Study on Thermal Deformation Behavior of Cu-P Weathering Steel

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Abstract:

Using thermal simulator (Gleeble 1500D), the thermal deformation behavior of Cu-P weathering steel containing Cr, Ni, Mo under the conditions of various deformation temperatures and strain rates was studied. The true stress-true strain curves at various thermal deformation conditions were got, and the thermal deformation equation was established. Then the microstructure features of the steel under various deformation temperatures and strain rates were analyzed when the true strains were same. The results show that with the same strains and strain rates, the higher the deformation temperature, the easier the recrystallization occurs, and the greater the size of the recrystal grains. And with the same strains and deformation temperatures, the lower the strain rate, the easier the recrystallization occurs, and the greater the proportion and size of the recrystal grains. Keywords:Weathering steel, Deformation temperature, Strain rate, Thermal deformation equation, Recrystallization

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Materials Science Forum (Volumes 704-705)

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124-128

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December 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Zhang Quan cheng, Wu J S. Present situation of research and development of weathering steel [J]. Materials Review (in Chinese), 2000, 14(7): 12-13.

Google Scholar

[2] Ding Yuan Fa, Fan G S. Corrosion rule of low alloy steel in the Marine environment[J]. Iron and Steel (in Chinese), 1992, 27(11): 33-34.

Google Scholar

[3] Wang Chuan Ya, Qi Z F. Chemical constitution and property of weathering steel[J]. Special Steel (in Chinese), 1997, 1: 13-l9.

Google Scholar

[4] Zhang Chun ling, Cai Da yong, Wang Yu hui. Effects of deformation and Mo, Nb, V, Ti on continuous cooling transformation in Cu-P-Cr-Ni-Mo weathering steel[J]. Materials Characterization, 2008, 59: 1638-1642.

DOI: 10.1016/j.matchar.2008.03.003

Google Scholar

[5] Wu Hong yan, Shen Kai zhao, Du Lin xiu. Thermal deformation behavior of high temperature for low-price weathering steel[J]. Journal of Iron and Steel Research (in Chinese), 2006, 18(10): 54-58.

Google Scholar

[6] Cheng Xiao Ru, Li H X, Ge M Q. Study on the dynamic recrystallization of high temperature deformation for pipeline steel X65. Acta Metallurgica Sinica (in Chinese), 1997, 33(12): 1275-1280.

Google Scholar

[7] Peng Kai Ping, Chen W Z, Qian K W. Microstructure of 18-8 austenite stainless steel after dynamic strain aging. Transactions of Materials and Heat Treatment (in Chinese), 2005, 36(5): 41-46.

Google Scholar