首页> 外文期刊>Russian Journal of Non-Ferrous Metals >Viscosity of high-entropy melts in Cu-Sn-Pb-Bi-Ga, G-Sn, Cu-Pb, Cu-Ga, and Cu-Bi equiatomic compositions
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Viscosity of high-entropy melts in Cu-Sn-Pb-Bi-Ga, G-Sn, Cu-Pb, Cu-Ga, and Cu-Bi equiatomic compositions

机译:Cu-Sn-Pb-Bi-Ga,G-Sn,Cu-Pb,Cu-Ga和Cu-Bi等原子组成中的高熵熔体的粘度

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摘要

Temperature dependences of kinematic viscosity of high-entropy melts (HEM) of the composition, at %, Cu-20Sn-20Pb-20Bi-20Ga, Cu-50Sn, Cu-50Pb, Cu-50Ga, and Cu-50Bi are investigated in a temperature range from 1550 to 1300A degrees C. It is shown that melt overheating above a definite temperature (t (hom)) leads to the appearance of viscosity hysteresis, which indicates a variation in the structural state of the HEM. The values of t (hom) for all studied samples are in limits of 925-1185A degrees C. It is found that heating the HEM to definite temperatures (t*) leads to a variation in the activation energy of viscous flow (E) and entropy multiplier (A) in the Arrhenius equation: nu = Aexp[E/(RT)]. Entropy of viscous flow (Delta S (#)) for studied HEMs is investigated in terms of the Airing theory. It is revealed that the magnitude of Delta S# for a five-component Cu-Sn-Pb-Bi-Ga melt in a cooling mode is smaller than during heating by a factor of 2.6. The rheological characteristics of HEMs allow us to consider these melts promising functional materials: solders, heat carriers, and electric contacts.
机译:在室温下研究了该组合物的高熵熔体(HEM)运动粘度(at%)对温度的温度依赖性,即Cu-20Sn-20Pb-20Bi-20Ga,Cu-50Sn,Cu-50Pb,Cu-50Ga和Cu-50Bi温度范围是从1550到1300A摄氏度。表明在确定温度(t(hom))以上的熔体过热会导致出现粘度滞后现象,这表明HEM的结构状态有所变化。所有研究样品的t(hom)值均在925-1185A摄氏度的范围内。发现将HEM加热到确定温度(t *)会导致粘性流(E)和Arrhenius方程中的熵乘数(A):nu = Aexp [E /(RT)]。根据Airing理论,研究了HEM的粘性流熵(Delta S(#))。结果表明,在冷却模式下,五组分Cu-Sn-Pb-Bi-Ga熔体的Delta S#值比加热时小2.6倍。 HEM的流变特性使我们可以考虑这些有希望的熔融材料,如焊料,热载体和电触点。

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