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锌和钙对锌基镁合金板材时效硬化性和可成形性的单独贡献。

Individual Contribution of Zn and Ca on Age-Hardenability and Formability of Zn-Based Magnesium Alloy Sheet.

作者信息

Jo Sumi, Bohlen Jan, Kurz Gerrit

机构信息

Institute of Material and Process Design, Helmholtz-Zentrum Hereon, Max-Planck-Str. 1, D-21502 Geesthacht, Germany.

出版信息

Materials (Basel). 2022 Jul 29;15(15):5239. doi: 10.3390/ma15155239.

Abstract

This paper reports on the dilemma of the strength and forming behavior of magnesium alloy sheets due to hot rolling and precipitation aging as an obstacle for property adjustment. The effect of the Zn content on the age-hardenability and formability of Mg-Zn-Al-Ca-Mn sheets was investigated. Sheets of two alloys with 2 or 4 wt.% Zn, respectively, were produced by casting and subsequent hot rolling and their microstructure development, precipitation behavior and formability were examined. With higher Zn content the age-hardenability was increased, but at the same time the formability of the sheet decreased, concurrent to the basal-type texture development during rolling. On the other hand, the sheet containing a lower amount of Zn exhibited a weak rolling texture and rather high formability but low age-hardenability. The addition of a larger amount of Zn improved the age-hardenability through the formation of β1' and β2' phases. The basal texture was exhibited due to the consumption of solute Ca due to the formation of the CaMgZn phase. This study suggests that this contradictory exhibition of the age-hardenability and formability of Ca-containing and Zn-based alloy sheets requires a strategical approach in alloy and process design, which allows tailoring the alloying elements and processing for the respective purpose.

摘要

本文报道了由于热轧和沉淀时效导致镁合金板材强度和成形行为的困境,这是性能调整的一个障碍。研究了锌含量对Mg-Zn-Al-Ca-Mn板材时效硬化性和成形性的影响。分别通过铸造及随后的热轧制备了锌含量为2 wt.%和4 wt.%的两种合金板材,并对其微观组织演变、析出行为和成形性进行了研究。随着锌含量的增加,时效硬化性提高,但与此同时,板材的成形性下降,这与轧制过程中基面织构的发展同时发生。另一方面,锌含量较低的板材表现出较弱的轧制织构和较高的成形性,但时效硬化性较低。添加大量锌通过形成β1'和β2'相提高了时效硬化性。由于CaMgZn相的形成消耗了溶质钙,从而出现了基面织构。本研究表明,含钙和锌基合金板材时效硬化性和成形性的这种矛盾表现需要在合金和工艺设计中采取一种策略性方法,以便针对各自的目的定制合金元素和加工工艺。

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