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首页> 外文期刊>International Journal of Solids and Structures >Damage characterization in a ferritic steel sheet: Experimental tests, parameter identification and numerical modeling
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Damage characterization in a ferritic steel sheet: Experimental tests, parameter identification and numerical modeling

机译:铁素体钢板中的损伤表征:实验测试,参数识别和数值模拟

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The Gurson-Tvergaard-Needleman (GTN) model includes several parameters of different nature. Some of them have micromechanical roots while others are strictly phenomenological. Hence, a methodology should be developed in order to obtain a robust set of parameters with both numerical and physical meaning. The material parameters of the GTN model are found using an identification methodology based on experimental-numerical results. The method is applied on a DC01 ferritic steel sheet. An extended version of the Gurson model, incorporating plastic anisotropy, mixed isotropic-kinematic hardening, void nucleation, growth, coalescence and shear is used. Material parameters are obtained based on an inverse optimization and a sensitivity analysis on specimens with different geometries. The onset of coalescence, reflected as the loss of load carrying capacity in the force-displacement curve, is correctly predicted by the extended GTN model. The strain distribution, obtained by digital image correlation, is also correctly simulated. Nevertheless, the model does not to predict the increase of strain observed experimentally, because of the decoupling between hardening and the damage variable. In this respect, the article provides experimental evidence of the limitations of a GTN model based on a strain-controlled nucleation law with heuristic extensions of hardening. (C) 2018 Elsevier Ltd. All rights reserved.
机译:Gurson-Tvergaard-Reedleman(GTN)模型包括几个不同性质的参数。其中一些人具有微机械根,而其他人则严格的现象学。因此,应该开发一种方法,以便获得具有数值和物理含义的强大参数集。使用基于实验数值结果的识别方法找到GTN模型的材料参数。该方法应用于DC01铁素体钢板。使用Gurson模型的扩展版,采用塑性各向异性,混合各向同性 - 运动硬化,空隙成核,生长,聚结和剪切。基于具有不同几何形状的试样的逆优化和敏感性分析来获得材料参数。通过扩展GTN模型正确预测,聚结的开始,反映为力 - 位移曲线中的负载承载能力的损失。通过数字图像相关性获得的应变分布也被正确模拟。然而,该模型不预测实验观察的应变的增加,因为硬化和损伤变量之间的去耦。在这方面,本文提供了基于应变控制的成核法的GTN模型的局限性的实验证据,其具有硬化的启发式延伸。 (c)2018年elestvier有限公司保留所有权利。

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