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The Kinematic Viscosity of Liquid Copper-Aluminum Alloys

机译:液态铜铝合金的运动粘度

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The method of damped torsional vibrations of crucible with liquid under investigation is used for measuring the temperature dependences of kinematic viscosity v of Cu{sub}(100-x)Al{sub}x melts (x = 0-100 at.%) in the range of temperatures t between the liquidus and 1100-1450℃. Unlike the majority of such experiments, the measurements are performed both in the process of heating the sample after its melting and in the course of subsequent cooling. The branching of v(t) curves corresponding to the foregoing modes is revealed below certain temperatures dependent on the composition of sample (viscosity hysteresis). The curves obtained under cooling have a simple exponential shape predicted by activation theories of viscous flow. The obtained temperature dependences are used for constructing isotherms of kinematic viscosity, on which maxima are observed in the vicinity of stoichiometric concentration of CuAl{sub}3 and composition of Cu-30 at.% Al. For the same compositions, extrema are observed on the concentration dependence of activation energy of viscous flow.
机译:所研究的液体在坩埚中的阻尼扭转振动方法被用于测量Cu {sub}(100-x)Al {sub} x熔体(x = 0-100 at。%)的运动粘度v的温度依赖性。在液相线和1100-1450℃之间的温度范围t。与大多数此类实验不同,测量是在样品熔化后加热的过程中以及随后的冷却过程中进行的。在取决于样品成分(粘度滞后)的某些温度以下,揭示了对应于前述模式的v(t)曲线的分支。在冷却条件下获得的曲线具有简单的指数形状,该形状由粘性流的激活理论预测。所获得的温度依赖性用于构建运动粘度的等温线,其在化学计量浓度的CuAl {sub} 3和Cu-30 at。%Al的化学计量浓度附近观察到最大值。对于相同的组合物,在粘性流的活化能的浓度依赖性上观察到极值。

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