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Rheometry of novel shear thickening fluid and its application for improving the impact energy absorption of p-aramid fabric

机译:新型剪切增稠液的流变学及其改进P-芳族织物冲击能量吸收的应用

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The present work deals with synthesis and rheological characterisation of chemically modified polyethylene glycol (PEG) based novel shear thickening fluids (STFs) and their application to enhance impact resistance performance of p-aramid fabrics. The carrier fluid, i.e., PEG 200 was modified with citric acid and then modified PEG (M-PEG) was characterised by FTIR and NMR analysis which confirmed formation of ester link by reaction between PEG and citric acid. Mass distribution of M-PEG, analysed by MALDI-TOF, showed that either one or two PEG molecules reacted with one molecule of citric acid. A comparative thorough rheological analysis of M-STF and virgin STF showed significant increase in thickening behaviour in M-STF. The peak viscosity of M-STF increased 76 times while the critical shear rate decreased from 95.4 to 0.212 s(-1). Evidently, the chemical modification of PEG results in higher molar mass and higher number of hydrophilic functional groups, exhibiting better media-particle interaction by abundant H-bonding. Further, this media-particle interaction was studied by dynamic rheological analysis. As a consequence of enhanced dilatancy, impact resistance performance of M-STF treated para-aramid fabric improved by 30% with respect to that of virgin STF treated fabrics.
机译:本作者涉及基于化学改性的聚乙二醇(PEG)的新型剪切增稠液(STF)的合成和流变特征及其应用,以提高P-芳族织物的抗冲击性能。用柠檬酸改性载体流体,即PEG 200,然后通过FTIR和NMR分析表征改性PEG(M-PEG),并通过PEG和柠檬酸之间的反应确认了酯链路的形成。 MALDI-TOF分析M-PEG的质量分布表明,一个或两个PEG分子与一个分子的柠檬酸反应。 M-STF和Virgin STF的比较彻底流变分析显示了M-STF中增稠行为的显着增加。 M-STF的峰值粘度增加76次,而临界剪切速率从95.4降低到0.212 s(-1)。显然,PEG的化学改性导致更高的摩尔质量和较高的亲水性官能团,通过丰富的H键合出更好的介质颗粒相互作用。此外,通过动态流变分析研究了该介质颗粒相互作用。由于增强的抗膨胀,M-STF处理的对芳族聚酰胺织物的抗冲击性能相对于维文STF处理的织物的造型织物的改善了30%。

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