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Experimental investigation of a friction-induced squeak between head restraint fabric and glass

机译:头枕织物和玻璃摩擦诱导吱吱声的实验研究

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This paper presents a investigation into the characteristics and contributors of a friction-induced squeak between head restraint fabric and rear glass in small trucks. The in-vehicle vibration is simulated by introducing relative motion between the fabric and glass in a controlled environment. The influences of fabric material, foam material, temperature and relative humidity are studied while varying the frequency and amplitude of the sinusoidal input. The Taguchi Orthogonal Arrays technique is utilized in the design of experiments. Simultaneous time-frequency plane Short Time Fourier Transform (STFT) technique is combined with variable digital signal filtering to evaluate the squeak pattern. Loudness levels of the sound signals are calculated and are used in the Analysis Of Variance (ANOVA). From the results of ANOVA and squeak pattern analysis, the humidity is found to have the biggest influence on the squeak and the foam material is found to provide the system flexibility necessary for the squeak generation. From the time domain and the frequency domain analysis, the squeak is characterized as time varying periodical sound bursts, with four bursts in each reciprocating cycle. It is also found that the frequency content of the squeak consists of a time varying fundamental frequency and its harmonics.
机译:本文提出了对小型卡车头部约束织物和后玻璃之间摩擦引起的吱吱声的特点和贡献的调查。通过在受控环境中引入织物和玻璃之间的相对运动来模拟车载振动。研究了织物材料,泡沫材料,温度和相对湿度的影响,同时改变正弦输入的频率和幅度。在实验的设计中使用Taguchi正交阵列技术。同步时频平面短时间傅里叶变换(STFT)技术与可变数字信号滤波组合以评估吱吱作用。计算声音信号的响度水平并用于方差分析(ANOVA)。从Anova和Squeak模式分析的结果,发现湿度对吱吱声具有最大的影响,并且发现泡沫材料提供了吱吱作响所需的系统灵活性。从时域和频域分析,吱吱声表征为时间变化的周期性声音突发,每个往复循环中有四个突发。还发现吱吱声的频率含量包括变化的基本频率及其谐波。

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