期刊文献+

Ti-15-3合金冷变形纳米组织的热稳定性 被引量:1

Thermal Stability of Cold-Deformed Nanostructure in Ti-15-3 Alloy
下载PDF
导出
摘要 利用透射电镜和X射线衍射仪等仪器研究了经大变形量冷轧后Ti-15-3合金中纳米(30 nm)组织的热稳定性。结果表明:冷轧态合金在450℃保温时纳米组织的热稳定性较好,保温1 200 min后晶粒尺寸仍保持在100~150 nm;550℃时纳米组织的热稳定性逐渐降低;650℃及以上温度加热后纳米组织在极短时间内即迅速长大;纳米级β相合金在(α+β)相区退火时,α相的析出会钉扎位错和晶界,从而阻止纳米晶粒的长大;在较低的退火温度下纳米晶粒的长大与其内部拥有大量非平衡晶界有关。 The thermal stability of nanostructure of cold-rolled Ti-15-3 alloy with high reduction was studied by means of TEM and XRD. It is shown that the nanostructure of the cold rolled alloy was very stable at 450℃ and the size was 100-150 nm after holding for 1200 min. The stability became lower at 550℃ and the nanostructure became unstable within very short time after heating at 650℃or above. When the nanoscale alloy were annealed in the two phase region of (α-β), α phase would pin the dislocations and boundries and prevent the growth of nanostructure. The growth of nanograins at relatively low annealing temperatures was associated with the non- equilibrium grain boundaries within the nanostructure
出处 《机械工程材料》 CAS CSCD 北大核心 2010年第3期52-56,共5页 Materials For Mechanical Engineering
关键词 Ti-15—3合金 纳米组织 退火处理 热稳定性 Ti-15-3 alloy nanostructure annealing treatment thermal stability
  • 相关文献

参考文献15

  • 1SEMENOVA I P, RAAB G I, SAITOVA L R, et al. The effect of equal-channel angular pressing on the structure and mechanical behavior of Ti-6Al-4V alloy[J]. Materials Science and Engineering A, 2004,387 : 805-808.
  • 2VLADIMIR V. Grain refinement and properties of pure Ti processed by warm ECAP and cold rolling[J].Materials Science and Engineering A, 2003,343 (1/2): 43-50.
  • 3MISHRA R S. Mechanical behavior and superplasticity of a severe plastic deformation processed nanoerystalline Ti-6Al-4V alloy[J]. Materials Science and Engineering A, 2001,289 (1/ 2) :44-50.
  • 4STOLYAROV V V. A two step SPD processing of ultrafinegrained titanium[J]. NanoStructured Materials, 1999, 11 (7): 947-954.
  • 5HAO Y L, LI S J, SUN S Y, et al. Super-elastic titanium alloy with unstable plastic deformation[J]. Applied Physics Letters, 2005,87 (9) : 1-3.
  • 6MORRIS D G, MUNOZ-MORRIS M A. Mierostrueture of severely deformed Al-3Mg and its evolution during annealing [J]. Acta Mater, 2002,50(16) : 4047-4060.
  • 7MAO J, KANG S B, PARK J O. Stability and tensile properties of 2024 aluminum alloy after equal-channel angular pressing[J]. J Mater Process Technol, 2005,159(3) : 314-320.
  • 8WANG J, IWAHASHI Y, HORITA Z, et al. An investigation of microstructural stabilityin an Al-Mg alloy with submierometer grain size[J]. Acta Mater, 1996,44 (1) : 2973-2982.
  • 9LI S J, ZHANG Y W, SUN B B,et al. Thermal stability and mechanical properties of nanostructured Ti-24Nb-4Zr-7.9Sn alloy[J].Materials Science and Engineering A, 2008,480( 1/ 2) : 101-108.
  • 10李萍,薛克敏,曹爱民.Ti-15-3合金再结晶组织的预测[J].合肥工业大学学报(自然科学版),2004,27(9):991-995. 被引量:4

二级参考文献24

  • 1冯亮,曲恒磊,赵永庆,李辉,张颖楠,曾卫东.TC21合金的高温变形行为[J].航空材料学报,2004,24(4):11-13. 被引量:49
  • 2郭洪民,杨湘杰.凝固微观组织的多层次模拟[J].中国有色金属学报,2004,14(6):928-933. 被引量:11
  • 3沙爱学,李兴无,王庆如,鲍如强.热变形温度对TC18钛合金显微组织和力学性能的影响[J].中国有色金属学报,2005,15(8):1167-1172. 被引量:44
  • 4邢鹏飞,翟玉春,田彦文,李会莉,刘越.WS2颗粒的分形特征[J].中国有色金属学报,1996,6(2):36-37. 被引量:7
  • 5王庆如,张庆玲,陈玉文,储俊鹏,戴美云,王鲁峰,杨瑜生,黄仲田,王世洪,沈桂琴.Ti-15-3钛合金的应用研究[J].材料工程,1996(12):16-19. 被引量:9
  • 6王庆如,陈玉文,魏寿庸.Ti-15-3合金的再结晶及力学性能研究[A].上海钢铁研究所.第八届钛及钛合金学术交流会文集[C].上海,1993:516.
  • 7Ivasishin O M,Markovsky P E,Semiatin S L,Ward C H.Aging response of coarse-and fine-grained β titanium alloys[J].Materials Science and Engineering,2005,A405:296
  • 8常辉 陈军 邓炬.新型近 β 钛合金Ti-B19的时效特征.金属学报,1999,35:163-166.
  • 9Susan M,Kazanjian,Edgar A,Statke Jr.Effects of microstructural modification on fatigue crack growth resistance of Ti-15V-3Al-3Sn-3Cr[J].International Journal of Fatigue,1999,21:127-135.
  • 10Jimin Ma,Qingru Wang.Aging characterization and application of Ti-15-3 alloy[J].Materials Science and Engineering,1998,A243:150-154.

共引文献19

同被引文献15

  • 1李萍,薛克敏,曹爱民.Ti-15-3合金再结晶组织的预测[J].合肥工业大学学报(自然科学版),2004,27(9):991-995. 被引量:4
  • 2郝玉琳,杨锐.纳米高强Ti-Nb-Zr-Sn合金[J].金属学报,2005,41(11):1183-1189. 被引量:21
  • 3SEMENOVA l P, RAAB G 1, SAITOVA L R, VAL1EV R Z. The effect of equal-channel angular pressing on the structure and mechanical behavior of Ti-6Al-4V alloy[J]. Materials Science and Engineering A, 2004, 387: 805-808.
  • 4RAAB G I. SOSItNIKOVA E P. VAI,IEV R Z. Influence of temperature and hydrostatic pressure during equal-channel angttlar pressing on the microstructure of commercial-purity Ti[J]. Materials Science and Engineering A, 2004, 387: 674-677.
  • 5STOLYAROV V V, ZHU Y T, ALEXANDROV I V, LOWE T C, VALIEV R Z. Grain refinement and properties of pure Ti processed by warm ECAP and cold rolling[J]. Materials Science and Engineering A, 2003, 343: 43-50.
  • 6MISHRA R S, STOLYAROV V V, ECHER C, VALIEV R Z, MUKHERJEE A K. Mechanical behavior and superplasticily of a severe plastic delbrmation processed nanocrystalline Ti-6AI-4V alloy[J]. Materials Science and Engineering, 2001, 289: 44-50.
  • 7SERGUEEVA A V, STOLYAROV V V, VALIEV R Z, MUKHERJEE A K. Enhanced superplasticity in a Ti-6Al-4V alloy processed by severe plastic defon'nation[J]. Scripta Mater, 2000, 43: 819-824.
  • 8STOLYAROV V V, ZHU Y T, LOWE T C, ISLAMGALIEV R K, VALIEV R Z. A two step SPD processing of ultrafine-grained titanium[J]. Nanostructured Materials, 1999, 11(7): 947-954.
  • 9HAO Y L, LI S J, SUN S Y, ZHENG C Y, HU Q M, YANG R. Super-elastic titanium alloy with unstable plastic deformation[J]. Applied Physics Letters, 2005, 87: 091906-1-3.
  • 10LI S J, ZHANG Y W, SUN B B, HAO Y L, YANG R. Thermal stability and mechanical properties of nanostructured Ti-24Nb-4Zr-7.9Sn alloy[J]. Materials Science and Engineering A, 2008, 480: 101-108.

引证文献1

二级引证文献1

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