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A Noise Analysis of Cylindrical Roller Bearings Operating Under Zero External Load

机译:外载荷为零的圆柱滚子轴承的噪声分析

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The purpose of this article is to numerically investigate one source of acoustic noise in roller bearings, that which results from the motion of the rollers in the bearing under zero external load. For the sake of simplification, it was assumed that the cylindrical roller bearings are infinitely long. Furthermore, the effects of the following on the noise of the bearing were also examined: the radial clearance of the bearing, the viscosity of the lubricant, and the number of rollers. The results of the study show that the fundamental frequency of the noise components of the cylindrical roller bearing corresponds to the multiplication of the number of rollers and the whirling frequency of the roller center. The acoustical frequency spectra of the cylindrical roller bearing are pure tone spectra, containing the fundamental frequency of the roller bearing and its superharmonics. The factors that decrease the sound pressure level of a cylindrical roller bearing include low lubricant viscosity, high radial clearance, and a reduced number of rollers. The results and discussions of the present article could aid in the design of low-noise cylindrical roller bearings.
机译:本文的目的是对滚子轴承中的一种声学噪声进行数值研究,该噪声源是由于零载荷下轴承中滚子的运动所致。为了简化起见,假定圆柱滚子轴承是无限长的。此外,还检查了以下对轴承噪音的影响:轴承的径向游隙,润滑剂的粘度以及滚子的数量。研究结果表明,圆柱滚子轴承噪声分量的基频与滚子数量和滚子中心的回旋频率相乘。圆柱滚子轴承的声频谱是纯音谱,包含滚子轴承的基频及其超谐波。降低圆柱滚子轴承声压级的因素包括低润滑剂粘度,高径向游隙和减少的滚子数量。本文的结果和讨论可以帮助设计低噪声圆柱滚子轴承。

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