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Mission STS-134: Results of Shape Memory Foam Experiment

机译:任务STS-134:形状记忆泡沫实验的结果

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Shape memory epoxy foams were used for an experiment aboard the International Space Station (ISS) to evaluate the feasibility of their use for building light actuators and expandable/deployable structures. The experiment named I-FOAM was performed by an autonomous device contained in the BIOKON container (by Kayser Italia) which was in turn composed of control and heating system, battery pack and data acquisition system. To simulate the actuation of simple devices in micro-gravity conditions, three different configurations (compression, bending and torsion) were chosen during the memory step of the foams so as to produce their recovery on ISS. Micro-gravity does not affect the ability of the foams to recover their shape but it poses limits for the heating system design because of the difference in heat transfer on Earth and in orbit. A recovery about 70% was measured at a temperature of 110 ℃ for the bending and torsion configuration whereas poor recovery was observed for the compression case. Thanks to these results, a new experiment has been developed for a future mission by the same device: for the first time a shape memory composite will be recovered, and the actuation load during time will be measured during the recovery of an epoxy foam sample.
机译:形状记忆环氧树脂泡沫用于国际空间站(ISS)上的实验,以评估将其用于建造光致动器和可扩展/可展开结构的可行性。名为I-FOAM的实验是通过装在BIOKON容器(由Kayser Italia生产)中的自主设备执行的,该设备又由控制和加热系统,电池组和数据采集系统组成。为了模拟在微重力条件下简单设备的致动,在泡沫的记忆步骤中选择了三种不同的配置(压缩,弯曲和扭转),以便在ISS上回收它们。微重力不影响泡沫恢复形状的能力,但由于地球和轨道上的热传递差异,它对加热系统的设计提出了限制。在110℃的温度下,弯曲和扭转结构的回复率约为70%,而压缩情况下的回复率很低。由于这些结果,已经为同一设备的未来任务开发了一个新的实验:首次将形状记忆复合材料回收,并将在回收环氧泡沫样品期间测量一段时间内的驱动负荷。

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