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Punching shear tests on compact footings with uniform soil pressure

机译:在土壤压力均匀的紧凑型基础上进行冲剪试验

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摘要

Punching shear is usually the governing failure criterion when selecting the depth of reinforced concrete footings. Despite the fact that large experimental programmes aimed at the punching strength of slender flat slabs have been performed in the past, only a few experimental campaigns on full-scale compact reinforced concrete footings can be found in the literature. This paper presents the results of an experimental programme including eight reinforced concrete footings with a nominal thickness of 550 mm. These experiments investigated the influence of column size, member slenderness and the presence of compression and shear reinforcement. The tests were performed using an innovative test setup to ensure a uniform soil pressure. The experimental results show that slenderness influences the punching shear strength as well as the effectiveness of the shear reinforcement. The experiments also show that an important interaction occurs between bending and shear for high levels of shear force near the column (the typical case of compact footings or members with large amounts of shear reinforcement). Different continuous measurements recorded during the experimental tests allow a complete description of the kinematics and strains at failure. On that basis, experimental evidence is obtained showing that crushing of the concrete struts near the column is the phenomenon that triggers the punching failure of compact footings.
机译:当选择钢筋混凝土基础深度时,冲剪通常是主要的破坏准则。尽管过去已经进行了针对细长平板的冲压强度的大型实验程序,但在文献中仅能找到针对全尺寸紧凑型钢筋混凝土立脚的少量实验活动。本文介绍了一个实验程序的结果,该程序包括八个标称厚度为550 mm的钢筋混凝土基脚。这些实验研究了柱尺寸,构件细长度以及压缩和剪切增强的存在的影响。使用创新的测试设置进行测试,以确保均匀的土壤压力。实验结果表明,细长度会影响冲切剪切强度以及剪切增强的效果。实验还表明,对于高强度的柱附近的剪力,弯曲和剪力之间会发生重要的相互作用(典型的紧凑型基础或具有大量剪力的构件)。在实验测试期间记录的不同连续测量值可以完整描述运动学和失效时的应变。在此基础上,获得的实验证据表明,靠近支柱的混凝土支柱的压碎是触发紧凑基础打孔失败的现象。

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