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Numerical and experimental studies on a new variable stiffness and damping magnetorheological fluid damper

机译:新型变刚度和阻尼磁流变阻尼器的数值和实验研究

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摘要

This article describes a new magnetorheological fluid damper; its damping and stiffness are variable and controllable through the compact structure of two damping units and a spring. The ability of variable stiffness and damping enables it to be used for more effective vibration control in wide-band excitation wave occasions. First, the effective stiffness and output damping force are calculated in theory. Then, the magnetic field is simulated by finite element analysis. After the prototype of the new magnetorheological fluid damper is developed and machined, the damper's performances are tested in a hydraulic actuated MTS machine, including stiffness variability and damping variability in different current. The successful development, numerical calculation, and experimental testing shows that the new damper not only outputs a controllable damping force but also occurs as the great variable stiffness in a certain range, which makes the true design and implementation of the concept of variable stiffness and damping.
机译:本文介绍了一种新型的磁流变流体阻尼器。它的阻尼和刚度是可变的,并且可以通过两个阻尼单元和一个弹簧的紧凑结构来控制。可变刚度和阻尼的能力使其能够在宽带激发波场合中用于更有效的振动控制。首先,在理论上计算有效刚度和输出阻尼力。然后,通过有限元分析来模拟磁场。在开发并加工了新型磁流变流体阻尼器的原型后,在液压致动的MTS机器中测试了阻尼器的性能,包括不同电流下的刚度可变性和阻尼可变性。成功的开发,数值计算和实验测试表明,新型减振器不仅可以输出可控的阻尼力,而且还可以在一定范围内以较大的变刚度出现,从而使变刚度和阻尼概念的设计和实现成为现实。 。

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