Please wait a minute...
浙江大学学报(工学版)
土木与交通工程     
胎面结构设计参数对轮胎振动噪声的影响
裴晓朋,王国林,周海超,赵璠
江苏大学 汽车与交通工程学院,江苏 镇江 212013
Influence of tread design parameters on tire vibration noise
PEI Xiao peng,WANG Guo lin,ZhOU Hai chao,ZhAO Fan
School of Automotive and Traffic Engineering,JiangSu University,Zhenjiang 212013,China
 全文: PDF(2652 KB)   HTML
摘要:

为了研究胎面结构设计参数对轮胎振动噪声的影响及降噪机理,以295/80R225载重子午线轮胎为研究对象,利用模态声学向量技术对轮胎振动噪声进行模拟分析,采用面板声学贡献度分析方法研究在噪声声压峰值所对应频率下轮胎外轮廓各部件的声学特性,找到胎面为主声学正贡献部件. 选取显著影响胎面结构的参数为设计变量,通过正交试验法分析各参数改变对轮胎振动噪声的影响规律. 结果表明,轮胎振动噪声随带束层端点至旋转轴半径以及胎冠点至旋转轴半径的增大而减小,随带束层压力分布形状系数以及带束层压力分担率的增加先减小后增加. 通过正交试验极差分析得到低噪声轮胎的最优胎面参数组合,并从轮胎各部件对振动噪声的贡献度角度揭示了低噪声轮胎的降低机理.

Abstract:

The radial heavy duty tire 295/80R225 was taken as the object of the research, in order to research the effects of tread design parameters on tire vibration noise and the mechanism of noise reduction.  Tire vibration noise was computed by using modal acoustic transfer vector technolog. Then the acoustic characteristics of tire outer contour panels at the peak frequency was analyzed using acoustic contribution method. Tread is the main acoustic positive panel.  Parameters influence tire tread design were selected to analyze the effect of these parameters on tire vibration noise by orthogonal method. Results show that the tire vibration noise decreases;with the increase of the radius of the belt layer to the axis of rotation and the radius of tire tread to the axis of rotation,  with the increase of the shape coefficient of belt layer pressure rate and the belt layer pressure rate, the tire vibration noise  decreases at first and then increase. The optimal tread parameters of the lownoise were obtained by the orthogonal test range analysis.  The reasons why the tire vibration noise was reduced were studied by means of acoustic contribution.

出版日期: 2017-01-14
:  U 463.341  
基金资助:

国家自然科学基金资助项目(51405201);江苏省汽车工程重点实验室开放基金项目资助(QC201303);江苏省2013年度普通高校研究生创新计划资助项目(CXLX13_676).

通讯作者: 王国林,男,教授,博导.ORCID:0000000169366535.     E-mail: glwang@ujs.edu.cn
作者简介: 裴晓朋(1991-),男,硕士生,从事现代汽车轮胎结构设计等研究.ORCID:000000025475038X. E-mail:pxp@ujs.edu.cn
服务  
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章  

引用本文:

裴晓朋,王国林,周海超,赵璠. 胎面结构设计参数对轮胎振动噪声的影响[J]. 浙江大学学报(工学版), 10.3785/j.issn.1008973X.2016.05.009.

PEI Xiao peng,WANG Guo lin,ZhOU Hai chao,ZhAO Fan. Influence of tread design parameters on tire vibration noise. JOURNAL OF ZHEJIANG UNIVERSITY (ENGINEERING SCIENCE), 10.3785/j.issn.1008973X.2016.05.009.

链接本文:

http://www.zjujournals.com/eng/CN/10.3785/j.issn.1008973X.2016.05.009        http://www.zjujournals.com/eng/CN/Y2016/V50/I5/871

[1] GARG N,MAJI S. A critical review of principal traffic noise models: Strategies and Implications [J]. Environmental Impact Assessment Review,2014,46(4):68-81.
[2] RUHALA R J. A Study of tire/pavement interaction noise using nearfield acoustical holography[D]. Pennsylvania:The Pennsylvania State University,2000.
[3] KOIZUMI T,TSUJIUCHI N,TAMAKI R,et al. An analysis of radiated noise from rolling tire vibration [J]. Jsae Review, 2003,24(4):465-469.
[4] LOPEZ I,BLOM R E A,ROOZEN N B,et al. Modelling vibrations on deformed rolling tires—a modal approach [J]. Journal of Sound and Vibration,2007,307(3):481-494.
[5] PERISSE J. A study of radial vibration of a rolling tire for tire/road noise characterization [J]. Mechanical Systems and Signal Processing,2002,16(6):1043-1058.
[6] 张涛. 轮胎模态和振动噪声的数值分析[D]. 合肥:中国科学技术大学,2005.
ZHANG Tao. Numerical analysis of tire modal and vibration noise[D]. Hefei∶University of Science and Technology of China, 2005.
[7] 包秀图,张涛,李子然,等. 轮胎振动噪声的数值模拟[J]. 振动与冲击,2008,27(11):611.
BAO Xiutu,ZHANG Tao,LI Ziran,et al. Numerical Simulation of tire vibration noise [J]. Journal of Vibration and Shock,2008, 27(11):611.
[8] 包秀图. 不同工况和结构参数对轮胎振动噪声影响的数值分析[D]. 合肥:中国科学技术大学,2008.
BAO Xiutu. Numerical analysis of influence of different operation condition and structure parameters on tire vibration noise[D]. Hefei:University of Science and Technology of China,2008.
[9] 常亮,肖旺新,谢伟平. 轮胎振动声辐射数值分析[J]. 噪声与振动控制,2010,1(3):85-90.
CHANG Liang,XIAO Wangxin,XIE Weiping. Numerical analysis of vibration and sound radiation of tires [J]. Noise and Vibration Control,2010,1(3):85-90.
[10] 梁晨. 子午线轮胎综合接地性能评价体系研究[D]. 镇江:江苏大学,2013.
LIANG Chen. Research on radial tire comprehensive ground performance evaluation system and method[D].Zhenjiang∶Jiangsu University,2013.
[11] 罗斌. SFM05型地铁动车噪声预测及声学贡献度分析[D]. 长沙:中南大学,2010.
LUO Bin. SFM05 type metro noise prediction and acoustic contribution analysis[D]. Changsha:University of Central South, 2010.
[12] KIM S R,SUNG K D,LEE D W,et al. Cavity noise sensitivity analysis of tire contour design factors and application of contour optimization methodology [J]. Journal of Central South University(English Vision),2012∶19(8):2386-2393.
[13] 王国林,万治君,梁晨, 等. 基于非平衡轮廓理论的子午线轮胎结构设计[J]. 机械工程学报,2012,24(48):112-118.
WANG Guolin,WAN Zhijun,LIANG Chen,et al. Structural design of radial tire based on nonbalanced outline theory [J]. Journal of Mechanical Engineering,2012,22(48):112118.

No related articles found!