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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Interconnection of Zn content, macrosegregation, dendritic growth, nature of intermetallics and hardness in directionally solidified Mg-Zn alloys
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Interconnection of Zn content, macrosegregation, dendritic growth, nature of intermetallics and hardness in directionally solidified Mg-Zn alloys

机译:定向凝固Mg-Zn合金中Zn含量,宏观偏析,枝晶生长,金属间化合物的性质和硬度的相互联系

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摘要

Mg and Mg-based alloys are lightweight metallic materials that are extremely biocompatible and have promising mechanical properties. Mg-Zn alloys have potential applications as biomaterials in the field of hard tissue engineering for load bearing applications, and are mainly produced by casting with limited further operations such as finishing by thermo-mechanical and machining of the surface. Thus, understanding the solidification behaviour of Mg-Zn alloys becomes an essential task to be accomplished. The aim of this work is to examine the interconnection of alloy Zn content/macrosegregation/scale of the dendritic microstructureature of intermetallics and hardness of samples obtained by transient directional solidification of four Mg-Zn alloys. Experimental growth laws relating the primary dendrite arm spacing, lambda(1), of directionally solidified samples to solidification thermal parameters such as the growth rate and the cooling rate are proposed. The experimental scatters of lambda(1) are shown to be mainly inside the range of theoretical lambda(1) values predicted by the Hunt-Lu model. Also, the combined effects of macro-segregation, Zn alloying and lambda(1) on hardness of Mg-Zn alloys are evaluated and functional equations relating lambda(1) to hardness are proposed. (C) 2015 Elsevier B.V. All rights reserved.
机译:镁和镁基合金是轻质金属材料,具有极强的生物相容性并具有良好的机械性能。 Mg-Zn合金在硬组织工程领域中作为承载材料具有潜在的生物材料应用,并且主要是通过有限的进一步操作(例如通过热机械进行精加工和对表面进行机加工)通过铸造生产的。因此,了解Mg-Zn合金的凝固行为就成为必须完成的任务。这项工作的目的是检查合金Zn含量/宏观聚集/树枝状微结构/金属间化合物的性质和通过四种Mg-Zn合金的瞬时定向凝固获得的样品的硬度之间的相互关系。提出了将定向凝固样品的主要枝晶臂间距lambda(1)与凝固热参数(例如生长速率和冷却速率)相关的实验生长规律。 lambda(1)的实验散点主要显示在Hunt-Lu模型预测的理论lambda(1)值范围内。此外,评估了宏观偏析,锌合金化和λ(1)对Mg-Zn合金硬度的综合影响,并提出了将λ(1)与硬度相关的函数方程。 (C)2015 Elsevier B.V.保留所有权利。

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