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Mechanical behaviour of additively manufactured bioactive glass/high density polyethylene composites

机译:含有碱性制造的生物活性玻璃/高密度聚乙烯复合材料的力学行为

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摘要

Bioactive glass (BAG) is a well-known biomaterial that can form a strong bond with hard and soft tissues and can also aid in bone regeneration. In this study, BAG is added to a polymer to induce bioactivity and to realize fused filament fabrication (FFF) based printing of polymer composites for potential orthopaedic implant applications. BAG (5, 10, and 20 wt%) is melt compounded with high density polyethylene (HDPE) and subsequently extruded into feedstock filament for FFF-printing. Tensile tests on developed filaments reveal that they are stiff enough to resist forces exerted during the printing process. Micrography of printed HDPE/BAG reveals perfect diffusion of raster interface indicating proper selection of printing parameters. Micrography of freeze fractured prints shows the homogeneous distribution and good dispersion of filler across the matrix. The tensile, flexural, and compressive modulus of FFF-printed HDPE/BAG parts increases with filler addition. BAG addition to the HDPE matrix enhances flexural and compressive strength. The tensile and flexural behaviour of FFF-prints is comparable to injection molded counterparts. Property maps exhibit the merits of present study over the existing literature pertaining to desired bone properties and polymer composites used in biomedical applications. It is envisioned that the development of HDPE/BAG composites for FFF-printing can lead to possible orthopaedic implants and scaffolds to mimic the bone properties in customised anatomical sites or injuries.
机译:生物活性玻璃(袋)是一种众所周知的生物材料,可形成硬组织和软组织的强键,也可以帮助骨再生。在该研究中,将袋子添加到聚合物中以诱导生物活性,并实现基于熔融的灯丝制造(FFF)的聚合物复合材料的印刷,用于潜在的整形外科植入物应用。袋(5,10和20wt%)用高密度聚乙烯(HDPE)混合并随后挤出成FFF印刷的原料丝状。在发达的长丝上的拉伸试验显示它们足以抵抗在印刷过程中施加的力。印刷HDPE /包的显微镜显示光栅界面的完美扩散,指示正确选择打印参数。冻结碎裂的显微镜显示均匀分布和填料跨越基质的良好分散。 FFF印刷HDPE /袋零件的拉伸,弯曲和压缩模量随填充剂增加而增加。除了HDPE基质的袋子增强了弯曲和抗压强度。 FFF-PRINTS的拉伸和弯曲行为与注塑对应物相当。属性图表现出对存在于生物医学应用中所使用的所需骨性质和聚合物复合材料的现有文献的现有文献的优点。设想,用于FFF-Printing的HDPE /袋复合材料的开发可导致可能的矫形植入物和支架,以模仿定制的解剖部位或伤害中的骨骼性质。

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