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A Computational Method for Efficient Hub Offset Comparisons with Deflected-Disc Dampers

机译:偏转盘阻尼器高效轮毂偏移比较的计算方法

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With deflected-disc dampers, digressive force-velocity shapes are achieved via the combined effects of disc stack stiffness and hub-offset. The degree of digressiveness can be adjusted to alter vehicle performance by changing the proportion of these parameters. Optimizing this relationship can yield substantial vehicle performance improvements, but the time consuming iterative process of developing a new disc stack for each hub-offset discourages experimentation. To enable more efficient digressiveness comparisons, a regression-based computational method has been developed which converts disc stack stiffness from one hub-offset to other offsets directly, without iteration. Once an initial disc stack for one offset has been tuned by traditional methods, stacks for other offsets can be calculated that maintain overall damper control. This paper will present background information on deflected disc valving and curve shaping, describe development of the computational method, and show an example of a typical comparison, graphically.
机译:借助碟形减振器,通过碟片叠片刚度和轮毂偏移的综合作用,可以实现分散的力速形状。可以通过改变这些参数的比例来调整离题程度以改变车辆性能。优化这种关系可以大大提高车辆的性能,但是为每个轮毂偏移量开发新的碟片叠的耗时的迭代过程阻碍了实验。为了能够进行更有效的离题性比较,已经开发了一种基于回归的计算方法,该方法可以将碟片叠层刚度从一个轮毂偏移量直接转换为其他偏移量,而无需迭代。一旦通过传统方法调整了一个偏移量的初始圆盘叠后,就可以计算出其他偏移量的叠放量,从而保持总体阻尼器控制。本文将介绍有关偏转阀瓣和曲线整形的背景信息,描述计算方法的发展,并以图形方式显示典型比较的示例。

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