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Prediction of Fatigue Crack Growth for Semi-Elliptical Surface Cracks using S-version Fem under Tension Loading

机译:拉伸载荷作用下S形有限元预测半椭圆形表面裂纹的疲劳裂纹扩展

摘要

The finite element method (FEM) is commonly used is solving engineering problems including fatigue crack growth. The S-version FEM is an extended version of the FEM to predict fatigue crack growth. This method was developed into open-source software written in C/C++ language and built based on the UNIX operating system. The objective of this study is to perform a prediction for fatigue crack growth using the S-version FEM. This S-version FEM was structured using the global-local overlay technique that consisted of two separate meshes for global and local. Therefore, the computation process was solely focused on the local area instead of whole geometries. This undoubtedly reduced computation time and dependency on conventional FEM software. The geometry of the problem was modelled in FAST (pre-post) program and referred to as a global mesh, and the mesh was automatically generated in FAST. The location of the crack refers to the local mesh and at this stage smaller elements and finer mesh were made at the crack area. Local mesh was overlaid with global mesh. Then the global-local overlay approach was used to compute the engineering problem. The stress intensity factor (SIF) was calculated using the virtual crack closure-integral method (VCCM). The prediction of the fatigue crack growth results are shown in this study as well as the behaviour of the SIF corresponding to the crack growth. Analytical solutions were compared with the S-version FEM to validate the results. A very good agreement was presented between the S-version FEM and analytical approach for the normalised SIF. In addition, regression analysis was performed to support the evidence. From the analysis, very small root mean square errors (RMSE) of 0.12 with high correlation coefficient (R2) of 99.74% were shown to confirm the findings. From this study, it can be concluded that the S-version FEM is suitable to be used to predict fatigue crack growth for semi-elliptical surface cracks. The application of the S-version FEM benefits the user because using the overlay approach shortens the computation process.udKeywords: Fatigue crack growth (FCG), S-version Finite Element Method
机译:通常使用有限元方法(FEM)解决包括疲劳裂纹扩展在内的工程问题。 S版本FEM是FEM的扩展版本,可预测疲劳裂纹的增长。该方法已开发为用C / C ++语言编写的开源软件,并基于UNIX操作系统构建。这项研究的目的是使用S型FEM对疲劳裂纹的增长进行预测。这个S版本的FEM是使用global-local覆盖技术构造的,该技术由两个分别用于global和local的网格组成。因此,计算过程仅专注于局部区域而不是整个几何。无疑,这减少了计算时间并减少了对传统FEM软件的依赖。问题的几何形状在FAST(预发布)程序中建模,并称为全局网格,并且网格是在FAST中自动生成的。裂纹的位置是指局部网格,在此阶段,在裂纹区域制作了较小的单元和较细的网格。局部网格被全局网格覆盖。然后使用全局局部覆盖方法来计算工程问题。应力强度因子(SIF)是使用虚拟裂纹闭合积分方法(VCCM)计算的。本研究显示了疲劳裂纹扩展结果的预测以及与裂纹扩展相对应的SIF的行为。将分析解决方案与S版本FEM进行比较以验证结果。在S版本FEM和标准化SIF的分析方法之间提出了很好的协议。另外,进行了回归分析以支持证据。从分析中可以看出,非常小的均方根误差(RMSE)为0.12,相关系数(R2)为99.74%,证实了这一发现。从这项研究可以得出结论,S型有限元法适合用于预测半椭圆形表面裂纹的疲劳裂纹扩展。 S版本FEM的应用使用户受益,因为使用覆盖方法可以缩短计算过程。 ud关键字:疲劳裂纹扩展(FCG),S版本有限元方法

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