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Influence of Li addition on mechanical property and aging precipitation behavior of A1-3.5Cu-1.5Mg alloy 被引量:1

Li对Al-3.5Cu-1.5Mg合金力学性能与时效析出行为的影响(英文)
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摘要 The influence of Li addition on mechanical property and aging precipitation behavior of Al-3.5Cu-1.5Mg alloy was investigated by tensile test,scanning electron microscopy(SEM),transmission electron microscopy(TEM) and high resolution transmission electron microscopy(HRTEM).The results show that the tensile strength can be significantly improved with the slightly decreased ductility and the form of fracture morphology is converted from ductile fracture into ductile/britde mixed fracture by adding 1.0%Li.Besides,the peak aging time at 185 ℃ is delayed from 12 to 24 h and the main precipitation phase S(Al2CuMg) is converted into S'(Al2CuMg)+δ(Al3Li),while the formation of S'(Al2CuMg) is delayed. 采用拉伸实验、扫描电子显微分析(SEM)、透射电子显微分析(TEM)、高分辨电子显微技术研究Li添加对Al-3.5Cu-1.5Mg合金力学性能与时效析出行为的影响。结果表明:添加1.0%Li能使Al-3.5Cu-1.5Mg合金的峰值时效拉伸强度明显提高,伸长率略有下降。峰值时效拉伸样品的断口形貌由韧断口转变为韧/脆混合型。Li使合金185℃峰值时效时间由12 h延长至24 h,析出相由S′(Al_2CuMg)转变为S′(Al_2CuMg)+δ(Al_3Li)。在Al-3.5Cu-1.5Mg-1.0Li合金中,S(Al_2CuMg)相时效析出延缓。
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第6期1653-1658,共6页 中国有色金属学报(英文版)
基金 Projects (2010CB731700,2012CB619500) supported by the National Basic Research Program of China
关键词 aluminum alloy Al-3.5Cu-1.5Mg alloy LI aging behavior mechanical properties 铝合金 Al-3 5Cu-1 5Mg合金 Li 时效行为 力学性能
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  • 1STARKE E A, STALELY J T Application of modem aluminum alloys to aircraft [J]. Prog Aerospace Science, 1996, 32: 131-172.
  • 2WANG S C, STARINK M J, GAO N. Precipitation hardening in AI-Cu-Mg alloys revisited [J]. Scripta Materialia, 2006, 54(2): 287-291.
  • 3RALSTON K D, BIRBILIS N, WEYLAND M, HUTCHINSON C R. The effect of precipitate size on the yield strength-pitting corrosion correlation in AI-Cu-Mg alloys [J]. Acta Materialia, 2010, 58(18): 5941-5948.
  • 4WANG S C, STARINK M J. Precipitates and intermetallic phases in precipitation hardening AI-Cu-Mg-(Li) based alloys [J]. International Materialia Review, 2005, 50(4): 193-215.
  • 5SHA G, MARCEAU R K W, GAO X. Nanostructure of aluminium alloy 2024: Segregation, clustering and precipitation processes [J]. Acta Materialia, 2011, 59(4): 1659-1670.
  • 6STARINK M J, GAO N, KAMP N, WANG S C. Relations between microstructure, precipitation, age-formability and damage tolerance of AI-Cu-Mg-Li (Mn, Zr, Sc) alloys for age forming [J]. Materials Science and Engineering A, 2006, 418( 1-2): 241-249.
  • 7SANJIB B, ROBI P S. Effect of trace additions of Sn on microstructure and mechanical properties of AI-Cu-Mg alloys [J]. Materials Design, 2010, 31(8): 4007-4015.
  • 8BANKAVORS D, PANKGNELL P B, BES B. The effect of silver on microstructural evolution in two 2xxx series AI-alloys with a high Cu:Mg ratio during ageing to a T8 temper [J]. Materials Science and Engineering A, 2008, 491( 1-2): 214-223.
  • 9LEQUEN P H, SMITH K P, DANIELOU A. Aluminum-copperlithium alloy 2050 developed for medium to thick plate [J]. Journal of Materials Engineering and Performance, 2010,19(6): 841-847.
  • 10HUANG Bi-ping, ZHENG Zi-qiao, Independent and combine roles of trace Mg and Ag addition in properties precipitation process and precipitation kinetics of AI-Cu-Li-(Mg)-(Ag)-Zr- Ti [J]. Acta Metallurgica, 1998,46(12): 4381-4393.

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