Optimization of Heat Treatment Process of High Strength-Toughness U20Mn2SiCrNiMo Bainite Steel Rail
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Optimization of Heat Treatment Process of High Strength-Toughness U20Mn2SiCrNiMo Bainite Steel Rail
Special SteelVol. 41, Issue 6, Pages: 28-31(2020)
作者机构:
内蒙古包钢钢联股份有限公司技术中心,包头,014010
作者简介:
基金信息:
DOI:
CLC:
Received:16 May 2020,
Online First:07 May 2022,
Published:07 May 2020
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杨维宇, 张凤明, 何建中, et al. Optimization of Heat Treatment Process of High Strength-Toughness U20Mn2SiCrNiMo Bainite Steel Rail[J]. Special Steel, 2020, 41(6): 28-31.
DOI:
杨维宇, 张凤明, 何建中, et al. Optimization of Heat Treatment Process of High Strength-Toughness U20Mn2SiCrNiMo Bainite Steel Rail[J]. Special Steel, 2020, 41(6): 28-31.DOI:
Optimization of Heat Treatment Process of High Strength-Toughness U20Mn2SiCrNiMo Bainite Steel Rail
The effect of normalizing + tempering and isothermal heat treatment processes on the microstructure and mechanical properties of U20Mn2SiCrNiMo bainite steel rail has been studied. The results show that as the test steel is normalized at 900 °C + tempered at 300 °C
the mechanical properties are tensile strength 1396 MPa
elongation 16.0% impact absorption work K
U2
57 J
and HB hardness value 402;as the test steel is heated at 870 ~ 930 °C after air-cooied to 300 °C isothermal treatment
the mechanical properties are tensile strength 300 MPa
elongation 17.0%
impact absorption work K
U2
≥80 J
HB hardness value 375 ~ 395 ;By comparison with the traditional normalizing + tempering process
the optimized isothermal heat treatment process can greatly improve the impact toug
hness of U20Mn2SiCrNiMo bainite steel rails i. e. the room temperature impact absorption work has been increased from 57 J to more than 80 J
by 40% ~ 56%
while the elongation after breaking remains basically unchanged
tensile strength and tread hardness slightly lower. The best optimized process is normalizing at 870 °C.