Influence of the amount of intermetallics on the degradation of Mg-Nd alloys under physiological conditions.

Zhang, Yaping; Huang, Yuanding; Feyerabend, Frank; Blawert, Carsten; Gan, Weimin; Maawad, Emad; You, Sihang; Gavras, Sarkis et al. · Acta Biomater · 2021

basic_science · Level V

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Abstract

The influence of amount of intermetallics on the degradation of as-extruded Mg-Nd alloys with different contents of Nd was investigated via immersion testing in DMEM+10% FBS under cell culture conditions and subsequent microstructural characterizations. It is found that the presence of intermetallic particles Mg<sub>41</sub>Nd<sub>5</sub> affects the corrosion of Mg-Nd alloys in two conflicting ways. One is their negative role that their existence enhances the micro-galvanic corrosion. Another is their positive role. Their existence favours the formation of a continuous and compact corrosion layer. At the early stage of immersion, their negative role predominated. The degradation rate of Mg-Nd alloys monotonously increases with increasing the amount of intermetallics. Mg-5Nd alloy with maximum amount of intermetallics suffered from the most severe corrosion. With the immersion proceeding (≥7 days), then the positive role of these intermetallic particles Mg<sub>41</sub>Nd<sub>5</sub> could not be neglected. Owing to the interaction between their positive and negative roles, at the later stage of immersion the corrosion rate of Mg-Nd alloys first increases with increasing the content of Nd, then reaches to the maximum at 2 wt. % Nd. With a further increase of Nd content, a decrease in corrosion rate occurs. The main corrosion products on the surfaces of Mg-Nd alloys include carbonates, calcium-phosphate, neodymium oxide and/or neodymium hydroxide. They are amorphous at the early stage of immersion. With the immersion proceeding, they are transformed to crystalline. The existence of undegradable Mg<sub>41</sub>Nd<sub>5</sub> particles in the corrosion layer can enhance the crystallization of such amorphous corrosion products.

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