介绍了2种经传统的球磨机改进而成的低温球磨机,对目前国内外低温机械合金化的研究现状,特别是对具有高温稳定性的纳米材料制备的应用进行了简要的概括总结,讨论了低温机械合金化的反应机制和能提高纳米材料高温稳定性的机理,对今后的发展趋势进行了展望.
参考文献
[1] | Benjamin J S .[J].Metallurgical and Materials Transactions,1970,1:2943-2951. |
[2] | Lü L.Mechanical alloying[M].London: Kluwer Academic,1998 |
[3] | 胡季帆,秦宏伟,隋振贵,陆宏良.高能机械球磨引导的纳米TiO2晶格畸变和高压相[J].稀有金属材料与工程,2003(01):5-8. |
[4] | 席生岐,周恩敬,郑锐,蔚富海.高能球磨Mg-Ni纳米晶合金的吸氢反应特点[J].稀有金属材料与工程,2002(06):464-467. |
[5] | 范景莲,黄伯云,曲选辉,赵慕岳.高能球磨合成W-Ni-Fe纳米复合粉末特性[J].稀有金属材料与工程,2001(03):208-211. |
[6] | 张晖,丁秉钧.纳米复合W-氧化物电极材料的电子发射特性[J].稀有金属材料与工程,2000(01):53-56. |
[7] | 吴煜明,雷永泉,吴京.机械合金化Mg-Ni基非晶态贮氢合金的电化学特性[J].稀有金属材料与工程,1997(03):26-29. |
[8] | 贾德昌,周玉,雷廷权.机械合金化Al-12Ti-6Nb合金的热稳定性[J].稀有金属材料与工程,1997(04):26-29. |
[9] | Huang B L et al.[J].Materials Science and Engineering,1998,A255:124-132. |
[10] | Perez R J et al.[J].Metallurgical and Materials Transactions,1998,A29:2469-2475. |
[11] | Perez R J et al.[J].Nanostructured Materials,1996,7:565-572. |
[12] | Luton M J et al.[J].Materials Research Society Symposium Proceedings,1989,132:79. |
[13] | Disko R J et al.[J].ULTRAMICROSCOPY,1991,37:202. |
[14] | Susegg O et al.[J].Philosophical Magazine A:Physics of Condensed Matter:Structure,Defects and Mechanical Properties,1993,A68:367. |
[15] | Zhang X et al.[J].Acta Materialia,2001,49:1319. |
[16] | Wang L et al.[J].Materials Science and Engineering,1994,A177:83-88. |
[17] | Whittenberger JD.;Luton MJ. .ELEVATED TEMPERATURE CREEP PROPERTIES OF NIAL CRYOMILLED WITH AND WITHOUT Y2O3[J].Journal of Materials Research,1995(5):1171-1186. |
[18] | Huang B L et al.[J].Nano-Structured Materials,1995,5:631-642. |
[19] | Huang B L et al.[J].Nano-Structured Materials,1995,5:411-424. |
[20] | Aikin B J et al.[J].Scripta Metallurgica et Materialia,1994,30:119. |
[21] | Whittenbergeer J D et al.[J].Materials Science and Engineering,2000,A291:173. |
[22] | Xu J;He J H;Ma E .[J].Metallurgical and Materials Transactions,1997,28A:1569. |
[23] | HeJH;Ma E.[A].Warrendale PA:Elsevier,1998 |
[24] | Dehiya B S.[A].Warrendale PA:TMS,1997 |
[25] | Tsuchiya K .The Effect of Temperature and Impurity on Iron Aluminum Alloys[D].Chicago: Northwestern University,1991. |
[26] | Melmed AJ.;Lau M.;Lavernia EJ.;Tambakis NC. .APFIM study of impurities in nanocrystalline Fe-Al alloy[J].Progress in Surface Science,1998(1/4):313-321. |
[27] | Colgan E G et al.[J].Journal of Applied Physics,1985,58:4125. |
[28] | Aikin B J M et al.[J].Scripta Metallurgica et Materialia,1994,30:119. |
[29] | Xu J.;Klasse T.;Averback RS.;Herr U. .FORMATION OF SUPERSATURATED SOLID SOLUTIONS IN THE IMMISCIBLE NI-AG SYSTEM BY MECHANICAL ALLOYING[J].Journal of Applied Physics,1996(8 Pt.1):3935-3945. |
[30] | Goujon C et al.[J].Powder Technology,1999,105:328-336. |
[31] | Chen Y et al.[J].Physical Review,1993,B48:14. |
[32] | Whittenberger J D;Noebe R D .[J].Metallurgical and Materials Transactions,1996,27A:2628-2641. |
[33] | Whittenberger J D et al.[J].Journal of Materials Research,1999,14:2418-2429. |
[34] | Wolfenden A.;Hebsur MG.;Miller CM. .Dynamic Young's modulus and vibration damping for cryomilled NiAl-AlN composites: 5-20% AlN concentrations[J].Journal of Materials Science Letters,1998(21):1861-1864. |
[35] | Goujon C et al.[J].Journal of Alloys and Compounds,2001,31:276. |
[36] | Lau M L;Lavernia E J .[J].Material Science and Engineering,1999,A272:222. |
[37] | Lau M L et al.[J].Nano-Structured Materials,1997,9:157. |
[38] | Lau M L et al.[J].Nanostructured Materials,1996,7:847. |
[39] | Ice M L .[J].Materials Science Forum,2000,343- 346:267. |
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