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综述了研究中所用到的压力产生装置及压力对材料组织性能影响的研究现状.阐述了各种压力产生装置的作用原理及优缺点,从再结晶、相变、金属性能和超导性能、晶体缺陷等方面总结了压力对材料组织性能影响的研究现状,并展望了未来研究的发展趋势.

参考文献

[1] 谢洪森.地球深部物质科学导论[M].北京:科学出版社,1997
[2] 孙樯,郑海飞.金刚石压腔(DAC)实验技术[J].地学前缘,2005(01):131-136.
[3] Wendel A. Caldwell;Martin Kunz;R.S. Celestre;E.E. Domning;M.J. Walter;D. Walker;J. Glossinger;A.A. MacDowell;H.A. Padmore;R. Jeanloz;S.M. Clark .Laser-heated diamond anvil cell at the advanced light source beamline 12.2.2[J].Nuclear Instruments and Methods in Physics Research, Section A. Accelerators, Spectrometers, Detectors and Associated Equipment,2007(1):221-225.
[4] Goncharov AF;Beck P;Struzhkin VV;Hemley RJ;Crowhurst JC .Laser-heating diamond anvil cell studies of simple molecular systems at high pressures and temperatures[J].The journal of physics and chemistry of solids,2008(9):2217-2222.
[5] Hall H T .Anvil guide device for multiple-anvil high pressure apparatus[J].Review of Scientific Instruments,1962,33(11):1278.
[6] Cooley C;Sexton T .Using synthetic diamond to improve machine pedormance[EB/OL].http://www.pump-zone.com/topics/bearings/using-synthetic-diamond-improve-machine-performance,2012-12-26.
[7] 朱志斌,田雪冬.等静压技术的应用与发展[J].现代技术陶瓷,2010(01):17-24.
[8] 鲁燕萍.陶瓷冷等静压成型技术[J].真空电子技术,2011(04):31-34,38.
[9] 张义文.热等静压技术新进展[J].粉末冶金工业,2009(04):32-40.
[10] Shen S L;Wang Z W;Shan X H .Alterations in DNA methylation and genomic structure in high-pressure induced rice cultivar[J].Science in China(Series C),2006,49(02):97.
[11] 高翔,李炯,阮康成.高压力诱变的耐压大肠杆菌[J].生物化学与生物物理学报,2001(01):77-81.
[12] Syrenko A F;Klinishev G P;Khoi V T .Recrystallization of copper under hydrostatic pressure up to 15 kbar[J].Journal of Materials Science,1973,8(06):765.
[13] Winning M;Schafer C .Influencing recrystallization behaviour by mechanical loads[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2006,419(1-2):18.
[14] Mikli V;Hiie J .Recrystallization of CdTe under conditions of high temperature and pressure[J].Nanostrut Adv Mater,2005,204:351.
[15] Qiu L X;Yao B;Ding Z H et al.Characterization of structure and properties of TiN-TiB2 nano-composite prepared by ball milling and high pressure heat treatment[J].Journal of Alloys and Compounds,2008,456(1-2):436.
[16] Yu, F;Sun, JX;Yang, W;Tian, RG;Ji, GF .A study of the phase transitions, electronic structures and optical properties of Mg2Si under high pressure[J].Solid State Communications,2010(13/14):620-624.
[17] Pandit, P;Srivastava, V;Rajagopalan, M;Sanyal, SP .Pressure-induced electronic and structural phase transformation properties in half-metallic PmN: A first-principles approach[J].Physica. B, Condensed Matter,2008(23/24):4333-4337.
[18] Tse J S;Song Z;Yao Y S et al.Structure and electronic properties of BaH2 at high pressure[J].Solid State Communications,2009,149(43-44):1944.
[19] Rached D;Rabah M;Khenata R;Benkhettou N;Baltache H;Maachou M;Ameri M .High pressure study of structural and electronic properties of magnesium telluride[J].The journal of physics and chemistry of solids,2006(8):1668-1673.
[20] Yang H X;Konzett J;Downs R T .Crystal structure and compressibility of a high-pressure Ti-rich oxide,(Ti0.50-Zr0.26 Mg0.14 Cr0.10)O1.81,isomorphous with cubic zirconia[J].Journal of Physics and Chemistry of Solids,2009,70(09):1297.
[21] Struzhkin V V;Hemley R J;Mao Ho-kwang et al.Superconductivity at 10-17 K in compressed sulphur[J].Nature,1997,390:382.
[22] Schilling JS .Studies in superconductivity at extreme pressures[J].Physica, C. Superconductivity and its applications,2007(1):182-185.
[23] Shimizu K;Tomohiro K;Shigeyuki F et al.Superconductivity in the nonmagnetic state of iron under pressure[J].Nature,2001,412:316.
[24] Yin L W;Li M S;Li F Z et al.Defect formation in diamond single crystals grown from the Fe-Ni-C system at high temperature and high pressure[J].Materials Research Bulletin,2001,36(13-14):2283.
[25] Koji S;Eiji K;Hiroaki K .A study on density functional theory of the effect of pressure on the formation and activation enthalpies of intrinsic point defects in growing single crystal Si[J].Electrochem Soc Meeting Abstracts,2012,2(32):2628.
[26] Pines B Y;Syrenko A F .Change of dislocation density in aluminium and lithium fluoride after annealing near the melting point under hydrostatic pressure[J].Journal of Materials Science,1968,3(01):80.
[27] E. Schafler .Effects of releasing the hydrostatic pressure on the nanostructure after severe plastic deformation of Cu[J].Scripta materialia,2010(6):423-426.
[28] Misiuk J B;Misiuk A;Paszkowicz W et al.Influence of high pressure and temperature on defect structure of silicon crystals implanted with N or Si ions[J].Journal of Alloys and Compounds,2004,362(1-2):275.
[29] Setman, D;Schafler, E;Korznikova, E;Zehetbauer, MJ .The presence and nature of vacancy type defects in nanometals detained by severe plastic deformation[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2008(1/2):116-122.
[30] Hilliard J E;Lornmel J M;Hudson J B et al.Effect of annealing under pressures on dislocations in lithium fluoride,aluminum,copper and iron[J].Acta Metallurgica,1961,9(08):787.
[31] Song Yu;Chong-Yu Wang;Tao Yu .The kink-pair nucleation in edge dislocation motion[J].Solid state sciences,2009(3):733-739.
[32] Jung J .A note on the influence of hydrostatic pressure on dislocations[J].Philosophical Magazine A:Physics of Condensed Matter:Structure,Defects and Mechanical Properties,1981,43(04):1057.
[33] Malashenko, V.V. .Effect of a high hydrostatic pressure on the dynamic instability of dislocation motion[J].Technical physics,2011(9):1287-1290.
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