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半固态处理对Zr_(60)Cu_(17.5)Al_(7.5)Ni_(10)Ti_5非晶形成能力和力学性能的影响 被引量:3

Effect of semi-solid processing on glass forming ability and mechanical properties of Zr_(60)Cu_(17.5)Al_(7.5)Ni_(10)Ti_5 bulk amorphous alloys
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摘要 采用铜模吸铸法将Ti元素添加到Zr65Cu17.5Al7.5Ni10非晶合金中,制备得到直径为3 mm的大块非晶合金。采用X射线衍射(XRD)、扫描电子显微镜(SEM)、示差扫描量热仪(DSC)和微机控制电子式万能试验机等研究半固态处理对Zr60Cu17.5Al7.5Ni10Ti5大块非晶合金的微观组织结构、非晶形成能力、压缩力学性能以及断口形貌的影响。结果表明:半固态处理技术对非晶合金材料的组织结构和力学性能有很大的影响,能够提高非晶合金的强度和塑性;半固态下Zr60Cu17.5Al7.5Ni10Ti5表现出较好的非晶形成能力,表征非晶形成能力的参数Trg为0.618 9,过冷液相区△Tx达到40 K;且当吸铸电压为7 kV时试样的塑性最好,为1.94%,强度为1 487.411 MPa。 A bulk amorphous alloy with diameter of 3 mm was prepared by water-cooled copper mold method through adding Ti element into the matrix of Zr60Cu17.5Al7.5Ni10Ti5.X-ray diffractometer(XRD),scanning electron microscope(SEM),differential scanning calorimeter(DSC) and micro-electric universal testing machine were employed to investigate the effect of semi-solid technology on the microstructure,glass forming ability,compression mechanical properties and facture surface of Zr60Cu17.5Al7.5Ni10Ti5 bulk amorphous alloy.The results indicate that the semi-solid technology markedly affects the structure and mechanical properties of the amorphous material,and improves the intensity and plastic of the alloy.The semi-solid Zr60Cu17.5Al7.5Ni10Ti5 exhibits an excellent glass forming ability,with Trg of 0.618 9 and supercooled liquid region(△Tx) of 40 K.When the suction-casting voltage is 7 kV,the sample with the best plastic of 1.94%,strength of 1 487.411 MPa is obtained.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2011年第8期1875-1880,共6页 The Chinese Journal of Nonferrous Metals
基金 国家自然科学基金资助项目(50961008 50371016)
关键词 非晶合金 半固态处理 非晶形成能力 吸铸电压 力学性能 bulk metallic glass semi-solid processing glass forming ability suction-casting voltage mechanical properties
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  • 1Liu C T,Chisholm M F,Miller M K.Intermetallics,2002;10:1105.
  • 2Lin X H,Johnson W L,Rhim W K.Mater Trans JIM,1997; 38:473.
  • 3Yokoyama Y,Fkaura K,Inoue A.Intermetallics,2002; 10:1113.
  • 4Gebert A,Eckert J,Schultz L.Acta Mater,1998; 46:5475.
  • 5Chen M W,Inoue A,Sakurai T.Appl Phys Lett,1999; 74:812.
  • 6Eckert J,Mattern N,Zinkevitch M,Seidel M.Mater Trans JIM,1998; 39:623.
  • 7Inoue A,Shibata T,Zhang T.Mater Trans JIM,1995; 36:1420.
  • 8Yokoyama Y,Inoue K,Fukaura K.Mater Trans,2002; 43:2316.
  • 9Andreas A K,Jorg F L,William L J,Peter J U.Scr Mater,2001; 44:1269.
  • 10Liu L,Chan K C.Intermetallics,2004; 12:1143.

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同被引文献26

  • 1张程煜,姚可夫.Cu_(64)Zr_(36)非晶合金的晶化动力学[J].稀有金属材料与工程,2006,35(1):158-160. 被引量:6
  • 2李建国.凝固原理[M].北京:高等教育出版社,2010:171.
  • 3YANG W, LIU F, LIU H, WANG H F, CHEN Z, YANG G C.Glass forming ability in Cu-Zr binary alloy: Effect of nucleationmode[J]. Journal of Alloys and Compounds, 2009, 484:702-707.
  • 4DEO L P, MENDES M A B, COSTA AMS, CAMPOS NETON D, de OLIVEIRA M F. Applying a new criterion to predictglass forming alloys in the Zr-Ni-Cu ternary system[J]. Journalof Alloys and Compounds, 2013,553: 212-215.
  • 5XU D H, LOHWONGWATANA B,DUAN G, JOHNSON W L,GARLAND C. Bulk metallic glass formation in binary Cu-richalloy series-Cuioo-xZrx (x=34, 36,38.2,40 at%) and mechanicalproperties of bulk Cu64Zr36 glass[J]. Acta Materialia, 2004, 52(9):2621-2624.
  • 6WANG D, LI Y, SUN B B, SUI M L,LU K, MA E. Bulkmetallic glass formation in the binary Cu-Zr system[J]. AppliedPhysics Letters, 2004, 84(20): 4029-4031.
  • 7ABE T, SHIMONO M, ODE M, ONODERA H.Thermodynamic modeling of the undercooled liquid in the Cu-Zrsystem[J]. Acta Materialia, 2006, 54(4): 909-915.
  • 8YANG W, YU H, WANG J H, CAI C C, XU Z F, LI S, LIU F,YANG G C. Application of dendrite fragmentation to fabricatethe homogeneous dispersed structure in undercooled Cu-Coimmiscible alloy [J]. Journal of Alloys and Compounds, 2011,509: 9675-9678.
  • 9HERLACH D M, GILLESSEN F, VOLKMANN T,WOLLGARTEN M,URBAN K. Phase selection in undercooledquasicrystal forming Al-Mn alloy meltsfJ]. Physical Review B,1992, 46: 5203-5210.
  • 10LIU F, CHEN Y Z, YANG G C, LU Y P,CHEN Z, ZHOU Y H.Competitions incorporated in rapid solidification of the bulkundercooled eutectic Ni786Si2i.4 alloy [J]. Journal of MaterialsResearch, 2007, 22: 2953-2963.

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