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首页> 外文期刊>Materials Transactions, JIM >Solidification Condition of Bulk Glassy Zr_(60)Al_(10)Ni_(10)Cu_(15)Pd_5 Alloy by Unidirectional Arc Melting
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Solidification Condition of Bulk Glassy Zr_(60)Al_(10)Ni_(10)Cu_(15)Pd_5 Alloy by Unidirectional Arc Melting

机译:单向电弧熔炼大块玻璃态Zr_(60)Al_(10)Ni_(10)Cu_(15)Pd_5合金的凝固条件

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摘要

The relation between the formation of a glassy phase and the solidification parameters of moving velocity of liquid/solid interface (V), temperature gradient (G) and cooling rate (R) was examined for a Zr6oAl_(10)Ni_(10)Cu_(15)Pd_5 alloy, with the aim of clarifying a solidification condition for formation of a bulk glassy alloy by a unidirectional arc-melting method. The glassy phase was obtained in the condition of V>4 mm/s, G>4 K/mm and R>40K/s. The decrease in G causes the formation of equiaxed dendrites, oriented dendrites and cell structure. The supercooling for the present alloy was measured to be as large as 385 K at a low cooling rate of 40 K/s. The large supercooling ability is presumably due to the formation of a highly dense random packed structure where the nucleation of a crystalline phase and the atomic rearrangement for growth reaction are difficult. The glass formation of the present multicomponent alloy in the unidirectional arc melting method seems to be dominated by the ease of the supercooling ability rather than the achievement of high cooling rate.
机译:对于Zr6oAl_(10)Ni_(10)Cu_(),研究了玻璃相的形成与液/固界面运动速度的凝固参数(V),温度梯度(G)和冷却速率(R)之间的关系。 15)Pd_5合金,其目的在于阐明用于通过单向电弧熔化方法形成块状玻璃合金的凝固条件。在V> 4mm / s,G> 4K / mm和R> 40K / s的条件下获得玻璃相。 G的减少导致等轴枝晶,定向枝晶和细胞结构的形成。在40 K / s的低冷却速率下,测得本合金的过冷度高达385K。认为过大的过冷能力是由于形成了高密度的无规堆积结构,其中结晶相的成核和生长反应的原子重排困难。本发明的多组分合金在单向电弧熔化法中的玻璃形成似乎由过冷能力的容易性而不是高冷却速率的实现所决定。

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