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首页> 外文期刊>Science of sintering >Nano Pores Evolution in Hydroxyapatite Microsphere during Spark Plasma Sintering
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Nano Pores Evolution in Hydroxyapatite Microsphere during Spark Plasma Sintering

机译:等离子烧结过程中羟基磷灰石微球中的纳米孔演化

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摘要

Micron-spherical granules of hydroxyapatite (HAp) nanoparticles were prepared by powder granulation methods. Through subsequent sintering, porous HAp microspheres with tailored pore and grain framework structures were obtained. Detailed microstructure investigation by SEM and TEM revealed the correlation of the pore structure and the necking strength with the sintering profiles that determine the coalescence features of the nanoparticles. The partially sintered porous HAp microspheres containing more than 50% porosity consisting of pores and grains both in nano-scale are active in inducing the precipitation of HAp in simulated body fluid. The nano-porous HAp microspheres with an extensive surface and interconnecting pores thus demonstrate the potential of stimulating the formation of collagen and bone and the integration with the newly formed bones during physiological bone remodeling.
机译:通过粉末造粒方法制备了羟基磷灰石(HAp)纳米颗粒的微米球形颗粒。通过随后的烧结,获得具有定制的孔和晶粒框架结构的多孔HAp微球。通过SEM和TEM进行的详细的微观结构研究显示,孔结构和颈缩强度与确定纳米颗粒聚结特征的烧结曲线之间的相关性。由纳米级的孔和晶粒组成的,孔隙率大于50%的部分烧结的多孔HAp微球在诱导HAp在模拟体液中的沉淀方面具有活性。具有广泛的表面和相互连接的孔的纳米多孔HAp微球因此证明了在生理性骨骼重塑期间刺激胶原蛋白和骨骼形成以及与新形成的骨骼整合的潜力。

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