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Durability evaluation of pultruded GFRP bay window structures

机译:拉挤GFRP窗窗结构的耐久性评价

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An all-GFRP bay window for residential buildings is developed for energy conservation, low carbon, and comfortable life. The durability performance and design of GFRP bay window in an outdoor environment are investigated experimentally. Relevant studies were first reviewed, and the reported findings were found to significantly vary and could not be directly adopted. To investigate the durability of a GFRP material used in an outdoor environment, four aging tests were conducted, namely, water immersion, wet-dry cycle, freeze-thaw cycle and ultraviolet radiation tests. Visual inspection and scanning electron microscopy were used to evaluate the aging effects on the material. In addition, the weight, Barcol hardness, and tensile and flexural properties of the aged GFRP material were measured after the aging tests. Water immersion had the greatest effect on the mechanical properties of the GFRP material, while the freeze-thaw cycle had a negligible influence. Furthermore, to assist in the design of an all-GFRP bay window with a service life of 50 years, a design method was proposed based on the experimental results obtained in this work. This method is the first to directly support the practical design of the long-term behavior of GFRP structures in China and has great potential to be widely adopted in the future.
机译:为能源保护,低碳和舒适的生活而开发了一个住宅建筑的全GFRP凸窗。实验研究了室外环境中GFRP舱窗的耐用性能和设计。首次审查相关研究,发现报告的发现明显不同,无法直接通过。为了研究室外环境中使用的GFRP材料的耐久性,进行了四次老化试验,即水浸,湿干循环,冻融循环和紫外线辐射测试。目视检查和扫描电子显微镜用于评估对材料的老化效果。另外,在老化试验后测量老化GFRP材料的重量,巴尔硬度和拉伸性和抗弯性能。水浸渍对GFRP材料的力学性能具有最大的影响,而冻融循环的影响可忽略不计。此外,为了帮助设计50年的使用寿命的全GFRP舱窗口,基于本工作中获得的实验结果提出了一种设计方法。这种方法是第一个直接支持中国GFRP结构长期行为的实践设计,并在未来广泛采用潜力。

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