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A Shape Memory Alloy Based Cryogenic Thermal Conduction Switch

机译:基于形状记忆合金的低温导热开关

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摘要

Shape memory alloys (SMAs) can produce large strains when deformed (e.g., up to 8%). Heating results in a phase transformation and associated recovery of all the accumulated strain. This strain recovery can occur against large forces, resulting in their use as actuators. Thus an SMA element can integrate both sensory and actuation functions, by inherently sensing a change in temperature and actuating by undergoing a shape change as a result of a temperature-induced phase transformation. Two aspects of our work on cryogenic SMAs are addressed here. First - a shape memory alloy based cryogenic thermal conduction switch for operation between dewars of liquid methane and liquid oxygen in a common bulkhead arrangement is discussed. Such a switch integrates the sensor element and the actuator element and can be used to create a variable thermal sink to other cryogenic tanks for liquefaction, densification, and zero boil-off systems for advanced spaceport applications. Second - fabrication via arc-melting and subsequent materials testing of SMAs with cryogenic transformation temperatures for use in the aforementioned switch is discussed.
机译:形状记忆合金(SMA)变形时会产生较大的应变(例如,最高8%)。加热导致相变以及所有累积应变的相关恢复。这种应变恢复可能会抵抗很大的力而发生,从而使其用作致动器。因此,SMA元件可以通过固有地感测温度变化并通过由于温度引起的相变而经历形状变化来进行致动,从而集成感官和致动功能。这里介绍了我们在低温SMA方面的工作的两个方面。首先,讨论了一种基于形状记忆合金的低温热传导开关,用于在普通隔板装置中的液态甲烷和液态氧的杜瓦瓶之间运行。这种开关将传感器元件和执行器元件集成在一起,可用于为其他低温罐创建可变散热片,以用于液化,致密化和零蒸发系统,以用于先进的太空港应用。其次,讨论了用于上述开关的具有低温转变温度的SMA的电弧熔化制造和后续材料测试。

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