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An analytical method for optimal design of MR valve structures

机译:MR阀结构优化设计的一种分析方法。

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This paper proposes an analytical methodology for the optimal design of a magnetorheological (MR) valve structure. The MR valve structure is constrained in a specific volume and the optimization problem identifies geometric dimensions of the valve structure that maximize the yield stress pressure drop of a MR valve or the yield stress damping force of a MR damper. In this paper, the single-coil and two-coil annular MR valve structures are considered. After describing the schematic configuration and operating principle of a typical MR valve and damper, a quasi-static model is derived based on the Bingham model of a MR fluid. The magnetic circuit of the valve and damper is then analyzed by applying Kirchoff's law and the magnetic flux conservation rule. Based on quasi-static modeling and magnetic circuit analysis, the optimization problem of the MR valve and damper is built. In order to reduce the computation load, the optimization problem is simplified and a procedure to obtain the optimal solution of the simplified optimization problem is presented. The optimal solution of the simplified optimization problem of the MR valve structure constrained in a specific volume is then obtained and compared with the solution of the original optimization problem and the optimal solution obtained from the finite element method.
机译:本文提出了一种用于磁流变(MR)阀结构优化设计的分析方法。 MR阀结构被限制在特定的体积中,并且优化问题确定了阀结构的几何尺寸,该几何尺寸使MR阀的屈服应力压力降或MR阻尼器的屈服应力阻尼力最大化。本文考虑了单线圈和两线圈环形MR阀结构。在描述了典型的MR阀和阻尼器的示意性配置和工作原理之后,基于MR流体的Bingham模型推导了准静态模型。然后,通过应用基尔霍夫定律和磁通守恒定律来分析阀门和风门的磁路。基于准静态模型和磁路分析,建立了MR阀和风门的优化问题。为了减轻计算量,简化了优化问题,并给出了获得简化优化问题最优解的过程。然后获得限制在特定体积内的MR阀结构简化优化问题的最优解,并将其与原始优化问题的解和从有限元方法获得的最优解进行比较。

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