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Structure induced effectiveness of shear thickening fluid for modulating impact resistance of UHMWPE fabrics

机译:剪切增稠液的结构诱导效力对超高分子量聚乙烯织物抗冲击性的调节

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The structural parameters of woven fabrics play a crucial role in determining its impact resistance performance. Conventionally, treatment with shear thickening fluid (STF) has been found to increase the impact energy absorption capacity of fabrics. However, the findings of the current study present a new perspective, and suggest that the effect of STF treatment is favorable based on the structural integrity of woven fabrics. Plain woven fabrics with different fabric sett (threads per inch) were produced using ultra-high molecular weight polyethylene (UHMWPE) yarns of 400 denier and 1350 denier linear density. These fabrics were then treated with STF (65% w/w) made from silica particles (100 nm) dispersed in polyethylene glycol i.e. PEG (200 M-w) and subsequently evaluated for yarn pull-out force and impact energy absorption. The increased yarn pull-out force, at all levels of yarn linear density and fabric sett, implies that STF treatment considerably increases the inter-yarn friction. However, increased yarn to yarn friction is not necessarily beneficial in terms of impact energy absorption and rather becomes detrimental for fabrics made from finer yarns (400 denier) beyond a particular fabric sett.
机译:机织织物的结构参数在决定其抗冲击性能方面起着至关重要的作用。常规地,已经发现用剪切增稠液(STF)处理可以增加织物的冲击能量吸收能力。然而,当前研究的结果提出了一个新的观点,并表明基于机织织物的结构完整性,STF处理的效果是有利的。使用400旦尼尔和1350旦尼尔线密度的超高分子量聚乙烯(UHMWPE)纱线生产具有不同织物凝结度(每英寸线数)的平纹织物。然后用由分散在聚乙二醇即PEG(200 M-w)中的二氧化硅颗粒(100 nm)制成的STF(65%w / w)处理这些织物,然后评估纱线的拔出力和冲击能量吸收率。在纱线线密度和织物沉降的所有水平上增加的纱线拔出力意味着STF处理会大大增加纱线间的摩擦力。但是,增加纱线与纱线之间的摩擦在吸收冲击能量方面并不一定是有益的,而是对由超出特定织物定型的较细纱线(400旦)制成的织物有害。

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