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Enhancement of energy absorption by incorporation of shear thickening fluids in 3D-mat sandwich composite panels upon ballistic impact

机译:通过在弹道撞击中将剪切增稠流体掺入3D-mat夹芯复合板中来增强能量吸收

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Sandwich Composite panels have been proved to be efficient materials for energy dissipation. A new type of sandwich composite panels using 3D-mats with interconnected channels sandwiched between Kevlar (R) layers have been manufactured in this research work. The core of the panels have been filled with high-performance 600 nm silica based Shear Thickening Fluids (STFs) dispersed in polyethylene glycol of molecular weight 200 g/mol (PEG-200) to study its effect in improving the energy dissipation of the material. The panels are subjected to ballistic impact using a 9 mm diameter projectile. It was found that the STF-incorporated sandwich composite panels could absorb 96.3% of the incident energy which accounts to 67.4% more energy absorbed and also a 61.26% increase in absorbed energy per unit increase in weight in comparison to the hollow sandwich composite panels. This makes the STF-incorporated sandwich composite panels a promising material for enhanced energy absorption.
机译:三明治复合板已被证明是用于耗能的有效材料。在这项研究工作中,已经制造出一种新型的三明治复合材料面板,该面板使用3D垫将相互连接的通道夹在Kevlar(R)层之间。面板的核心已经填充了高性能的600 nm二氧化硅基剪切增稠液(STF),分散在分子量为200 g / mol(PEG-200)的聚乙二醇中,以研究其在改善材料能量耗散方面的作用。使用直径为9 mm的弹丸对面板进行弹道冲击。发现与中空夹芯复合板相比,掺有STF的夹芯复合板可吸收96.3%的入射能量,这意味着吸收的能量增加了67.4%,单位重量增加的吸收能量也增加了61.26%。这使得掺有STF的夹心复合板成为增强能量吸收的有前途的材料。

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