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Effect of surface treatment on the ultrasonic weldability of AZ31B magnesium alloy plate

机译:表面处理对AZ31B镁合金板超声焊性的影响

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摘要

Magnesium and its alloys have been widely used in various fields because they are the lightest metal in the structural materials and they possess many excellent properties such as high specific strength, low density, good and economic processability by using cast technology and high recycling potential. The recent progress in rolling technology enables the production of magnesium alloy plates. In this study, we tried to ultrasonically weld the magnesium plate of AZ31B, and examined the effect of the surface treatment on the ultrasonic weldability. Four kinds of surface treatments were adopted: (I) Wet polishing, (II) Alkaline cleaning, (III) Pickling with CrO_3 solution and (IV) Pickling with CrO_3 plus H_2SO_4 solution were adopted. The following results were obtained in this study. The outer surface of the magnesium cleaned in alkaline solution is covered with Mg (OH)_2 thick film, resulting in the deterioration of the ultrasonic weldability. The magnesium alloy of AZ31B contains inevitably some contents of Mn_6Al_7 intermetallic compounds, and these compounds appearing on the faying surface deteriorate the ultrasonic weldability. The surface treatment by pickling in aqueous solution consisting of CrO_3 and H_2SO_4 is effective to remove the Mg (OH)_2 film and the Mn_6Al_7 intermetallic compound and leads to increase the tensile strength of the ultrasonic weld. Heating the specimen to 100-200 deg C during ultrasonic welding can increase the tensile strength of the weld approximately 2.5 times as high as that of the weld performed at a room temperature.
机译:镁及其合金已广泛用于各个领域,因为它们是结构材料中最轻的金属,并且它们具有许多优异的性能,例如通过使用铸造技术和高回收潜力的高比强度,低密度,良好和经济的可加工性。最近的轧制技术进步使得能够生产镁合金板。在这项研究中,我们尝试超声焊接AZ31B的镁板,并检查了表面处理对超声焊性的影响。采用四种表面处理:(i)采用湿抛光,(ii)碱性清洁,(iii)用CRO_3溶液的酸洗和(iv)用CRO_3加上H_2SO_4溶液进行酸洗。在本研究中获得以下结果。在碱性溶液中清洁的镁的外表面被Mg(OH)_2厚膜覆盖,导致超声波焊接性的劣化。 AZ31B的镁合金含有不可避免的Mn_6Al_7金属间化合物的含量,并且这些化合物出现在卸料表面上劣化的超声焊接性。由CRO_3和H_2SO_4组成的水溶液中的表面处理是有效除去Mg(OH)_2膜和MN_6AL_7金属间化合物,并导致提高超声波焊缝的拉伸强度。在超声波焊接期间将样品加热至100-200℃可以将焊缝的拉伸强度提高约2.5倍,尽管在室温下进行的焊缝的焊缝高约2.5倍。

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