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Shear resistance of masonry walls and Eurocode 6: shear versus tensile strength of masonry

机译:砌体墙的抗剪强度和欧洲规范6:砌体的抗剪强度与抗拉强度

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摘要

In the case of masonry structures subjected to seismic loads, shear failure mechanism of walls, characterised by the formation of diagonal cracks, by far predominates the sliding shear failure mechanism. However, as assumed by Eurocode 6, the latter represents the critical mechanism for the assessment of the shear resistance of structural walls. The results of a series of laboratory tests are analysed to show that in the case of the diagonal tension shear failure the results of the Eurocode 6 based calculations are not in agreement with the actual resistance of masonry walls. The results of calculations, where the diagonal tension shear mechanism and tensile strength of masonry are considered as the critical parameters, are more realistic. Since the results of seismic resistance verification, based on the Eurocode 6 assumed sliding shear mechanism, are not in favour of structural safety, it is proposed that in addition to sliding shear, the diagonal tension shear mechanism be also considered. Besides, in order to avoid misleading distribution of seismic actions on the resisting shear walls, the deformability characteristics of masonry at shear should be determined on the basis of experiments and not by taking into account the Eurocode 6 recommended G/E ratio.
机译:在砌体结构承受地震荷载的情况下,以剪切裂缝为主要特征的墙体以斜裂缝的形成为特征,这在滑动剪切破坏机理中占主导地位。但是,正如欧洲规范6所假定的那样,后者代表了评估结构墙抗剪强度的关键机制。分析了一系列实验室测试的结果,以表明在对角拉伸剪切破坏的情况下,基于Eurocode 6的计算结果与砌体墙的实际阻力不一致。以对角线拉剪剪力和砌体抗拉强度为关键参数的计算结果更为现实。由于基于Eurocode 6假定的滑动剪切机制的抗震验证结果不利于结构安全,因此建议除了滑动剪切以外,还应考虑斜向拉伸剪切机制。此外,为了避免地震作用在抵抗剪力墙上的误导分布,应在试验的基础上确定砌体在剪切时的变形特性,而不应考虑欧洲规范6推荐的G / E比。

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