期刊文献+

退火温度对Cr17铁素体不锈钢成形性能的影响 被引量:2

Effect of annealing temperature on formability of Cr17 ferritic stainless steel
原文传递
导出
摘要 对Cr17铁素体不锈钢冷轧钢板进行了不同温度的退火试验,利用显微组织观察、电子背散射衍射(EBSD)技术及力学性能试验探讨了退火温度对冷轧钢板的显微组织、微观织构与成形性能的关系。结果表明,随着退火温度的提高,α纤维织构变弱,取向密度逐渐降低,而γ纤维的织构强点为{111}<112>不变,取向密度逐渐增强,r值增加。当冷轧钢板在1040℃退火时,r值最大。 Annealing under different temperatures was carried out on Cr17 ferritic stainless steel cold-rolled sheet, and the relationships between annealing temperature and microstructure, texture and formability of the cold-rolled sheet were investigated by means of microstructure observation, electron back scattering diffraction ( EBSD) technology and mechanical test. The results show that with the increasing of annealing temperature, alpha fiber texture is weaker and its orientation density decreases gradually. γ fiber texture remains as{111} 〈112〉 and the orientation density increases, which lead to the increase of r value. When the cold-rolled sheet is annealed at 1040℃, r value reaches the maximum value.
出处 《金属热处理》 CAS CSCD 北大核心 2015年第4期113-116,共4页 Heat Treatment of Metals
关键词 铁素体不锈钢 冷轧 再结晶退火 织构 r值 ferritic stainless steel cold-rolling recrystallization annealing texture r value
  • 相关文献

参考文献11

  • 1Liscic, Bozidar. Steel Heat Treatment : Metallurgy and Technologies [ M ]. New York: CRC Press, 2007 : 695-735.
  • 2Liu H, Liu Z, Wang G. Texture development and formability of strip cast 17% Cr ferritic stainless steel[ J ]. ISIJ International, 2009, 49 (6) : 890-896.
  • 3Yan Haitao, Bi Hongyu, Li Xin, et al. Effect of two-step cold rolling and annealing on texture, grain boundary character distribution and r-value of Nb + Ti stabilized ferritic stainless steel [ J ]. Materials Characterization, 2009, 60( 1 ) : 65-68.
  • 4Yazawa Y, Ozaki Y, Kato Y, et al. Development of ferritic stainless steel sheets with excellent deedrawability by [ 111 ] recrystallization texture control[J]. JSAE Review, 2003, 24(4) : 483-488.
  • 5Almagro J F, Llovet X, Heredia M A, et al. Soluble fraction of stabilising elements in trritic stainless steel [ J ]. Microchimica Acta, 2008, 161(3/4) : 323-327.
  • 6Siqueira R P, Sandim H R Z, Oliveira T R, et al. Composition and orientation effects on the final crystallization lexture of coarse-grained Nb-containing AISI 430 ferritic stainless steels [ J ]. Materials Science and Engineering: A, 2011, 528(9) : 3513-3519.
  • 7Hill R. The Mathematical Theory of Plasticity [ M ]. Oxford : Oxford University Press, 1998.
  • 8Lankford W T, Snyder S C, Bauscher J A. New criteria for predicting the press performance of deep drawing sheets[ J]. Transactions ASM, 1950, 42: 1197-1232.
  • 9常东华,周晓,魏佰友.塑性应变比r值的测定和应用[J].理化检验(物理分册),2006,42(8):401-403. 被引量:7
  • 10Abe T. A model of plastic deformation and surface roughening of polycrystalline metal based on r-value of grains [ C ]//Engineering Plasticity and its Applications: Proceedings of the 10th Asia-Pacific Conference. Wuhan, China: World Scientific, 2011: 386-390.

二级参考文献5

  • 1GB/T5027-1999,金属薄板和薄带塑性应变比(r值)试验方法[S].
  • 2Matsuoka S, Sakata K, Furukimi O, et al. Development of Super Deep Drawable Sheet by Lubricant Hot Rolling in Ferrite Region [A]. Bleck W. Modern LC and ULC Sheet Steels for Cold Forming: Processing and Properties [C]. Aachen:Fotodruck Mainz Gmbh, 1998.85-96.
  • 3Matsuoka S, Morita M, Furukimi O, et al. Effect of Lubrication Condition on Recrystallization Texture of Ultra-Low C Sheet Hot-Rolled in Ferrite Region [J]. ISIJ International,1998,38(6),633-639.
  • 4Tomitz A, Kaspar R. Ferritic Rolling With Additional Annealing to Produce a Deep-Drawable Ultra-Thin-Gauge Hot Strip[J]. Steel Research, 2000,71(12):497-503.
  • 5梁新邦.力学试验标准化发展趋势[J].理化检验(物理分册),2003,39(1):39-42. 被引量:5

共引文献12

同被引文献16

引证文献2

二级引证文献10

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