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Preparation and properties of biomedical porous titanium alloys by gelcasting

机译:凝胶浇铸法制备生物医学多孔钛合金及其性能

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Porous titanium alloys have been prepared by gelcasting in this study. The elastic solid green body was first polymerized and then vacuum sintered to porous titanium alloys with low contamination by controlling sintering conditions. The microstructure and the total porosity of the vacuum sintered porous Ti-Co and Ti-Mo alloys were analyzed by using scanning electron microscopy and x-ray diffraction. Moreover, compression and bending tests were conducted to investigate their mechanical properties. The results show that open and closed three-dimensional pore morphologies and total porosity ranging from 38.34% to 58.32% can be achieved. In contrast to porous Ti by gelcasting, the compression and bending strengths of porous titanium alloys were significantly increased by adding Mo and Co with Young's modulus ranging between 7-25 GPa, which is close to that of human cortical bone, therefore being suited for potential application in load-bearing implants.
机译:在这项研究中,已经通过凝胶铸造制备了多孔钛合金。首先聚合弹性固体生坯,然后通过控制烧结条件将其真空烧结成低污染的多孔钛合金。利用扫描电子显微镜和X射线衍射分析了真空烧结多孔Ti-Co和Ti-Mo合金的显微组织和总孔隙率。此外,进行了压缩和弯曲测试以研究其机械性能。结果表明,可以实现开孔和闭孔的三维孔隙形态,总孔隙率在38.34%至58.32%之间。与通过凝胶浇铸形成的多孔Ti相比,通过添加杨氏模量在7-25 GPa之间的Mo和Co可以显着提高多孔钛合金的抗压强度和弯曲强度,因此与人的皮质骨相近,因此很适合在承重植入物中的应用。

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