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Evaluation of bioglass~circleR- and hydroxyapatite-reinforced polyethylene composites after ageing in simulated body fluid

机译:模拟体液中老化后生物胶剂〜羟基磷灰石增强聚乙烯复合材料的评价

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The effect of ageing in simulated body fluid (SBF) on the mechanical performance of Bioglass~circleR- and hydroxyapatite-(HA) reinforced high density polyethylene (HDPE) composites (Bioglass~circleR/HDPE and HAPEX~(TM), respectively) was studied. A weight increase of 6 to 9percent occurred for the Bioglass~circleR/HDPE composites after 6 months in SBF, but in contrast, the weight increase for HAPEX~(TM) was less than 1percent. As a result of the high reactivity of Bioglass~corcleR/HDPE composites, their tensile strength and Young's modulus decreased after 6 months in SBF, while the fracture strain increased. The reduction in the modulus of Bioglass~circleR/HDPE was less than 2percent for Vp=30percent, but 25percent for Vp=40percent, for which severe degradation of Bioglass~circleR particles was observed. in comparison, there was no decrease in the tensile strength, Young's modulus or fracture strain for HAPEX~(TM) samples.
机译:模拟体液(SBF)衰老对生物胶囊和羟基磷灰石 - (HA)增强的高密度聚乙烯(HDPE)复合材料的机械性能的影响,分别是分别的(生物加工〜CIRCLER / HDPE和HAPEX〜(TM)研究过。在SBF 6个月后,生物胶剂〜圆弧/ HDPE复合材料的重量增加6至9%,但相反,HAPEX〜(TM)的重量增加小于1%。由于生物制剂〜corcler / HDPE复合材料的高反应性,它们的拉伸强度和杨氏模量在SBF中6个月后降低,而断裂菌株增加。 vp = 30平于vp = 30平于vp = 30平分,但vp = 40%的vp = 40%的vp = 40平方,观察到vp = 40平方的25%。相比之下,抗拉强度,杨氏模量或裂缝菌株的抗拉强度没有降低,用于HAPEX〜(TM)样品。

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