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Finite element analysis on process improvement of the multi-forming for the motor-case of an automobile

机译:汽车机壳多元成形工艺改进的有限元分析

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摘要

Generally, an automobile has about 10 motors for actuators that are equipped with a cooling pan, air-conditioner, and door lock system. The shape of the motor-case is directly related to the noise and vibration of the components, so various forming processes such as deep-drawing, multi-step, and multi-forming, were developed to get higher accuracy and productivity. The multi-forming process is used in this study because it has the best productivity compared with the other forming methods. The simulation technique of motor-case forming was developed to reduce the developing time and trial-error. The manufacturing processes of a motor-case consist of plate blanking, forming, and sizing. This study is focused on the core design of the multi-forming process. The blanked plate and forming dies are modeled to two- and three-dimension and analyzed by the finite element method using a commercial software DEFORM which is based on the elastic-plastic finite element theory. Two kinds of core, a circle and an ellipse, have been designed. Because of the springback effect, the roundness of the elliptic core is better than that of the circular core. The same rule is applied to the diameter ranges (20-40 mm) and yield strength levels (175-240 MPa) of low carbon steel.
机译:通常,汽车具有用于致动器的大约10个电动机,这些电动机配备有冷却盘,空调和门锁系统。机壳的形状与零件的噪音和振动直接相关,因此开发了各种成型工艺,例如深拉,多步和多成型,以提高精度和生产率。本研究使用多重成型工艺,因为与其他成型方法相比,它具有最佳的生产率。开发了机壳成形的仿真技术以减少开发时间和试验误差。机壳的制造过程包括冲裁,成型和定尺寸。这项研究的重点是多重成型过程的核心设计。使用基于弹塑性有限元理论的商用软件DEFORM,使用有限元方法对下料板和成形模具进行二维和三维建模,并进行分析。设计了两种核心,即圆形和椭圆形。由于回弹效应,椭圆形芯的圆度要好于圆形芯。低碳钢的直径范围(20-40 mm)和屈服强度等级(175-240 MPa)适用相同的规则。

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