Kim Jung-Su, Lee Dong Ho, Jung Seung-Pill, Lee Kwang Seok, Kim Ki Jong, Kim Hyoung Seop, Lee Byeong-Joo, Chang Young Won, Yuh Junhan, Lee Sunghak
Center for Advanced Aerospace Materials, Pohang University of Science and Technology, Pohang, 790-784, South Korea.
Materials Deformation Department, Light Metal Division, Korea Institute of Materials Science, Changwon, 641-010, South Korea.
Sci Rep. 2016 Jun 1;6:26333. doi: 10.1038/srep26333.
In order to broaden industrial applications of Mg alloys, as lightest-weight metal alloys in practical uses, many efforts have been dedicated to manufacture various clad sheets which can complement inherent shortcomings of Mg alloys. Here, we present a new fabrication method of Mg/Al clad sheets by bonding thin Al alloy sheet on to Mg alloy melt during strip casting. In the as-strip-cast Mg/Al clad sheet, homogeneously distributed equi-axed dendrites existed in the Mg alloy side, and two types of thin reaction layers, i.e., γ (Mg17Al12) and β (Mg2Al3) phases, were formed along the Mg/Al interface. After post-treatments (homogenization, warm rolling, and annealing), the interfacial layers were deformed in a sawtooth shape by forming deformation bands in the Mg alloy and interfacial layers, which favorably led to dramatic improvement in tensile and interfacial bonding properties. This work presents new applications to multi-functional lightweight alloy sheets requiring excellent formability, surface quality, and corrosion resistance as well as tensile and interfacial bonding properties.
为了拓宽镁合金(实际应用中最轻的金属合金)的工业应用范围,人们付出了诸多努力来制造各种复合板,以弥补镁合金固有的缺点。在此,我们提出一种在薄带连铸过程中将薄铝合金板粘结到镁合金熔体上制备镁/铝复合板的新方法。在铸态镁/铝复合板中,镁合金一侧存在均匀分布的等轴枝晶,并且沿着镁/铝界面形成了两种类型的薄反应层,即γ(Mg17Al12)相和β(Mg2Al3)相。经过后处理(均匀化、温轧和退火)后,界面层通过在镁合金和界面层中形成变形带而呈锯齿状变形,这有利于显著提高拉伸性能和界面结合性能。这项工作为多功能轻质合金板提供了新的应用,这些合金板需要优异的成形性、表面质量、耐腐蚀性以及拉伸和界面结合性能。