Effect of matrix structure on mechanical properties and dry rolling–sliding wear performance of alloyed ductile iron

被引:0
|
作者
Hua Zhang
Yan-xin Wu
Qiu-ju Li
Xin Hong
机构
[1] Shanghai University,State Key Laboratory of Advanced Special Steel and Shanghai Key Laboratory of Advanced Ferrometallurgy and School of Materials Science and Engineering
[2] Jiangsu Yonggang Group Co.,Institute of Engineering Technology
[3] Ltd.,undefined
[4] University of Science and Technology Beijing,undefined
来源
Journal of Iron and Steel Research International | 2019年 / 26卷
关键词
Ductile iron; Microstructure; Mechanical property; Wear; Delamination;
D O I
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中图分类号
学科分类号
摘要
The influence of matrix structure on mechanical properties and dry rolling–sliding wear performance of alloyed ductile iron was examined. Four kinds of alloyed ductile irons with different matrix structures were produced through an adequate balance of alloying elements. Tensile tests and dry rolling–sliding wear tests were carried out at room temperature. The results show that yield strength and ultimate tensile strength increase, while elongation decreases until the matrix fully becomes pearlite. The lower matrix hardness results in more graphite emerging on the contact surface, which yields the decrease in friction coefficient. Besides, the wear rate decreases with the increase in matrix hardness among alloyed ductile irons except that with full pearlite matrix, the wear performance of which seems to be deteriorated due to poor fracture toughness. The main wear mechanism is delamination under an air-cooling condition. Based on the results of mechanical and wear tests, ductile iron with about 80% pearlite exhibits better wear performance as well as relatively reasonable mechanical properties.
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页码:888 / 897
页数:9
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