thorough investigation into the structural and mechanical evolution of FeBNbHfSi bulk metallic glass (BMG) subjected to thermal aging. Utilizing X-ray diffraction (XRD) and selected area electron diffraction (SAED), the study verifies the amorphous structure of the as-cast BMG, highlighting evidence of short-range ordering (SRO). Thermal aging conducted between 342 and 570 K induces substantial changes, notably the formation of FeB and α-Fe phases and reduced defect concentrations. During dynamic mechanical analysis, a significant shift was observed, which is characterized by a decrease in the intensity of β-relaxation and an increase in β-activation energy from 333.3±2.1 kJ/mol (for the sample aged at 342 K) to 384.6±5.6 kJ/mol (for the sample aged at 570 K). Nanoindentation evaluations reveal an increase in hardness from 11.85±0.22 GPa (for the as-cast BMG) to 14.65±0.41 GPa (for the sample aged at 570 K), accompanied by an increase in Young’s modulus from 211.61±3.00–244.24±2.00 GPa. These changes imply tighter atomic packing and diminished free volume due to aging, suggesting an advanced stage of structural relaxation. Additionally, the material demonstrates a decrease in plastic strain from 0.0052 in its as-cast state to 0.0026 at 342 K, progressing to brittle behavior with further aging. This study shows the pivotal role of precise aging temperature control in optimizing BMGs for diverse applications, illustrating the intricate interplay between thermodynamics and kinetics in material science.

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揭示铁基块状金属玻璃的复杂性:洞察原子尺度的动态机械弛豫
本研究深入探究了受热老化的铁硼铪硅块状金属玻璃(BMG)的结构和机械演变。利用 X 射线衍射 (XRD) 和选区电子衍射 (SAED),研究验证了铸件 BMG 的无定形结构,并突出了短程有序 (SRO) 的证据。在 342 至 570 K 之间进行的热老化引起了重大变化,特别是形成了 FeB 和 α-Fe 相,并降低了缺陷浓度。在动态机械分析过程中,观察到了明显的变化,其特征是 β 松弛强度降低,β 激活能量从 333.3±2.1 kJ/mol(342 K 老化的样品)增加到 384.6±5.6 kJ/mol(570 K 老化的样品)。纳米压痕评估显示硬度从 11.85±0.22 GPa(铸件 BMG)增加到 14.65±0.41 GPa(570 K 老化样品),同时杨氏模量从 211.61±3.00-244.24±2.00 GPa 增加。这些变化意味着老化导致原子堆积更紧密,自由体积减小,表明结构松弛已进入后期阶段。此外,该材料的塑性应变从铸造状态下的 0.0052 减小到 342 K 时的 0.0026,并随着进一步老化而发展为脆性行为。这项研究表明,精确的老化温度控制在优化 BMG 的各种应用中起着关键作用,说明了材料科学中热力学和动力学之间错综复杂的相互作用。
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来源期刊
Journal of Alloys and Compounds
Journal of Alloys and Compounds 工程技术-材料科学:综合
CiteScore
11.10
自引率
14.50%
发文量
5146
审稿时长
67 days
期刊介绍: The Journal of Alloys and Compounds is intended to serve as an international medium for the publication of work on solid materials comprising compounds as well as alloys. Its great strength lies in the diversity of discipline which it encompasses, drawing together results from materials science, solid-state chemistry and physics.
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