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Sensing performance of electrically conductive fabrics and dielectric electro active polymers for parachutes

机译:降落伞用导电织物和介电活性聚合物的传感性能

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This paper quantifies the sensing capabilities of novel smart materials in an effort to improve the performance, better understand the physics, and enhance the safety of parachutes. Based upon a recent review of actuation technologies for parachute applications, it was surmised that the actuators reviewed could not be used to effectively alter the drag or lift (i.e. geometry, porosity, or air vent openings) of a parachute during flight. However, several materials showed potential for sensing applications within a parachute, specifically electrically conductive fabrics and dielectric electro-active polymers. This paper introduces several new conductive fabrics and provides an evaluation of the sensing performance of these smart materials based upon test results using mechanical testing and digital image correlation for comparison.
机译:本文对新型智能材料的感测能力进行了量化,以提高性能,更好地了解物理原理并提高降落伞的安全性。基于对降落伞应用的致动技术的最新回顾,可以推测,所回顾的致动器不能用于有效地改变飞行过程中降落伞的阻力或升力(即几何形状,孔隙度或通风口)。然而,几种材料显示出在降落伞内进行传感应用的潜力,特别是导电织物和电介质电活性聚合物。本文介绍了几种新型的导电织物,并基于使用机械测试和数字图像相关性进行比较的测试结果,对这些智能材料的传感性能进行了评估。

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