A New Mathematical Analysis of Two–Plane Balancing for Long Rotors without Phase Data

Mohammed Tariq Sulaiman Al Abbood
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引用次数: 5

Abstract

Two–plane balancing procedure is usually adopted to balance long rotors using both vibration amplitude and phase data. This paper presents a new mathematical analysis of two–plane balancing method for long rotors using vibration amplitude data only. This method requires eight test runs with two balancing planes nearby the bearings. The tests are performed by connecting a known trial mass to eight different positions individually; four at each plane, where each position being advanced ( ) from its previous. In this study, a comparison has been performed between the new mathematical analysis and another traditional analysis presented in a previous study. Firstly, two computer programs based on both analyses have been written using  Language in order to compute the magnitudes and locations of the required balancing masses. Secondly, the comparison has been made using balancing simulator for rigid rotors where different sizes of rotors at different rotation speeds have been tested. This study showed that the two–plane balancing method based on the new analysis was always capable of performing a very high grades of balance while traditional analysis showed an observed restriction in achieving a good quality of balance for the rotors been tested.
无相位数据的长转子两平面平衡新数学分析
利用振动幅值和相位数据对长转子进行平衡,通常采用两平面平衡法。本文仅利用振动幅值数据对长转子的两平面平衡方法进行了新的数学分析。这种方法需要在轴承附近的两个平衡平面上进行八次测试。测试是通过将已知的试验质量分别连接到八个不同的位置来进行的;每个平面上有四个,每个位置都比之前的位置先进()。在本研究中,将新的数学分析方法与先前研究中提出的另一种传统分析方法进行了比较。首先,基于这两种分析,用语言编写了两个计算机程序,以计算所需平衡质量的大小和位置。其次,利用刚性转子平衡模拟器对不同尺寸、不同转速的转子进行了对比试验。该研究表明,基于新分析的两平面平衡方法始终能够执行非常高的平衡等级,而传统分析显示,在实现被测转子的良好平衡质量方面存在观察到的限制。
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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