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研究加工过程中冷却介质对搅拌摩擦焊AA2219 T6接头微观结构和力学性能的影响。

Investigating impact of in-process cooling mediums on microstructural and mechanical properties of FSWed AA2219 T6 joints.

作者信息

Hussain Ghulam, Shehbaz Tauheed, Alkahtani Mohammed

机构信息

Mechanical Engineering Department, College of Engineering, University of Bahrain, Isa Town, 32038, Bahrain.

Faculty of Mechanical Engineering, Ghulam Ishaq Khan Institute of Engineering Sciences & Technology, Topi, 23460, Pakistan.

出版信息

Sci Rep. 2024 Nov 25;14(1):29251. doi: 10.1038/s41598-024-80620-x.

Abstract

This study investigates the influence of various in-process cooling techniques on the microstructural characteristics and mechanical properties of the friction stir-welded AA-2219-T6 alloy. The in-process cooling methods used include normal air, dry fan, an oil-water mixture (20:80), and water. The primary objective is to determine the optimal cooling strategy for enhancing the quality of the weldment. The characterization included light microscopy, tensile testing, X-ray diffraction (XRD), microhardness testing, and scanning electron microscopy (SEM) analysis of fractured surfaces to evaluate the microstructure and mechanical properties. It was seen that in-process cooling methods significantly affect the microstructural features and mechanical properties of AA 2219-T6 alloy weldments. Findings indicated that the water-cooled method at 55 °C resulted in the highest density of AlCu particles, leading to superior hardness and mechanical properties compared to other in-process cooling methods. Specifically, the water-cooled samples exhibited a ~ 17% increase in hardness compared to air-cooled samples and achieved an ultimate tensile strength equivalent to 65.4% of the base metal. Furthermore, a notable volume of second-phase particles was observed on the fractured surfaces in the water-cooled condition, attributed to the lower in-process temperatures, thus underscoring the effectiveness of water cooling in friction stir welding.

摘要

本研究调查了各种焊中冷却技术对搅拌摩擦焊接AA-2219-T6合金微观结构特征和力学性能的影响。所采用的焊中冷却方法包括正常空气、干风扇、油水混合物(20:80)和水。主要目的是确定提高焊件质量的最佳冷却策略。表征包括光学显微镜、拉伸试验、X射线衍射(XRD)、显微硬度测试以及对断口表面进行扫描电子显微镜(SEM)分析,以评估微观结构和力学性能。结果表明,焊中冷却方法对AA 2219-T6合金焊件的微观结构特征和力学性能有显著影响。研究结果表明,55°C水冷方法产生的AlCu颗粒密度最高,与其他焊中冷却方法相比,具有更高的硬度和力学性能。具体而言,水冷样品的硬度比空冷样品提高了约17%,其极限抗拉强度达到母材的65.4%。此外,在水冷条件下的断口表面观察到大量第二相颗粒,这归因于较低的焊中温度,从而突出了水冷在搅拌摩擦焊接中的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1806/11589614/c77573f8d43e/41598_2024_80620_Fig1_HTML.jpg

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