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Evaluation of magnetostrictive composite coated fabric as a fragment barrier material

机译:磁致伸缩复合涂层织物作为碎片阻隔材料的评价

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Over the last decade a surge in fragment barrier research has led to investigation of numerous materials and material augmentations in the attempt to improve the ballistic performance of systems designed to protect personnel, vehicles or infrastructure from impact and blast loads. One widely studied material augmentation approach is the use of coatings, often polymers, to enhance the performance of protection systems constructed from metal, concrete, composite and fabric materials. In recent research the authors have conducted the first experimental study of the ballistic performance of fabrics coated with a magnetically responsive polymer. Zero field impact experiments on coated fabric targets showed a 61% increase in impact energy dissipation, although the coated targets were not competitive with neat fabrics on a protection per unit mass basis. Under an applied field of 110 kA m ~(-1), the ballistic performance of the coated fabric was reduced. The reduction in performance may be attributed to a reduction in material damping and an increase in material modulus for the magnetostrictive component of the coating. Analysis of the coated fabric response to magnetic preloads suggests that coating tensile stresses and coatingfabric interface stresses induced by the applied field may also adversely affect ballistic performance.
机译:在过去的十年中,碎片屏障研究的激增导致人们对许多材料和材料的增强进行了研究,以期改善旨在保护人员,车辆或基础设施免受冲击和爆炸载荷影响的系统的弹道性能。一种广泛研究的材料增强方法是使用涂料(通常是聚合物)来增强由金属,混凝土,复合材料和织物材料构成的防护系统的性能。在最近的研究中,作者对涂有磁响应聚合物的织物的弹道性能进行了首次实验研究。在涂层织物靶材上进行的零场冲击实验表明,冲击能量耗散增加了61%,尽管在单位质量保护的基础上,涂层靶材与纯净织物没有竞争力。在110kA m〜(-1)的施加场下,涂层织物的弹道性能降低。性能的降低可归因于涂层的磁致伸缩部件的材料阻尼的降低和材料模量的提高。对涂层织物对磁性预紧力的响应的分析表明,由外加磁场引起的涂层拉伸应力和涂层织物界面应力也可能对弹道性能产生不利影响。

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