期刊文献+

合金元素对Mg-TM-RE块体金属玻璃形成能力的影响 被引量:1

Effects of Alloying Elements on Glass-Forming Ability of Mg-TM-RE Bulk Metallic Glasses
原文传递
导出
摘要 在已开发的合金体系中,Mg-TM-RE合金系(TM为过渡元素,RE为稀土元素)为主要合金系。在总结近年来开发的Mg-TM-RE块体金属玻璃的形成体系及其形成能力的基础上,分析和讨论了合金元素TM及RE对Mg基块体金属玻璃形成能力的影响,为进一步研发Mg-TM-RE系金属玻璃提供合金设计思路。 In the past decade, a wide varieties of Mg-based bulk metallic glasses (BMGs) with high glass- forming ability (GFA) were developed, showing a significant progress. Mg-TM-RE (TM. transition metal, RE- rare earth metal) alloy system was the main one. The newly developed Mg-TM-RE BMGs and their GFA were reviewed. Furthermore, the effects of alloying elements TM and RE on the GFA were discussed in details, providing new ideas for Mg-TM-RE alloy design.
出处 《特种铸造及有色合金》 CAS CSCD 北大核心 2012年第12期1111-1115,共5页 Special Casting & Nonferrous Alloys
基金 国家自然科学基金资助项目(51101084) 江西省科技厅资助项目(20112BDH80022)
关键词 金属玻璃 镁合金 玻璃形成能力 合金元素 Metallic Glasses, Magnesium Alloy, Glass Forming Ability, Alloying Elements
  • 相关文献

参考文献46

  • 1INOUE A, TAKEUCHI A. Recent progress in bulk glassy, nano- quasicrystalline and nanoerystalline alloys [J]. Materials Science and Engineering, 2004, A 375-377 : 16-30.
  • 2GU X, SHIFLET G J, GUO F Q, et al. Mg-Ca-Zn bulk metallic glasses with high strength and significant ductility[J]. Journal of Materials Research, 2005, 20 (8): 1 935-1 938.
  • 3ZHAO Y Y, MA E, XU J. Reliability of compressive fracture strength of Mg-Zn-Ca bulk metallic glasses: flaw sensitivity and Weibull statistics[J]. Scripta Materialia, 2008, 58 (6): 496-499.
  • 4INOUE A, KATO A, ZHANG T, et al. Mg-Cu-Y amorphous al- loys with high mechanical strengths produced by a metallic mold casting method[J]. Materials Transactions, JIM, 1991, 32 (7) : 609-616.
  • 5LI Y, JONES H, DAVIES H A. Determination of critical thick- ness for glass formation in new easy glass forming magnesium-base alloys by the wedge chill casting technique[J]. Scripta Metallurgica Et Materialia, 1992, 26 (9): 1 371-1 375.
  • 6KANG H G, PARK E S, KIM W T, et al. Fabrication of bulk Mg-Cu-Ag-Y glassy alloy by squeeze casting[J]. Materials Trans- actions, 2000, 41 (7): 846-849.
  • 7AMIYA K, INOUE A. Preparation of bulk glassy Mg65 Y10Cu15 Ag5Pd5 alloy of 12 mm in diameter by water quenching[J]. Materi- als Transactions, 2001, 42 (3): 543-545.
  • 8MEN H, HU Z Q, XU J. Bulk metallic glass formation in the Mg- Cu-Zn-Y system[J]. Scripta Materialia, 2002, 46 (10): 699-703.
  • 9MEN H, KIM W T, KIM D H. Fabrication and mechanical prop- erties of Mg65 Cu15 Ag5Pd5Gd10 bulk metallic glass[J]. Materials Transactions, 2003, 44 (10): 2 141-2 144.
  • 10张扣山,司乃潮,陈振华,赵伟,刘光磊.镁基块体非晶合金制备及其晶化处理[J].特种铸造及有色合金,2007,27(1):21-23. 被引量:8

二级参考文献55

  • 1纪松,丁五洲,杨国斌,王润.Fe-Cu-Mo-Si-B超微晶软磁合金的结构与性能研究[J].兵器材料科学与工程,1994,17(1):28-31. 被引量:2
  • 2程明,张士宏,J.A.Wert.镁基大块非晶合金在过冷液相区流变行为本构关系[J].中国有色金属学报,2005,15(11):1682-1686. 被引量:11
  • 3李宝贵,陈刚,张伟.镁基大块非晶合金在深过冷液相区的塑性变形[J].特种铸造及有色合金,2006,26(5):267-269. 被引量:4
  • 4张扣山,司乃潮,陈振华,赵伟,刘光磊.镁基块体非晶合金制备及其晶化处理[J].特种铸造及有色合金,2007,27(1):21-23. 被引量:8
  • 5卢博斯基FE.非晶态金属合金[M].北京:冶金工业出版社,1989年.536.
  • 6GYOO K S, INOUE A, MASUMOTO T. High mechanical strengths of Mg-Ni-Y and Mg-Cu-Y amorphous alloys with signif- icant supercooled liquid region[J]. Mater. Trans. JIM, 1990, 31 (11) : 929-934.
  • 7INOUE A, KATO A, ZHANG T. Mg-Cu-Y amorphous alloys with high mechanical strengths produced by a metallic mold casting method[J]. Mater. Trans. JIM, 1991, 32(7): 609-616.
  • 8XI X K, WANG R J, ZHAO D Q, et al. Glass-forming Mg-Cu-RE (RE=Gd, Pr, Nd, Tb, Y and Dy) alloys with strong oxygen resistance in manufacturability[J]. Journal of Non-Crystalline Solids, 2004, 344: 105-109.
  • 9MA H, ZHENG Q, XU J, et al. Doubling the critical size for bulk metallic glass formation in the Mg-Cu-Y ternary system[J]. Journal of Materials Research, 2005, 20(9):2 252-2 255.
  • 10XI X K,ZHAO D Q,PAN M X. Highly processable Mg65Cu25Tb10 bulk metallic glass [J]. Journal of Non-Crystalline Solids, 2004, 344: 189-192.

共引文献8

同被引文献36

  • 1Kawamura Y,Hayashi K,Inoue A,et al. Rapidly solidified powder metallurgy Mg97Zn1Y2 Alloys with excellent tensile yield strength above 600 MPa [J]. Materials Transactions,2001,42(7):1172-1176.
  • 2Inoue A,Kawamura Y,Matsushita M,et al. Novel hexagonal structure and ultrahigh strength of magnesium solid solution in the Mg-Zn-Y system [J]. Journal of Materials Research, 2001,16(7) : 1894-1900.
  • 3Kawamura Y,Yamasaki M. Formation and mechanical proper- ties of Mg97Zn1RE2 alloys with long-period stacking ordered structure[J]. Materials Transactions, 2007,48 ( 11 ): 2986-2992.
  • 4Amiya K,Ohsuna T ,Inoue A. Long-period hexagonal structures in melt-spun Mg97Ln2Zn1 (Ln=lanthanide metal) alloys[J]. Materials Transactions, 2003,44(10): 2151-2156.
  • 5Kawamura Y,Kasahara T,lzumi S,et al. Elevated temperature Mg97Y2Cu1 alloy with long period ordered structure [J]. Scripta Materialia,2006,55 (5) :453-456.
  • 6Ma H,Shi L L,Xu J,et al. Chill-cast in situ composites in the pseudo-ternary Mg-(Cu,Ni)-Y glass-forming system:Microstruc- ture and compressive properties [J]. Journal of Materials Research, 2007,22 (2): 314-325.
  • 7Hui X, Dong W, Chen G L, et al. Formation, microstructure and properties of long-period order structure reinforced Mg-based bulk metallic glass composites [J]. Acta Materialia,2007,55 (3): 907-920.
  • 8Itoi T,Takahashi K,Moriyama H,et al. A high-strength Mg- Ni-Y alloy sheet with a long-period ordered phase prepared by hot-rolling[J]. Scripta Materialia,2008,59 (10): 1155-1158.
  • 9Shao X H,Yang Z Q,You J H,et al. Microstructure and microhardness evolution of a Mg83Ni6Zn5Y6 alloy upon annealing [J]. Journal of Alloys and Compounds,2011,509 (26) :7221-7228.
  • 10Yin J,Yuan G Y,Chu Z H,et al. Formation,microstructure, and mechanical properties of in situ Mg-Ni- (Gd,Nd) bulk metallic glass composite [J]. Journal of Materials Research, 2009,24(12):3603-3610.

引证文献1

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部