Author_Institution :
Dept. of Ind. Eng., Naresuan Univ. Phayao, Phayao, Thailand
Abstract :
The effect of temperature and heating rate on density, pore size, porosity, bending strength and water flux of sintered Al2O3 body was studied in this research. Carboxymethyl Cellulose (CMC) 3% by Al2O3 weight was used as additive. The Al2O3 particle sizes were varied at Al2O3 5 mum and the mixture of Al2O3 0.7 mum (50 wt%) and Al2O3 5 mum (50 wt%). The mixture was then extruded, dried and sintered at 1300degC-1600degC, vary heating rate at 180, 300 and 600degC/Hour. The sintered samples were measured density, porosity, pore size and bending strength. It was found that, particle size is the most important factor affecting density, porosity, pore size and bending strength. The sintering temperature and heating rate affected the density porosity and bending strength of sintered body. The sample prepared from the mixture of Al2O3 0.7 mum (50 wt%) and Al2O3 5 mum (50 wt%) sintered at 1300degC resulted in lowest density and bending strength. The porosity of sintered Al2O3 increased with increasing of particle size and decreasing sintered temperature. Increasing heating rate would slightly decrease density and slightly increase pore size and porosity. Therefore, heating rate and sintering temperature are factor affecting on porosity and pore size but particle size is an important factor for both pore sizes and bending strength. The sintered samples were measured bending strength and water flux. The sample prepared from the mixture of 0.7 mum (50 wt%) and 5 mum (50 wt%) with 3% CMC at 1400degC showed bending strength and water flux of 40.50 MPa and 3.7 m3/(m2.h), respectively.
Keywords :
alumina; bending strength; ceramic industry; drying; extrusion; filtration; heating; particle size; porosity; sintering; Al2O3; bending strength; carboxymethyl cellulose; density; drying; extrusion; heating rate effects; particle size; pore size; porosity; sintering temperature; temperature 1300 degC to 1600 degC; tubular alumina filter; water flux; Additives; Aluminum oxide; Ceramics; Density measurement; Filters; Filtration; Immune system; Polymers; Temperature; Water heating; Additive; Alumina; Carboxymethyl Cellulose; Extrusion; Heating rate; Sintering temperature;