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首页> 外文期刊>Journal of Applied Polymer Science >Evaluation of the Mechanical Properties of Lyocell Textile Materials Crosslinked with 2,4-Diacrylamidobenzenesulfonic Acid Under Swollen and Nonswollen Conditions
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Evaluation of the Mechanical Properties of Lyocell Textile Materials Crosslinked with 2,4-Diacrylamidobenzenesulfonic Acid Under Swollen and Nonswollen Conditions

机译:在溶胀和非溶胀条件下与2,4-二丙烯酰胺基苯磺酸交联的莱赛尔纺织材料的力学性能评估

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摘要

Lyocell fabrics were treated with 2,4-diacrylbenzenesulfonic acid (DABS) crosslinking agent under wet and dry reaction conditions, and also for comparison with a conventional dimethyloldihydroxyethylene urea (DMDHEU) agent, reacted under dry conditions. All treatments with DABS led to an improvement in wet and also dry fabric abrasion resistance, measured using the Martindale test, whereas treatment with DMDHEU reduced dry abrasion resistance. A model based on the kinetic strength theory of Zhurkov was used to interpret results, where dry-state abrasion is reduced through stress concentration at the rigid DMDHEU crosslinks, which does not Occur with the larger flexible DABS crosslinks. Tensile testing of treated lyocell fabrics revealed that breaking strength initially increased at low levels of DABS fixation, but fell at similar levels of DMDHEU fixation. The effect with DABS is due to an increase in the effective molecular weight, which can outweigh the development of stress concentration due to crosslinking. The Zhurkov model was also used to interpret the wet-state abrasion resistance of lyocell fabrics. From this it is concluded that water swelling leads to an increase in stress concentration within fiber structure because of the loss of lateral interfibrillar connectivity, which is reestablished by both DMDHEU and DABS crosslinking.
机译:在湿和干反应条件下,将莱赛尔织物用2,4-二丙烯酸苯磺酸(DABS)交联剂进行处理,并与在干燥条件下反应的常规二甲基氧代羟基乙烯脲(DMDHEU)试剂进行比较。使用Martindale试验测得,使用DABS进行的所有处理均改善了织物的干湿耐磨性,而使用DMDHEU进行的处理则降低了其干耐磨性。使用基于茹尔科夫动力学强度理论的模型来解释结果,其中通过刚性DMDHEU交联处的应力集中来减少干态磨损,而较大的柔性DABS交联则不会发生。处理过的莱赛尔织物的拉伸试验表明,断裂强度最初在低水平的DABS固定下增加,但在相似的DMDHEU固定下下降。 DABS的效果归因于有效分子量的增加,而有效分子量的增加超过了交联引起的应力集中。 Zhurkov模型还用于解释莱赛尔织物的湿态耐磨性。由此得出的结论是,水的膨胀会导致纤维结构内应力集中的增加,这是因为横向原纤维间连接性的丧失,这通过DMDHEU和DABS交联而得以重新建立。

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