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Carbonated Hydroxyapatite-Based Honeycomb Scaffold Coatings on a Titanium Alloy for Bone Implant Application—Physicochemical and Mechanical Properties Analysis

机译:基于碳酸羟基磷灰石的蜂窝状硅胶涂层钛合金用于骨植入物施用物理化学和机械性能分析

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In this work, carbonated hydroxyapatite (CHA) based on abalone mussel shells (Haliotis asinina) is synthesized using the co-precipitation method. The synthesized CHA was mixed with honeycomb (HCB) 40 wt.% for the scaffold fabrication process. CHA and scaffold CHA/HCB 40 wt.% were used for coating a Titanium (Ti) alloy using the electrophoretic deposition dip coating (EP2D) method with immersion times of 10, 20, and 30 min. The synthesized B-type CHA with a stirring time of 45 min could have lower transmittance values and smaller crystallite size. Energy dispersive X-ray spectroscopy (EDS) showed that the Ca/P molar ratio was 1.79. The scaffold CHA/HCB 40 wt.% had macropore size, micropore size, and porosity of 102.02 ± 9.88 μm, 1.08 ± 0.086 μm, and 66.36%, respectively, and therefore it can also be applied in the coating process for bone implant applications due to the potential scaffold for bone growth. Thus, it has the potential for coating on Ti alloy applications. In this study, the compressive strength for all immersion time variations was about 54–83 MPa. The average compression strengths of human cancellous bone were about 0.2–80 MPa. The thickness obtained was in accordance with the thickness parameters required for a coating of 50–200 μm.
机译:在这项工作中,使用共沉淀法合成基于鲍鱼贻贝壳(Haliotis Asinina)的碳酸羟基磷灰石(CHA)。将合成的CHA与蜂窝状(HCB)40重量%混合。支架制造过程的%。 CHA和支架CHA / HCB 40重量%用于使用电泳沉积浸涂(EP2D)方法涂覆钛(TI)合金,其中浸入量为10,20和30分钟。搅拌时间为45分钟的合成的B型CHA可具有较低的透射率值和较小的微晶尺寸。能量分散X射线光谱(EDS)显示Ca / P摩尔比为1.79。支架CHA / HCB 40重量%具有大孔尺寸,微孔尺寸和孔隙率,分别为102.02±9.88μm,1.08±0.086μm和66.36%,因此也可以应用于骨植入应用的涂布过程中由于骨骼生长的潜在支架。因此,它具有涂层对Ti合金应用的可能性。在该研究中,所有浸没时间变化的抗压强度约为54-83MPa。人松质骨的平均压缩强度约为0.2-80MPa。所得到的厚度根据涂层为50-200μm所需的厚度参数。

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