A Review Study of Friction Stir Processing of Aluminum Alloys

Harvinder Singh, Rajdeep Singh
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引用次数: 2

Abstract

Friction stir processing is a Nobel technique established for its capacity to alter the microstructures and properties of a metal to its enhanced one with the assistance of extreme and confined plastic distortion. On the off chance that in tests, with effectively cooled magnesium-amalgam work pieces the micro hardness gets tripled in the region of the rubbing mix handled crease i.e. 120-130 Vickers hardness. In FSP process a more homogenous and refined microstructure of material is obtained. Repaired regions from FSP process are prevalent in quality and furthermore have better formability looked at than parent material. E.g. aluminum castings can be prepared to tie voids, or expulsions can likewise be enhanced in much focused on zones. FSP in blend with superplastic framing gives the possibility to shape complicated-molded parts at high strain rates and in segment thicknesses which isn’t conceivable utilizing customary superplastic handling. In this article of survey, current phase of FSP and improvement jumped out at comprehend it is tended to.
铝合金搅拌摩擦加工研究进展
搅拌摩擦加工是一项诺贝尔技术,因为它能够在极端和有限塑性变形的帮助下改变金属的微观结构和性能。偶然的是,在测试中,有效冷却镁汞合金工件的显微硬度在摩擦混合物处理折痕区域增加了三倍,即120-130维氏硬度。在FSP工艺中,材料的微观组织更加均匀和精细。FSP工艺的修复区域在质量上普遍存在,并且具有比母材更好的可成形性。例如,可以准备铝铸件来连接空洞,或者同样可以在非常集中的区域增强排气。FSP与超塑性框架的混合使得在高应变率和分段厚度下塑造复杂的模塑部件成为可能,这是利用常规超塑性处理无法想象的。在本文的调查中,跳出了对FSP的现状和改进的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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