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Study on forging process and die design of parking sensor shell

机译:停车传感器壳体的锻造工艺及模具设计研究

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The process of precision forging has been developed recently because of its advantages of giving high production rates and improved strength. For complete filling up, predicting the power requirement and final shape are important features of the forging process. A finite element method is used to investigate the forging force, the final shape and the stress distribution of the parking sensor shell forging. The stress-strain curve of AL-6082 is obtained by the computerized screw universal testing machine. The friction factor between AL-6082 alloy and die material (SKD11) are determined by using ring compression test. Stress-strain curve and fiction factor are then applied to the finite element analysis of the parking sensor shell forging. Maximum forging load, effective stress distribution and shape dimensions are determined of the parking sensor shell forging, using the finite element analysis. Then the parking sensor shells are formed by the forging machine. Finally, the experimental data are compared with the results of the current simulation for the forging force and shape dimensions of the parking sensor shell.
机译:由于其具有高生产率和提高强度的优点,最近开发了精密锻造工艺。为了完全填充,预测功率需求和最终形状是锻造过程的重要特征。采用有限元方法研究了停车传感器壳体锻件的锻造力,最终形状和应力分布。 AL-6082的应力-应变曲线是通过计算机通用万能试验机获得的。 AL-6082合金与模具材料(SKD11)之间的摩擦系数通过环形压缩试验确定。然后将应力-应变曲线和摩擦系数应用于停车传感器壳体锻件的有限元分析。使用有限元分析确定停车传感器外壳锻件的最大锻造载荷,有效应力分布和形状尺寸。然后由锻造机形成驻车传感器壳。最后,将实验数据与当前模拟的结果进行比较,以了解停车传感器外壳的锻造力和形状尺寸。

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