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Effect of Sintering Temperature on Mechanical Properties and Microstructure of Sheep-bone Derived Hydroxyapatite (SHA)

机译:烧结温度对羊骨衍生羟基磷灰石(SHA)力学性能和微观结构的影响

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Hydroxyapatite (HA) is currently one of the most attractive materials for human hard tissue implants because its close crystallographic resemblance to bones and teeth, conferring HA with excellent biocompatibilivy. Because of that fact as well as economic and time-saving reasons, we have stressed the need for safe production of HA-powders and ceramics from natural resources, such as animals' bones and teeth, or hydrothermal transformation of shell's aragonite. Nevertheless, the applications of pure HA-ceramics are limited to non load-bearing implants, because of HA's poor mechanical properties. Our research group has dedicated a lot of effort to achieve enhancement of mechanical strength and the fracture toughness of sintered HA-ceramics, mainly with HA-powder of natural origin, by fabricating composite materials of HA doped with various types of biocompatible oxides. This work aims to present that bulk ceramics of pure HA (i.e. with no incorporation of any reinforcing phase), derived from sintered HA-powder obtained from calcinated (at 850°C) bones of sheep (SHA), exhibit the best mechanical properties ever measured for sintered HA ceramics (pure and composites) using naturally (i.e. animal bone) derived HA. The characterization of the new HA-ceramics comprised measurements of density and mechanical properties, namely compressive strength and Vickers microhardness, along with microstructure observation with scanning electron microscopy (SEM). The best mechanical properties were achieved in the samples sintered between 1200°C-1300°C; the highest value of compression strength was achieved after sintering at 1300°C, 180.75 MPa. SEM observations in conjunction with density measurements confirmed the good sintering ability of the SHA-powders to highly condense bulk HA-ceramics.
机译:羟基磷灰石(HA)目前是人类硬组织植入物最具吸引力的材料之一,因为它与骨骼和牙齿紧密结晶相似,赋予HA具有优异的生物相容性。由于这个事实以及经济和节省的原因,我们强调了从自然资源中安全生产Ha-Popders和陶瓷,例如动物的骨骼和牙齿,或壳体的壳体的水热改造。然而,纯HA陶瓷的应用仅限于非承载植入物,因为HA的机械性能差。我们的研究小组专注于努力,通过制造掺杂有各种类型的生物相容性氧化物的HA掺杂的HA粉末,实现烧结HA陶瓷的机械强度和烧结HA-陶瓷的骨折韧性。该工作旨在介绍纯HA的批量陶瓷(即没有掺入任何增强阶段),衍生自煅烧(850℃)的羊(SHA)的骨骼(SHA),表现出最佳的机械性能使用天然(即动物骨)衍生HA的烧结HA陶瓷(纯和复合材料)测量。新的HA陶瓷的表征包括密度和机械性能的测量,即压缩强度和维持器微硬度,以及用扫描电子显微镜(SEM)的微观结构观察。在1200℃-1300℃之间的样品中达到最佳的机械性能;在1300℃,180.75MPa烧结后达到最高的压缩强度值。 SEM观察结合密度测量证实了SHA粉末对高浓度散装HA陶瓷的良好烧结能力。

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