等轴晶
材料科学
微观结构
镁合金
冶金
各向同性
镁
超声波传感器
极限抗拉强度
合金
粒度
延展性(地球科学)
复合材料
蠕动
光学
物理
声学
作者
Qianhui Cao,Bojin Qi,Caiyou Zeng,Ruize Zhang,Bochang He,Zewu Qi,Fude Wang,Haibo Wang,Baoqiang Cong
标识
DOI:10.1016/j.jallcom.2022.164742
摘要
The high cooling rate and thermal gradient in the wire arc additive manufacturing (WAAM) process often leads to a tendency towards columnar grains or columnar dendrites in magnesium alloys, which can result in anisotropic mechanical properties and are therefore undesirable. To address this challenge, a novel ultrasonic frequency pulsed (UFP) arc used as heat source is applied to alter the conditions in the WAAM process and promote equiaxed growth of magnesium grains. Experimental results indicate that the AZ31 magnesium alloy deposit produced by the UFP-WAAM exhibits full equiaxed-grain microstructure along the building direction. Without any additional treatments, the AZ31 magnesium alloy deposit displays promising mechanical properties, such as isotropic tensile strength and excellent ductility.
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