基于时间-温度等效的聚合物复合材料老化分析

J. Seferis
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引用次数: 19

摘要

先进飞机复合材料系统的一个基本问题是缺乏对老化过程的理解,以及老化过程如何影响与退化相关的材料性能。等效性质时间(EPT)的概念被建立,可以用来理解聚合物和复合材料在等温和动态高温暴露下的均匀降解。在这项工作中,用等温和动态热重分析分析了双马来酰亚胺纯树脂和复合材料的降解,采用了最初为热固性固化而开发的描述性时间-温度概念。这个概念被定义为EPT,它准确地描述了实验条件下的实验数据。因此,该方法被证明是设计老化实验和评估复合材料系统寿命的有用工具。这一概念的扩展包括等效循环时间(ECT),它涉及循环加热、冷却和保温的影响,可用于理解反复暴露引起的降解老化现象。总的来说,这项工作的重点是提供对聚合物和复合材料的循环现象的理解,因为它们与环境影响及其加速老化行为有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aging Analyses of Polymer Composites Through Time-Temperature Equivalence
A fundamental problem of advanced airplane composite systems is the lack of understanding of the aging process and how it affects the material properties associated with degradation. The concept of Equivalent Property Time (EPT) was established and can be used to understand degradation of polymers and composites in a uniform manner, both for isothermal and dynamic elevated temperature exposures. In this work, bismaleimide neat resin and composite degradation was analyzed with isothermal and dynamic thermogravimetric analysis adapting a descriptive time-temperature concept originally developed for the curing of thermosets. The concept, defined as EPT, described the experimental data accurately for the experimental conditions tested. Thus, this methodology was demonstrated to be a useful tool in designing aging experiments and assessing the lifetime of composite systems. An extension of this concept was developed to include Equivalent Cycle Time (ECT), which involves the effects of cycling-heating, cooling, and holding, which can be used to understand degradation aging phenomena from repeated exposure. Collectively, this work focused on providing an understanding of cycling phenomena for polymers and composites as they relate to environmental influences and their accelerated aging behavior.
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