期刊文献+

Effect of annealing treatment on microstructures and properties of austenite-based Fe-28Mn-9Al-0.8C lightweight steel with addition of Cu 被引量:10

在线阅读 下载PDF
导出
摘要 The mechanical properties of an austenite-based Fe-Mn-Al-C lightweight steel were improved by co-precipitation of nanoscale Cu-rich and κ-carbide particles.The Fe-28Mn-9Al-0.8C-(0,3)Cu (wt.%) strips were near-rapidly solidified and annealed in the temperature range from 500 ℃ to 700 ℃.The microstructure evolution and mechanical properties of the steel under different annealing processes were studied.Microstructural analysis reveals that nanoscale κ-carbides and Cu-rich particles precipitate in the austenite and ferrite of the steel in this annealing temperature range.Co-precipitation of nanoscale Cu-rich particles and κ-carbides provides an obvious increment in the yield strength.At the annealing temperature of 600 ℃,both the yield strength and ultimate tensile strength of Fe-28Mn-9Al-0.8C-3Cu (wt.%) steel strip are the highest.The total elongation is 25%,which is obviously higher than that of Cu-free steel strips,for the addition of Cu reduces the large sized κ-carbides precipitated along austenite/ferrite interfaces.When the annealing temperature rises to 700 ℃,the strength and ductility of the two steel strips deteriorate due to the formation of massive intergranular κ-carbides precipitated along austenite/ferrite interfaces.It can be concluded that a proper co-precipitation of Cu-rich particles and κ-carbides would improve the properties of austenite-based Fe-Mn-Al-C steel.
出处 《China Foundry》 SCIE CAS 2021年第3期207-216,共10页 中国铸造(英文版)
基金 financially supported by the National Natural Science Foundation of China(No.51974184) the National MCF Energy R&D Program of China(No.2018YFE0306102)。
作者简介 Chang-jiang Song,Ph.D.,Professor.His research interests mainly focus on metal theory and microstructure control,and super performance metastable engineering materials through solidification process control.He has supervised over 20 projects and published more than 100 papers in international journals.E-mail:riversong@shu.edu.cn,riversxiao@163.com。
  • 相关文献

参考文献3

二级参考文献29

  • 1孙玉梅,邹小平.Super304H不锈钢锅炉管评述[J].锅炉技术,2007,38(1):52-55. 被引量:25
  • 2YANG Yan, CHENG Shi chang, YANG Gang. Present Situation of Exploiting and Research of Super 304H Steel for Boiler [J]. Special Steel, 2002, 23(1): 27 ( n Ch nese).
  • 3Tanaka H, Murata M, Abe F, et al. Microstructural Evolution and Change in Hardness in Type 304H Stainless Steel During Long Term Creep [J]. Materials Science and Engineering., 2001, 319-321A: 788.
  • 4Maricin V, Terezia K, Mdria D, et al, Evolution of Secondary Phases in Austenitic Stainless Steels During Long-Term Exposures at 600, 650 and 800℃ [J]. Mater Charact, 2008, 59: 1792.
  • 5Ryoichi M, Kenichi T, Chihiro W. Coarsening of Spherical Cu Particles in an α-Fe Matrix [J]. ISIJ International, 2004, 44 (2) : 442.
  • 6Kozeschnik E. Thermodynamic Prediction of the Equilibrium Chemical Composition of Critical Nuclei: bcc Cu Precipitation in α-Fe [J]. Scripta Materialia, 2008, 59: 1018.
  • 7Dieter I, Semyon V, Morris E, et al. Copper-Precipitation Hardening in a Non-Ferromagnetic Face-Centered Cubic Austenitic Steel [J]. Scripta Materialia, 2008, 59: 1235.
  • 8Sawaragi Y. The Development of a New 18-8 Austenitic Stainless Steel With High Elevated Temperature Strength for Fossil Fired Boilers [J]. Mechanical Behavior of Material, 1991, 4: 50.
  • 9Dieter Isheim, Gagliano Michael S, Fine Morris E, et al. Interracial Segregation at Cu-Rich Precipitates in a High- Strength Low Carbon Steel Studied on a Sub-Nanometer Scale [J]. ActaMaterialia, 2006, 54(3): 841.
  • 10Kozo O, Hiroshi O, Kazuo A, et al. SANS Study of Phase Decomposition in Fe-Cu Alloy With Ni and Mn Addition [J]. ISIJ International, 1994, 34(4): 346.

共引文献12

同被引文献100

引证文献10

二级引证文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部