Properties of warm-rolled steel plates with ultrafine-grained ferrite and cementite structures

被引:31
|
作者
Ohmori, A [1 ]
Torizuka, S [1 ]
Nagai, K [1 ]
机构
[1] NatlInst Mat Sci, Tsukuba, Ibaraki 3050047, Japan
关键词
low carbon steel; plate; warm rolling; ultrafine-grained structure; ultrafine grain; separation; mechanical properties; ferrite; bi-axial rolling;
D O I
10.2355/tetsutohagane1955.89.7_765
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
A novel rolling process characterized by multi-pass bi-axial reduction at warm temperatures without a fairly large reduction per pass was proposed to obtain ultrafine-grained ferrite structures for steel plates. The process was applied to 0.15%C-0.3%Si-1.5%Mn steel. Steel plates with a thickness of 18 mm a width of 75 mm and a length of I 100 turn were obtained. The ultrafine-grained structures composed of ferrite and cementite were obtained in most part of the bi-axially rolled plates, while the coarse deformed structures composed of elongated ferrite grains or subgrains remained in many part of the uni-axially rolled ones. The bi-axial reduction likely enhanced the formation of high angle boundaries. The average sizes of the newly evolved ferrite grains were approximately 0.6mum and 1.2mum at the rolling temperature of 773K and 873K respectively. The evolution of the ultrafine-grained structure through the process increased the yield strength from 330 to 780 MPa and decreased the fracture appearance transition temperature (vTrs) below 77K. Severe warm rolling at the lower temperature, however, caused the development of a deformation texture and enhanced {100} and {111} ferrite grain colony bands causing "separations" on the fracture surfaces of the Charpy impact specimens with eventual deterioration of the Carpy impact value. The bi-axial reduction was effective for controlling the microscale texture and suppressing the separation.
引用
收藏
页码:765 / 772
页数:8
相关论文
共 50 条
  • [21] Microstructure and Mechanical Properties of a Cold-Rolled Ultrafine-Grained Dual-Phase Steel
    Pan, Zhiyi
    Gao, Bo
    Lai, Qingquan
    Chen, Xuefei
    Cao, Yang
    Liu, Manping
    Zhou, Hao
    MATERIALS, 2018, 11 (08)
  • [22] Tensile deformation behavior at high strain rate for ultrafine-grained ferrite-cementite steels
    Tsuchida, N
    Tomota, Y
    Nagai, K
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 2004, 90 (12): : 1043 - 1049
  • [23] Warm ductility enhanced by austenite reversion in ultrafine-grained duplex steel
    Cheng, Guan-Ju
    Gault, Baptiste
    Huang, Cheng-Yao
    Huang, Ching-Yuan
    Yen, Hung-Wei
    ACTA MATERIALIA, 2018, 148 : 344 - 354
  • [24] Ultrafine-Grained Steel Produced by Warm Rolling and Annealing of Lath Martensite
    Zhao, Xin
    Yang, Xiaoling
    NANOMATERIALS BY SEVERE PLASTIC DEFORMATION: NANOSPD5, PTS 1 AND 2, 2011, 667-669 : 863 - +
  • [25] Mechanical behavior of ultrafine-grained eutectoid steel containing Nano-cementite particles
    Zheng, Chengsi
    Li, Longfei
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2018, 713 : 35 - 42
  • [26] STRUCTURE AND PROPERTIES OF WARM-ROLLED STEELS
    UVIRA, JL
    WORTHING.PJ
    CLAY, DB
    EMBURY, JD
    CANADIAN METALLURGICAL QUARTERLY, 1972, 11 (02) : 439 - &
  • [27] Study on mechanical properties of warm-rolled AISI 1015 carbon steel
    Medrea-Bichtas, C
    Negrea, G
    Domsa, S
    ZEITSCHRIFT FUR METALLKUNDE, 2004, 95 (03): : 176 - 178
  • [28] Studying Mechanical Properties and Micro Deformation of Ultrafine-Grained Structures in Austenitic Stainless Steel
    Gong, Na
    Wu, Hui-Bin
    Yu, Zhi-Chen
    Niu, Gang
    Zhang, Da
    METALS, 2017, 7 (06):
  • [29] High-speed deformation for an ultrafine-grained ferrite-pearlite steel
    Tsuchida, N
    Tomota, Y
    Nagai, K
    ISIJ INTERNATIONAL, 2002, 42 (12) : 1594 - 1596
  • [30] Effect of Warm Deformation on Mechanical Properties and Deformation Mechanism of Nano/Ultrafine-Grained 304 Stainless Steel
    Lu, Jianing
    Zhao, Miaomiao
    Wu, Hongyan
    Du, Linxiu
    STEEL RESEARCH INTERNATIONAL, 2022, 93 (10)