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首页> 外文期刊>Journal of Electrical Systems and Information Technology >Vibration analysis including stator, rotor, housing and dynamic response analysis of Flux Reversal Generator
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Vibration analysis including stator, rotor, housing and dynamic response analysis of Flux Reversal Generator

机译:振动分析,包括定子,转子,壳体和磁通反向发生器的动态响应分析

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This paper attempts to present numerical solution for the vibration analysis of a Flux Reversal Generator (FRG). A three-dimensional finite-element modal analysis (3-D FEA) methodology has been used for this purpose. Vibrations induced due to mechanical and unbalanced reasons have been analyzed. The 3-D modal analysis undertaken identifies the vibrations caused in every part of FRG (stator, shaft, end shields, bearings, and housing), which has been systematically documented. Modal frequencies and the respective speeds which are to be skipped immediately in order to operate the machine always in a safer acoustic zone have been identified and tabulated. To fine tune this, a harmonic analysis has been performed. Up to 10,000Hz has been considered and frequencies (and proportional speeds) such as 1500Hz, 1488.62Hz and 1568.78 have identified as the speeds to be avoided. Apart from frequently reported modal analysis on electrical machines, this 3-D vibration analysis for FRG considering every part of the machine will be helpful to examine the vibration in the machine as a whole. This forms the claim of the paper.
机译:本文试图为磁通反转发生器(FRG)的振动分析提供数值解。为此,使用了三维有限元模态分析(3-D FEA)方法。已经分析了由于机械和不平衡原因引起的振动。进行的3-D模态分析确定了FRG各个部分(定子,轴,端盖,轴承和轴承座)中引起的振动,已对此进行了系统记录。为了使机器始终在更安全的声学区域内运行,应立即跳过的模态频率和相应速度已确定并制成表格。为了对此进行微调,已进行了谐波分析。已经考虑了高达10,000Hz的频率,并且已将诸如1500Hz,1488.62Hz和1568.78之类的频率(和比例速度)确定为要避免的速度。除了经常报告的电机模态分析外,针对FRG的3-D振动分析(考虑了机器的每个部分)将有助于检查整个机器的振动。这构成了本文的主张。

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