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作 者:Xiao-yan Wu Wei Luo Hua-rui Zhang Hu Zhang Hai-tao Jiang
机构地区:[1]National Engineering Research Center for Advanced Rolling Technology,University of Science and Technology Beijing,Beijing 10083,China [2]School of Materials Science and Engineering,Beihang University,Beijing 100191,China
出 处:《China Foundry》2021年第5期481-487,共7页中国铸造(英文版)
基 金:the Fundamental Research Funds for the Central Universities(Grant number FRF-TP-19-083A1);the Guangxi Special Funding Programme for Innovation-Driven Development(Grant number GKAA17202008)。
摘 要:The effect of La addition(0,0.1,0.2,0.4,wt.%)on the microstructure,tensile properties and fracture behavior of Al-7Si alloy was investigated systematically.It is found that the La appears in the Al-7Si alloy in the form of Al4La and Al2Si2La phases.La addition can refine the secondary dendrite arm spacing(SDAS)and eutectic Si particles,which are decreased by 7.9%and 7%,respectively,with the optimal La content of 0.1wt.%.Because when 0.1wt.%La is added,a relatively higher nucleation undercooling of 37.47℃ is observed.Higher undercooling degree suggests that nucleation is accelerated and subsequent growth is restrained.After T6 heat treatment,compared with the without La,the ultimate tensile strength of the alloy with 0.1wt.%La is enhanced by 5.2%from 333 MPa to 350.2 MPa and the elongation increases by 73%from 7.37%to 12.75%,correspondingly.The fracture mode evolves from the ductile-brittle mixed fracture to ductile fracture mode.However,when La element content reaches a certain value of 0.4wt.%,serious segregation takes place during the solidification process.The formed brittle phases deteriorate the tensile properties of the alloy and the fracture mode of Al-7Si-0.2/0.4 La changes to mixed ductile-brittle fracture mode.
关 键 词:La addition Al-7Si alloy microstructure mechanical property
分 类 号:TG146.21[一般工业技术—材料科学与工程]
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