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首页> 外文期刊>International Journal of Fracture >A hybrid experimentalumerical technique to extract cohesive fracture properties for mode-I fracture of quasi-brittle materials
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A hybrid experimentalumerical technique to extract cohesive fracture properties for mode-I fracture of quasi-brittle materials

机译:提取准脆性材料I型断裂的内聚断裂特性的混合实验/数值技术

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摘要

We propose a hybrid technique to extract cohesive fracture properties of a quasi-brittle (not exhibiting bulk plasticity) material using an inverse numerical analysis and experimentation based on the optical technique of digital image correlation (DIC). Two options for the inverse analysis were used-a shape optimization approach, and a parameter optimization for a potential-based cohesive constitutive model, the so-called PPR (Park-Paulino-Roesler) model. The unconstrained, derivative free Nelder-Mead algorithm was used for optimization in the inverse analysis. The two proposed schemes were verified for realistic cases of varying initial guesses, and different synthetic and noisy displacement field data. As proof of concept, both schemes were applied to a Polymethyl-methacrylate (PMMA) quasi-static crack growth experiment where the near tip displacement field was obtained experimentally by DIC and was used as input to the optimization schemes.
机译:我们提出了一种混合技术,利用基于数字图像相关(DIC)光学技术的逆数值分析和实验,来提取准脆性材料(不具有整体塑性)的内聚断裂性能。使用了两种反分析选项:形状优化方法和基于势的内聚本构模型的参数优化,即所谓的PPR(Park-Paulino-Roesler)模型。逆分析中使用无约束,无导数的Nelder-Mead算法进行优化。两种建议的方案都针对不同的初始猜测以及不同的合成和嘈杂位移场数据的实际情况进行了验证。作为概念证明,这两种方案都应用于聚甲基丙烯酸甲酯(PMMA)准静态裂纹扩展实验,在该实验中,DIC通过实验获得了近尖端位移场,并将其用作优化方案的输入。

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