期刊文献+

单线圈磁流变阀阀芯结构对压降特性的影响分析

Influening of Valve Spool Structure on Pressure Drop Properties of Single-coil Magnetorheological Valve
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摘要 根据磁流变液的可控流变特性设计了3种不同阀芯结构的单线圈磁流变阀,同时对单线圈磁流变阀的压降特性进行了理论分析。采用ANSYS有限元仿真软件对3种不同阀芯结构的磁流变阀进行了电磁场仿真分析,得出了磁流变阀磁力线分布、磁场强度分布以及液流通道处磁感应强度大小的变化规律。研究了阀芯倒角、输入电流大小和流量大小对系统压降的影响。结果表明:不同阀芯结构磁流变阀的总压降随着输入电流和流量大小的增加而增大,且无倒角的单线圈磁流变阀压降最大。为实际磁流变阀结构设计提供了参考。 Three different kinds of valve spool structures of single-coil magnetorheological(MR) valve were designed according to the rheological properties of MR fluid. The pressure drop properties of single-coil MR valve were calculated and analyzed. Meanwhile,three different kinds of valve spool structures of MR valve were simulated using ANSYS software. The distribution of magnetic flux line,magnetic field intensity as well as the magnetic induction of flow path were obtained. The influence of the valve spool chamfer,input current and flow rate on the pressure drop were studied. The results show that the pressure drop is increased with the increasing of the input current and the flow rate for the three different valve spool structures,and the pressure drop with the plain ends is bigger than those of with the chamfered ends and the filleted ends. The relevant conclusions have a certain guiding significances for the structure design of MR valve.
出处 《机床与液压》 北大核心 2014年第17期24-26,32,共4页 Machine Tool & Hydraulics
基金 国家自然科学基金项目(51165005 51475165 11462004) 华东交通大学研究生创新资金资助项目(YC2012-X007)
关键词 磁流变阀 阀芯结构 有限元仿真 压降特性 Magnetorheological valve Valve spool structure Finite element analysis Pressure drop properties
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参考文献9

  • 1王耀光,刘荣.智能材料在液压控制中的应用[J].液压与气动,2008,32(12):1-5. 被引量:6
  • 2赵四海,方佳雨,吕兴军.磁流变液介质液压系统的基础研究[J].机床与液压,2005,33(11):92-93. 被引量:2
  • 3WANG D H, AI H X, LIAO W H. A Magnetorheological Valve with Both Annular and Radial Fluid Flow ResistanceGaps[ J ]. Smart Mater. StnJct,2009,18 ( 11 ) : 1 - 16.
  • 4LI W H, DU H, GUO N Q. Finite Element An',dysis and Simulation Evaluation of a Magnetorheological Valve [ J ]. International Journal of Advanced Manufacturing Technolo- gy,2003,21 (6) :438 -445.
  • 5NGUYEN Q H,HAN Y M ,CHOI S B,et al. Geometry Opti- mizatinn of MR Valves Constrained in a Specific Volume U- sing the Finite Elemen! Method [ J ]. Smart Mater. Struct. , 2007,16(6) :2242 - 2252.
  • 6NGUYEN Q H, CHOI S B,WERELEY N M. Optimal De-sign of Magnetorheological Valves Via a Finite Element Method Considering Control Ener' and a Time Constant [ J ]. Smart Mater. Struct. , 2008,17 ( 2 ) : 12 - 24.
  • 7NGUYEN Q H,CHOI S B, LEE Y S, et al. An Analytical Method for Optimal Design of MR Valve Structures [ J ]. Smart Mater. Struct. ,2009,18(9) : 1088 - 1100.
  • 8王京涛,吴张永,王晓波,岑顺锋.基于ANSYS的磁流变阀磁场分析[J].机械设计与制造,2011(7):107-109. 被引量:4
  • 9王京涛,吴张永,岑顺锋,王晓波.磁流变技术在液压传动与控制中的应用展望[J].机床与液压,2011,39(10):131-133. 被引量:13

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