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Al-Cu-Li-Mn-Zr-Ti合金在均匀化过程中的组织演变(英文) 被引量:16

Microstructural evolution during homogenization of Al-Cu-Li-Mn-Zr-Ti alloy
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摘要 采用光学显微镜(OM)、扫描电镜(SEM)、能谱分析(EDX)和差示扫描热分析法(DSC)研究Al Cu Li Mn Zr Ti合金在均匀化过程中的组织转变。结果表明,实验合金的铸态组织中存在严重的枝晶偏析,晶界处存在大量的共晶相,主要合金元素沿枝晶区域呈周期性分布。合金中的主要未溶相为Al2Cu相,过烧温度为520°C;均匀化过程中,随着温度的升高和时间的延长,晶界处的第二相逐渐溶入基体中,晶界逐渐变得稀疏;合金的均匀化过程可以用一指数方程描述;实验合金适宜的均匀化制度为(510°C,18 h),这与采用均匀化动力学方程计算的结果基本吻合。 The microstructure evolution of Al-Cu-Li-Mn-Zr-Ti alloy during homogenization was investigated by optical microscopy (OM), scanning electron microscopy (SEM), energy dispersive X-ray spectrometry (EDX), and differential scanning calorimeter (DSC) methods. The results show that severe dendritic segregation exists in the experimental alloy ingot. Numerous eutectic phases can be observed in the grain boundary, and the distribution of the main elements along the interdendritic region varies periodically. The main secondary phase is Al2Cu. The overburnt temperature of the alloy is 520 °C. The second phases are gradually dissolved into the matrix, and the grain boundaries become spare and thin during homogenization with increasing temperature or prolonging holding time. Homogenization can be described by a constitutive equation in exponential function. The suitable homogenization treatment for the alloy is (510 °C, 18 h), which agrees well with the results of homogenization kinetic analysis.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第9期2543-2550,共8页 中国有色金属学报(英文版)
关键词 Al-Cu—Li—Mn-Zr-Ti合金 均匀化 显微组织 动力学 Al-Cu-Li-Mn-Zr-Ti alloy homogenization microstructure kinetics
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  • 1RIOJA R J, LIU J. The evolution of A1-Li base products for aerospace and space applications [J]. Metallurgical Materials Transactions A, 2012, 43(9): 3325-3337.
  • 2LI Jin-feng, ZHENG Zi-qiao, REN Wen-da, CHEN Wen-jing, ZHAO Xu-shan, LI Shi-chen. Simulation on function mechanism of TI(A12CuLi) precipitate in localized corrosion of AI-Cu-Li a/loys [J]. Transactions of Nonferrous Metals Society of China, 2006, 16(6) 1268-1273.
  • 3YOSHIMURA R, KONNO T J, ABE E, HIRAGA K. Transmission electron microscopy study of the evolution of precipitates in aged AI-Li-Cu alloys: The 8' and TI phases [J]. Acta Materialia, 2003, 51 (14): 4251-4266.
  • 4FIELDING P S, WOLF G J. Aluminum-lithium for aerospace [J]. Advanced Materials and Processes, 1996, 150(4): 21-23.
  • 5李红英,唐宜,曾再得,郑峰.Exfoliation corrosion of T6- and T8-aged Al_xCu_yLi_z alloy[J].中国有色金属学会会刊:英文版,2008,18(4):778-783. 被引量:6
  • 6STARINK M J, WANG P, SINCLAIR I, GREGSON P J. Microstrucure and strengthening of A1-Li-Cu-Mg alloys and MMCs: Ⅱ. Modelling of yield strength [J]. Acta Materialia, 1999, 47(14): 3855-3868.
  • 7AHMADI S, ARABI H, SHOKUHFAR A. Formation mechanisms of precipitates in an A1-Cu-Li-Zr alloy and their effects on strength and electrical resistance of the alloy [J]. Journal of Alloys and Compounds, 2009, 484(1-2): 90-94.
  • 8肖代红,黄伯云.Effect of Yb addition on precipitation and microstructure of Al-Cu-Mg-Ag alloys[J].中国有色金属学会会刊:英文版,2007,17(6):1181-1185. 被引量:10
  • 9LI J F, LI C X. PENG Z W, CHEN W J, ZHENG Z Q. Corrosion mechanism associated with T1 and T2 precipitates of A1-Cu-Li alloys in NaC1 solution [J]. Journal of Alloys and Compounds, 2008, 460(1-2): 688-693.
  • 10权力伟,赵刚,Sam GAO,Barry.C.MUDDLE.预拉伸对时效2524铝合金微观组织的影响(英文)[J].Transactions of Nonferrous Metals Society of China,2011,21(9):1957-1962. 被引量:12

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