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Effect of saturation and post processing on 3D printed calcium phosphate scaffolds

机译:饱和和后处理对3D印刷磷酸钙支架的影响

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Three dimensional printing was investigated for fabricating hydroxyapatite (HA) and ?-tricalcium phosphate (?-TCP) composite scaffolds using calcium phosphate based ceramics and calcium phosphate cement chemistry. Scaffolds were formed by printing an aqueous sodium phosphate solution on the powder bed consisting of a mixture of dicalcium phosphate anhydrous (DCPA) and calcium hydroxide powders. The sodium phosphate solution was functioning as a binder material and also as the initiator of the wet chemical reaction. Compressive mechanical properties of printed samples were examined as a function of saturation level that was inversely proportional to the powder to liquid ratio. To increase mechanical properties and obtain hydroxyapatite and ?-TCP composites, the printed samples were sintered. The effect of sintering parameters including dwell time and sintering temperature were also examined. X-ray diffraction (XRD) was used to examine material composition at different stages of the manufacturing process and to confirm the presence of HA and ?-TCP in the final stage. The effect of sintering procedure on the surface topology of the samples was examined using scanning electron microscopy (SEM).
机译:研究了使用基于磷酸钙的陶瓷和磷酸钙水泥化学制造羟基磷灰石(HA)和α-磷酸钙(α-TCP)复合支架的三维印刷。通过在粉末床上印刷磷酸钠水溶液组成的磷酸钠溶液,由磷酸二钙无水(DCPA)和氢氧化钙粉末组成的磷酸钠水溶液形成支架。磷酸钠溶液用作粘合剂材料并作为湿化学反应的引发剂。将印刷样品的压缩力学性能作为饱和水平的函数,其与粉末与液体比成反比。为了增加机械性能并获得羟基磷灰石和α-TCP复合材料,烧结印刷样品。还检查了包括停留时间和烧结温度的烧结参数的影响。 X射线衍射(XRD)用于检查制造过程的不同阶段的材料组合物,并在最终阶段确认HA和α-TCP的存在。使用扫描电子显微镜(SEM)检查烧结过程对样品表面拓扑的影响。

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