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Uniaxial concrete tension damage evolution using acoustic emission monitoring

机译:基于声发射监测的混凝土单轴拉伸损伤演化

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The tension damage function is an important component in concrete constitutive models. However, it is difficult to experimentally establish the complete tensile response due to the brittle behavior of concrete. This paper utilizes an acoustic emission (AE) monitoring method to determine the strain energy release within the fracture process zone (FPZ) of concrete. A total of 12 specimens with three different concrete strengths were subjected to three-point bending tests. The fracture mode, micro cracking initiation and propagation, strain energy release and macro-crack development of the specimens were identified by the AE technique. Based on the definition of the proposed tension damage function, an empirical expression was developed by using the strain test data in the FPZ and the monitored AE energy data. The proposed model is validated using experimental data from uniaxial monotonic and cyclic loading tests as well as comparison with existing models in the literature. The results show that the proposed model can reliably predict the strength, softening branch, unloading and stiffness degradation of concrete in uniaxial tension. (C) 2019 Elsevier Ltd. All rights reserved.
机译:张力损伤函数是混凝土本构模型的重要组成部分。但是,由于混凝土的脆性,很难通过实验来建立完整的拉伸响应。本文利用声发射(AE)监测方法来确定混凝土断裂过程区域(FPZ)内的应变能释放。总共对具有三种不同混凝土强度的12个试样进行了三点弯曲测试。利用AE技术确定了试样的断裂模式,微裂纹的萌生和扩展,应变能的释放以及宏观裂纹的发展。基于所提出的拉伸损伤函数的定义,通过使用FPZ中的应变测试数据和监视的AE能量数据,开发了经验表达式。利用单轴单调和循环载荷试验的实验数据以及与文献中的现有模型进行比较,验证了所提出的模型。结果表明,所提出的模型能够可靠地预测混凝土在单轴拉力下的强度,软化分支,卸载和刚度退化。 (C)2019 Elsevier Ltd.保留所有权利。

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