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Melt flow and grain refining in ultrasonic vibration assisted laser welding process of AZ31B magnesium alloy

机译:AZ31B镁合金超声波振动辅助激光焊接过程中的熔体流动和晶粒精制

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摘要

During the laser welding process of magnesium (Mg) alloy, it is easy to produce welding defects, which deteriorates the mechanical properties of welded joint. Since ultrasonic vibration can decrease weld defects considerably, the ultrasonic-assisted welding technology has become a hotspot in the current research field of welding and joining. In this study, the ultrasonic vibration assisted laser welding technology used for the joining of AZ31B Mg was carried out. Setting amplitude transformer and welding specimen in contact makes ultrasonic travel to the weld pool as well as promote melt flow and bubble escape by the cavitation, acoustic streaming and thermal effects. Owing to these effects, the weld porosity decreases significantly to less than 1%. Besides, in the crystallization process of the weld pool, ultrasonic vibration increases the number of nucleation particles and refine grain, which improve the mechanical properties of welded joint. As a result, the average grain area in weld center area decreases from 359.9?μm2to 213.7?μm2. Also, compared with laser welding, the tension strengthσb, and elongationAgtincrease from 235.1?MPa to 274.1?MPa and 6.6% to 7.5%, respectively.
机译:在镁(Mg)合金的激光焊接过程中,易于产生焊接缺陷,这使得焊接接头的机械性能劣化。由于超声波振动可以显着降低焊缝缺陷,因此超声波辅助焊接技术已成为当前研究领域的焊接和加入领域的热点。在本研究中,进行了用于连接AZ31B MG的超声波振动辅助激光焊接技术。设定幅度变压器和接触式焊接样品使超声波行进到焊接池,并通过空化,声学流和热效果促进熔体流动和气泡。由于这些效果,焊接孔隙率显着降低至小于1%。此外,在焊接池的结晶过程中,超声波振动增加了成核颗粒的数量和细化晶粒,这改善了焊接接头的机械性能。结果,焊接中心区域的平均谷物面积从359.9?μm2至213.7?μm2降低。而且,与激光焊接相比,张力强度σb和伸长率易释放于235.1〜274.1〜274.1〜2〜274.1℃,分别为6.6%至7.5%。

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