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Wrinkling control of inflatable booms using shape memory alloy wires

机译:使用形状记忆合金线控制充气臂的起皱

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An inflatable boom is a fundamental structural part of inflatable space structures maintaining the expected configuration of the whole system, supporting external loads and guaranteeing the efficiency of the membrane surface. The inflatable structure is a thin film structure compactly packaged and expanded to the desired configuration by the internal gas pressure. But the structures can be easily distorted and even collapsed by wrinkling. In this study, the behavior of an inflatable boom structure is investigated numerically and experimentally. To achieve a better bending strength, the methodology to control the wrinkling growth and the deformed configuration of the inflatable boom structure with a shape memory alloy (SMA) wire actuator is developed. To understand the nonlinear behavior of an inflatable boom due to wrinkling, the structure is numerically modeled using the ABAQUS finite element program with a wrinkling algorithm developed based on the Miller-Hedgepeth membrane theory. To verify the present analysis method, the inflatable boom made of Kapton film is examined by the bending tests with various internal pressures. To delay the growth of wrinkling that rapidly deteriorates the bending strength of the inflatable boom, a SMA wire actuator is applied. SMA wires are attached on the edge of the inflatable boom and generate a recovery force to remove wrinkling and restore the deformation of the boom.
机译:充气式吊杆是充气式空间结构的基本结构部分,可维持整个系统的预期结构,支撑外部载荷并确保膜表面的效率。可充气结构是一种薄膜结构,其通过内部气压被紧凑地包装并扩展到期望的构造。但是,这些结构很容易变形,甚至会因起皱而塌陷。在这项研究中,对充气动臂结构的行为进行了数值和实验研究。为了获得更好的弯曲强度,开发了一种利用形状记忆合金(SMA)线致动器控制起重臂结构的起皱增长和变形构造的方法。为了了解起重臂由于起皱而产生的非线性行为,使用ABAQUS有限元程序对结构进行了数值建模,并基于Miller-Hedgepeth膜理论开发了起皱算法。为了验证本分析方法,对Kapton薄膜制成的可充气吊杆在各种内部压力下进行了弯曲测试。为了延缓起皱的发展,起皱的发展会迅速恶化可充气吊臂的弯曲强度,因此使用了SMA线促动器。 SMA线连接到可充气吊臂的边缘,并产生恢复力以消除皱纹并恢复吊臂的变形。

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