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首页> 外文期刊>Bioceramics Development and Applications >Zirconia Effect on the Bioactivity and the Mechanical Properties of Calcium Magnesium Silicate Ceramics at (CaO+MgO)/SiO2 Molar Ratio Close to Unity
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Zirconia Effect on the Bioactivity and the Mechanical Properties of Calcium Magnesium Silicate Ceramics at (CaO+MgO)/SiO2 Molar Ratio Close to Unity

机译:氧化锆对(CaO + MgO)/ SiO2摩尔比接近整体的硅酸钙镁陶瓷的生物活性和力学性能的影响

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New ceramic composites from calcia-magnesia-silica system at a molar ratio of (CaO-MgO)/SiO2 closes to the unity and the addition of different amounts of zirconia (5 wt %, 15 wt % and 25 wt %) have been investigated. These systems powders were formed and fired at 1310 ± 20°C for 2 hr. Phase composition, microstructure, physical and mechanical properties of these composites were determined. The in-vitro bioactivities of these sintered composites were investigated by analysis of their ability for the formation of hydroxyapatite (HA) using SEM-EDS after their soaking in the simulated body fluid (SBF) for 7 days. The findings indicated that beginning of HA formation on the surface of all investigated composites. However, the composite containing 5 wt % ZrO2 gave clear tendency toward the formation-ability of HA typical to cauliflower morphology. The mechanical properties of the promised bioactive composite in term of Vickers hardness and fracture toughness were ~3 Gpa and ~2 Mpa. m1/2, respectively. The ceramic composite containing 5 wt % ZrO2 might be nominated to be implanted material because their property is quite similar to the properties of human cortical bone.
机译:(CaO-MgO)/ SiO2摩尔比接近于氧化钙-镁-硅石体系的新型陶瓷复合材料,并研究了添加不同量的氧化锆(5 wt%,15 wt%和25 wt%) 。形成这些体系的粉末,并在1310±20°C下烧制2小时。确定了这些复合材料的相组成,微观结构,物理和机械性能。通过将其浸入模拟体液(SBF)中7天后,使用SEM-EDS分析其烧结羟磷灰石(HA)的能力,研究了这些烧结复合材料的体外生物活性。这些发现表明在所有研究的复合材料表面都开始形成HA。然而,含有5重量%的ZrO 2的复合物对花椰菜形态典型的HA的形成能力具有明显的趋势。就维氏硬度和断裂韧性而言,预期的生物活性复合材料的机械性能为〜3 Gpa和〜2 Mpa。分别为m1 / 2。包含5 wt%ZrO2的陶瓷复合材料可能被提名为植入材料,因为它们的性质与人类皮质骨的性质非常相似。

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