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Early-age restrained shrinkage cracking of GFRP-RC bridge deck slabs: Effect of environmental conditions

机译:GFRP-RC桥面板的早期约束收缩裂缝:环境条件的影响

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Most of codes and guidelines for glass fiber reinforced polymers (GFRP) - Reinforced Concrete (RC) are based on modifying corresponding formulas, originally developed for steel bars, taking into account the differences in properties and behavior between FRP and steel. The main objective of this research is to investigate the effect of cyclic environments on early-age cracking of GFRP-RC bridge deck slabs experimentally. Two full-scale (measuring 2500-mm long x 765-mm wide x 180-mm thick) cast-in-place slabs reinforced with similar amounts of reinforcement ratio of 0.7% with GFRP and steel bars, respectively, were tested in adiabatic laboratory conditions as control specimens. In comparison, two other GFRP-RC deck slabs were tested under freezing thawing and wetting drying conditions. The test results are presented in terms of materials degradation, cracking pattern, crack width, and spacing, and strains in reinforcement and concrete. Test results indicate that the minimum reinforcement ratio (0.7%) recommended by the Canadian Highway Bridge Design Code 2006 (CHBDC 2006) for bridge deck slabs reinforced with GFRP bars satisfied the serviceability requirements after being subjected to the simulated cyclic exposures. (C) 2015 Elsevier Ltd. All rights reserved.
机译:玻璃纤维增​​强聚合物(GFRP)-钢筋混凝土(RC)的大多数规范和准则都基于修改相应的公式,这些公式最初是为钢筋开发的,同时考虑到FRP和钢之间的特性和性能差异。这项研究的主要目的是通过实验研究循环环境对GFRP-RC桥面板的早期开裂的影响。在绝热实验室测试了两块全尺寸(测量长度为2500mm x 765mm宽x 180mm厚)的现浇板,分别用GFRP和钢筋加固了0.7%的相似的增强率。条件作为对照样品。相比之下,另外两块GFRP-RC甲板板在冻融和湿润干燥条件下进行了测试。测试结果以材料降解,开裂模式,裂纹宽度和间距以及钢筋和混凝土中的应变的形式给出。测试结果表明,加拿大GF 2006高速公路桥梁设计规范(CHBDC 2006)建议的采用GFRP钢筋加固的桥面板的最小配筋率(0.7%)满足了模拟循环暴露后的可使用性要求。 (C)2015 Elsevier Ltd.保留所有权利。

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