714
Views
83
CrossRef citations to date
0
Altmetric
Articles

Effect of composition on kinetics of athermal martensite formation in plain carbon steels

&
Pages 1009-1012 | 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 (9)

Adriel Wong. (2022) Modelling the stability and transformation kinetics of retained austenite in steels. Materials Science and Technology 38:11, pages 676-688.
Read now
J. R. C. Guimarães & P. R. Rios. (2019) General description of martensite transformation curves – a case for bainite. Materials Science and Technology 35:6, pages 731-737.
Read now
Yu Liu, Jiazhi Zhang, Shengwei Qin, Xunwei Zuo, Nailu Chen, Feng Gao & Yonghua Rong. (2019) Investigation of quenching stress of 42CrMo treated by alternately timed quenching process. Heat Treatment and Surface Engineering 1:1-2, pages 23-31.
Read now
M. Villa, M. F. Hansen, K. Pantleon & M. A. J. Somers. (2015) Thermally activated growth of lath martensite in Fe–Cr–Ni–Al stainless steel. Materials Science and Technology 31:1, pages 115-122.
Read now
S.M.C. van Bohemen. (2013) Autocatalytic nature of the bainitic transformation in steels: a new hypothesis. Philosophical Magazine 93:4, pages 388-408.
Read now
Q Z Gao, X J Di, Y C Liu, L M Yu & Z S Yan. (2012) Athermal martensite transformation of modified high Cr ferritic heat resistant steel undergoing different quenching temperatures. Materials Research Innovations 16:3, pages 198-203.
Read now
S M C van Bohemen. (2012) Bainite and martensite start temperature calculated with exponential carbon dependence. Materials Science and Technology 28:4, pages 487-495.
Read now

Articles from other publishers (74)

Shuai Wang, Jie Li, Li-yang Zeng, Xun-wei Zuo, Nai-lu Chen & Yong-hua Rong. (2023) Machine learning for prediction of retained austenite fraction and optimization of processing in quenched and partitioned steels. Journal of Iron and Steel Research International.
Crossref
Jean-Benoit Lévesque, Carlo Baillargeon, Daniel Paquet, Jacques Lanteigne & Henri Champliaud. (2023) Characterizing and Modeling Transformation-Induced Plasticity in 13Cr-4Ni Welds upon Cooling. Materials 16:22, pages 7166.
Crossref
Łukasz Rauch, Władysław Zalecki, Roman KuziakBogdan GarbarzKrzysztof RagaKrzysztof Bzowski & Maciej Pietrzyk. (2023) Numerical Simulations of Aircraft Engine Ring Gear Quenching by Using Mean Field Model of Phase Transformations in Pyroware Steel 53. Journal of Aerospace Engineering 36:6.
Crossref
Jun Lu, Shuize Wang, Hao Yu & Xinping Mao. (2023) Achieving enhanced cryogenic toughness in a 1 GPa grade HSLA steel through reverse transformation of martensite. Journal of Materials Research and Technology 27, pages 6696-6708.
Crossref
Sachin Kumar & Shiv Brat Singh. (2023) Quenching and Partitioning (Q&P) Steel: Alloy Design, Phase Transformation and Evolution of Microstructure. Metallurgical and Materials Transactions A 54:8, pages 3134-3156.
Crossref
Bartosz Iżowski, Artur Wojtyczka & Maciej Motyka. (2023) Numerical Simulation of Low-Pressure Carburizing and Gas Quenching for Pyrowear 53 Steel. Metals 13:2, pages 371.
Crossref
Mohsen Mohammadi Zahrani, Mostafa Ketabchi & Eslam Ranjbarnodeh. (2023) Microstructure development and mechanical properties of a C-Mn-Si-Al-Cr cold rolled steel subjected to quenching and partitioning treatment. Journal of Materials Research and Technology 22, pages 2806-2818.
Crossref
Long Hu, Xixian Li, Wenze Luo, Suo Li & Dean Deng. (2023) Residual stress and deformation in UHS quenched steel butt-welded joint. International Journal of Mechanical Sciences, pages 108099.
Crossref
Sharmistha Dhara, Stefan M.C. van Bohemen & Maria J. Santofimia. (2022) Isothermal decomposition of austenite in presence of martensite in advanced high strength steels: A review. Materials Today Communications 33, pages 104567.
Crossref
Wei Ding, Yu Gong, Qi Lu, Jeff Wang, Zijian Wang, Wei Li & Xuejun Jin. (2022) Improve bendability of a Cr-alloyed press-hardening steel through an in-line quenching and non-isothermal partitioning process. Journal of Manufacturing Processes 84, pages 481-493.
Crossref
Yong Li, Lingyu Wang, Kaiyu Zhu, Chenchong Wang & Wei Xu. (2022) An integral transformation model for the combined calculation of key martensitic transformation temperatures and martensite fraction. Materials & Design 219, pages 110768.
Crossref
Alexandre Mathevon, Véronique Massardier, Damien Fabrègue, Mélanie Ollat, Philippe Rocabois & Michel Perez. (2022) Thermodynamic-Based Model Coupled with Phase Transformation Simulation to Predict the Ms Temperature in the Case of Two-Phase Steel. Metallurgical and Materials Transactions A 53:5, pages 1674-1681.
Crossref
Vinod Kurup, Charles Siyasiya & Roelf Mostert. (2022) Martensite transformation kinetics and microstructural evolution during quench and partitioning process of high aluminium medium carbon steel. MATEC Web of Conferences 370, pages 03009.
Crossref
Yong Li, David San Martín, Jinliang Wang, Chenchong Wang & Wei Xu. (2021) A review of the thermal stability of metastable austenite in steels: Martensite formation. Journal of Materials Science & Technology 91, pages 200-214.
Crossref
Sachin Kumar & Shiv Brat Singh. (2021) Evolution of microstructure during the "quenching and partitioning (Q&P)" treatment. Materialia 18, pages 101135.
Crossref
Bin Hu, Xuequan Rong, Chang Tian, Yishuang Yu, Hui Guo, R.D.K. Misra & Chengjia Shang. (2021) Nanoscale precipitation and ultrafine retained austenite induced high strength-ductility combination in a newly designed low carbon Cu-bearing medium-Mn steel. Materials Science and Engineering: A 822, pages 141685.
Crossref
Sandip K. Saha & Akhilesh Kumar. (2021) Coupled Temperature-Microstructure Model for Predicting Temperature Distribution and Phase Transformation in Steel for Arbitrary Cooling Curves. Journal of Thermal Science and Engineering Applications 13:3.
Crossref
Wei Pei, Wei Liu, Yue Zhang, Rongjian Qie & Aimin Zhao. (2021) Study on Kinetics of Transformation in Medium Carbon Steel Bainite at Different Isothermal Temperatures. Materials 14:11, pages 2721.
Crossref
Jang Woong Jo, Hyun Joo Seo, Byung-In Jung, Sangwoo Choi & Chong Soo Lee. (2021) Effect of bainite fraction on hydrogen embrittlement of bainite/martensite steel. Materials Science and Engineering: A 814, pages 141226.
Crossref
Tianle Wang, Jinglian Du, Shizhong Wei & Feng Liu. (2021) Ab-initio investigation for the microscopic thermodynamics and kinetics of martensitic transformation. Progress in Natural Science: Materials International 31:1, pages 121-128.
Crossref
José Roberto Costa Guimarães, Paulo Rangel Rios & André Luiz Moraes Alves. (2021) Martensite’s Logistic Paradigm. Materials Research 24:3.
Crossref
Adriana Eres-Castellanos, Javier Hidalgo, Muftah Zorgani, Mohammad Jahazi, Isaac Toda-Caraballo, Francisca G. Caballero & Carlos Garcia-Mateo. (2021) Assessing the scale contributing factors of three carbide-free bainitic steels: A complementary theoretical and experimental approach. Materials & Design 197, pages 109217.
Crossref
A. Gramlich, C. van der Linde, M. Ackermann & W. Bleck. (2020) Effect of molybdenum, aluminium and boron on the phase transformation in 4 ​wt.–% manganese steels. Results in Materials 8, pages 100147.
Crossref
A. Arlazarov, E. Soares Barreto, N. Kabou & D. Huin. (2020) Evolution of Ms Temperature as a Function of Composition and Grain Size. Metallurgical and Materials Transactions A 51:12, pages 6159-6166.
Crossref
Haijiang Hu, Junyu Tian, Guang Xu & Hatem S. Zurob. (2020) New insights into the effects of deformation below-M on isothermal kinetics of bainitic transformation. Journal of Materials Research and Technology 9:6, pages 15750-15758.
Crossref
Matteo Villa & Marcel A. J. Somers. (2020) On the Role of Isothermal Martensite Formation during Cryogenic Treatment of Steels. HTM Journal of Heat Treatment and Materials 75:5, pages 49-72.
Crossref
D. Kaiser, J. Damon, F. Mühl, B. de Graaff, D. Kiefer, S. Dietrich & V. Schulze. (2020) Experimental investigation and finite-element modeling of the short-time induction quench-and-temper process of AISI 4140. Journal of Materials Processing Technology 279, pages 116485.
Crossref
Ashwath M. Ravi, Alfonso Navarro-López, Jilt Sietsma & Maria J. Santofimia. (2020) Influence of martensite/austenite interfaces on bainite formation in low-alloy steels below M. Acta Materialia 188, pages 394-405.
Crossref
J. B. Lévesque, J. Lanteigne, H. Champliaud & D. Paquet. (2019) Modeling Solid-State Phase Transformations of 13Cr-4Ni Steels in Welding Heat-Affected Zone. Metallurgical and Materials Transactions A 51:3, pages 1208-1220.
Crossref
Saurabh Sarkar & Devendra Shahare. 2020. Proceedings of International Conference in Mechanical and Energy Technology. Proceedings of International Conference in Mechanical and Energy Technology 403 413 .
Zhang Fangyuan, Duan Chunzheng & Kou Wenneng. (2019) Modeling of Martensite Transformation in White Layer under Thermo-mechanical Coupling in Hard-Cutting Process. Journal of Materials Engineering and Performance 28:11, pages 6579-6587.
Crossref
Jinliang Wang, Xiaohui Xi, Yong Li, Chenchong Wang & Wei Xu. (2019) New insights on nucleation and transformation process in temperature-induced martensitic transformation. Materials Characterization 151, pages 267-272.
Crossref
J. Hidalgo, C. Celada-Casero & M.J. Santofimia. (2019) Fracture mechanisms and microstructure in a medium Mn quenching and partitioning steel exhibiting macrosegregation. Materials Science and Engineering: A 754, pages 766-777.
Crossref
Carola Celada-Casero, Jilt Sietsma & Maria Jesus Santofimia. (2019) The role of the austenite grain size in the martensitic transformation in low carbon steels. Materials & Design 167, pages 107625.
Crossref
T. Nyyssönen, P. Peura, E. De Moor, D. Williamson & V.-T. Kuokkala. (2019) Crystallography and mechanical properties of intercritically annealed quench and partitioned high-aluminum steel. Materials Characterization 148, pages 71-80.
Crossref
Shashank Ramesh Babu, Dmitry Ivanov & David Porter. (2019) Influence of Microsegregation on the Onset of the Martensitic Transformation. ISIJ International 59:1, pages 169-175.
Crossref
H. Torres, F. A. Pérez-González, O. Zapata-Hernández, N. F. Garza-Montes-deOca, J. H. Ramírez-Ramírez, Z. Fried, I. Felde, M. Réger & R. Colás. (2019) Modeling the Induction Hardening of High-Carbon Saw Blades. Materials Performance and Characterization 8:1, pages 20180183.
Crossref
Daming Tong, Jianfeng Gu & Fan Yang. (2018) Numerical simulation on induction heat treatment process of a shaft part: Involving induction hardening and tempering. Journal of Materials Processing Technology 262, pages 277-289.
Crossref
J. R. C. Guimarães & P. R. Rios. (2018) Revisiting Temperature and Magnetic Effects on the Fe-30 Wt Pct Ni Martensite Transformation Curve. Metallurgical and Materials Transactions A 49:12, pages 5995-6000.
Crossref
R. Jafari, S. Kheirandish & S. Mirdamadi. (2018) Effects of partitioning parameters in quenching and partitioning on microstructure and mechanical properties of an ultra‐high strength low‐alloy steel. Materialwissenschaft und Werkstofftechnik 49:11, pages 1381-1391.
Crossref
José Roberto Costa Guimarães & Paulo Rangel Rios. (2018) Fundamental aspects of the martensite transformation curve in Fe-Ni-X and Fe-C alloys. Journal of Materials Research and Technology 7:4, pages 499-507.
Crossref
Ravi Ranjan & Shiv Brat Singh. (2018) Martensite Transformation During Continuous Cooling: Analysis of Dilatation Data. Metallurgical and Materials Transactions A 49:10, pages 4474-4483.
Crossref
Yu Liu, Shengwei Qin, Jiazhi Zhang, Ying Wang, Yonghua Rong, Xunwei Zuo & Nailu Chen. (2017) Influence of Transformation Plasticity on the Distribution of Internal Stress in Three Water-Quenched Cylinders. Metallurgical and Materials Transactions A 48:10, pages 4943-4956.
Crossref
J. Cochet, S. Thuillier, T. Loulou, N. Decultot, P. Carré & P.-Y. Manach. (2017) Heat treatment of 34CrNiMo6 steel used for mooring shackles. The International Journal of Advanced Manufacturing Technology 91:5-8, pages 2329-2346.
Crossref
Daming Tong, Jianfeng Gu & George Edward Totten. (2017) Numerical simulation of induction hardening of a cylindrical part based on multi-physics coupling. Modelling and Simulation in Materials Science and Engineering 25:3, pages 035009.
Crossref
S.M.C. van Bohemen & L. Morsdorf. (2017) Predicting the Ms temperature of steels with a thermodynamic based model including the effect of the prior austenite grain size. Acta Materialia 125, pages 401-415.
Crossref
Emna Ben Fredj, Hadi Ghasemi Nanesa, Davood Shahriari, Jean-Benoit Morin & Mohammad Jahazi. 2017. TMS 2017 146th Annual Meeting & Exhibition Supplemental Proceedings. TMS 2017 146th Annual Meeting & Exhibition Supplemental Proceedings 413 423 .
Fei Huyan, Peter Hedström, Lars Höglund & Annika Borgenstam. (2016) A Thermodynamic-Based Model to Predict the Fraction of Martensite in Steels. Metallurgical and Materials Transactions A 47:9, pages 4404-4410.
Crossref
C. Du, J.P.M. Hoefnagels, R. Vaes & M.G.D. Geers. (2016) Plasticity of lath martensite by sliding of substructure boundaries. Scripta Materialia 120, pages 37-40.
Crossref
A. Navarro-López, J. Sietsma & M. J. Santofimia. (2015) Effect of Prior Athermal Martensite on the Isothermal Transformation Kinetics Below M s in a Low-C High-Si Steel. Metallurgical and Materials Transactions A 47:3, pages 1028-1039.
Crossref
Michal Schwartz, Dan Gheorghe, Robert Ciocoiu & Ion Ciucă. (2015) Die Failures in Copper Hot Extrusion. Advanced Materials Research 1114, pages 56-61.
Crossref
Xiaosheng Zhou, Chenxi Liu, Liming Yu, Yongchang Liu & Huijun Li. (2015) Phase Transformation Behavior and Microstructural Control of High-Cr Martensitic/Ferritic Heat-resistant Steels for Power and Nuclear Plants: A Review. Journal of Materials Science & Technology 31:3, pages 235-242.
Crossref
F. Huyan, P. Hedström & A. Borgenstam. (2015) Modelling of the Fraction of Martensite in Low-alloy Steels. Materials Today: Proceedings 2, pages S561-S564.
Crossref
D. A. Mirzaev & K. Yu. Okishev. (2015) Formation of Packet (Lath) Martensite in Iron-Nickel Alloys. Metal Science and Heat Treatment 56:9-10, pages 462-469.
Crossref
F. Maresca, V.G. Kouznetsova & M.G.D. Geers. (2014) Subgrain lath martensite mechanics: A numerical–experimental analysis. Journal of the Mechanics and Physics of Solids 73, pages 69-83.
Crossref
A. Bojack, L. Zhao, P. F. Morris & J. Sietsma. (2014) In Situ Thermo-magnetic Investigation of the Austenitic Phase During Tempering of a 13Cr6Ni2Mo Supermartensitic Stainless Steel. Metallurgical and Materials Transactions A 45:13, pages 5956-5967.
Crossref
Matteo Villa, Karen Pantleon, Michael Reich, Olaf Kessler & Marcel A.J. Somers. (2014) Kinetics of anomalous multi-step formation of lath martensite in steel. Acta Materialia 80, pages 468-477.
Crossref
Qiuzhi Gao, Cong Wang, Fu Qu, Yingling Wang & Zhixia Qiao. (2014) Martensite transformation kinetics in 9Cr–1.7W–0.4Mo–Co ferritic steel. Journal of Alloys and Compounds 610, pages 322-330.
Crossref
F Maresca, V G Kouznetsova & M G D Geers. (2014) On the role of interlath retained austenite in the deformation of lath martensite. Modelling and Simulation in Materials Science and Engineering 22:4, pages 045011.
Crossref
R. K. Dutta, R. M. Huizenga, M. Amirthalingam, A. King, H. Gao, M. J. M. Hermans, J. Sietsma & I. M. Richardson. (2013) In-Situ Synchrotron Diffraction Studies on Transformation Strain Development in a High Strength Quenched and Tempered Structural Steel—Part I. Bainitic Transformation. Metallurgical and Materials Transactions A 45:1, pages 218-229.
Crossref
Seok Jae Lee. (2013) Evaluation of Empirical Kinetics Models of Athermal Martensite Transformation in Plain Carbon and Low Alloy Steels. Advanced Materials Research 798-799, pages 39-44.
Crossref
Seok-Jae Lee, Seawoong Lee & Bruno C. De Cooman. (2013) Martensite transformation of sub-micron retained austenite in ultra-fine grained manganese transformation-induced plasticity steel. International Journal of Materials Research 104:5, pages 423-429.
Crossref
Yongchang Liu, Lifang Zhang, Ferdinand Sommer & Eric Jan Mittemeijer. (2012) Kinetics of Martensite Formation in Substitutional Fe-Al Alloys: Dilatometric Analysis. Metallurgical and Materials Transactions A 44:3, pages 1430-1440.
Crossref
Qiuzhi Gao, Yongchang Liu, Xinjie Di, Liming Yu & Zesheng Yan. (2012) Martensite transformation in the modified high Cr ferritic heat-resistant steel during continuous cooling. Journal of Materials Research 27:21, pages 2779-2789.
Crossref
S. Li, R. Zhu, I. Karaman & R. Arróyave. (2012) Thermodynamic analysis of two-stage heat treatment in TRIP steels. Acta Materialia 60:17, pages 6120-6130.
Crossref
A. Bojack, L. Zhao, P.F. Morris & J. Sietsma. (2012) In-situ determination of austenite and martensite formation in 13Cr6Ni2Mo supermartensitic stainless steel. Materials Characterization 71, pages 77-86.
Crossref
Stefan M. C. van Bohemen & David N. Hanlon. (2012) A physically based approach to model the incomplete bainitic transformation in high-Si steels. International Journal of Materials Research 103:8, pages 987-991.
Crossref
Seok-Jae Lee & Chester J. Van Tyne. (2011) A Kinetics Model for Martensite Transformation in Plain Carbon and Low-Alloyed Steels. Metallurgical and Materials Transactions A 43:2, pages 422-427.
Crossref
E. Paravicini Bagliani, E. Anelli & Marco Boniardi. (2012) Austenite Stabilization by Quenching and Partitioning in a Low-Alloy Medium Carbon Steel. Materials Science Forum 706-709, pages 2234-2239.
Crossref
V. Colla, M. DeSanctis, A. Dimatteo, G. Lovicu & R. Valentini. (2011) Prediction of Continuous Cooling Transformation Diagrams for Dual-Phase Steels from the Intercritical Region. Metallurgical and Materials Transactions A 42:9, pages 2781-2793.
Crossref
S.M.C. van Bohemen & J. Sietsma. (2010) The kinetics of bainite and martensite formation in steels during cooling. Materials Science and Engineering: A 527:24-25, pages 6672-6676.
Crossref
J. R. C. Guimarães & P. R. Rios. (2010) Unified Model for Plate and Lath Martensite with Athermal Kinetics. Metallurgical and Materials Transactions A 41:8, pages 1928-1935.
Crossref
S.M.C. Van Bohemen. (2009) Modeling Start Curves of Bainite Formation. Metallurgical and Materials Transactions A 41:2, pages 285-296.
Crossref
S.M.C. Van Bohemen & J. Sietsma. (2009) Martensite Formation in Partially and Fully Austenitic Plain Carbon Steels. Metallurgical and Materials Transactions A 40:5, pages 1059-1068.
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.