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Articles

Quantification of precipitate fraction in maraging steels by X-ray diffraction analysis

Pages 126-130 | Published online: 19 Jul 2013

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F. Zhu, Y. F. Yin & R. G. Faulkner. (2011) Microstructural control of maraging steel C300. Materials Science and Technology 27:1, pages 395-405.
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Articles from other publishers (15)

Kevin Jacob, Heena Khanchandani, Saurabh Dixit & Balila Nagamani Jaya. (2023) Suppression of Reverted Austenite in Cold-Rolled Maraging Steels and Its Impact on Mechanical Properties. Metallurgical and Materials Transactions A 54:12, pages 4976-4993.
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Kevin Jacob, Saurabh Dixit & B. Nagamani Jaya. 2022. Advances in Structural Integrity. Advances in Structural Integrity 357 364 .
Panpan Ge, Song Xiang, Yuanbiao Tan & Xuanming Ji. (2020) Studies on the β → α Phase Transition Kinetics of Ti–3.5Al–5Mo–4V Alloy under Isothermal Conditions by X-ray Diffraction. Metals 10:1, pages 90.
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Luca Petan, Janez Grum, Juan Antonio Porro, José Luis Ocaña & Roman Šturm. (2019) Fatigue Properties of Maraging Steel after Laser Peening. Metals 9:12, pages 1271.
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Jean Jefferson Moraes da Silva, Igor Frota de Vasconcelos, Francisco Iran Sousa da Silva, Thiago Soares Ribeiro & Hamilton Ferreira Gomes de Abreu. (2019) An Atomic Redistribution Study of the 440°C Ageing Kinetics in Maraging-300 Steel. Materials Research 22:1.
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T. J. B. Alves, G. C. S. Nunes, P. W. C. Sarvezuk, F. F. Ivashita, A. M. H. de Andrade, A. Viegas & A. PaesanoJr.Jr.. (2017) Crystallographic, hyperfine and magnetic characterization of a maraging-400 alloy. Hyperfine Interactions 238:1.
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Luca Petan, José Luis Ocaña & Janez Grum. (2016) Influence of laser shock peening pulse density and spot size on the surface integrity of X2NiCoMo18-9-5 maraging steel. Surface and Coatings Technology 307, pages 262-270.
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G.C.S. Nunes, P.W.C. Sarvezuk, V. Biondo, M.C. Blanco, M.V.S. Nunes, A.M.H. de Andrade & A. PaesanoJr.Jr.. (2015) Structural and magnetic characterization of martensitic Maraging-350 steel. Journal of Alloys and Compounds 646, pages 321-325.
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M. Naveen, R. Santhosh, M. Geetha & M. Nageswara Rao. (2014) Experimental study and computer modelling of the β → α + β phase transformation in Ti15-3 alloy under isothermal conditions. Journal of Alloys and Compounds 616, pages 607-613.
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Wei ShaWei Sha. 2013. Steels. Steels 163 187 .
Rasoul Salehi, Ahad Samadi & M. Kh. Savadkoohi. (2012) Influence of Etchants on Quantitative/Qualitative Evaluations of the ?? Precipitates in a Nickel-Base Superalloy. Metallography, Microstructure, and Analysis 1:6, pages 290-296.
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M. Cabeza, G. Castro, P. Merino, G. Pena & M. Román. (2012) Laser surface melting: A suitable technique to repair damaged surfaces made in 14 Ni (200 grade) maraging steel. Surface and Coatings Technology 212, pages 159-168.
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W. Sha, A. Ye, S. Malinov & E.A. Wilson. (2012) Microstructure and mechanical properties of low nickel maraging steel. Materials Science and Engineering: A 536, pages 129-135.
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Z. Guo & W. Sha. (2005) Quantification of precipitate fraction in Al?Si?Cu alloys. Materials Science and Engineering: A 392:1-2, pages 449-452.
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W. Sha, Z. Guo & E. A. Wilson. (2004) Modeling the evolution of microstructure during the processing of maraging steels. JOM 56:3, pages 62-66.
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