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Cr和Mn元素强化的α钛合金的制备及其组织性能 被引量:3

Preparation and microstructure performance ofαtitanium alloy strengthened by Cr and Mn
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摘要 在前人已经优化评估的Ti-Al-Cr-Mn四元热力学数据库的基础上,设计了一种新型α钛合金Ti-6Al-3Cr-1Mn,并利用分瓣式水冷铜坩埚成功制得了该合金。该合金在770℃下经轧机轧制成6mm厚的板材,然后于750℃保温90min进行真空退火热处理,出炉后置于空气中冷却。通过组织观察,发现无论是铸锭还是退火后的板材,室温下均为α型钛合金,与设计相符。室温力学性能试验表明,Ti-6Al-3Cr-1Mn合金的力学性能良好,平均屈服强度为894.9MPa,抗拉强度为926.7MPa,断后延伸率为15.2%。Ti-6Al-3Cr-1Mn合金与典型的α型钛合金TA15相比,室温强度相当,但塑性更好,成本更低。Ti-6Al-3Cr-1Mn合金的自腐蚀电位为-0.21V,自腐蚀电流密度为7.7×10-7 A·cm-2,耐腐蚀性能良好。 Based on Ti-Al-Cr-Mn quaternary thermodynamic database, a new α titanium alloy Ti-6Al-3Cr-IMn was designed and successfully prepared by the split water-cooled copper crucible. Roiled the ingot at 770 ℃, the obtained 6 mm-thick sheet undertook the vacuum heat-treatment at 750 ℃ X 90 min Microstructure indicated that the alloy mainly consists of a phase for both as-cast and annealing status, which coincides with the theoretical expectation. Then, mechanical properties of the alloy are meas- ured at room temperature, and the alloy possesses good mechanical properties compared with conventional ; type titanium alloy TA15. The average yield-strength is 894. 9 MPa, tensile-strength is 926. 7 MPa, and average elongation is 15.2%. Comparing with TA15, this alloy has competitive mechanical properties, better elongation and less cost at room temperature. The corrosion potential of the new alloy is --0.21 V and corrosion current density is 7.7×10^-7 A·cm^-2, which shows good corrosion resistance.
出处 《中国科技论文》 CAS 北大核心 2014年第8期944-947,共4页 China Sciencepaper
基金 高等学校博士学科点专项科研基金资助项目(20103108110014) 国家自然科学基金资助项目(51374142 51225401) 上海市科委基金资助项目(11520500100)
关键词 Α钛合金 水冷铜坩埚 组织 性能 a-titanium alloy chromium manganese water-cooled copper crucible microstructure performance
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  • 1陈国琳,吴鹏炜,冷文军,吴兰鹰,王自东.钛合金的发展现状及应用前景[J].舰船科学技术,2009,31(12):110-113. 被引量:27
  • 2Moiseev V N. Titanium in Russia[J]. Metal Science and Heat Treatment, 2005, 47(7/8).. 371-376. 被引量:1
  • 3Lu Xionggang, Li Chonghe, Chen Leyi, et al. Calcula- tion of phase equilibria in Ti-A1-Cr-Mn quaternary sys- tem for developing lower cost titanium alloys [J]. Ma- terials Chemistry and Physics, 2011, 129 (3).. 718-728. 被引量:1
  • 4莫畏主编..钛[M].北京:冶金工业出版社,2008:990.
  • 5Witusiewicz V T, Bondar A A, Hecht U, et al. The A1-B-Nb-Ti system I]I .- Thermodynamic reevaluation of the constituent binary system A1-Ti [J]. Journal of Al- loys and Compounds, 2008, 465(1/2).- 64-77. 被引量:1
  • 6吴欢,赵永庆,葛鹏,周伟.β稳定元素对钛合金α相强化行为的影响[J].稀有金属材料与工程,2012,41(5):805-810. 被引量:29
  • 7Shao G, Tsakiropouios P. Solidification structures of Ti-A1-Cr alloys [J]. Intermetallics, 1999, 7 (5) .. 579-587. 被引量:1
  • 8Lee B J. A thermodynamic evaluation of the Cr-Mn and Fe-Cr-Mn systems [J]. Metallurgical Transactions.. A, 1993, 24(9).. 1919-1933. 被引量:1
  • 9朱凯亮,鲁雄刚,吴广新,张捷宇,李重河.低成本α+β型钛合金Ti4.5Al12Cr4Mn的设计与制备[J].内蒙古科技大学学报,2013,32(1):46-49. 被引量:1
  • 10Zhu Kailiang, Gui Na, Jiang Tao, et al. The develop- ment of the low-cost titanium alloy containing Cr and Mn alloying elements [J]. Metallurgical and Materials Transactions: A, 2014, 45(4): 1761-1766. 被引量:1

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