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首页> 外文期刊>Metallography, Microstructure, and Analysis >Friction Stir Processing as a Novel Technique to Achieve Superplasticity in Aluminum Alloys: Process Variables, Variants, and Applications
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Friction Stir Processing as a Novel Technique to Achieve Superplasticity in Aluminum Alloys: Process Variables, Variants, and Applications

机译:搅拌摩擦加工是一种实现铝合金超塑性的新技术:工艺变量,变量和应用

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摘要

This article provides an overview of the potential for superplasticity of aluminum alloys using friction stir processing (FSP). FSP is a variant of friction stir welding (FSW), and FSP is an effective technique to alter the metallurgical and mechanical properties of the material, which results in superplastic properties at high strain rate and low temperature. This makes FSP as an attractive and cost-effective method to produce superplastic materials. A detailed summary of previously reported superplasticity in all aluminum alloys using FSP is tabulated in this review. It reveals the influence of tool design, machine variables, number of passes, active cooling, grain size, superplastic temperature, strain rate, and elongation on the superplastic properties of FSP aluminum alloys. Variants of FSP to achieve superplasticity at optimized conditions are proposed based on dual rotation of tool and additional cooing during the process. Applications of superplastic forming in aerospace and automotive are discussed. The direction of research in friction stir-processed superplasticity is covered in future scope.
机译:本文概述了使用摩擦搅拌工艺(FSP)铝合金超塑性的潜力。 FSP是搅拌摩擦焊(FSW)的一种变体,FSP是一种有效的技术,可以改变材料的冶金和机械性能,从而在高应变速率和低温下产生超塑性。这使得FSP成为生产超塑性材料的一种有吸引力且具有成本效益的方法。这篇综述详细列出了先前报道的使用FSP在所有铝合金中的超塑性。它揭示了工具设计,机器变量,通过次数,有效冷却,晶粒尺寸,超塑性温度,应变率和伸长率对FSP铝合金超塑性的影响。基于工具的双重旋转和过程中的额外冷却,提出了在最佳条件下实现超塑性的FSP变体。讨论了超塑性成形在航空航天和汽车领域的应用。搅拌摩擦超塑性的研究方向在未来范围内。

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