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材料研究学报  2002, Vol. 16 Issue (4): 389-394    
  论文 本期目录 | 过刊浏览 |
用渗流铸造法制备Zr55Al10Ni5Cu30非晶复合材料
邱克强1;2;王爱民1;张海峰1;丁炳哲1;胡壮麒1
1中国科学院金属研究所;沈阳材料科学国家(联合)实验室; 2 辽宁工学院
引用本文:

邱克强; 王爱民; 张海峰; 丁炳哲; 胡壮麒 . 用渗流铸造法制备Zr55Al10Ni5Cu30非晶复合材料[J]. 材料研究学报, 2002, 16(4): 389-394.

全文: PDF(1086 KB)  
摘要: 用渗流铸造法制备出以Zr55Al10Ni5Cu30合金为基体,以W丝束为增强相的大块非晶复合材料。采用X-射线衍射分析了基体的相组成,在扫描电镜(SEM)下观察了反应界面的形貌,利用电子探针研究了元素的迁移情况。通过改变渗流温度和时间,研究了W丝和基体间界面的作用过程。选择适当的渗流温度和时间,可以制备出长度为65mm直径为4.3mm的大块W丝束增强Zr55Al10Ni5Cu30非晶复合材料。在一定范围内提高渗流温度降低渗流时间或降低渗流温度延长渗流时间能得到同样的效果。在渗流铸造前,液态金属的过热有利于提高基体的非晶形成能力,降低渗流铸造时产生的缺陷。
关键词 渗流铸造大块非晶复合材料    
Key words
收稿日期: 1900-01-01     
1 DAI Daosheng,The present situation and future of the magnetic films stuty,Physics,29(5),262(2000) (戴道生,磁性薄膜研究的现状和未来,物理,29(5),262(2000))
2 LI Guodong,Contemporary Magnetics(Hefei,The Press of Science and Technology University of China,1999) (李国栋,当代磁学(合肥,中国科技大学出版社,1999))
3 F.J.Himpsel,E.Ortega,G.J.Mankey,Magnetic nanostruc- tures,Adv.Phys.,47(4),511(1998)
4 M.N.Baibich,J.M.Broto,A.Fert,Giant magnetoresistance of(001)Fe/(001)Cr magnetic supperlattices,Phys.Rev. Lett.,61,2472(1988)
5 J.S.Moodera,Lisa R.Kinder,Terrilyn M.Wong,R.Meser- vey,Large magnetoresistance at room temperature in fer- romagnetic thin film tunnel junctions,Phys.Rev.Lett., 74(16),3273(1995)
6 DUAN Li,LIN Bixia,YAO Ran,FU Zhuxi,The prop- erties of ZnO/SiC/Si heterostructure,Chinese Journal of Materials Research,20(3),37(2006) (段理,林碧霞,姚然,傅竹西,ZnO/SiC/Si异质结构的特性,材料研究学报,20(3),37(2006))
7 CAI Jianwang,ZHAO Jiangao,ZHAN Wenshan,SHEN Baogen,Several problems in magnetic electronics, Progress in Physics,17(2),119(1997) (蔡建旺,赵见高,詹文山,沈宝根,磁电子学中的若干问题,物理学进展,17(2),119(1997))
8 S.Zhang,P.M.Levy,A.C.Marley,S.S.Parldn,Quenching of the magnetoresistance by hot electron in magnetic tunnel junction,Phys.Rev.Lett.,79(19),3744(1997)
9 S.Ingvarsson,L.Ritchie,X.Y.Liu,Gang Xiao, J.C.Slonczewski,P.L.Trouilloud,R.H.Koch,Role of electron scattering in the magnetization relexation of thin Ni_(18)Fe_(19)films,Phys.Rev.B,66(21),214416(2002)
10 R.E.Camley,D.L.Mills,Theory of microwave propagation in dielectric/magnetic film multilayer structures,J.Appl. Phys.,82(6),3058(1997)
11 R.P.Erickson,D.L.Mills,Thermodynamics of thin ferro- magnetic films in the presence of anisotropy and dipolar coupling,Phys.Rev.B,44(21),11825(1991)
12 J.Barnas,Spin waves in superlattices,J.Phys.C.,21, 1021(1988);21,4097(1988)
13 L.Dobrzynski,Interface response and scattering matrix theories for composite systems,Surf.Sci.,175,1(1986); 180,489(1987)
14 M.Farle,Ferromagnetic resonance of ultrathin metallic layers,Rep.Prog.Phys.,61(7),755(1998)
15 J.F.Cochran,Brillouin light scattering intensities for pat- terned magnetic thin film,J.Magn.Magn.Mater., 212(1-2),40(2000)
16 Mustafa Ozdemir,Nuh Yalcin,Bekir Aktas,A spin wave resonance study on reentrant Au_(77)Fe_(23)films,Thin Solid Films,310(1-2),289(1997)
17 T.G.Rappoport,P.Redliski,X.Liu,G.Zaránd, J.K.Furdyna,B.Jankó,Anomalous behavior of spin- wave resonances in Ga_(1-x)Mn_xAs thin films,Phys.Rev. B,69,125213(2004)
18 Yark Yeon Kim,Jong Sung Baek,Kung Won Rhie,Woo Young Lim,Seong Cho Yu,Soo Hyung Lee,Spin wave res- onance of amorphous Co_(1-x)Zr_x thin films,J.Appl.Phys., 85(8),6004(1999)
19 A.Martins,S.C.Trippe,A.D.Santos,F.Pelegrini,Spin- wave resonance and magnetic anieotropy in FePt thin films,J.Magn.Magn.Mater.,308(1),120(2007)
20 F.Schreiber,Z.Fralt,Spin-wave resonance in high- conductivity films:The Fe-Co alloy system,Phys.Rev. B,54,6473(1996)
21 C.Kitttel,Excitation of spin waves in a ferromagnet by a uniform rf field,Phys.Rev.,110,1295(1958)
22 M.H.Seavey,P.E.Tannenwald,Direct observation of spin- wave resonance,Phys.Rev.Lett.,1,168(1958)
23 B.Waksmann,O.Massenet,P.Escudier,C.F.Kooi,Spin- wave resonance in epitaxial FeNi films and in coupled dou- ble layers of epitaxial FeNi(ferromagnetic)-FeNiMn(an- tiferromagnetic),J.Appl.Phys.,39(2),1389(1968)
24 H.A.Algra,J.M.Robertson,The effects of ion implantation on La,Ga:YIG films as observed by spin wave resonance, J.Appl.Phys.,51(7),3821(1980)
25 G.Suran,M.Naili,M.Rivoire,J.C.S.Levy,Effect of local magnetic anisotropy on the spin-wave resonance in amor- phous thin films,J.Appl.Phys.,67(9),5649(1990)
26 P.E.Wigen,C.F.Kooi,M.R.Shanabarger,Dynamic pin- ning in thin-film spin-wave resonance,Phys.Rev.Lett., 9,206(1962)
27 YUN Guohong,The quantum theory for spin-wave res- onance in magnetic films,Acta Scientiarum Naturalium Universitatis Neimongol,24(2),160(1993) (云国宏,磁性薄膜自旋波共振的量子力学研究,内蒙古大学学报(自然科学版),24(2),160(1993))
28 H.Puszkarski,L.Dobrzynski,Interface response and rescaling approach to the eigenvectors of layered composite systemⅠ.Doublelayer slab,Phys.Rev.,B39,1819(1989)
29 H.Puszkarski,L.Dobrzynski,Interface response and rescaling approach to the eigenvectors of layered composite systemⅡ.triplelayer slab,Phys.Rev.,B39,1825(1989)
30 G.H.Yun,J.H.Yan,S.L.Ban,Interface-rescaling approach to the exact solutions of quantum low-energy engenprob- lems for a ferromagnetic bilayer system,Phy.Rev.,B40, 12045(1992)
31 G.H.Yun,J.H.Yan,S.L.Ban,X.X.Liang,Properties of per- fect confined modes and interface modes of spin waves in a ferromagnetic bilayer system,Surf.Sci.,318,177(1994)
32 RONG Jianhong,YUN Guohong,The study for spin waves in ferromagnetic bilayers with anti-ferromagnetic interface coupling,Acta Scientiarum Naturalium Univer- sitatis Neimongol,34(4),402(2003) (荣健红,云国宏,层间反铁磁耦合双层薄膜的自旋波研究,内蒙古大学学报(自然科学版),34(4),402(2003))
33 WANG Huan,YUN Guohong,Dispersion relations of spin waves in ferromagnetic/anti-ferromagnetic bilayers,Acta Scientiarum Naturalium Universitatis Neimongol,36(3), 259(2005) (王焕,云国宏,铁磁/反铁磁双层薄膜中自旋波色散关系,内蒙古大学学报(自然科学版),36(3),259(2005))
34 SONG Bo,The Spin Waves in Magnetic Bilayers,(Hot- tol,Thereference room of Department of Physics of Inner Mongolia University,2000) (宋波,两层磁性薄膜中的自旋波(呼和浩特,内蒙古大学理工学院物理系资料室,2000))
35 X.X.Liang,X.Wang,S.L.Ban,R.S.Zheng,G.H.Yun, J.H.Yan,Theories of the Electron-Phonon Interaction and Spin-Waves in Layered Materials(Hottol,Inner Mongolia University Press,1995)p.181
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