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Concrete Fracture Prediction Using Virtual Internal Bond Model with Modified Morse Functional Potential

机译:使用虚拟内键模型进行混凝土断裂预测,具有修改摩尔斯函数潜力

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Concrete fracture behavior is predicted by one of multi-scaling methods, called the virtual internal bond (VIB) model. The VIB model describes the microscopic interactions between the cement pastes and aggregates using the concept of homogenization. The microscopic behavior is connected to macroscopic behavior by the Cauchy-Born rule, which results in the strain energy function. From the macroscopic strain energy function, the VIB model represents both elastic and fracture behavior within the framework of continuum mechanics. In this study, a modified Morse functional potential is introduced for material particles interactions so that the potential is independent of the length scale lattice parameter. The other parameters in the potential function are determined on the basis of macroscopic fracture parameters, i.e. the fracture energy and the cohesive strength. Moreover, the fracture energy is evaluated in conjunction with the J-integral. Finally, the VIB model with the modified Morse potential is verified by the double cantilever beam test and validated by three-point bending tests.
机译:通过多扩展方法之一预测混凝土骨折行为,称为虚拟内部键(VIB)模型。 VIB模型描述了使用均质化概念的水泥糊和聚集体之间的微观相互作用。微观行为通过Cauchy出生的规则连接到宏观行为,这导致应变能功能。从宏观菌株能量函数来看,VIB模型代表连续内力学框架内的弹性和断裂行为。在该研究中,引入了用于材料颗粒的相互作用的改进的莫尔固功能电位,使得潜在的潜力独立于长度晶格参数。潜在功能中的其他参数是基于宏观断裂参数确定的,即裂缝能量和内聚强度。此外,与J-Intional一起评估裂缝能量。最后,通过双悬臂梁测试验证了具有修改的莫尔斯电位的VIB模型,并通过三点弯曲测试验证。

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