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挤压态镁合金微观组织演变及强韧化机制的研究进展

Research Progress on Microstructure Evolution and Strengthening-Toughening Mechanism of Mg Alloys by Extrusion.

作者信息

Zheng Yaqi, Zhang Yuan, Liu Yun, Tian Yaqiang, Zheng Xiaoping, Chen Liansheng

机构信息

Key Laboratory of the Ministry of Education for Modern Metallurgy Technology, College of Metallurgy and Energy, North China University of Science and Technology, Tangshan 063210, China.

出版信息

Materials (Basel). 2023 May 17;16(10):3791. doi: 10.3390/ma16103791.

Abstract

Magnesium and magnesium-based alloys are widely used in the transportation, aerospace and military industries because they are lightweight, have good specific strength, a high specific damping capacity, excellent electromagnetic shielding properties and controllable degradation. However, traditional as-cast magnesium alloys have many defects. Their mechanical and corrosion properties cause difficulties in meeting application requirements. Therefore, extrusion processes are often used to eliminate the structural defects of magnesium alloys, and to improve strength and toughness synergy as well as corrosion resistance. This paper comprehensively summarizes the characteristics of extrusion processes, elaborates on the evolution law of microstructure, discusses DRX nucleation, texture weakening and abnormal texture behavior, discusses the influence of extrusion parameters on alloy properties, and systematically analyzes the properties of extruded magnesium alloys. The strengthening mechanism is comprehensively summarized, the non-basal plane slip, texture weakening and randomization laws are comprehensively summarized, and the future research direction of high-performance extruded magnesium alloys is prospected.

摘要

镁及镁基合金因其重量轻、比强度高、比阻尼容量大、电磁屏蔽性能优异且降解可控,而广泛应用于交通运输、航空航天和军事工业。然而,传统铸态镁合金存在诸多缺陷。其力学性能和耐腐蚀性能难以满足应用要求。因此,挤压工艺常被用于消除镁合金的组织缺陷,提高强度与韧性协同性以及耐腐蚀性。本文全面总结了挤压工艺的特点,阐述了微观组织的演变规律,讨论了动态再结晶形核、织构弱化及异常织构行为,探讨了挤压参数对合金性能的影响,并系统分析了挤压态镁合金的性能。综合总结了强化机制,全面总结了非基面滑移、织构弱化及随机化规律,并展望了高性能挤压镁合金的未来研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47fc/10221337/363af0781417/materials-16-03791-g002.jpg

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