Masood Chaudry Umer, Hoo Kim Tae, Duck Park Sang, Sik Kim Ye, Hamad Kotiba, Kim Jung-Gu
School of Advanced Materials Science & Engineering, Sungkyunkwan University, Suwon 16419, Korea.
Materials (Basel). 2018 Nov 7;11(11):2201. doi: 10.3390/ma11112201.
In this work, we investigated the effect of Ca on the formability of the AZ31 Mg alloy. For this purpose, the microstructure, texture, mechanical properties and formability of AZ31 Mg alloy samples containing 0.5 wt. % Ca (AZ31-0.5Ca) were studied. For comparison, the performance of Ca-Free AZ31 alloy samples with similar grain size was also investigated. In addition, formability of this alloy was reached at a high punch speed. The results of this work showed that the addition of 0.5 wt. % Ca can enhance the formability of the AZ31 alloy, which was three times greater than that of the Ca-Free AZ31 alloy. The improved formability was attributed to the formation of (Mg,Al)₂Ca particles (~1 μm), which, in turn, contribute to reducing the intensity of the strong basal texture during the primary processing of the alloy. The in-grain misorientation axis analysis determined by electron back-scattered diffraction and critical resolved shear stress calculations carried out by the viscoplastic self-consistent model showed that the non-basal slip systems could be activated in the AZ31-0.5Ca alloy.
在本研究中,我们探究了钙对AZ31镁合金可成形性的影响。为此,对含有0.5 wt.%钙(AZ31-0.5Ca)的AZ31镁合金样品的微观结构、织构、力学性能和可成形性进行了研究。为作比较,还研究了具有相似晶粒尺寸的无钙AZ31合金样品的性能。此外,该合金在高冲压速度下达到了可成形性。本研究结果表明,添加0.5 wt.%的钙可提高AZ31合金的可成形性,其可成形性比无钙AZ31合金高三倍。可成形性的提高归因于(Mg,Al)₂Ca颗粒(约1μm)的形成,这反过来有助于降低合金初次加工过程中强烈基面织构的强度。通过电子背散射衍射确定的晶粒内取向差轴分析以及通过粘塑性自洽模型进行的临界分切应力计算表明,AZ31-0.5Ca合金中的非基面滑移系可以被激活。