Porous alumina can be used as a synthetic bone scaffold in tissue engineering. Using a direct foaming method a foamed alumina was produced using in situ evolution of gases by calcining blends of ammonium sulphate and aluminium sulphate with varying ammonium mole fraction (AMF). The effect of foaming heating rate was observed by varying the foaming heating rate from 100 C/h to 600 C/h. The effect of sintering temperature was also observed by varying the sintering temperature from 1500 C to 1600 C. The resulting porous structure exhibited high mechanical strength with high levels of porosity and high average pore size. Foamed alumina with the optimal conditions was fabricated using 0.33 AMF with a foaming heating rate of 100 C/h followed by s...
Bone ingrowth requires materials with the existence of open and interconnected pores with diameters ...
Biocompatible ceramics have recently attracted increasing attention as porous scaffolds that stimula...
Engineering applications of ceramic foams Nature offers several examples of cellular materials, suc...
Porous materials are useful as lightweight structures, bone substitutes, and thermal insulators, but...
Porous alumina containing hydrothermal derived hydroxyapatite (HA) composite were successfully fabri...
In this work, a procedure for fabricating porous alumina with the use of a carbon sacrificial templa...
AbstractThe aim of this study was to evaluate the bioactivity response of alumina (Al2O3) coated sca...
Foamed alumina was previously synthesised by direct foaming of sulphate salt blends varying ammonium...
A new protein foaming-consolidation method for preparing porous alumina was developed using egg yolk...
Floating porous ceramics have been successfully fabricated using protein foaming-consolidation metho...
International audienceIn this work, foams were obtained by direct foaming of aqueous alumina suspens...
Porous biomaterials including porous bioceramics play important roles for hard tissue replacement an...
The talk presented at 29th Annual General Meeting Of Materials Research Society Of India And Nationa...
Floating porous ceramics has been successfully developed using protein foaming-consolidation metho...
Bone ingrowth requires materials with the existence of open and interconnected pores with diameters ...
Bone ingrowth requires materials with the existence of open and interconnected pores with diameters ...
Biocompatible ceramics have recently attracted increasing attention as porous scaffolds that stimula...
Engineering applications of ceramic foams Nature offers several examples of cellular materials, suc...
Porous materials are useful as lightweight structures, bone substitutes, and thermal insulators, but...
Porous alumina containing hydrothermal derived hydroxyapatite (HA) composite were successfully fabri...
In this work, a procedure for fabricating porous alumina with the use of a carbon sacrificial templa...
AbstractThe aim of this study was to evaluate the bioactivity response of alumina (Al2O3) coated sca...
Foamed alumina was previously synthesised by direct foaming of sulphate salt blends varying ammonium...
A new protein foaming-consolidation method for preparing porous alumina was developed using egg yolk...
Floating porous ceramics have been successfully fabricated using protein foaming-consolidation metho...
International audienceIn this work, foams were obtained by direct foaming of aqueous alumina suspens...
Porous biomaterials including porous bioceramics play important roles for hard tissue replacement an...
The talk presented at 29th Annual General Meeting Of Materials Research Society Of India And Nationa...
Floating porous ceramics has been successfully developed using protein foaming-consolidation metho...
Bone ingrowth requires materials with the existence of open and interconnected pores with diameters ...
Bone ingrowth requires materials with the existence of open and interconnected pores with diameters ...
Biocompatible ceramics have recently attracted increasing attention as porous scaffolds that stimula...
Engineering applications of ceramic foams Nature offers several examples of cellular materials, suc...