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首页> 外文期刊>Heavy vehicle systems: A Special Series of the International Journal of Vehicle Design >Roll plane analysis of a hydro-pneumatic suspension with twin-gas-chamber struts
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Roll plane analysis of a hydro-pneumatic suspension with twin-gas-chamber struts

机译:双气室撑杆的油气悬架的滚动平面分析

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摘要

A hydro-pneumatic strut comprising two gas chambers is proposed to realise nearly symmetric vertical stiffness properties in compression and rebound, and progressively hardening roll stiffness. The fundamental properties of the proposed struts are derived in terms of suspension rate and roll stiffness through formulations of strut forces in the roll plane of a vehicle. Dynamic responses are investigated under excitations arising from vehicle-road interactions and a steady centrifugal acceleration. The results demonstrate that the suspension with proposed struts could reduce ride height drift, and improve suspension topping, tyre deflection and roll response characteristics, with negligible influence on vertical and roll ride.
机译:提出了一种包括两个气室的液压气动支杆,以实现在压缩和回弹方面几乎对称的垂直刚度特性,并逐步硬化轧辊刚度。所提出的支柱的基本特性是根据悬架速度和侧倾刚度,通过在车辆的侧倾平面中制定侧倾力的公式得出的。在车辆-道路相互作用和稳定的离心加速度引起的激励下研究动力响应。结果表明,采用所提出的支柱的悬架可以减少行驶高度漂移,并改善悬架顶部,轮胎变形和侧倾响应特性,而对垂直和侧滑行驶的影响可以忽略不计。

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