评估试样几何形状对反应堆压力容器钢解理断裂韧性影响的局部方法

D. Sarzosa, R. Savioli, C. Ruggieri, A. Jivkov, J. Beswick
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引用次数: 2

摘要

本文提出了基于威布尔应力(σw)概念预测铁素体钢解理断裂的微力学破坏准则的最新改进。该模型应用于从ASTM A533压力容器钢中提取的具有不同裂纹尖端应力三轴性水平的SE(B)试样。建立尺寸与试样相匹配的非线性三维有限元模型,提供断裂过程区所需的裂纹尖端应力,计算裂纹的σw-J演化,从而估计不同裂纹几何形状之间的特征韧性值(J0)的变化。将该方法应用于本研究所用材料,可以预测极浅裂纹尺寸比a/W = 0.05,短裂纹尺寸比a/W = 0.2,深裂纹尺寸比a/W = 0.4的SE(B)试件的J0。对于裂纹尺寸比非常浅的试样,报告的断裂韧性值是本研究的另一个贡献。
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A Local Approach to Assess Effects of Specimen Geometry on Cleavage Fracture Toughness in Reactor Pressure Vessel Steels
This work presents recent improvements in the micromechanical failure criterion based on the Weibull stress (σw) concept for prediction of cleavage fracture in ferritic steels. The model is applied in SE(B) specimens extracted from an ASTM A533 pressure vessel steel having different levels of stress triaxiality at the crack tip. Nonlinear 3D finite element models with dimensions matching the tested specimens were built to provide the necessary crack tip stresses at the fracture process zone for calculation of the σw-J evolution from wich the variation of characteristic toughness values (J0) between different cracked geometries can be estimated. Application of this methodology for the material used at this study is able to predict J0 for SE(B) specimens with very shallow crack size ratio a/W = 0.05, short crack a/W = 0.2 and deep crack a/W = 0.4. The reported fracture toughness values for specimens having very shallow crack size ratio is an additional contribution of this study.
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