MODELING OF THE MACHINE FOR THE BALANCING OF THE ROTOR IN THE ANSYS SOFTWARE COMPLEX

I. R. Tazeyev, S. Gaponenko, A. Kondratiev, A. N. Zamaliev
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Abstract

 An imbalance appears during the manufacture, operation and maintenance of power equipment. The rotor imbalance arises due to the unbalanced masses of the rotor which leads to the emergence of variable loads on the supports and bending of the rotor. The dynamic balancing of the rotor on the balancing machine is the way to avoid the negative effects of centrifugal forces. The balancing machines in resonant and soft-bearing modes are usually used on modern production. However, these methods of balancing has a number of shortcoming, which can be solved by using the hard-bearing method. For example, an ability of balancing of products with huge imbalance and increasing the accuracy of balancing. Application of soft-bearing balancing method needs to be added in other ways, taking into account high reqiuirments of the power equipment. A model of a hard-bearing balancing machine was designed for balancing rotors and rotating elements of power equipment. The Autodesk Inventor CAD software was used for modeling of the balancing machine and the rotor. The modal analysis was conducted by using the block method of Lanczos on the basis of the ANSYS system. The main assumption during the modal analysis process was that the form of free fluctuations is calculated in relative units and does not allow to determine absolute shifts. The natural oscillation frequencies of the 3D models of the balancing machine bed and the rotor of the gas turbine engine 16M were calculated to determine the informative frequency range that the rotor should be hard-bearing balanced. 
在ansys软件中对该机的转子平衡进行了建模
电力设备在制造、运行和维护过程中出现了不平衡现象。转子的不平衡是由于转子的质量不平衡导致支承上的变载荷和转子的弯曲而产生的。平衡机上转子的动平衡是避免离心力负面影响的方式。现代生产中常用的平衡机是谐振式和软轴承式平衡机。然而,这些平衡方法有许多缺点,可以通过使用硬轴承方法来解决。例如,具有平衡巨大不平衡产品的能力,并提高平衡的准确性。考虑到电力设备的高要求,需要在其他方面增加软轴承平衡法的应用。设计了一种用于平衡电力设备转子和旋转元件的硬轴承平衡机模型。利用Autodesk Inventor CAD软件对平衡机和转子进行建模。在ANSYS系统的基础上,采用Lanczos分块法进行模态分析。模态分析过程中的主要假设是,自由波动的形式以相对单位计算,不允许确定绝对位移。计算了16M燃气涡轮发动机平衡床身和转子三维模型的自振频率,确定了转子应采用硬轴承平衡的信息频率范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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