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Degradation of Nylon 6,6 and Glass Fiber Reinforced Nylon 6,6 by Aqueous Solutions of Ethylene Glycol and Calcium Chloride

机译:乙二醇和氯化钙水溶液降解尼龙6,6和玻璃纤维增​​强尼龙6,6

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摘要

Glass fiber reinforced nylon 6,6 (GFNY66) composites widely used for automotive applications are highly deteriorated when contacted repeatedly with aqueous solutions of ethylene glycol (EG) and calcium chloride resulting in reduced molecular weight, disruption of intra- and intermolecular hydrogen bonding and interfacial failure between glass fiber and nylon 6,6 (NY66) matrix. Hence, it is important to understand clearly the degradation and hydrogen bond breaking mechanism of NY66 and interfacial failure mechanism in GFNY66 in order to improve the mechanical properties of recycled NY66. From ATR-IR spectrum of aq. EG and aq. calcium chloride (CaCl_2) treated NY66 specimens, the breakage of intra- and intermolecular hydrogen bonding has been noticed from the shifting of carbonyl stretching band towards lower frequency. The mechanical properties of aq. CaCl_2 treated NY66 has been found to be better than that of aq. EG treated NY66 due to lesser reduction in molecular weight for aq. CaCl_2 treated NY66 specimens. Among all the specimens, aq. EG treated GFNY66 exhibited pronounced deterioration in mechanical properties, which is associated with more contribution of interfacial failure between glass fiber and NY66.
机译:当与乙二醇(EG)和氯化钙的水溶液反复接触时,广泛用于汽车应用的玻璃纤维增​​强尼龙6,6(GFNY66)复合材料会严重劣化,从而导致分子量降低,分子内和分子间氢键断裂以及界面断裂玻璃纤维和尼龙6,6(NY66)基质之间发生故障。因此,重要的是要清楚地了解GFNY66中NY66的降解和氢键断裂机理以及界面破坏机理,以提高再生NY66的机械性能。从水溶液的ATR-IR光谱。 EG和水溶液在氯化钙(CaCl_2)处理的NY66标本中,由于羰基拉伸带向较低频率的移动,已经注意到分子内和分子间氢键的断裂。水溶液的机械性能已发现用CaCl_2处理过的NY66优于水溶液。 EG处理NY66的原因是水溶液中的分子量降低幅度较小。 CaCl_2处理过的NY66标本。在所有标本中, EG处理的GFNY66的机械性能明显下降,这与玻璃纤维和NY66之间的界面破坏更多有关。

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    Advanced Technology Center, Corporate Research and Development Division, Hyundai-Kia Motors, Yongin-si,Gyeonggi-do 449-912, South Korea;

    rnDepartment of Advanced Polymer and Fiber Materials, College of Environment and Applied Chemistry, Kyung Hee University,Yongin-si, Gyeonggi-do 446-701, South Korea;

    Department of Advanced Polymer and Fiber Materials, College of Environment and Applied Chemistry, Kyung Hee University,Yongin-si, Gyeonggi-do 446-701, South Korea Intelligent Textile System Research Center, Seoul National University,Seoul 151-744, South Korea;

    rnDepartment of Advanced Polymer and Fiber Materials, College of Environment and Applied Chemistry, Kyung Hee University,Yongin-si, Gyeonggi-do 446-701, South Korea Intelligent Textile System Research Center, Seoul National University,Seo;

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  • 正文语种 eng
  • 中图分类 合成树脂与塑料工业;
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  • 入库时间 2022-08-26 14:20:17

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