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Thermophysical Property Measurement and Materials Research in the NASA/MSFC Electrostatic Levitator

机译:NASA / MSFC静电悬浮液中的热物理性能测量和材料研究

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Containerless processing is an important tool for thermophysical property measurements and materials research. The freedom from a crucible allows processing of liquid materials in a metastable undercooled state, as well as allowing processing of high temperature and highly reactive melts. Electrostatic levitation (ESL) is a containerless method which provides a number of unique advantages, including the decoupling of positioning force from sample heating, the ability to operate in ultra-high vacuum or at moderate gas pressure (~3 atm), and the ability to process non-conducting materials. ESL also has the potential to reduce internal flow velocities below those possible with electromagnetic, acoustic, or aero-acoustic techniques. The ESL facility at NASA's Marshall Space Flight Center (MSFC) is in use for thermophysical property measurements and materials research by a number of different internal and external investigators. The methods for obtaining access to the facility, as well as a summary of current capabilities and some future directions will be discussed.
机译:容器加工是热物理测量和材料研究的重要工具。来自坩埚的自由允许在稳定的过冷状态下加工液体材料,以及允许加工高温和高度反应性熔体。静电悬浮(ESL)是一种容器方法,可提供许多独特的优点,包括从采样加热的定位力的去耦,在超高真空或中等气体压力(〜3atm)中操作的能力,以及能力处理非导电材料。 ESL还具有可能降低电磁,声学或航空声学技术的内部流速。美国宇航局的马歇尔空间飞行中心(MSFC)的ESL设施用于热物理测量和材料研究,由许多不同的内部和外部调查人员进行。将讨论获取设施的访问的方法以及当前能力的摘要以及一些未来的方向。

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