期刊文献+

淬火对60Si2Mn组织及力学性能的影响 被引量:5

Effect of Quenching on Microstructure and Mechanical Properties of 60Si2Mn Steel
下载PDF
导出
摘要 采用拉伸试验、冲击试验、硬度试验和显微组织分析等方法研究了淬火温度对复合模具钢基材60Si2Mn组织及力学性能的影响。结果表明:150℃低温回火时,随淬火温度的升高,各项力学性能都有所提高,当与高碳高铬钢复合时,可采用低淬+低回的热处理工艺,即1050℃淬火+150℃回火;550℃高温回火时,随淬火温度的升高,虽然韧性略有下降,但硬度与抗拉强度逐渐升高,当与高速钢等复合时,可采用高淬+高回的热处理工艺,即1150℃淬火+550℃回火。 The effects of quenching temperature on microstructure and mechanical properties of composite tool steel substrate 60Si2Mn were studied by tensile test,impact test,hardness test and microstructure analysis.The results show that the mechanical properties of 60Si2Mn steel are improved with the increase of the quenching temperature after tempering at 150 ℃,the process of low-temperature quenching and tempering(quenching at 1050 ℃ and tempering at 150 ℃) can be used when it combines with high-carbon high-chromium steel.Although the toughness of 60Si2Mn decreases slightly,the hardness and tensile strength gradually increases with the increase of quenching temperature after tempering at 550 ℃,the process of high-temperature quenching and tempering(quenching at 1150 ℃ and tempering at 550 ℃) can be used when it combines with high-speed steel.
出处 《热加工工艺》 CSCD 北大核心 2010年第22期146-148,共3页 Hot Working Technology
基金 大连市计划基金资助项目(2006A10GX053)
关键词 复合模具钢 60SI2MN 高温淬火 composite tool steel 60Si2Mn high-temperature quenching
  • 相关文献

参考文献9

  • 1Krauss G. Martensite in steel:strength and structure[J]. Mater. Sci. Eng., 1999 ,A273-275:40.
  • 2Krauss G, Marder R. The morphology of martensite in iron alloys[J]. Metall. Trans., 1971 ,A2:2343.
  • 3牧正志 田村今男.铁系合金马氏体的形态和亚结构[J].日本金属学会会报,1974,13(5):329-329.
  • 4Owen W S. High Strength Materials [M]. New York:Wiley, 1965,169.
  • 5牧正志,田村今男.板条马氏体的形态和亚结构【J].铁と钢,1981,67(7):852.
  • 6Mschasitlivtsev V, Rodionov D P, Khlebnikova Y V, et ol. Peculiarity of structure and crystallography of plastic deformation of lath martensite in structural steels [J]. Mater. Sci. Eng., 1999, A273-275:439.
  • 7Shtansdy D V, Nakai K, Ohmor Y. Crystallography and structural evolution during reverse transformation in an Fe-17Cr-0.5C tempered martensite [J]. Acta. Mater,2000,48 (8): 1679.
  • 8Ohmura I, Hara T, Tsuzaki K. Relationship between nanohardness and microstructures in high-purity Fe-C as-quenched and quench-tcrnpercd martensite [J]. J. Mater. Research ,2003,18(6) : 1465.
  • 9Furuhara T, Morito S, Mark T. Morphology, substructure and crystallography of lath martensite in Fe-C alloy [J]. J. De Physique IV,2003,112(Part 1) :255.

共引文献1

同被引文献28

引证文献5

二级引证文献2

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