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Part A: Materials Science

TEM investigation of the formation mechanism of deformation twins in Fe–Mn–Si–Al TWIP steels

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Pages 4378-4391 | Received 06 Dec 2012, Accepted 02 Aug 2013, Published online: 12 Sep 2013

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N. K. Tewary, S. K. Ghosh, R. Saha & S. Chatterjee. (2019) Deformation and annealing behaviour of a low carbon high Mn TWIP steel microalloyed with Ti. Philosophical Magazine 99:20, pages 2487-2516.
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L. Ding, A. Hilhorst, H. Idrissi & P.J. Jacques. (2022) Potential TRIP/TWIP coupled effects in equiatomic CrCoNi medium-entropy alloy. Acta Materialia 234, pages 118049.
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Mehrdad Ghiasabadi Farahani, Jeoung Han Kim, Matias Jaskari, Leo Pentti Karjalainen & Puspendu Sahu. (2022) Newer insights into the discrimination of pole mechanisms of twinning in a face-centered cubic high-Mn steel. Materialia 21, pages 101349.
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S. Martin, A. Weidner, C. Ullrich, C. Schimpf, M. Motylenko, R. Lehnert, H. Biermann, D. Rafaja, A. Vinogradov & Y. Estrin. (2022) Deformation behaviour of TWIP steels: Constitutive modelling informed by local and integral experimental methods used in concert. Materials Characterization 184, pages 111667.
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Hossein Eskandari Sabzi, Xiao-Hui Li, Chi Zhang, Hanwei Fu, David San-Martín & Pedro E.J. Rivera-Díaz-del-Castillo. (2022) Deformation twinning-induced dynamic recrystallization during laser powder bed fusion. Scripta Materialia 207, pages 114307.
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Le Li, Zhenghao Chen, Shogo Kuroiwa, Mitsuhiro Ito, Kyosuke Kishida, Haruyuki Inui & Easo P. George. (2022) Tensile and compressive plastic deformation behavior of medium-entropy Cr-Co-Ni single crystals from cryogenic to elevated temperatures. International Journal of Plasticity 148, pages 103144.
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Takahiro Sawaguchi. 2022. The Plaston Concept. The Plaston Concept 237 257 .
Chang-Yu Hung, Yu Bai, Tomotsugu Shimokawa, Nobuhiro Tsuji & Mitsuhiro Murayama. (2021) A correlation between grain boundary character and deformation twin nucleation mechanism in coarse-grained high-Mn austenitic steel. Scientific Reports 11:1.
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Chang-Yu Hung, Yu Bai, Nobuhiro Tsuji & Mitsuhiro Murayama. (2021) Grain size altering yielding mechanisms in ultrafine grained high-Mn austenitic steel: Advanced TEM investigations. Journal of Materials Science & Technology 86, pages 192-203.
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Jishnu J. Bhattacharyya, Sriramya Nair, Darren C. Pagan, Vahid Tari, Ricardo A. Lebensohn, Anthony D. Rollett & Sean R. Agnew. (2021) Elastoplastic transition in a metastable β-Titanium alloy, Timetal-18 – An in-situ synchrotron X-ray diffraction study. International Journal of Plasticity 139, pages 102947.
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Jie Ding, Z. Shang, Jin Li, H. Wang & X. Zhang. (2020) Microstructure and tensile behavior of nanostructured gradient TWIP steel. Materials Science and Engineering: A 785, pages 139346.
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Xiaoxiang Wu, Zhiming Li, Ziyuan Rao, Yuji Ikeda, Biswanath Dutta, Fritz Körmann, Jörg Neugebauer & Dierk Raabe. (2020) Role of magnetic ordering for the design of quinary TWIP-TRIP high entropy alloys. Physical Review Materials 4:3.
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Jin-Sung Hong, Singon Kang, Jae-Gil Jung & Young-Kook Lee. (2020) The mechanism of mechanical twinning near grain boundaries in twinning-induced plasticity steel. Scripta Materialia 174, pages 62-67.
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Tarun Nanda, Vishal Singh, Virender Singh, Arnab Chakraborty & Sandeep Sharma. (2016) Third generation of advanced high-strength steels: Processing routes and properties. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 233:2, pages 209-238.
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NK Tewary, SK Ghosh & S Chatterjee. (2017) Deformation behaviour of low carbon high Mn twinning-induced plasticity steel. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 233:3, pages 763-771.
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N.K. Tewary, S.K. Ghosh, S. Chatterjee & A. Ghosh. (2018) Deformation and annealing behaviour of dual phase TWIP steel from the perspective of residual stress, faults, microstructures and mechanical properties. Materials Science and Engineering: A 733, pages 43-58.
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B. Mahato, T. Sahu, S.K. Shee, P. Sahu, T. Sawaguchi, J. Kömi & L.P. Karjalainen. (2017) Simultaneous twinning nucleation mechanisms in an Fe–Mn–Si–Al twinning induced plasticity steel. Acta Materialia 132, pages 264-275.
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H.R. Abedi, A. Zarei Hanzaki, N. Haghdadi & P.D. Hodgson. (2017) Substructure induced twinning in low density steel. Scripta Materialia 128, pages 69-73.
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Gilberto Casillas, Azdiar A. Gazder, Elena V. Pereloma & Ahmed A. Saleh. (2017) Evidencing extrinsic stacking faults in twinning-induced plasticity steel. Materials Characterization 123, pages 275-281.
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A. Bintu, G.T. Vincze, R.C. Picu, A.B. Lopes & I. Bdikin. (2016) Scale dependence of the strain rate sensitivity of Twinning-Induced Plasticity steel. Materials Science and Engineering: A 674, pages 98-103.
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Stefan Martin, Steffen Wolf, Sabine Decker, Lutz Krüger & Ulrich Martin. (2015) Deformation Bands in High-Alloy Austenitic 16Cr6Mn6Ni TRIP Steel: Phase Transformation and Its Consequences on Strain Hardening at Room Temperature. steel research international 86:10, pages 1187-1196.
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B. Mahato, S.K. Shee, T. Sahu, S. Ghosh Chowdhury, P. Sahu, D.A. Porter & L.P. Karjalainen. (2015) An effective stacking fault energy viewpoint on the formation of extended defects and their contribution to strain hardening in a Fe–Mn–Si–Al twinning-induced plasticity steel. Acta Materialia 86, pages 69-79.
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N.K. Tewary, S.K. Ghosh, Supriya Bera, D. Chakrabarti & S. Chatterjee. (2014) Influence of cold rolling on microstructure, texture and mechanical properties of low carbon high Mn TWIP steel. Materials Science and Engineering: A 615, pages 405-415.
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