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Numerical Simulation of 3-D Failure Process of Reinforced Concrete Specimen under Uniaxial Tension

机译:单轴张力下钢筋混凝土试样3D失效过程的数值模拟

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The periodically distributed fracture spacing phenomenon exists in the failure process of the reinforced concrete prism under uniaxial tension. In this paper, A numerical code RFPA~(3D) (3D Realistic Failure Process Analysis) is used to simulate the three-dimensional failure process of plain concrete prism specimen and reinforced concrete prism specimen under uniaxial tension. The reinforced concrete is represented by a set of elements with same size and different mechanical properties. They are uniform cubic elements and their mechanical properties, including elastic modulus and peak strength, are distributed through the specimens according to a certain statistical distribution. The elastic modulus and other mechanical properties are weakened gradually when the stresses in the elements meet the specific failure criterion. The displacement-controlled loading scheme is used to simulate the complete failure process of reinforced concrete. The analyses focus on the failure mechanisms of the concrete and reinforcement. The complete process of the fracture for the plain concrete prism and the fracture initiation, infilling and saturation of the reinforced concrete prism is reproduced. It agrees well with the theoretical analysis. Through 3D numerical tests for the specimen, it can be investigated the interaction between the reinforcement and concrete mechanical properties in meso-level and the numerical code is proved to be an effective way to help thoroughly understand the rule of the reinforcement and concrete and also help the design of the structural concrete components and systems.
机译:在单轴张力下钢筋混凝土棱柱的故障过程中存在周期性分布的裂缝间距现象。本文中,使用数值码RFPA〜(3D)(3D现实故障过程分析)来模拟单轴张力下普通混凝土棱镜样品和钢筋混凝土棱镜样品的三维故障过程。钢筋混凝土由具有相同尺寸和不同机械性能的一组元素表示。它们是均匀的立方体元素,并且它们的机械性能包括弹性模量和峰强度,根据一定的统计分布分布通过样本。当元素中的应力符合特定故障标准时,弹性模量和其他机械性能逐渐削弱。位移控制的装载方案用于模拟钢筋混凝土的完整故障过程。分析专注于混凝土和加固的故障机制。再现钢筋混凝土棱柱骨折的完整过程和钢筋混凝土棱镜的裂缝启动,缺陷和饱和度。它与理论分析一致。通过样品的3D数值测试,可以调查中间水平的加固和混凝土机械性能之间的相互作用,并证明了数值代码是一种有效的方法,可以帮助彻底了解加固和混凝土规则,也有助于帮助结构混凝土部件和系统的设计。

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