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High strength-ductility and rapid degradation rate of as-cast Mg-Cu-Al alloys for application in fracturing balls

查看全文 作  者:Wei [1]Tan;Tianshu [2]Li;Suzhi [1]Li;Daqing [1]Fang;Xiangdong [1]Ding;Jun [1]Sun 高影响力作者 机构地区:[1]State Key Laboratory for Mechanical Behavior of Materials,Xi'an Jiaotong University,Xi'an 710049,China;[2]Fontana Corrosion Center,The Ohio State University,Columbus,OH,43210,USA高影响力机构 出  处:《Journal of Materials Science & Technology》索引2021年第35期,共10页高影响力期刊 基  金:NSFC(51320105014,51621063);the 111 project(BP 2018008)for financial support。 摘  要:Specially designed Mg-Cu-Al alloys were prepared for the application in fracturing balls.In comparison to Mg-2.5 Cu alloy,Mg-2.5 Cu-6.0 Al alloy exhibits an improved compressive strength of 378 MPa and compressive strain of 27%,combined with a high degradation rate of 383 mm/y.Two kinds of second-phases are found in Mg-Cu-Al alloys,i.e.MgAlCu andβ-Mg_(17)Al_(12)+Al_(2)Cu phases.They form a discontinuous network and act as cathodes for micro-galvanic corrosion,leading to a high degradation rate.Moreover,the addition of Al could improve the strength and ductility simultaneously in Mg-Cu alloys.The enhancement of strength primarily arises from the solid-solution strengthening and second-phase hardening.A high density of basal,non-basal dislocations and stacking faults were activated upon mechanical deformation.This accounts for the good ductility in Mg-Cu-Al alloys. 关 键 词:Mg-Cu-Al alloy Microstructure Micro-galvanic corrosion Mechanical properties
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