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Resonant whirling of two-piece propshafts in rear-wheel-drive cars

机译:后轮驱动汽车中两件式传动轴的共振回旋

摘要

Many modern cars with rear-wheel drives have a two-piece, rather than the traditional one-piece, props haft (or tail-shaft). The two-piece shaft requires less floor clearance, and hence a smaller floor tunnel, and does not suffer from the high-speed twisting resonances to which the one-piece shaft is susceptible.ududThe two-piece shaft is, however, susceptible to a lower speed, high load (high torque) phenomenon in which the propshaft whirls with increasing amplitude until its restraining rubber bush is fully compressed in its mounting bracket, causing a thump sound. The whirling amplitude builds up periodically, so that a regular series of thumps is heard at a frequency of about 5 per second.ududThe effect is very sensitive to the properties of the rubber bush and to its temperature. Different designs of bush are used by different makers, each with the purpose of minimizing both the whirling problem and the transmission of other vibrations to the car body. ududGMH has a particular design which it would prefer not to vary, because of retooling costs. It can however vary the properties of the rubber material itself. By trial and error it has achieved rubber properties which control the whirling problem to an acceptable level under normal conditions. GMH posed the question, to the MISG, of whether one can give theoretical guidelines for optimal rubber properties. This might lead to improved control of the whirling problem. It would also be useful for new and modified propshafts, if it could replace the tedious trial and error process previously employed.ududGMH were also anxious to gain a better understanding of the whirling phenomenon, and felt, with us, that a mathematical description of the phenomenon was a prerequisite for the study of the rubber properties. The thumping phenomenon is observed at both 40 and 80 kph approximately, although the phenomenon had a different quality at these two speeds.
机译:许多配备后轮驱动装置的现代汽车都采用两件式而非传统的一件式支撑轴(或尾轴)。两件式轴需要较小的地板间隙,因此需要较小的地板通道,并且不会受到整体式轴易受高速扭转共振的影响。易受低速,高负载(高扭矩)现象的影响,在这种现象中,传动轴以更大的幅度旋转,直到其约束橡胶衬套在其安装支架中完全压缩,从而发出ump啪声。旋转的振幅会定期建立,因此会以每秒大约5的频率听到一连串的重击声。 ud ud此效果对橡胶衬套的性能及其温度非常敏感。不同的制造商使用不同设计的衬套,每个衬套的目的都是为了减少回旋问题以及将其他振动传递到车身。 ud udGMH具有特殊的设计,由于更换工具的成本,它不希望更改。但是,它可以改变橡胶材料本身的性能。通过反复试验,它已经获得了橡胶性能,可以在正常条件下将回旋问题控制在可接受的水平。 GMH向MISG提出了一个问题,即是否可以提供有关最佳橡胶性能的理论指导。这可能导致对旋转问题的改进控制。如果它可以替代以前使用的繁琐的试验和错误过程,那么它对于新的和改进的传动轴也将是有用的。 ud udGMH还渴望更好地理解旋转现象,并与我们一起感到数学对现象的描述是研究橡胶性能的前提。尽管在这两种速度下,撞击声的质量有所不同,但在大约40 kph和80 kph时都可以看到声现象。

著录项

  • 作者

    Gates D.;

  • 作者单位
  • 年度 1989
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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