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Published: 2006 ,
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[1]刘兰俊,席赟,祖方遒.Bi-20.5Te合金熔体结构转变及其对凝固的影响[J].特种铸造及有色合金,2006(10):609-611+603.
Liu Lanjun, Xi Yun, Zu Fangqiu. Liquid Structure Transition and its Effects on Solidification in Bi-20.5Te Melt. [J]. Special Casting & Nonferrous Alloys (10):609-611(2006)
通过对Bi-20.5Te合金熔体电阻率随温度变化的研究
发现合金熔体在642℃时存在着液-液结构转变。分析Bi-Te合金熔体在不同成分和不同温度的原子结合规律
认为这种结构转变是由于熔体中的原子团簇变化引起的。将Bi-20·5Te合金分别在熔体结构转变前温度(600℃)、结构转变后温度(700℃)的范围内熔炼、保温
测定相应的凝固曲线
并观察凝固组织。结果表明
相对于在结构转变前保温处理的熔体
将合金在700℃保温处理后
凝固时所需过冷度增大
释放凝固潜热更加剧烈
并且凝固组织显著细化。产生这种现象的原因是由于熔体结构内的Bi-Bi同类原子团簇
以及具有共价结合的Bi-Te原子团簇在高温下被打破
熔体趋向均匀
对凝固过程中的原子扩散造成影响
进而影响合金的凝固行为及组织。
Presence of liquid-liquid structure transition has been observed in Bi-20.5Te at 642 ℃ by measuring its electric resistivity with temperature increase. Through analyzing the atomic bonding mechanism of Bi-Te alloy melt with different compositions at different temperatures
it was concluded that the structure transition is arising from change in atomic cluster in the melt. The solidification curves of the alloy before (600 ℃) and after (700 ℃) structure transition has been mapped and its microstructure has been observed. The results show that compared with melt before structure transition at holding treatment
the alloy after structure transition holding at 700 ℃ needs higher undercooling degree and releases sharper latent heat during solidification
and possesses finer solidification microstructure
which is attributed to the debonding of Bi-Bi cluster and Bi-Te cluster in the melt structure
leading to uniform distribution of the melt to influence the atom diffusion during solidification
further to influence the solidification behavior and structure.
Bi-20.5Te合金熔体结构转变凝固行为及组织
Bi-20.5Te AlloyMelt Structure TransitionSolidification Behavior and Structure
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