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Investigation of scar formation in fine blanking processes and their prediction in 3D ALE simulations

机译:细小消隐过程中瘢痕形成及其在3D ALE模拟中的预测

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Scar formation in fine blanking was investigated by means of a particularly developed fine blanking tool and experimental evidence about significant the process parameters chamfer size of the blanking tools, V-Ring usage and clearance is given. Furthermore, a special purpose Finite Element code using the Arbitrary-Lagrange-Eulerian method with a process specific mesh generation is demonstrated and used for the determination of relevant parameters for prediction crack formation in 3D fine blanking simulations. The simulations shown, that a commonly used description of fracture strain as a function of stress and deformation state is not sufficient. In order to simulate scar occurrence on the blanking surface, the significant increase of fracture strain due to temperature rise because of plastic heat generation has to be taken into account. A possible way of measuring the temperature effect was shown in torsion tests at different initial temperature levels.
机译:通过特别开发的精细消隐工具和实验证据研究了细小消隐中的疤痕形成,关于显着的工艺参数倒角的倒角,给出了V形圈使用和间隙。此外,使用使用具有处理特定网格生成的任意拉格朗日 - 欧拉方法的特殊用途的有限元件,并用于确定3D细小消隐模拟中的预测裂缝形成相关参数。所示的模拟,即裂缝应变的常用描述作为应力和变形状态的函数是不够的。为了模拟消隐表面上的瘢痕发生,必须考虑由于温度升高引起的断裂菌株的显着增加。测量温度效应的可能方法显示在不同初始温度水平的扭转试验中。

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