以AR合成中间相沥青为原料,在不同的温度下发泡制得了泡沫炭.采用扫描电镜和光学显微镜等分析手段对中间相沥青基泡沫炭的气泡生长机理进行了初步研究,讨论了温度对泡孔结构的影响.结果表明,当温度从480℃升至540℃时,平均泡孔直径从500μm升到800μm.最初形成的泡沫在熔融沥青中分布不均匀,汇集在沥青的上表面;气泡在Z轴方向的形状是椭球形,在Z轴垂直方向为球形.中间相沥青基泡沫炭气孔的形状和泡沫的体积密度密切相关.形成的泡沫体在z轴方向存在明显的体积密度梯度.
A synthetic mesophasc pitch from naphthalene was used as a precursor to prepare carbon foams under different temperatures in order to study the bubble growth process and the effect of temperature on the bubble shape during the formation of carbon foams. Scanning electron microscopy and optical microscopy were used to analyze the microstructure of the as-prepared foams. Results show that the bubble size increases from 500 μm to 800 μm when the temperature increases from 480℃ to 540℃. The initial bubbles are not uniformly dispersed in the molten pitch, but start to grow at the upper section of the pitch. The cross-section bubble shape in the direction of gravitational forcey is elliptical but perpendicular to the direction it is circular. The non-spherical shape of the bubble is closely related to the bulk density of the mcsophase-pitch based carbon foams, and there is a bulk density gradient in the Z direction of the as-prepared foam.
参考文献
[1] | 李凯,栾志强.中间相沥青基炭泡沫[J].新型炭材料,2004(01):77-78. |
[2] | Yu Q J;Straatman A G;Thompson BE .Carbon-foam famed tubes in air-water heat exchangers[J].Appl Tberm Eng,2006,26:131-143. |
[3] | Mei-Xian Wang;Cheng-Yang Wang;Xiao-Lin Zhang .Effects of the stabilization conditions on the structural properties of mesophase-pitch-based carbon foams[J].Carbon: An International Journal Sponsored by the American Carbon Society,2006(15):3371-3372. |
[4] | 曹敏,张书,王永刚.制备条件对炭泡沫结构的影响[J].新型炭材料,2005(02):134-138. |
[5] | Barros E B;Demir N S;Filho A G et al.Raman spectroscopy of graphite foams[J].Physical Review B:Condensed Matter,2005,71:165422. |
[6] | Klett J W .(Knoxville,Tenn.) Process for making carbon foam[P].US Patent:6033506,2000. |
[7] | Klett JW;McMillan AD;Gallego NC;Walls CA .The role of structure on the thermal properties of graphitic foams[J].Journal of Materials Science,2004(11):3659-3676. |
[8] | Gaies D;Faber K T.Thermal properties of pitch-derived graphite foam[J].Carbon,2002(10):1131-1150. |
[9] | Chong Chen;Elliot B. Kennel;Alfred H. Stiller .Carbon foam derived from various precursors[J].Carbon: An International Journal Sponsored by the American Carbon Society,2006(8):1535-1543. |
[10] | Klett J.;Romine E.;Walls C.;Burchell T.;Hardy R. .High-thermal-conductivity, mesophase-pitch-derived carbon foams: effect of precursor on structure and properties[J].Carbon: An International Journal Sponsored by the American Carbon Society,2000(7):953-973. |
[11] | Druma A M;Aiam M K;Druma C .Analysis of thermal conduction in carbon foams[J].International Journal of Thermal Sciences,2004,43:689-695. |
[12] | Sangwook Sihn;Ajit K. Roy .Modeling and prediction of bulk properties of open-cell carbon foam[J].Journal of the Mechanics and Physics of Solids,2004(1):167-191. |
[13] | Thomas Beechem;Khalid Lafdi;Ahmed Elgafy .Bubble growth mechanism in carbon foams[J].Carbon: An International Journal Sponsored by the American Carbon Society,2005(5):1055-1064. |
[14] | Eksilioglu A;Gencay N;Yardim MF;Ekinci E .Mesophase AR pitch derived carbon foam: Effect of temperature, pressure and pressure release time[J].Journal of Materials Science,2006(10):2743-2748. |
[15] | Jorge Sanchez-Coronado;D. D. L. Chung .Thermomechanical behavior of a graphite foam[J].Carbon: An International Journal Sponsored by the American Carbon Society,2003(6):1175-1180. |
[16] | Gregory Rosebrock;Ahmed Elgafy;Thomas Beechem .Study of the growth and motion of graphitic foam bubbles[J].Carbon: An International Journal Sponsored by the American Carbon Society,2005(15):3075-3087. |
[17] | Klett J W;McMillan A D;Gallego N C et al.Effects of heat treatment conditions on thermal properties of mesophase pitch derived graphitic foams[J].CARBON,2004,42:1849-1852. |
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