振动与冲击
振動與遲擊
진동여충격
JOURNAL OF VIBRATION AND SHOCK
2015年
11期
166-172
,共7页
危银涛%冯希金%郑小刚%冯启章%王昊%陈亚龙
危銀濤%馮希金%鄭小剛%馮啟章%王昊%陳亞龍
위은도%풍희금%정소강%풍계장%왕호%진아룡
轮胎花纹%泵浦噪声%声阻抗%节距排列%实验-数值混合分析%噪声反演
輪胎花紋%泵浦譟聲%聲阻抗%節距排列%實驗-數值混閤分析%譟聲反縯
륜태화문%빙포조성%성조항%절거배렬%실험-수치혼합분석%조성반연
tire pattern%air pumping noise%acoustic impedance%pitch arrangement%hybrid experimental-numerical analysis%noise inverse analysis
汽车在中高速行驶(乘用车超50 km/h,卡车超80 km/h)时,轮胎噪声取代其他部分噪声成为行驶噪声的主声源。轮胎噪声产生机理主要分为三种:泵浦噪声、振动噪声以及空气动力学噪声。其中泵浦噪声与轮胎花纹设计有关,属于可设计噪声。如何确定声源的频谱特性,进而预测轮胎噪声仍然是一个难点问题。提出一种泵浦噪声源识别的实验-数值混合分析方法。其基本的假设是:花纹横沟在进入地面和离开地面时产生气流,花纹纵沟将该气流收集,在轮胎接地前端和后端辐射出噪声;该噪声的大小与轮胎和地面形成的声场有关,也和轮胎花纹的节距排列有关。所提出的方法包括雕刻花纹轮胎噪声测试、轮胎声场阻抗数值分析、以及声源辨识三部分;通过在频域反演噪声传播过程辨识不同横沟的声源;通过雕刻花纹轮胎进行了噪声实验验证,说明了本方法的有效性。
汽車在中高速行駛(乘用車超50 km/h,卡車超80 km/h)時,輪胎譟聲取代其他部分譟聲成為行駛譟聲的主聲源。輪胎譟聲產生機理主要分為三種:泵浦譟聲、振動譟聲以及空氣動力學譟聲。其中泵浦譟聲與輪胎花紋設計有關,屬于可設計譟聲。如何確定聲源的頻譜特性,進而預測輪胎譟聲仍然是一箇難點問題。提齣一種泵浦譟聲源識彆的實驗-數值混閤分析方法。其基本的假設是:花紋橫溝在進入地麵和離開地麵時產生氣流,花紋縱溝將該氣流收集,在輪胎接地前耑和後耑輻射齣譟聲;該譟聲的大小與輪胎和地麵形成的聲場有關,也和輪胎花紋的節距排列有關。所提齣的方法包括彫刻花紋輪胎譟聲測試、輪胎聲場阻抗數值分析、以及聲源辨識三部分;通過在頻域反縯譟聲傳播過程辨識不同橫溝的聲源;通過彫刻花紋輪胎進行瞭譟聲實驗驗證,說明瞭本方法的有效性。
기차재중고속행사(승용차초50 km/h,잡차초80 km/h)시,륜태조성취대기타부분조성성위행사조성적주성원。륜태조성산생궤리주요분위삼충:빙포조성、진동조성이급공기동역학조성。기중빙포조성여륜태화문설계유관,속우가설계조성。여하학정성원적빈보특성,진이예측륜태조성잉연시일개난점문제。제출일충빙포조성원식별적실험-수치혼합분석방법。기기본적가설시:화문횡구재진입지면화리개지면시산생기류,화문종구장해기류수집,재륜태접지전단화후단복사출조성;해조성적대소여륜태화지면형성적성장유관,야화륜태화문적절거배렬유관。소제출적방법포괄조각화문륜태조성측시、륜태성장조항수치분석、이급성원변식삼부분;통과재빈역반연조성전파과정변식불동횡구적성원;통과조각화문륜태진행료조성실험험증,설명료본방법적유효성。
Tire noise dominates after a vehicle reaches a certain velocity,such as,50km /h for a car and 80km /h for a truck.It has three main kinds including air pumping noise,vibration noise and aero-dynamical noise.Air pumping noise is highly dependent on tire pattern configuration,it is a designable variable.It is still a challenge to determine the spectral features of a noise source and to predict its spectrum for a given tire pattern design.Here,a hybrid experimental-numerical analysis method was proposed to identify an air pumping noise source's spectrum.The basic assumption was that the tire pattern's lateral groove produces airflows when entering and leaving contact ground while its longitudinal groove collects airflows and emits noise;the radiated noise spectrum depends on the sound impedance properties of the sound chamber around the contact ground and the tread pattern pitch arrangement.The proposed scheme included three parts of measurement of tire cut pattern noisees,numerical analysis of sound impedance of tire sound field,and noise source identification with inverse calculation.Through inverse analysis of sound propagation of noise field in frequency domain to recognize noise sources with different lateral grooves and comparing them with the measured results of tire cut pattern noises the effectiveness of the proposed method was verified.