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首页> 外文期刊>Journal of Sound and Vibration >Numerical and experimental analysis of a vibration isolator equipped with a negative stiffness system
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Numerical and experimental analysis of a vibration isolator equipped with a negative stiffness system

机译:负刚度系统配备振动隔离器的数值和实验分析

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AbstractThis paper presents a Negative Stiffness System (NSS) based on a set of two double–acting pneumatic linear actuators (PLA). The NSS is added to a system with a single degree of freedom, which consists of a sprung mass and a pneumatic spring. One end of each PLA is jointed to the sprung mass while the other end is jointed to the vibrating frame. In addition, the PLAs are symmetrically arranged so that they remain horizontal while the sprung mass is in static conditions. When the rear chamber is pressurised, the vertical component of the force applied by the PLAs will work against the pneumatic spring reducing the dynamic resonance frequency of the overall system. Experimental tests and simulations showed improvements regarding sprung mass isolation in comparison to the passive system without NSS, decreasing the resonance frequency by up to58%and improving the vibration attenuation for different experimental excitations.]]>
机译:<![CDATA [ 抽象 本文提出了一组两种双作用气动线性致动器的负刚度系统(NSS)( PLA)。将NSS添加到具有单一自由度的系统中,该系统由簧上质量和气动弹簧组成。每个PLA的一端接合到簧上质量,而另一端连接到振动框架。另外,可以对称地布置,使得它们保持水平,而弹簧质量处于静态条件。当后室被加压时,由PLA施加的力的垂直分量将针对气动弹簧减小整个系统的动态共振频率。实验测试和仿真显示出与没有NSS的无源系统相比的簧氏质量隔离的改进,将共振频率降低到 58 和改善不同实验激发的振动衰减。 ]]>

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