首页> 外文会议>International Symposium on Explosion, Shock Wave and Hypervelocity Phenomena(ESHP Symposium); 20040315-17; Kumamoto(JP) >3-D Laser Vibration Measurement and an Analysis of the Unsteady Flow-Field and Aerodynamic Sound of Turbo Fan Motor in a Vacuum Cleaner
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3-D Laser Vibration Measurement and an Analysis of the Unsteady Flow-Field and Aerodynamic Sound of Turbo Fan Motor in a Vacuum Cleaner

机译:吸尘器中涡轮风扇电机的3-D激光振动测量以及非定常流场和空气动力声的分析

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摘要

The vacuum cleaner motor runs at very high speed for suction power. Specially, motor power is provided by the impeller being rotated at very high speed. The centrifugal fan consists of the impeller, the diffuser and the circular casing. Due to the high rotating speed of the impeller and small gap distance between the impeller and diffuser, the level of noise in the centrifugal fan is at BPF and harmonic frequencies. In order to calculate the sound pressure of centrifugal fan, unsteady flow data are needed. Noise cause is obtained by dividing the fluid noise by exhaust flow of fan and vibration noise by rotational vibration of vacuum cleaner fan motor. Until now, an accelerometer has been used to measure vibration. However, this machine does not measure vibration in some parts of brush and commutator because of motor construction and 3-D vibrating mode. This study was conducted to perform accurate analysis using a laser vibration analyzer. A silent fan motor can be designed using the data measured in this study.
机译:吸尘器电机以很高的速度运行以产生吸力。特别地,通过以非常高的速度旋转的叶轮来提供电动机功率。离心风机由叶轮,扩散器和圆形壳体组成。由于叶轮的高转速以及叶轮和扩散器之间的间隙距离较小,因此离心式风扇中的噪声水平处于BPF和谐波频率。为了计算离心风机的声压,需要不稳定的流量数据。通过将流体噪声除以风扇的排气流量,并将振动噪声除以真空吸尘器风扇电机的旋转振动,可以得出噪声原因。到目前为止,加速度计已用于测量振动。但是,由于电机结构和3-D振动模式,该机器无法测量电刷和换向器某些部分的振动。进行这项研究是为了使用激光振动分析仪进行准确的分析。可以使用本研究中测得的数据来设计静音风扇电机。

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