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Articles

Study of cast microalloyed steels

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Pages 80-86 | Published online: 19 Jul 2013

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T. N. Baker. (2009) Processes, microstructure and properties of vanadium microalloyed steels. Materials Science and Technology 25:9, pages 1083-1107.
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H. Najafi, J. Rassizadehghani & A. Halvaaee. (2007) Mechanical properties of as cast microalloyed steels containing V, Nb and Ti. Materials Science and Technology 23:6, pages 699-705.
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H. Najafi & J. Rassizadehghani. (2006) Effects of vanadium and titanium on mechanical properties of low carbon as cast microalloyed steels. International Journal of Cast Metals Research 19:6, pages 323-329.
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P. Mandal, D. Chakrabarti, K.K. Ray & A.K. Chakrabarti. (2004) Development of cast high strength microalloyed steels. International Journal of Cast Metals Research 17:2, pages 89-93.
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Articles from other publishers (28)

M Makeshkumar, J Anburaj, M Sasi Kumar & A Johnson Santhosh. (2023) Effect of zirconium and niobium on the microstructure and mechanical properties of high-strength low-alloy cast steels. Materials Research Express 10:5, pages 056506.
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Lintao Gui, Yan Zhao, Yi Feng, Mingtu Ma, Hongzhou Lu, Kun Tan, Po-Han Chiu, Aimin Guo, Jian Bian, Jer-Ren Yang, Fatong Jiang, Hui Song & Yangwei Wang. (2023) Study on the improving effect of Nb-V microalloying on the hydrogen induced delayed fracture property of 22MnB5 press hardened steel. Materials & Design 227, pages 111763.
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M Makeshkumar & J Anburaj. (2019) Study of combined effect of zirconium and titanium on microstructure and mechanical properties of micro-alloyed cast steels. Materials Research Express 6:10, pages 1065d8.
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Morteza Kalantar, Hamidreza Najafi & M. Reza Afshar. (2018) Comparison Between Vanadium and Niobium Effects on the Mechanical Properties of Intercritically Heat Treated Microalloyed Cast Steels. Metals and Materials International 25:1, pages 229-237.
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Murat Aydın & Fatih Şenaslan. (2018) The effect of quench-aging on the mechanical properties of Zn-27Al-1Cu alloy. International Journal of Materials Research 109:8, pages 699-707.
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Sumit Ghosh, Suhrit Mula & Dipak Kumar Mondal. (2017) Development of ultrahigh strength cast-grade microalloyed steel by simple innovative heat treatment techniques for industrial applications. Materials Science and Engineering: A 700, pages 667-680.
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Anish Karmakar, Pooja Sahu, Suman Neogy, Debalay Chakrabarti, Rahul Mitra, Subrata Mukherjee & Saurabh Kundu. (2017) Effect of Cooling Rate and Chemical Composition on Microstructure and Properties of Naturally Cooled Vanadium-Microalloyed Steels. Metallurgical and Materials Transactions A 48:4, pages 1581-1595.
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Lairong Xiao, Jianfeng Huang, Yilei Chen, Xuping Su & Jianhua Wang. (2013) Phase equilibria of the Zn–Al–Ti system at 370°C in the Zn-rich region. International Journal of Materials Research 104:9, pages 843-848.
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Jingwei Zhao, Jeong Hun Lee, Yong Woo Kim, Zhengyi Jiang & Chong Soo Lee. (2013) Enhancing mechanical properties of a low-carbon microalloyed cast steel by controlled heat treatment. Materials Science and Engineering: A 559, pages 427-435.
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Shengli Guo, Defu Li, Xiaoping Wu, Xiaoqing Xu, Peng Du & Jie Hu. (2012) Characterization of hot deformation behavior of a Zn–10.2Al–2.1Cu alloy using processing maps. Materials & Design 41, pages 158-166.
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Zhi Ying Ma & Yi Tao Yang. (2012) Effect of Mo and Ni Content on the Mechanical Properties of Low Carbon and Alloy Steel Casting Sample for Coal-Mining Machinery. Advanced Materials Research 476-478, pages 329-333.
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S. Vervynckt, P. Thibaux & K. Verbeken. (2012) Effect of niobium on the microstructure and mechanical properties of hot rolled microalloyed steels after recrystallization-controlled rolling. Metals and Materials International 18:1, pages 37-46.
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Kim Verbeken, Stephanie Vervynckt, Philippe Thibaux & Yvan Houbaert. (2012) Empirical Relationships for the Impact of Nb and C Content on the Mechanical Properties of Hot Rolled Microalloyed Steels. Materials Science Forum 706-709, pages 37-42.
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Kaishuang Luo & Bingzhe Bai. (2010) Microstructure, Mechanical Properties, and Unlubricated Sliding Wear Behavior of Air-Cooled MnSiCrB Cast Steels. Journal of Materials Engineering and Performance 20:6, pages 952-959.
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H. Najafi, J. Rassizadehghani & S. Norouzi. (2011) Mechanical properties of as-cast microalloyed steels produced via investment casting. Materials & Design 32:2, pages 656-663.
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Kaishuang Luo & Bingzhe Bai. (2010) Mechanical Properties and Corrosion–Abrasion Wear Behavior of Low-Alloy MnSiCrB Cast Steels Containing Cu. Metallurgical and Materials Transactions A 42:1, pages 181-191.
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Kaishuang Luo & Bingzhe Bai. (2009) Microstructure and Mechanical Properties of a Low Alloyed MnB Cast Steel. Journal of Materials Engineering and Performance 19:6, pages 829-833.
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B.K. PRASAD & O.P. MODI. (2009) Slurry wear characteristics of zinc-based alloys: Effects of sand content of slurry, silicon addition to alloy system and traversal distance. Transactions of Nonferrous Metals Society of China 19:2, pages 277-286.
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Temel Savaşkan & Yasin Alemdağ. (2008) Effects of pressure and sliding speed on the friction and wear properties of Al–40Zn–3Cu–2Si alloy: A comparative study with SAE 65 bronze. Materials Science and Engineering: A 496:1-2, pages 517-523.
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J. Głownia & B. Kalandyk. (2008) Effect of precipitation strengthening in low alloyed Mn–Ni cast steels. Journal of Materials Processing Technology 207:1-3, pages 147-153.
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Hamidreza Najafi, Jafar Rassizadehghani & Siroos Asgari. (2008) As-cast mechanical properties of vanadium/niobium microalloyed steels. Materials Science and Engineering: A 486:1-2, pages 1-7.
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Zeki Azaklı & Temel Savaşkan. (2008) An examination of friction and sliding wear properties of Zn–40Al–2Cu–2Si alloy in case of oil cut off. Tribology International 41:1, pages 9-16.
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Gençağa Pürçek. (2005) Improvement of mechanical properties for Zn–Al alloys using equal-channel angular pressing. Journal of Materials Processing Technology 169:2, pages 242-248.
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D.P. Mondal, S. Das & V. Rajput. (2005) Effect of zinc concentration and experimental parameters on high stress abrasive wear behaviour of Al–Zn alloys: A factorial design approach. Materials Science and Engineering: A 406:1-2, pages 24-33.
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Temel Savaşkan & Osman Bican. (2005) Effects of silicon content on the microstructural features and mechanical and sliding wear properties of Zn–40Al–2Cu–(0–5)Si alloys. Materials Science and Engineering: A 404:1-2, pages 259-269.
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Gencaga Purcek, Burhanettin S. Altan, Ibrahim Miskioglu & Pey H. Ooi. (2004) Processing of eutectic Zn–5% Al alloy by equal-channel angular pressing. Journal of Materials Processing Technology 148:3, pages 279-287.
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Temel Savaşkan, Ali Paşa Hekimoğlu & Gençağa Pürçek. (2004) Effect of copper content on the mechanical and sliding wear properties of monotectoid-based zinc-aluminium-copper alloys. Tribology International 37:1, pages 45-50.
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T Savaşkan & M.Ş Turhal. (2003) Relationships between cooling rate, copper content and mechanical properties of monotectoid based Zn–Al–Cu alloys. Materials Characterization 51:4, pages 259-270.
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