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A basic study of friction noise caused by fretting

机译:微动引起的摩擦噪声的基础研究

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Fretting may be accompanied by friction noise and preventing or reducing it can be important for designers and operators. In this study, 0.45% carbon steel (Hv730) and mild steel (Hv240) are used as specimens with the crossed cylinder configuration. Friction force, relative movement between the specimens, friction noise and electrical contact resistance are measured simultaneously during fretting, with normal load 19.6 N, and up to 25,000 cycles in air. Fretting stroke, relative humidity and frequency are varied in the range 25-400 *m, 11-78% RH and 1.0-7.3 Hz, respectively. In addition, the wave signals of the friction noise, together with coefficient of friction and relative stroke, are analyzed by FFT analyzer. The main results are as follows: certain cycles of fretting are needed to generate friction noise; there are common features in relation to the occurrence of friction noise; drastic reduction in coefficient of friction μ; self-excited-vibration and negative gradient of μ, sound level of friction increases with increase in fretting stroke and frequency, and is directly related to average sliding velocity; there is a good correlation between the sound level and amount of wear. Based on the results, the mechanism of the friction noise is discussed.
机译:微动可能会伴随摩擦噪声,因此,防止或减少摩擦噪声对于设计者和操作员而言可能很重要。在这项研究中,使用0.45%碳钢(Hv730)和低碳钢(Hv240)作为具有交叉圆柱配置的标本。在微动过程中同时测量摩擦力,试样之间的相对运动,摩擦噪声和电接触电阻,法向载荷为19.6 N,并且在空气中循环达到25,000次。微动冲程,相对湿度和频率分别在25-400 * m,11-78%RH和1.0-7.3 Hz的范围内变化。此外,通过FFT分析仪分析了摩擦噪声的波信号,以及摩擦系数和相对行程。主要结果如下:需要一定的微动周期才能产生摩擦噪音;与摩擦噪声的产生有共同的特征;摩擦系数μ大大降低;自激振动和μ的负梯度,摩擦声级随着微动冲程和频率的增加而增加,并且与平均滑动速度直接相关;声音水平和磨损量之间存在良好的相关性。在此基础上,对摩擦噪声的产生机理进行了探讨。

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