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Study of Effects of Damper Oil Volume Lag on Hydrogas Suspension Used in Armored Fighting Vehicle

机译:阻尼器油量滞后对装甲武装车辆水槽悬架的影响研究

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Studies on Hydrogas suspension systems have invariably modeled the damper element as a simple velocity coefficient which is a constant in a passive suspension and may be varied for a semi-active suspension. This model is valid for light vehicles where suspension forces are moderate. In the case of heavy Armored Fighting vehicles, the Hydrogas suspension units are subjected to huge suspension forces, under which the oil in the damper element is likely to undergo compression and the volume loss would result in a lagging effect manifesting as an unexpected deterioration in performance under random road input. In this paper, the state variable model of a passive suspension system with damper oil volume lag is developed. The frequency response characteristics of the models with and without volume lag are discussed. It is shown that the oil volume lag results in an under-damped response. The response of the system to a random ground excitation for different oil volume lag constants is simulated and the tolerable limit is inferred.
机译:氢吡咯悬架系统的研究总是将阻尼元件模拟为简单的速度系数,其在无源悬架中是恒定的并且可以改变半主动悬架。该型号适用于悬架力量温和的轻型车辆。在重型铠装的斗争车辆的情况下,肼悬浮液单元经受巨大的悬浮力,在该悬浮力下,阻尼元件中的油可能发生压迫,并且体积损失将导致滞后的效果表现为性能意外劣化在随机道路输入下。本文开发了具有阻尼器油量滞后的无源悬架系统的状态变量模型。讨论了具有和不卷滞后的模型的频率响应特性。结果表明,油量滞后导致抑制欠压。模拟系统对不同油量滞后常量的随机地激励的响应,并推断出可容忍的限制。

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