4.7 Article

Proposal and Preliminary Feasibility Study of a Novel Toroidal Magnetorheological Piston

期刊

IEEE-ASME TRANSACTIONS ON MECHATRONICS
卷 22, 期 2, 页码 657-668

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TMECH.2016.2622287

关键词

Hydraulic actuators; magnetic field induced strain; magnetic liquids; magnetorheological fluids; prototypes

资金

  1. Program for Leading Graduate Schools, Graduate Program for Embodiment Informatics of the MEXT
  2. New Energy and Industrial Technology Development Organization (NEDO)
  3. JSPS KAKENHI Grant [26870656, 25220005]
  4. Research Institute for Science and Engineering, Waseda University
  5. Grants-in-Aid for Scientific Research [26870656] Funding Source: KAKEN

向作者/读者索取更多资源

A new magnetorheological piston head design inspired by toroidal electromagnets was proposed in previouswork as an alternative to conventional annular dampers. A prototype with a circular valve array integrated inside the piston head was built and tested to measure its passive performance. The mechanical, electromagnetic, and hydraulic models used in the new design were explained, and the relevant parameters of the actuator were analyzed to construct a mathematical model to estimate its performance. These works showed the feasibility of the concept and its potential as an alternative to current damper technology, but lacked a baseline for comparison. This paper reviews and widens this groundwork. It adds a magnetic finite element method study to address the previously found leakage, and a new set of experiments, including a force controller, to compare its performance against a conventional annular piston head. The new findings show how the current force limitations can be overcome by striking a balance between the coil space and the size of electromagnet cores to achieve the performance of current dampers. They also highlight its potential in force control applications to provide a wider range of customization options, such as number and size of holes, electromagnets, and coils, and a better use of the active area of the gap.

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