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Sintering of porous hydroxyapatite implant prepared with hybrid fabrication routes

机译:混合制备方法制备的多孔羟基磷灰石植入物的烧结

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Porous hydroxyapatite sintered samples possesses suitable chemical, physical and mechanical properties were successfully prepared using combining forming techniques. Starch consolidation (using native potato starch) and pore forming (using hydrogen peroxide) techniques were applied in this concern. The chemical, physical and mechanical properties of the consolidated samples after sintering were studied. The chemical properties of the sintered samples in terms of phase analysis using XRD and FT-IR analysis proves that, while, both potato starch and sintering temperature influence the phase composition of the final sintered samples the hydrogen peroxide addition not show any effect. A hydrogen peroxide amount was found to have a tremendous effect on both physical and mechanical properties of the final sintered samples. The apparent porosity was found to highly increase from ~25% to ~ 70% with increasing the hydrogen peroxide amount from 0 to 5 wt.%, respectively. While, the pore size distributionwas found to be highly changed frommono-modal tomultimodal type with increasing peroxide amount from0 to 5 wt.%, respectively. On the other hand, the compressive strength of the final sintered samples was found to be highly retarded with increasing peroxide amount. For porous samples having higher porosity (with 5 wt.%H2O2 addition), beside, it shows a suitable porosity and pore size distribution, it was found to possess a reasonable compressive strength for being applied as implant.
机译:采用组合成型技术成功制备了具有合适的化学,物理和机械性能的多孔羟基磷灰石烧结样品。淀粉固结(使用天然马铃薯淀粉)和造孔(使用过氧化氢)技术被用于解决这一问题。研究了烧结后固结样品的化学,物理和机械性能。使用XRD和FT-IR分析进行相分析的烧结样品的化学性质证明,虽然马铃薯淀粉和烧结温度均影响最终烧结样品的相组成,但是过氧化氢的添加没有显示任何作用。发现过氧化氢的量对最终烧结样品的物理和机械性能都有巨大影响。发现随着过氧化氢量分别从0重量%增加到5重量%,表观孔隙率从〜25%高度增加到〜70%。同时,发现孔径分布从单峰型到多峰型发生了很大的变化,过氧化物的量分别从0到5%(重量)增加。另一方面,发现最终的烧结样品的抗压强度随着过氧化物量的增加而大大降低。另外,对于具有较高孔隙率(添加5重量%H 2 O 2)的多孔样品,它显示出合适的孔隙率和孔径分布,发现具有合理的抗压强度,可以用作植入物。

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