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Improved Corrosion Resistance of As-Extruded GZ51K Biomagnesium Alloy with High Mechanical Properties by Aging Treatment

机译:通过时效处理改善了具有高机械性能的挤压态GZ51K生物镁合金的耐蚀性

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摘要

Effects of aging treatment on microstructure, mechanical properties, and corrosion behavior of the as-extruded Mg-5Gd-1Zn-0.6Zr (GZ51K, wt.%) alloy were investigated. Microstructure was observed by optical microscopy and scanning electron microscopy, mechanical properties were tested on a tensile test machine and a microhardness tester, and corrosion behavior was evaluated by mass loss and polarization tests. It is found that most of equiaxed alpha-Mg grains have long-period stacking ordered (LPSO) structure, and some of them have no LPSO structure. Long-elongated grains are formed in the as-extruded alloy due to partial recrystallization and disappear after being aged at 200 and 220 A degrees C. The as-extruded alloy exhibits both high-yield strength and high ductility. The mechanical properties of the alloy are not apparently enhanced, but the corrosion resistance is significantly improved after aging treatment. Moreover, the alloy with LPSO structure presents uniform corrosion mode in simulated body fluid. The GZ51K alloy with high mechanical properties and uniform corrosion behavior is worthy to be further investigated for biomedical applications.
机译:研究了时效处理对挤压态Mg-5Gd-1Zn-0.6Zr(GZ51K,wt。%)合金的组织,力学性能和腐蚀行为的影响。通过光学显微镜和扫描电子显微镜观察微观结构,在拉伸试验机和显微硬度测试仪上测试机械性能,并通过质量损失和极化测试评价腐蚀行为。发现大多数等轴α-Mg晶粒具有长周期堆积有序(LPSO)结构,其中一些没有LPSO结构。由于部分再结晶,在刚挤压的合金中形成了长伸长的晶粒,并在200和220 A的温度下时效后消失。刚挤压的合金同时具有高屈服强度和高延展性。合金的机械性能没有明显提高,但时效处理后的耐蚀性显着提高。此外,具有LPSO结构的合金在模拟体液中呈现出均匀的腐蚀模式。具有高机械性能和均匀腐蚀行为的GZ51K合金值得在生物医学应用中进一步研究。

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