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FraMePID-3PB software for material parameter identification using fracture tests and inverse analysis

机译:FraMePID-3PB软件使用断裂测试和反分析来识别材料参数

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摘要

Knowledge regarding the values of fracture-mechanical parameters is critical for the virtual failure modeling of elements and structures made of concrete. A key parameter in nonlinear fracture mechanics modeling is the specific fracture energy of concrete, and its variability. Three-point bending tests on notched-beam specimens are fundamental experiments for the determination of fracture-mechanical parameters. In the present paper, two basic approaches are applied to determine fracture-mechanical parameter values from these tests: (ⅰ) the effective crack model/work-of-fracture method, and (ⅱ) inverse analysis using artificial neural networks and stochastic simulations. First, the paper describes suitable methods for the determination of fracture-mechanical parameters. Second, the FraMePID-3PB software tool, which has been developed in order to automate the whole time consuming process of inverse analysis, is described. Finally, the verification of methodology and software is presented using two illustrative examples.
机译:关于断裂力学参数值的知识对于混凝土构件和结构的虚拟破坏建模至关重要。非线性断裂力学建模的关键参数是混凝土的比断裂能及其可变性。缺口梁试样的三点弯曲试验是确定断裂力学参数的基础实验。在本文中,两种基本方法可用于通过这些测试确定断裂力学参数值:( :)有效的裂纹模型/断裂功方法,以及(ⅱ)使用人工神经网络和随机模拟进行反分析。首先,本文描述了确定断裂力学参数的合适方法。其次,描述了FraMePID-3PB软件工具,该工具已经开发出来,可以使反分析的整个耗时过程自动化。最后,使用两个说明性示例对方法论和软件进行了验证。

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