Xing Tong, Liu Cuirong, Liu Jie, Gui Hailian, Hu Xiaotong, Chu Zhibing, Tuo Leifeng
Engineering Research Center of Heavy Mechanical, Ministry of Education, Taiyuan University of Science and Technology, Taiyuan 030024, China.
Material Science and Engineering College, Taiyuan University of Science and Technology, Taiyuan 030024, China.
Materials (Basel). 2022 Jun 21;15(13):4383. doi: 10.3390/ma15134383.
The Mg/Al composite plate was developed in aerospace and other fields. At present, through the corrugated rolling method, the bonding strength of Mg/Al composite plate could be increased and the warpage could be reduced. However, this still requires the straightening process to reach the parameters' range. In this work, the original interface morphology of Mg/Al corrugated composite plate was obtained by experimental characterization. Based on the principle of elastoplastic mechanics, the equations of straightener parameters and straightening process parameters were obtained and the influencing factors were deduced. So, the straightening model was established in an Abaqus. The effects of straightener parameters and straightening process parameters on the interface morphology were analyzed and the interface morphology was expressed by amplitude and period length of the equation. The results showed that bending moment, shear strength and the reduction of second roll played roles on the interface morphology. After the first straightening unit, the amplitude increased by 1.1% and the period length increased by 3%. Finally, a complete straightening parameter was designed, which included straightener parameters, straightening process parameters and straightening temperature. The aim of this work was to provide a theoretical basis for establishing a high precision Mg/Al corrugated composite plate straightening model, which could improve the bonding strength while ensuring the straightening effect.
镁铝复合板在航空航天等领域得到了发展。目前,通过波纹轧制方法,可以提高镁铝复合板的结合强度并减少翘曲。然而,这仍需要矫直工艺来达到参数范围。在这项工作中,通过实验表征获得了镁铝波纹复合板的原始界面形态。基于弹塑性力学原理,得到了矫直机参数和矫直工艺参数的方程,并推导了影响因素。因此,在Abaqus中建立了矫直模型。分析了矫直机参数和矫直工艺参数对界面形态的影响,并用方程的幅值和周期长度来表示界面形态。结果表明,弯矩、剪切强度和第二道次压下量对界面形态有影响。经过第一道矫直单元后,幅值增加了1.1%,周期长度增加了3%。最后,设计了一套完整的矫直参数,包括矫直机参数、矫直工艺参数和矫直温度。这项工作的目的是为建立高精度镁铝波纹复合板矫直模型提供理论依据,该模型在保证矫直效果的同时可以提高结合强度。