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An integrated relative displacement sensor for magnetorheological damper

机译:磁流变阻尼器的集成相对位移传感器

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摘要

A novel approach to make magnetorheological (MR) dampers self-sensing based on the magnetic flux linkage measurement and the working principle of an integrated relative displacement sensor (IRDS) integrated into a commercially available MR damper are presented. The IRDS mainly comprises an exciting coil wound on the piston head and an induction coil wound on the nonmagnetic cylinder, which is covered by a cylindrical cover made from the materials with high magnetic permeability. In order to validate and optimize the performance of the IRDS, the modeling and analyzing with the finite element method based on ANSYS are carried out and the simulation results are presented.
机译:提出了一种基于磁通连杆测量的磁流变学(MR)阻尼器自我感应的新方法,以及集成在市售MR阻尼器中的集成相对位移传感器(IRDS)的工作原理。 IRDS主要包括在活塞头上缠绕在活塞头上的激励线圈和缠绕在非磁性圆筒上的感应线圈,其被由具有高磁导率的材料制成的圆柱形盖子覆盖。为了验证和优化IRDS的性能,执行基于ANSYS的有限元方法的建模和分析,并提出了模拟结果。

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