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Analytical study of a pneumatic vibration isolation platform featuring adjustable stiffness

机译:气动隔离平台具有可调节刚度的分析研究

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This paper proposed a pneumatic vibration isolation platform (named VIP) with adjustable stiffness characteristics in which two opposite stiffness mechanisms are introduced. One with positive stiffness is formed by the wedge-roller mechanism used to support the load, which is named the load bearing mechanism (LBM), the other (called stiffness correction mechanism-SCM) generating negative stiffness in vertical direction, constructed by the cam-roller mechanism, is used for correction of the total stiffness of the VIP. Instead of using coil spring, the rubber air spring is employed, hence the stiffness of the VIP can be easily adjusted to adapt to the change of the isolated load as well as improve the isolation effectiveness in low frequency region. The force model of the rubber air spring generated by the compressed air, friction and viscoelastic is then built and identified via the experiment. Next, the dynamic stiffness model of the VIP will be established and analyzed. The primary resonant response of the proposed model subjected to harmonically excited base will be analyzed by employing the normal form technique. The effects of the configurative parameters on the amplitude-frequency curve are investigated. Furthermore, due to the nonlinear dynamical system, the complex dynamical analysis including coexistence solution, bifurcation and so on is necessary to explore in this work by using the numerical integration and Poincaremap. Finally, the isolation response of the VIP subjected to the random excitation is also evaluated and compared with that of the equivalent linear isolator (named ELI in which the SCM is removed). The result shows clearly the advantages of the VIP against the ELI. This work will furnish a useful insight into the design and manufacture of the low frequency vibration isolation systems. (C) 2021 Elsevier B.V. All rights reserved.
机译:本文提出了一种具有可调节刚度特性的气动振动隔离平台(命名VIP),其中引入了两个相反的刚度机制。具有正刚度的一个具有正刚度的楔形辊机构由用于支撑负载的楔形辊机构,该滚子机构命名为负载轴承机构(LBM),另一个(被称为刚度校正机构-CM)在垂直方向上产生负刚度,由凸轮构成-Roller机制用于校正VIP的总刚度。采用橡胶空气弹簧而不是使用螺旋弹簧,因此可以容易地调节VIP的刚度以适应隔离负载的变化以及提高低频区域中的隔离效率。然后通过实验构建并识别由压缩空气,摩擦和粘弹性产生的橡胶空气弹簧的力模型。接下来,将建立和分析VIP的动态刚度模型。通过采用正常形式技术分析对谐波激发基碱进行谐波碱基的初始共振响应。研究了配置参数对幅度频率曲线的影响。此外,由于非线性动力系统,通过使用数值集成和POINCAREMAP,必须在这项工作中探索包括共存解决方案,分叉等的复杂动态分析。最后,还评估了对随机激发进行的VIP的隔离响应,并与等效的线性隔离器(其中被移除的SCM的命名ELI)进行比较。结果显然显示了VIP对ELI的优点。这项工作将提供对低频振动隔离系统的设计和制造的有用洞察。 (c)2021 Elsevier B.v.保留所有权利。

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