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Alloying and Processing Effects on the Microstructure Mechanical Properties and Degradation Behavior of Extruded Magnesium Alloys Containing Calcium Cerium or Silver

机译:合金化和加工对挤压的含钙铈或银的镁合金的组织力学性能和降解行为的影响

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摘要

Magnesium alloys attract attention as degradable implant materials due to their adjustable corrosion properties and biocompatibility. In the last few decades, especially wrought magnesium alloys with enhanced mechanical properties have been developed, with the main aim of increasing ductility and formability. Alloying and processing studies allowed demonstrating the relationship between the processing and the microstructure development for many new magnesium alloys. Based on this experience, magnesium alloy compositions need adjustment to elements improving mechanical properties while being suitable for biomaterial applications. In this work, magnesium alloys from two Mg-Zn series with Ce (ZE) or Ca (ZX) as additional elements and a series of alloys with Ag and Ca (QX) as alloying elements are suggested. The microstructure development was studied after the extrusion of round bars with varied processing parameters and was related to the mechanical properties and the degradation behavior of the alloys. Grain refinement and texture weakening mechanisms could be improved based on the alloy composition for enhancing the mechanical properties. Degradation rates largely depended on the nature of second phase particles rather than on the grain size, but remained suitable for biological applications. Furthermore, all alloy compositions exhibited promising cytocompatibility.
机译:镁合金由于其可调节的腐蚀性能和生物相容性而作为可降解的植入物材料吸引了人们的注意。在过去的几十年中,已经开发出具有增强的机械性能的特别是锻造的镁合金,其主要目的是提高延展性和可成形性。合金化和加工研究表明了许多新型镁合金的加工与微观结构发展之间的关系。基于这一经验,镁合金成分需要进行调整,以改善机械性能,同时又适合生物材料应用。在这项工作中,建议使用以Ce(ZE)或Ca(ZX)作为附加元素的两个Mg-Zn系列镁合金,以及以Ag和Ca(QX)作为合金元素的一系列合金。在挤压具有不同加工参数的圆棒之后,研究了显微组织的发展,这与合金的机械性能和降解行为有关。可以基于合金成分改善晶粒细化和质地弱化机制,以增强机械性能。降解速率主要取决于第二相颗粒的性质,而不取决于晶粒尺寸,但仍适用于生物应用。此外,所有合金成分均表现出有希望的细胞相容性。

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