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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >In situ elaboration of a binary Ti-26Nb alloy by selective laser melting of elemental titanium and niobium mixed powders
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In situ elaboration of a binary Ti-26Nb alloy by selective laser melting of elemental titanium and niobium mixed powders

机译:通过选择性激光熔化元素钛和铌混合粉末原位加工二元Ti-26Nb合金

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摘要

Ti-Nb alloys are excellent candidates for biomedical applications such as implantology and joint replacement because of their very low elastic modulus, their excellent biocompatibility and their high strength. A low elastic modulus, close to that of the cortical bone minimizes the stress shielding effect that appears subsequent to the insertion of an implant. The objective of this study is to investigate the microstructural and mechanical properties of a Ti-Nb alloy elaborated by selective laser melting on powder bed of a mixture of Ti and Nb elemental powders (26 at%). The influence of operating parameters on porosity of manufactured samples and on efficacy of dissolving Nb particles in Ti was studied. The results obtained by optical microscopy, SEM analysis and X-ray microtomography show that the laser energy has a significant effect on the compactness and homogeneity of the manufactured parts. Homogeneous and compact samples were obtained for high energy levels. Microstructure of these samples has been further characterized. Their mechanical properties were assessed by ultrasonic measures and the Young's modulus found is close to that of classically elaborated Ti-26Nb ingot. (C) 2016 Elsevier B.V. All rights reserved.
机译:Ti-Nb合金具有极低的弹性模量,出色的生物相容性和高强度,因此是生物医学应用(例如移植术和关节置换术)的极佳候选者。接近皮质骨的低弹性模量可最大程度减少植入植入物后出现的应力屏蔽效果。这项研究的目的是研究通过在Ti和Nb元素粉末(26 at%)的混合物的粉末床上进行选择性激光熔化而制成的Ti-Nb合金的显微组织和力学性能。研究了操作参数对制成样品的孔隙率以及将Nb颗粒溶解在Ti中的功效的影响。通过光学显微镜,SEM分析和X射线显微照相术获得的结果表明,激光能量对所制造零件的紧凑性和均匀性具有重要影响。获得高能量水平的均质且致密的样品。这些样品的微观结构已得到进一步表征。通过超声测量评估了它们的机械性能,发现的杨氏模量接近于经典加工的Ti-26Nb铸锭。 (C)2016 Elsevier B.V.保留所有权利。

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