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Catenary action effects on the structural robustness assessment of RC slab strips subjected to shear and tensile forces

机译:悬链作用对承受剪切力和拉力的RC板坯结构鲁棒性评估的影响

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摘要

In this paper, the behaviour of RC slab strips subjected to transverse loads and axial tensile forces is investigated by means of analytical and numerical simulations. The results obtained are compared to the experimental results from tests performed at the Swiss Federal Institute of Technology (ETH). The prediction of the structural response was part of an international benchmark study [1]. The aim of the paper is to investigate the capability of the adopted models and their main influencing parameters, especially from the perspective of a reliable structural robustness assessment. It is known that in some cases axial tensile forces have a beneficial effect on the bearing capacity of slab strips, thanks to the development of catenary actions. Such hidden strength resources are usually not taken into account in the current design process. For this reason, validation of suitable numerical tools, able to properly predict the structural response, is useful for a reliable structural robustness assessment. The paper underlines the importance of benchmark development, especially for specimens, in which both mechanical and geometrical nonlinearities play an important role.
机译:本文通过分析和数值模拟研究了RC板坯在横向载荷和轴向拉力作用下的行为。将获得的结果与瑞士联邦理工学院(ETH)进行的测试的实验结果进行比较。结构响应的预测是国际基准研究的一部分[1]。本文的目的是研究所采用模型的功能及其主要影响参数,尤其是从可靠的结构稳健性评估的角度出发。已知在某些情况下,由于悬链作用的发展,轴向拉力对板坯的承载能力产生了有益的影响。在当前的设计过程中通常不会考虑这种隐藏的强度资源。由于这个原因,能够正确预测结构响应的合适数值工具的验证对于可靠的结构稳健性评估很有用。本文强调了基准开发的重要性,特别是对于标本而言,在标本中机械非线性和几何非线性都起着重要作用。

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