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Bearing capacity calculation of reinforced concrete corbels under the shear action

机译:剪力作用下钢筋混凝土牛腿的承载力计算

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摘要

The necessity of creating a general methodology for concrete and reinforced concrete elements strength calculation under the shear is established. Three failure cases of reinforced concrete corbels under the shear are considered. The solutions of problems of corbels strength with failure along the whole section, close to the normal, in the compressed zone under an inclined crack and within the compressed inclined strip are given. A variational method in the plasticity theory, the virtual velocities principle and the characteristic lines method are used for concrete and reinforced concrete elements calculations. In the ultimate state, concrete is considered as a rigid-plastic body. The shear is realized in case when the plastic deformation is localized in the compressed zone. The calculating ultimate load results for different failure cases are given. Such a design scheme is implemented, in which the console strength is minimal. This corresponds to the minimum of power of plastic deformation in concrete compressed zone. Reinforced concrete corbels calculation engineering methods are offered. The elements obtaining effective constructive decisions direction based on the plasticity theory use is determined.
机译:建立了创建剪切条件下混凝土和钢筋混凝土构件强度计算通用方法的必要性。考虑了钢筋混凝土牛腿在剪切作用下的三种破坏情况。给出了在倾斜裂缝下的受压区和受压倾斜条带内,接近法线的整个截面的牛腿强度与破坏问题的解决方案。可塑性理论中的变分方法,虚拟速度原理和特征线方法用于混凝土和钢筋混凝土构件的计算。在最终状态下,混凝土被认为是刚性塑料体。当塑性变形位于压缩区域时,可以实现剪切。给出了不同故障情况下的极限载荷计算结果。实现这样的设计方案,其中控制台强度最小。这对应于混凝土压缩区内塑性变形的最小能力。提供了钢筋混凝土牛腿梁的计算工程方法。确定基于可塑性理论使用获得有效建设性决策方向的要素。

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