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Regular Papers

Effect of Si on mechanical properties of low alloy steels

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Pages 527-530 | Published online: 19 Jul 2013

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Wenchao Yu, Shipeng Zhu, Xiaofei He & Maoqiu Wang. (2022) Very high cycle fatigue properties of 2000 MPa ultrahigh-strength steels. Materials Science and Technology 38:12, pages 866-875.
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Tae-Woon Hong, Sang-In Lee, Jae-Hyeok Shim, Myoung-Gyu Lee, Joonho Lee & Byoungchul Hwang. (2021) Artificial Neural Network for Modeling the Tensile Properties of Ferrite-Pearlite Steels: Relative Importance of Alloying Elements and Microstructural Factors. Metals and Materials International 27:10, pages 3935-3944.
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Pavel Salvetr, Aleksandr Gokhman, Zbyšek Nový, Petr Motyčka & Jakub Kotous. (2021) Effect of 1.5 wt% Copper Addition and Various Contents of Silicon on Mechanical Properties of 1.7102 Medium Carbon Steel. Materials 14:18, pages 5244.
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Qing Tao, Jian Wang & E.I. Galindo-Nava. (2021) Effect of low-temperature tempering on confined precipitation and mechanical properties of carburised steels. Materials Science and Engineering: A 822, pages 141688.
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Yongqiang Zhang, Jianfeng Gu, Lizhan Han, Gang Shen & Chuanwei Li. (2021) Thermal decomposition characteristics of retained austenite and its influence on impact toughness of B-containing 9Cr1Mo1Co(FB2) steel during the two-step tempering. Journal of Materials Research and Technology 12, pages 2462-2475.
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Aleksandr Gokhman, Zbyšek Nový, Pavel Salvetr, Vasyl Ryukhtin, Pavel Strunz, Petr Motyčka, Jan Zmeko & Jakub Kotous. (2021) Effects of Silicon, Chromium, and Copper on Kinetic Parameters of Precipitation during Tempering of Medium Carbon Steels. Materials 14:6, pages 1445.
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Y. AmaliaA.A. MaulanaE. Pujiyulianto. (2021) The Effect of Si Content on Microstructures and Mechanical Properties of Normalized Pressure Vessel Steel A517 Grade Q. Advanced Materials Research 1160, pages 15-23.
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Pavel Salvetr, Zbyšek Nový, Aleksandr Gokhman, Jakub Kotous, Jan Zmeko, Petr Motyčka & Jaromír Dlouhý. (2020) Influence of Si and Cu content on tempering and properties of 54SiCr6 steel. Manufacturing Technology 20:4, pages 516-520.
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Tiago A. Rodrigues, V.R. Duarte, D. Tomás, Julian A. Avila, J.D. Escobar, Emma Rossinyol, N. Schell, Telmo G. Santos & J.P. Oliveira. (2020) In-situ strengthening of a high strength low alloy steel during Wire and Arc Additive Manufacturing (WAAM). Additive Manufacturing 34, pages 101200.
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Zhigang Xu, Michael A. Hodgson & Peng Cao. (2015) A comparative study of powder metallurgical (PM) and wrought Fe–Mn–Si alloys. Materials Science and Engineering: A 630, pages 116-124.
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L.C.F. Canale, J. Vatavuk & G.E. Totten. 2014. Comprehensive Materials Processing. Comprehensive Materials Processing 3 37 .
Yong-Jun Lee, Jun-Ho Park, Dong-Ho Lee & Sung-Su Kang. (2013) Effect of heat treatment on the hydrogen delayed fracture of high strength spring steel. Journal of Mechanical Science and Technology 27:10, pages 2991-2996.
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Renata Neves Penha, Lauralice C.F. Canale, Jan Vatavuk & Steven Lampman. 2013. Steel Heat Treating Fundamentals and Processes. Steel Heat Treating Fundamentals and Processes 327 351 .
Yu Matsumoto, Kenichi Takai, Mikiyuki Ichiba, Takahisa Suzuki, Tsukasa Okamura & Shigeru Mizoguchi. (2013) Reduction of Delayed Fracture Susceptibility of Tempered Martensitic Steel through Increased Si Content and Surface-Softening. Tetsu-to-Hagane 99:3, pages 236-244.
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Yu Matsumoto, Kenichi Takai, Mikiyuki Ichiba, Takahisa Suzuki, Tsukasa Okamura & Shigeru Mizoguchi. (2013) Reduction of Delayed Fracture Susceptibility of Tempered Martensitic Steel through Increased Si Content and Surface Softening. ISIJ International 53:4, pages 714-722.
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A.T.W. Barrow, J.-H. Kang & P.E.J. Rivera-Díaz-del-Castillo. (2012) The ϵ→η→θ transition in 100Cr6 and its effect on mechanical properties. Acta Materialia 60:6-7, pages 2805-2815.
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A.T.W. Barrow & P.E.J. Rivera-Díaz-del-Castillo. (2011) Nanoprecipitation in bearing steels. Acta Materialia 59:19, pages 7155-7167.
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Lauralice Canale & George Totten. 2010. Quenching Theory and Technology, Second Edition. Quenching Theory and Technology, Second Edition.
Jan Vatavuk & L.C.F. Canale. 2008. Failure Analysis of Heat Treated Steel Components. Failure Analysis of Heat Treated Steel Components 285 309 .
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