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Torsion-shear behaviour at the interfaces of rigid interlocking blocks in masonry assemblages: experimental investigation and analytical approaches

机译:砌体组合中刚性互锁块界面的扭力剪切行为:实验研究和分析方法

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摘要

Increasing interest has recently been devoted to interlocking blocks/interfaces capable to enhance the sliding resistance of masonry joints to external forces. In this framework, this paper deals with the assessment of the torsion-shear capacity of the contact interface between the lock and the main body of an interlocking block, assumed to have a cohesive behaviour. The interlocking block is a rigid unit which, on its faces, have square cuboidal locks keeping the adjacent/overlapped blocks together and preventing blocks from sliding. Two numerical approaches and a novel ad hoc experimental investigation are proposed to simulate the torsion-shear behaviour by applying eccentrical shear forces to the lock. First, concave, convex and corrected concave formulations provided by the literature for assemblages of rigid blocks with conventional planar joints are extended to model the interlocking block behaviour. Then, according to a second approach based on the discrete element method, the concave-shaped interlocking block is modelled by convex polyhedrons representing the lock and the main body of the block, considered as individual rigid units stacked over each other with a cohesive contact in between. A novel experimental investigation on the limiting pure shear and torsion-shear combinations at the lock interface made of cohesive material is also presented. Two different mortars were chosen to make the specimens, which were casted using 3D printed moulds, and different test configurations were set up to simulate shear and torsion-shear failures. The analytical and numerical results are compared with each other and against the experimental ones, with interesting remarks on the application of the different approaches.
机译:最近越来越多的利息被致力于互锁的块/接口,能够增强砌体关节与外力的滑动阻力。在本框架中,本文涉及评估锁定块的锁和主体之间的接触界面的扭转剪切容量,假设具有粘性行为。互锁块是刚性单元,其在其面上具有方形立方体锁,将相邻/重叠的块保持在一起并防止块滑动。提出了两种数值方法和新型的临时实验研究,以通过向锁施加偏心剪切​​力来模拟扭转剪切行为。首先,由具有传统平面接头的刚性块组件提供的文献提供的凹形,凸和校正的凹形制剂延伸以模拟互锁块行为。然后,根据基于离散元件方法的第二种方法,凹形互锁块由表示锁的锁和主体的凸起多面体建模,被认为是彼此堆叠的单独刚性单元,其中粘合性接触之间。还提出了一种关于由粘性材料制成的锁定界面处的限制纯剪切和扭转剪切组合的新型实验研究。选择两种不同的砂浆以使使用3D印刷模具铸造的标本,并建立不同的测试配置以模拟剪切和扭转剪切故障。分析和数值结果彼此比较并反对实验结果,有关不同方法的应用有趣的评论。

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