首页> 外文会议>ASME biennial conference on engineering systems design and analysis >MECHATRONIC MODELING AND OPTIMIZATION OF THE STRUCTURAL LAYOUT OF THE ELECTRIC ARC FURNACE
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MECHATRONIC MODELING AND OPTIMIZATION OF THE STRUCTURAL LAYOUT OF THE ELECTRIC ARC FURNACE

机译:电弧炉结构布局的机电调整与优化

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Vibration of electrodes in Electric Arc Furnace (EAF) fed by AC current for steel melting is usually fairly large. It might be dangerous for the EAF operation and often reduces the efficiency of melting process. Vibration amplitude depends on the vertical position control operated to keep the arc length constant as much as possible and to the electromechanical actions due to the mutual magnetic induction among the three electric phases. Since designer of the EAF system needs a clear correlation between each design parameter and the dynamics observed a first modeling activity was performed. A mechatronic approach was implemented, by including the electromechanical coupling into the structural analysis performed to predict the system dynamics. A Multi Body Dynamics (MBD) code was used in cooperation with the Finite Element Method (FEM). A preliminary experimental validation on a real plant was tentatively performed.
机译:电弧炉中电极的电极振动(EAF)通过AC电流用于钢熔化通常相当大。对于EAF操作可能是危险的,并且通常会降低熔化过程的效率。振动幅度取决于操作的垂直位置控制,尽可能地保持弧长恒定,并且由于三个电相之间的互磁感应而导致的机电动作。由于EAF系统的设计者需要在每个设计参数之间清晰相关性,并且观察到的动态进行了执行第一建模活动。通过将机电耦合纳入所执行的结构分析来实现机电耦合方法,以预测系统动态。多体动态(MBD)代码与有限元方法(FEM)合作使用。暂时进行了对真实工厂的初步实验验证。

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