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Study on a Magnetorheological fluid bladder spring for isolation system

机译:隔离系统的磁流变液囊弹簧的研究

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This paper presents development of a magnetorheological(MR)fluid bladder spring for suppression of vibrations.The developed MR fluid bladder spring is composed of two variable volume rubber bladder filled with MR fluid,a pipe and a MR valve connecting them.One of the bladders supports disturbance force and the MR fluid flows between two bladders because of the variation of bladder volume due to deformation.The shear stress of the MR fluid in MR valve is varied by an applied magnetic field,which thereby varies the characteristics of the isolator,such as its stiffness and damping.A mathematical model of the isolator was derived,and a prototype of the MR fluid bladder spring was fabricated and its dynamic behavior was measured in vibration force for a wide range of frequencies under various applied magnetic fields.The parameters of the model under various magnetic fields were calculated and the bladder dynamic performances were evaluated.A non-resonant control was employed to minimize the vibration amplitude of the system.Numerical simulation results indicated that the semiactive control system produced much better isolation performance than a passive system.
机译:本文介绍了一种用于抑制振动的磁流变(MR)流体气囊弹簧。已开发的MR流体气囊弹簧由两个装有MR流体的可变容积橡胶气囊,一个管子和一个连接它们的MR阀组成。由于扰动引起的气囊体积变化,因此支撑扰动力并且MR流体在两个气囊之间流动。MR阀中MR流体的剪切应力会因施加的磁场而变化,从而改变隔离器的特性,例如推导了隔振器的数学模型,制造了MR液体气囊弹簧的原型,并在各种外加磁场下,在很宽的频率范围内的振动力下测量了其动态行为。计算了不同磁场下的模型并评估了膀胱的动态性能。数值模拟结果表明,半主动控制系统的隔离性能要比被动系统好。

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