Suggestion of welding procedure for compressive residual stress induction by using low transformation temperature welding materials.

Author:

YAMAMOTO Junji1,HIRAOKA Kazuo2,MOCHIZUKI Masahito3

Affiliation:

1. Hitachi Construction Machinery Co., Ltd.

2. Joining and Welding Research Institute, Osaka University.

3. Graduate School of Engineering, Osaka University.

Publisher

Japan Welding Society

Subject

Metals and Alloys,Surfaces, Coatings and Films,Mechanical Engineering,Mechanics of Materials

Reference10 articles.

1. 1) A. Ohta, O. Watanabe, K. Matsuoka, C. Shiga, S. Nishijima, Y. Maeda, N. Suzuki and T. Kubo: Fatigue Strength improvement by using newly developed low transformation temperature welding material, Welding in the World, 43-6 (1999), 38-42.

2. 2) A. Ohta, O. Watanabe, K. Matsuoka, Y. Maeda and T. Kubo: Fatigue strength improvement of box welds by low transformation temperature welding wire and PWHT, Welding in the World, 44-3 (2000), 19-23.

3. 3) A. Ohta, O. Watanabe, K. Matsuoka, C. Shiga, S. Nishijima, Y. Maeda, N. Suzuki and T. Kubo: Fatigue Strength Improvement of Box Welded Joints by Using Low Transformation Temperature Welding Material, Quarterly Journal of the Japan Welding Society, 18-1 (2000), 141-145. (in Japanese)

4. 4) A. Ohta, O. Watanabe, K. Matsuoka, Y. Maeda, N. Suzuki and T. Kubo: Fatigue Strength Improvement of Box Welds by Using Low Transformation Temperature Welding Material Tripled Fatigue Strength by Postweld Heat, Quarterly Journal of the Japan Welding Society, 19-2 (2001), 373-376. (in Japanese)

5. 5) A. Ohta, Y. Maeda, N. Suzuki: Doubled Fatigue Strength of Box Welded by Low Transformation Temperature Welding Wire, Journal of Constructional Steel(JSSC), 7 (1999.11), 173-180. (in Japanese)

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