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Nylon 6.6 accelerated aging studies: thermal-oxidative degradation and its interaction with hydrolysis

机译:尼龙6.6加速老化研究:热氧化降解及其与水解的相互作用

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Accelerated aging of Nylon 6.6 fibers used in parachutes has been conducted by following the tensile strength loss under both thermal-oxidative and 100% relative humidity conditions. Thermal-oxidative studies (air circulating ovens) were performed for time periods of weeks to years at temperatures ranging from 37 degrees C to 138 degrees C. Accelerated aging humidity experiments (100% RH) were performed under both an argon atmosphere to examine the 'pure' hydrolysis pathway, and under an oxygen atmosphere (oxygen partial pressure close to that occurring in air) to mimic true aging conditions. As expected the results indicated that degradation caused by humidity is much more important than thermal-oxidative degradation. Surprisingly when both oxygen and humidity were present the rate of degradation was dramatically enhanced relative to humidity aging in the absence of oxygen. This significant and previously unknown phenomena underscores the importance of careful accelerated aging that truly mimics real world storage conditions. Published by Elsevier Ltd.
机译:通过跟踪在热氧化和100%相对湿度条件下的拉伸强度损失,可以对降落伞中使用的尼龙6.6纤维进行加速老化。在37摄氏度至138摄氏度的温度下进行了数周至数年的热氧化研究(空气循环烘箱)。在两种氩气气氛下均进行了加速老化湿度试验(100%RH),以检查纯的水解途径,并在氧气气氛(氧气分压接近空气中的分压)下模拟真实的老化条件。正如预期的那样,由湿度引起的降解比热氧化降解更为重要。令人惊讶地,当同时存在氧气和湿气时,相对于没有氧气的湿气老化,降解速率大大提高。这种重大的,以前未知的现象凸显了认真模拟真实存储条件的加速老化的重要性。由Elsevier Ltd.发布

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