期刊文献+

超塑性奥氏体-铁素体双相不锈钢00Cr25Ni7Mo3N的研制 被引量:2

Development of Superplastic Duplex Austenitic-Ferritic Stainless Steel 00Cr25Ni7Mo3N
下载PDF
导出
摘要 通过电弧炉-电渣重熔工艺开发研制了成分为(%):0.021C,24.16Cr,7.21Ni,2.87Mo,0.17N,0.48Cu超塑性双相不锈钢00Cr25Ni7Mo3N。试验结果表明,00Cr25Ni7Mo3N超塑性双相不锈钢的耐孔蚀性和耐缝隙腐蚀性远高于传统的304L和316L奥氏体不锈钢。在变形温度960℃、应变速率2×10-3/s时,00Cr25Ni7Mo3N超塑性双相不锈钢的最高延伸率为960%,该钢超塑性变形的均匀性优于TC4钛合金,可显著减轻构件的重量。 The superplastie duplex austenitie-ferritie stainless steel - 0.021C, 24.16Cr, 7.21Ni, 2.87Mo, 0.17N, 0.48Cu has been developed by arc furnace + electroslag remelting process. The test results showed that the pitting erosion resistance and the crevice corrosion resistance of superplastic duplex stainless steel 00Cr25Ni7Mo3N were much more higher than that of traditional austenite stainless steel 304L and 316L. The maximum elongation of superplastic duplex stainless steel 00Cr25Ni7Mo3N at 960℃ with strain rate 2 × 10^-3/s was 960%, and the uniformity during superplastic deformation of the duplex steel was higher than that of titanium alloy TC4 to obviously decrease the weight of component.
出处 《特殊钢》 北大核心 2005年第6期44-46,共3页 Special Steel
关键词 超塑性 双相不锈钢 耐蚀性 316L奥氏体不锈钢 铁素体 超塑性变形 工艺开发 电渣重熔 304L 耐孔蚀性 Superplasticity, Duplex Stainless Steel, Corrosion Resistance
  • 相关文献

参考文献5

  • 1Hayden H W,Brophy J H.Superplasticity in the Fe-Cr-Ni System.Trans.ASM,1967,60(1):3.
  • 2Kuniaki Osada,Setsuo Uekoh,Kazuo Ebato.Superplasticity of as Rolled Duplex Stainless Steel.Transactions ISIJ,1987,27(8):713.
  • 3Young S H,Soon H H.Microstructural Changes during Superplastic Deformation of Fe-24Cr-7Ni-3Mo-0.14N Duplex Stainless Steel.Material Science and Engineering,1999,A266(2):276.
  • 4Sagradi D P,Medrano R E,Nazar A M.Superplastic Deformation of a Duplex Stainless Steel.Materials Science Forum,2001,357:199.
  • 5Kuniaki Osada.Commercial Applications of Superplastic Forming.Journal of Mater-ials Processing Technology,1997,68(3):241.

同被引文献9

引证文献2

二级引证文献8

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