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Strain and crack development in continuous reinforced concrete slabs subjected to catenary action

机译:连续钢筋混凝土板受到悬链线作用的应变和裂缝发展

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摘要

Several structural calamities in the second half of the 20th century have shown that adequate collapse-resistance cannot be achieved by designing the individual elements of a structure without taking their interconnectivity into consideration. It has long been acknowledged that membrane behaviour of reinforced concrete structures can significantly increase the robustness of a structure and delay a complete collapse. An experimental large-scale test was conducted on a horizontally restrained, continuous reinforced concrete slab exposed to an artificial failure of the central support and subsequent loading until collapse of the specimen. Within this investigation the development of catenary action associated with the formation of large displacements was observed to increase the ultimate load capacity of the specimen significantly. The development of displacements, strains and horizontal forces within this investigation confirmed a load transfer process from an elastic bending mechanism to a tension controlled catenary mechanism. In this contribution a special focus is directed towards strain and crack development at critical sections. The results of this contribution are of particular importance when validating numerical models related to the development of catenary action in concrete slabs.
机译:20世纪下半叶发生的几起结构性灾难表明,如果不考虑互连性而设计结构的各个元素,就无法获得足够的抗塌陷性。长期以来,人们一直公认钢筋混凝土结构的膜性能可以显着提高结构的坚固性并延缓完全坍塌。在水平受约束的连续钢筋混凝土板上进行了一项实验性的大型试验,该混凝土板受到中央支撑的人为破坏并随后承受载荷直至试样坍塌。在这项研究中,观察到与大位移形成相关的悬链线作用的发展显着增加了样品的极限载荷能力。在这项研究中,位移,应变和水平力的发展证实了从弹性弯曲机制到张力控制的悬链机制的载荷传递过程。在这一贡献中,特别关注于关键部位的应变和裂纹发展。在验证与混凝土板悬链线作用发展有关的数值模型时,这一贡献的结果特别重要。

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