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Research on theoretical calculation model for dynamic stiffness of air spring with auxiliary chamber

机译:带有辅助腔的空气弹簧动态刚度理论计算模型的研究

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Based on the theory of thermomechanics and fluid dynamics, the dynamic equations of air spring, auxiliary chamber and orifice were established, and then the calculation model for dynamic stiffness of air spring with auxiliary chamber was deduced. The model indicates that the dynamic stiffness of air spring is caused by the air spring effect area variation with air spring deformation, the air spring volume variation with air spring deformation, and the variation of air mass in air spring with air spring deformation. And the model is proved to be correct in test. Simulation model for dynamic stiffness of air spring was established under the Matlab/Simulink environment based on the calculation model and the dynamic equations of the components. Taking the Firestone 1T15M-2 air spring as example, the dynamics stiffness of air spring with varying parameters was calculated. The calculation results show that air spring pressure, the size of orifice, vibration frequency, vibration amplitude, volume of auxiliary chamber all affect dynamic stiffness of air spring, and the effect laws of the parameters on dynamic stiffness were analyzed in detail.
机译:基于热机械和流体动力学理论,建立了空气弹簧,辅腔室和孔的动态方程,然后推导出具有辅助室的空气弹簧动态刚度的计算模型。该模型表示空气弹簧的动态刚度是由空气弹簧变形的空气弹簧效应区域变化引起的,空气弹簧变形的空气弹簧体积变化,以及空气弹簧变形中的空气质量的变化。并证明该模型在测试中是正确的。基于计算模型和组件的动态方程,在Matlab / Simulink环境下建立了气弹动态刚度的仿真模型。以夏天为例,计算了具有不同参数的空气弹簧动力学刚度。计算结果表明,空气弹簧压力,孔口尺寸,振动频率,振动幅度,辅助室的体积均影响空气弹簧的动态刚度,并详细分析了动态刚度参数的效果规律。

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