New processing research on sheet metal bidirectional pressure forming using a magnetorheological fluid

被引:0
|
作者
Feng Li
Fu Jian Zhou
Mo Nan Wang
Shu Yue Zhu
Cheng Chuang Jin
机构
[1] Harbin University of Science and Technology,School of Materials Science and Engineering
[2] Huazhong University of Science and Technology,State Key Laboratory of Materials Processing and Die & Mould Technology
[3] Harbin University of Science and Technology,School of Mechanical and Power Engineering
关键词
Sheet metal; MRF; Bidirectional pressure; Wall thickness distribution; Forming limit;
D O I
暂无
中图分类号
学科分类号
摘要
In order to break through the technical bottlenecks of the traditional power transmission medium which existing in the sheet forming process, this paper firstly proposes a method of the sheet metal bidirectional pressure forming using a magnetorheological fluid (MRF), then the experimental device and the key structure are developed. Taking the 304 stainless steel sheet as an example, the results of the sheet metal forming under different current intensity conditions are compared. When the current intensity is increased from 0 to 4 A, the increase of the sheet forming limit reaches to 18.03 %. The maximum thinning rate of the wall thickness decreases from 28 to 22.6 %, but the forming height has an increasing trend when the punch down stroke is 15 mm. The sheets’ wall thickness distribution and deformation uniformity are improved by the loading force transmission and the viscosity shear of the MRF under the gradual increased magnetic field. In conclusion, with the maturity of the process theory, it is expected to open up a new way for the study of the sheet flexible medium pressure molding process.
引用
收藏
页码:923 / 929
页数:6
相关论文
共 50 条
  • [31] Research on the characteristics of metal sheet with pulse laser forming
    Yang, L. J.
    Jin, H.
    Wang, Y.
    Wang, M. L.
    CURRENT DEVELOPMENT IN ABRASIVE TECHNOLOGY, PROCEEDINGS, 2006, : 355 - +
  • [32] Experimental research on pulse laser forming of metal sheet
    Wang, Y
    Yang, LJ
    Mokhtar, D
    Zhao, WS
    Qi, LT
    LASERS IN MATERIAL PROCESSING AND MANUFACTURING II, 2005, 5629 : 114 - 118
  • [33] Research on the Simulation for Sheet Metal NC Incremental Forming
    Zhu, Hu
    Li, Nan
    Ju, Jin
    MACHINERY ELECTRONICS AND CONTROL ENGINEERING III, 2014, 441 : 498 - +
  • [34] Numerical research on the process of superplastic sheet metal forming
    Tan, H
    Qi, T
    Lian, JS
    Hu, P
    SIMULATION OF MATERIALS PROCESSING: THEORY, METHODS AND APPLICATIONS, 1998, : 759 - 762
  • [35] Sheet metal forming using adaptive resmeshing
    Giraud-Moreau, L
    Borouchaki, H
    Cherouat, A
    MATERIALS PROCESSING AND DESIGN: MODELING, SIMULATION AND APPLICATIONS, PTS 1 AND 2, 2004, 712 : 1040 - 1045
  • [36] Research on forming process and forming accuracy using low-melting alloys for sheet metal forming based on FEA
    Wang, Liyan
    Li, Mingzhe
    Zhao, Liang
    Yi, Zhuo
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2019, 102 (1-4): : 929 - 936
  • [37] Research on forming process and forming accuracy using low-melting alloys for sheet metal forming based on FEA
    Liyan Wang
    Mingzhe Li
    Liang Zhao
    Zhuo Yi
    The International Journal of Advanced Manufacturing Technology, 2019, 102 : 929 - 936
  • [38] Evaluation of the quality for sheet deep drawing using a magnetorheological fluid (MRF)
    Li, Feng
    Xu, Peng
    Sui, Xiaochong
    Zhou, Fujian
    MODERN PHYSICS LETTERS B, 2015, 29 (24):
  • [39] Friction in Sheet Metal Forming Simulations: Modelling of New Sheet Metal Coatings and Lubricants
    Sigvant, M.
    Pilthammar, J.
    Hol, J.
    Wiebenga, J. H.
    Chezan, T.
    Carleer, B.
    van den Boogaard, A. H.
    INTERNATIONAL DEEP DRAWING RESEARCH GROUP 37TH ANNUAL CONFERENCE, 2018, 418
  • [40] Manufacturing of complex functional components with variants by using a new metal forming process – sheet-bulk metal forming
    M. Merklein
    J. Koch
    T. Schneider
    S. Opel
    U. Vierzigmann
    International Journal of Material Forming, 2010, 3 : 347 - 350