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Analysis and Design of Disturbed Regions in Concrete Structures.

机译:混凝土结构中扰动区域的分析与设计。

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The ordinary beams theory based on Bernoulli's theorem is not applicable to non linear and non prismatic members, in RC structures like deep beams, pile caps, dapped ended beams and corbels etc. Such structures normally fail due to shear failure rather than flexural failure and cannot be analyzed and designed with the flexural analysis or beam theory. Strut and Tie Model (STM) provides an acceptable analysis and design solution for the non linear and disturbed regions in RC structures. In this research four pile caps, six corbels, three deep beams, and three dapped ended beams, designed on the basis of assumed Strut and Tie Model were tested in the laboratory under monotonic loads. The failure loads were compared with the assumed design loads. It has been observed that STM provides reasonable solution for the design of disturbed region in RC structures. In most of the cases the actual failure loads were reasonably closed to the theoretical design loads. However for generalization of the STM as an alternative design solution, more experimental work is required on non linear and disturbed region.
机译:基于Bernoulli定理的普通梁理论不适用于非线性和非棱柱构件,在RC结构中,如深梁,桩帽,划分的梁和Corbels等。这种结构通常由于剪切失效而不是弯曲故障而失效而不能分析和设计弯曲分析或光束理论。 Strut和TIE模型(STM)为RC结构中的非线性和干扰区域提供了可接受的分析和设计解决方案。在这项研究中,在单调负载下,在实验室测试了基于假定的支柱和领带模型设计的四个桩帽,六个电石,三个深梁和三个划分的结束梁。将故障载荷与假设的设计负载进行比较。已经观察到STM为RC结构中的干扰区域设计提供合理的解决方案。在大多数情况下,实际的故障负载合理地关闭到理论设计载荷。然而,对于STM作为替代设计解决方案的广义,在非线性和受扰动区域上需要更实验的工作。

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