TAY T E,ANG H G,SHIM V P W.An empirical strain ratedependent constitutive relationship for glass-fibre reinforced epoxy and pure epoxy[J].Composite Structures,1995,33(4):201-210.
[13]
KHAN M Z SHAH,SIMPSON G.Mechanical properties of a glass reinforced plastic naval composite material under increasing compressive strain rates[J].Material Letters,2000,45(3-4):167-174.
[14]
聂海瑜.碳纳米管的应用研究进展[J].化学工业与工程技术,2004,25(5):34-38.
[15]
SCHARFF P.New carbon materials for research and technology[J].Carbon,1998,36(5-6):481-486.
SANDLER J,SHAFFER M S P,PRASSE T,et al.Development of a dispersion process for carbon nanotubes in an epoxy matrix and the resulting electrical properties[J].Polymer,1999,40(21):5967-5971.
[18]
JOSE K A,VARADAN GIVEN NAME,VASUADARA V.Free-space vs.one-horn interferometer techniques for radar absorber measurements[J].Microwave Journal,1998,41(9):148-154.
[19]
SMITH F C,CHAMBERS B,BENNET J C.Methodology for accurate free-space characterization of radar absorbing materials[J].IEE Proceedings:Science,Meas and Technol,1994,141(6):538-546.
[20]
GAO M,WANG B,YUAN J,et al.Towards an intelligent CAD system for multilayer electromagnetic absorber design[J].Materials and Design,1998,19(3):113-120.
SEEGER T,REDLICH PH,GROBERT N,et al.SiOx-coating of carbon nanotubes at room temperature[J].Chemical Physics Letters,2001,339(1-2):41-46.
[24]
AJAYAN P M,STEPHAN Q,COLLIEX C,et al.Aligned carbon nanotube arrays formed by cutting a polymer resin nanotube composite[J].Science,1994,265(16):1212-1214.
[25]
DUJARDIN E,EBBESEN T W,HIURA H.Capillarity and wetting of carbon nanotubes[J].Science,1994,265(18):1850-1851.
[26]
ROBERT C.CRC handbook of physics and chemistry[M].Florida:CRC Press,1988.
HONG YOUI BAE,GYEONG MAN CHOI.Electrical and reducing gas sensing properties of ZnO and ZnO-CuO thin films fabricated by spin coating method[J].Sensors and Actuators B:Chemical,1999,55(1):47-54.
[31]
WANG Z L.In-situ analysis of valence conversion in transition metal oxides using electron energy-loss spectroscopy[J].Materials Today,2004,7(6):26-33.
[32]
KONG X Y,DING Y,YANG R S,et al.Single-crystal nanorings formed by epitaxial self-coiling of polar nanobelts[J].Science,2004,303(2):1348-1351.
[33]
GAO P X,DING Y,MAI W J,et al.Conversion of zinc oxide nanobelts into superlattice-structured nanohelices[J].Science,2005,309(21):1700-1704.
[34]
GAO P X,WANG Z L.Nanopropeller arrays of zinc oxide[J].Appl Phys Lett,2004,84(15):2883-2885.
[35]
WANG X D,SUMMERS C J,WANG Z L.Large-scale hexagonal-patterned growth of aligned ZnO nanorods for nano-optoelectronics and nanosensor arrays[J].Nano Letters,2004,4(3):423-426.
[36]
PARKA J,CHOIA H H,SIEBEINB K,et al.Two-step evaporation process for formation of aligned zinc oxide nanowires[J].Journal of Crystal Growth,2003,258(23):342-348.
SHI Xiao-ling,YUAN Jie,ZHOU Wei,et al.Preparation and dielectric properties of nanostructured ZnO whisher[J].Chin Phys Lett,2007,24(10):2994.
[44]
CAO Mao-sheng,SHI Xiao-ling,FANG Xiao-yong.Microwave absorption properties and mechanism of cagelike ZnO/SiO2 nanocomposites[J].Applied Physics Let ters,2007,91(20):203110(3 pages).
[45]
崔东辉,朱旭宝.雷达吸波材料发展趋势[J].飞航导弹,2000,(11):54-57.
[46]
KHAN M Z S.Resistance of glass-fibre reinforced polymer composites to increasing compressive strain rates and loading rates[J].Composites Part A:Applied Science and Manufacturing,2000,31(1):57-67.
[47]
OCHOLA R O,MARCUS K,NURICK G N,et al.Mechanical behaviour of glass and carbon fibre reinforced composites at varying strain rates[J].Composite Structures,2004,63(3-4):455-467.
[48]
HSIAO H M,DANIEL I M.Effect of fiber waviness on stiffness and strength reduction of unidirectional composites under compressive loading[J].Composites Science and Technology,1996,56(5):581-593.
[49]
IIJIMA S.Helical microtubues of graphitic carbon[J].Nature,1991,354(6348):56.
DILLON A C,JONES K M,BEKKEDAHL T A,et al.Storage of hydrogen in single-walled carbon nanotubes[J].Nature,1997,386(6623):377-379.
[55]
LIU C,FAN Y Y,LIU M,et al.Hydrogen storage in singlewalled carbon nanotube at room temperature[J].Science,1999,286(5442):1127-1129.
[56]
RINZLER A G,HAFNER J H,NIKOLAEV P,et al.Unraveling nanotubes:field emission from an atomic wire[J].Science,1995,269(5230):1550-1553.
[57]
QIAN D,DICKEY E C.In-situ transmission electron microscopy studies of polymer-carbon nanotube composite deformation[J].Journal of Microscopy,2001,204(1):39-45.
[58]
KUZUMAKI T,MIYAZAMA K,ICHINOSE H,et al.Processing of carbon nanotube reinforce dammominum composite[J].J Mater Res,1998,13(9):2445-2449.
LIN Hai-bo,CAO Mao-sheng,ZHAO Quan-liang,et al.Mechanical reinforcement and piezoelectric properties of nanocomposites embedded with ZnO nanowhiskers[J].Scripta Materialia,2008,59(7):780-783.
[65]
CAO M S,ZHOU W,SHI X L.Dynamic response and reinforcement mechanism of composites embedded with tetraneedlelike ZnO nanowhiskers[J].Applied Physics Letters,2007,91(2):021912(3 pages).