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Cotton fabric strength loss from treatment with polycarboxylic acids for durable press performance

机译:多元羧酸处理后棉织物强度下降,以实现持久的压榨性能

摘要

In this study, cotton fabrics are treated at different curing temperatures with different concentrations of 1,2,3,4-butanetetracarboxylic acid (BTCA) catalyzed with sodium hy pophosphite (SHP). Strength retention and wrinkle recovery angle (WRA) are tested, and the results show that high curing temperature and high BTCA concentration will reduce fabric strength and increase WRA. Regression models show that WRA has a close negative linear relation with the strength of the treated fabric. Both WRA and fabric strength are closely related with curing temperature and BTCA concentration. When the treated samples are further treated with 3% sodium hydroxide solution, fabric strength recovers in differing degrees and WRA decreases to the level of the control sample. Recoverable strength is assumed to be mostly induced by intramacromolecular crosslinking in the fibers, and unrecoverable strength is assumed to be due to the acidity of the treatment solution. The ratio of recoverable to unrecoverable strength shows that when curing temperature is around 160°C, strength loss due to the acidity of the treating solution is minimized.
机译:在这项研究中,棉织物在不同的固化温度下用次磷酸钠(SHP)催化的不同浓度的1,2,3,4-丁烷四羧酸(BTCA)进行处理。测试了强度保持力和皱纹恢复角(WRA),结果表明,较高的固化温度和较高的BTCA浓度会降低织物强度并增加WRA。回归模型表明,WRA与处理过的织物的强度具有密切的负线性关系。 WRA和织物强度都与固化温度和BTCA浓度密切相关。当将处理过的样品进一步用3%氢氧化钠溶液处理时,织物强度会以不同程度恢复,并且WRA下降至对照样品的水平。假定可恢复强度主要是由纤维中的大分子内交联引起的,并且不可恢复强度被认为是由于处理溶液的酸度引起的。可恢复强度与不可恢复强度的比率表明,当固化温度为160°C左右时,由于处理液的酸度引起的强度损失将降至最低。

著录项

  • 作者

    Xu W; Li Y;

  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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