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NANOCOMPOSITE FABRIC SENSORS FOR MONITORING INFLATABLE AND DEPLOYABLE SPACE STRUCTURES

机译:纳米复合织物传感器,用于监测充气和可展开的空间结构

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Inflatable deployable structures are practical and promising candidates for serving various aerospace missions, for instance, as solar sails, antennas, space suits, and especially Lunar and Mars habitats. These structures feature flexible composites folded at high packing efficiency, which can drastically reduce launch costs. However, they can also be damaged due to the harsh extraterrestrial operating conditions, which can propagate to cause catastrophic mission failure and endanger crew safety. Therefore, it is imperative to integrate a robust structural health monitoring (SHM) system, so that damage and faults can be detected for ensuring their safe and reliable operations. While a variety of SHM technologies have been developed for monitoring conventional, rigid, structural systems, they are faced with challenges when used for these unconventional flexible and inflatable systems. Therefore, a flexible carbon nanotube-fabric nanocomposite sensor is proposed in this study for monitoring the integrity of inflatable space structures. In particular, CNT-based thin films were fabricated by spraying and then integrated with flexible fabric to form the lightweight sensor. By coupling fabric sensors with an electrical impedance tomography (EIT) algorithm, the fabric's distribution of spatial resistivity can be mapped using only electrical measurements obtained along the material's boundaries. The severity and location of localized pressure and impact damage can be captured by observing changes in the EIT-calculated resistivity maps. They can be embedded in inflatable habitat structures to detect and locate abnormally high pressure regions and impact damage.
机译:可膨胀的可部署结构是服务各种航空航天任务的实用性和有希望的候选人,例如太阳风帆,天线,太空套装,特别是农历和火星栖息地。这些结构具有以高填充效率折叠的柔性复合材料,这可能会急剧降低发射成本。然而,由于苛刻的外星操作条件,它们也可能被损坏,这可以宣传造成灾难性的任务失败和危险的船员安全。因此,必须集成强大的结构健康监测(SHM)系统,以便检测到损坏和故障,以确保其安全可靠的操作。虽然已经开发出各种SHM技术用于监测传统的,刚性,结构系统,但对于这些非常规灵活性和充气系统时,它们面临挑战。因此,在该研究中提出了一种柔性碳纳米管织物纳米复合材料传感器,用于监测充气空间结构的完整性。特别地,通过喷涂和然后与柔性织物集成来制造基于CNT的薄膜以形成轻质传感器。通过用电阻断层扫描(EIT)算法耦合织物传感器,可以仅使用沿着材料的边界获得的电测量来映射空间电阻率的分布。通过观察EIT计算的电阻率图中的变化,可以捕获局部压力和冲击损伤的严重程度和位置。它们可以嵌入充气栖息地结构中以检测和定位异常高压区域和冲击损伤。

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