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首页> 外文期刊>Journal of biomaterials and tissue engineering >Porous Hydroxyapatite/Strontium Oxide Composite Ceramic Preparation and Properties of Biomaterials
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Porous Hydroxyapatite/Strontium Oxide Composite Ceramic Preparation and Properties of Biomaterials

机译:多孔羟基磷灰石/氧化锶复合陶瓷制备及生物材料的性质

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Objective: This study aims to added strontium to hydroxyapatite (HA) through physical means and prepare porous composite ceramic materials with good mechanical properties to further improve the osteogenesis-inducing effect of bone repairing materials. Methods: The composite powders of strontium oxide/hydroxyapatite (SrO/HA) was obtained by mechanical milling. Then, porous SrO/HA composite ceramics were prepared by spark plasma sintering. The composition, structure and morphology of these porous composite ceramic materials were characterized using X-ray diffraction and scanning electron microscope, and the porosity and mechanical properties were tested. Results: Porous composite ceramic materials with clear composition were prepared, and obvious porous structures were observed. Conclusion: After ball milling, a replacement reaction occurred in the prepared porous SrO/HA composite powder with different SrO contents, part of Ca2+ in HA (Ca-10[PO4](6)[OH](2)) was replaced by Sr2+, and merely a small amount of powder underwent decomposition during sintering at 1,100 degrees C. Under an electron microscope, the pore characteristics of the composite ceramic materials were obvious, the distribution was uniform, and the connectivity was good. The compressive strengths of these materials ranged within 2-8 MPa. This shows that the strontium element can also be doped by physical means, and that the obtained porous SrO/HA composite ceramic material has good pore characteristics and good application potential in bone repair.
机译:目的:本研究旨在通过物理手段将锶添加到羟基磷灰石(HA)中,并制备具有良好机械性能的多孔复合陶瓷材料,以进一步改善骨修复材料的成骨诱导效应。方法:通过机械研磨获得氧化锶/羟基磷灰石(SrO / HA)的复合粉末。然后,通过火花等离子体烧结制备多孔SrO / HA复合陶瓷。使用X射线衍射和扫描电子显微镜表征这些多孔复合陶瓷材料的组成,结构和形态,并测试孔隙率和机械性能。结果:制备具有澄清组合物的多孔复合陶瓷材料,观察到明显的多孔结构。结论:在球磨后,在具有不同SrO含量的制备的多孔SrO / HA复合粉末中发生替代反应,其中Ca2 +中的一部分(Ca-10 [PO4](6)[OH](2))被SR2 +取代,并且仅仅少量粉末在烧结期间在1,100摄氏度下烧结过程中的分解。在电子显微镜下,复合陶瓷材料的孔隙特性显而易见,分布均匀,连接性好。这些材料的抗压强度范围在2-8MPa内。这表明锶元素也可以通过物理手段掺杂,并且所获得的多孔SrO / HA复合陶瓷材料具有良好的孔隙特性和骨骼修复中的良好应用潜力。

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