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Mechanical behavior of 3D GFRP composite with pure and treated shear thickening fluid matrix subject to quasi-static puncture and shear impact loading

机译:三维GFRP复合材料与纯净处理剪切增稠液基质的力学行为对准静态穿刺和剪切冲击负载

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摘要

In this study, a new low-velocity shear impact test was introduced to carefully investigate the resistance of 3D E-glass fiber reinforced polymer composites with shear thickening fluid matrix. The shear thickening fluids were prepared by dispersing silica nano-particles in polyethylene glycol. Pure shear thickening fluid was modified by treating the silica surface with (3-Aminopropyl) triethoxysilane. Despite the low-velocity shear impact test, various experimental tests such as yarn pull-out, quasi-static puncture, flexibility and thickness tests were carried out to study the mechanical behavior of the composites. Results revealed the treated shear thickening fluid up to 60 wt% improves the performance of the impregnated samples against the yarn pull-out and puncture tests by 353% and 45%, respectively, and their shear impact resistance by 130% compared to the neat cases without noticeably affecting the fabric flexibility.
机译:在该研究中,引入了一种新的低速剪切冲击试验,以仔细研究3D E-玻璃纤维增强聚合物复合材料与剪切增稠流体基质的电阻。 通过将二氧化硅纳米颗粒分散在聚乙二醇中,制备剪切增稠液。 通过用(3-氨基丙基)三乙氧基硅烷处理二氧化硅表面来改变纯剪切增稠液。 尽管低速剪切冲击试验,但进行了各种实验测试,例如纱线拉出,准静态穿刺,柔韧性和厚度试验,以研究复合材料的机械行为。 结果显示,高达60重量%的经处理的剪切增稠液可提高浸渍样品对纱线拉出和穿刺试验的353%和45%,与整洁案例相比,它们的剪切抗冲击性抗剪切抗冲击性能为130% 没有明显影响织物的灵活性。

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