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Sequential Effects of Deep Rolling and Post-Weld Heat Treatment on Surface Integrity of AA7075-T651 Aluminum Alloy Friction Stir Welding

机译:深层轧制和焊接后热处理的顺序效应AA7075-T651铝合金摩擦搅拌焊接的表面完整性

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摘要

The aim of this research is to investigate the sequence of processes for improving the welded surface integrity of AA7075-T651 aluminum alloy joined by friction stir welding (FSW). The improvement processes that will be investigated herein include mechanical surface improvement with deep rolling (DR) and post-weld heat treatment (PWHT). Therefore, this study investigated welded surface integrity, which comprises residual stress, microhardness, surface roughness, microstructure, and fatigue life (screening). The experiment consists of three sets of combinations. In the first set, only FSW was applied; in the second set, FSW was applied, followed by DR, and then PWHT processes (FSW-DR-PWHT); and in the last set, FSW was applied, followed by PWHT, and then DR processes (FSW-PWHT-DR). Fatigue testing was carried out by undertaking a four-point bending test using a bending stress of approximately 300 MPa with a test frequency of 2.5 Hz at room temperature and stress ratio R = 0. The study found that residual stress plays an important role in the fatigue life. Finally, the fatigue test showed that FSW workpieces subject to the PWHT process followed by the DR process (FSW-PWHT-DR) had the highest fatigue life, with an increase of 239% when compared with unprocessed FSW workpieces.
机译:该研究的目的是研究通过摩擦搅拌焊接(FSW)加入AA7075-T651铝合金的焊接表面完整性的方法的顺序。本文将研究的改进方法包括利用深轧(DR)和焊接后热处理(PWHT)的机械表面改善。因此,该研究研究了焊接表面完整性,其包括残留应力,微硬度,表面粗糙度,微观结构和疲劳寿命(筛选)。实验包括三组组合。在第一组中,仅应用了FSW;在第二组中,应用FSW,然后是DR,然后是PWHT过程(FSW-DR-PWHT);在最后一组中,应用FSW,然后是PWHT,然后是DR过程(FSW-PWHT-DR)。通过在室温下使用约300MPa的弯曲应力进行四分弯曲试验来进行疲劳测试,在室温下的测试频率和应力比R = 0.研究发现残余应力在其中存在重要作用疲劳生活。最后,疲劳试验表明,通过PWHT过程的FSW工件,然后进行DR过程(FSW-PWHT-DR)具有最高的疲劳寿命,与未处理的FSW工件相比,增加了239%。

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