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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Effects of backward extrusion on mechanical and degradation properties of Mg-Zn biomaterial
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Effects of backward extrusion on mechanical and degradation properties of Mg-Zn biomaterial

机译:后向挤压对镁锌生物材料力学性能和降解性能的影响

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摘要

Backward extrusion was used to improve the properties of Mg-based biomaterials. The microstructures, mechanical performance and corrosion properties of as-cast and backward extruded Mg- xZn (x= 0.5, 1, 1.5, 2, wt.%) alloys were investigated. The secondary dendrite arm spacing of as-cast Mg- xZn alloys and the grain size of backward extruded Mg- xZn alloys were decreased with the increment of Zn content. Meanwhile, both strength and elongation were improved by backward extruded treatment. With increasing Zn addition, the corrosion properties of both as-cast and backward extruded Mg- xZn alloys were decreased. However, the corrosion performance of backward extruded sample was improved obviously compared to the corresponding as-cast one. More importantly, the degradation rate of the backward extruded alloy was stable, which was mainly associated with the fine second precipitates and the homogeneous microstructure. It was demonstrated that backward extrusion was an effective approach to manufacture high performance Mg-based biomaterials.
机译:向后挤压用于改善镁基生物材料的性能。研究了铸态和后向挤压Mg-xZn(x = 0.5、1、1.5、2 wt。%)合金的微观结构,力学性能和腐蚀性能。随着Zn含量的增加,铸态Mg-xZn合金的二次枝晶臂间距和向后挤压Mg-xZn合金的晶粒尺寸减小。同时,通过反向挤压处理可同时提高强度和伸长率。随着锌添加量的增加,铸态和后向挤压Mg-xZn合金的腐蚀性能均下降。但是,与相应的铸态相比,后向挤压样品的腐蚀性能明显提高。更重要的是,后向挤压合金的降解速率是稳定的,这主要与细小的第二析出物和均匀的显微组织有关。事实证明,向后挤压是制造高性能镁基生物材料的有效方法。

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