欧洲项目ATLAS+:剪切修正Gurson模型与send断裂试件断裂试验对比的评价

Tobias Bolinder, D. Moinereau, P. L. Delliou, A. Dahl, J. Besson
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引用次数: 0

摘要

本文将评估由Nahshon和Hutchinson开发的剪切修正Gurson模型的能力,该模型被Kiwa Inspecta在ATLAS+项目中使用。这是通过与EDF和ARMINES进行的SENT断裂试验的实验结果进行比较得出的。总结了标准和剪切修正Gurson模型的参数辨识过程。本文中介绍的工作是ATLAS+项目中工作包3的一部分。WP3主要关注部件大缺陷的韧性撕裂预测。现有的模型可以准确地预测韧性撕裂,并考虑应力三轴效应等现象。这些高级模型包括局部方法耦合模型或高级能量方法。然而,有必要验证这些模型在工业应用中的使用。这将在ATLAS+项目中通过预测大型组件测试的结果来完成,其中模型的输入来自小型实验室标本。文中给出了由Nashson和Hutchinson[1]提出的剪切修正Gurson模型的描述。此外,还讨论了材料模型参数的确定过程。为了确定剪切修正Gurson模型的材料参数,采用了单轴拉伸试验、断裂试验和剪切试验。所使用的材料是铁素体钢WB 36 (15 NiCuMoNb 5),将用于ATLAS+项目中的大型部件测试。通过将剪切修正Gurson模型的预测结果与EDF和ARMINES进行的SENT样品的实验结果进行比较,也对该过程进行了评估。本文还比较了标准Gurson模型和修正剪切Gurson模型在send试验中预测韧性撕裂的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
European Project ATLAS+: Evaluation of a Shear Modified Gurson Model by Comparison to Experimental Fracture Tests on SENT Fracture Specimens
This paper will assess the capability of the shear modified Gurson model developed by Nahshon and Hutchinson which is used by Kiwa Inspecta within the ATLAS+ project. This is done by comparison to experimental results from SENT fracture tests performed by EDF and ARMINES. The procedure for parameter identification for the standard and shear modified Gurson model is also summarized. The work presented in this paper is part of Work Package 3 within the ATLAS+ project. WP3 focus mainly on ductile tearing predictions for large defects in components. Models exists to accurately predict ductile tearing and to consider phenomena such as stress triaxiality effects. These advanced models include local approach coupled models or advanced energetic approaches. However, there is a need to validate these models for use in industrial applications. This will be done within the ATLAS+ project by predicting the results of the large scale component tests where input to the models are given from small size laboratory specimens. Within the paper a description of the shear modified Gurson model is given, as developed by Nashson and Hutchinson [1]. Furthermore, the procedure in determining the material model parameters is discussed. To determine the material parameters for the shear modified Gurson model a uniaxial tensile test, a fracture test and shear tests are used. The material that is used is the ferritic steel WB 36 (15 NiCuMoNb 5) which will be used for the large scale component tests within the ATLAS+ project. The procedure is also evaluated by comparing predictions done with the shear modified Gurson model to experimental results from SENT specimens performed by EDF and ARMINES. A comparison of the capability in predicting the ductile tearing in the SENT experiments between the standard Gurson model and the shear modified Gurson model is also presented within the paper.
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