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Effect of forming condition on compressive strength of hydroxyapatite-bioactive glass compact rod

机译:成型条件对羟基磷灰石生物活性玻璃棒材抗压强度的影响

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With rising concerns regarding alloy implants, alternative biomaterials are currently studied, to avoid the adverse effects of metal on the human body such as irritation and inflammation. Hydroxyapatite (HA) and Bioactive glass (BG) are two bio-ceramics, which have been implemented in medical applications such as bone implants and fixation parts due to their biocompatibility and close resemblance to the mineralized phase of human bone. Furthermore, these materials can be synthesized from natural sources. In this study, M8 screws rod which are commonly implemented for bone fixation was selected as a case study to investigate an effect of forming conditions on the mechanical property of the composite structure. HA and BG were synthesized and formed into a composite specimen using a hydraulic pressing machine. Full factorial experimental design was employed to solve for an optimal forming condition. 3 factors consisting of mixing ratio, pressure and holding time for pressing were investigated for their impacts on the specimen’s compressive strength. The result revealed that the BG ratio and pressure have a significant effect on the structural strength. The maximum compressive strength of 32.20 MPa was obtained from the specimen with 7.5 wt% of BG, 120 kg/cm~(2)of pressure and 30 second of holding time.
机译:随着对合金植入物的日益关注,目前正在研究替代生物材料,以避免金属对人体的不利影响,例如刺激和炎症。羟基磷灰石(HA)和生物活性玻璃(BG)是两种生物陶瓷,由于它们的生物相容性和与人体骨矿化相的相似性,已在医疗应用中实现,例如骨植入物和固定部件。此外,这些材料可以从天然来源合成。在这项研究中,选择了通常用于骨固定的M8螺钉杆作为案例研究,以研究成形条件对复合结构力学性能的影响。 HA和BG被合成并使用液压机形成复合样品。采用全因子实验设计来求解最佳成形条件。研究了混合比,压力和加压保持时间等3个因素对试样抗压强度的影响。结果表明,BG比和压力对结构强度有显着影响。由BG为7.5重量%,压力为120kg / cm〜(2),保持时间为30秒的试样获得最大抗压强度为32.20MPa。

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