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Original Articles

The oxygen and nitrogen content of multilayer weld metal deposited by submerged‐arc welding

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Pages 593-599 | Published online: 09 Dec 2009

References

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  • Nishiyama and Terajima . 1984 . ‘Nitrogen absorption in submerged‐arc weld metal’ . Quarterly Journal of the Japan Welding Society , 2 ( 3 ) : 540 – 546 .
  • Nishiyama and Terajima . 1984 . ‘The effects of titanium and nitrogen upon 50 ‐60 kgf/mm2 grade high tension steel submerged‐arc weld metal structure and its toughness’ . Quarterly Journal of the Japan Welding Society , 2 ( 3 ) : 547 – 553 .
  • Watanabe , Kojima and Suzuki . 1982 . ‘Toughness of multilayered weld metal and the dominant factors’ . Journal of the Japan Welding Society , 51 (8) : 657 – 665 .
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  • 1975 . Journal of the Japan Welding Society , 44 ( 10 ) : 815 – 821 . As above (Report 2)
  • Kohno , Tamaki , Mori and Nagano . 1982 . ‘New fluxes for improved weld metal toughness in HSLA steels’ . Weld J , 61 (12) : 373s – 380s .
  • Shimizu , Iwamoto , Makino and Akamatsu . 1988 . ‘The oxygen and nitrogen content for the submerged arc welding process’ . Quarterly Journal of the Japan Welding Society , 6 ( 3 ) : 367 – 374 .
  • Shimizu , Iwamoto and Akamatsu . 1988 . ‘The oxygen and nitrogen content of three weld metals by submerged‐arc welding in argon atmosphere’ . Japan Welding Society , 19 (2) : 107 – 117 .
  • Suzuki Revised . ‘Welding handbook’ , 87 Sankai‐Do .
  • Nishiyama , Terajima and Hart , P H M . 1984 . ‘The effects of aluminium in steel plate upon submerged‐arc weld metal structure and toughness (Report 1)’ . Quarterly Journal of the Japan Welding Society , 2 ( 3 ) : 533 – 539 .

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