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铝合金微观结构与性能之个人观点

A Personal View of Microstructure and Properties of Al Alloys.

作者信息

Campbell John

机构信息

School of Metallurgy and Materials, Engineering Faculty, University of Birmingham, Birmingham B15 2TT, UK.

出版信息

Materials (Basel). 2021 Mar 8;14(5):1297. doi: 10.3390/ma14051297.

Abstract

This paper presents a personal view by the author of the role of bifilms in Al alloys. The mantra 'microstructure determines properties' is widely accepted as a truism, but is here critically assessed and found wanting. The case is made that bifilms from the casting process, while often invisible in the microstructure, are usually at least as important, if not of far greater importance, because they are often present as a dense population of cracks throughout the metal. The bifilm population controls the morphology of many features of cast and wrought structures. For cast alloys, bifilm control of pore morphology and Si morphology in Al-Si alloys is discussed, as is dendrite arm spacing (DAS). The tensile property benefits of grain refinement are seen to be mainly bifilm controlled. The properties ductility and fatigue appear to be especially dominated by bifilm content, as are invasive corrosion processes such as pitting, intergranular corrosion, hydrogen blistering and cracking. Bifilm control is proposed as a new concept permitting the improvement and control of metallurgical properties.

摘要

本文呈现了作者对双薄膜在铝合金中作用的个人观点。“微观结构决定性能”这一准则作为不言而喻的真理被广泛接受,但在此受到批判性评估并被发现存在不足。事实表明,铸造过程中产生的双薄膜尽管在微观结构中通常不可见,但通常至少同等重要,甚至更为重要,因为它们常常以密集的裂纹群形式存在于整个金属中。双薄膜群体控制着铸造和锻造结构许多特征的形态。对于铸造合金,讨论了双薄膜对铝硅合金中孔隙形态和硅形态的控制,以及枝晶臂间距(DAS)。晶粒细化对拉伸性能的益处主要被认为是由双薄膜控制的。延展性和疲劳等性能似乎尤其受双薄膜含量的主导,点蚀、晶间腐蚀、氢鼓泡和开裂等侵蚀性腐蚀过程也是如此。双薄膜控制被提议作为一个允许改善和控制冶金性能的新概念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ca3/7962965/feb469232410/materials-14-01297-g001.jpg

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