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An exposition of shear thickening fluid treated double and 3D woven fabrics with a new integrity factor for enhanced impact resistance

机译:剪切增稠流体处理的双和3D编织织物的阐述,具有新的完整性因子,以提高抗冲击性

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Impact behaviour of a woven fabric depends on its material composition, interlacement pattern (weave) and sett. In this work, 2D and 3D woven fabrics were prepared and evaluated for their impact resistance in neat and shear thickening fluid (STF) treated conditions. 2D structures included homogeneous ultra-high molecular weight polyethylene (UHMWPE) fabric, hybrid fabric of p-aramid and UHMWPE, and double fabric with paramid as face and UHMWPE as back layer. 3D woven fabrics of different variants were composed of UHMWPE as warp and p-aramid as weft. A new parameter, named integrity factor, was introduced to quantify the firmness of 3D woven fabrics . The results highlighted the superior impact resistance of neat double fabric, a structure that has not been explored before, and STF treated hybrid 2D fabric. Among the 3D fabrics, impact energy absorption was the highest in through-thickness orthogonal (0.0935 J m2 g-1; integrity factor of 1.760), followed by layer by layer orthogonal (0.0685 J m2 g-1; integrity factor of 1.493) and the least of all, in through-thickness angle interlock fabric (0.0373 J m2 g-1; integrity factor of 1.026). STF treatment improved the impact resistance in all cases of 2D, double and 3D fabrics, with increment ranging from 38 to 153%. Outcome of this research will be helpful in designing double and 3D woven fabrics for impact resistance applications.
机译:织物的冲击性能取决于其材料组成,隔离图案(编织)和设置。在这项工作中,制备2D和3D编织织物,并评估它们在整洁和剪切增稠液(STF)处理条件下的抗冲击性。 2D结构包括均相超高分子量聚乙烯(UHMWPE)织物,P-芳纶和UHMWPE的杂化织物,以及PARAPID作为面部和UHMWPE作为背层的双织物。 3D不同变体的编织织物由UHMWPE作为WERP和P-Aramid作为纬纱组成。引入了一个名为完整性因子的新参数,以量化3D编织面料的坚固性。结果突出了整齐双面织物的优越抗冲击性,该结构尚未探索,以及STF处理的杂交2D织物。在3D织物中,冲击能量吸收是贯穿厚度正交的最高(0.0935 J M2 G-1;完整性因子为1.760),然后通过层正交(0.0685JM2 G-1;完整性因子为1.493)和最重要的是,通过厚度角互锁面料(0.0373 J M2 G-1;完整性因子为1.026)。 STF治疗改善了所有2D,双和3D织物的抗冲击性,增量从38%到153%。该研究的结果将有助于设计用于抗冲击应用的双和3D编织织物。

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