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Original Articles

Orienting of Fe16N2 particles in α-iron by an external magnetic field

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Pages 471-483 | Received 01 Sep 1986, Accepted 25 Feb 1987, Published online: 20 Aug 2006

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C. Bjerkén & A. R. Massih. (2017) Oriented ordering near line defects in crystals. Philosophical Magazine 97:27, pages 2437-2467.
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H. Fujii, S. Tsurekawa, T. Matsuzaki & T. Watanabe. (2006) Evolution of a sharp {110} texture in microcrystalline Fe78Si9B13 during magnetic crystallization from the amorphous phase. Philosophical Magazine Letters 86:2, pages 113-122.
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Hui-Jin Choe, Takashi Fukuda, Sahar Farjami, Tomoyuki Terai & Tomoyuki Kakeshita. (2014) The role of magnetic fields on the arrangement of ordered variants of L10-type Fe–55Pd (at.%) alloy. Acta Materialia 66, pages 63-68.
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Hui-Jin Choe, Izuru Miyazaki, Tomoyuki Terai, Tomoyuki Kakeshita, Sukeyoshi Yamamoto & Mitsuharu Yonemura. 2013. PRICM. PRICM 687 693 .
Guo-qing CHEN, Xiao REN, Wen-long ZHOU & Jun-shan ZHANG. (2013) Atomic interdiffusion in Ni?Cu system under high magnetic field. Transactions of Nonferrous Metals Society of China 23:8, pages 2460-2464.
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Richard Wagner, Reinhard Kampmann & Peter W. Voorhees. 2006. Materials Science and Technology. Materials Science and Technology.
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Hui-jin Choe, Izuru Miyazaki, Tomoyuki Terai, Tomoyuki Kakeshita, Sukeyoshi Yamamoto & Mitsuharu Yonemura. 2016. Proceedings of the 8th Pacific Rim International Congress on Advanced Materials and Processing. Proceedings of the 8th Pacific Rim International Congress on Advanced Materials and Processing 687 693 .
Tadao Watanabe. (2011) Grain boundary engineering: historical perspective and future prospects. Journal of Materials Science 46:12, pages 4095-4115.
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Hiromichi Fujii & Sadahiro Tsurekawa. (2011) Diffusion of carbon in iron under magnetic fields. Physical Review B 83:5.
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G.H. Zhang, M. Enomoto, N. Hosokawa, M. Kagayama & Y. Adachi. (2009) Influence of magnetic field on ferrite transformation in a Fe–C–Mn alloy. Journal of Magnetism and Magnetic Materials 321:24, pages 4010-4016.
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A.R. Massih & L.O. Jernkvist. (2009) Stress orientation of second-phase in alloys: Hydrides in zirconium alloys. Computational Materials Science 46:4, pages 1091-1097.
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Xiao Ren, Guo-Qing Chen, Wen-Long Zhou, Cheng-Wei Wu & Jun-Shan Zhang. (2009) Effect of high magnetic field on intermetallic phase growth in Ni–Al diffusion couples. Journal of Alloys and Compounds 472:1-2, pages 525-529.
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Tadao Watanabe, Sadahiro Tsurekawa, Xiang Zhao & Liang Zuo. 2009. Microstructure and Texture in Steels. Microstructure and Texture in Steels 43 82 .
Zhifeng Li, Jie Dong, Xiaoqing Zeng, Cen Lu, Wenjiang Ding & Zhongming Ren. (2008) Influence of a strong static magnetic field on the discontinuous precipitation reaction in Mg?9Al?1Zn alloy. Journal of Alloys and Compounds 455:1-2, pages 231-235.
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Z.F. Li, J. Dong, X.Q. Zeng, C. Lu, W.J. Ding & Z.M. Ren. (2007) Influence of strong static magnetic field on intermediate phase growth in Mg–Al diffusion couple. Journal of Alloys and Compounds 440:1-2, pages 132-136.
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T. Watanabe, S. Tsurekawa, X. Zhao & L. Zuo. (2006) Grain boundary engineering by magnetic field application. Scripta Materialia 54:6, pages 969-975.
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S. Nakamichi, S. Tsurekawa, Y. Morizono, T. Watanabe, M. Nishida & A. Chiba. (2005) Diffusion of carbon and titanium in γ -iron in a magnetic field and a magnetic field gradient. Journal of Materials Science 40:12, pages 3191-3198.
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S. Tsurekawa, K. Okamoto, K. Kawahara & T. Watanabe. (2005) The control of grain boundary segregation and segregation-induced brittleness in iron by the application of a magnetic field. Journal of Materials Science 40:4, pages 895-901.
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Masato Enomoto. (2005) Enhanced Phenomena in Metals with Electric and Magnetic Fields: II Magnetic Fields. MATERIALS TRANSACTIONS 46:6, pages 1088-1092.
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Sadahiro Tsurekawa, Koichi Kawahara, Kousuke Okamoto, Tadao Watanabe & Roy Faulkner. (2004) Application of magnetic field to the control of grain boundary segregation in iron. Materials Science and Engineering: A 387-389, pages 442-446.
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K Harada, S Tsurekawa, T Watanabe & G Palumbo. (2003) Enhancement of homogeneity of grain boundary microstructure by magnetic annealing of electrodeposited nanocrystalline nickel. Scripta Materialia 49:5, pages 367-372.
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W. Hu & G. Gottstein. (2002) Investigation of microstructure and chemical stability in composites of Ni3Al reinforced by alumina–silica fibers. Materials Science and Engineering: A 338:1-2, pages 313-322.
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Z. Q. Liu, Y. X. Chen, D. X. Li, Z. K. Hei & H. Hashimoto. (2001) Microstructural investigation on the precipitation of α″ nitrides and α″ → γ′ nitride transformation in ion-nitrided pure iron. Metallurgical and Materials Transactions A 32:11, pages 2681-2688.
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Sadahiro Tsurekawa, Kengo Harada, Takeru Sasaki, Takashi Matsuzaki & Tadao Watanabe. (2000) Magnetic Sintering of Ferromagnetic Metal Powder Compacts. Materials Transactions, JIM 41:8, pages 991-999.
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K.-H. M?ller, D. Eckert, T. Schubert, J. Thomas, J. Kunze, N. Mattern & H. Warlimont. (1994) Spontaneous magnetization of ??-Fe16N2 precipitates in bulk Fe?N. Physica Status Solidi (a) 146:1, pages 89-96.
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Y. Watanabe, H. Nozaki, M. Kato & A. Sato. (1991) Formation of Fe16N2 and development of magnetic anisotropy in a FeN alloy. Acta Metallurgica et Materialia 39:12, pages 3161-3166.
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Yoshimi Watanabe, Akihiro Nakano & Akikazu Sato. (1991) Effect of magnetic fields on the formation of Fe16N2 precipitates in FeN alloys. Materials Science and Engineering: A 146:1-2, pages 151-160.
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