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首页> 外文期刊>Critical Reviews in Solid State and Materials Sciences >Recent Advances in Friction Stir Welding/Processing of Aluminum Alloys: Microstructural Evolution and Mechanical Properties
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Recent Advances in Friction Stir Welding/Processing of Aluminum Alloys: Microstructural Evolution and Mechanical Properties

机译:摩擦搅拌焊接/加工近期进展:微观结构演化与机械性能

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摘要

Friction stir welding (FSW), a highly efficient solid-state joining technique, has been termed as "green" technology due to its energy efficiency and environment friendliness. It is an enabling technology for joining metallic materials, in particular lightweight high-strength aluminum and magnesium alloys which were classified as unweldable by traditional fusion welding. It is thus considered to be the most significant development in the area of material joining over the past two decades. Friction stir processing (FSP) was later developed based on the basic principles of FSW. FSP has been proven to be an effective and versatile metal-working technique for modifying and fabricating metallic materials. FSW/FSP of aluminum alloys has prompted considerable scientific and technological interest since it has a potential for revolutionizing the manufacturing process in the aerospace, defense, marine, automotive, and railway industries. To promote widespread applications of FSW/FSP technology and ensure the structural integrity, safety and durability of the FSW/FSP components, it is essential to optimize the process parameters, and to evaluate thoroughly the microstructural changes and mechanical properties of the welded/processed samples. This review article is thus aimed at summarizing recent advances in the microstructural evolution and mechanical properties of FSW/FSP aluminum alloys. Particular attention is paid to recrystallization mechanism, grain boundary characteristics, phase transformation, texture evolution, characteristic microstructures, and the effect of these factors on the hardness, tensile and fatigue properties as well as superplastic behavior of FSW/FSP aluminum alloys.
机译:摩擦搅拌焊接(FSW)是一种高效的固态连接技术,由于其能效和环境友好而被称为“绿色”技术。它是加入金属材料的启用技术,特别是轻质的高强度铝和镁合金,其被传统融合焊接被归类为不承受的。因此,它被认为是过去二十年的材料领域最重要的发展。摩擦搅拌加工(FSP)后来基于FSW的基本原理开发。 FSP已被证明是一种用于改性和制造金属材料的有效和多功能的金属工作技术。 FSW / FSP的铝合金促使了相当大的科技利益,因为它有旨在彻底改变航空航天,国防,海洋,汽车和铁路行业的制造过程。为推动FSW / FSP技术的广泛应用,确保FSW / FSP组件的结构完整性,安全性和耐用性,必须优化工艺参数,并彻底评估焊接/加工样品的微观结构变化和机械性能。因此,本综述旨在总结最近FSW / FSP铝合金的微观结构演化和机械性能的最新进展。特别注意重结晶机制,晶界特性,相变,质地演化,特征微观结构以及这些因素对硬度,拉伸和疲劳性能的影响以及FSW / FSP铝合金的超塑性行为。

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