1KLETT JW, BURCHELL TD. High Thermal Conductivity Mesophase Pitch - Derived Carbon Foam[ A ]. The 43rd International SAMPE Symposium[ C]. Anaheim,CA, May31 -June 4, 1998.
2JAMES KLETT, RON OTT, APRIL MCMILLAN. Heat Exchangers for Heavy Vehicles Utilizing High Thermal Conductivity Graphite Foams [ A ]. Sae Technical Paper Series [C]. 2000-01-2207.
3JAMES KLETT. High Thermal Conductivity Graphite Foams [EB/OL]. http:∥www. ms. omi. gov/resear - chgroups/cmt/foam/foams. btm. July 2002.
4JAMES KLETT. Graphite Foam with High Thermal Conductivity and Diffusivity Conducts Heat in All Directions [ EB/OL]. http:∥www. mrs. org/publications/bulletin. December 2000.
5JAMES KLETT, PATRICK LIOYD. Development of High Thermal Conductivity, Low Density Graphite Foam [ EB/OL]. http:∥www. aquafoam. com/papers/pocofoam. pdf.January 2001.
6Aguilera J M. Microstructure and food product engineering[J]. Food Technology, 2000,54(11):56-65.
7Coppens M O, Froment G F. Diffusion and reaction in a fractal catalyst pore-II diffusion and first order reaction[J]. Chemical Engineering Science, 1995,50(6):1027-1039.
8Leon C A. New perspectives in mercury porosimetry[J]. Advances in Colloid and Interface Science, 1998,76,77:341-372.
9Friesen W I, Mikula R J. Fractal dimensions of coal particles[J]. J of Colloid and Interface Science, 1987,120(1):263-271.
10Zhang Baoquan, Li Shaofen. Determination of the surface fractal dimension for porous media by mercury porosimetry[J]. Ind Eng Chem Res, 1995,34:1383-1386.