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Synergetic effects of Sc and Zr microalloying and heat treatment on mechanical properties and exfoliation corrosion behavior of Al-Mg-Mn alloys

机译:Sc和Zr微合金化和热处理对Al-Mg-Mn合金力学性能和剥落腐蚀行为的协同效应

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摘要

Mechanical properties, exfoliation corrosion behavior and microstructure of Al-5.98Mg-0.47Mn and Al-6.01Mg-0.45Mn-0.25Sc-0.10Zr (wt%) alloy sheets under various homogenizing and annealing processes were investigated comparatively by tensile tests, electrochemical measurements, X-ray diffraction technique and microscopy methods. The as-cast alloys mainly consist of Fe and Mn enriched impurity phases, Mg and Mn enriched non-equilibrium aluminides and Mg_3Al_2 phases. During homogenization treatment, solvable intermetallics firstly precipitate and then dissolve into matrix. The optimized homogenization processes for removing micro-segregation and obtaining maximum precipitation strengthening of secondary Al_3(Sc, Zr) particles are 440 ℃ × 8 h and 300 ℃ × 8 h, respectively. Sc and Zr additions can make the yield strength of Al-Mg-Mn alloy increase by 21 MPa (6.9%), 120 MPa (61.2%) and 127 MPa (68.3%), when annealed at 270 ℃, 300 ℃ and 330 ℃, respectively, indicating that Orowan precipitation strengthening caused by secondary Al_3(Sc, Zr) nano-particles is much greater than grain boundary strengthening from primary Al_3(Sc, Zr) micro-particles. Increasing homogenization and annealing degrees and adding Sc and Zr all can decrease corrosion current density and improve exfoliation corrosion resistance. The exfoliation corrosion behavior is dominant by anodic dissolution occurring at the interface between intermetallics and a(Al) matrix. After homogenizing at 440 ℃ for 8 h and annealing at 300 ℃ for 1 h, yield strength, ultimate strength, elongation to failure and exfoliation corrosion rank are 196 MPa, 360 MPa, 20.2% and PA (slight pitting corrosion) in Al-Mg-Mn alloy, and reach to 316 MPa, 440 MPa, 17.0% and PA in Al-Mg-Mn-Sc-Zr alloy, respectively, revealing that high strength, high ductility and admirable corrosion resistance of Al-Mg-Mn alloys can be achieved by the synergetic effects of Sc and Zr microalloying and heat treatment.
机译:通过拉伸试验,电化学比较研究了Al-5.98Mg-0.47Mn和Al-6.01Mg-0.45Mn-0.25Sc-0.10Zr(wt%)合金板在各种均质和退火过程中的力学性能,剥落腐蚀行为和显微组织测量,X射线衍射技术和显微镜方法。铸态合金主要由富集铁和锰的杂质相,富集镁和锰的非平衡铝化物和Mg_3Al_2相组成。在均质化处理期间,可溶解的金属间化合物首先沉淀,然后溶解到基质中。去除次生铝中的次生Al_3(Sc,Zr)微粒的最佳均质工艺为440℃×8 h和300℃×8 h。在270℃,300℃和330℃退火时,添加Sc和Zr可使Al-Mg-Mn合金的屈服强度提高21 MPa(6.9%),120 MPa(61.2%)和127 MPa(68.3%)。分别表明,由次要Al_3(Sc,Zr)纳米颗粒引起的Orowan沉淀强化远大于由次要Al_3(Sc,Zr)微粒引起的晶界强化。增加均质化和退火程度并添加Sc和Zr均可降低腐蚀电流密度并提高抗剥落腐蚀性能。剥落腐蚀行为主要发生在金属间化合物与(Al)基体之间的界面处发生的阳极溶解。在440℃均质8 h并在300℃退火1 h后,Al-Mg中的屈服强度,极限强度,断裂伸长率和剥落腐蚀等级分别为196 MPa,360 MPa,20.2%和PA(轻微点蚀) -Mn合金,在Al-Mg-Mn-Sc-Zr合金中分别达到316 MPa,440 MPa,17.0%和PA,这表明Al-Mg-Mn合金具有很高的强度,高的延展性和令人钦佩的耐蚀性通过Sc和Zr微合金化和热处理的协同作用可以实现。

著录项

  • 来源
    《Materials Science and Engineering》 |2016年第1期|61-71|共11页
  • 作者单位

    School of Physics and Electronics, Central South University, Changsha, Hunan 410083, China;

    School of Physics and Electronics, Central South University, Changsha, Hunan 410083, China;

    School of Materials Science and Engineering, Central South University, Changsha, Hunan 410083, China,Key Laboratory of Nonferrous Materials Science and Engineering of Ministry of Education, Central South University, Changsha, Hunan 410083, China;

    Southwest Aluminium (Group) Co., Ltd., Chongqing 401326, China;

    School of Materials Science and Engineering, Central South University, Changsha, Hunan 410083, China,Key Laboratory of Nonferrous Materials Science and Engineering of Ministry of Education, Central South University, Changsha, Hunan 410083, China;

    School of Physics and Electronics, Central South University, Changsha, Hunan 410083, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aluminum Alloy; Microalloying; Mechanical properties; Corrosion; Heat treatment;

    机译:铝合金;微合金化;机械性能腐蚀;热处理;

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