Browse > Article
http://dx.doi.org/10.4491/KSEE.2014.36.2.109

Effect of Additive Ball Clay on Physical Properties of Porous Ceramic  

Kang, Young-Sung (Techstone)
Kim, Sang-Sik (Department of Health & Environment, Kimpo College)
Publication Information
Abstract
A porous ceramic which has fine porosity and small specific gravity is made with Cenosphere and Ball Clay under condition of $1,250^{\circ}C$ in calcination temperature and 30 minutes of calcination time. The average size of porous ceramic was about $2.5{\times}10^{-5}$ m and pores are well developed. The void-fraction of porous ceramic was 67.1% under the input of Cenosphere and Ball clay with the weight ratio of 100 to 5. However, as weight ratio of Ball Clay increased to 20, 40, 100, the void fraction decreased to 58.4, 56.7, 47% respectively. When the weight ratio of Cenosphere and Ball Clay was 100 to 100, the apparent density of porous ceramic was $1.04g/cm^3$. which is twice the density when the weight ratio of Ball Clay was 5. On the other hand, absorption rate decreased by at least 100%. In condition of weight ratio of Cenosphere and Ball Clay was 100 to 100, compressive strength of porous ceramic was 30 (MPa), improve by about 76% or more when the weight ratio of Ball Clay was 5.
Keywords
Cenosphere; Ball Clay; Ceramics; Porous Ceramics; Ceramic Filter;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
연도 인용수 순위
1 Montanaro, L. Jorand, Y. Fantozzib, G. and Negroa, A. "Ceramic Foams by Powder Processing," J. Euro. Ceram. Soc., 18, 1339-1350(1998).   DOI   ScienceOn
2 Pokhrel, A., Park, J. G., Nam, J. S., Cheong, D. S. and Kim, I. J., "Stabilization of Wet Foams for Porous Ceramics Using Amphiphilic Particles," J. Kor. Ceramic Soc., 48(5), 463-466(2011).   과학기술학회마을   DOI   ScienceOn
3 Tatsuki, O., "Progress of Porous Ceramics: Processes and Properties," Ceramics (Japan), 45(10), 784-795(2010).
4 Lee, J. S. and Park, J. K., "Preparation of Porous Ceramic Pellet by Pseudo Double-Emulsion Method from 4-phase Foamed Slurry," J. Mater. Sci. Lett., 20, 205-207(2001).   DOI   ScienceOn
5 Ambrogio, M., Saracco, G. and Specchia, V. "Combining Filtration and Catalytic Combustion in Particulate Traps for Diesel Exhaust Treatment," Chem. Eng. Sci., 56, 1613-1621(2001).   DOI   ScienceOn
6 Kim, K. D. Kim, J. W. Kim, Y. T. Kang, S. G. and Lee, K. G., "Production of Lightweight Aggregates Using Power Plant Reclaimed Ash," J. Kor. Ceramic Soc., 47(6), 583-589(2010).   과학기술학회마을   DOI   ScienceOn
7 Choi, S. J. and Kim, M. H., "A Study on the Durabilities of High Volume Coal Ash Concrete by the Kinds of Coal Ash," J. Kor. Insti. Build. Const., 9(3), 73-8(2009).   과학기술학회마을   DOI   ScienceOn
8 Holloway, S. and Chanwick, R. A. "The SticklepathLustleigh fault zone: Tertiary sinistral reactivation of a Variscan dextral strikeslip fault," J. Geol. Soc., 143, 447-452(1986).   DOI
9 Angel, B. R. and Hall, P. L. "Electron Spin Resonance of Kaolins," Proc. Int. Clay Conf., Madrid., p. 47(1972).
10 The Ministry of Government Administration, Person in Charge of Judicial Affairs, "Determination of the Void Fraction, Absorption and Specific Gravity of a Firebrick (KS L 3114)," Notice of the Commerce-Industry Ministry, Article No. 474(1962).
11 Korean Agency for Technology and Standards of Ministry of Knowledge Economy, "The Test Method of Compressive strength of Concrete (KS F 2405)," Korean Agency for Technology and Standards, Article No. 2010-0654(2010).
12 Sepulveda, P. and Binner, J. G. P. "Processing of Cellular Ceramics by Foaming and in situ Polymerisation of Organic Monomers," J. Euro. Ceram. Soc., 19, 2059-2066(1999).   DOI   ScienceOn