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Evaluation of minimum reinforcement in flexural members based on fracture mechanics

机译:基于断裂力学的抗弯构件最小配筋评估

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The minimum flexural reinforcement required in reinforced concrete (RC) beams is affected by the compressive strength of concrete, yield strength of steel reinforcement, fracture toughness and size (depth) of member. This pa-per reports an analytical investigation carried out to predict the cracking behavior and minimum flexural reinfor-cement corresponding to limiting crack width. The minimum flexural reinforcement is defined corresponding to the stage where both the maximum surface crack width and the critical crack opening displacement (COD_(cr)) are equal at the yielding of steel reinforcement. An analytical model has been proposed to determine the minimum flexural reinforcement through a parametric study involving several combinations of beam depth, fracture toughness, strength of concrete, and yield strength of steel reinforcement. The proposed model has been validated with the experimental observations reported in the literature on several RC beams of different depth and strength of concrete. The model predicts the minimum flexural reinforcement satisfactorily, agreeing with the experimental observations on various beam depths. The present model looks to be an improvement of several existing models incorporating all the influencing parameters.
机译:钢筋混凝土(RC)梁所需的最小抗弯钢筋受混凝土的抗压强度,钢筋的屈服强度,断裂韧性和构件尺寸(深度)的影响。该文件报道了进行分析研究以预测开裂行为和与极限裂纹宽度相对应的最小抗弯钢筋。最小弯曲钢筋的定义对应于最大表面裂缝宽度和临界裂缝开口位移(COD_(cr))在钢筋钢筋屈服时相等的阶段。已经提出了一种分析模型,通过参数研究确定最小抗弯钢筋,该研究涉及梁深度,断裂韧性,混凝土强度和钢筋的屈服强度的几种组合。所提出的模型已通过文献报道的关于混凝土不同深度和强度的几种RC梁的实验观察得到验证。该模型可以令人满意地预测最小抗弯钢筋,与在各种梁深度上的实验观察结果一致。本模型看起来是对包含所有影响参数的几个现有模型的改进。

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