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Using Servo-Drive Presses to Determine the Effect of Blank Holder Pressure on Temperature Change in Warm Forming of Sheet

机译:使用伺服驱动压力机确定毛坯保持器压力对板材热成型中温度变化的影响

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摘要

Heat transfer coefficient (HTC) is one of the most important and difficult-to-obtain parameter in high temperature environment. Contact pressure and workpiece surface roughness are among important parameters that affect the heat transfer in elevated temperature forming of sheets. In this study, HTCs are investigated experimentally by using a servo-drive press. With the flexibility that the servo-drive press offers, effect of various blank holder pressures on temperature change is determined. Before and after surface roughness conditions of aluminum and magnesium (from two different manufacturers) alloy sheets are compared. Experimental setup was modeled using deform 2d, and measured temperature curves were compared with the finite element analysis (FEA) predictions and a window of heat transfer coefficients were determined for warm forming of sheets. Determined heat transfer coefficients were implemented in a nonisothermal deep drawing FE model in deform 2d and results were compared with experiments. Good agreement was obtained between FEA predictions and experiments.
机译:传热系数(HTC)是高温环境下最重要,最难获得的参数之一。接触压力和工件表面粗糙度是影响板材高温成型过程中传热的重要参数。在这项研究中,通过使用伺服驱动压力机对HTC进行了实验研究。借助伺服驱动压力机提供的灵活性,可以确定各种毛坯支架压力对温度变化的影响。比较了铝和镁(来自两个不同制造商)合金板的表面粗糙度前后的情况。使用变形2d对实验设置进行建模,并将测得的温度曲线与有限元分析(FEA)预测进行比较,并确定热传递板的窗口以进行热成型。确定的传热系数在变形2d的非等温深冲有限元模型中实现,并将结果与​​实验进行比较。 FEA预测和实验之间取得了良好的一致性。

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