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Numerical models to predict the creep behaviour of brickwork

机译:预测砖砌蠕变行为的数值模型

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The numerical modelling of the time evolution of stresses and strains in brickwork under sustained loads is dealt with, within the framework of linear viscoelasticity. Finite element analyses were carried out, using three different masonry models: a simplified 2D layered model, and two 3D models (one for header bond masonry; one for Flemish bond masonry). The creep behaviour of the component materials (bricks and mortar) was defined according to experimental data available in the literature. These results were best fitted by Prony series, and the obtained creep laws were employed to carry out FE analyses of the masonry walls with different textures. Owing to the different mechanical response of the components to sustained loads, the stress and strain distribution in the wall changes in time and differs from that at the beginning of the loading process. The different behaviour of the two considered brick patterns is pointed out. The possibility of applying the simplified layered model instead of refined 3D models to predict the time evolution of stresses and strains is discussed.
机译:在线性粘弹性的框架内,研究了在持续荷载下砖砌体中应力和应变随时间变化的数值模型。使用三种不同的砖石模型进行了有限元分析:简化的2D分层模型和两个3D模型(一个用于标头粘结砌体;一个用于佛兰德粘结砌体)。根据文献中提供的实验数据定义了组成材料(砖和砂浆)的蠕变行为。这些结果最适合Prony系列,并使用获得的蠕变定律对具有不同纹理的砌体墙进行有限元分析。由于部件对持续载荷的不同机械响应,壁中的应力和应变分布会随时间变化,并且与加载过程开始时有所不同。指出了两种考虑的砖块模式的不同行为。讨论了应用简化的分层模型而不是精细的3D模型来预测应力和应变的时间演变的可能性。

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