Manufacturing of shape memory foams in hypergravity and simulated microgravity

L. Santo
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Abstract

Abstract. Shape memory polymer (SMP) foams have the potential to be used in space application for self-deployable structures and actuators. For this reason, shape recovery tests have been performed in microgravity, but these foams have been never manufactured in space, because of experimentation costs and flight opportunities. Some foams have been manufactured on-Earth in a random positioning machine (RPM) and a large diameter centrifuge (LDC) under different conditions with the aim of understating if the gravity can play a role during foaming. Foams have been characterized by 3D micro-Computed Tomography (micro-CT) and the effect of the foaming condition on the foam structure is discussed in this study. For the first time, it has been observed that SMP epoxy foams produced by solid state foaming present open porosity with a negligible contribution of closed pores. Moreover, it is confirmed that SSF foams is minimally affected by the gravity conditions apart the contribution of the gravity vector on the heat transfer conditions during foaming.
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在超重力和模拟微重力条件下制造形状记忆泡沫
摘要。形状记忆聚合物(SMP)泡沫具有在太空应用中用于自部署结构和致动器的潜力。因此,已经在微重力环境下进行了形状复原测试,但由于实验成本和飞行机会的原因,这些泡沫从未在太空中制造过。一些泡沫是在地球上的随机定位机(RPM)和大直径离心机(LDC)中,在不同条件下制造的,目的是了解重力是否会在发泡过程中发挥作用。本研究通过三维微型计算机断层扫描(micro-CT)对泡沫进行了表征,并讨论了发泡条件对泡沫结构的影响。研究首次发现,固态发泡产生的 SMP 环氧泡沫具有开放孔隙率,闭合孔隙的贡献微乎其微。此外,研究还证实,除了重力矢量对发泡过程中传热条件的影响外,固态发泡泡沫受重力条件的影响极小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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