Publication Cover
Energy Materials
Materials Science and Engineering for Energy Systems
Volume 13, 2018 - Issue 1
477
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Hot-rolled and continuously cooled bainitic steel with good strength–elongation combination

, , , , &
Pages 1026-1037 | Received 20 Sep 2016, Accepted 01 Dec 2016, Published online: 28 Dec 2016

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Radhakanta Rana, Erick Cordova-Tapia, Jose A. Jimenez, Lucia Morales-Rivas & Carlos Garcia-Mateo. (2024) Design of carbide free bainitic steels for hot rolling practices. Philosophical Magazine Letters 104:1.
Read now
Suruj Protim Neog, Arijit Lodh, Anish Karmakar, Akhil G. Nair, Arup Dasgupta, Subhankar Das Bakshi & Sourav Das. (2023) Insights into the stability of retained austenite during wear. Philosophical Magazine 103:3, pages 203-222.
Read now
S. Mandal, N. Bhowmik, N. K. Tewary, P. Ghosh & A. Haldar. (2022) Austenite grain growth and effect of austenite grain size on bainitic transformation. Materials Science and Technology 38:7, pages 409-418.
Read now
Sk Md Hasan, Sachin Kumar, Debalay Chakrabarti & Shiv Brat Singh. (2020) Understanding the effect of prior bainite/martensite on the formation of carbide-free bainite. Philosophical Magazine 100:7, pages 797-821.
Read now
Sourav Das, Paul Bradley & Arunansu Haldar. (2019) Medium carbon fully pearlitic steel: microstructures and properties after wire drawing. Materials Science and Technology 35:5, pages 585-595.
Read now
Monika Krugla, Radhakanta Rana & Sourav Das. (2018) Ductile ultra high strength hot stamped steel obtained by Q&P treatments. Materials Science and Technology 34:3, pages 268-281.
Read now

Articles from other publishers (15)

Ting-ting He, Feng Hu, Kun Wang, Wen Zhou, Li Li, Serhii Yershov & Kai-ming Wu. (2024) High-temperature stability of retained austenite and plastic deformation mechanism of ultra-fine bainitic steel isothermally treated below Ms. Journal of Iron and Steel Research International.
Crossref
Naiyou Xiao, Junjie Fei, Meiying Li, Jianhua Zhou & Tao Jia. (2024) Design of cooling route for carbide-free bainitic rail steels and resultant microstructures and properties. Materials Science and Engineering: A 891, pages 145936.
Crossref
Sandeep Kumar Gupta, R. Manna & Kausik Chattopadhyay. (2022) Ductilization of high carbon, high silicon carbide-free nanostructured bainitic steel. Materials Science and Engineering: A 860, pages 144318.
Crossref
Songbo Zhou, Feng Hu, Kun Wang, Chengyang Hu, Hangyu Dong, Xiangliang Wan, Shi Cheng, R.D.K. Misra & Kaiming Wu. (2022) A study of deformation behavior and stability of retained austenite in carbide-free bainitic steel during nanoindentation process. Journal of Materials Research and Technology 20, pages 2221-2234.
Crossref
Bogusława Adamczyk-Cieślak, Milena Koralnik, Roman Kuziak, Kamil Majchrowicz, Tomasz Zygmunt & Jarosław Mizera. (2022) The Impact of Retained Austenite on the Mechanical Properties of Bainitic and Dual Phase Steels. Journal of Materials Engineering and Performance 31:6, pages 4419-4433.
Crossref
Xin-pan Yu, Hui-bin Wu, Yang Gu, Rui Yuan, You-you Zhang & Yu-hui Feng. (2021) Effect of prior martensite on bainite transformation and microstructure of high-carbon nano-bainitic steel. Journal of Iron and Steel Research International 29:4, pages 647-654.
Crossref
Bogusława Adamczyk-Cieślak, Milena Koralnik, Roman Kuziak, Kamil Majchrowicz & Jarosław Mizera. (2021) Studies of Bainitic Steel for Rail Applications Based on Carbide-Free, Low-Alloy Steel. Metallurgical and Materials Transactions A 52:12, pages 5429-5442.
Crossref
G.K. Bansal, S. Tripathy, A.K. Chandan, V. Rajinikanth, Chiradeep Ghosh, V.C. Srivastava & S. Ghosh Chowdhury. (2021) Influence of quenching strategy on phase transformation and mechanical properties of low alloy steel. Materials Science and Engineering: A 826, pages 141937.
Crossref
Suruj Protim Neog, Subhankar Das Bakshi & Sourav Das. (2021) Effect of normal loading on microstructural evolution and sliding wear behaviour of novel continuously cooled carbide free bainitic steel. Tribology International 157, pages 106846.
Crossref
Koh-ichi Sugimoto. (2021) Recent Progress of Low and Medium-Carbon Advanced Martensitic Steels. Metals 11:4, pages 652.
Crossref
Suruj Protim Neog, Subhankar Das Bakshi & Sourav Das. (2020) Microstructural evolution of novel continuously cooled carbide free bainitic steel during sliding wear. Wear 456-457, pages 203359.
Crossref
Sk. Md. Hasan, Abhijit Ghosh, Debalay Chakrabarti & Shiv Brat Singh. (2020) Orientation Dependence of Deformation-Induced Martensite Transformation During Uniaxial Tensile Deformation of Carbide-Free Bainitic Steel. Metallurgical and Materials Transactions A 51:5, pages 2053-2063.
Crossref
Grzegorz Korpała, Frank Hisker, Brigitte Hammer, Thomas Heller, Rudolf Kawalla & Ulrich Prahl. (2019) The Influence of Hot‐Rolling Conditions on the Content and Morphology of Retained Austenite in Ultra‐High Strength Bainitic Steel and Its Mechanical Properties. steel research international 90:6.
Crossref
Sk Md Hasan, Arka Mandal, Shiv Brat Singh & Debalay Chakrabarti. (2019) Work hardening behaviour and damage mechanisms in carbide-free bainitic steel during uni-axial tensile deformation. Materials Science and Engineering: A 751, pages 142-153.
Crossref
R.V.S.M. Ramakrishna, K. Bhanu Sankara Rao, G. Madhusudan Reddy & Jai Prakash Gautam. (2018) Friction stir welding of advanced high strength (bainitic) steels for automotive applications. Materials Today: Proceedings 5:9, pages 17139-17146.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.