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Numerical and Experimental Study of the Plasticity Effect on Residual Stress Measurement using Slitting Method

机译:纵剪法测量残余应力的塑性效应的数值和实验研究

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Residual Stress measurement has gained interests among researchers for many years. Slitting method is one of the destructive techniques that relies on the introduction of an increasing cut to a part containing residual stresses. Similar to all other mechanical strain relief techniques, slitting suffers from the level of plasticity occurs within the sample while cutting. In the present research, slitting method was simulated using finite element analysis. The correct performance of the slitting method procedure was explored using known residual stress fields. Then, simulations of the quenching process of beam samples were performed for three different temperature levels; 400℃, 600℃ and 850℃. The experimental procedures of the slitting method on the quenched samples at these temperatures were then carried out. The influence of three stress levels on the ability of the slitting method was discussed. Interesting results were observed.
机译:残余应力测量已引起研究人员多年的兴趣。分条方法是一种破坏性技术,它依赖于对包含残余应力的零件增加切削力。类似于所有其他机械应力消除技术,纵切会遭受切割时样品内部发生的可塑性水平的影响。在本研究中,采用有限元分析方法模拟了纵切方法。使用已知的残余应力场探索了纵剪方法程序的正确性能。然后,针对三种不同的温度水平对梁样品的淬火过程进行了仿真。 400℃,600℃和850℃。然后在这些温度下对淬火样品进行纵切法的实验步骤。讨论了三种应力水平对纵剪方法性能的影响。观察到有趣的结果。

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