Luo Dan, Pan Yue, Wang Hui-Yuan, Zhao Li-Guo, Liu Guo-Jun, Liu Yan, Jiang Qi-Chuan
Key Laboratory of Automobile Materials of Ministry of Education & School of Materials Science and Engineering, Nanling Campus, Jilin University, No. 5988 Renmin Street, Changchun 130025, China.
Key Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun 130025, China.
Materials (Basel). 2016 Jun 1;9(6):433. doi: 10.3390/ma9060433.
Twin-roll casting AZ31 Mg alloy sheets have been fabricated by normal unidirectional-rolling, head-to-tail rolling, and clock-rolling, respectively. It has been demonstrated that head-to-tail rolling is the most effective to refine the microstructure and weaken the basal texture among the three rolling routes. Excellent integrated tensile properties can be obtained by the head-to-tail rolling. The yield strength, ultimate tensile strength, and plastic elongation are 196 MPa, 301 MPa, and 28.9%, respectively. The strength can benefit from the fine grains (average value of 4.0 μm) of the AZ31 alloy processed by the head-to-tail rolling route, while the excellent plastic elongation is achieved owing to the weakened basal texture besides the fine grains. Results obtained here can be used as a basis for further study of some simple rolling methods, which is critical to the development of Mg alloys with high strength and plasticity.
通过常规单向轧制、头对头轧制和时钟轧制分别制备了双辊铸轧AZ31镁合金板材。结果表明,在这三种轧制路径中,头对头轧制对细化微观结构和弱化基面织构最为有效。采用头对头轧制可获得优异的综合拉伸性能。屈服强度、抗拉强度和塑性伸长率分别为196MPa、301MPa和28.9%。强度得益于采用头对头轧制路径加工的AZ31合金的细晶粒(平均值为4.0μm),而优异的塑性伸长率则是由于除细晶粒外基面织构的弱化。这里获得的结果可作为进一步研究一些简单轧制方法的基础,这对开发具有高强度和塑性的镁合金至关重要。