溶接電流・ワイヤ送給制御によるGMA短絡移行プロセスのシミュレーション

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Published in溶接学会論文集 Vol. 34; no. 1; pp. 50 - 56
Main Authors 平田, 好則, 新田, 夏規, 荻野, 陽輔, 木花, 翔吾
Format Journal Article
LanguageJapanese
Published 一般社団法人 溶接学会 2016
Online AccessGet full text
ISSN0288-4771
2434-8252
DOI10.2207/qjjws.34.50

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Author 新田, 夏規
平田, 好則
木花, 翔吾
荻野, 陽輔
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  fullname: 荻野, 陽輔
  organization: 大阪大学大学院工学研究科
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  fullname: 木花, 翔吾
  organization: 大阪大学大学院工学研究科
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References 9) 丸尾,平田,吉田:橋絡液柱の破断に要する電流値と通電時間 -橋絡移行におけるピンチ力の効果(第2報)-,溶接学会論文集,Vol.7 (1989) No.4, pp.478-484.
13) J. U. Brackbill, D. B. Kothe, C. Zemach: A Continuum Method for Modeling Surface Tension, J. Computational Physics, Vol.100 (1992) No.02, pp.335-354.
1) 恵良,井手,上園,上山,平田:Controlled Bridge Transfer(CBT法)の適用による薄鋼板の溶接,溶接学会論文集,Vol.27 (2009) No.3, pp.189-194.
8) K. Kadota and Y. Hirata: Numerical model of metal transfer using an electrically conductive liquid, Welding in the World, 55 (2011), 09/10, pp.50-55.
10) Y. Hirata, M. Onda, T. Osamura and T. Ohji: Breakup Time of Liquid Metal Bridge in Short- Circuiting Transfer Process of GMA Welding, IIW Doc.212-936-98 (1998).
6) S. K. Choi, C. D. Yoo and Y-S. Kim: The dynamic analysis of metal transfer in pulsed current gas metal arc welding, J. Physics D: Applied Physics, Vol.31 (1998), pp.207-215.
12) C. W. Hirt, B. D. Nichols: Volume of Fluid (VOF) Method for the Dynamics of Free Boundaries, J. Computational Physics, Vol.39 (1981) No.1, pp.201-225.
14) 平田:溶接アークプロセスの物理 [III] -電極ワイヤの溶融速度と温度分布-,溶接学会誌,Vol.63 (1994) No.7, pp.484-488.
3) K. Himmelbauer: The CMT process -A revolution in welding technology, IIW Doc XII-1845-05 (2005) 20-27
4) C. G. Pickin and K. Young: Evaluation of cold metal transfer (CMT) process for welding aluminum alloy, Science and Technology of Welding and Joining, Vol.11 (2006) No.5, pp.583-585.
5) J. Haidar and J. J. Lowke: Predictions of metal droplet formation in arc welding, J. Physics D: Applied Physics, Vol.29 (1996), pp.2951-2960.
7) G. Wang, P. G. Huang and Y. M. Zhang: Numerical analysis of metal transfer in gas metal arc welding, Metal. Mater. Trans. B, Vol.34B (2003), pp.345-353.
11) 平田,長村,恩田,安藤,黄地:短絡移行プロセスのモデル化,溶接学会論文集,Vol.22 (2004) No.2, pp.224-232.
2) 恵良,井手,上園,上山,平田:Controlled Bridge Transfer(CBT法)によるステンレス鋼ミグ溶接のスパッタ低減,溶接学会論文集,Vol.27 (2009) No.3, pp.195-201.
References_xml – reference: 3) K. Himmelbauer: The CMT process -A revolution in welding technology, IIW Doc XII-1845-05 (2005) 20-27
– reference: 1) 恵良,井手,上園,上山,平田:Controlled Bridge Transfer(CBT法)の適用による薄鋼板の溶接,溶接学会論文集,Vol.27 (2009) No.3, pp.189-194.
– reference: 10) Y. Hirata, M. Onda, T. Osamura and T. Ohji: Breakup Time of Liquid Metal Bridge in Short- Circuiting Transfer Process of GMA Welding, IIW Doc.212-936-98 (1998).
– reference: 14) 平田:溶接アークプロセスの物理 [III] -電極ワイヤの溶融速度と温度分布-,溶接学会誌,Vol.63 (1994) No.7, pp.484-488.
– reference: 5) J. Haidar and J. J. Lowke: Predictions of metal droplet formation in arc welding, J. Physics D: Applied Physics, Vol.29 (1996), pp.2951-2960.
– reference: 13) J. U. Brackbill, D. B. Kothe, C. Zemach: A Continuum Method for Modeling Surface Tension, J. Computational Physics, Vol.100 (1992) No.02, pp.335-354.
– reference: 4) C. G. Pickin and K. Young: Evaluation of cold metal transfer (CMT) process for welding aluminum alloy, Science and Technology of Welding and Joining, Vol.11 (2006) No.5, pp.583-585.
– reference: 9) 丸尾,平田,吉田:橋絡液柱の破断に要する電流値と通電時間 -橋絡移行におけるピンチ力の効果(第2報)-,溶接学会論文集,Vol.7 (1989) No.4, pp.478-484.
– reference: 11) 平田,長村,恩田,安藤,黄地:短絡移行プロセスのモデル化,溶接学会論文集,Vol.22 (2004) No.2, pp.224-232.
– reference: 8) K. Kadota and Y. Hirata: Numerical model of metal transfer using an electrically conductive liquid, Welding in the World, 55 (2011), 09/10, pp.50-55.
– reference: 7) G. Wang, P. G. Huang and Y. M. Zhang: Numerical analysis of metal transfer in gas metal arc welding, Metal. Mater. Trans. B, Vol.34B (2003), pp.345-353.
– reference: 6) S. K. Choi, C. D. Yoo and Y-S. Kim: The dynamic analysis of metal transfer in pulsed current gas metal arc welding, J. Physics D: Applied Physics, Vol.31 (1998), pp.207-215.
– reference: 2) 恵良,井手,上園,上山,平田:Controlled Bridge Transfer(CBT法)によるステンレス鋼ミグ溶接のスパッタ低減,溶接学会論文集,Vol.27 (2009) No.3, pp.195-201.
– reference: 12) C. W. Hirt, B. D. Nichols: Volume of Fluid (VOF) Method for the Dynamics of Free Boundaries, J. Computational Physics, Vol.39 (1981) No.1, pp.201-225.
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Title 溶接電流・ワイヤ送給制御によるGMA短絡移行プロセスのシミュレーション
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