Hunan Province Key Laboratory of Engineering Rheology, Central South University of Forestry and Technology, Changsha 410004, PR China.
Department of Materials Metallurgy and Chemistry, Jiangxi University of Science and Technology, Ganzhou 341000, PR China.
Mater Sci Eng C Mater Biol Appl. 2020 May;110:110542. doi: 10.1016/j.msec.2019.110542. Epub 2019 Dec 12.
Powder metallurgical (PM) Nb-25Ta-xTi alloys (x = 5, 15, 25, 35 at.%) were fabricated by the elemental powder sintering technology. Effects of alloying elements and annealing treatment on the microstructural evolution and mechanical properties were investigated by conducting various tests, including X-ray diffraction (XRD), scanning electron microscopy (SEM), electron probe microanalyses (EPMA), electron back scattered diffraction detector (EBSD), transmission electron microscopy (TEM) and tensile tests. The results indicated that the alloys showed a unique Nb-rich and Ta-rich dual structure due to the insufficient diffusion between powders. With the increase of Ti content, the β phase was always retained and the alloys exhibited a relatively high density in the range of 82.4% to 90.5%. Furthermore, owing to a higher diffusion coefficient of Ti and the strengthening effect of solid solution, the volume shrinkage and tensile strength both increased along with the increase of Ti content. After the annealing treatment was introduced, the microstructure became more homogeneous and fine equiaxed grains appeared, which induced a decrease in modulus and better ductility. The Nb-25Ta-25Ti alloys exhibited a good in vitro biocompatibility due to the chemical components and the introduce of surface pores. The PM Nb-Ta-Ti alloys were promising for biomedical applications in tissue engineering after evaluated both mechanical properties and in vitro biocompatibility.
采用元素粉末烧结技术制备了粉末冶金(PM)Nb-25Ta-xTi 合金(x=5、15、25、35 原子%)。通过各种测试,包括 X 射线衍射(XRD)、扫描电子显微镜(SEM)、电子探针微分析(EPMA)、背散射电子衍射探测器(EBSD)、透射电子显微镜(TEM)和拉伸试验,研究了合金元素和退火处理对微观结构演变和力学性能的影响。结果表明,由于粉末之间的扩散不足,合金呈现出独特的富 Nb 和富 Ta 的双相结构。随着 Ti 含量的增加,β相始终被保留,合金的密度在 82.4%至 90.5%的范围内保持较高。此外,由于 Ti 的扩散系数较高和固溶强化效应,体积收缩和拉伸强度均随 Ti 含量的增加而增加。引入退火处理后,由于组织结构更加均匀且出现细小等轴晶粒,导致模量降低和延展性提高。由于化学成分和表面多孔的引入,Nb-25Ta-25Ti 合金表现出良好的体外生物相容性。经过机械性能和体外生物相容性评估,PM Nb-Ta-Ti 合金有望在组织工程中用于生物医学应用。