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Articles

Diffusion of 99Mo, 95Zr, and 60Co in 316 stainless steel

Pages 525-528 | Published online: 18 Jul 2013

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A. W. James & C. M. Shepherd. (1989) Some effects of heat treatment on grain boundary chemistry and precipitation in type 316 steel. Materials Science and Technology 5:4, pages 333-345.
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Norikatsu Yokota & Shigehiro Shimoyashiki. (1988) Investigation of Self-Welding Rate of Structural Materials in Liquid Sodium. Nuclear Technology 81:3, pages 407-414.
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R. V. Patil & B. D. Sharma. (1982) Lattice and grain-boundary diffusion of 59Fe in 316 stainless steel. Metal Science 16:8, pages 389-392.
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Articles from other publishers (17)

Roopam Jain, Manasij Yadava, Aparna Tripathi & N.P. Gurao. (2023) Rate controlling deformation mechanisms in SS316L stainless steel manufactured using laser powder bed fusion technique. International Journal of Plasticity 171, pages 103787.
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Yan Chen, Boyuan Gou, Xin Xu, Xiangdong Ding, Jun Sun & Ekhard K.H. Salje. (2023) Multibranches of acoustic emission as identifier for deformation mechanisms in additively manufactured 316L stainless steel. Additive Manufacturing 78, pages 103819.
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Hsueh-Chuan Hsu, Ka-Kin Wong, Shih-Ching Wu, Po-Jen Hou & Wen-Fu Ho. (2023) Effects of heat treatment through muffle furnace or microwave on microstructure and corrosion behavior of 316L stainless steel produced by selective laser melting. MRS Communications 13:1, pages 177-183.
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J.-B. Génin, L. Brissonneau & T. Gilardi. (2016) OSCAR-Na: A New Code for Simulating Corrosion Product Contamination in SFR. Metallurgical and Materials Transactions E 3:4, pages 291-298.
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Shigeru Hirata, Takanori Ito, Masatoshi Mitsuhara & Minoru Nishida. (2014) Effect of Mo on Softening Behavior During Annealing in Cold-Rolled High Mn Austenitic Stainless Steels. Tetsu-to-Hagane 100:3, pages 406-413.
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Satoru Kobayashi, Kota Sawada, Toru Hara, Hideaki Kushima & Kazuhiro Kimura. (2014) The formation and dissolution of residual δ ferrite in ASME Grade 91 steel plates. Materials Science and Engineering: A 592, pages 241-248.
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Rajeev Kapoor & I.S. Batra. (2004) On the α′ to γ transformation in maraging (grade 350), PH 13-8 Mo and 17-4 PH steels. Materials Science and Engineering: A 371:1-2, pages 324-334.
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O Okada, K Nakata & S Kasahara. (1999) Effects of thermal sensitization on radiation-induced segregation in type 304 stainless steel irradiated with He-ions. Journal of Nuclear Materials 265:3, pages 232-239.
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B. T. J. Stoop & G. Den Ouden. (1993) Diffusion Bonding of Silicon Nitride to Austenitic Stainless Steel without Interlayers. Metallurgical Transactions A 24:8, pages 1835-1843.
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Jyrki Miettinen. (2013) Mathematical simulation of interdendritic solidification of low-Alloyed and stainless steels. Metallurgical Transactions A 23:4, pages 1155-1170.
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A. Kühl & D. Bergner. (2004) Chemische Diffusion von Molybdän in hochlegierten austenitischen CrNiMo(N)‐Stählen. Materialwissenschaft und Werkstofftechnik 22:8, pages 316-319.
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C. Donadille, R. Valle, P. Dervin & R. Penelle. (1989) Development of texture and microstructure during cold-rolling and annealing of F.C.C. alloys: Example of an austenitic stainless steel. Acta Metallurgica 37:6, pages 1547-1571.
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A. W. James & C. M. Shepherd. (1989) Some effects of heat treatment on grain boundary chemistry and precipitation in type 316 steel. Materials Science and Technology 5:4, pages 333-345.
Crossref
M. V. Polley & M. E. Pick. 1986. WATER CHEMISTRY OF NUCLEAR REACTOR SYSTEMS 4. WATER CHEMISTRY OF NUCLEAR REACTOR SYSTEMS 4 63 70 .
W.J.S. Yang. (1985) Diffusion-induced grain boundary migration in an irradiated Ti-modified austenitic stainless steel. Journal of Nuclear Materials 127:1, pages 77-87.
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P. Delobelle & C. Oytana. (1984) Experimental study of the flow rules of a 316 stainless steel at high and low stresses. Nuclear Engineering and Design 83:3, pages 333-348.
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Robert A. Varin. (1984) Grain boundary diffusion and free energy during the recrystallization of type 316 stainless steel. Materials Science and Engineering 66:1, pages 97-105.
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