Liu Xuan, Zhang Zhiqiang, Hu Wenyi, Le Qichi, Bao Lei, Cui Jianzhong, Jiang Jiajia
Key Lab of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University, 314 Mailbox, Shenyang 110819, People's Republic of China.
Key Lab of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University, 314 Mailbox, Shenyang 110819, People's Republic of China.
Ultrason Sonochem. 2015 Sep;26:73-80. doi: 10.1016/j.ultsonch.2014.12.015. Epub 2015 Jan 2.
Argon degassing, ultrasonic degassing and a novel ultrasonic argon degassing treatment were applied for the hydrogen removal of AZ91 magnesium alloy. The hydrogen concentration, microstructures and mechanical properties have also been investigated. AZ91 alloys contains a high hydrogen concentration. The mechanical properties of the as-cast alloy are much improved using degassing process, which should be mainly attributed to the hydrogen removal. Among the three degassing process, the ultrasonic argon treatment is a high efficient process both for hydrogen removal and microstructure refining. One hand, ultrasonic wave could break up the purged argon bubble to improve the degassing efficiency of these bubbles. On the other hand, ultrasound could also generate many cavitation bubbles in the melt, which should account for the microstructure refinement. The ultrasonic argon treatment involves dynamics between the ascending argon bubbles and ultrasonic effects, such as cavitation and streaming, etc.
采用氩气除气、超声波除气以及一种新型的超声氩气除气处理方法对AZ91镁合金进行除氢处理。同时研究了氢浓度、微观组织和力学性能。AZ91合金含有较高的氢浓度。采用除气工艺后,铸态合金的力学性能有了很大提高,这主要归因于氢的去除。在这三种除气工艺中,超声氩气处理是一种高效的除氢和细化微观组织的工艺。一方面,超声波可以使吹扫的氩气泡破碎,从而提高这些气泡的除气效率。另一方面,超声波还可以在熔体中产生许多空化气泡,这有助于微观组织的细化。超声氩气处理涉及上升的氩气泡与超声效应(如空化和流场等)之间的动力学。