128
Views
22
CrossRef citations to date
0
Altmetric
Articles

Effect of carbon concentration on tensile behaviour of pearlitic steels

Pages 1715-1720 | 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 (1)

Mingming Wang, Fucheng Zhang & Zhinan Yang. (2017) Effects of alloying elements and cooling rates on the high-strength pearlite steels. Materials Science and Technology 33:14, pages 1673-1680.
Read now

Articles from other publishers (21)

Norimitsu Koga, Kouki Koizumi, Shuto Takayasu, Osamu Umezawa, Mizuki WatanabeMasayuki YamamotoTakashi Yamamoto. (2023) High-Temperature Hardness in Hypereutectoid Steels with Various Microstructures Measured by Using Small Ball Rebound Hardness Test. MATERIALS TRANSACTIONS 64:7, pages 1600-1604.
Crossref
Pablo B.P. Leão, Shutong Zhang, J.R. Barros Neto, Suyanny A. Freire, Rodrigo de C.P. Loureiro, Antonio J. Ramirez & H.F.G. de Abreu. (2023) Microstructure, microtexture, and crack susceptibility in pearlitic steel during lab-simulated processes aiming tensile armor application in flexible pipelines. Journal of Materials Processing Technology 316, pages 117950.
Crossref
Akhil Khajuria, S. Shiva & Anurag Misra. (2023) The carbon content effect on hot-rolled C–Mn micro-alloyed E410 structural steel. Vacuum 212, pages 112042.
Crossref
Pablo B. Paiva Leão, João R. Barros Neto, Samuel Filgueiras Rodrigues, Ladislav Novotný, Jorge Luiz Cardoso, Luis Flavio Gaspar Herculano, Tiago Nunes Lima, Antonio J. Ramirez & Hamilton Ferreira G. de Abreu. (2023) In-situ tensile-shear test in SEM and DIC analysis of two pearlitic steel microstructures: undeformed-coarse and deformed-refined. Journal of Materials Research and Technology 24, pages 9441-9461.
Crossref
Masaki Tanaka, Toshiyuki Manabe, Tatsuya Morikawa & Kenji Higashida. (2020) Mechanism Behind the Onset of Delamination in Wire-drawn Pearlitic Steels. ISIJ International 60:11, pages 2596-2603.
Crossref
Yanxu Wang, Takahisa Ohnuki, Yo Tomota, Stefanus Harjo & Takahito Ohmura. (2017) Multi-scaled heterogeneous deformation behavior of pearlite steel studied by in situ neutron diffraction. Scripta Materialia 140, pages 45-49.
Crossref
Toshihiko Teshima, Makoto Kosaka, Kohsaku Ushioda, Norimitsu Koga & Nobuo Nakada. (2017) Local cementite cracking induced by heterogeneous plastic deformation in lamellar pearlite. Materials Science and Engineering: A 679, pages 223-229.
Crossref
Mingming Wang, Fucheng Zhang & Zhinan Yang. (2017) Effects of high-temperature deformation and cooling process on the microstructure and mechanical properties of an ultrahigh-strength pearlite steel. Materials & Design 114, pages 102-110.
Crossref
Yanxu Wang, Yo Tomota, Stefanus Harjo, Wu Gong & Takahito Ohmura. (2016) In-situ neutron diffraction during tension-compression cyclic deformation of a pearlite steel. Materials Science and Engineering: A 676, pages 522-530.
Crossref
Nobuo Nakada & Masaharu Kato. (2016) Internal Stress and Elastic Strain Energy in Pearlite and Their Accommodation by Misfit Dislocations. ISIJ International 56:10, pages 1866-1873.
Crossref
Yuhua Su, Satoshi Morooka, Masato Ohnuma, Junichi Suzuki & Yo Tomota. (2015) Quantitative Analysis of Cementite Spheroidization in Pearlite by Small-Angle Neutron Scattering. Metallurgical and Materials Transactions A 46:4, pages 1731-1740.
Crossref
Nobuo Nakada, Norimitsu Koga, Yuki Tanaka, Toshihiro Tsuchiyama, Setsuo Takaki & Masaharu Ueda. (2015) Strengthening of Pearlitic Steel by Ferrite/Cementite Elastic Misfit Strain. ISIJ International 55:9, pages 2036-2038.
Crossref
Masayoshi Kumagai, Shigeo Sato, Shigeru Suzuki, Muneyuki Imafuku, Hitoshi Tashiro & Shin-ichi Ohya. (2015) Residual Stress Analysis of Cold-drawn Pearlite Steel Wire Using White Synchrotron Radiation. ISIJ International 55:7, pages 1489-1495.
Crossref
S. Cheng, Y.D. Wang, H. Choo, X.-L. Wang, J.D. Almer, P.K. Liaw & Y.K. Lee. (2010) An assessment of the contributing factors to the superior properties of a nanostructured steel using in situ high-energy X-ray diffraction. Acta Materialia 58:7, pages 2419-2429.
Crossref
J. A. Pérez-Benitez, J. Capó-Sánchez & L. R. Padovese. (2008) Modeling of the Barkhausen jump in low carbon steel. Journal of Applied Physics 103:4, pages 043910.
Crossref
Lei Che, Masahide Gotoh, Yoshiaki Horimoto & Yukio Hirose. (2007) Effect of Microstructure of Cementite on Interphase Stress State in Carbon Steel. Journal of Iron and Steel Research International 14:4, pages 31-38.
Crossref
S. Morooka, Yo Tomota, Takayoshi Suzuki & Takashi Kamiyama. (2006) Influence of <110> Fiber Texture on Internal Stresses Evolved by Plastic Deformation for a Pearlite Steel. Advanced Materials Research 15-17, pages 912-917.
Crossref
Y. Shiota, Y. Tomota, A. Moriai & T. Kamiyama. (2005) Structure and mechanical behavior of heavily drawn pearlite and martensite in a high carbon steel. Metals and Materials International 11:5, pages 371-376.
Crossref
Satoshi MOROOKA, Tetsuya SUZUKI, Yo TOMOTA, Yoshinori SHIOTA & Takashi KAMIYAMA. (2005) Multi-scaled Heterogenetity and Influence of Texture on Plastic Flow of Pearlite Steels. Tetsu-to-Hagane 91:11, pages 816-821.
Crossref
Y. Tomota, T. Suzuki, A. Kanie, Y. Shiota, M. Uno, A. Moriai, N. Minakawa & Y. Morii. (2005) In situ neutron diffraction of heavily drawn steel wires with ultra-high strength under tensile loading. Acta Materialia 53:2, pages 463-467.
Crossref
Y. Tomota, H. Tokuda, Y. Adachi, M. Wakita, N. Minakawa, A. Moriai & Y. Morii. (2004) Tensile behavior of TRIP-aided multi-phase steels studied by in situ neutron diffraction. Acta Materialia 52:20, pages 5737-5745.
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.