[1] |
LI T Q, WU C S, FENG Y H, et al. Modeling of the thermal fluid flow and keyhole shape in stationary plasma arc welding[J]. Int. J. Heat Fluid Fl.,2012, 34(4):117-125.
|
[2] |
LANCASTER J F. The Physics of Welding[M]. Oxford:Pergamon Press, 1984:268-280.
|
[3] |
FORTAIN J M. Plasma welding evolution & challenges[C]//ⅡW Doc. XⅡ-1948-08, 2008:1-11.
|
[4] |
WU C S, WANG H G, ZHANG Y M. A new heat source model for keyhole plasma arc welding in FEM analysis of the temperature profile[J]. Weld. J.,2006, 85(12):284-291.
|
[5] |
武传松,王怀刚,张明贤. 小孔等离子弧焊接热场瞬时演变过程的数值分析[J]. 金属学报,2006, 42(3):311-316. WU C S, WANG H G, ZHANG M X. Numerical analysis of transient development of temperature field in keyhole plasma arc welding[J]. Acta Metall. Sin., 2006, 42(3):311-316.
|
[6] |
WU C S, HU Q X, GAO J Q. An adaptive heat source model for finite-element analysis of keyhole plasma arc welding[J]. Comput. Mater. Sci., 2009, 46(7):167-172.
|
[7] |
李岩, 冯妍卉, 张欣欣, 等. 等离子弧焊接熔池演变过程的模拟和验证[J]. 工程热物理学报, 2012, 33(8):1395-1399. LI Y, FENG Y H, ZHANG X X, et al. Simulation and validation of melten weld pool evolution in plasma arc welding[J]. Journal of Engineering Thermophysics, 2012, 33(8):1395-1399.
|
[8] |
FAN H G, KOVACEVIC R. Keyhole formation and collapse in plasma arc welding[J]. J. Phys. D:Appl. Phys., 1999, 32(11):2902-2909.
|
[9] |
ZHANG T, WU C S, FENG Y H. Numerical analysis of heat transfer and fluid flow in keyhole plasma arc welding[J]. Numer. Heat Trans. A, 2011, 60(8):685-698.
|
[10] |
张涛,武传松,陈茂爱. 穿孔等离子弧焊接熔池流动和传热过程的数值模拟[J]. 金属学报, 2012, 48(9):1025-1032. ZHANG T, WU C S, CHEN M A. Modelling fluid flow and heat transfer phenomena in keyholing stage of plasma arc welding[J]. Acta Metall. Sin., 2012, 48(9):1025-1032.
|
[11] |
WU C S, ZHANG T, FENG Y H. Numerical analysis of the heat and fluid flow in a weld pool with a dynamic keyhole[J]. Int. J. Heat Fluid Fl., 2013, 40(4):186-197.
|
[12] |
王小杰,武传松,陈茂爱. 等离子弧定点焊熔池穿孔过程的数值分析[J]. 金属学报, 2010,46(8):984-990. WANG X J, WU C S, CHEN M A. Numerical simulation of weld pool keyholing process in stationary plasma arc welding[J]. Acta Metall. Sin., 2010, 46(8):984-990.
|
[13] |
SUN J H, WU C S, FENG Y H. Modeling the transient heat transfer for the controlled pulse key-holing process in plasma arc welding[J]. Int. J. Therm. Sci., 2011, 50(9):1664-1671.
|
[14] |
霍玉双,武传松,陈茂爱. 等离子弧焊接小孔形状和穿孔过程的数值分析[J]. 金属学报, 2011, 47(6):706-712. HUO Y S, WU C S, CHEN M A. Numerical simulation of keyhole shape and transformation from partial to open states in plasma arc welding[J]. Acta Metall. Sin., 2011, 47(6):706-712.
|
[15] |
李岩, 冯妍卉, 张欣欣, 等. 等离子弧焊接穿孔、相变传热与流动的耦合过程[J]. 工程热物理学报, 2014, 35(5):939-943. LI Y, FENG Y H, ZHANG X X, et al. Coupled phenomena of keyhole, heat transfer and molten flow in plasma arc welding[J]. Journal of Engineering Thermophysics, 2014, 35(5):939-943.
|
[16] |
HUO Y S, WU C S. Modeling the keyhole shape and dimension in plasma arc welding[J]. China Welding, 2009, 18(6):17-20.
|
[17] |
LI Y, FENG Y H, ZHANG X X, et al. An improved simulation of heat transfer and fluid flow in plasma arc welding with modified heat source model[J]. Int. J. Therm. Sci., 2013, 64(2):93-104.
|
[18] |
HIRT C W, NICHOLS B D. Volume of fluid (VOF) method for the dynamics of free boundaries[J]. J. Comput. Phys., 1981, 39(1):201-225.
|
[19] |
LI Y, FENG Y H, ZHANG X X, et al. Energy propagation in plasma arc welding with keyhole tracking[J]. Energy, 2014, 64(1):1044-1056.
|
[20] |
LIU Z M, WU C S, CHEN M A. Experimental sensing of the keyhole exit deviation from the torch axis in plasma arc welding[J]. Int. J. Adv. Manuf. Technol., 2014, 71(3):1209-1219.
|
[21] |
LI T Q, WU C S. Numerical simulation of plasma arc welding with keyhole-dependent heat source and arc pressure distribution[J]. Int. J. Adv. Manuf. Technol., 2015, 78(4):593-602.
|