期刊:Applied Mechanics and Materials [Trans Tech Publications, Ltd.] 日期:2013-08-01卷期号:365-366: 211-215被引量:9
标识
DOI:10.4028/www.scientific.net/amm.365-366.211
摘要
A rigid rotor dynamic balance model was established to analyze the vibration form of a rigid rotor under unbalance inertia force. The principle of two-plane correction with the influence coefficient method had been conducted, and the principle of the cross-correlation method calculating amplitude and phase of unbalance vibration signal was introduced. The method was found to be effective and practical. A dynamic balance test program was performed on a rigid rotor vibration simulation instrument and a dynamic balancing analyzer based on LabVIEW, which showed that rigid rotor dynamic balancing by two-plane correction with the influence coefficient method could satisfy the performance and required precision.