Microstructure-Property Relationships of Novel Ultra-High-Strength Press Hardening Steels

被引:0
作者
Henri Järvinen
Mari Honkanen
Olli Oja
Martti Järvenpää
Pasi Peura
机构
[1] Tampere University of Technology,Laboratory of Materials Science
[2] SSAB Europe Oy,undefined
来源
Metallurgical and Materials Transactions A | 2019年 / 50卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The industrial significance of microalloyed martensitic steels manufactured via cold rolling, reaustenitization, and quenching has been typically recognized as low. However, it is currently believed that microalloying can improve the in-service properties of ultra-high-strength press hardening steels. In this work, five 34MnB5-based steels were designed to address the role of Ti and V when combined with Cr or Mo. Microstructure-property relationships were analyzed after die quenching and additional bake hardening (BH) heat treatment using advanced methods of microscopy, glow discharge optical emission spectroscopy, quasi-static tensile tests, and three-point bending tests. Results indicate that both Ti and V can provide grain size refinement through the formation of stabile nanosized precipitates. The BH treatment improved postuniform elongation values, indicating a trend of improved ductility. However, the expected improvements in bendability were clearly confirmed only for two V-microalloyed steels with the alloying concepts of 0.3Cr-0.15V-0.03Al-0.02Ti-0.0020B and 0.3Mo-0.15V-0.0060N (without Al-Ti-B additions) (wt pct). Thus, it was discovered that microalloying with V, when combined with either Cr or Mo, provides a promising combination of mechanical properties as far as the austenitization parameters are appropriately controlled.
引用
收藏
页码:816 / 836
页数:20
相关论文
共 132 条
[1]  
Mori K.(2017)undefined CIRP Ann.-Manuf. Techn. 66 755-77
[2]  
Bariani P.F.(1999)undefined Mater. Sci. Eng. A 273–275 40-57
[3]  
Behrens B.-A.(2015)undefined Adv. Mater. Res. 1063 7-20
[4]  
Brosius A.(2009)undefined Steel Res. Int. 80 241-48
[5]  
Bruschi S.(2018)undefined J. Mater. Process. Technol. 252 90-104
[6]  
Maeno T.(2014)undefined Steel Res. Int. 85 824-35
[7]  
Merklein M.(2017)undefined Mater. Sci. Technol. 33 497-506
[8]  
Yanagimoto J.(2002)undefined ISIJ Int. 42 1150-55
[9]  
Krauss G.(2008)undefined Met. Mater. Int. 14 667-72
[10]  
Bian J.(2006)undefined Acta Mater. 54 1279-88