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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Cross wedge rolling of a Ti6Al4V (ELI) alloy: the experimental studies and the finite element simulation of the deformation and failure
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Cross wedge rolling of a Ti6Al4V (ELI) alloy: the experimental studies and the finite element simulation of the deformation and failure

机译:Ti6Al4V(ELI)合金的楔形横轧:变形和破坏的实验研究和有限元模拟

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摘要

The cross wedge rolling (CWR) deformation and fracture of a Ti6Al4Al (ELI) alloy were investigated experimentally and numerically using a coupled thermomechanical finite element model analysis. The experimentally determined flow stress and damage model parameters were verified by tension split Hopkinson pressure bar testing of notched samples. The simulation and experimental CWR forces showed well agreements except near the end of the stretching zone. The model analysis showed that the temperature distribution in the work piece was non-uniform during the CWR. When the initial temperature of the work piece was relatively low, the work piece temperature increased, a heating effect of the plastic deformation, while relatively high initial work piece temperatures resulted in cooling the work piece, caused by the work piece contact with the tools. The cracks were shown numerically to initiate in the midsections of the work piece during the guiding action and elongated in a direction normal to the maximum tensile stress triaxiality, resulting in cruciform-shaped crack formation, which was well agreed with the previously observed crack shape.
机译:利用热力学有限元模型分析,对Ti6Al4Al(ELI)合金的楔形横轧(CWR)变形和断裂进行了研究。实验确定的流应力和损伤模型参数通过缺口样品的拉力霍普金森压力棒测试进行验证。模拟和实验性CWR力显示出良好的一致性,除了拉伸区末端附近。模型分析表明,在CWR过程中,工件中的温度分布是不均匀的。当工件的初始温度较低时,工件温度升高,塑性变形的加热效果,而较高的初始工件温度则由于工件与工具接触而导致工件冷却。裂纹在引导作用期间从工件的中部开始以数字方式显示,并在垂直于最大拉伸应力三轴性的方向上伸长,从而导致形成十字形裂纹,这与之前观察到的裂纹形状非常吻合。

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