Key Laboratory of Superlight Materials & Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China.
J Mech Behav Biomed Mater. 2013 Dec;28:332-9. doi: 10.1016/j.jmbbm.2013.08.012. Epub 2013 Aug 20.
The microstructure and mechanical properties of as-extruded Mg-8Y-1Er-2Zn (wt%) alloy containing long period stacking ordered (LPSO) phase are comparatively investigated before and after corrosion in a simulated body fluid (SBF) at 37°C. The as-extruded alloy consists of a long strip-like 18R-LPSO phase and some fine lamellae grains formed by primary recrystallization during the extrusion process. The hydrogen evolution volume per day fluctuates between 0.21 and 0.32ml/cm(2) in the immersion test for 240h, and the corresponding corrosion rate is calculated as 0.568mm/y. The corrosion product is determined as Mg(OH)2, whilst a Ca(H2PO4)2 compound is also observed on the surface of the samples. The corrosion site preferentially occurs at the interface between LPSO phase and Mg matrix. Before immersing, the tensile yield strength (TYS), ultimate tensile strength (UTS) and elongation of the alloy are 275MPa, 359MPa, and 19%, respectively. More attractively, these mechanical properties can be maintained even after immersing in SBF for 240h (TYS, UTS and elongation are 216MPa, 286MPa and 6.8%, respectively) because of the existence of high anti-corrosion LPSO phase.
研究了在 37°C 的模拟体液(SBF)中腐蚀前后,具有长周期堆垛有序(LPSO)相的挤压态 Mg-8Y-1Er-2Zn(wt%)合金的微观结构和力学性能。挤压态合金由长条状 18R-LPSO 相和挤压过程中通过初次再结晶形成的一些细小的层片状晶粒组成。在 240 小时的浸泡试验中,每天的氢析出量在 0.21 到 0.32ml/cm(2)之间波动,相应的腐蚀速率计算为 0.568mm/y。腐蚀产物被确定为 Mg(OH)2,同时在样品表面也观察到 Ca(H2PO4)2 化合物。腐蚀部位优先出现在 LPSO 相与 Mg 基体的界面处。在浸泡之前,合金的拉伸屈服强度(TYS)、拉伸强度(UTS)和伸长率分别为 275MPa、359MPa 和 19%。更吸引人的是,即使在 SBF 中浸泡 240 小时后,这些力学性能仍能保持(TYS、UTS 和伸长率分别为 216MPa、286MPa 和 6.8%),这是因为存在高耐腐蚀的 LPSO 相。