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On the Solidification of Metal Alloys during Microgravity Conditions

机译:微重力条件下金属合金的凝固

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Thermal analysis and unidirectional solidification experiments of mainly Al-, Sn- and Pb-base alloys has been performed during Rocket Flights, Parabolic aircraft flights, Space Lab, and GAS- Shuttle flights over three decades. In this presentation the special equipments developed and the experimental results from the different flight opportunities are to be presented. The cooling rates in the theraml analysis experiments have varied from around 0.01 to 10 C/Sec.The coarsnes fo the structure has been evaluated and the main effect is an increase in coarsness with decreasing gravity. The solidification undercooling was measured and it was mainly lower during microgravity conditions. The microgravity conditions gave mostly a larger effective partition coeffecient. The result will be presented and shortly discussed from existing theoretical standpoints and the difference will be analysed.
机译:在过去的三十多年的火箭飞行,抛物线飞行,太空实验室和GAS-航天飞机飞行中,已经进行了主要是Al,Sn和Pb基合金的热分析和单向凝固实验。在这次介绍中,将介绍开发的专用设备以及来自不同飞行机会的实验结果。 Theraml分析实验中的冷却速率在0.01至10 C / Sec之间变化。已评估了结构的粗粉,其主要作用是随着重力的降低而增加了粗度。测量了固化过冷度,其在微重力条件下主要较低。微重力条件主要给出了较大的有效分配系数。从现有的理论观点出发,将对结果进行介绍和简短讨论,并对差异进行分析。

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