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Polymer composite Belleville springs for an automotive application

机译:用于汽车应用的聚合物复合贝尔维尔弹簧

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This paper investigates mathematical modelling and manufacturing of polymer composite Belleville springs, and their potential application. The original expression for load carrying capacity developed for metal springs is refined by considering the variation of elastic modulus and Poisson's ratio of laminates in polar coordinates. A novel series spring stacking arrangement is proposed to achieve complex stiffness variation by progressive action. The experimental results show consistent effect of number of plies on the spring rate and compare well with the theoretical predictions. Although handmade, the variations in load carrying capacity is very small (similar to 10%) confirming manufacturing viability. It is shown that a smooth, variable spring rate curve can be produced by reducing slip-stick frictional forces with the use of spacers within the spring stacks. In one application, the composite springs are shown to offer significant vehicle dynamic performance improvement through reduction of the tyre contact patch force variation and vehicle body acceleration.
机译:本文研究了聚合物复合贝尔维尔弹簧的数学建模和制造及其潜在应用。通过考虑弹性模量和PoItson在极性坐标中的层压比率的变化,改善了为金属弹簧开发的负载承载能力的原始表达。提出了一种新颖的弹簧堆叠布置,以通过渐进作用实现复杂的刚度变化。实验结果表明了春季速率上的层数一致效果,并与理论预测相比。虽然手工制作,负载承载能力的变化非常小(类似于10%),确认制造活力。结果表明,通过在弹簧叠层内的使用间隔物减少滑动垢摩擦力,可以生产平滑的可变弹簧速率曲线。在一个应用中,通过减小轮胎接触贴片力变化和车身加速度,显示复合弹簧,以提供显着的车辆动态性能改善。

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