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Design and Printing Parameters Effect on PLA Fused Filament Fabrication Scaffolds

机译:设计和印刷参数对PLA融合灯丝制造支架的影响

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The Fused Filament Fabrication technique was used to build PLA scaffolds for bone tissue replacement. Scaffolds with 100% interconnectivity were fabricated using different printing parameters and geometry design. Two temperature values and two extrusion speeds were combined with two different layer thicknesses. The influence of these parameters upon produced scaffold morphology and compressive mechanical properties was assessed. Afterwards, two different geometries were fabricated considering only the best performing parameters, to assess the influence of the main and lateral pores dimension on scaffolds mechanical properties. Specimen morphology was analysed by scanning electron microscopy, to assess the geometrical quality of the produced parts. It was verified that the higher tested temperatures combined with the lower printing speeds increased the overall mechanical strength of produced scaffolds. Low temperatures and high printing speeds were found to limit the amount of material possible to be extruded due to viscosity issues, and introduced scaffold defects. Creating staggered scaffolds with offsets between layers, decreased the resulting scaffold mechanical performance.
机译:熔融灯丝制造技术用于构建骨组织替代的PLA支架。使用不同的印刷参数和几何设计制造具有100%互连的支架。两个温度值和两个挤出速度与两个不同的层厚度相结合。评估了这些参数对生产支架形态和压缩力学性能的影响。之后,仅考虑了两种不同的几何形状,仅考虑了最佳性能的参数,以评估主孔尺寸对支架机械性能的影响。通过扫描电子显微镜分析样品形态,以评估所产生的部件的几何质量。验证,较高的测试温度与下印刷速度相结合,增加了生产的支架的总机械强度。发现低温和高印刷速度限制可能由于粘度问题而挤出的材料量,并引入了支架缺陷。在层之间的偏移产生交错的脚手架,降低了所产生的脚手架机械性能。

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