329
Views
13
CrossRef citations to date
0
Altmetric
Original Articles

Simulation and Experimental Validation of Tube Sinking Drawing Processes

, &
Pages 770-780 | Received 02 Dec 2009, Accepted 15 Feb 2010, Published online: 10 May 2011

REFERENCES

  • Avitzur , B. Handbook of Metal Forming Processes ; John Wiley : New York , 1983 .
  • Rowe , G. Principles of Industrial Metalworking Processes ; Edward Arnold : New York , 1986 .
  • Blazynski , T.Z. Plasticity and Modern Metal-Forming Technology ; Elsevier : New York , 1989 .
  • Tschaetsch , H. Metal Forming Practise ; Springer : Berlin , 2006 .
  • Shaheen , L. Tube drawing principles: Understanding processes, parameters key to quality. Tube and Pipe Production 2007, 10–28.
  • Duncan , J.P. ; Kenny , B. ; Moore , G.G. Stress analysis and calibration of tube drawing dies . International Journal of Mechanical Sciences 1963 , 5 , 371 – 384 .
  • Collins , I.F. ; Williams , B.K. Slipline fields for axisymmetric tube drawing . International Journal of Mechanical Sciences 1985 , 27 , 225 – 233 .
  • Kiuchi , M. ; Jima , S.I. Computer-aided simulation of extrusion and/or drawing of fin-tubes and fin-bars . CIRP Annals, Manufacturing Technology 1993 , 42 , 261 – 264 .
  • Bayoumi , L.S. Cold drawing of regular polygonal tubular sections from round tubes . International Journal of Mechanical Sciences 2001 , 43 , 2541 – 2553 .
  • Dai , K. ; Wang , Z.R. A Graphical description of shear stress in the drawing of a thin-wall tube with a conical die . Journal of Materials Processing Technology 2000 , 102 ( 1 ), 174 – 178 .
  • Sawamiphakdi , K. ; Lahoti , G.D. ; Kropp , P.K. Simulation of a tube drawing process by the finite element method. Journal of Materials Processing Technology 1991, 27 (1–3), 179–190.
  • Li , M. ; Sun , Z. ; Li , M. ; Yang , H. FEM numerical simulation of tube axial drawing process . Journal of Materials Processing Technology 2005 , 160 ( 3 ), 396 – 400 .
  • Bruni , C. ; Forcellese , A. ; Gabrielli , F. ; Simoncini , M. ; Montelatici , L. Evaluation of friction coefficient in tube drawing processes . 10th Conference on Material Forming 2008 , 907 , 552 – 557 .
  • Szulc , W. ; Malinowski , Z. Theoretical and experimental investigation of the multilayer tube drawing . Journal of Materials Processing Technology 1994 , 45 ( 1–4 ), 347 – 352 .
  • Lee , S.K. ; Ko , D.C. ; Kim , B.M. ; Lee , J.H. ; Kim , S.W. ; Lee , Y.S. A study on monobloc tube drawing for steering input shaft . Journal of Materials Processing Technology 2007 , 191 ( 1–3 ), 55 – 58 .
  • Petruzelka , J. ; Sarmanova , J. ; Sarman , A. The effect of ultrasound on tube drawing . Journal of Materials Processing Technology 1996 , 60 ( 1–4 ), 661 – 668 .
  • Um , K.-K. ; Lee , D.N. An upper bound solution of tube drawing . Journal of Materials Processing Technology 1997 , 63 , ( 1–3 ), 43 – 48 .
  • Moon , Y. ; Lee , D. ; Tyne , C.V. Optimal distribution of drawing strains in the two-pass tube drawing process . Journal of Engineering Manufacture 2005 , 219 , 595 – 602 .
  • Rubio , E. ; González , C. ; Marcos , M. ; Sebastián , M. Energetic analysis of tube drawing processes with fixed plug by upper bound method . Journal of Materials Processing Technology 2006 , 177 , 175 – 178 .
  • Rubio , E.M. ; Camacho , A. M. ; Marcos , M. ; Sebastin , M.A. Analysis of the energy vanished by friction in tube drawing processes with a fixed conical inner plug by the upper bound method . Materials and Manufacturing Processes 2008 , 23 ( 7 ), 690 – 697 .
  • Kwan , C. A generalized velocity field for axisymmetric tube drawing through an arbitrarily curved die with an arbitrarily curved plug . Journal of Materials Processing Technology 2002 , 122 , 213 – 219 .
  • Neves , F.O. ; Button , S.T. ; Caminaga , C. ; Gentile , F.C. Numerical and experimental analysis of tube drawing with fixed plug . Journal of the Brazilian Society of Mechanical Sciences & Engineering 2005 , XXVII ( 4 ), 426 – 431 .
  • Kuboki , T. ; Nishida , K. ; Sakaki , T. ; Murata , M. Effect of plug on levelling of residual stress in tube drawing . Journal of Materials Processing Technology 2008 , 204 ( 1–3 ), 162 – 168 .
  • Urbanski , S. ; Packo , M. ; Ståhlberg , U. ; Keife , H. Cylindrical mandrel drawing of tubes: A matrix method simulation compared with experiment . Journal of Materials Processing Technology 1992 , 32 ( 3 ), 531 – 543 .
  • Alexandrova , N. Fracture analysis of tube drawing with a mandrel . Journal of Materials Processing Technology 2008 , 142 ( 3 ), 755 – 761 .
  • Kim , S.W. ; Kwon , Y.N. ; Lee , Y.S. ; Lee , J.H. Design of mandrel in tube drawing process for automotive steering input shaft . Journal of Materials Processing Technology 2007 , 187–188 , 182 – 186 .
  • Karnezis , P. ; Farrugia , D.C.J. Study of cold tube drawing by finite-element modelling . Journal of Materials Processing Technology 1998 , 80–81 , 690 – 694 .
  • Shivpuri , R. ; Bhaskararao , D. ; Mukherjee , S. ; Kini , S.D. Investigation of ecology friendly lubrication in high speed drawing of SSID tubes . CIRP Annals - Manufacturing Technology 2001 , 50 ( 1 ), 169 – 172 .
  • Świa¸tkowski , K. ; Hatalak , R. Study of the new floating-plug drawing process of thin-walled tubes . Journal of Materials Processing Technology 2004 , 151 ( 1–3 ), 105 – 114 .
  • Yoshida , K. ; Furuya , H. Mandrel drawing and plug drawing of shape-memory-alloy fine tubes used in catheters and stents . Journal of Materials Processing Technology 2004 , 153–154 ( 1–3 ), 145 – 150 .
  • Celentano , D. ; Palacios , M. ; Rojas , E. ; Cruchaga , M. ; Artigas , A. ; Monsalve , A. Simulation and experimental validation of multiple-step wire drawing processes . Finite Elements in Analysis and Design 2009 , 45 , 163 – 180 .
  • Wriggers , P. Computational Contact Mechanics ; John Wiley : New York , 2002 .
  • Celentano , D. ; Cabezas , E. ; García , C. ; Monsalve , A. Characterization of the mechanical behaviour of materials in the tensile test: experiments and simulation . Modelling and Simulation in Materials Science and Engineering 2004 , 12 , 425 – 444 .
  • Annual Book of ASTM Standards, A370 97a. Standard Test Methods and Definitions for Mechanical Testing of Steel Products, 1988.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.