El-Batahgy Abdel-Monem, Klimova-Korsmik Olga, Akhmetov Aleksandr, Turichin Gleb
Manufacturing Technology Department, Central Metallurgical Research and Development Institute (CMRDI), Cairo 11421, Egypt.
World-Class Research Center Advanced Digital Technologies, St. Petersburg State Marine Technical University, St. Petersburg 190121, Russia.
Materials (Basel). 2021 Dec 7;14(24):7498. doi: 10.3390/ma14247498.
The results disclosed that both the microstructure and mechanical properties of AA7075-T6 laser welds are considerably influenced by the heat input. In comparison with high heat input (arc welding), a smaller weld fusion zone with a finer dendrite arm spacing, limited loss of alloying elements, less intergranular segregation, and reduced residual tensile stress was obtained using low heat input. This resulted in a lower tendency of porosity and hot cracking, which improved the welded metal's soundness. Subsequently, higher hardness as well as higher tensile strength for the welded joint was obtained with lower heat input. A welded joint with better mechanical properties and less mechanical discrepancy is important for better productivity. The implemented high-power fiber laser has enabled the production of a low heat input welded joint using a high welding speed, which is of considerable importance for minimizing not only the fusion zone size but also the deterioration of its properties. In other words, high-power fiber laser welding is a viable solution for recovering the mechanical properties of the high-strength AA 7075-T6 welds. These results are encouraging to build upon for further improvement of the mechanical properties to be comparable with the base metal.
结果表明,AA7075-T6激光焊缝的微观结构和力学性能均受到热输入的显著影响。与高热输入(弧焊)相比,低热输入条件下获得的焊缝熔合区更小,枝晶臂间距更细,合金元素损失有限,晶间偏析更少,残余拉应力降低。这导致气孔率和热裂纹倾向降低,从而提高了焊接金属的致密性。随后,低热输入条件下焊接接头获得了更高的硬度和更高的抗拉强度。具有更好力学性能和更小力学差异的焊接接头对于提高生产率很重要。所采用的高功率光纤激光器能够以高焊接速度生产低热输入焊接接头,这对于不仅最小化熔合区尺寸而且最小化其性能劣化都具有重要意义。换句话说,高功率光纤激光焊接是恢复高强度AA 7075-T6焊缝力学性能的可行解决方案。这些结果令人鼓舞,可在此基础上进一步改善力学性能,使其与母材相当。