垂直振动通过座垫在座盘处的传递:不同激励强度下泡沫物理特性的影响

IF 2.8 4区 工程技术 Q1 ACOUSTICS
Qiao Luo, Yansong He, Zhifei Zhang, Kaizhan Gao
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引用次数: 0

摘要

汽车座椅的振动特性直接影响到乘坐舒适性。聚氨酯泡沫塑料是座椅的关键部件,其物理参数对座椅有重要影响。本研究通过传递率和座椅有效振幅传递率(seat)值,研究了泡沫厚度和泡沫硬度对不同激励强度下座椅坐垫振动特性的影响。首先,在垂直振动模拟器上进行了宽度受限白噪声振动频率为0.5 ~ 20 Hz、均方根值为0.4、0.8和1.2 m/s2的振动试验,测量了平台和体-泡沫界面处的加速度,计算了传递率,并分析了泡沫物性对传递率的影响。然后,引入SEAT值来评价泡沫垫的隔振效率,分析泡沫垫的泡沫物理性质对隔振效率的影响。随着泡沫厚度的增加和阀座处泡沫硬度的降低,峰值透射率增加,共振频率降低。SEAT数值表明,增加泡沫厚度有利于提高座椅隔振效率,但收益递减;低硬度和高厚度的物理参数相结合可以使阀座具有更好的隔振性能。此外,还发现了人座系统在不同振动幅度下的非线性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transmission of vertical vibration through a seat cushion at the seat pan: Effect of foam physical properties during different excitation magnitudes
The vibration characteristics of car seats directly influence the ride comfort. Polyurethane foam is the key part of a seat, and its physical parameters have an important impact on the seat. In this study, the influence of the foam thickness and foam hardness on the vibration characteristics of seat cushion with different excitation magnitudes was investigated by using transmissibility and seat effective amplitude transmissibility (SEAT) value. First, vibration tests were carried out at a vertical vibration simulator with width-limited white noise vibration frequencies from 0.5 to 20 Hz with root-mean-square (r.m.s.) values of 0.4, 0.8, and 1.2 m/s2, the acceleration at the platform and the body-foam interfaces were measured to calculate the transmissibility, and the influence of the foam physical properties on the transmissibility was analyzed. Then, the SEAT value was introduced to assess the vibration isolation efficiency of the foam cushion, and the influence of the foam physical properties of the foam cushion on the vibration isolation efficiency was analyzed. With increasing thickness of the foam and decreasing hardness of the foam at the seat pan, the peak transmissibility increased and the resonance frequency decreased. The SEAT values show that increasing the foam thickness is beneficial to the improvement of the vibration isolation efficiency of the seat, but there is a diminishing return; the combination of physical parameters of low hardness and high thickness could make the vibration isolation performance of the seat better. In addition, the nonlinearity of human-seat system during different vibration magnitude was found.
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来源期刊
CiteScore
4.90
自引率
4.30%
发文量
98
审稿时长
15 weeks
期刊介绍: Journal of Low Frequency Noise, Vibration & Active Control is a peer-reviewed, open access journal, bringing together material which otherwise would be scattered. The journal is the cornerstone of the creation of a unified corpus of knowledge on the subject.
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