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Articles

Dynamic recrystallisation during hot working of Zr–2·5Nb: characterisation using processing maps

Pages 705-716 | Published online: 19 Jul 2013

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J. K. CHAKRAVARTTY & CHIRADEEP GUPTA. (2001) Hot Working of Zirconium Alloys: Some Recent Developments. Mineral Processing and Extractive Metallurgy Review 22:1, pages 197-220.
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S. V. S. Narayana Murty & B. Nageswara Rao. (1998) Hot working characteristics of Zr-2.5Nb using processing maps. Materials Science and Technology 14:8, pages 835-837.
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Articles from other publishers (19)

Yuan Cao, Jianguo Cao, Leilei Wang, Chunning Song, Fang Li & Pengfei Zhang. (2022) High-Temperature Deformation Constitutive Model of Zircaloy-4 Based on the Support Vector Regression Algorithm during Hot Rolling. Journal of Materials Engineering and Performance 31:12, pages 10237-10247.
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Rajeev Kapoor, G. Bharat Reddy & Apu Sarkar. (2022) Dynamic Recrystallization in Zircaloy-2. Transactions of the Indian Institute of Metals 75:4, pages 975-982.
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G. K. Dey. 2022. Future Landscape of Structural Materials in India. Future Landscape of Structural Materials in India 59 77 .
Kuldeep K. Saxena & Vivek Pancholi. (2020) Zr–Nb Alloys and Its Hot Deformation Analysis Approaches. Metals and Materials International 27:7, pages 2106-2133.
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K.K. Saxena, V. Pancholi, S.K. Jha, G.P. Chaudhari, D. Srivastava & G.K. Dey. (2017) A novel approach to understand the deformation behavior in two phase region using processing map. Journal of Alloys and Compounds 706, pages 511-519.
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K.K. SAXENA, S.K. JHA, V. PANCHOLI, G.P. CHAUDHARI, D. SRIVASTAVA, G.K. DEY & N. SAIBABA. (2017) Role of activation energies of individual phases in two-phase range on constitutive equation of Zr–2.5Nb–0.5Cu alloy. Transactions of Nonferrous Metals Society of China 27:1, pages 172-183.
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D.G. Leo Prakash, M. Preuss, M. Dahlbäck & J. Quinta da Fonseca. (2015) Microstructure and texture evolution during thermomechanical processing of β-quenched Zr. Acta Materialia 88, pages 389-401.
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Fei Long, Mark R. Daymond & Zhongwen Yao. (2015) Deformation mechanism study of a hot rolled Zr-2.5Nb alloy by transmission electron microscopy. I. Dislocation microstructures in as-received state and at different plastic strains. Journal of Applied Physics 117:9.
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J. K. ChakravarttyR. KapoorA. SarkarV. KumarS. K. JhaN. SaibabaS. Banerjee. 2015. Zirconium in the Nuclear Industry: 17th Volume. Zirconium in the Nuclear Industry: 17th Volume 259 281 .
Guo Qing Lin. (2012) Characterization of Hot Deformation Behavior of Zr-4 Alloy in Material Application Area. Advanced Materials Research 578, pages 202-205.
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B. Paul, A. Sarkar, J.K. Chakravartty, A. Verma, R. Kapoor, A.C. Bidaye, I.G. Sharma & A.K. Suri. (2010) Dynamic Recrystallization in Sintered Cobalt during High-Temperature Deformation. Metallurgical and Materials Transactions A 41:6, pages 1474-1482.
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J. K. Chakravartty, R. Kapoor, A. Sarkar, S. Banerjee, P. Barberis & S. W. Dean. (2010) Dynamic Recrystallization in Zirconium Alloys. Journal of ASTM International 7:8, pages 103003.
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C. Vanitha, M. Kiran Kumar, G.K. Dey, D. Srivastava, R. Tewari & S. Banerjee. (2009) Recrystallization texture development in single-phase Zircaloy 2. Materials Science and Engineering: A 519:1-2, pages 51-60.
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J.K. Chakravartty, R. Kapoor, S. Banerjee & Y.V.R.K. Prasad. (2007) Characterization of hot deformation behavior of Zr–1Nb–1Sn alloy. Journal of Nuclear Materials 362:1, pages 75-86.
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. 2007. Phase Transformations - Examples from Titanium and Zirconium Alloys. Phase Transformations - Examples from Titanium and Zirconium Alloys 555 716 .
S. Banerjee & P. Mukhopadhyay. 2007. Phase Transformations. Phase Transformations 557 716 .
R. Kapoor, J.K. Chakravartty, C.C. Gupta & S.L. Wadekar. (2005) Characterization of superplastic behaviour in the (α+β) phase field of Zr–2.5wt.%Nb alloy. Materials Science and Engineering: A 392:1-2, pages 191-202.
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R. Kapoor & J.K. Chakravartty. (2002) Characterization of hot deformation behaviour of Zr–2.5Nb in β phase. Journal of Nuclear Materials 306:2-3, pages 126-133.
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S. V. S. Narayana Murty & B. Nageswara Rao. (1998) Hot working characteristics of Zr-2.5Nb using processing maps. Materials Science and Technology 14:8, pages 835-837.
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