首页> 外文会议>ASME international manufacturing science and engineering conference >CO-SIMULATION RESEARCH OF THE BALANCING CONTROL OF THE MOVING BEAM OF A HEAVY HYDRAULIC PRESS DURING THE DIE FORGING PROCESS
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CO-SIMULATION RESEARCH OF THE BALANCING CONTROL OF THE MOVING BEAM OF A HEAVY HYDRAULIC PRESS DURING THE DIE FORGING PROCESS

机译:液压锻造过程中动压梁动平衡控制的联合仿真研究

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A virtual prototype of the moving beam balancing system of a heavy-duty hydraulic press working under die forging function is built with Adams, AMESim and Simulink, and the balancing control process is analyzed using this prototype. The moving beam of the heavy-duty hydraulic press may tilt due to the eccentric load during the die forging processing, and thus affect the forging quality and the safety of the press. So it is necessary to research the beam balancing control process. Compared to the traditional methods based on simplified mathematical models, virtual prototype technology can obtain a co-simulation model, avoid tedious formula derivation and solving work, and save test time and cost. Based on the analysis of the working principle of balancing system, this paper establishes a dynamical model of the moving beam, a hydraulic circuit model of the single balancing system and a controller model using Adams, AMESim and Simulink, respectively. Then a virtual prototype is built using the three models via co-simulation interface files. The eccentric load signal is constructed in AMESim according to the variation of eccentric load during die forging process. By adjusting the controller parameters, the rapid balancing of the moving beam under eccentric load conditions is realized, and high precision of dynamic balancing and steady equilibrium is obtained. The simulation results show that the single balancing unit can achieve effective balancing of the moving beam, and the co-simulation analysis method based on the virtual prototype built with Adams, AMESim and Simulink is feasible in the research of the synchronous rectification of the moving beam. This work is a useful exploration in the research of synchronous rectification of moving beams.
机译:利用Adams,AMESim和Simulink构建了重型液压机在模锻功能下工作的动梁平衡系统的虚拟原型,并使用该原型分析了平衡控制过程。重型液压机的动梁在模锻过程中可能会由于偏心载荷而倾斜,从而影响锻造质量和压力机的安全性。因此有必要研究光束平衡控制过程。与基于简化数学模型的传统方法相比,虚拟原型技术可以获得协同仿真模型,避免了繁琐的公式推导和求解工作,并节省了测试时间和成本。在分析平衡系统工作原理的基础上,分别使用Adams,AMESim和Simulink建立了动梁的动力学模型,单平衡系统的液压回路模型和控制器模型。然后,通过协同仿真接口文件使用这三个模型构建虚拟原型。根据模具锻造过程中偏心负载的变化,在AMESim中构造偏心负载信号。通过调整控制器参数,可以实现动梁在偏心载荷条件下的快速平衡,达到了动平衡和稳态平衡的高精度。仿真结果表明,单个平衡单元可以有效地实现对动梁的平衡,基于Adams,AMESim和Simulink构建的虚拟样机的联合仿真分析方法在动梁同步整流研究中是可行的。 。这项工作对动梁同步整流的研究是有益的探索。

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