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首页> 外文期刊>Journal of Composites for Construction >Long-Term Performance of a Glass Fiber-Reinforced Polymer Truss Bridge
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Long-Term Performance of a Glass Fiber-Reinforced Polymer Truss Bridge

机译:玻璃纤维增​​强的聚合物桁架桥的长期性能

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摘要

In the summer of 2005, after eight years of use as a temporary bridge during the winter, the Pontresina Bridge for pedestrians was transported to the Swiss Federal Institute of Technology Lausanne for a detailed assessment of the structural safety, serviceability, and long-term durability of the bridge. The assessment included a visual inspection, quasistatic testing identical to that performed in 1997, and detailed investigations of material degradation. The visual inspection showed a variety of different local defects and damage such as local crushing caused by impact, local cracks due to inappropriate storage and lifting of the structure, fiber blooming, degradation of cut surfaces, and damage due to vandalism. Comparisons between load tests performed in 1997 and 2005 showed, however, that the structural safety and serviceability of the bridge have not been affected by these local damages. The stiffness of the pultruded shapes remained unchanged, whereas a slight decrease in strength between 13 and 18% was measured, which, however, is not critical when taking into consideration the high effective safety factors. In view of a further service period of 5 years until the next inspection, the visible damages were repaired. This experience showed that the durability is primarily affected by inappropriate constructive detailing and that pultruded glass fiber-reinforced polymer shapes, if correctly manufactured and processed, can offer good long-term performance and durability.
机译:2005年夏天,在冬季用作临时桥梁八年后,行人桥(Pontresina Bridge)被运往瑞士洛桑联邦理工学院,以详细评估结构安全性,可维修性和长期耐久性桥的。评估包括外观检查,与1997年相同的准静态测试以及对材料降解的详细调查。目视检查显示出各种不同的局部缺陷和损坏,例如,由于撞击而导致的局部挤压,由于结构的不适当存储和提起而导致的局部裂缝,纤维起霜,切割表面的退化以及由于故意破坏而造成的损坏。但是,在1997年和2005年进行的载荷测试之间的比较表明,桥梁的结构安全性和可使用性并未受到这些局部损坏的影响。拉挤型材的刚度保持不变,而测得的强度略有下降,介于13%至18%之间,但是,考虑到有效的安全系数时,这并不是至关重要的。考虑到下一次检查还有5年的使用寿命,因此修复了可见的损坏。经验表明,耐久性主要受到不适当的构造细节的影响,拉挤玻璃纤维增​​强的聚合物形状(如果正确制造和加工)可以提供良好的长期性能和耐久性。

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