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Conductive shear thickening gel/Kevlar wearable fabrics: A flexible body armor with mechano-electric coupling ballistic performance

机译:导电剪切增稠凝胶/凯夫拉耐磨面料:具有机电耦合弹道性能的柔性防弹衣

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摘要

This work reported a novel conductive shear thickening gel-Kevlar fabrics (c-STG/Kevlar) body armor material which possessed both anti-impact performance and dynamic mechano-sensing behavior. Due to the excellent shear thickening effect, the c-STG/Kevlar showed a higher safeguarding property than the neat Kevlar. Under low-velocity drop tower loading, the maximum center force of c-STG/Kevlar was only 5768 N, which was nearly half of the neat Kevlar (11414 N). During the high-velocity ballistic testing, the monolayer c-STG/Kevlar sample could absorb 21.6% impact energy. The c-STG/Kevlar displayed a mechano-electric coupling character since the electrical resistance of the c-STG/Kevlar was linearly dependent on the external impacts. A possible sensing mechanism was proposed and it was found that the impact damages could be evaluated by the resistance variation. Finally, an in situ impact-sensing helmet was obtained by using c-STG/Kevlar, which indicated that the above smart fabrics had wide potential in next generation body armor materials and wearable devices.
机译:这项工作报告了一种新型的导电剪切增稠凝胶-凯夫拉纤维织物(c-STG / Kevlar)防弹衣材料,它既具有抗冲击性能,又具有动态机械感测性能。由于优异的剪切增稠效果,c-STG / Kevlar的保护性高于纯净的Kevlar。在低速落塔载荷下,c-STG / Kevlar的最大中心力仅为5768 N,几乎是整齐的Kevlar(11414 N)的一半。在高速弹道测试过程中,单层c-STG / Kevlar样品可吸收21.6%的冲击能。 c-STG / Kevlar表现出机电耦合特性,因为c-STG / Kevlar的电阻线性地取决于外部冲击。提出了一种可能的传感机制,发现可以通过电阻变化来评估冲击损伤。最后,通过使用c-STG / Kevlar获得了现场撞击感测头盔,这表明上述智能织物在下一代防弹衣材料和可穿戴设备中具有广阔的潜力。

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