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首页> 外文期刊>Journal of intelligent material systems and structures >Optimal design of control valves in magnetorheological fluid dampers using a nondimensional analytical method
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Optimal design of control valves in magnetorheological fluid dampers using a nondimensional analytical method

机译:磁流变阻尼器控制阀的无量纲分析优化设计。

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摘要

The magnetorheological control valve is a key element in magnetorheological dampers to achieve controllable damping characteristics in practice. The optimal design of magnetorheological control valves with an annular flow structure in two configurations of coil wire placements is investigated using a nondimensional analytical method. The achievable performances of the magnetorheological control valve are formulated in terms of several important nondimensional design parameters, which are defined based on the analytical models considering both mechanical flow characteristics and magnetic flux conservation in magnetorheological fluids and valve materials with a clear understanding and convenient specification in optimization. The design method first identifies a few optimal internal parameters through maximizing a single-objective function with predefined constraints. This can avoid empirical difficulty or uncertainty in weight selection in conventional multiobjective optimization methods and guarantee the worst-case performance. Then, the inherent sensitivity of the achievable performance with respect to external parameters is analyzed to provide practical instructions for appropriate design of the magnetorheological control valve. Finally, the analytical optimal results are verified by a finite element analysis, and a comparison is conducted to illustrate the excellent performance of a vibration isolation system employing the optimally designed magnetorheological control valve.
机译:磁流变控制阀是磁流变阻尼器在实践中实现可控阻尼特性的关键要素。使用无量纲分析方法研究了在两种线圈线圈布置中具有环形流动结构的磁流变控制阀的最佳设计。磁流变控制阀的可实现性能是根据几个重要的无量纲设计参数来表述的,这些参数是在分析模型的基础上定义的,其中考虑了磁流变流体和阀材料的机械流动特性和磁通量守恒,并具有清晰的理解和方便的规范。优化。该设计方法首先通过最大化具有预定义约束的单目标函数来识别一些最佳内部参数。这样可以避免传统的多目标优化方法在经验上的困难或权重选择的不确定性,并保证最坏情况下的性能。然后,分析了可达到的性能相对于外部参数的固有灵敏度,以为磁流变控制阀的适当设计提供实用指导。最后,通过有限元分析验证了分析的最佳结果,并进行了比较,以说明采用优化设计的磁流变控制阀的隔振系统的出色性能。

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