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Tilting plane tests on a small-scale masonry cross vault: Experimental results and numerical simulations through a heterogeneous approach

机译:小型砌体交叉穹顶上的倾斜平面测试:通过异构方法进行的实验结果和数值模拟

摘要

The seismic response of masonry vaults is discussed by presenting the results of an experimental campaign on a small-scale model and their numerical simulation though a heterogeneous full 3D non-linear Finite Element (FE) approach. The model relies into a discretization of the blocks by means of few rigid-infinitely resistant parallelepiped elements interacting by means of planar four-noded interfaces, where all the deformation (elastic and inelastic) occurs. In the framework of a heterogeneous approach, two typologies of interfaces are present, namely internal brick-brick interfaces, here assumed elastic, and mortar joints with zero thickness, behaving as a frictional (Mohr-Coulomb) material with infinite strength in compression and almost vanishing tensile strength. The model is incremental, non-linear elasto-plastic and exhibits softening at mortar interfaces. Each load step is solved by means of mathematical programming, i.e. through the formulation of a suitable constrained minimization problem where the objective function is represented by the energy of the mechanical system. The experimental and numerical results are compared and discussed in terms of both collapse mechanisms and force/displacement capacity.
机译:通过使用异构全3D非线性有限元(FE)方法在小规模模型上进行实验活动的结果及其数值模拟,讨论了砌体金库的地震反应。该模型依靠很少的刚度-无限阻力的平行六面体元素通​​过平面四节点界面相互作用来离散化块,所有变形(弹性和非弹性)都在其中发生。在异构方法的框架中,存在两种类型的界面,即内部砖石界面(此处假定为弹性)和具有零厚度的砂浆接头,表现为具有无限压缩强度的摩擦(Mohr-Coulomb)材料,几乎拉伸强度消失。该模型是渐进的非线性弹塑性模型,并在砂浆界面处表现出软化。每个负载步骤都通过数学编程来解决,即通过制定适当的约束最小化问题来解决,其中目标函数由机械系统的能量表示。对实验和数值结果进行了比较和讨论,包括坍塌机理和受力/位移能力。

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