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Development of a new design expression for the in-plane shear capacity of the partially grouted concrete masonry walls

机译:为部分灌浆混凝土砌体墙的面内抗剪承载力开发新的设计表达式

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摘要

Partially grouted masonry walls subjected to in-plane shear exhibit a complex behaviour because of the influence of the aspect ratio, the pre-compression, the grouting pattern, the ratios of the horizontal and the vertical reinforcements, the boundary conditions and the characteristics of the constituent materials. The existing in-plane shear expressions for the partially grouted masonry are formulated as sum of strength of three parameters, namely, the masonry, the reinforcement and the axial force. The parameter ‘masonry’ includes the wall aspect ratio and the masonry compressive strength; theudaspect ratio of the unreinforced panel inscribed into the grouted cores and bond beams are not considered, although failure is often dominated by these unreinforced masonry panels. This paper describes the dominance of these panels, particularly those that are squat, to the shear capacity of whole of shear walls. Further, the current design formulae are shown highly un-conservative by many researchers; this paper provides a potential reason for this un-conservativeness. It is shown that by including an additional term of the unreinforced panel aspect ratio a rational design formula could be established. This new expression is validated with independent test results reported in the literature – both Australian and overseas; the predictions are shown to be conservative.
机译:由于纵横比,预压缩,注浆模式,水平和垂直钢筋的比例,边界条件和特征的影响,部分注浆砌体墙在平面内剪切下表现出复杂的行为。构成材料。现有的部分灌浆砌体的面内剪切表达式由砌体,钢筋和轴向力三个参数的强度之和表示。参数“砌体”包括墙高宽比和砌体抗压强度;尽管考虑到失效通常是由这些未加固的砌体面板决定的,但未考虑刻在灌浆芯和粘结梁中的未加固面板的怀疑比。本文描述了这些面板(尤其是蹲式面板)对整个剪力墙的抗剪能力的支配性。此外,许多研究人员显示当前的设计公式非常不保守。本文提供了这种不保守的潜在原因。结果表明,通过增加无筋面板纵横比的附加项,可以建立合理的设计公式。该新表达已通过文献报道的独立测试结果进行了验证-澳大利亚和海外;预测显示是保守的。

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