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Enhanced mechanical properties due to structural changes induced by devitrification in Fe–Co–B–Si–Nb bulk metallic glass

机译:Fe-Co-B-Si-Nb块状金属玻璃析晶引起的结构变化增强了机械性能

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摘要

Fe_(36)Co_(36)B_(19.2)Si_(4.8)Nb_4 bulk glassy rods were synthesized by copper mould casting. The effects of annealing treatments on the microstructure,elastic and mechanical properties of this alloy are investigated. Annealing below the glass transition temperature induces the formation of atomic clusters with pseudo-tenfold symmetry with a close relationship to the Fe_(23)B_6 phase. Annealing at sufficiently high temperatures promotes the formation of stable Fe_2B and FeB phases and Fe(Co) solid solution. The as-cast alloy exhibits ultra-high hardness (H > 14 GPa), high reduced Young’s modulus (E_r > 200 GPa) and good wear resistance. These properties are further enhanced after thermal treatments (H > 18 GPa and E_r > 260 GPa are achieved in the fully crystallized sample). The mechanical hardening is accompanied with an increase of the elastic recovery and a decrease of the Poisson’s ratio. The different microstructural mechanisms responsible for these annealing-induced changes in mechanical and elastic properties are discussed.
机译:采用铜模铸造法合成了Fe_(36)Co_(36)B_(19.2)Si_(4.8)Nb_4块状玻璃棒。研究了退火处理对该合金组织、弹性和力学性能的影响。在玻璃化转变温度以下退火会引起具有伪十倍对称性的原子团簇的形成,这些原子团簇与Fe_(23)B_6相密切相关。在足够高的温度下退火可促进稳定的 Fe_2B 和 FeB 相以及 Fe(Co) 固溶体的形成。铸成合金具有超高硬度(H > 14 GPa)、高还原杨氏模量(E_r > 200 GPa)和良好的耐磨性。在热处理后(在完全结晶的样品中达到 H > 18 GPa 和 E_r > 260 GPa),这些性能得到进一步增强。机械硬化伴随着弹性恢复的增加和泊松比的减小。讨论了导致这些退火引起的机械和弹性性能变化的不同微观结构机制。

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