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Articles

Influence of cooling rate on microstructure and properties of high strength steel weld metal

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Pages 233-238 | Published online: 04 Dec 2013

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X. L. Wang, Y. T. Tsai, J. R. Yang, C. J. Shang, X. M. Wang, L. M. Dong & W. W. Yang. (2016) Investigation of the microstructure and toughness of 550 MPa grade pipeline after the hot-bending process. Materials Science and Technology 32:7, pages 664-674.
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L. Zhang, A. Pittner, T. Michael, M. Rhode & T. Kannengiesser. (2015) Effect of cooling rate on microstructure and properties of microalloyed HSLA steel weld metals. Science and Technology of Welding and Joining 20:5, pages 371-377.
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S R McLaughlin, C J Bayley & N M Aucoin. (2012) Assessment of microstructural heterogeneities in multipass pulsed gas metal arc welds. Canadian Metallurgical Quarterly 51:3, pages 294-301.
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Paulo Henrique Grossi Dornelas, Francisco Werley Cipriano Farias, Victor Hugo Pereira Moraes e Oliveira, Diogo de Oliveira Moraes, Petrônio Zumpano Júnior & João da Cruz Payão Filho. (2020) Influence of welding interpass temperature on Charpy V-notch impact energy of coarse-grain heat-affected zone of AISI 4130 steel pipe. The International Journal of Advanced Manufacturing Technology 108:7-8, pages 2197-2211.
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Chaoyu Han, Zhipeng Cai, Manjie Fan, Xia Liu, Kejian Li & Jiluan Pan. (2020) Microstructure Characterization of SAW and TIG Welded 25Cr2Ni2MoV Rotor Steel Metal. Metals 10:5, pages 603.
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Alexander F. H. Kaplan, Matthias Höfemann, Eva Vaamonde, Anandkumar Ramasamy, Bert Kalfsbeek, Jonas Näsström, Stephanie M. Robertson, Jan Frostevarg & Jörg Volpp. (2020) Microstructures from wire-fed laser welding of high strength steel grades. Journal of Laser Applications 32:2.
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Jian Sun, Shitong Wei & Shanping Lu. (2020) Influence of vanadium content on the precipitation evolution and mechanical properties of high-strength Fe–Cr–Ni–Mo weld metal. Materials Science and Engineering: A 772, pages 138739.
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Antonio J. C. Gomes, Jorge C. F. Jorge, Ivani S. Bott, Luís F. G. Souza, Matheus C. Mendes & Leonardo S. Araújo. (2019) Influence of Chemical Composition on the Mechanical and Microstructural Properties of High Strength Steel Weld Metals Submitted to PWHT. Metallography, Microstructure, and Analysis 8:6, pages 815-825.
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Tong-bang An, Jin-shan Wei, Lin Zhao, Ji-guo Shan & Zhi-ling Tian. (2019) Influence of carbon content on microstructure and mechanical properties of 1000 MPa deposited metal by gas metal arc welding. Journal of Iron and Steel Research International 26:5, pages 512-518.
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Gaojun Mao, Rui Cao, Cyril Cayron, Xiuli Mao, Roland Logé & Jianhong Chen. (2019) Effect of cooling conditions on microstructures and mechanical behaviors of reheated low-carbon weld metals. Materials Science and Engineering: A 744, pages 671-681.
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Jorge Carlos Ferreira Jorge, Joel Lemos Dias Monteiro, Antonio José de Carvalho Gomes, Ivani de Souza Bott, Luís Felipe Guimarães de Souza, Matheus Campolina Mendes & Leonardo Sales Araújo. (2019) Influence of welding procedure and PWHT on HSLA steel weld metals. Journal of Materials Research and Technology 8:1, pages 561-571.
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Rahul Sharma & Uwe Reisgen. (2018) Assessment of mechanical properties in high-strength steel weld metals by means of phase transformation temperature. Welding in the World 62:6, pages 1227-1236.
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Han Fang, Tak-Ming Chan & Ben Young. (2018) Material properties and residual stresses of octagonal high strength steel hollow sections. Journal of Constructional Steel Research 148, pages 479-490.
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Phillip Haslberger, Sylvia Holly, Wolfgang Ernst & Ronald Schnitzer. (2018) Precipitates in microalloyed ultra-high strength weld metal studied by atom probe tomography. Welding in the World 62:4, pages 713-719.
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Phillip Haslberger, Sylvia Holly, Wolfgang Ernst & Ronald Schnitzer. (2018) Microstructure and mechanical properties of high-strength steel welding consumables with a minimum yield strength of 1100 MPa. Journal of Materials Science 53:9, pages 6968-6979.
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V.D. Poznyakov. (2018) Weldability of high-strength alloyed steels with yield strength of 590–785 Mpa. The Paton Welding Journal 2018:3, pages 6-11.
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V.D. Poznyakov. (2018) Weldability of high-strength alloyed steels with yield strength of 590–785 Mpa. Avtomatičeskaâ svarka (Kiev) 2018:3, pages 7-12.
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L.I. Markashova, V.D. Poznyakov, V.D. Shelyagin, E.N. Berdnikova, A.V. Bernatsky & T.A. Alekseenko. (2018) Effect of metal structure on service properties of high-strength steel welded joints produced using different methods of welding. The Paton Welding Journal 2018:2, pages 7-13.
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P. HaslbergerS. Holly, W. Ernst & R. Schnitzer. (2017) Microstructural Characterization of Martensitic All-Weld Metal Samples. Practical Metallography 54:8, pages 513-532.
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Rahul Sharma & Uwe Reisgen. (2017) Comparative study of phase transformation temperatures in high strength steel weld metals. Materials Testing 59:4, pages 344-347.
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Tadeusz Pała, Ihor Dzioba & Jarosław Gałkiewicz. (2017) Verification of Strength of the Welded Joints by using of the Aramis Video System. Acta Mechanica et Automatica 11:1, pages 9-13.
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Amilton Sousa Lins Junior, Hector Reynaldo Meneses Costa, Luís Felipe Guimarães de Souza & Jorge Carlos Ferreira Jorge. (2014) Propriedades mecânicas e microestruturais de juntas soldadas do aço HY-80 pelos processos eletrodo revestido e GMAW. Soldagem & Inspeção 19:3, pages 200-211.
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Amilton de Sousa Lins Junior, Jorge Carlos Ferreira Jorge Jorge Carlos Ferreira Jorge & Luís Felipe Guimarães de Souza. (2014) AVALIAÇÃO DAS PROPRIEDADES MECÂNICAS DE METAL DE SOLDA DE AÇO DE ALTA RESISTÊNCIA OBTIDO PELO PROCESSO DE SOLDAGEM GMAW PARA APLICAÇÃO EM COMPONENTES DE SISTEMAS DE ANCORAGEM. AVALIAÇÃO DAS PROPRIEDADES MECÂNICAS DE METAL DE SOLDA DE AÇO DE ALTA RESISTÊNCIA OBTIDO PELO PROCESSO DE SOLDAGEM GMAW PARA APLICAÇÃO EM COMPONENTES DE SISTEMAS DE ANCORAGEM.
Amin S. Azar, Sigmund K. Ås & Odd M. Akselsen. (2012) Analytical Modeling of Weld Bead Shape in Dry Hyperbaric GMAW Using Ar-He Chamber Gas Mixtures. Journal of Materials Engineering and Performance 22:3, pages 673-680.
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Cheng Huang, Pinelopi Kyvelou, Ruizhi Zhang, T. Ben Britton & Leroy Gardner. (2022) Mechanical Testing and Microstructural Analysis of Wire Arc Additively Manufactured Steels. SSRN Electronic Journal.
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