Effect of Cooling Process After Rolling on Microstructure and Properties of V-N-Cr Microalloyed Q550E High Strength Steel
|更新时间:2026-01-21
|
Effect of Cooling Process After Rolling on Microstructure and Properties of V-N-Cr Microalloyed Q550E High Strength Steel
Special SteelVol. 39, Issue 5, Pages: 67-69(2018)
作者机构:
1. 北京科技大学冶金与生态工程学院,北京,100083
2. 河钢股份有限公司承德分公司,承德,670102
3. 东北大学轧制技术及连轧自动化国家重点实验室,沈阳,110819
作者简介:
基金信息:
DOI:
CLC:
Received:10 April 2018,
Online First:30 May 2022,
Published:30 May 2018
稿件说明:
移动端阅览
王宝华, 张明博, 程玉君, et al. Effect of Cooling Process After Rolling on Microstructure and Properties of V-N-Cr Microalloyed Q550E High Strength Steel[J]. Special Steel, 2018, 39(5): 67-69.
DOI:
王宝华, 张明博, 程玉君, et al. Effect of Cooling Process After Rolling on Microstructure and Properties of V-N-Cr Microalloyed Q550E High Strength Steel[J]. Special Steel, 2018, 39(5): 67-69.DOI:
Effect of Cooling Process After Rolling on Microstructure and Properties of V-N-Cr Microalloyed Q550E High Strength Steel
The controlled rolling and cooling test was conducted on V-N-Cr microalloyed low carbon steel. There are three cooling mode
including cooling with furnace
cooling with insulation quilt
and air cooling
and the microstructure
mechanical properties and fracture morphology of three kinds of cooling system were analyzed. The results that show the fine polygonal ferrite and acicular ferrite multiphase structure were obtained in air cooling steel plate. The grain size of ferrite is 5 to 8 pim. Acicular ferrite consists of interwoven laths with width of 1 to 3μm. The tempering occurred in polygonal ferrite and acicular ferrite
and small dispersed carbides were precipitated due to the slow cooling rate in cooling with furnace and cooling with insulation quilt. Under three kinds of cooling conditions
the yield strength ≥585 MPa
tensile strength ≥ 694 MPa
elongation ≥ 27%
and 1/2 sample impact toughness at -60 °C ≥36 J are obtained. The comprehensive mechanical properties is better than GB requirements of Q550F grade. Fine grain strengthening
precipitation strengthening
and microstructural strengthening were the main ways to strengthen the steel. The impact fracture are composed of dimples
exhibiting toughness fracture mode. The grain refinement and acicular ferrite formation caused by controlled rolling and cooling effectively resist the propagation of cleavage cracks