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可生物降解的 Mg-Si-Sr 植入合金的微观结构和降解性能。

Microstructure and degradation performance of biodegradable Mg-Si-Sr implant alloys.

机构信息

Department of Materials Engineering, KU Leuven, Kasteelpark Arenberg, 44, 3001 Leuven, Belgium.

Department of Materials Engineering, KU Leuven, Kasteelpark Arenberg, 44, 3001 Leuven, Belgium.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Feb 1;71:25-34. doi: 10.1016/j.msec.2016.09.056. Epub 2016 Sep 29.

Abstract

In this work the microstructure and degradation behavior of several as-cast alloy compositions belonging to the Mg rich corner of the Mg-Si-Sr system are presented and related. The intermetallic phases are identified and analyzed describing the microstructure evolution during solidification. It is intended in this work to obtain insight in the behavior of the ternary alloys in in vitro tests and to analyze the degradation behavior of the alloys under physiologically relevant conditions. The as-cast specimens have been exposed to immersion tests, both mass loss (ML) and potentiodynamic polarization (PDP). The degradation rate (DR) have been assessed and correlated to microstructure features, impurity levels and alloy composition. The initial reactions resulted to be more severe while the degradation stabilizes with time. A higher DR is related with a high content of the MgSr phase and with the presence of coarse particles of the intermetallics MgSi, MgSiSr and MgSiSr. Specimens with a higher DR typically have higher levels of impurities and alloy contents.

摘要

本工作介绍并研究了属于 Mg-Si-Sr 系富 Mg 角的几种铸态合金成分的微观结构和降解行为。鉴定并分析了金属间化合物相,描述了凝固过程中的微观结构演变。本工作旨在深入了解三元合金在体外试验中的行为,并分析合金在生理相关条件下的降解行为。铸态试样已进行了浸泡试验,包括质量损失 (ML) 和动电位极化 (PDP)。评估了降解速率 (DR),并将其与微观结构特征、杂质水平和合金成分相关联。初始反应更为剧烈,随着时间的推移,降解趋于稳定。高降解速率与高 MgSr 相含量以及粗大的 MgSi、MgSiSr 和 MgSiSr 金属间化合物颗粒的存在有关。具有较高降解速率的试样通常具有较高的杂质和合金含量。

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