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Water absorption behavior and its influence on properties of GRP pipe

机译:吸水性能及其对玻璃钢管道性能的影响

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摘要

With the rapid development of glass-fiber reinforced plastic (GRP) pipes in civil infrastructure under different environments, it is essential to understand the fundamental mechanisms responsible for the pipe failure. However, research reports on water absorption behavior and its influence on the performance of GRP pipe are few in the literatures. This study provides test results of water diffusion in a GRP pipe wall and its influence on the properties of the pipe. When the environment is water, it attacks each component of the GRP pipe. In this study, the water absorption behavior of three different types of GRP pipe is recorded. One of them (UP-A pipe) presents near-Fickian behavior, the other two types of pipe behave like a two-stage diffusion. A model developed from Fick's law is used to predict the water diffusion process for the three pipes. The prediction agrees well with the experimental data for the UP-A specimen, while the same cannot be transferred to EP-A and UP-B specimens because of the abnormal non-Fickian process. The influence of moisture on flexural properties, interlaminar shear strength, and viscoelastic properties of a GRP pipe is also discussed.
机译:随着在不同环境下民用基础设施中玻璃纤维增​​强塑料(GRP)管的快速发展,必须了解引起管故障的基本机制。然而,关于吸水行为及其对玻璃钢管道性能影响的研究文献很少。这项研究提供了GRP管壁中水扩散及其对管子性能的影响的测试结果。当环境为水时,它会侵蚀GRP管道的每个组件。在这项研究中,记录了三种不同类型的玻璃钢管道的吸水行为。其中一种(UP-A管道)表现出接近菲克式的行为,其他两种类型的管道表现得像两阶段扩散。根据菲克定律开发的模型用于预测三个管道的水扩散过程。该预测与UP-A标本的实验数据非常吻合,但由于非Fickian过程异常,因此无法将其转移到EP-A和UP-B标本中。还讨论了水分对GRP管弯曲特性,层间剪切强度和粘弹性的影响。

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