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Evaluation of directional mesh bias in concrete fracture simulations using continuum damage models

机译:使用连续损伤模型评估混凝土断裂模拟中的定向网格偏差

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摘要

In the present comparative study, we investigate the influence of directional mesh bias on the results of failure simulations performed with isotropic and anisotropic damage models. Several fracture tests leading to curved crack trajectories are simulated on different meshes. The isotropic damage model with a realistic biaxial strength envelope for concrete is highly sensitive to the mesh orientation, even for fine meshes. The sensitivity is reduced if the definition of the damage-driving variable (equivalent strain) is based on the modified von Mises criterion, but the corresponding biaxial strength envelope is not realistic for concrete. The anisotropic damage models used in this study capture reasonably well arbitrary crack trajectories even if the biaxial strength envelope remains close to typical experimental data. Their superior performance can be at least partially attributed to their ability to capture dilatancy under shear, which is revealed by a comparative analysis of the behavior of individual models under shear with restricted or free volume expansion.
机译:在目前的比较研究中,我们研究了定向网格偏差对各向同性和各向异性损伤模型进行的失效模拟结果的影响。在不同的网格上模拟了导致弯曲裂纹轨迹的几种断裂试验。具有对混凝土逼真的双轴强度包络线的各向同性损伤模型对网格方向(即使是细网格)也高度敏感。如果损坏驱动变量(等效应变)的定义基于修改后的冯·米塞斯准则,则灵敏度会降低,但是相应的双轴强度包络线对于混凝土而言并不现实。即使双轴强度包络线仍接近典型的实验数据,本研究中使用的各向异性损伤模型仍能较好地捕获任意裂纹轨迹。它们的优越性能至少可以部分归因于其在剪切作用下捕获剪胀的能力,这通过对单个模型在剪切作用下具有受限或自由体积膨胀的行为的比较分析得以揭示。

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