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Effects of mixed-mode overloading on the mixed-mode Ⅰ+Ⅱ fatigue crack growth

机译:混合模式超载对混合模式Ⅰ+Ⅱ疲劳裂纹扩展的影响

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In this study, the finite element modeling of the compact tension shear specimens has been used to evaluate the effects of overloading on fatigue crack growth with mixed-mode loading I+II. Element creation and modeling is done by CASCA software. FRANC2D was used for stress analysis and the determination of crack parameters. Life estimation of samples was done by using the software ETBX. To create the mixed-mode I+II, different loading angles of 0, 15,45 and 75 degrees (with respect to normal direction to the crack surface) were used with various overloading ratios. The effects of residual stresses due to overloading with saving and restoring capabilities were considered as a separate loading. To confirm the modeling results, models were built with ABAQUS and also compared with the results of numerical and experimental data in the literature. There are good agreements in determining the path of the crack growth and life estimation. The effects of the loading direction, overloading ratio and its load ratio, combination of overloadings and their locations on the fatigue crack growth and life are investigated.
机译:在这项研究中,紧凑型拉伸剪切试样的有限元建模已用于评估超载对混合模式载荷I + II下疲劳裂纹扩展的影响。元素创建和建模由CASCA软件完成。 FRANC2D用于应力分析和确定裂纹参数。样品的寿命估算是通过使用软件ETBX进行的。为了创建混合模式I + II,使用了0、15、45和75度(相对于裂纹表面的法线方向)的不同加载角度以及不同的过载率。由具有保存和恢复功能的过载导致的残余应力的影响被视为单独的载荷。为了确认建模结果,使用ABAQUS建立了模型,并与文献中的数值和实验数据进行了比较。在确定裂纹扩展的路径和估算寿命方面达成了良好的协议。研究了载荷方向,超载比及其载荷比,超载组合及其位置对疲劳裂纹扩展和寿命的影响。

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