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具有高强度-延展性协同性能的高压压铸微观结构特征综述

Microstructural Characteristics of High-Pressure Die Casting with High Strength-Ductility Synergy Properties: A Review.

作者信息

Yang Qiang, Wu Xiaohan, Qiu Xin

机构信息

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China.

Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, College of Materials Science and Chemical Engineering, Harbin Engineering University, Harbin 150001, China.

出版信息

Materials (Basel). 2023 Feb 27;16(5):1954. doi: 10.3390/ma16051954.

Abstract

In response to the increased emphasis on reducing carbon emissions, the demand for lightweight, high-performance structural materials is quickly increasing, and Mg alloys, because of their having the lowest density among the common engineering metals, have demonstrated considerable advantages and prospective applications in contemporary industry. High-pressure die casting (HPDC), owning to its high efficiency and low production cost, is the most extensively utilized technique in commercial Mg alloy applications. The high room-temperature strength-ductility of HPDC Mg alloys plays an important role in their safe use, particularly in the automotive and aerospace industries. With respect to HPDC Mg alloys, their mechanical properties highly rely on their microstructural characteristics, particularly the intermetallic phases, which are further dependent on the alloys' chemical compositions. Therefore, the further alloying of traditional HPDC Mg alloys, such as Mg-Al, Mg-RE, and Mg-Zn-Al systems, is the most adopted method to further improve their mechanical properties. Different alloying elements lead to different intermetallic phases, morphologies, and crystal structures, which can have helpful or harmful effects on an alloy's strength or ductility. The methods aimed at regulating and controlling the strength-ductility synergy of HPDC Mg alloys have to arise from an in-depth understanding of the relationship between the strength-ductility and the components of the intermetallic phases of various HPDC Mg alloys. This paper focuses on the microstructural characteristics, mainly the intermetallic phases (i.e., components and morphologies), of various HPDC Mg alloys with good strength-ductility synergy, aimed at providing insight into the design of high-performance HPDC Mg alloys.

摘要

为响应日益强调的减少碳排放的要求,对轻质、高性能结构材料的需求迅速增长,而镁合金由于在常见工程金属中密度最低,已在当代工业中展现出显著优势和潜在应用。高压压铸(HPDC)因其高效率和低成本,是商业镁合金应用中使用最广泛的技术。HPDC镁合金在室温下具有高的强度-延展性,这对其安全使用起着重要作用,尤其是在汽车和航空航天工业中。对于HPDC镁合金,其力学性能高度依赖于微观结构特征,特别是金属间相,而金属间相又进一步取决于合金的化学成分。因此,对传统HPDC镁合金(如Mg-Al、Mg-RE和Mg-Zn-Al系)进行进一步合金化是进一步提高其力学性能最常用的方法。不同的合金元素会导致不同的金属间相、形态和晶体结构,这可能对合金的强度或延展性产生有益或有害的影响。旨在调节和控制HPDC镁合金强度-延展性协同效应的方法必须源于对各种HPDC镁合金强度-延展性与金属间相成分之间关系的深入理解。本文重点研究具有良好强度-延展性协同效应的各种HPDC镁合金的微观结构特征,主要是金属间相(即成分和形态),旨在为高性能HPDC镁合金的设计提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccce/10004674/aebb95506ce9/materials-16-01954-g001.jpg

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