首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of yttrium addition on thermoplastic formability of Zr-Cu-Ni-Al amorphous alloy under non-isothermal condition
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Effects of yttrium addition on thermoplastic formability of Zr-Cu-Ni-Al amorphous alloy under non-isothermal condition

机译:钇加入对非等温条件下Zr-Cu-Ni-Al非晶合金热塑性成形性的影响

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摘要

A low-cost and Be-free Zr-based amorphous system with excellent thermoplastic formability has been developed by doping a small amount of Y element. Based on the thermodynamic test data, Y addition can increase the supercooled liquid region of Zr-based amorphous alloy when it is less than 2 at%, leading to a relatively wider temperature range of thermoplastic forming. The compression experimental results reveal that (Zr0.507Cu0.28Ni0.9Al0.123)98.5Y1.5 (ZrY1.5) alloy possesses the largest Dmax value (the maximum diameter of the compressed cylindrical specimen) than other Zr-based amorphous alloys prepared in this study, thereby confirming its superior thermoplastic formability. A lower viscosity can be observed on the TMA curves of ZrY1.5 alloy, suggesting that appropriate Y addition decreases the viscous resistance of amorphous supercooled liquid. However, the more obvious deviation from Vogel?Fulcher?Tamann theoretical model indicates the weak Arrhenius temperature dependence of viscous flow behavior. The parameter ?TTPF/D*, where ?TTPF represents the temperature range of thermoplastic forming and D* denotes the fragility index, is found to be an effective indicator for evaluating the thermoplastic formability of the investigated Y addition Zr-based amorphous system. Finally, Zr-based amorphous nanopillar arrays have been successfully fabricated under non-isothermal condition, which further proves that Y addition Zr-based amorphous alloy is a promising candidate for nanomolding material.
机译:通过掺杂少量Y元素,研制出了一种低成本、无铍、热塑性成形性能优异的锆基非晶合金。根据热力学测试数据,当Y的加入量小于2at%时,可以增加Zr基非晶合金的过冷液相区,导致热塑性成形的温度范围相对较宽。压缩实验结果表明(Zr0.507Cu0.28Ni0.9Al0.123)98.5Y1。5(ZrY1.5)合金比本研究中制备的其他Zr基非晶合金具有最大的Dmax值(压缩圆柱形试样的最大直径),从而证实了其优越的热塑性成形性。在ZrY1的TMA曲线上可以观察到较低的粘度。5合金,表明适当的Y添加降低了非晶过冷液体的粘性阻力。然而,与Vogel更明显的偏差是什么?福尔彻?塔曼理论模型表明,粘性流动行为对阿累尼乌斯温度的依赖性较弱。参数?TTPF/D*,在哪里?TTPF表示热塑性成形的温度范围,D*表示脆性指数,被发现是评估所研究的Y添加锆基非晶系统热塑性成形性的有效指标。最后,在非等温条件下成功制备了锆基非晶纳米柱阵列,进一步证明了Y添加锆基非晶合金是一种很有前途的纳米模塑材料。

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