采用填充材料改善钢铝异种厚焊缝激光焊接性能的研究

IF 1.7 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Rabi Lahdo, Sarah Nothdurft, Oliver Seffer, Jörg Hermsdorf, Stefan Kaierle
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引用次数: 0

摘要

为了减轻船舶的重量和重心,钢和铝的厚异型接头仍然是造船界非常感兴趣的问题。因此,通过降低燃料消耗和提高船舶稳定性来减少二氧化碳排放是可以实现的。钢和铝的船舶部件是通过爆炸焊接适配器连接起来的,其制造复杂,耗时且昂贵。此外,适配器必须超大以满足强度要求。因此,造船业需要更好的替代方案。在本研究中,采用最大输出功率为PL = 6 kW的激光束源,开发了S355 J2钢(t = 5 mm)与AA6082-T651铝合金(t = 10 mm)在搭接配置下的激光焊接工艺。这种异种材料组合的激光焊接带来了一定的挑战,如随铝含量的不同在焊缝金属中形成脆性显微组织。为了改善焊缝的显微组织和相关的力学性能,采用了铁焊粉形式的填充材料。所述焊接粉末在铝底板的凹槽中提供。通过这种方式,形成了富铁的显微组织,从而提高了焊缝质量,这一点在金相分析和拉伸试验中都有所体现。例如,交叉张力可以增加100%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigations on improving the properties of laser beam welded thick dissimilar joints of steel and aluminum by using filler material
Thick dissimilar joints of steel and aluminum are still of high interest for shipbuilding in order to reduce the weight and the center of gravity of the ship. Thereby, a reduction of the CO2 emissions as a result of lower fuel consumption and a higher ship stability are achievable. The steel and aluminum ship parts are joined with the aid of an explosive-welded adapter, whose manufacturing is complex, time-consuming, and expensive. Furthermore, the adapter must be oversized to meet strength requirements. Therefore, the shipbuilding industry demands a better alternative. In this study, laser beam welding processes are developed for joining steel S355 J2 (t = 5 mm) with aluminum alloy AA6082-T651 (t = 10 mm) in a lap configuration using a laser beam source with a maximum output power of PL = 6 kW. Laser beam welding of this dissimilar material combination brings certain challenges, such as the formation of brittle microstructures in the weld metal depending on the aluminum content. To improve the microstructure and the associated mechanical properties of the weld seam, a filler material in the form of iron welding powder is used. The welding powder is provided in a groove in the aluminum bottom sheet. In this way, an iron-rich microstructure results, which leads to an increase in the weld seam quality, as shown in metallographic analysis and tensile tests. For example, the cross tension force can be increased by 100%.
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来源期刊
CiteScore
3.60
自引率
9.50%
发文量
125
审稿时长
>12 weeks
期刊介绍: The Journal of Laser Applications (JLA) is the scientific platform of the Laser Institute of America (LIA) and is published in cooperation with AIP Publishing. The high-quality articles cover a broad range from fundamental and applied research and development to industrial applications. Therefore, JLA is a reflection of the state-of-R&D in photonic production, sensing and measurement as well as Laser safety. The following international and well known first-class scientists serve as allocated Editors in 9 new categories: High Precision Materials Processing with Ultrafast Lasers Laser Additive Manufacturing High Power Materials Processing with High Brightness Lasers Emerging Applications of Laser Technologies in High-performance/Multi-function Materials and Structures Surface Modification Lasers in Nanomanufacturing / Nanophotonics & Thin Film Technology Spectroscopy / Imaging / Diagnostics / Measurements Laser Systems and Markets Medical Applications & Safety Thermal Transportation Nanomaterials and Nanoprocessing Laser applications in Microelectronics.
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