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FRACTURE SIMULATION IN QUASI-BRITTLE MATERIALS: CONTINUUM VS MICROMECHANICS APPROACH

机译:准脆性材料的断裂模拟:连续VS微观力学方法

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The crack formation and propagation in quasi-brittle materials are analysed using both a discontinuous-like FE approach (a new simple stress-based displacement discontinuity is introduced by an appropriate stress field correction) and a lattice model (by using a regular triangular lattice model formed by pin-joined truss elements which are assumed to have a linear elastic behaviour in compression and, up to a certain peak load, in tension). Some experimental results related to concrete specimens under tensile monotonic loading are examined and simulated by using both the discontinuous-like FE approach and the lattice model. The simulation results are compared and discussed in order to assess the main features, drawbacks and advantages of such two approaches.
机译:使用不连续样有限元方法(通过适当的应力场校正引入新的基于简单应力的位移不连续性)和晶格模型(使用规则的三角形晶格模型)来分析准脆性材料中的裂纹形成和扩展由销钉连接的桁架单元构成,假定其在压缩时具有线性弹性,在达到一定峰值载荷时,具有线性弹性。通过使用非连续样有限元方法和晶格模型,对与拉伸单调荷载作用下混凝土标本有关的一些实验结果进行了模拟。为了评估这两种方法的主要特征,缺点和优势,对仿真结果进行了比较和讨论。

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