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Impact of Particle Size of Ceramic Granule Blends on Mechanical Strength and Porosity of 3D Printed Scaffolds

机译:陶瓷颗粒共混物的粒径对3D打印支架的机械强度和孔隙率的影响

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摘要

3D printing is a promising method for the fabrication of scaffolds in the field of bone tissue engineering. To date, the mechanical strength of 3D printed ceramic scaffolds is not sufficient for a variety of applications in the reconstructive surgery. Mechanical strength is directly in relation with the porosity of the 3D printed scaffolds. The porosity is directly influenced by particle size and particle-size distribution of the raw material. To investigate this impact, a hydroxyapatite granule blend with a wide particle size distribution was fractioned by sieving. The specific fractions and bimodal mixtures of the sieved granule blend were used to 3D print specimens. It has been shown that an optimized arrangement of fractions with large and small particles can provide 3D printed specimens with good mechanical strength due to a higher packing density. An increase of mechanical strength can possibly expand the application area of 3D printed hydroxyapatite scaffolds.
机译:3D打印是在骨组织工程领域中制造支架的有前途的方法。迄今为止,3D打印陶瓷支架的机械强度不足以用于重建手术中的各种应用。机械强度与3D打印支架的孔隙率直接相关。孔隙率直接受到原料的粒径和粒径分布的影响。为了研究这种影响,通过筛分将具有宽粒度分布的羟基磷灰石颗粒共混物分级分离。筛分的颗粒混合物的特定级分和双峰混合物用于3D打印样品。已经显示,由于具有较高的堆积密度,具有大颗粒和小颗粒的馏分的优化布置可以为3D打印样品提供良好的机械强度。机械强度的增加可能会扩大3D打印的羟基磷灰石支架的应用范围。

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