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首页> 外文期刊>Polymer Degradation and Stability >Formaldehyde-free Flame Retardant Finishing Of Silk Using A Hydroxyl-functional Organophosphorus Oligomer
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Formaldehyde-free Flame Retardant Finishing Of Silk Using A Hydroxyl-functional Organophosphorus Oligomer

机译:羟基官能有机磷低聚物对蚕丝的无甲醛阻燃整理

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摘要

Flame retardancy is a desirable property for silk textiles, and it becomes necessity when silk textiles are for interior decorative use in building with public access. However, the flame retardant finishing technology available for silk has significant limitations. In this research, we studied the use of the combination of a hydroxyl-functional organophosphorus oligomer (HFPO) and 1,2,3,4-butanetetracarboxylic acid (BTCA) as a formaldehyde-free flame retardant finishing system for silk. When BTCA is applied to silk, most of BTCA reacts with the hydroxyl group on silk by single ester linkage. In the presence of HFPO, BTCA is able to bond HFPO onto silk by either a BTCA "bridge" between silk and HFPO or a BTCA-HFPO-BTCA cross-linkage between two silk protein molecules. We evaluated the flammability and physical properties of the silk fabric treated with HFPO and BTCA. The treated silk fabric demonstrated a high level of flame retardancy with modest loss in fabric tensile strength. The treated silk passed the vertical flammability test after 15 hand wash (HW) cycles. Increasing the HFPO concentration from 20% to 30% does not show significant improvement in the flame retardant performance of the treated silk. The thermal analysis data demonstrated that HFPO reduces silk's initial thermal decomposition temperature and promotes char formation.
机译:阻燃性是丝绸纺织品的理想性能,当丝绸纺织品用于具有公共入口的建筑物中用于室内装饰时,阻燃性成为必要。但是,可用于丝的阻燃整理技术具有很大的局限性。在这项研究中,我们研究了羟基官能有机磷低聚物(HFPO)和1,2,3,4-丁烷四羧酸(BTCA)的组合作为丝绸的无甲醛阻燃整理剂的用途。当将BTCA用于丝绸时,大多数BTCA通过单酯键与丝绸上的羟基反应。在HFPO存在的情况下,BTCA能够通过丝绸与HFPO之间的BTCA“桥”或两个丝绸蛋白分子之间的BTCA-HFPO-BTCA交联将HFPO结合到丝绸上。我们评估了用HFPO和BTCA处理的真丝织物的可燃性和物理性能。经处理的丝织物显示出高水平的阻燃性,同时织物抗张强度损失适度。经过15次手洗(HW)循环后,经过处理的蚕丝通过了垂直可燃性测试。将HFPO浓度从20%增加到30%不会在处理后的丝的阻燃性能上显示出明显的改善。热分析数据表明,HFPO降低了丝绸的初始热分解温度并促进了炭的形成。

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