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烧结温度对 α-磷酸三钙泡沫物理和组成性质的影响。

Effects of sintering temperature on physical and compositional properties of alpha-tricalcium phosphate foam.

机构信息

Department of Biomaterials, Faculty of Dental Science, Kyushu University, Higashiku, Fukuoka, Japan.

出版信息

Dent Mater J. 2010 Mar;29(2):154-9. doi: 10.4012/dmj.2009-079.

Abstract

Effects of sintering temperature on the physical and compositional properties of alpha-TCP foam fabricated using the polyurethane foam method were examined. When a polyurethane foam coated with alpha-TCP slurry was sintered at 1,400-1,550 degrees C, alpha-TCP foam having basically the same fully interconnected porous structure was produced although shrinkage occurred with increasing sintering temperature. On porosity of the alpha-TCP foam, a higher foam porosity of 95% was obtained when sintered at 1,400 degrees C as compared to the 90% porosity obtained at a higher sintering temperature of 1,550 degrees C. Further, at 1,500 degrees C or higher temperature, frame became dense with disappearance of micropores. On compressive strength, it increased from approximately 50 to 250 kPa when sintering temperature was increased from 1,400 to 1,550 degrees C. Nonetheless, no compositional changes were observed even when the alpha-TCP foam was cooled in the furnace without quenching process. In light of the results obtained, it was concluded that alpha-TCP foam fabricated using the polyurethane method was useful as a bone substitute and/or scaffolding material for tissue engineering. Besides, alpha-TCP foam could be useful as a precursor for the fabrication of other calcium phosphate foams.

摘要

采用聚氨酯泡沫法制备的 α-TCP 泡沫的烧结温度对其物理和组成性能的影响进行了研究。当涂覆有 α-TCP 浆料的聚氨酯泡沫在 1400-1550°C 下烧结时,尽管随着烧结温度的升高发生了收缩,但仍产生了基本上具有相同的完全连通多孔结构的 α-TCP 泡沫。对于 α-TCP 泡沫的孔隙率,在 1400°C 下烧结时获得了 95%的更高泡沫孔隙率,而在更高的 1550°C 烧结温度下仅获得 90%的孔隙率。此外,在 1500°C 或更高的温度下,随着微孔的消失,骨架变得致密。在抗压强度方面,当烧结温度从 1400°C 升高到 1550°C 时,它从大约 50kPa 增加到 250kPa。尽管如此,即使在没有淬火过程的情况下将 α-TCP 泡沫在炉中冷却,也没有观察到组成变化。根据获得的结果,可以得出结论,采用聚氨酯法制备的 α-TCP 泡沫可用作组织工程的骨替代物和/或支架材料。此外,α-TCP 泡沫可用作制造其他磷酸钙泡沫的前体。

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