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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Mesoscopic aspects of the computational homogenization with meshless modeling for masonry material
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Mesoscopic aspects of the computational homogenization with meshless modeling for masonry material

机译:用砌体材料啮齿学建模的计算均质化的介观方面

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The multiscale homogenization scheme is becoming a diffused tool for the analysis of heterogeneous materials as masonry since it allows dealing with the complexity of formulating closed-form constitutive laws by retrieving the material response from the solution of a unit cell (UC) boundary value problem (BVP). The robustness of multiscale simulations depends on the robustness of the nested macroscopic and mesoscopic models. In this study, specific attention is paid to the meshless solution of the UC BVP under plane stress conditions, comparing performances related to the application of linear displacement or periodic boundary conditions (BCs). The effect of the geometry of the UC is also investigated since the BVP is formulated for the two simpliest UCs, according to a displacement-based variational formulation assuming the block indefinitely elastic and the mortar joints as zero-thickness elasto-plastic interfaces. It will be showed that the meshless discretization allows obtaining some advantages with respect to a standard FE mesh. The influence of the UC morphology as well as the BCs on the linear and nonlinear UC macroscopic response is discussed for pure modes of failure. The results can be constructive in view of performing a general Fe center dot Meshless or Meshless(2) analysis.
机译:多尺度均质化方案正在成为分析异质材料作为砌体的扩散工具,因为它允许通过从单位细胞(UC)边值问题的溶液( BVP)。多尺度模拟的鲁棒性取决于嵌套宏观和介面模型的鲁棒性。在该研究中,在平面应力条件下,对UC BVP的无网溶液支付特定的注意,比较与线性位移或周期性边界条件(BCS)的应用相关的性能。还研究了UC的几何形状的效果,因为根据基于位移的改变的改变的基于位移的变分制剂,因为挡板是无限厚度的零厚的弹性塑料界面的基于位移的变分制剂,因此根据基于位移的变分制剂。结果表明,无网格离散化允许在标准FE网格上获得一些优点。 UC形态以及BCS对线性和非线性UC宏观反应的影响是针对纯的失效模式讨论的。考虑到执行通用FE中心点无网或无丝毫(2)分析,结果可以是建设性的。

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