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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Nonlocal Peridynamic Modeling and Simulation on Crack Propagation in Concrete Structures
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Nonlocal Peridynamic Modeling and Simulation on Crack Propagation in Concrete Structures

机译:混凝土结构裂纹扩展的非局部周向动力学建模与仿真

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An extended peridynamic approach for crack propagation analysis in concrete structures was proposed. In the peridynamic constitutive model, concrete material was described as a series of interacting particles, and the short-range repulsive force and anisotropic behavior of concrete were taken into account in the expression of the interactive bonding force, which was given in terms of classical elastic constants and peridynamic horizon. The damage of material was defined locally at the level of pairwise bond, and the critical stretch of material bond was described as a function of fracture strength in the classical concrete failure theory. The efficiency and accuracy of the proposed model and algorithms were validated by simulating the propagation of mode I and I-II mixed mode cracks in concrete slabs. Furthermore, crack propagation in a double-edge notched concrete beam subjected to four-point load was simulated, in which the experimental observations are captured naturally as a consequence of the solution.
机译:提出了一种扩展的绕动力分析方法,用于混凝土结构的裂纹扩展分析。在周向动力本构模型中,混凝土材料被描述为一系列相互作用的颗粒,并且在相互作用粘结力的表达中考虑了混凝土的短程排斥力和各向异性行为,这是根据经典弹性给出的。常数和视野动力学范围。材料的损伤在成对粘结的水平上局部定义,并且在经典混凝土破坏理论中,材料粘结的临界拉伸被描述为断裂强度的函数。通过模拟I型和I-II混合模式裂纹在混凝土板上的传播,验证了所提模型和算法的有效性和准确性。此外,模拟了在四点荷载作用下的双边缺口混凝土梁中的裂纹扩展情况,其中,解决方案自然地捕获了实验观察结果。

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