Thermal Simulation Study of Effect of Controlling Rolling and Cooling Process Parameters on Structure of Cold Heading Steel 10B21
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Thermal Simulation Study of Effect of Controlling Rolling and Cooling Process Parameters on Structure of Cold Heading Steel 10B21
Special SteelVol. 35, Issue 1, Pages: 49-52(2014)
作者机构:
北京科技大学材料科学与工程学院,北京,100083
作者简介:
基金信息:
DOI:
CLC:
Received:05 July 2013,
Online First:06 September 2022,
Published:06 September 2014
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蒋波, 张朝磊, 刘雅政, et al. Thermal Simulation Study of Effect of Controlling Rolling and Cooling Process Parameters on Structure of Cold Heading Steel 10B21[J]. Special Steel, 2014, 35(1): 49-52.
DOI:
蒋波, 张朝磊, 刘雅政, et al. Thermal Simulation Study of Effect of Controlling Rolling and Cooling Process Parameters on Structure of Cold Heading Steel 10B21[J]. Special Steel, 2014, 35(1): 49-52.DOI:
Thermal Simulation Study of Effect of Controlling Rolling and Cooling Process Parameters on Structure of Cold Heading Steel 10B21
The simulation test on controlling rolling and cooling process for Φ28 mm round billet of cold heading steel 10B21 (/% : 0. 20C
0. 20Si
0. 85Mn
0. 014P
0.005S
0. 001 8B) to be going to finishing rolling has been carried out by using Gleeble-1500 thermal simulation machine to study the effect of finishing rolling temperature- 850 ~ 1 000 °C with deformation rate 20 s
-1
and reduction- 65%
loop-laying temperature 820 〜940 ℃ and cooling rate in phase transformation range- 0. 2 〜1.0 °C/s on structure of steel. Results show that with increasing loop-laying temperature and cooling rate in phase transformation range the volume fraction of ferrite in steel increases obviously and with increasing cooling rate in phase transformation range the banded structure of steel is improved availably
. In order to get higher ferrite volume fraction
coarser ferrite grain and more homogeneous structure to increase the cold heading performance
the optimum controlling rolling and cooling process parameters are finishing temperature- 950°C
loop-laying temperature- 910°C and cooling rate in phase transformation range- 1. 0 °C/s.