Bieda Magdalena, Gozdur Weronika, Gieleciak Magdalena, Jarzębska Anna, Maj Łukasz, Rogal Łukasz, Skiba Jacek
Institute of Metallurgy and Materials Science, Polish Academy of Sciences, Reymonta 25, 30-059 Krakow, Poland.
Institute of High Pressure Physics, Polish Academy of Sciences, Sokolowska 29, 01-142 Warsaw, Poland.
Materials (Basel). 2024 Jul 15;17(14):3496. doi: 10.3390/ma17143496.
The development of bioabsorbable implants from Zn alloys is one of the main interests in the new generation of biomaterials. The main drawbacks of Zn-based materials are their insufficient mechanical properties. In the presented studies, a quaternary alloy composed of zinc with magnesium (0.2-1 wt. %), calcium (0.1-0.5 wt. %) and strontium (0.05-0.5 wt. %) was prepared by gravity casting followed by hot extrusion and then by hydrostatic extrusion. Microstructural characterization using scanning electron microscopy (SEM) and X-ray diffraction (XRD) phase analysis was performed. The mechanical properties were examined, using static tensile tests. Corrosion properties were analyzed using immersion tests. Samples were immersed in Hanks' solution (temperature = 37 °C, pH = 7.4) for 14 days. All alloys were subjected after corrosion to SEM observations on the surface and cross-section. The corrosion rate was also calculated. The microstructure of the investigated quaternary alloy consists of the α-Zn grains and intermetallic phases Mg2Zn11, CaZn13 and SrZn13 with different grain sizes and distribution, which impacted both mechanical and corrosion properties. Thanks to the alloying by the addition of Mg, Ca, and Sr and plastic deformation using hydrostatic extrusion, outstanding mechanical properties were obtained along with improvement in uniformity of corrosion rate.
锌合金生物可吸收植入物的研发是新一代生物材料的主要研究方向之一。锌基材料的主要缺点是其机械性能不足。在本研究中,通过重力铸造、热挤压然后静液挤压制备了一种由锌与镁(0.2 - 1 wt.%)、钙(0.1 - 0.5 wt.%)和锶(0.05 - 0.5 wt.%)组成的四元合金。使用扫描电子显微镜(SEM)和X射线衍射(XRD)相分析进行微观结构表征。通过静态拉伸试验检测机械性能。使用浸泡试验分析腐蚀性能。将样品浸泡在汉克斯溶液(温度 = 37 °C,pH = 7.4)中14天。所有合金在腐蚀后进行表面和横截面的SEM观察。还计算了腐蚀速率。所研究的四元合金的微观结构由α-Zn晶粒以及不同晶粒尺寸和分布的金属间相Mg2Zn11、CaZn13和SrZn13组成,这对机械性能和腐蚀性能都有影响。由于添加镁、钙和锶进行合金化以及使用静液挤压进行塑性变形,获得了出色的机械性能,同时腐蚀速率的均匀性也得到了改善。