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Shear-Strength Model for Slab-Column Connections Subjected to Unbalanced Moment

机译:受不平衡弯矩作用的板-柱连接的抗剪强度模型

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摘要

A shear-strength model for slab-column connections without shear reinforcement was studied to predict the direct punching shear strength and the unbalanced moment-carrying capacity. Neglecting the shear contribution of a tension zone severely damaged by flexure-shear cracks, the punching shear at a critical section was assumed to be resisted mainly by the compression zone of the slab cross section. The shear strength of the compression zone was defined as a function of the compressive normal stress developed by the slab flexural action, using the material failure criteria of concrete. For the evaluation of the unbalanced moment-carrying capacity of the slab-column connections, eccentric shear strength was defined differently at each face of the critical section around the slab-column joint, considering the degree of flexural damage of the slab. For exterior slab-column connections, the proposed model was defined in the unsymmetrical critical section. The proposed model was applied to existing test specimens of interior and exterior slab-column connections, and column footings. The proposed strength model agreed well with test results.
机译:研究了不加剪力的板-柱连接的剪力模型,以预测直接冲剪强度和不平衡的承载力。忽略了受弯曲剪切裂纹严重破坏的拉伸区域的剪切贡献,可以认为在关键部分的冲切剪切主要受到板坯横截面的压缩区域的抵抗。使用混凝土的材料破坏准则,将压缩区的抗剪强度定义为平板弯曲作用所产生的压缩法向应力的函数。为了评估板-柱连接的不平衡承载力,考虑了板的挠曲破坏程度,在板-柱接头周围的关键截面的每个面上,偏心抗剪强度的定义不同。对于外部平板-柱连接,建议的模型在不对称的关键部分中定义。所提出的模型被应用于内部和外部平板-柱连接以及柱脚的现有测试样本。建议的强度模型与测试结果非常吻合。

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