欢迎登录材料期刊网

材料期刊网

高级检索

逾渗理论是处理强无序和随机几何结构系统的最好理论方法之一,它为描述空间随机过程提供了一个明确、清晰、直观的模型,广泛应用于相变和临界现象的研究.本文简要介绍了逾渗理论,综述了近年来逾渗模型在计算材料学中的应用,特别是在脱合金腐蚀、巨磁阻材料、栅介质击穿、导电复合材料等方面的最新研究进展.

参考文献

[1] Ashby M F.[J].Journal of Materials Science and Technology,1992(08):102.
[2] Cebon D;Ashby M F.[J].Measurement Science and Technology,1994(05):296.
[3] 郭俊梅,邓德国,潘健生,胡明娟.计算材料学与材料设计[J].贵金属,1999(04):62-68.
[4] 冯武锋,王春青,张磊.材料设计的发展新趋势--材料设计计算方法[J].材料科学与工艺,2000(04):57-62.
[5] 陈恒庆.[J].冶金标准化与质量,1998(06):41.
[6] ZALLEN R.The physics of amorphous solids[M].A Wildly Interscience Publication,1983:135-205.
[7] Bruhn D;Groebner N;Kohlstedt D L .[J].Nature,2000,403:883.
[8] Yoshino T;Watter M J;Katsura T .[J].Nature,2003,422:154.
[9] 江志恒.附合重力网的严密平差[J].地震学报,1990(04):379.
[10] R·泽仑;黄钧.非晶态固体物理学[M].北京:北京大学出版社,1988:153.
[11] D·罗伯;项金钟.计算材料学[M].北京:化学工业出版社,2002
[12] 刘增才,林乐耘,徐杰,赵月红.实海暴露双相黄铜脱锌的扩散机制[J].材料研究学报,2000(z1):145-149.
[13] 韩忠,何毓璠,林海潮,赵晖.QAl-9-2合金在3.5%NaCl溶液中脱合金腐蚀研究[J].金属学报,2000(05):521-524.
[14] 朱小龙.Cu-Ni合金海水腐蚀行为研究进展[J].腐蚀科学与防护技术,1997(01):48.
[15] Ateya BG.;Pickering HW.;Fritz JD. .KINETICS OF DEALLOYING OF A COPPER-5 ATOMIC PERCENT GOLD ALLOY[J].Journal of the Electrochemical Society,1997(8):2606-2613.
[16] Sieradzki K;corderman R R;Shukla K et al.[J].Philosophical Magazine A:Physics of Condensed Matter:Structure,Defects and Mechanical Properties,1989,59(04):713.
[17] Sieradzki K .[J].Journal of the Electrochemical Society,1993,140:2868.
[18] Robert W C .[J].Nature,1997,398:121.
[19] Wang J H;Jiang X X;Li S Z .[J].Chinese Science Bulletin,1997,42(13):1135.
[20] 王吉会;姜晓霞;李诗卓 .[J].材料研究学报,1999,13(01):1.
[21] 温伟祥;胡社军;黄拿灿 .[J].重庆师范学院学报(自然科学版),2000,17(04):14.
[22] Uehara M;Mori S;Chen C H et al.[J].Nature,1999,399:560.
[23] Zhang L W;Istrael C;Biswas A .[J].科学(上海),2002,298:805.
[24] Huang Q;Li J;Huang X J et al.[J].Journal of Applied Physics,2001,90(06):2924.
[25] Raquet B;Anane A;Wirth S.APS March Meeting Session V24-006[C].Minneapolis,USA,2000
[26] Harter A;Mohler G;Moore R.Proceddings of rogress in Electromagnetics Research Symposium[C].Hawaii,USA.oCT,2003
[27] Barabash S V;Bergman D J;Stroud D et al.[J].Physical Review B,2001,64:174419-1.
[28] Lisey S;Swiftyx M R;Maritany A.[J].Journal of Physics A:Mathematical and General,1998(31):L713-L719.
[29] Fisher KD.;Stroud D. .CONDUCTIVITY AND MAGNETORESISTANCE OF A PERIODIC COMPOSITE BY NETWORK DISCRETIZATION[J].Physical Review.B.Condensed Matter,1997(22):14366-14373.
[30] 余登科;顾强;汪汉廷 等.[J].物理学报,1999,48:170.
[31] 苏希玉,郑杭.自旋-声子耦合对正方晶格自旋-1/2反铁磁体的影响[J].上海交通大学学报,1999(06):710-713.
[32] Vajk O P;Mang P K;Greven M et al.[J].Science,2002,295:169.
[33] Vajk OP.;Greven M.;Mang PK.;Lynn JW. .Neutron scattering, magnetometry, and quantum Monte Carlo study of the randomly diluted spin-1/2 square-lattice Heisenberg antiferromagnet[J].Solid State Communications,2003(1/2):93-101.
[34] 王阳元,康晋锋.硅集成电路光刻技术的发展与挑战[J].半导体学报,2002(03):225-237.
[35] 胡恒升,张敏,林立谨.TDDB击穿特性评估薄介质层质量[J].电子学报,2000(05):80-83,74.
[36] Chen T P;Tse M S;Sun C Q et al.[J].Japanese Journal of Applied Physics,2002(41):3047.
[37] Degraeve R;Groeseneken G;Bellens,R et al.[J].IEEE Transactions on Electron Devices,1998,45:904.
[38] Alam M A;Smith R K;Weir B E et al.[J].NATURE,2002,420:378.
[39] Stathis J H .[J].Journal of Applied Physics,1999,86(10):5757.
[40] Zou J;Ding H Z;Xing X S .[J].Journal of Beijing Institute of Technology,1998,7(03):257.
[41] Clingerman M L .A dissertation for PhD of Michigan Technological University[D].,2001.
[42] Foulger S H;Gregory R V.National Textile Center Annual Report:M00-C07[J].USA,2002
[43] 雷忠利;戚长谋;孟雅新.[J].高分子通报,1996(03):69.
[44] Kalyon D M;Birinci E;Yazici R et al.[J].Polymer Engineering and Science,2002,42(07):1609.
[45] Kalyon D M;Birinci E .[J].Society of Plastics Engineers ANTEC Technical Papers,2002,2:1716.
[46] 熊传溪,闻荻江.聚丙烯-锡复合材料的研究[J].复合材料学报,1999(03):40-45.
[47] Orlikowski J .[J].Journal of Corr Meas,2002,2(01):19.
[48] Bohm S;Holness R J;McMurray H N.[J].Eurocorr 2000 U K:London,2000
[49] Flahaut E.;Peigney A. .CARBON NANOTUBE-METAL-OXIDE NANOCOMPOSITES: MICROSTRUCTURE, ELECTRICAL CONDUCTIVITY AND MECHANICAL PROPERTIES[J].Acta materialia,2000(14):3803-3812.
[50] Toker D;Azulay D;Shinomi N.[J].Physical Review B,2003
[51] Runyan J;Gerhardt R A;Sana C et al.[J].Journal of the American Ceramic Society,2001,84(07):1490.
[52] 王玉成,傅正义.导电体与绝缘体复相陶瓷中的渗流现象[J].武汉理工大学学报,2001(02):29-31,53.
[53] 王玉成,傅正义.TiB2与BN复相陶瓷的渗流模型[J].复合材料学报,2002(01):50-53.
[54] 王厚亮;李建保;刘继富 等.[J].山东陶瓷,1999,22(02):14.
[55] 庞乾骏.掺杂离子导体粒子连续逾渗模型 系统临界点阈值和电导率的粒子尺度效应[J].应用科学学报,1998(01):24-31.
[56] 王秀峰,王永兰,金志浩.碳纤维增强水泥复合材料的电导性能及其应用[J].复合材料学报,1998(03):75-80.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%