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Simulation of Metal Flow to Investigate the Application of Antilock Brake Mechanic System in Deep Drawing Process of Cup

机译:模拟金属流动研究防抱死制动力学系统在杯体深冲过程中的应用

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摘要

This paper presents the importance of simulation of metal flow in deep drawing process which employs an antilock brake mechanic system. Controlling the force and friction of theudblank holder is imperative to assure that the sheet metal is not locked on the blank holder, and hence it flows smoothly into the die. The simulation was developed based on the material displacement, deformation and deep drawing force on flange in the radial direction, that it is controlled by blank holder with antilock brake mechanic system. The force to blank holder was applied periodically and the magnitude of force was kept constant during simulation process. In this study, the mechanical properties of the material were choses such that they equivalent to those of low carbon steel with its thickness of 0.2 mm. The diameter and the depth of the cylindrical cup-shaped product were 40 mm and 10 mm, respectively. The simulation results showed that the application of antilock brake mechanic system improves the ability to control the material flow during the drawing process, although the maximum blank holder force of 13000 N was applied. The optimum condition was found when the drawing process was performed using blank holder force of 3500 N, deep drawing force of 7000 N, friction coefficient of 0.25 and speed of punch stroke of 0.84 mm/sec. This research demonstrated that an antilock brake mechanic system can be implemented effectively to prevent cracking in deep drawing process.
机译:本文介绍了采用防抱死制动机械系统的深冲过程中金属流动模拟的重要性。必须控制 udblank支架的力和摩擦力,以确保未将钣金锁定在毛坯支架上,从而使钣金平稳地流入模具。该仿真是根据材料在法兰上的位移,变形和在法兰上的深拉力而开发的,该仿真由带有防抱死制动机械系统的毛坯支架控制。周期性地向毛坯保持器施加力,并且在仿真过程中力的大小保持恒定。在这项研究中,选择材料的机械性能,使其等同于厚度为0.2 mm的低碳钢。圆柱杯形产品的直径和深度分别为40 mm和10 mm。仿真结果表明,尽管施加了最大毛坯夹持力13000 N,但防抱死制动机械系统的应用提高了在拉伸过程中控制物料流的能力。当使用3500 N的毛坯保持器力,7000 N的深拉力,0.25的摩擦系数和0.84 mm / sec的冲头冲程速度进行拉伸过程时,发现了最佳条件。这项研究表明,可以有效地实施防抱死制动机械系统,以防止在深冲过程中产生裂纹。

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