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The Flow Analysis for Vibration and Noise Diagnostic of Vacuum Cleaner Fan Motor  

김재열 (조선대학교 기전공학과)
곽이구 (조선대학교 대학원 정밀기계공학)
안재신 (조선대학교 대학원 정밀기계공학)
양동조 (조선대학교 대학원 정밀기계공학)
송경석 (조선대학교 대학원 광기술공학)
박기형 (조선이공대학 컴퓨터응용기계과)
Publication Information
Transactions of the Korean Society of Machine Tool Engineers / v.13, no.4, 2004 , pp. 56-63 More about this Journal
Abstract
Recently technology resulted in highly efficient and multiple-functional electric appliances considering environmental problems. One of the environmental problems is noise of a product in respect to its function. A vacuum cleaner is an essential electric appliance in our daily lives. However, severe noise resulted from high motor speed for improving the function of the appliance is a nuisance for the user. This noise is caused by vibration from various parts of the appliance and fluid noise during a series of intake and exhaust processes while rotating the impeller connected to the axle at a high speed of the fan motor inside the vacuum cleaner rotating around 30,000-35,000rpm. Despite the fact that many researchers conducted studies on reducing the noise level of the fan motor in a vacuum cleaner, only few studies have been conducted considering both the theoretical and experimental aspects using fluid analysis by measuring vibration and noise. Moreover, there has not been a study that accurately compared major noise data obtained considering both of the aspects. In this study, both aspects were considered by considering the following experimental and theoretical methods to verify the major causes of noise from the fan motor in a vacuum cleaner.
Keywords
Fan Motor in Vacuum Cleaner; Laser Vibration Measurement; Aerodynamic Suond; BPF(Blade Passing Frequency);
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  • Reference
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