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Study on the Characteristics of a Pneumatic Spring with Bellow

机译:厚厚度的气动春季特征研究

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The performance of a single-chamber pneumatic spring and a dual-chamber pneumatic spring have much difference. Dynamical models of these two types pneumatic springs were built and the characteristics of them were analyzed in this paper. Based on the theory of engineering thermodynamic, gas state equations were established and the dynamical models were obtained. The results show that: the single-chamber pneumatic spring can be equivalent to three stiffness springs in parallel and the dual-chamber pneumatic spring can be equivalent to a stiffness spring and a damping in series, then connect with three stiffness springs in parallel. The stiffness and natural frequency are main influenced by chamber pressure, effective area, volume of the chamber, displacement. The stiffness increases with the chamber pressure increasing and decreases with the volume of the chamber increasing. Such an accurate model for the pneumatic springs would contribute to more effective design or control of vibration isolation systems.
机译:单室充气弹簧的性能和双室气动弹簧具有很大的差异。构建了这两种类型的动力学模型,并在本文中分析了它们的特性。基于工程热力学理论,建立了气体状态方程,获得了动态模型。结果表明:单室充气弹簧可以等于三个平行的三个刚度弹簧,双腔气动弹簧可以等同于刚度弹簧和串联阻尼,然后并联与三个刚度弹簧连接。刚度和自然频率是受腔压力,有效面积,腔室的有效面积,位移的主要影响。刚度随着腔室压力的增加而增加并且随着腔室的体积增加而降低。这种用于气动弹簧的准确模型将有助于更有效的设计或控制振动隔离系统。

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