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Numerical Determination of Stress Intensity Factors Using ABAQUS

机译:用ABAQUS数值确定应力强度因子

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Crack assessments for pressure vessels often need to quantify the crack driving force - stress intensity factor K with the linear-elastic fracture mechanics methods. Different numerical methods have been developed to calculate the stress intensity factors for complex cracks. Of which, four typical methods, i.e., the displacement extrapolation method, the virtual crack closure technique (VCCT), the J-integral conversion method, and the direct K output method are selected and evaluated in this paper using the finite element analysis (FEA) and ABAQUS software. The evaluations are performed based on the benchmark FEA calculations in the linear-elastic conditions for the central-cracked panel (CCP) specimen in the two-dimensional (2D) plane strain conditions. The "best method" is then determined and used to calculate the stress intensity factor for the CCP specimen with a through-thickness crack in the three-dimensional (3D) conditions. The results show that ABAQUS can simply determine very accurate K values for both 2D and 3D cracks.
机译:压力容器的裂纹评估通常需要使用线性弹性断裂力学方法来量化裂纹驱动力-应力强度因子K。已经开发出不同的数值方法来计算复杂裂缝的应力强度因子。本文采用有限元分析(FEA)方法对四种典型方法进行了选择和评价,分别是位移外推法,虚拟裂纹闭合技术(VCCT),J积分转换法和直接K输出法。 )和ABAQUS软件。评估是基于基准FEA计算在二维(2D)平面应变条件下的中央裂纹面板(CCP)试样的线性弹性条件下进行的。然后确定“最佳方法”,并将其用于计算在三维(3D)条件下具有贯穿厚度裂纹的CCP试样的应力强度因子。结果表明,ABAQUS可以简单地确定2D和3D裂纹的非常准确的K值。

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