现代制造工程 ›› 2026, Vol. 550 ›› Issue (7): 79-85.doi: 10.16731/j.cnki.1671-3133.2026.07.009

• 车辆工程制造技术 • 上一篇    下一篇

基于全局响应面法的汽车座椅模态分析及优化*

马心坦, 马权, 李晓威   

  1. 河南科技大学车辆与交通工程学院,洛阳 471003
  • 收稿日期:2025-07-30 出版日期:2026-07-18 发布日期:2026-08-05
  • 作者简介:马心坦,博士,副教授,主要研究方向为车辆振动噪声控制。E-mail:maxintan@163.com
  • 基金资助:
    *国家科技部专项项目(2017YFD070020402);河南省教育厅自然科学研究项目(15A460019)

Modal analysis and optimization of automotive seats based on the global response surface method

MA Xintan, MA Quan, LI Xiaowei   

  1. College of Vehicle and Transportation Engineering,Henan University of Science and Technology,Luoyang 471003,China
  • Received:2025-07-30 Online:2026-07-18 Published:2026-08-05

摘要: 为解决某汽车座椅的共振问题,提出了以敏感零件的尺寸和材料为设计变量,以汽车座椅模态和质量为优化目标,基于全局响应面法进行优化。首先,通过灵敏度分析的方法,筛选出对汽车座椅一阶模态贡献量大的钣金件,将其厚度和材料类型作为设计变量;其次,使用哈默斯雷(Hammersley)采样法在设计空间内均匀地采集169组样本点,进行试验设计(Design of Experiments,DOE);然后,基于生成的试验数据,使用径向基函数(Radial Basis Function,RBF)法拟合出响应面模型;最后,以汽车座椅一阶模态频率最大且汽车座椅总质量最小为优化目标,采用全局响应面法进行模态优化。结果显示:优化后汽车座椅的一阶模态频率提升了3.5 Hz,汽车座椅总质量减小了1.95 kg,实现了优化目标。证明了通过优化敏感零件的尺寸和材料来提升汽车座椅振动性能的有效性。

关键词: 有限元, 模态分析, 汽车座椅, 响应面模型, 全局响应面法

Abstract: To address the resonance issue of a certain automotive seat, an optimization based on the global response surface method was proposed, with the dimensions and materials of sensitive components as design variables, and the modal frequencies and mass of the automotive seat as optimization objectives. First, through sensitivity analysis, the sheet metal parts that significantly contribute to the first-order modal frequency of the automotive seat were identified, and their thicknesses and material types were selected as design variables. Second, 169 sample points were uniformly generated within the design space using Hammersley sampling for Design of Experiments (DOE). Then, based on the generated experimental data, a response surface model was fitted using the Radial Basis Function (RBF) method. Finally, with the objectives of maximizing the first-order modal frequency and minimizing the total mass of the automotive seat, global response surface method was employed for modal optimization. The results show that after optimization, the first-order modal frequency of the automotive seat is increased by 3.5 Hz, and the total mass is reduced by 1.95 kg, thereby achieving the optimization goals. This demonstrates the effectiveness of improving the vibration performance of automotive seats by optimizing the dimensions and materials of sensitive components.

Key words: finite elements, modal analysis, automotive seats, response surface model, global response surface method

中图分类号: 

版权所有 © 《现代制造工程》编辑部 
地址:北京市东城区东四块玉南街28号 邮编:100061 电话:010-67126028 电子信箱:2645173083@qq.com
本系统由北京玛格泰克科技发展有限公司设计开发 技术支持:support@magtech.com.cn