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Mesoscale Modelling of Concretes Subjected to Triaxial Loadings: Mechanical Properties and Fracture Behaviour

机译:经过三轴载荷的混凝土的Messcale建模:机械性能和骨折行为

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摘要

The mechanical properties and fracture behaviour of concretes under different triaxial stress states were investigated based on a 3D mesoscale model. The quasistatic triaxial loadings, namely, compression–compression–compression (C–C–C), compression–tension–tension (C–T–T) and compression–compression–tension (C–C–T), were simulated using an implicit solver. The mesoscopic modelling with good robustness gave reliable and detailed damage evolution processes under different triaxial stress states. The lateral tensile stress significantly influenced the multiaxial mechanical behaviour of the concretes, accelerating the concrete failure. With low lateral pressures or tensile stress, axial cleavage was the main failure mode of the specimens. Furthermore, the concretes presented shear failures under medium lateral pressures. The concretes experienced a transition from brittle fracture to plastic failure under high lateral pressures. The Ottosen parameters were modified by the gradient descent method and then the failure criterion of the concretes in the principal stress space was given. The failure criterion could describe the strength characteristics of concrete materials well by being fitted with experimental data under different triaxial stress states.
机译:基于3D Mescle模型,研究了不同三轴应力状态下混凝土的机械性能和断裂行为。使用Quasistatic三轴载荷,即压缩压缩 - 压缩(C-C-C),压缩张力张力(C-T-T)和压缩 - 压缩张力(C-C-T)。隐含求解器。具有良好稳健性的介观型建模在不同三轴应力状态下具有可靠和详细的损伤进化过程。横向拉伸应力显着影响了混凝土的多轴力学行为,加速了混凝土故障。具有较低的横向压力或拉伸应力,轴向切割是标本的主要故障模式。此外,混凝土在介质横向压力下呈现剪切故障。在高横向压力下,混凝土经历了从脆性断裂到塑性失效的过渡。通过梯度下降方法修改了无孔参数,然后给出了主应力空间中的混凝土的故障标准。故障标准可以通过在不同三轴应力状态下安装实验数据来描述混凝土材料的强度特性。

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