Influence of carbon-partitioning treatment on the microstructure, mechanical properties and wear resistance of in situ VCp-reinforced Fe-matrix composite

被引:0
作者
Ping-hu Chen
Yun Zhang
Rui-qing Li
Yan-xing Liu
Song-sheng Zeng
机构
[1] Peking University Shenzhen Graduate School,School of Advanced Materials
[2] Central South University,Light Alloy Research Institutes and State Key Laboratory of High Performance Complex Manufacturing
[3] DongGuan University of Technology,School of Mechanical Engineering
[4] Valin ArcelorMittal Automotive Steel Co.,undefined
[5] Ltd.,undefined
来源
International Journal of Minerals, Metallurgy and Materials | 2020年 / 27卷
关键词
carbon-partitioning treatment; retained austenite; phase transformation; mechanical properties; wear resistance;
D O I
暂无
中图分类号
学科分类号
摘要
The wear resistance of iron (Fe)-matrix materials could be improved through the in situ formation of vanadium carbide particles (VCp) with high hardness. However, brittleness and low impact toughness limit their application in several industries due to addition of higher carbon content. Carbon-partitioning treatment plays an important role in tuning the microstructure and mechanical properties of in situ VCp-reinforced Fe-matrix composite. In this study, the influences of carbon-partitioning temperatures and times on the microstructure, mechanical properties, and wear resistance of in situ VCp-reinforced Fe-matrix composite were investigated. The experimental results indicated that a certain amount of retained austenite could be stabilized at room temperature through the carbon-partitioning treatment. Microhardness of in situ VCp-reinforced Fematrix composite under carbon-partitioning treatment could be decreased, but impact toughness was improved accordingly when wear resistance was enhanced. In addition, the enhancement of wear resistance could be attributed to transformation-induced plasticity (TRIP) effect, and phase transformation was caused from γ-Fe (face-centered cubic structure, fcc) to α-Fe (body-centered cubic structure, bcc) under a certain load.
引用
收藏
页码:100 / 111
页数:11
相关论文
共 167 条
[1]  
Moskalyk RR(2003)Processing of vanadium: a review Miner. Eng. 16 793-undefined
[2]  
Alfantazi MA(1994)The influence of vanadium on fracture toughness and abrasion resistance in high chromium white cast irons J. Mater. Sci. 29 5085-undefined
[3]  
Radulovic M(2013)Fabrication and microstructure of Ceram. Int. 39 731-undefined
[4]  
Fiset M(2010) vana-dium carbide ceramic particulates-reinforced iron matrix composites J. Mater. Sci. 45 2538-undefined
[5]  
Peev K(2014)Reaction synthesis of Mater. Des. 54 564-undefined
[6]  
Tomovic M(2007) vanadium carbide particulates-reinforced iron matrix composites by spark plasma sintering Mater. Des. 28 2202-undefined
[7]  
Zhong LS(2012)Microstructure and abrasive wear characteristics of Arch. Foundry Eng. 12 221-undefined
[8]  
Hojamberdiev M(2008) vanadium carbide particulate-reinforced iron matrix composites Mater. Sci. Forum 575–578 1414-undefined
[9]  
Ye FX(2014) production of vanadium carbide particulates rein-forced iron matrix surface composite by cast-sintering Mater. Chem. Phys. 147 823-undefined
[10]  
Hong W(2005)Abrasive wear resistance of cast iron with precipitates of spheroidal VC carbides Mater. Sci. Eng. A 404 138-undefined