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Effects of Alumina (AI_2O_3) Addition on Mechanical Property of Fabricated Melt-derived Bioactive Glass

机译:氧化铝(AI_2O_3)对制造熔融衍生生物活性玻璃力学性能的影响

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Bioactive glass (BG) is advance materials that have the ability to form hydroxyapatite layer (HA) that accelerate bonding between bone tissues indicating a good biological response. However, BG fabricated with basic composition from SiO_2-CaO-Na_2O-P_2O_5 system exhibit lower mechanical strength.The present work aims to study the effects on alumina (AI_2O_3) addition in SiO_2-CaO-Na_2o-P_2O_5 system towards its mechanical performance. Bioactive glass (BG) was fabricated through melt-derived route. Various amount of alumina at (1 wt%, 2 wt%, 3 wt% and 4 wt%) was added in the system. BG with 2 wt% of alumina addition show highest compressive strength and significant improvement observed after sintered at 750°C and 950°C. XRD revealed the existence of crystalline peaks after the glass was sintered that might assist on the mechanical improvement. SEM shows reduction on porosity and enhancement on grain size for sintered bioactive glass.
机译:生物活性玻璃(BG)是前进材料,其能够形成羟基磷灰石层(HA),其加速骨组织之间的粘合,所述骨组织表示良好的生物反应。然而,由SiO_2-CAO-NA_2O-P_2O_5系统制造的BG具有较低的机械强度。目前的作品旨在研究SiO_2-CAO-NA_2O-P_2O_5系统对其机械性能的影响对氧化铝(AI_2O_3)的作用。通过熔融衍生的途径制造生物活性玻璃(BG)。在系统中加入各种量的氧化铝(1wt%,2wt%,3wt%和4wt%)。 BG具有2wt%的氧化铝添加显示在750℃和950℃下烧结后观察到的最高抗压强度和显着的改善。 XRD揭示了玻璃烧结后的结晶峰的存在,这可能有助于机械改善。 SEM显示孔隙率和增强烧结生物活性玻璃的粒度。

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