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Mechanical properties of graded scaffolds developed by curve interference coupled with selective laser sintering

机译:通过曲线干扰开发的渐变支架的机械性能与选择性激光烧结相连

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摘要

In bone tissue engineering, a scaffold requires not only facilitating cell activity but also providing adequate mechanical support. One feasible approach to ensure it is to use modeling tools to design such a scaffold which is then built by additive manufacturing. In this study, curve interference was introduced to design porous scaffolds with gradient structures based on three lattice units (cubical, circular and spherical) which were then manufactured by selective laser sintering (SLS) with PA12/HA material. The mechanical properties of both uniform and graded porous scaffolds were analyzed based on numerical and experimental tests. The results show that the uniform cubical-pore scaffold as well as the gradient spherical-pore scaffold has the optimal mechanical property. Further, uniform and graded scaffolds exhibit distinct failure mechanism. The graded scaffold has a layer-by-layer failure feature while each layer of the uniform structure almost has the same degree of deformation. Additionally, the comparison between the numerical and experimental results shows a good agreement, validating that the proposed curve interference method coupled with SLS technology is suitable for implementing the design of scaffolds following expected performance.
机译:在骨组织工程中,支架不仅需要促进细胞活动,而且还提供足够的机械支撑。一种可行的方法,以确保使用建模工具来设计这种脚手架,然后由添加剂制造构造。在该研究中,引入曲线干扰以设计具有基于三个晶格单元(立方体,圆形和球形)的梯度结构的多孔支架,然后通过选择性激光烧结(SLS)与PA12 / HA材料制造。基于数值和实验试验分析了均匀和分级多孔支架的机械性能。结果表明,均匀的立方体孔支架以及梯度球形孔支架具有最佳的机械性能。此外,均匀和分级支架表现出明显的失效机制。渐变的支架具有逐层故障特征,而均匀结构的每层几乎具有相同程度的变形。另外,数值和实验结果之间的比较表现出良好的一致性,验证耦合与SLS技术的所提出的曲线干扰方法适用于在预期性能之后实现脚手架的设计。

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