ZAMONAVIY TEXNIKADA ROTORLI SISTEMALARNING DINAMIK BALANSIRLASH USULINI TAKOMILLASHTIRISH
DOI:
https://doi.org/10.5281/zenodo.20508244Keywords:
rotor balancing, dynamic imbalance, influence coefficient method, modal balancing, flexible shafts, maintenance optimization, vibration monitoring.Abstract
This paper presents an analysis of methods for identifying and mitigating dynamic mass imbalance in contemporary rotor systems within mechanical engineering. Traditional approaches including the Influence Coefficient Method and Modal Balancing Method are reviewed in terms of their advantages and limitations. Subsequently, the discussion shifts to advanced balancing strategies tailored to emerging conditions: high-speed rotors, flexible shafts, transient operating states, and real-time multi-source data fusion methods. The aim is to enhance operational stability of rotors, reduce vibration and imbalance-related issues, and optimize maintenance costs. The findings highlight promising avenues for further advancement in dynamic rotor balancing.References
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