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Microstructure and tribological behavior of Mg-Gd-Zn-Zr alloy with LPSO structure 被引量:4

具有长周期结构的Mg–Gd–Zn–Zr合金的微结构和摩擦学行为(英文)
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摘要 A Mg-14.28Gd-2.44Zn-0.54Zr (mass fraction, %) alloy was prepared by conventional ingot metallurgy (I/M). The microstructure differences in as-cast and solution-treated alloys were investigated. Sliding tribological behaviors of the as-cast and solution-treated alloys were investigated under oil lubricant condition by pin-on-disc configuration. The wear loss and friction coefficients were measured at a load of 40 N and sliding speeds of 30-300 mm/s with a sliding distance of 5000 m at room temperature. The results show that the as-cast alloy is mainly composed ofα-Mg solid solution, the lamellar 14H-type long period stacking ordered (LPSO) structure within matrix, andβ-[(Mg,Zn)3Gd] phase. However, most of theβ-phase transforms to X-phase with 14H-type LPSO structure after solution heat treatment at 773 K for 35 h (T4). The solution-treated alloy presents low wear-resistance, because the hard β-phase is converted into thermally-stable, ductile and soft X-Mg12GdZn phase with LPSO structure in the alloy. 利用传统的熔铸法制备Mg-14.28Gd-2.44Zn-0.54Zr合金,研究铸态和固溶态合金的微结构。利用销-盘装置研究铸态和固溶态合金的室温润滑滑动摩擦磨损行为研究。在外载荷为40 N,滑动速度为30-300 mm/s以及滑行路程为5000 m情况下,测量磨损率和摩擦因数。研究结果表明:铸态合金主要由α-Mg固溶体、分布在基体内的层片状的14H型长周期结构(LPSO)和β-[(Mg,Zn)3Gd]相组成。经过温度为773 K固溶处理35 h后,大量的β相转变成具有14H型X相LPSO结构。由于固溶处理后大量β相转变为热稳定的韧性X-Mg12Gd Zn长周期结构相,固溶合金呈现较低的抗磨损能力。
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第12期3785-3791,共7页 中国有色金属学报(英文版)
基金 Projects(51304135,50971089)supported by the National Natural Science Foundation of China Project(A1420110045)supported by National Defense Basic Research Plan,China Project(11QH1401200)supported by the Shanghai Phospherus Program,China Project(NCET-11-0329)supported by the New Century Excellent Talents in University of Ministry of Education of China
关键词 Mg-Gd-Zn-Zr alloy long period stacking ordered (LPSO) structure MICROSTRUCTURE friction wear Mg-14.28Gd-2.44Zn-0.54Zr合金 长周期结构 微结构 摩擦 磨损
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  • 1YAN H, CHEN R S, HAN E H. Room-temperature ductility and anisotropy of two-rolled Mg-Zn-Gd alloys [J]. Materials Science and Engineering A, 2010, 527: 3317-3322.
  • 2NAYYERI G, MAHMUDI R, SALEHI F. The microstructure, creep resistance, and high-temperature mechanical properties of Mg-5Sn alloy with Ca and Sb additions, and aging treatment [J]. Materials Science and Engineering A, 2010, 527: 5353-5359.
  • 3NAYYERI G, MAHMUDI R. The microstructure and impression creep behavior of cast, Mg-5Sn-xCa alloys [J]. Materials Science and Engineering A, 2010, 527: 2087-2098.
  • 4QU Zhi-kun, LIU Xu-he, WU Rui-zhi, ZHANG Mi-lin. The superplastic property of the as-extruded Mg-8Li alloy [J]. Materials Science and Engineering A, 2010, 527: 3284-3287.
  • 5MASSALSKI T B. Binary alloy phase diagrams [M]. Ohio: American Society for Metals, 1986.
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  • 10KAWAMURA Y, HAYASHI K, INOUE A, MASUMOTO T. Rapidly solidified powder metallurgy Mg97Zn1Y2 alloys with excellent tensile yield strength above 600 MPa [J]. Materials Transactions, 2001, 42: 1171-1174.

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