Ir合金ツールによる304ステンレス鋼の摩擦攪拌接合
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Published in | 溶接学会論文集 Vol. 29; no. 4; pp. 305 - 311 |
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Main Authors | , , , |
Format | Journal Article |
Language | Japanese |
Published |
一般社団法人 溶接学会
2011
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Author | 丸子, 智弘 藤井, 英俊 宮澤, 智明 岩本, 祐一 |
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Author_xml | – sequence: 1 fullname: 宮澤, 智明 organization: 株式会社フルヤ金属 – sequence: 2 fullname: 岩本, 祐一 organization: 株式会社フルヤ金属 – sequence: 3 fullname: 丸子, 智弘 organization: 株式会社フルヤ金属 – sequence: 4 fullname: 藤井, 英俊 organization: 大阪大学 接合科学研究所 |
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Verma, ed., Wiley, (2011), 3-9. 21) M. Collier, R. Steel, T. Nelson, C. Sorensen and S. Packer: Grade development of polycrystalline cubic boron nitride for friction stir processing of ferrous alloys, Materials Science Forum, 426-432 (2003), 3011-3016. 10) Y. S. Sato, T. W. Nelson, C. J. Sterling, R. J. Steel and C. -O. Pattersson: Microstructure and mechanical properties of friction stir welded SAF 2507 super duplex stainless steel, Materials Science and Engineering A, 397 (2005), 376-384. 11) Y. S. Sato, N. Harayama, H. Kokawa, H. Inoue, Y. Tadokoro and S. Tsuge: Evaluation of microstructure and properties in friction stir welded superaustenitic stainless steel, Science and Technology of welding and Joining, 14-3 (2009), 202-209. 15) Y. Azuma, Y. Kaneko and T. Takasugi: Friction stir welding in stainless steel of type 430 using Ni-base dual two-phase intermetallic alloy, Quarterly Journal of the Japan Welding Society, 28-1 (2010), 116-122. (in Japanese 23) D. Marshall: Reducing fracture tendencies in PCBN FSW tools, NASA Scientific and Technical Aerospace Reports, 48-17 (2010), 258, AD-A524909, http://hdl.handle.net/100.2/ADA524909. 9) X. K. Zhu and Y. J. Chao: Numerical simulation of transient temperature and residual stresses in friction stir welding of 304L stainless steel, Journal of Materials Processing Technology, 146 (2004), 263-272. 1) W. M. Thomas, E. D. Nicholas, J. C. Needham, M. G. Murch, P. Temple-Smith, and C. J. Dawes: International Patent Application No. PCT/GB92/02203 and GB Patent Application No. 9125978.9, (1991). 3) A. P. Reynolds, W. Tang, M. Posada and J. DeLoach: Friction stir welding of DH36 steel, Science and Technology of Welding and Joining, 8-6 (2003), 455-460. 18) H. Fujii, L. Cui, N. Tsuji, M. Maeda, K. Nakata and K. Nogi: Friction stir welding of carbon steels, Materials Science and Engineering A, 429 (2006), 50-57. 2) H. Okamura, K. Aota and M. Ezumi: Friction stir welding of aluminum alloy and application to structure, Journal of Japan Institute of Light Metals, 50-4 (2000), 166-172. 17) H. J. Liu, J. C. Feng, H. Fujii and K. Nogi: Wear characteristics of a WC-Co tool in friction stir welding of AC4A + 30vol%SiCp composite, International Journal of Machine Tools & Manufacture, 45 (2005), 1635-1639. 27) H. J. Liu, H. Fujii, M. Maeda, K. Nogi: Tensile properties and fracture locations of friction-stir-welded joints of 2017-T351 aluminum alloy, Journal of Materials Processing Technology, 142 (2003), 692-696. 24) T. Miyazawa, Y. Iwamoto, T. Maruko and H. Fujii: Development of Ir based tool for friction stir welding of high temperature materials, Science and Technology of welding and Joining, 16-2 (2011), 188-192. 20) R. Ohashi, M. Fujimoto, S. Mironov, Y. S. Sato and H. Kokawa: Effect of contamination on microstructure in friction stir spot welded DP590 steel, Science and Technology of Welding and Joining, 14-3 (2009), 221-227. 5) A. P. Reynolds, W. Tang, T. Gnaupel-Herold and H. Prask: Structure, Properties, and residual stress of 304L stainless steel friction stir welds, Scripta Materialia, 48 (2003), 1289-1294. 12) T. Ishikawa, H. Fujii, K. Genchi, S. Iwaki, S. Matsuoka and K. Nogi: High speed-high quality friction stir welding of austenitic stainless steel, ISIJ International, 49-6 (2009), 897-901. 6) S. H. C. Park. Y. S. Sato, H. Kokawa, K. Okamoto, S. Hirano and M. Inagaki: Rapid formation of the sigma phase in 304 stainless steel during friction stir welding, Scripta Materialia, 49 (2003), 1175-1180. 7) S. H. C. Park, Y. S. Sato, H. Kokawa, K. Okamoto, S. Hirano and M. Inagaki, Corrosion resistance of friction stir welded 304 stainless steel, Scripta Materialia, 51 (2004), 101-105. 8) S. H. C. Park, Y. S. Sato, H. Kokawa, K. Okamoto, S. Hirano and M. Inagaki: Microstructural characterization of stir zone containing residual ferrite in friction stir welded 304 austenitic stainless steel, Science and Technology of Welding and Joining, 10-5 (2005), 550-556. 14) B. Thompson and S. S. Babu: Tool degradation characterization in the friction stir welding of hard metals, Welding journal, 89 (2010), 256s-261s. 4) H. S. Park, T. Kimura, T. Murakami, Y. Nagano, K. Nakata and M. Ushio: Microstructure and mechanical properties of friction stir welds of 60%Cu-40%Zr copper alloy, Materials Science and Engineering A, 371 (2004), 160-169. 13) Y. C. Chen, H. Fujii, T. Tsumura, Y. Kitagawa, K. Nakata, K. Ikeuchi, K. Matsubayashi, Y. Michishita, Y. Fujiya and J. Katoh: Friction stir processing of 316L stainless steel plate, Science and Technology of Welding and Joining, 14-3 (2009), 197-201. 28) K. Nakamura, M. Miyake, Y. S. Sato and H. Kokawa: Effect of welding parameters on several properties in friction stir welded 304 stainless steel, Preprints of the National Meeting of JWS, 87 (2010), 266-267. 26) A. Oosterkamp, L. D. Oosterkamp and A. Nordeide: 'Kissing bond' phenomena in solid-state welds of aluminum alloys, Welding Journal, 83 (2004), 225S-231S. |
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Title | Ir合金ツールによる304ステンレス鋼の摩擦攪拌接合 |
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