摘要
Al-5.6Zn-3.0Mg-1.6Cu-1.1Li-0.24Cr alloys and Al-8.0Zn-2.4Mg-2.4Cu-1.1Li-0.18Zr alloys (mass fraction, %) were aged by different processes. The microstructure and mechanical properties were determined by transmission electron microscopy(TEM), tensile test and Vicker's hardness test. The experimental results show that the most signified hardening is obtained by double-ageing or multi-ageing for the Al-Zn-Mg-Cu-Li alloys. The yield strength and the elastic modulus of the Li-containing alloys have relationships with ageing processes. The elastic modulus of Li-containing alloys decreases with the increment of precipitates though it is higher than that of Al-Zn-Mg-Cu alloy.
Al-5.6Zn-3.0Mg- 1.6Cu- 1.1Li-0.24Cr alloys and Al-8.0Zn-2.4Mg-2.4Cu- 1.1Li-0.18Zr altoys (mass fraction, %) were aged by different processes. The microstructure and mechanical properties were determined by transmission electron microscopy(TEM), tensile test and Vicker's hardness test. The experimental results show that the most signified hardening is obtained by double-ageing or multi-ageing for the Al-Zn-Mg-Cu-Li alloys. The yield strength and the elastic modulus of the Li-containing alloys have relationships with ageing processes. The elastic modulus of Li-containing alloys decreases with the increment of precipitates though it is higher than that of Al-Zn-Mg-Cu alloy.
出处
《中国有色金属学会会刊:英文版》
CSCD
2006年第A03期1610-1613,共4页
Transactions of Nonferrous Metals Society of China
基金
Project(2001AA332030) supported by the Advanced Materials Committee of China
关键词
弹性模量
铝
锌
铜
合金
时效分析
强度
Al-Zn-Mg-Cu-Li alloys
ageing
precipitates
elastic modulus
yield strength