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Microstructures Mechanical Properties and Corrosion Behavior of As-Cast Mg–2.0Zn–0.5Zr–xGd (wt ) Biodegradable Alloys

机译:铸态Mg–2.0Zn–0.5Zr–xGd(wt%)可生物降解合金的微观结构力学性能和腐蚀行为

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摘要

The Mg–Zn–Zr–Gd alloys belong to a group of biometallic alloys suitable for bone substitution. While biocompatibility arises from the harmlessness of the metals, the biocorrosion behavior and its origins remain elusive. Here, aiming for the tailored biodegradability, we prepared the Mg–2.0Zn–0.5Zr–xGd (wt %) alloys with different Gd percentages (x = 0, 1, 2, 3, 4, 5), and studied their microstructures and biocorrosion behavior. Results showed that adding a moderate amount of Gd into Mg–2.0Zn–0.5Zr alloys will refine and homogenize α-Mg grains, change the morphology and distribution of (Mg, Zn)3Gd, and lead to enhancement of mechanical properties and anticorrosive performance. At the optimized content of 3.0%, the fishbone-shaped network, ellipsoidal, and rod-like (Mg, Zn)3Gd phase turns up, along with the 14H-type long period stacking ordered (14H-LPSO) structures decorated with nanoscale rod-like (Mg, Zn)3Gd phases. The 14H-LPSO structure only exists when x ≥ 3.0, and its content increases with the Gd content. The Mg–2.0Zn–0.5Zr–3.0Gd alloy possesses a better ultimate tensile strength of 204 ± 3 MPa, yield strength of 155 ± 3 MPa, and elongation of 10.6 ± 0.6%. Corrosion tests verified that the Mg–2.0Zn–0.5Zr–3.0Gd alloy possesses the best corrosion resistance and uniform corrosion mode. The microstructure impacts on the corrosion resistance were also studied.
机译:Mg-Zn-Zr-Gd合金属于一组适合骨骼替代的生物金属合金。尽管生物相容性是由金属的无害性引起的,但其生物腐蚀行为及其起源仍然难以捉摸。在这里,针对定制的生物降解性,我们制备了具有不同Gd百分比(x = 0、1、2、3、4、5)的Mg–2.0Zn–0.5Zr–xGd(wt%)合金,并研究了它们的微观结构和生物腐蚀行为。结果表明,在Mg–2.0Zn–0.5Zr合金中添加适量的Gd将细化和均质化α-Mg晶粒,改变(Mg,Zn)3Gd的形态和分布,并提高机械性能和防腐性能。在3.0%的最佳含量下,鱼骨形网状,椭圆形和棒状(Mg,Zn)3Gd相出现,以及用纳米棒装饰的14H型长期堆叠有序(14H-LPSO)结构状(Mg,Zn)3Gd相。 14H-LPSO结构仅在x≥3.0时存在,并且其含量随Gd含量的增加而增加。 Mg–2.0Zn–0.5Zr–3.0Gd合金具有更好的极限拉伸强度204±3 MPa,屈服强度155±3 MPa和延伸率10.6±0.6%。腐蚀测试证明,Mg–2.0Zn–0.5Zr–3.0Gd合金具有最佳的耐腐蚀性和均匀的腐蚀模式。还研究了显微组织对耐蚀性的影响。

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