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Shear strength of FRP reinforced concrete beams without stirrups: verification of fracture mechanics formulation

机译:FRP钢筋混凝土梁的剪切强度而无马镫:骨折力学制剂的验证

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The size effect in shear in reinforced concrete (RC) one-way members without shear reinforcement becomes more of concern when using glass fiber reinforced polymer (GFRP) reinforcement. In fact, the lower axial stiffness of GFRP reinforcement typically results in wider flexural cracks with respect to steel RC counterparts. This issue is especially relevant for the case of flexural members without stirrups, such as retaining walls and slab bridge superstructures. Little evidence has documented the extent of such effect. Cognizant of this knowledge gap, ACI Committee 440 (FRP Reinforcement) introduced the current nominal shear strength algorithm, which was calibrated in a conservative fashion based on test results from small beams. This algorithm assumes that the shear strength at the critical section is resisted predominantly through the uncracked concrete above the tip of the shear crack. Based on the same fundamental assumption, a fracture mechanics algorithm for steel RC beams was recently proposed by ACI Committee 446 (Fracture Mechanics of Concrete). In this paper, the ACI 440 and 446 algorithms are verified and discussed based on experimental evidence from tests on scaled GFRP RC beams without stirrups. The latter algorithm is modified to account for the smaller elastic modulus of GFRP, under the hypothesis that its relevant parameters and the shear failure mechanism are similar irrespective of the reinforcement material.
机译:在使用玻璃纤维增​​强聚合物(GFRP)加固时,钢筋混凝土(RC)单向构件剪切的剪切效果变得更加担忧。事实上,GFRP增强件的较低轴向刚度通常导致相对于钢RC对应物更宽的弯曲裂缝。该问题对于没有镫形件的弯曲构件的情况特别相关,例如挡土墙和板坯桥上部结构。少数证据记录了这种效果的程度。认识到这种知识差距,ACI委员会440(FRP加固)引入了目前标称剪切强度算法,基于小梁的测试结果,以保守方式校准。该算法假设临界部分处的剪切强度主要通过剪切裂纹的尖端上方的未包装的混凝土抵抗。基于相同的基础假设,最近通过ACI委员会446(混凝土断裂力学)提出了一种钢RC光束的断裂力学算法。在本文中,基于在没有镫骨的尺度GFRP RC光束上的测试的实验证据来验证和讨论ACI 440和446算法。后一种算法被修改以考虑GFRP的较小弹性模量,在其相关参数和剪切破坏机构类似的情况下与加强材料相似。

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