School of Materials and Metallurgy, Northeastern University, Shenyang 110004, China.
Mater Sci Eng C Mater Biol Appl. 2013 Oct;33(7):3661-9. doi: 10.1016/j.msec.2013.04.054. Epub 2013 May 3.
A new biodegradable magnesium-zinc-strontium (Mg-Zn-Sr) alloy was developed and studied for medical implant applications. This first study investigated the alloy processing (casting, rolling, and heat treatment), microstructures, mechanical properties, and degradation properties in simulated body fluid (SBF). Aging treatment of the ZSr41 alloy at 175 °C for 8h improved the mechanical properties when compared to those of the as-cast alloy. Specifically, the aged ZSr41 alloy had an ultimate tensile strength of 270 MPa, Vickers hardness of 71.5 HV, and elongation at failure of 12.8%. The mechanical properties of the ZSr41 alloy were superior as compared with those of pure magnesium and met the requirements for load-bearing medical implants. Furthermore, the immersion of the ZSr41 alloy in SBF showed a degradation mode that progressed cyclically, alternating between pitting and localized corrosion. The steady-state average degradation rate of the aged ZSr41 alloy in SBF was 0.96 g/(m(2)·hr), while the pH of SBF immersion solution increased. The corrosion current density of the ZSr41 alloy in SBF solution was 0.41 mA/mm(2), which was much lower than 1.67 mA/mm(2) for pure Mg under the same conditions. In summary, compared to pure Mg, the mechanical properties of the new ZSr41 alloy improved while the degradation rate decreased due to the addition of Zn and Sr alloying elements and specific processing conditions. The superior mechanical properties and corrosion resistance of the new ZSr41 alloy make it a promising alloy for next-generation implant applications.
一种新型可生物降解的镁-锌-锶(Mg-Zn-Sr)合金被开发并研究用于医学植入物应用。本研究首次探讨了该合金的加工(铸造、轧制和热处理)、微观结构、力学性能和在模拟体液(SBF)中的降解性能。与铸态合金相比,Z Sr41 合金在 175°C 时效 8h 可以提高其力学性能。具体来说,时效处理后的 Z Sr41 合金的极限拉伸强度为 270MPa,维氏硬度为 71.5HV,断裂伸长率为 12.8%。与纯镁相比,Z Sr41 合金的力学性能更为优异,满足了承载型医用植入物的要求。此外,Z Sr41 合金在 SBF 中的浸泡显示出一种循环的降解模式,交替出现点蚀和局部腐蚀。时效处理后的 Z Sr41 合金在 SBF 中的稳态平均降解速率为 0.96g/(m(2)·hr),而 SBF 浸泡溶液的 pH 值升高。在相同条件下,Z Sr41 合金在 SBF 溶液中的腐蚀电流密度为 0.41mA/mm(2),远低于纯镁的 1.67mA/mm(2)。总之,与纯镁相比,新型 Z Sr41 合金的力学性能因添加 Zn 和 Sr 合金元素以及特定的加工条件而得到提高,同时降解速率降低。新型 Z Sr41 合金具有优异的力学性能和耐腐蚀性,有望成为下一代植入物应用的理想合金。