A review on friction stir-based channeling

IF 8.1 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Critical Reviews in Solid State and Materials Sciences Pub Date : 2021-02-28 DOI:10.1080/10408436.2021.1886042
K. Mehta, P. Vilaça
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引用次数: 16

Abstract

Abstract Friction stir-based channeling is a solid-state processing encompassing the friction stir channeling (FSC) and its variants. In one manufacturing action, the FSC delivers a subsurface internal closed channel in a monolithic plate with no length limitation. The unique characteristics of theses internally closed channels produced with FSC can fit the demand from several industrial fields, namely lightweight structurally stiffened panels and applications where high power density requires highly efficient thermal management systems, such as power electronics and electric vehicles-based transportation. This first review on the FSC and its variants encompasses a systematic and comprehensive understanding on physical properties, including thermal performance and channel manufacturability applied to different engineering materials. The discussion is emphasized on working principle of channel formation, tool design, influence of process parameters, geometrical characterization, mechanical properties, hardness field and microstructural features correlated with mechanical properties. It can be summarized that novel processing of channels by FSC enhances the thermal performance compared to conventional fabrication techniques. FSC can produce complex path channels with various sizes, shapes and surface finishing. Precise control on process parameters and material flow governs the channel formation that subsequently influences thermal and mechanical performances of the channels. FSC has been applied to different range of thermal management systems and has potential for many demanding existent applications and enabling new high-performance products. From the initial FSC concept based on a shoulder-workpiece clearance, to the most recent solutions, such as the stationary shoulder FSC, and the no-tilt-angle and no-shoulder-workpiece clearance, allowing the manufacturing of large size channels, leaving the processed surface at its original quota and ready to be used. A significant leap is introduced with the Hybrid FSC enabling simultaneous welding and channeling, of similar and dissimilar metal components, and therefore, enhancing design opportunities for even more competitive solutions.
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摩擦搅拌通道研究进展
基于摩擦搅拌的通道是一种固态加工,包括摩擦搅拌通道(FSC)及其变体。在一次制造操作中,FSC在单片板中提供了一个没有长度限制的地下内部封闭通道。FSC生产的这些内部封闭通道的独特特性可以满足多个工业领域的需求,即轻质结构强化面板和高功率密度需要高效热管理系统的应用,例如电力电子和电动汽车运输。对FSC及其变体的第一次回顾包含了对物理特性的系统和全面的理解,包括应用于不同工程材料的热性能和通道可制造性。重点讨论了沟槽成形的工作原理、刀具设计、工艺参数的影响、几何表征、力学性能、硬度场以及与力学性能相关的显微组织特征。综上所述,与传统的制造技术相比,FSC的新型通道加工提高了热性能。FSC可以生产各种尺寸、形状和表面光洁度的复杂路径通道。对工艺参数和物料流动的精确控制控制了通道的形成,从而影响了通道的热性能和机械性能。FSC已应用于不同范围的热管理系统,并具有许多要求苛刻的现有应用和实现新的高性能产品的潜力。从最初的基于肩部-工件间隙的FSC概念,到最近的解决方案,如固定式肩部FSC,以及无倾斜角度和无肩部-工件间隙,允许制造大尺寸通道,使加工表面保持其原始配额并准备使用。混合FSC带来了一个重大飞跃,可以同时焊接和引导相似和不同的金属组件,因此,增加了更具竞争力的解决方案的设计机会。
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来源期刊
CiteScore
22.10
自引率
2.80%
发文量
0
审稿时长
3 months
期刊介绍: Critical Reviews in Solid State and Materials Sciences covers a wide range of topics including solid state materials properties, processing, and applications. The journal provides insights into the latest developments and understandings in these areas, with an emphasis on new and emerging theoretical and experimental topics. It encompasses disciplines such as condensed matter physics, physical chemistry, materials science, and electrical, chemical, and mechanical engineering. Additionally, cross-disciplinary engineering and science specialties are included in the scope of the journal.
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