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A dynamic technique for measuring surface tension at high temperatures in microgravity environment

机译:一种在微重力环境下高温下测量表面张力的动态技术

摘要

The feasibility of a dynamic technique for measuring surface tension of liquid metals at high temperatures in a microgravity environment was demonstrated. The basic method involves heating a tubular specimen resistively from ambient temperature through its melting point in about 1 sec by passing an electrical current pulse through it, while simultaneously recording the pertinent experimental quantities. Static equilibrium for the molten specimen is achieved in a microgravity environment by splitting the current after it passes through the specimen tube and returning a fraction along the tube axis, and the remaining fraction outside the specimen. Adjustments to the current split enable a balance between the magnetic and surface tension forces acting on the specimen. Values for surface tension are determined from measurements of the equilibrium dimensions of the molten specimen tube, and the magnitudes of the currents. Rapid melting experiments, performed during microgravity simulations with the NASA KC-135 aircraft, yield a value for the surface tension of copper at its melting point which is in agreement with literature data. Measurements of surface tension of a refractory metal (tantalum) are underway.
机译:证明了在微重力环境下测量液态金属表面张力的动态技术的可行性。基本方法是通过使电流脉冲流过管状样品,在大约1秒钟的时间内从环境温度开始电阻加热至其熔点,同时记录相关的实验量。熔融样品的静态平衡是在微重力环境下实现的,方法是在流过样品管后将电流分开,然后沿管轴返回一个馏分,并将剩余馏分返回样品外,从而实现静态平衡。电流分流的调整可以在作用在样品上的磁力和表面张力之间实现平衡。表面张力的值由熔融样品管的平衡尺寸和电流大小的测量值确定。在NASA KC-135飞机的微重力模拟过程中进行的快速熔化实验得出的铜熔点下的表面张力值与文献数据相符。难熔金属(钽)的表面张力的测量正在进行中。

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