2219铝合金电子束焊接的实验评价与表征

M. Sobih, Zuhair Elseddig, K. Almazy, M. Sallam
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引用次数: 5

摘要

为了减轻部件的重量,从而在节能方面获利,汽车工业以及航空工业广泛使用铝合金。在飞机工业中应用最广泛的连接技术是铆接,而在汽车工业中使用铝合金的情况似乎是焊接。然而,焊接技术的特点是存在许多缺陷,如气孔;氧化夹杂物;凝固开裂(热撕裂);焊缝和热影响区强度降低,限制了其发展。铝合金焊接采用了多种技术,其中电子束焊接(EBW)具有密度高、熔深深、深宽比大、热影响区小等特点,与其他传统的熔焊方法相比具有独特的优势。在此之前,已经得到了产生最优焊缝的焊接参数。利用这些参数对试样进行了焊接验证。为了评估这一最佳焊接接头,使用扫描电子显微镜、光学显微镜和能量色散x射线分析进行了完整的微观结构观察和表征。这种评价导致了焊接接头内凝固过程的描述和量化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Evaluation and Characterization of Electron Beam Welding of 2219 AL-Alloy
Aiming to reduce the weight of components, thus allowing a profit in terms of energy saving, automotive industry as well as aircraft industry extensively uses aluminum alloys. The most widely used joining technology in aircraft industry is riveting, while welding seems to be used in the car industry in the case of aluminum alloys. However, welding technology is characterized by many defects, such as gas porosity; oxide inclusions; solidification cracking (hot tearing); and reduced strength in both the weld and the heat affected zones which could limit its development. Many techniques are used for aluminum alloys welding, among them is electron beam welding (EBW), which has unique advantages over other traditional fusion welding methods due to high-energy density, deep penetration, large depth-to-width ratio, and small heat affected zone. The welding parameters that yield to optimal weld joint have been previously obtained. These optimal parameters were validated by welding a specimen using these parameters. To evaluate this optimal weld joint, complete, microstructural observations and characterization have been carried out using scanning electron microscopy, optical microscopy, and energy dispersive X-ray analysis. This evaluation leads to description and quantification of the solidification process within this weld joint.
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