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Articles

The Effect of Phosphorus Additions and Cooling Rate on the Precipitation of M23C6 in Austenite

Pages 337-343 | Published online: 18 Jul 2013

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Read on this site (4)

Y. Mandiang, A. Ciss, G. Sissoko & G. Cizeron. (2001) Influence of thermal aging on microstructural evolution and mechanical properties in titanium modified type 316 stainless steel containing phosphorus. Materials Science and Technology 17:3, pages 315-320.
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Y. Mandiang & G. Cizeron. (1996) Precipitation of M3P phosphide in titanium modified type 316 stainless steel. Materials Science and Technology 12:9, pages 771-775.
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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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Jin Yu & H. J. Grabke. (1983) Effects of P addition on creep of 1 Cr–Mo–V steels. Metal Science 17:8, pages 389-396.
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Articles from other publishers (13)

Yufei Qiao, Tian Liang, Sihan Chen, Yuanyuan Ren, Chunming Liu, Yue Qi, Yingche Ma & Kui Liu. (2023) Effect of Phosphorous Content on the Microstructure and Stress Rupture Properties of 15Cr–15Ni Titanium-Modified Austenitic Stainless Steel. Crystals 13:4, pages 703.
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Seyedmehdi Hosseini & Pavel Novák. (2019) On the Formation of AlNiCo Nano-Quasicrystalline Phase during Mechanical Alloying through Electroless Ni-P Plating of Starting Particles. Materials 12:14, pages 2294.
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Jia-Hong Ke, George A. Young & Julie D. Tucker. (2019) Ab initio study of phosphorus effect on vacancy-mediated process in nickel alloys – An insight into Ni2Cr ordering. Acta Materialia 172, pages 30-43.
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E. Yamasue & K. Matsubae. 2019. Phosphorus Recovery and Recycling. Phosphorus Recovery and Recycling 349 364 .
Min-Ho Jang, Jun-Yun Kang, Jae Hoon Jang, Tae-Ho Lee & Changhee Lee. (2017) The role of phosphorus in precipitation behavior and its effect on the creep properties of alumina-forming austenitic heat-resistant steels. Materials Science and Engineering: A 684, pages 14-21.
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Katsuhiko Ohishi, Toshihiro Uehara & Masao Takeyama. (2016) Effect of Phosphorus on Age-hardening Behavior of Austenitic Heat Resisting Steels. Tetsu-to-Hagane 102:7, pages 389-395.
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H. Pommier, E.P. Busso, T.F. Morgeneyer & A. Pineau. (2016) Intergranular damage during stress relaxation in AISI 316L-type austenitic stainless steels: Effect of carbon, nitrogen and phosphorus contents. Acta Materialia 103, pages 893-908.
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Frank Garner. 2006. Materials Science and Technology. Materials Science and Technology.
Masao SHIMADA. (1989) Effect of Phosphorus and Boron on Cryogenic Mechanical Properties of a Sensitized 17 Cr-12.5 Ni-2 Mo-0.05 Nb-0.2 N Steel. Tetsu-to-Hagane 75:12, pages 2226-2233.
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Yoshihiro KONDO, Tomohide MATSUMURA, Jirou NAMEKATA, Yasuhiro YAMAGUCHIMasaru TANAKAFumio HANGAI. (1988) Degradation of SUS 304 by High Temperature Exposure and Recovering Heat-treatment Effect. Tetsu-to-Hagane 74:5, pages 887-894.
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Jun Hwa Hong, Soo Woo Nam & Sun Pil Choi. (1986) The influences of sulphur and phosphorus additions on the creep cavitation characteristics in type 304 stainless steels. Journal of Materials Science 21:11, pages 3966-3976.
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R. W. K. Honeycombe. (1983) Some Aspects of Micro-Alloying. Transactions of the Japan Institute of Metals 24:4, pages 177-189.
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Makoto KIKUCHI & Ryohei TANAKA. (1977) Effect of High Temperature Aging on the Microstructure of Cr-Ni Austenitic Steels. Tetsu-to-Hagane 63:10, pages 1738-1749.
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