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Effect of B2O3 on mechanical properties of porous natural hydroxyapatite derived from cortical bovine bones sintered at 1,050 degrees C

机译:B2O3对1050℃烧结的皮质牛骨多孔天然羟基磷灰石力学性能的影响。

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摘要

Due to its close physical and chemical properties to the mineral part of bone and teeth, hydroxyapatite (Ca-10(PO4)(6)(OH)(2)) is one of the most attractive materials for human hard-tissue implants. However, its poor mechanical properties are one of the most serious obstacles for wider applications of hydroxyapatite. Optimizing the main parameters controlling a natural hydroxyapatite (NHA) production such as milling techniques, compacting pressure, sintering temperature, holding time and B2O3 additions may lead to better NHA-based bioceramics. Consequently, different percentages of B2O3 (0.5-5.0wt.%) have been added to NHA powders in order to promote densification and to lower the sintering temperature of porous NHA. Afterwards, these powders were uniaxially cold compacted at 75MPa and sintered at 1,050 degrees C for 2h. The porosity ratio was ranged between 27 and 43%. The best Vickers micro-hardness value was 2.1 GPa (using 300g). This value is much higher than those of NHA (0.6-0.9 GPa) prepared using other usual techniques even with foreign oxide additions such as ZrO2. As far as three point bending strength is concerned, a strength of about 57MPa was also obtained using this proposed process. This value is significantly higher than that reported by others (35MPa) using the sol-gel method.
机译:由于羟基磷灰石(Ca-10(PO4)(6)(OH)(2))与骨骼和牙齿的矿物质部分具有接近的物理和化学特性,因此它是用于人类硬组织植入物的最有吸引力的材料之一。然而,其较差的机械性能是羟基磷灰石广泛应用的最严重的障碍之一。优化控制天然羟基磷灰石(NHA)生产的主要参数,例如研磨技术,压实压力,烧结温度,保持时间和B2O3的添加,可能会导致基于NHA的生物陶瓷更好。因此,已将不同百分比的B 2 O 3(0.5-5.0wt。%)添加到NHA粉末中,以促进致密化并降低多孔NHA的烧结温度。然后,将这些粉末在75MPa下单轴冷压并在1,050摄氏度下烧结2小时。孔隙率范围为27%至43%。最佳的维氏显微硬度值为2.1 GPa(使用300g)。该值比使用其他常用技术制备的NHA(0.6-0.9 GPa)还要高,即使添加了外来氧化物,例如ZrO2。就三点弯曲强度而言,使用该提出的方法也获得了约57MPa的强度。该值显着高于其他人使用溶胶-凝胶法报道的值(35MPa)。

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