221
Views
64
CrossRef citations to date
0
Altmetric
Articles

Recrystallisation rates in austenite measured by double compression and stress relaxation methods

Pages 626-630 | Published online: 19 Jul 2013

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

Read on this site (5)

S Vervynckt, K Verbeken, B Lopez & J J Jonas. (2012) Modern HSLA steels and role of non-recrystallisation temperature. International Materials Reviews 57:4, pages 187-207.
Read now
A.S. Hamada, L.P. Karjalainen & M.C. Somani. (2007) Constitutive Behaviour of Two High-Mn-Al Twip Steels at Hot Rolling Temperatures. Canadian Metallurgical Quarterly 46:1, pages 47-56.
Read now
M. C. Somani & L. P. Karjalainen. (2005) Effects of complex deformation history on flow stress and recrystallisation of hot deformed austenite and ferrite. Ironmaking & Steelmaking 32:4, pages 294-298.
Read now
S.F. Medina, A. Quispe & M. Gómez. (2003) Strain induced precipitation effect on austenite static recrystallisation in microalloyed steels. Materials Science and Technology 19:1, pages 99-108.
Read now
S.F. Medina, A. Quispe & M. Gómez. (2001) Model for static recrystallisation critical temperature in microalloyed steels. Materials Science and Technology 17:5, pages 536-544.
Read now

Articles from other publishers (59)

Trevor J. Ballard, John G. Speer, Kip O. Findley & Emmanuel De Moor. (2023) Evolution of austenite microstructure and microalloy precipitation state during double-twist torsion testing on Nb-Ti-bearing steels. Materialia 31, pages 101879.
Crossref
Evelyn Sobotka, Johannes Kreyca, Robert Kahlenberg, Aurélie Jacob, Ernst Kozeschnik & Erwin Povoden-Karadeniz. (2023) Analysis of Recrystallization Kinetics Concerning the Experimental, Computational, and Empirical Evaluation of Critical Temperatures for Static Recrystallization in Nb, Ti, and V Microalloyed Steels. Metals 13:5, pages 884.
Crossref
Yakun Xu, Peter Birnbaum, Stefan Pilz, Xincun Zhuang, Zhen Zhao & Verena Kräusel. (2022) Investigation on Post-Deformation Recrystallization Behavior of 22MnB5 Steel based on Stress Relaxation. Journal of Materials Engineering and Performance 32:1, pages 263-274.
Crossref
Mohammed Ali, Oskari Seppälä, Timo Fabritius & Jukka Kömi. (2022) Microstructure evolution and static recrystallization kinetics in hot-deformed austenite of coarse-grained Mo-free and Mo containing low-carbon CrNiMnB ultrahigh-strength steels. Materials Today Communications 33, pages 104676.
Crossref
S. Monschein, N. Kostwein, K. S. Ragger, D. Zügner, J. Fasching & R. Schnitzer. (2022) Determination of the degree of recrystallization of a microalloyed HSLA steel by using metallographic methods. Practical Metallography 59:6, pages 317-339.
Crossref
Sheng Ding, Jingwei Zhang, Sabrina Alam Khan, Yuji Sato & Jun Yanagimoto. (2022) Metadynamic recrystallization in A5083 aluminum alloy with homogenized and as-extruded initial microstructures. Materials Science and Engineering: A 838, pages 142789.
Crossref
Philipp Retzl, Yao V. Shan, Evelyn Sobotka, Marko Vogric, Wenwen Wei, Erwin Povoden-Karadeniz & Ernst Kozeschnik. (2022) Progress of Physics-based Mean-field Modeling and Simulation of SteelFortschritte bei der physikalisch basierten Mean-field Modellierung und Simulation von Stahl. BHM Berg- und Hüttenmännische Monatshefte 167:1, pages 15-22.
Crossref
Trevor J. Ballard, John G. Speer, Kip O. Findley & Emmanuel De Moor. (2021) Double twist torsion testing to determine the non recrystallization temperature. Scientific Reports 11:1.
Crossref
Sheng Ding, Sabrina Alam Khan & Jun Yanagimoto. (2021) Metadynamic recrystallization behavior of 5083 aluminum alloy under double-pass compression and stress relaxation tests. Materials Science and Engineering: A 822, pages 141673.
Crossref
Pentti M. Kaikkonen, Mahesh C. Somani, Leo Pentti Karjalainen & Jukka I. Kömi. (2021) Flow Stress Behaviour and Static Recrystallization Characteristics of Hot Deformed Austenite in Microalloyed Medium-Carbon Bainitic Steels. Metals 11:1, pages 138.
Crossref
Shenglong Liang, Daniel Levesque, Nicolas Legrand & Hatem S. Zurob. (2020) Use of in-situ laser-ultrasonics measurements to develop robust models combining deformation, recovery, recrystallization and grain growth. Materialia 12, pages 100812.
Crossref
Atul Kumar, T. V. V. S. Vara Prasad, M. Nazeer, K. Gopinath & R. Balamuralikrishnan. (2020) A Study of Recrystallization Behavior of Two Ni-Cu–Containing High-Strength Steels with Different Mn Contents. Materials Performance and Characterization 9:2, pages 20190034.
Crossref
Ji Ho Shin, Ho-Sub Kim, Byeong Seo Kong, Gokul Obulan Subramanian, Sunghoon Hong, Ho Jung Lee & Changheui Jang. (2020) Development of thermo-mechanical processing to form high density of uniformly distributed nanosized carbides in austenitic stainless steels. Materials Science and Engineering: A 775, pages 138986.
Crossref
Cesar Facusseh, Armando Salinas, Alfredo Flores & Gerardo Altamirano. (2019) Study of Static Recrystallization Kinetics and the Evolution of Austenite Grain Size by Dynamic Recrystallization Refinement of an Eutectoid Steel. Metals 9:12, pages 1289.
Crossref
S. V. Korotovskaya, O. V. Sych, E. I. Khlusova & E. A. Yashina. (2019) Research of Recrystallization Processes in Low-Carbon Low-Alloy Steel in Modeling High-Temperature Rolling. Inorganic Materials: Applied Research 10:6, pages 1301-1308.
Crossref
S. V. Korotovskaya, O. V. Sych, E. I. Khlusova & E. A. Yashina. (2019) Research of recrystallization processes in lowcarbon low-alloyed steel during high-temperature rolling modeling. Voprosy Materialovedeniya:1(97), pages 15-27.
Crossref
Alexander Nam, Murodjon Turdimatov, Rudolf Kawalla & Ulrich Prahl. (2018) Inter‐Pass Softening Behavior of Fe–16Cr– x Mn–4Ni–0.05C–0.17N Steel . Advanced Engineering Materials 21:5.
Crossref
U. A. Pazilova, E. I. Khlusova & T. V. Kniaziuk. (2019) Influence of Hot Plastic Deformation Modes on the Structure and Properties of Quenched Hot Rolled Economically Alloyed High-Strength Steel. Inorganic Materials: Applied Research 9:6, pages 1051-1059.
Crossref
Minghao Zhang, Anne-Françoise Gourgues-Lorenzon, Esteban P. Busso, Haiwen Luo & Mingxin Huang. (2018) Recrystallisation-assisted creep of an austenitic Fe-Ni alloy under low stresses after hot deformation. Acta Materialia 153, pages 23-34.
Crossref
Tim Krämer, Lena Eisenhut, Lionel Germain, Daniel Rupp, Eric Detemple & Christian Motz. (2018) Assessment of EBSD Analysis and Reconstruction Methods as a Tool for the Determination of Recrystallized Fractions in Hot-Deformed Austenitic Microstructures. Metallurgical and Materials Transactions A 49:7, pages 2795-2802.
Crossref
E. I. Khlusova, A. A. Zisman, T. V. Knyazyuk & N. N. Novoskol’tsev. (2018) Effect of the Rate of Hot Compressive Deformation on the Kinetics of Dynamic and Static Recrystallization of Novel Medium-Carbon Medium-Alloy Steel. Metal Science and Heat Treatment 59:11-12, pages 682-688.
Crossref
T. V. Knyazyuk, S. N. Petrov, V. V. Ryabov & E. I. Khlusova. (2018) Structure of a Wear-Resistant Medium-Carbon Steel After Hot Deformation in Hammer Dies and Heat Treatment. Metal Science and Heat Treatment 59:9-10, pages 556-563.
Crossref
A I Ziza & V V Tsukanov. (2017) Optimization of Thermal and Deformation Effect during Plastic Deformation and Thermal Treatment of Hot Rolled Heavy Wall Pipes Made of Medium Carbon Martensitic Steel. IOP Conference Series: Materials Science and Engineering 287, pages 012015.
Crossref
Pavel Layus, Paul Kah, Alexander Zisman, Markku Pirinen & Sergey Golosienko. (2016) Recrystallization-based formation of uniform fine-grained austenite structure before polymorphic transition in high-strength steels for Arctic applications. International Journal of Mechanical and Materials Engineering 11:1.
Crossref
Mahesh C. Somani, David A. Porter & L. Pentti Karjalainen. 2016. Proceedings of the 6th International Conference on Recrystallization and Grain Growth (ReX&GG 2016). Proceedings of the 6th International Conference on Recrystallization and Grain Growth (ReX&GG 2016) 131 136 .
Zhao Baochun, Li Guiyan, Yan Pingyuan & Huang Lei. (2016) Analysis of the methods to calculate austenite static recrystallization volume fraction. Journal of Materials Research 31:14, pages 2097-2104.
Crossref
Mahesh C. Somani, David A. Porter & L. Pentti Karjalainen. 2016. Proceedings of the 6th International Conference on Recrystallization and Grain Growth (ReX&GG 2016). Proceedings of the 6th International Conference on Recrystallization and Grain Growth (ReX&GG 2016) 131 136 .
Sebastián F. Medina, Alberto Quispe & Manuel Gómez. (2015) Precipitation model in microalloyed steels both isothermal and continuous cooling conditions. Revista de Metalurgia 51:4, pages e056.
Crossref
Mahesh Chandra Somani, David A. Porter, Atef S. Hamada & L. Pentti Karjalainen. (2015) High-Temperature Flow Stress and Recrystallization Characteristics of Al-Bearing Microalloyed TWIP Steels. Metallurgical and Materials Transactions A 46:11, pages 5329-5342.
Crossref
A. Paggi, G. Angella & R. Donnini. (2015) Strain induced grain boundary migration effects on grain growth of an austenitic stainless steel during static and metadynamic recrystallization. Materials Characterization 107, pages 174-181.
Crossref
S.F. Medina. (2015) From heterogeneous to homogeneous nucleation for precipitation in austenite of microalloyed steels. Acta Materialia 84, pages 202-207.
Crossref
A. A. Zisman, T. V. Soshina & E. I. Khlusova. (2014) Maps of structure changes in austenite of low carbon steel 09CrNi2MoCuV during hot deformation and their use to improve industrial technologies. Inorganic Materials: Applied Research 5:6, pages 570-577.
Crossref
Manuel G?mez, Alberto Quispe & Sebasti?n F. Medina. (2014) Influence of the Microalloying Elements on the Temporary Inhibition of Static Recrystallization by Strain-Induced Precipitates. steel research international 85:10, pages 1440-1445.
Crossref
Sebastian F. Medina, Alberto Quispe & Manuel Gomez. (2013) Model for Strain-Induced Precipitation Kinetics in Microalloyed Steels. Metallurgical and Materials Transactions A 45:3, pages 1524-1539.
Crossref
Georg Paul & Kirill Khlopkov. (2013) Precipitation Processes in High-Manganese Steels. Materials Science Forum 762, pages 405-410.
Crossref
Manuel GómezAlberto QuispeSebastián F. Medina. (2013) Influence of (Al, Nb, V) Precipitates on the Recrystallization Inhibition in Microalloyed Steels. Materials Science Forum 753, pages 435-438.
Crossref
Mahesh C. Somani, Henri Tervonen, L. Pentti Karjalainen & David A. Porter. (2013) Effect of Niobium on Static Recrystallization Characteristics of TWIP Steels. Materials Science Forum 753, pages 195-200.
Crossref
Evgueni I. Poliak. (2012) Determining the No-Recrystallization Conditions for Industrial Hot Strip Rolling of Steels Using Laboratory Simulations. Materials Science Forum 715-716, pages 782-787.
Crossref
W.J. Liu. (2012) A Review of the Stress-Relaxation Method for Following the Kinetics of Precipitation, Recovery and Recrystallization. Materials Science Forum 706-709, pages 2758-2763.
Crossref
Sebastián F. MedinaAlberto QuispeManuel Gómez. (2012) Influence of Temperature on Strain Induced Precipitation Kinetics in Microalloyed Steels. Materials Science Forum 706-709, pages 2176-2180.
Crossref
Gwenola Herman & Evgueni I. Poliak. (2012) Determining the No-Recrystallization Conditions for Industrial Hot Strip Rolling of Steels Using Laboratory Simulations. Materials Science Forum 706-709, pages 1409-1414.
Crossref
Manuel Gómez & Sebastián F. Medina. (2011) Role of microalloying elements in the microstructure of hot rolled steels. International Journal of Materials Research 102:10, pages 1197-1207.
Crossref
S.F. Medina, M. Gómez & P. Valles. (2010) Effects of TiN and AlN Nanoparticles in Hot Deformation of Austenite in Steels. steel research international 81:11, pages 1010-1015.
Crossref
S. F. Medina, M. Gómez & P. P. Gómez. (2010) Effects of V and Nb on static recrystallisation of austenite and precipitate size in microalloyed steels. Journal of Materials Science 45:20, pages 5553-5557.
Crossref
S. Vervynckt, K. Verbeken, P. Thibaux & Y. Houbaert. (2010) Characterization of the Austenite Recrystallization by Comparing Double Deformation and Stress Relaxation Tests. steel research international 81:3, pages 234-244.
Crossref
Manuel GómezLucía RancelSebastián F. Medina. (2010) Effects of Nb, V, Ti and Al on Recrystallisation/Precipitation Interaction in Microalloyed Steels. Materials Science Forum 638-642, pages 3388-3393.
Crossref
C.A. Poblano-Salas & J.D.O. Barceinas-Sanchez. (2009) Stress relaxation study of water atomized Cu–Cr–Zr powder alloys consolidated by inverse warm extrusion. Journal of Alloys and Compounds 485:1-2, pages 340-345.
Crossref
Manuel Gómez, Lucía Rancel & Sebastián F. Medina. (2009) Assessment of austenite static recrystallization and grain size evolution during multipass hot rolling of a niobium-microalloyed steel. Metals and Materials International 15:4, pages 689-699.
Crossref
M. Gómez, L. Rancel & S.F. Medina. (2009) Effects of aluminium and nitrogen on static recrystallisation in V-microalloyed steels. Materials Science and Engineering: A 506:1-2, pages 165-173.
Crossref
Manuel Gómez, Lucía Rancel, Bernardo J. Fernández & Sebastián F. Medina. (2009) Evolution of austenite static recrystallization and grain size during hot rolling of a V-microalloyed steel. Materials Science and Engineering: A 501:1-2, pages 188-196.
Crossref
Akira Yanagida & Jun Yanagimoto. (2008) Formularization of softening fractions and related kinetics for static recrystallization using inverse analysis of double compression test. Materials Science and Engineering: A 487:1-2, pages 510-517.
Crossref
S.F. Medina, M. Gómez & L. Rancel. (2008) Grain refinement by intragranular nucleation of ferrite in a high nitrogen content vanadium microalloyed steel. Scripta Materialia 58:12, pages 1110-1113.
Crossref
Sebastian F. Medina, Lucia Rancel, Manuel Gómez, Randa Ishak & Massimo De Sanctis. (2008) Intragranular Nucleation of Ferrite on Precipitates and Grain Refinement in a Hot Deformed V-microalloyed Steel. ISIJ International 48:11, pages 1603-1608.
Crossref
A.S. Hamada, L.P. Karjalainen & M.C. Somani. (2007) The influence of aluminum on hot deformation behavior and tensile properties of high-Mn TWIP steels. Materials Science and Engineering: A 467:1-2, pages 114-124.
Crossref
C. Iparraguirre, Ana Isabel Fernández-Calvo, J.M. Rodriguez-Ibabe & Beatriz López. (2007) Evaluation of Physical Parameters in Modelling Softening-Precipitation Interaction in Hot Worked Nb Microalloyed Austenite. Materials Science Forum 539-543, pages 4119-4124.
Crossref
A. Quispe, S.F. Medina, M. Gómez & J.I. Chaves. (2007) Influence of austenite grain size on recrystallisation–precipitation interaction in a V-microalloyed steel. Materials Science and Engineering: A 447:1-2, pages 11-18.
Crossref
Xiong Li, Hong-bing Zhang, Xue-yu Ruan, Zhong-hua Luo & Yan Zhang. (2004) Kinetics for static recrystallization after hot working of 0.38C-0.99Cr-0.16Mo steel. Journal of Central South University of Technology 11:4, pages 353-357.
Crossref
H.S. Zurob, C.R. Hutchinson, Y. Brechet & G. Purdy. (2002) Modeling recrystallization of microalloyed austenite: effect of coupling recovery, precipitation and recrystallization. Acta Materialia 50:12, pages 3077-3094.
Crossref
A.I Fern?ndez, B L?pez & J.M Rodr??guez-Ibabe. (1999) Relationship between the austenite recrystallized fraction and the softening measured from the interrupted torsion test technique. Scripta Materialia 40:5, pages 543-549.
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.