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Nonlinear modeling and experimental characterization of hydraulic dampers: effects of shim stack and orifice parameters on damper performance

机译:液压阻尼器的非线性建模和实验表征:垫片堆叠和孔口参数对阻尼器性能的影响

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摘要

A nonlinear model of monotube hydraulic dampers is presented with an emphasis on the shim stack properties and their effects on the overall damper performance. There has been no published detailed analysis of the effects of shim stack design in a hydraulic damper to date. Other damper models have used simplifying assumptions for the shim stack deflection and effects of the shim stack have not been completely studied. Various parameters affecting the nonlinear characteristics of monotube dampers such as the hysteresis region are studied. The model presented in this paper can be used for design purposes and helps in developing controllable valvings based on shim stacks. It can also be used to design controllable bypasses in hydraulic dampers. The mathematical model is validated by comparison against experimental test results carried out on an OHLINS CCJ 23/8 monotube damper, in CVeSS test facilities.
机译:提出了单管液压阻尼器的非线性模型,重点是垫片堆叠特性及其对整体阻尼器性能的影响。迄今为止,尚未发表有关液压阻尼器中垫片组设计效果的详细分析。其他阻尼器模型使用了简化的假设来简化垫片叠层的挠曲,并且尚未完全研究垫片叠层的影响。研究了影响单管阻尼器非线性特性的各种参数,例如磁滞区域。本文介绍的模型可用于设计目的,并有助于基于垫片堆栈的可控阀门的开发。它也可以用于设计液压阻尼器中的可控旁路。通过与在CVeSS测试设备中在OHLINS CCJ 23/8单管阻尼器上进行的实验测试结果进行比较来验证数学模型。

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