期刊文献+

一种叶轮式MRF汽车制动器结构设计与性能仿真 被引量:8

Structure Design and Performance Simulation for a Van Wheel Type Vehicle MRF Brake
下载PDF
导出
摘要 设计了一种汽车轮内叶轮式磁流变液制动器,推导出该制动器的制动力矩计算方法,并在Matlab/Simulink环境下建立仿真模型,分析了制动器结构参数对制动力矩的影响。结果表明,叶轮式磁流变液制动器工作模式为剪切与流动的混合模式,其制动力矩与磁感应强度呈现对数变化规律,与工作间隙呈现负指数变化规律;叶片的径向尺寸、叶片数量和叶片厚度对制动力矩都有较大影响。所设计的汽车磁流变液制动器能够满足一般小型汽车的制动力矩需求。 A van wheel type vehicle magneto-rheological fluid(MRF) wheel brake was designed,and its braking torque formula was deduced,and the simulation model was built based on Matlab/Simulink to analyze the influences of brake structural parameters on braking torque.The results show that the working mode of the van wheel type MRF brake mix up shear with flow patterns,and the relationship between its braking torque and magnetic induction presents a logarithmic change rule,while the corresponding relation with the working clearance presents a negative exponential law.The radial dimensions,number and thickness of blades have considerable influence on braking torque respectively.And the braking torque of the designed vehicle MRF brake can satisfy the requirement of small-sized vehicles.
作者 丁柏群 宋宇
机构地区 东北林业大学
出处 《汽车技术》 北大核心 2011年第8期34-38,共5页 Automobile Technology
关键词 制动器 磁流变液 结构设计 性能仿真 Brake Magnet-orheological fluid Structural design Performance simulation
  • 相关文献

参考文献6

  • 1王鸿云,郑惠强,李泳鲜.磁流变液的研究与应用[J].机械设计,2008,25(5):1-4. 被引量:36
  • 2黄豪彩,黄宜坚.磁流变技术及其在机械工程中的应用[J].制造技术与机床,2003(4):24-26. 被引量:13
  • 3Lord Materials Division. Designing with MR Fluids. Lord Corporation Engineering Note, !999.12.
  • 4Yoo J H, Wereley N M. Design of a high-efficiency magnetorheo-logical value. Intelligent Material Systems and Structures, 2002, 13(10): 679-687.
  • 5Mark R, et al. Properties and applications of magnetorheological fluids. Proc of SPIE lnt Soc Opt Eng Washington: SPIE, 1998, (3327): 262-275.
  • 6GB7258-2004.机动车运行安全技术条件.[S].,..

二级参考文献53

  • 1Kordonsky W I. Magnetorheological effect as a base of new devices and technologies [ J ]. Magnetism and Magnetic Materials, 1993,122 (1 -3) :395 -398.
  • 2Winslow. Methods and means for transmitting electrical impulses into mechanical force[ P]. US Patent 2417850,1947.
  • 3Rabinow. The magnetic fluid clutch [ J ]. AIEE Transactions, 1948, 67:1 308-1 315.
  • 4Carlson J D, Catanzarite D M, Clair K A. Commercial magneto-rheological fluid devices, and associated Technologies [ C ]. In: Proc of the 5th lnt Conf on ER Fluids and MR Suspensions and Associated Technology, Singapore: World Scientific, 1996 : 20 - 28.
  • 5Carlson J D. Low-cost MR fluid sponge devices [ J ]. Intelligent Ma- terial Systems and Structures,2000,10 (8) :589 - 594.
  • 6Carlson J D,John C. Controllable Brake [ P]. US Patent, 5842547, 1998.
  • 7Carlson J D, Clair K A St, Chrzan M J. Controllable vibration apparatus[ P]. US Patent, 5878851,1999.
  • 8Ginder J M, Davis L C, Elie L D. Rheology of magnetotheological fluids: models and measurements[C]. In: Proc of the 5th Int Conf on ER Fluids and MR Suspensions and Associated Technology, Singapore: World Scientific, 1996:504 - 514.
  • 9Ginder J M. Behavior of magnetorheological fluids [ J ]. MRS Bulletin,1998,23 (8) :26 -29.
  • 10Phule P P, Ginder J M. Synthesis and properties of novel magnetorheological fluids having improved stability and redispersbility[C ]. In : Proc of the 6th Int Conf on Electro-theological Fluids, Magnetorheological Suspensions and Their Application, Singapore: World Scientific, 1998:445 - 453.

共引文献58

同被引文献63

  • 1李海涛,彭向和,陈伟民.基于链化分析的磁流变液剪切屈服应力模型[J].Chinese Journal of Chemical Physics,2005,18(4):505-509. 被引量:10
  • 2单慧勇,杨延荣,卫勇.圆盘型磁流变制动器的理论设计与探讨[J].机床与液压,2006(4):53-55. 被引量:10
  • 3袁春静,吴永根,葛振亮.制动鼓瞬态温度场有限元分析[J].科学技术与工程,2006,6(8):1154-1156. 被引量:9
  • 4肖璐,王凡,刘颖,方志刚.用于薄壁件加工的磁流变夹具[J].新技术新工艺,2007(1):26-27. 被引量:16
  • 5Wei Hu, Norman M Wereley, Louis Chemouni, et al. Semi-active line- ar stroke magneto-rheological fluid-elastic helicopter lag damper [ J ]. Journal of Guidance Control and Dynamics, 2007,30 (2) :565-575.
  • 6Flores G A, Liu J. Embolization of blood vessels as a cancer therapy u- sing magneto-rheological fluids[ J]. Journal of Intelligent Material Sys- tems and Structures, 2002,13 ( 10 ) :641-646.
  • 7Christopher A. Waudby, John Christodoulou. GPU accelerated Monte Carlo simulation of pulsed-field gradient NMR experiments[J]. Journal of Magnetic Resonance, 2011,211 ( 1 ) :67-73.
  • 8Kang S, Suh Y K. Direct simulation of flows with suspended paramag- netic particles using one-stage smoothed profile method[ J]. Journal of Fluids and Structures, 2011, 27(2): 266-282.
  • 9Olabi A G, Grunwald A. Design and application of magneto-rheologieal fluid [ J ]. Materials and Design, 2007,28 (10) : 2658-2664.
  • 10Ranbinow J. The magnetic fluid clutch[ J]. AIEE Transactions, 1948, 67 : 1308-1315.

引证文献8

二级引证文献24

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部