Effect of V and Sn on microstructure and mechanical properties of gray cast iron

被引:0
作者
Yi-li Li
Rui-run Chen
Qi Wang
Wen-chao Cao
Xin-xiu Wang
Yuan Xia
Guo-ping Zhou
Ying-dong Qu
Guang-long Li
机构
[1] Harbin Institute of Technology,School of Materials Science and Engineering
[2] Yangzhou Wutingqiao Cylinder Liner Co.,School of Materials Science and Engineering
[3] Ltd.,undefined
[4] Shenyang University of Technology,undefined
来源
China Foundry | 2022年 / 19卷
关键词
V; Sn; gray cast iron; cylinder liner; microstructure; mechanical properties; TG143.2; A;
D O I
暂无
中图分类号
学科分类号
摘要
The cylinder liner is one of the important parts of a diesel engine. Gray cast iron is the main material for manufacturing cylinder liners due to its good casting performance, convenient processing performance, good wear resistance and low cost. In the present work, the effects of vanadium (V) and tin (Sn) on the microstructure and properties of gray cast iron were studied. Results show that increasing the contents of V and Sn can not only refine the graphite, but also reduce the pearlite lamellar space. The graphite size and lamellar spacing of pearlite are firstly reduced and then increased. Pearlite quantity reaches over 98% after adding V and Sn. Adding V and Sn can promote the precipitation and solid solution strengthening of gray cast iron, so as to improve the mechanical properties. The Brinell hardness reaches the peak of 424 HB at the contents of 0.21wt.% V and 0.06wt.% Sn, and the sample containing 0.11wt.% V and 0.08wt.% Sn shows the highest compressive strength and tensile strength of 1,699 MPa and 515 MPa, respectively. The main strengthening mechanism comes from the solid solution strengthening and fine grain strengthening of V and Sn.
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页码:427 / 434
页数:7
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共 94 条
  • [1] Collini L(2008)Microstructure and mechanical properties of pearlitic gray cast iron Materials Science & Engineering A 488 529-539
  • [2] Nicoletto G(2020)90 years of thermal analysis as a control tool in the melting of cast iron China Foundry 17 69-84
  • [3] Ná R K(2007)Properties of a gray cast iron with oriented graphite flake Journal of Materials Processing Technology 182 593-597
  • [4] Stefanescu D M(2017)Thermo-mechanical fatigue property and life prediction of vermicular graphite iron Materials Science & Engineering, A 698 63-72
  • [5] Suarez R(2015)Cumulative damage of high-strength cast iron alloys for automotive applications Procedia Engineering 101 440-449
  • [6] Kim S B(2020)Simultaneous thermal and contraction/expansion curves analysis for solidification control of cast irons China Foundry 17 96-110
  • [7] Wang W(2009)Effect of sulfur on graphite aspect ratio and tensile properties in compacted graphite irons Journal of Materials Processing Technology 209 1701-1705
  • [8] Jing T(2018)Effect of graphite morphology on the tensile strength and thermal conductivity of cast iron Materials Characterization 144 155-165
  • [9] Gao Y(2020)The effect of niobium addition on the microstructure and properties of cast iron used in cylinder head Journal of Materials Research and Technology 9 1509-1518
  • [10] Zhang M X(2021)Quantitative models for microstructure and thermal conductivity of vermicular graphite cast iron cylinder block based on cooling rate China Foundry 18 52-59