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On the in-plane shear response of the high bond strength concrete masonry walls

机译:在高粘合强度混凝土砌体砌面砌面内的平面剪切响应

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摘要

Conventional unreinforced masonry walls subject to in-plane shear loading fail due to exceedance of shear and tensile bond strengths. This paper examines whether or not the in-plane shear capacity of masonry walls would increase with the increase in the bond strengths through experimental and numerical investigations. For these investigations, shear walls were built with high bond strength polymer cement mortar; they were applied in thin layers of 2 mm thickness each. Material tests were carried out to characterise the bond and the compressive strengths of the high bond strength thin layer mortared masonry; the bond strengths were found approximately double that of the conventional 10 mm thick cement mortars. The shear walls, however, exhibited significantly lower capacity (contrasting the expectation) and displayed base course sliding mode of failure. To ascertain the validity of the experimental results, a combined surface contact - interface element micro finite element (FE) modelling technique was formulated; the results adequately reproduced the experimental datasets. The validated FE model was then applied to examine the effect of the aspect ratios and pre-compression levels to the failure modes, deformation and strength of the high bond strength shear walls and is shown that once the pre-compression exceeds 15% of the masonry compressive strength, the base sliding failure mode changes to the diagonal cracking mode with corresponding increase in in-plane shear capacity. Therefore, it is concluded that the increase the bond strength without regard to pre-compression could adversely affect the safety of the high bond strength unreinforced masonry shear walls
机译:由于超过剪切和拉伸粘合强度,常规未粘接的砌体墙体受到面内剪切负载的影响。本文研究了砌体墙壁的面内剪切容量,通过实验和数值调查增加粘合强度的增加。对于这些调查,用高粘合强度聚合物水泥砂浆构建剪力墙;它们以2毫米厚度的薄层施加。进行材料测试以表征高粘合强度薄层砂浆的粘合和抗压强度;发现粘合强度约为常规10mm厚的水泥砂浆的两倍。然而,剪力墙显着降低容量(对比期望)和显示的基础路线滑动模式。为了确定实验结果的有效性,制定了一种组合的表面接触 - 界面元件微型有限元(FE)造型技术;结果充分再现了实验数据集。然后应用验证的Fe模型以检查纵横比和预压缩水平的效果,以及高粘合强度剪切壁的故障模式,变形和强度,并显示一旦预压缩超过砌体的15%抗压强度,基础滑动失效模式变为对角线开裂模式,相应的面内剪切容量增加。因此,得出结论是,不考虑预压缩的粘合强度可能会对高粘合强度的安全性产生不良粘合性砌体剪力墙

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