Glowka Karsten, Zubko Maciej, Świec Paweł, Prusik Krystian, Szklarska Magdalena, Stróż Danuta
Institute of Materials Engineering, University of Silesia in Katowice, 75 Pułku Piechoty 1A St., 41-500 Chorzów, Poland.
Faculty of Science, Department of Physics, University of Hradec Králové, Rokitanského 62, 500 03 Hradec Králové, Czech Republic.
Materials (Basel). 2024 Jun 4;17(11):2730. doi: 10.3390/ma17112730.
The presented work considers the influence of the hafnium and molybdenum to zirconium ratio of TiTaNb(HfMo)Zr (where x = 0, 5, 10, 15, 20 at.%) high-entropy alloys in an as-cast state for potential biomedical applications. The current research continues with our previous results of hafnium's and molybdenum's influence on a similar chemical composition. In the presented study, the microstructure, selected mechanical properties, and corrosion resistance were investigated. The phase formation thermodynamical calculations were also applied to predict solid solution formation after solidification. The calculations predicted the presence of multi-phase, body-centred cubic phases, confirmed using X-ray diffraction and scanning electron microscopy. The chemical composition analysis showed the segregation of alloying elements. Microhardness measurements revealed a decrease in microhardness with increased zirconium content in the studied alloys. The corrosion resistance was determined in Ringer's solution to be higher than that of commercially applied biomaterials. The comparison of the obtained results with previously reported data is also presented and discussed in the presented study.
本研究工作考虑了TiTaNb(HfMo)Zr(其中x = 0、5、10、15、20原子百分比)高熵合金在铸态下铪与钼对锆的比例对潜在生物医学应用的影响。当前的研究延续了我们之前关于铪和钼对类似化学成分影响的研究结果。在本研究中,对微观结构、选定的力学性能和耐腐蚀性进行了研究。还应用了相形成热力学计算来预测凝固后固溶体的形成。计算预测了多相体心立方相的存在,这通过X射线衍射和扫描电子显微镜得到了证实。化学成分分析表明存在合金元素偏析。显微硬度测量显示,在所研究的合金中,随着锆含量的增加,显微硬度降低。在林格氏溶液中测定的耐腐蚀性高于商业应用的生物材料。本研究还展示并讨论了将所得结果与先前报道数据的比较。