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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Extra low interstitial titanium based fully porous morphological bone scaffolds manufactured using selective laser melting
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Extra low interstitial titanium based fully porous morphological bone scaffolds manufactured using selective laser melting

机译:基于额外的低间质钛的全多孔形态骨支架,使用选择性激光熔化制造

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Lattice structure based morphologically matched scaffolds is rapidly growing facilitated by developments in Additive Manufacturing. These porous structures are particularly promising due to their potential in reducing stress shielding and maladapted stress concentration. Accordingly, this study presents Extra Low Interstitial (ELI) Titanium alloy based morphological scaffolds featuring three different porous architecture. All scaffolds were additively manufactured using Selective Laser Melting from Ti-6Al-4V ELI with porosities of 73.85, 60.53 and 55.26% with the global geometry dictated through X-Ray Computed Tomography. The elastic and plastic performance of both the scaffold prototypes and the bone section being replaced were evaluated through uniaxial compression testing. Comparing the data, the suitability of the Maxwell criterion in evaluating the stiffness behaviour of fully porous morphological scaffolds are carried out. The outcomes show that the best performing scaffolds presented in this study have high strength (169 MPa) and low stiffness (5.09 GPa) suitable to minimise stress shielding. The matching morphology in addition to high porosity allow adequate space for flow circulation and has the potential to reduce maladapted stress concentration. Finally, the Electron Diffraction X-ray analysis revealed a small difference in the composition of aluminium between the particle and the bonding material at the scaffold surface.
机译:基于格子结构的形态匹配的支架是通过添加剂制造的发展促进的快速增长。由于其降低应力屏蔽和不适的应力浓度的可能性,这些多孔结构特别有希望。因此,本研究提出了三种不同多孔建筑以三种不同多孔结构的基于低间质(ELI)钛合金的形态脚手架。使用从Ti-6Al-4V ELI的选择性激光熔化,孔隙率为73.85,60.53和55.26%的选择性激光,通过X射线计算断层扫描的全局几何形状,所有支架都是含量的。通过单轴压缩测试评估脚手架原型和被替换的骨段的弹性和塑性性能。比较数据,进行了麦克斯韦尔标准在评估完全多孔形态支架的刚度行为方面的适用性。结果表明,该研究中呈现的最佳性能支架具有高强度(169MPa)和适合于最小化应力屏蔽的低刚度(5.09GPa)。匹配形态除了高孔隙率之外还允许流动循环的足够空间,并且有可能降低不适的应力浓度。最后,电子衍射X射线分析显示颗粒与支架表面上的粘合材料之间的铝的组成小差异。

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