Estudo do ruído de rodagem estrutural através da análise dos caminhos de transferência de energia - TPA / Structure-borne road noise study using transfer path analysis, TPA
AUTOR(ES)
César Helou Teodoro da Silva
FONTE
IBICT - Instituto Brasileiro de Informação em Ciência e Tecnologia
DATA DE PUBLICAÇÃO
31/05/2011
RESUMO
The road noise, vibration and harshness (Road NVH) present from 20 Hz to 1000 Hz approximately, begins from the tires vibration and acoustic propagation and their interactions with the road surfaces. In these noise sources, both structural-borne and air-borne noise contributions are relevant to vehicle refinement. The constant efforts to study the vehicle as a set of transfer paths from tires dynamic behavior to passenger comfort to the final passenger comfort perception. Thus the treatment of generation and propagation mechanisms, have being forward thanks to the systematic tests and proceedings based on the transfer path analysis theory (TPA). The purpose of this work is to present a case study of Road NVH, using TPA in prototype vehicle. On this theme, it is investigated a higher noise level around 180 Hz, on the rumble narrow band. This noise remains in the prototype during several types of tracks and speeds conditions, whenever only a tire model, named as sample A, is used, despites all tires tested. From the previous subjective evaluation, the focus of the investigation is defined to be structure-borne of the front suspension. Using TPA to demonstrate the critical paths to rumble, it was applied the matrix inversion method to force calculation, considering the follow points: A-Arm type lower control arm bushings and top mounts of front suspension (picture 4.6 - Mc Pherson type). The vibration in the active and passive side of these points during test conditions and the FRFs driving points and body sensitivity for a target microphone were obtained experimentally. After correlation between internal road noise calculated and the measured, it was concluded the Rumble of this case had been formed by low radial vibration isolation of the front bushings and due lateral forces of tire A. At last, the bushing and tire proposals are presented in terms of new transmitted forces and acoustical responses, to minimize the rumble.
ASSUNTO(S)
análise dos caminhos de transferência de energia chassis chassis frf frf interação pneu/pavimento npa npa road nvh ruído de rodagem ruído interno veicular rumble rumble tire/road interaction tpa tpa transfer path analysis vehicle internal noise vibrações vibration
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