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Flexural cracks in steel fiber-reinforced lightweight aggregate concrete beams reinforced with FRP bars

机译:钢纤维增强的轻质聚集体混凝土梁的弯曲裂缝用FRP棒加固

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Fourteen plain and steel fiber-reinforced lightweight aggregate concrete (LWC) beams with two types of fiber reinforced polymer (FRP) reinforcing bars were tested under a four-point bending load with different reinforcement ratios, bar diameters and clear span lengths to evaluate their cracking behavior. The test results showed that using steel fiber-reinforced lightweight aggregate concrete (SFLWC) and increasing the clear span length mitigated the maximum crack width at low load levels, while increasing the reinforcement ratio tended to decrease the maximum crack width during the entire loading period. At service load, all CFRP-reinforced beams satisfied the crack width criteria of 0.7 mm, while more than half of the GFRP-reinforced specimens exhibited unconservative crack widths. Crack width prediction equations in the current design codes in the US, China, and Canada were compared based on the experimental results. The original average crack spacing equation recommended by GB 50608 was modified considering the effect of bar position. Furthermore, using the method of probability and statistics, the relationships between the maximum crack width and the average crack width for the tested beams were investigated. Accordingly, a rational alternative crack width model was proposed for CFRPand GFRP-reinforced beams incorporating the effects of lightweight aggregates and steel fibers.
机译:具有两种类型的纤维增强聚合物(FRP)加强棒的14个平原和钢纤维增强聚集体混凝土(LWC)梁在四点弯曲载荷下进行了用不同的加强比,条直径和透明跨度长度进行评估,以评估它们的开裂行为。测试结果表明,采用钢纤维增强轻质聚集体混凝土(SFLWC)并增加透明跨度长度在低负荷水平下降低了最大裂缝宽度,同时增加了加强率倾向于降低整个装载期间的最大裂缝宽度。在维修负荷时,所有CFRP加强梁满足0.7毫米的裂缝宽度标准,而超过一半的GFRP加强试样表现出令人难以置信的裂缝宽度。基于实验结果,比较了美国,中国和加拿大当前设计代码中的裂缝宽度预测方程。考虑到条形位置的效果,修改了GB 50608推荐的原始平均平均裂缝间距方程。此外,使用概率和统计的方法,研究了最大裂缝宽度与测试梁的平均裂缝宽度之间的关系。因此,提出了一种合理的替代裂缝宽度模型,用于包括轻质聚集体和钢纤维的效果的CFRPAND GFRP加强梁。

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