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Engineering enhanced cut and puncture resistance into the thermal micrometeoroid garment (TMG) using shear thickening fluid (STF) - Armor (TM) absorber layers

机译:使用剪切增稠液(STF)-Armor(TM)吸收层,对热微流线服装(TMG)进行工程设计,以增强其抗割伤性

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摘要

The low-earth orbit environment contains small micrometeoroid and orbital debris (MMOD) particles traveling at characteristic velocities of several kilometers per second. In addition to being a direct threat to astronauts and spacecraft, upon impact with the exterior surface of a space vehicle, these highly energetic MMOD particles can create cut and puncture hazards for astronauts performing extra-vehicular activities (EVA). In this work, we demonstrate that replacing the standard neoprene-coated nylon absorber layers with woven aramid textiles intercalated with colloidal shear thickening fluids, i.e., STF-Armor (TM), can provide a meaningful enhancement to the cut and puncture resistance of the thermal micrometeoroid garment (TMG). Quasi-static puncture testing is performed using hypodermic needles of varying gauge to simulate the cutting and puncture hazards at deformation rates characteristic of human motion. At equal areal densities, we find that a TMG lay-up containing STF-Armor (TM) greatly improves puncture protection with a reduction in weight and comparable flexibility. (C) 2016 Elsevier Ltd. All rights reserved.
机译:低地球轨道环境包含以每秒几公里的特征速度行进的微小的流星体和轨道碎片(MMOD)粒子。这些高能量的MMOD粒子不仅直接威胁宇航员和航天器,而且还受到航天器外表面的撞击,还会对进行舱外活动(EVA)的宇航员造成割伤和刺伤的危险。在这项工作中,我们证明了用插入有胶体剪切增稠液(即STF-Armor(TM))的芳纶编织织物代替标准的氯丁橡胶涂层的尼龙吸收层可以显着提高耐热性的抗割穿性微型服装(TMG)。使用不同规格的皮下注射针进行准静态穿刺测试,以模拟人体运动的变形速率下的割伤和刺伤危险。在相等的面密度下,我们发现包含STF-Armor(TM)的TMG铺层极大地改善了穿刺保护性,并减轻了重量并具有相当的柔韧性。 (C)2016 Elsevier Ltd.保留所有权利。

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