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Preparation of hydroxyapatite-based composites by colloidal process

机译:胶体工艺制备羟基磷灰石基复合材料

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Hydroxyapatite (HAp)-based bioceramics composed of HAp, calcium-deficient hydroxyapatite (DAp) and alpha-tricalcium phosphate (alpha-TCP) were prepared by colloidal process. The HAp-based composites consist of two layers: one is composed of dense HAp-40 mass% DAp composite with high strength, the other porous HAp-40 mass% a-TCP with good biocompatibility. Dense HAp/DAp composite was obtained by suitable colloidal process followed by hot pressing. Microstructure and bending strength of HAp/DAp composite depended strongly on quantity of polymer dispersant in the colloidal process. The good dispersion of HAp and DAp powder at an optimum quantity of dispersant resulted in high relative density of HAp/DAp composite with homogeneous microstructure. Moreover, HAp/DAp composite was found to exhibit higher bending strength than stoichiometric HAp alone. On the other hand, porous HAp/a-TCP composite was prepared by mixing polymeric powder which was burned out during sintering. The porosity of the composite could be easily controlled by changing the volume fraction of polymeric powder. The bending strengm of HAp/a-TCP composite depended strongly on the porosity; the strength decreased exponentially with increasing the porosity. The mixture of dense HAp/DAp and porous HAp/a-TCP is expected to result in high strength and good biocompatibility of the composites.
机译:通过胶体方法制备由HAP,缺乏羟基磷灰石(DAP)和α-三磷酸钙(α-TCP)组成的基于羟基磷灰石(HAP)的生物陶瓷。基于HAP基复合材料由两层组成:一个由具有高强度的致密HAP-40质量%DAP复合材料组成,其他多孔HAP-40质量%A-TCP具有良好的生物相容性。通过合适的胶体过程,然后热压获得致密的Hap / Dap复合材料。 HAP / DAP复合材料的微观结构和弯曲强度依赖于胶体过程中的聚合物分散剂的大量依赖。 Hap和Dap粉末在最佳分散剂下的良好分散,导致HAP / DAP复合材料的高相对密度具有均匀的微观结构。此外,发现HAP / DAP复合材料与单独的化学计量HAP表现出更高的弯曲强度。另一方面,通过混合在烧结期间烧坏的聚合物粉末制备多孔HAP / A-TCP复合物。通过改变聚合物粉末的体积分数,可以容易地控制复合材料的孔隙率。 HAP / A-TCP复合材料的弯曲稳定性依赖于孔隙率;随着孔隙率的增加,强度呈指数增长。预期致密HAP / DAP和多孔HAP / A-TCP的混合物导致复合材料的高强度和良好的生物相容性。

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