Marangoni Convection and Welding Penetration in A-TIG Welding(Physics, Processes, Instruments & Measurements, INTERNATIONAL SYMPOSIUM OF JWRI 30TH ANNIVERSARY)
スポンサーリンク
概要
- 論文の詳細を見る
The activated flux TIG (A-TIG) welding process is now considered as a feasible alternative to increase the process productivity using a thin layer of an active flux that results in a significant increase in weld penetration. The mechanisms by which five single oxide fluxes, Cu_2O, NiO, SiO_2, CaO and Al_2O_3, exert their effects on depth/width ratios in SUS304 stainless steel are studied. The oxygen dissolved in the weld plays an important role in altering the liquid pool surface tension gradient, the Marangoni convection mode and hence the weld penetration. The effective range of oxygen in the weld is between 70-300ppm. Too high or too low oxygen content in the weld pool does not increase the depth/width ratio. The change in the surface tension of the molten pool is considered to be the principal mechanism for increased penetration. The decomposition of the flux significantly depends on the flux stability.
- 大阪大学の論文
著者
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NOGI Kiyoshi
Joining and Welding Research Institute, Osaka University
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TANAKA Manabu
Osaka university
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Lu Shanping
Joining and Welding Research Institute, Osaka University
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Tanaka M
Joining And Welding Research Institute Osaka University
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FUJII Hidetoshi
Osaka University
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NOGI Kiyoshi
Osaka University
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Nogi Kiyashi
Osaka University
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Tanaka Manabu
Joining And Welding Research Institute Osaka University
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Tanaka Manabu
Osaka Univ. Osaka Jpn
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LU Shanping
Osaka University
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SUGIYAMA Hiroyuki
Joining and Welding Research Institute, Osaka University
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Hiroyuki Sugiyama
Osaka University
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Nogi K
Joining And Welding Research Institute Osaka University
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Nogi Kiyoshi
Osaka Univ. Osaka Jpn
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Sugiyama Hiroyuki
Joining And Welding Research Institute Osaka University
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Fujii Hidetoshi
Osaka Univ.
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SUGIYAMA Hiroyuki
Osaka University
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