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The Design of a New Metal Forming Press With Controllable Mechanism

机译:新型机构可控的金属成型压力机的设计

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摘要

Metal forming press is one of the most commonly used manufacturing machines. Every day, millions of parts are produced by metal forming ranging from battery caps to automotive body panels. Therefore, even a small improvement may add to significant corporative gain. Currently, the metal forming presses can be divided into two categories: mechanical presses and hydraulic presses. The former is fast (high speed presses may reach up to several thousand shots per minute) and energy efficient (the large flywheel eases the impulsive force), but lacks flexibility. On the other hand, the hydraulic presses are flexible (their motions can be programmed) and accurate, but are expensive to build and to operate. Recently, there are mechanical presses driven by servomotors. They could perform as flexible as hydraulic presses with high speed. Nevertheless, they are even more expensive to build and to operate. This paper introduces a new design of mechanical press whose performances are programmable, including the trajectory and the velocity of the stroke, and yet, it is relatively inexpensive to build and to operate. The key idea of the new design is a 2-degree-of-freedom seven-bar linkage mechanism driven by a large constant speed motor and a small servomotor. First, the kinetics and kinematics of the design are presented including the feasibility conditions, mechanical advantage, as well as the torque and power distribution between the two motors. Next, a number of simulation results are given. The design (parameter) optimization is also carried out using Genetic Algorithm (GA). Based on computer simulation, it is shown that the new design is indeed very attractive.
机译:金属成型压力机是最常用的制造机器之一。每天,从电池盖到汽车车身面板的金属成型,都会产生数百万个零件。因此,即使是很小的改进也可以增加可观的公司收益。当前,金属成型压力机可分为两类:机械压力机和液压压力机。前者速度快(高速压力机每分钟可达到数千次击打),并且能量高效(大飞轮减轻了冲力),但缺乏灵活性。另一方面,液压机是灵活的(它们的运动可以被编程)和精确的,但是建造和操作昂贵。近来,有由伺服电动机驱动的机械压力机。它们的性能与高速液压机一样灵活。然而,它们的建造和运行成本甚至更高。本文介绍了一种机械压力机的新设计,该机械压力机的性能是可编程的,包括行程和冲程速度,但其制造和操作成本相对较低。新设计的关键思想是由大型恒速电机和小型伺服电机驱动的2自由度七连杆机构。首先,介绍了设计的动力学和运动学,包括可行性条件,机械优势以及两个电动机之间的转矩和功率分配。接下来,给出了许多仿真结果。还使用遗传算法(GA)进行设计(参数)优化。基于计算机仿真,表明新设计确实非常有吸引力。

著录项

  • 来源
    《Journal of Mechanical Design 》 |2003年第3期| p.582-592| 共11页
  • 作者

    R. Du; W. Z. Guo;

  • 作者单位

    Dept. of Automation and Computer Aided Engineering The Chinese University of Hong Kong Shatin, N. T. Hong Kong, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械设计 ;
  • 关键词

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