首页> 外文期刊>International Journal of Adhesion & Adhesives >Hygrothermal degradation of two rubber-toughened epoxy adhesives: Application of open-faced fracture tests
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Hygrothermal degradation of two rubber-toughened epoxy adhesives: Application of open-faced fracture tests

机译:两种橡胶增韧环氧粘合剂的湿热降解:开放式骨折试验的应用

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摘要

The absorption/desorption properties of two commercial, toughened epoxy adhesive systems were evaluated gravimetrically, and by X-ray photoelectron spectroscopy (XPS) and dynamic mechanical thermal analysis (DMTA). Fracture tests on degraded open-faced DCB specimens showed that these two adhesive systems have very different degradation behaviors. The steady-state critical strain energy release rate, G_(cs), of an adhesive system 1 decreased rapidly with an exposure time in various hot-wet environments, reaching a relatively low value that was stable for over one year, while that of adhesive system 2 remained unchanged for more than one and a half years. A degradation mechanism which accounts for the different characteristics of the two adhesive systems was proposed. A model of fracture toughness degradation, analogous to Fick's law, was then used to characterize the fracture toughness loss in an adhesive system 1, and the effects of temperature, RH and water concentration were evaluated. The results illustrate the wide variation in water absorption behaviors that can exist among toughened epoxy adhesives, and show how these differences relate to the degradation of fracture strength. The data were also used to assess the applicability of an exposure index (EI), defined as the integral of relative humidity over time, as a means of characterizing an aging history. The fracture strength degradation was measured after aging to achieve a range of EI values, and it was found that the strength loss was independent of the time-humidity path for sufficiently large EI.
机译:热分别评估两种商业,增韧环氧粘合剂系统的吸收/解吸性,并通过X射线光电子能谱(XPS)和动态机械热分析(DMTA)。裂缝试验在退化的开放式DCB标本表明,这两个粘合剂系统具有非常不同的降解行为。粘合系统1的稳态临界应变能量释放速率,G_(CS),在各种热潮环境中曝光时间迅速下降,达到一年多的相对低的值,而粘合剂系统2超过一年半仍然保持不变。提出了一种降解机制,其考虑了两个粘合剂系统的不同特性的劣化机制。然后使用与Fick的定律类似的断裂韧性降解模型,以表征粘合体系1中的断裂韧性损失,并评估温度,RH和水浓度的影响。结果说明了增韧环氧粘合剂中可以存在的吸水性行为的广泛变化,并展示了这些差异如何涉及裂缝强度的降解。数据还用于评估曝光指数(EI)的适用性,定义为相对湿度随时间的积分,作为表征老化历史的手段。在老化后测量骨折强度降解以获得一系列EI值,发现强度损失与足够大的ei的时间湿度丧失无关。

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