溶接熱サイクルに伴う表面加工層での硬さ変化に基づいた表面機械加工後の溶接により生じる残留応力分布の数値解析

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Published in溶接学会論文集 Vol. 32; no. 4; pp. 267 - 275
Main Authors 伊原, 涼平, 岡野, 成威, 望月, 正人
Format Journal Article
LanguageJapanese
Published 一般社団法人 溶接学会 2014
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Author 望月, 正人
伊原, 涼平
岡野, 成威
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  organization: 大阪大学 大学院工学研究科
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  fullname: 望月, 正人
  organization: 大阪大学 大学院工学研究科
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6) K. Takeda, A. Taniyama, T. Kudo, H. Uchida and J. Mizuki: SCC Behavior at Hardened Surface Layer of 316 (LC) in Water on High Temperature, Zairyo-to-Kankyo, 58-6 (2009), 228-233. (in Japanese
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16) H. Ikawa, H. Oshige and H. Date: Calculation of the Hardness Distribution in Weld-Heat Affected Zone by Recrystallization Equation - Quantitative Study of Recrystallization in Weld Heat Affected Zone (1) -, Journal of the Japan Welding Society, 48-11 (1979), 980-984. (in Japanese
17) K. Satoh: Transient Thermal Stresses of Weld Heat-Affected Zone by Both-Ends-Fixed Bar Analogy, Transactions of Japan Welding Society, 3-1 (1972), 125-134.
7) R. M' Saoubi, J. C. Outeiro, B. Changeux, J. L. Lebrun and A. Morao Dias: Residual stress analysis in orthogonal machininh of standard and resulfurrized AISI 316L steels, Journal of Materials Processing Technology, 96 (1999), 225-233.
8) D. Umbrello, R. M' Saoubi and J. C. Outeiro: The influence of Johnson-Cook material constants on finite element simulation of machining of AISI 316L steel, International Journal of Machine Tools and Manufacture, 47 (2007), 462-470.
11) R. Ihara and M. Mochizuki: Effect of Processing Conditions on Residual Stress Distributions by Bead-on-plate Welding after Surface Machining, Journal of the Society of Materials Science, Japan, 63-7 (2014), 551-556. (in Japanese
14) S. Okano, M. Tanaka and M. Mochizuki: Arc physics based heat source modeling for numerical simulation of weld residual stress and distortion, Science and Technology of Welding and Joining, 16-3 (2011), 209-214.
10) R. Ihara, T. Hashimoto and M. Mochizuki: Variation Behavior of Residual Stress Distribution by Manufacturing Processes in Welded Pipes of Austenitic Stainless Steel, Journal of the Society of Materials Science, Japan, 61-12 (2012), 961-966. (in Japanese
2) The Japan Society of Mechanical Engineers (JSME): Codes for Nuclear Power Generation Facilities - Rules on Fitness-for-Service for Nuclear Power Plants, JSME S NA 1-2008, (2008). (in Japanese
3) R. N. Parkins: Strain rate effects in stress corrosion cracking, Corrosion, 46-3 (1990), 178-189.
13) H. Mori, J. Katsuyama, M. Mochizuki, K. Nishimoto and M. Toyoda: Study on Mechanism of Intergranular Stress Corrosion Cracking and Analysis of Residual Stress and Work Hardening in Welds of Low-Carbon Austenitic Stainless Steel with Hard Surface Machining, Zairyo-to-Kankyo, 56-12 (2007), 568-575. (in Japanese
15) A. Ikezaki, S. Okano and M. Mochizuki: A Discussion about Distribution of Temperature and Inherent Strain dominating Weld Distortion, Proceedings of Symposium on Welding Structure, (2011), 523-530. (in Japanese
9) P. S. Prevey, P. W. Mason, D. J. Hornbach and J. P. Molkenthin: Effect of Prior Machining Deformation on the Development of Tensile Residual Stresses in Weld-Fabricated Nuclear Components, Journal of Materials Engineering and Performance, 5-1 (1996), 51-56.
12) S. Matsuoka: Relationship between 0.2% Proof Stress and Vickers Hardness of Work-hardened Low Carbon Austenitic Stainless Steel, 316SS, Transactions of the Japan Society of Mechanical Engineers A, 70-698 (2004), 1535-1541. (in Japanese
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Title 溶接熱サイクルに伴う表面加工層での硬さ変化に基づいた表面機械加工後の溶接により生じる残留応力分布の数値解析
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