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Punching Shear Strength Model for RC Slab-Column Connection Based on Multiaxial Strength Theory of Concrete

机译:基于混凝土多轴强度理论的RC平板连接冲压剪切强度模型

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A strength model was presented to give the mechanical explanation of the punching phenomenon, and to predict the punching shear strength of the interior reinforced concrete (RC) slab-column connection without shear reinforcement. The model assumes that the punching shear force is resisted mainly by the shearing-compression zone of a critical crack section, and the punching shear strength is determined as the minimum load among the loads which are obtained by the intersection of the demand curve and the capacity curve of each given flexure crack. The crack corresponding to the punching shear strength is defined as the critical crack. The capacity curve is obtained by the layer model of shearing-compression zone based on the biaxial strength theory of concrete. The demand curve is defined by equilibrium of forces in slab sector. For verification, the developed strength model was applied to existing test specimens tested by other researchers.
机译:提出了一种强度模型,以提供冲压现象的机械解释,并预测内部钢筋混凝土(RC)平板连接而没有剪切钢筋的冲压剪切强度。 该模型假设主要由临界裂纹部分的剪切压缩区抵抗冲孔剪切力,并且冲压剪切强度被确定为通过需求曲线的交叉点获得的负载中的最小载荷和容量 每个给定的弯曲裂缝的曲线。 对应于冲压剪切强度的裂缝被定义为临界裂缝。 基于混凝土双轴强度理论,通过剪切压缩区的层模型获得的能力曲线。 需求曲线由板坯扇区中的力平衡定义。 为了验证,将开发的强度模型应用于其他研究人员测试的现有测试标本。

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