首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Reinforcing 13-93 bioglass scaffolds fabricated by pressureless spark plasma sintering with graphene robocasting and oxide
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Reinforcing 13-93 bioglass scaffolds fabricated by pressureless spark plasma sintering with graphene robocasting and oxide

机译:通过用石墨烯抢劫和氧化物,通过无压火花等离子体烧结制造的13-93生物胶囊支架

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摘要

13-93 bioglass (BG) scaffolds reinforced with graphene oxide (GO) were fabricated by robocasting (direct-ink-writing) technique. Composite scaffolds with 0-4 vol% content of GO platelets were printed, and then consolidated by pressureless spark plasma sintering at 650 degrees C. It was found that, despite hampering densification of the bioglass, the addition of GO platelets up to a certain content enhanced the mechanical performance of the 13-93 bioglass scaffolds in terms of strength and, especially, toughness. Best performance was obtained for 2 vol. % GO, which increased strain energy density (toughness) of the scaffolds by similar to 894%, and their compressive strength by similar to 26%. At higher contents, agglomeration of the nanoplatelets and increased porosity significantly reduced the mechanical enhancement obtained. Implications of the results on the fabrication of novel bioglass scaffolds that may find use in load-bearing bone tissue engineering applications are discussed.
机译:通过抢劫(直接油墨写入)技术制造了用石墨烯(GO)加强的BIGOGLASS(BG)支架。 印刷具有0-4体积血小板血小板的复合支架,然后在650℃下通过无气火花血浆烧结固结。尽管妨碍了生物制品的致密化,但是将血小板添加到某种内容上 在强度和尤其是韧性方面,增强了13-93个生物胶质支架的机械性能。 获得了2卷的最佳性能。 %Go,通过类似于894%的支架的应变能密度(韧性)增加,其抗压强度与26%相似。 在较高的含量下,纳米孔的附聚和增加的孔隙率显着降低了所获得的机械增强。 结果讨论了结果对可以找到用于承载骨组织工程应用中的新型生物制剂支架的制造的影响。

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