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Factors contributing to the degradation of poly(p-phenylene benzobisoxazole) (PBO) fibers under elevated temperature and humidity conditions

机译:在高温高湿条件下导致聚对苯撑苯并二恶唑(PBO)纤维降解的因素

摘要

The moisture absorption behavior of Zylon fibers was characterized in various high temperature and high humidity conditions in a controlled environment. The results of these thermal cycling tests show that PBO fibers not only absorb, but also retain moisture (approximately 0.5-3%) when exposed to elevated temperature and humidity cycles. Also, the impurities of Zylon fibers were characterized through the use of Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS) and solid state Nuclear Magnetic Resonance (NMR). These tests demonstrated that, in addition to other impurities, PBO fibers may contain up to 0.55 weight percent phosphorus, and that this phosphorus is present in the form of phosphoric acid. It was also shown through accelerated hydrolytic degradation tests that production procedures used to neutralize the acid present in the fibers have a beneficial effect on the hydrolytic performance of the fiber. The data collected in this study was then compared and contrasted to known Kevlar studies, identifying similarities, differences, and potential trends. The results of these tests seem to indicate that there is accelerated acid catalyzed hydrolysis occurring in the fiber which is causing these fibers to degrade at an increased rate. This condition is further accelerated by heat and humidity induced permanent fiber swelling.
机译:Zylon纤维的吸湿性能在受控环境下的各种高温和高湿条件下进行了表征。这些热循环测试的结果表明,PBO纤维在暴露于高温和高湿循环时不仅吸收,而且还保留水分(约0.5-3%)。另外,通过使用激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)和固态核磁共振(NMR)来表征Zylon纤维的杂质。这些测试表明,除其他杂质外,PBO纤维还可以包含高达0.55重量百分比的磷,并且该磷以磷酸的形式存在。通过加速的水解降解试验还表明,用于中和纤维中存在的酸的生产程序对纤维的水解性能具有有益的影响。然后将本研究中收集的数据与已知的凯夫拉尔研究进行比较和对比,确定相似性,差异性和潜在趋势。这些测试的结果似乎表明在纤维中发生加速的酸催化水解,这导致这些纤维以增加的速率降解。热和湿气引起的永久性纤维膨胀进一步加剧了这种情况。

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  • 作者

    ONeil Joseph M;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en_US
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