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Numerical Simulation of Fracture Process Zone in Concrete Tension Specimen

机译:混凝土张力标本中断裂过程区的数值模拟

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In this paper, some numerical tests on the fracture process zone (FPZ) in concrete tension specimen were carried out with Material Failure Process Analysis code (MFPA~(2D)) to investigate the behavior of the FPZ and the effect of the meso-scale heterogeneity of concrete on fracture process. The numerical results provide a clear indicator of the FPZ of concrete. The numerical results show that the FPZ accompanied by AE events gradually develops ahead of the notch tip with the increase of the loading in the concrete tension specimen. Moreover, many of the AE events bring about very small energy at the beginning of loading stage. Zones of higher energy events demonstrate a localization zone around the notch tip. The zones of AE events progresses forward gradually, and much densely distributed AE events can be observed in the FPZ. Moreover, the numerical simulations about AE events agreed well with those of the microcracks obtained by laboratory findings.
机译:在本文中,用物质故障过程分析代码(MFPA〜(2D))进行了混凝土张力样本中的裂缝处理区(FPZ)的一些数值测试,以研究FPZ的行为和中间规模的效果混凝土的异质性对裂缝过程。数值结果提供了混凝土FPZ的清晰指示器。数值结果表明,随着混凝土张力标本的负载增加,FPZ伴随着AE事件的伴随着逐渐发展。此外,许多AE事件在装载阶段开始带来非常小的能量。更高能量事件的区域展示了凹口尖端周围的定位区域。 AE事件的区域逐渐前进,并且可以在FPZ中观察到许多密集的分布式AE事件。此外,关于AE事件的数值模拟与通过实验室发现获得的微裂纹的事件吻合得很好。

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