Magnetic circuit design for the performance experiment of shear yield stress enhanced by compression of magnetorheological fluids

被引:0
|
作者
Cheng Bi
Erda Bi
Hongyun Wang
Chunlin Deng
Huixin Chen
Yun Wang
机构
[1] Taizhou University,School of Intelligent Manufacture
[2] HD Ningbo School,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The shear yield stress is an important parameter for the industrial application of magnetorheological (MR) fluids. A test equipment was designed and built to perform investigations on the behaviours of compression and shear after squeeze of MR fluids. Mathematical expression of magnetic flux density was further established. Furthermore, the magnetic field distribution of the test device based on two-coil mode and single-coil mode was simulated and compared using finite element analysis(ANSYS/Multiphysics). An experimental test system was fabricated and modified based on the final conditions and simulation results. The compression and shear after squeeze performances of MR fluids were tested. The results showed that a smaller initial gap distance or a larger compressive strain corresponds to a larger compressive stress under the same external magnetic field strength. The shear yield stress after the squeeze of MR fluids increases quickly with the increasing compression stress and the increasing magnetic flux density. This test equipment was thought to be suitable for studying the compression and shear after squeeze performances of MR fluids.
引用
收藏
相关论文
共 50 条
  • [31] Static yield stress of ferrofluid-based magnetorheological fluids
    Yang, Yongbo
    Li, Lin
    Chen, Guang
    [J]. RHEOLOGICA ACTA, 2009, 48 (04) : 457 - 466
  • [32] ON THE EFFECT OF WALL SLIP ON THE DETERMINATION OF THE YIELD STRESS OF MAGNETORHEOLOGICAL FLUIDS
    Caballero-Hernandez, Jaime
    Gomez-Ramirez, Ana
    Duran, Juan D. G.
    Gonzalez-Caballero, F.
    Zubarev, Andrey Yu.
    Lopez-Lopez, Modesto T.
    [J]. APPLIED RHEOLOGY, 2017, 27 (01)
  • [33] Static yield stress of ferrofluid-based magnetorheological fluids
    Yongbo Yang
    Lin Li
    Guang Chen
    [J]. Rheologica Acta, 2009, 48 : 457 - 466
  • [34] On the apparent yield stress in non-Brownian magnetorheological fluids
    Vagberg, Daniel
    Tighe, Brian P.
    [J]. SOFT MATTER, 2017, 13 (39) : 7207 - 7221
  • [35] Magnetic circuit design and performance analysis of a rotary magnetorheological damper with new structure
    Li, Junqiang
    Qin, Chenggong
    Guo, Shijie
    Wang, Juan
    [J]. 2017 IEEE INTERNATIONAL CONFERENCE ON CYBERNETICS AND INTELLIGENT SYSTEMS (CIS) AND IEEE CONFERENCE ON ROBOTICS, AUTOMATION AND MECHATRONICS (RAM), 2017, : 524 - 529
  • [36] Design and research of concave magnetic circuit structure for magnetorheological fluid performance test
    Li Z.
    Xie M.
    [J]. Yi Qi Yi Biao Xue Bao/Chinese Journal of Scientific Instrument, 2023, 44 (07): : 62 - 73
  • [37] Performance of magnetorheological fluids beyond the chain based shear limit
    Sherman, Stephen G.
    Wereley, Norman M.
    [J]. JOURNAL OF APPLIED PHYSICS, 2014, 115 (17)
  • [38] Shear rejuvenation, aging and shear banding in yield stress fluids
    Alexandrou, Andreas N.
    Constantinou, Nicholas
    Georgiou, Georgios
    [J]. JOURNAL OF NON-NEWTONIAN FLUID MECHANICS, 2009, 158 (1-3) : 6 - 17
  • [39] Yield dimensionless magnetic effect and shear thinning for magnetorheological grease
    Wang, Kejie
    Dong, Xiaomin
    Li, Junli
    Shi, Kaiyuan
    [J]. RESULTS IN PHYSICS, 2020, 18
  • [40] A New Theoretical Model about Shear Stress in Magnetorheological Fluids with Small Shear Deformation
    祝长春
    [J]. Journal of Wuhan University of Technology(Materials Science), 2005, (01) : 52 - 56