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铁和锰对5xxx系合金微观组织形成的影响——第一部分:初生相和次生相的演变

Influence of Fe and Mn on the Microstructure Formation in 5xxx Alloys-Part I: Evolution of Primary and Secondary Phases.

作者信息

Grasserbauer Jakob, Weißensteiner Irmgard, Falkinger Georg, Kremmer Thomas M, Uggowitzer Peter J, Pogatscher Stefan

机构信息

Christian Doppler Laboratory for Advanced Aluminum Alloys, Chair of Nonferrous Metallurgy, Montanuniversitaet Leoben, Franz-Josef Straße 18, 8700 Leoben, Austria.

AMAG Rolling GmbH, 5282 Ranshofen, Austria.

出版信息

Materials (Basel). 2021 Jun 10;14(12):3204. doi: 10.3390/ma14123204.

Abstract

The increasing demands for Al sheets with superior mechanical properties and excellent formability require a profound knowledge of the microstructure and texture evolution in the course of their production. The present study gives a comprehensive overview on the primary- and secondary phase formation in AlMg(Mn) alloys with varying Fe and Mn additions, including variations in processing parameters such as solidification conditions, homogenization temperature, and degree of cold rolling. Higher Fe alloying levels increase the primary phase fraction and favor the needle-shaped morphology of the constituent phases. Increasing Mn additions alter both the shape and composition of the primary phase particles, but also promote the formation of dispersoids as secondary phases. The size, morphology, and composition of primary and secondary phases is further affected by the processing parameters. The average dispersoid size increases significantly with higher homogenization temperature and large primary particles tend to fragment during cold rolling. The microstructures of the final soft annealed states reflect the important effects of the primary and secondary phase particles on their evolution. The results presented in this paper regarding the relevant secondary phases provide the basis for an in-depth discussion of the mechanisms underlying the microstructure formation, such as Zener pinning, particle stimulated nucleation, and texture evolution, which is presented in Part II of this study.

摘要

对具有优异机械性能和良好成形性的铝板需求不断增加,这就需要深入了解其生产过程中的微观结构和织构演变。本研究全面概述了添加不同铁和锰含量的AlMg(Mn)合金中初生相和次生相的形成情况,包括凝固条件、均匀化温度和冷轧程度等工艺参数的变化。较高的铁合金化水平会增加初生相分数,并有利于组成相的针状形态。增加锰的添加量不仅会改变初生相颗粒的形状和成分,还会促进作为次生相的弥散质点的形成。初生相和次生相的尺寸、形态和成分还会受到工艺参数的进一步影响。随着均匀化温度升高,平均弥散质点尺寸显著增加,大的初生颗粒在冷轧过程中往往会破碎。最终软退火状态的微观结构反映了初生相和次生相颗粒对其演变的重要影响。本文给出的关于相关次生相的结果为深入讨论微观结构形成机制提供了基础,如第二相钉扎、颗粒诱发形核和织构演变等,这些将在本研究的第二部分进行阐述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee4b/8230420/29594e3d6042/materials-14-03204-g0A1a.jpg

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