首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems >DESIGN AND CONTROL OF A MAGNETORHEOLOGICAL ELASTOMER DYNAMIC VIBRATION ABSORBER FOR POWERTRAIN MOUNT SYSTEMS OF AUTOMOBILES
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DESIGN AND CONTROL OF A MAGNETORHEOLOGICAL ELASTOMER DYNAMIC VIBRATION ABSORBER FOR POWERTRAIN MOUNT SYSTEMS OF AUTOMOBILES

机译:汽车动力总成安装系统磁流变弹性动态振动吸收器的设计与控制

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The principle of a magnetorheological elastomer (MRE) dynamic vibration absorber (DVA) is proposed and the corresponding configuration is designed in this paper. The MRE DVA is composed of a vibration absorbing unit and a passive vibration isolation unit. The vibration absorbing unit can be utilized to mitigate the kinetic energy acting on the primary system (i.e., the system of which the vibration will be mitigated) and the passive vibration isolation unit utilized to support the primary system. The vibration absorbing unit consists of magnetic conductor, shearing sleeve, bobbin core, electromagnetic coil winding, and vulcanized MRE between the shearing sleeve and the bobbin core. The magnetic field produced by the electromagnetic coil winding starts from the bobbin core, and passes through the magnetic conductor and the shearing sleeve, then goes through the MRE and forms a closed loop. The shear storage modulus of the MRE could be tuned continuously by varying the applied current, which results in natural frequency shift of the MRE DVA. The optimal parameters of the electromagnetic circuit of the MRE DVA are calculated based on Kirchoff s law. The finite element method is employed to validate the electromagnetic circuit of the MRE DVA and to obtain the corresponding electromagnetic characteristics. The mathematical model of the MRE DVA is also derived. In order to analyze how the parameters of the MRE DVA influence the effectiveness of the vibration control and to validate the flexibility of the control systems, the MRE DVA is employed in a powertrain mount system to replace the conventional passive mount. A single-degree-of-freedom (SDOF) dynamic model for the semi-active powertrain mount system is established. A varied step optimum algorithm is adopted to realize the vibration control of the powertrain mount system based on the MRE DVA. Magnetorheological elastomer, dynamic vibration absorber, vibration control, varied step optimum algorithm, powertrain mount system.
机译:提出了磁流变弹性体(MRE)动态减振器(DVA)的原理,并设计了相应的结构。 MRE DVA由减振单元和被动隔振单元组成。振动吸收单元可用于减轻作用在初级系统(即,将减轻振动的系统)上的动能,而被动振动隔离单元用于支撑初级系统。减振单元由磁导体,剪切套管,线轴芯,电磁线圈绕组和剪切套管与线轴芯之间的硫化MRE组成。电磁线圈绕组产生的磁场从线轴芯开始,穿过磁导体和剪切套管,然后穿过MRE并形成闭环。 MRE的剪切储能模量可以通过改变施加的电流来连续调整,从而导致MRE DVA的自然频移。 MRE DVA的电磁电路的最佳参数是根据基尔霍夫定律计算得出的。采用有限元方法验证了MRE DVA的电磁回路并获得了相应的电磁特性。还推导了MRE DVA的数学模型。为了分析MRE DVA的参数如何影响振动控制的有效性并验证控制系统的灵活性,MRE DVA用于动力总成安装系统中,以代替传统的被动安装。建立了半主动动力总成安装系统的单自由度(SDOF)动力学模型。采用变步长优化算法,基于MRE DVA实现动力总成悬置系统的振动控制。磁流变弹性体,动态减振器,振动控制,可变步长优化算法,动力总成安装系统。

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