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Coarsening in Solid-Liquid Mixtures-2: A Materials Science Experiment for the ISS

机译:固液混合物中的粗化-2:国际空间站的材料科学实验

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摘要

A materials science experiment has been developed and readied for operation aboard the International Space Station (ISS). Components of this experiment are onboard ISS and area awaiting the flight of science samples. The goal of the experiment is to understand the dynamics of Ostwald ripening, also known as coarsening, a process that occurs in nearly any two-phase mixture found in nature. Attempts to obtain experimental data in ground-based laboratories are hindered due to the presence of gravity, which introduces material transport modes other than that of the coarsening phenomenon. This introduces adjustable parameters in the formulation of theory. The original Coarsening in Solid-Liquid Mixtures (CSLM) mission, which flew on the Space Shuttle in 1997, produced data from a coarsened eutectic alloy. Unfortunately, both the science matrix and the hardware, while nominally functional, did not account adequately for operations in microgravity. A significantly redesigned follow-on experiment, CSLM-2 has been developed to redress the inadequacies of the original experiment. This paper reviews the CSLM-2 project: its history, science goals, flight hardware implementation, and planned operations and analysis
机译:已经开发了材料科学实验,并准备在国际空间站(ISS)上运行。该实验的组成部分是机载ISS和等待科学样品飞行的区域。实验的目的是了解奥斯特瓦尔德熟化(也称为粗化)的动力学,该过程几乎发生在自然界中的任何两相混合物中。由于重力的存在,阻碍了在地面实验室中获得实验数据的尝试,这引入了除粗化现象之外的材料传输模式。这在理论表述中引入了可调参数。最初的固液混合物粗化(CSLM)任务于1997年在航天飞机上飞行,它从粗化的共晶合金中产生数据。不幸的是,尽管科学矩阵和硬件都具有名义上的功能,但它们并不能充分说明微重力下的操作。 CSLM-2是经过重大重新设计的后续实验,旨在弥补原始实验的不足。本文回顾了CSLM-2项目:其历史,科学目标,飞行硬件的实施以及计划的运营和分析

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