181
Views
0
CrossRef citations to date
0
Altmetric
Translated Articles

Numerical investigation for dominant factors in slag transfer and deposition process during metal active gas welding using incompressible smoothed particle hydrodynamics method

, , , , &

References

  • Nakayama S. A guide for appropriate choice of welding procedure. J Jpn Weld Soc. 1991;60(7):539–543. (in Japanese).
  • Oji S. Fundamentals of welding and joining processes. Oume-shi, Tokyo: Seikosha; 1996.
  • Japan Welding Society Welding Methods Research Committee. New welding arc phenomena. Naniwa-ku, Osaka: Sanpo Shuppan; 2021.
  • Kuwana T, Sato Y. Oxygen absorption by Fe-Mn and Fe-Si-Mn weld metal. Q J Jpn Weld Soc. 1989;7(1):49–56. (in Japanese)
  • Miyata M, Yamazaki K, Suzuki R, et al. Basic examination aimed to develop low slag welding process for galvanized steel. Preprints of the National Meeting of Japan Welding Society; 2015. (in Japanese)
  • Uchihara M, Takahashi M, Sakoda A, et al. Improvement of the corrosion resistance of gas metal arc weld with E-coat by newly developed shielding gas. Materia Japan. 1997;36(4):388–390. (in Japanese)
  • Fujimoto H, Akioka K, Tokunaga M. Effects of shot blasting on corrosion properties after electrodeposition and fatigue properties of arc welds in automotive steel sheets. J Jpn Soc Technol Plast. 2007;58(675):39–43. (in Japanese)
  • Boukani HH, Viens M, Tahan SA, et al. Case study on the integrity and nondestructive inspection of flux-cored arc welded joints of Francis turbine runners. Int J Adv Manuf Technol. 2018;98(5–8):2201–2211.
  • Ono H, Obata R, Teramoto T, et al. Observation of penetration shapes in narrow-gap MAG welding. Q J Jpn Weld Soc. 1983;1(1):83–90. (in Japanese).
  • Ahsan MRU, Cheepu M, Ashiri R, et al. Mechanisms of weld pool flow and slag formation location in cold metal transfer (CMT) gas metal arc welding (GMAW). Weld World. 2017;61(6):1275–1285.
  • Umehara Y, Suzuki R, Nakano T. Development of the innovative GMA wire improving the flow direction of molten pool. Q J Jpn Weld Soc. 2009;27(2):163s–1168.
  • Tanaka M. Arcs and TIG welding. Yosetsu Gakkai Shi. 2008;77(2):152–162. (in Japanese)
  • Tong M, Browne DJ. Smoothed particle hydrodynamics modelling of fluid flow and heat transfer in the pool during laser spot welding. IOP Conf Ser Mater Sci Eng. 2012;27:012080.
  • Ito M, Izawa S, Fukunishi Y, et al. Numerical simulation of a weld pool formation in a TIG welding using an incompressible SPH method. Q J Jpn Weld Soc. 2014;32(4):213–222. (in Japanese)
  • Shigeta M, Watanabe T, Izawa S, et al. Incompressible SPH simulation of double-diffusive convection phenomena. Int J Emerg Multidiscip Fluid Sci. 2009;1(1):1–18.
  • Ito M, Nishio Y, Izawa S, et al. Numerical simulation of joining process in a TIG welding system using incompressible SPH method. Q J Jpn Weld Soc. 2015;33(2):34s–338.
  • Komen H, Shigeta M, Tanaka M, et al. Numerical simulation of slag forming process during submerged arc welding using DEM-ISPH hybrid method. Weld World. 2018;62(6):1323–1330.
  • Ueno R, Komen H, Shigeta M, et al. Numerical simulation of droplet transfer with TiO2 flux column during flux cored arc welding by 3D smoothed particle hydrodynamics method. Q J Jpn Weld Soc. 2020;38(2):84s–88s.
  • Komen H, Shigeta M, Tanaka M, et al. Numerical investigation of heat transfer during submerged arc welding phenomena by coupled DEM-ISPH simulation. Int J Heat Mass Transf. 2021;171:121062.
  • Komen H, Shigeta M, Tanaka M. Numerical simulation of molten metal droplet transfer and weld pool convection during gas metal arc welding using incompressible smoothed particle hydrodynamics method. Int J Heat Mass Transf. 2018;121:978–985.
  • Ogino Y, Iida M, Asai S, et al. Numerical simulation of weld pool formation in submerged arc welding process. Q J Jpn Weld Soc. 2020;38(4):355–362. (in Japanese)
  • Cho DW, Park YD, Cheepu M. Numerical simulation of slag movement from marangoni flow for GMAW with computational fluid dynamics. Int Commun Heat Mass Transfer. 2021;125:105243.
  • Tsujimura Y. Study of the arc phenomena associated with metal vapour in gas metal arc welding and their heat source characteristics [Doctoral dissertation]. Engineering Department Graduate School, Osaka University; 2012.
  • Koshizuka S, Nobe A, Oka Y. Numerical analysis of breaking waves using the moving particle semi-implicit method. Int J Numer Meth Fluids. 1998;26(7):751–769.
  • Murphy AB. Transport coefficients of air, argon-air, nitrogen-air, and oxygen-air plasmas. Plasma Chem Plasma Process. 1995;15(2):279–307.
  • Murphy AB. Transport coefficients of helium and argon-helium plasmas. IEEE Trans Plasma Sci. 1997;25(5):809–814.
  • Lucy LB. A numerical approach to testing the fission hypothesis. Astron J. 1977;82:1013–1024.
  • Monaghan JJ. Smoothed particle hydrodynamics. Annu Rev Astron Astrophys. 1992;30(1):543–574.
  • Koshizuka S, Tamako H, Oka Y. A particle method for incompressible viscos flow with fluid fragmentation. Comput Fluid Dyn J. 1995;4:29–46.
  • Swegle JW, Hicks DL, Attaway SW. Smoothed particle hydrodynamics stability analysis. Comput Phys. 1995;116(1):123–134.
  • Richardson OW. LI. Some applications of the electron theory of matter. Lond Edinb Dublin Philos Mag J Sci. 1912;23(136):594–627.
  • Miyake Y, Fujii T, Fan Q. Estimation of the drag of a hemisphere on a flat plate. Trans JSME B. 2007;73(729):1167–1174. (in Japanese)
  • Fan HG, Kovacevic R. A unified model of transport phenomena in gas metal arc welding including electrode, arc plasma and molten metal. J Phys D Appl Phys. 2004;37(18):2531–2544.
  • Ozawa S, Takahashi S, Suzuki S, et al. Relationship of surface tension, oxygen partial pressure, and temperature for molten iron. Jpn J Appl Phys. 2011;50(11S):11RD05.

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.