首页> 外文会议>Solid Freeform Fabrication Symposium Proceedings: Processes, Modeling, Applications, Materials >ACCURACY AND MECHANICAL PROPERTIES OF OPEN-CELL MICROSTRUCTURES FABRICATED BY SELECTIVE LASER SINTERING
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ACCURACY AND MECHANICAL PROPERTIES OF OPEN-CELL MICROSTRUCTURES FABRICATED BY SELECTIVE LASER SINTERING

机译:选择性激光烧结制备的开孔微结构的精度和力学性能

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This paper investigates the applicability of selective laser sintering (SLS) for the manufacture of scaffold geometries for bone tissue engineering applications. Porous scaffold geometries with open-cell structure and relative density of 10-60 v% were computationally designed and fabricated by selective laser sintering using polyamide powder. Strut and pore sizes ranging from 0.4 - 1 mm and 1.2 -2 mm are explored. The effect of process parameters on compressive properties and accuracy of scaffolds was examined and outline laser power and scan spacing were identified as significant factors. In general, the designed scaffold geometry was not accurately fabricated on the micron-scale. The smallest successfully fabricated strut and pore size was 0.4 mm and 1.2 mm, respectively. It was found that selective laser sintering has the potential to fabricate hard tissue engineering scaffolds. However the technology is not able to replicate exact geometries on the micron-scale but by accounting for errors resulting from the diameter of the laser and from the manufacturing induced geometrical deformations in different building directions, the exact dimensions of the manufactured scaffolds can be predicted and controlled indirectly, which corresponds favorably with its application in computer aided tissue engineering.
机译:本文研究了选择性激光烧结(SLS)在制造用于骨组织工程应用的支架几何结构中的适用性。通过使用聚酰胺粉末的选择性激光烧结,通过计算设计和制造了具有开孔结构和相对密度为10-60 v%的多孔支架几何形状。探究了支杆和孔径在0.4-1 mm和1.2 -2 mm之间的孔。检查了工艺参数对支架的压缩性能和准确性的影响,并确定了轮廓激光功率和扫描间距是重要因素。通常,所设计的支架几何形状不能在微米级上精确地制造。成功制造的最小支柱和孔径分别为0.4毫米和1.2毫米。发现选择性激光烧结具有制造硬组织工程支架的潜力。然而,该技术不能复制微米级的精确几何形状,而是通过考虑由激光直径和制造引起的沿不同建筑方向的几何变形引起的误差,可以预测制造的支架的确切尺寸并间接控制,这与其在计算机辅助组织工程中的应用是相称的。

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