## Abstract Numerous material properties may be influenced by the concentration of chemically dissolved hydroxyl species within a glass. A tube furnace connected to a steam generator was used to create hydroxyl‐saturated 45S5 glass under 1 atm of water at 1100°C. Selected properties of as‐melted an
Sintering behaviour of 45S5 bioactive glass
✍ Scribed by L. Lefebvre; L. Gremillard; J. Chevalier; R. Zenati; D. Bernache-Assolant
- Publisher
- Elsevier Science
- Year
- 2008
- Tongue
- English
- Weight
- 702 KB
- Volume
- 4
- Category
- Article
- ISSN
- 1742-7061
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✦ Synopsis
In this study, we report on the effect of Bioglass structural transformations on its sintering behaviour. While heating up to 1000 degrees C, five successive transformations occur: glass transition, glass-in-glass phase separation, two crystallization processes and a second glass transition. The sintering of the material exhibits two main shrinkage stages associated with the two glass transitions at 550 and 850 degrees C. At 580 degrees C, the glass-in-glass phase separation induces a decrease in the sintering rate immediately followed by the major crystalline phase crystallization (Na(2)CaSi(2)O(6)) between 600 and 700 degrees C, from the surface to the bulk of the particles. A complete inhibition of sintering takes place followed by a minor shrinkage effect due to crystallization. A plateau is then observed until the second glass transition temperature is reached. A modification of Frenkel's model allows the determination of the glass-in-glass phase separation kinetics and the identification of the structural transformations effects on sintering behaviour.
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45S5 bioactive glass (BG) is a bioactive material known to bond to bone in vivo through a surface calcium phosphate (Ca-P) layer. The goal of this study was to address the importance of BG surface charge in the bioactive response by examining the relationship between charge variations and the format
## Abstract Effects of powder type, particle size (5–20 μm; 90–300 μm; 90–710 μm), and type of dissolution medium on the dissolution behavior of bioactive glasses were investigated __in vitro__ using melt‐derived 45S5 and sol‐gel derived 58S bioactive glass powders. Dissolution studies were perform