Jung Kyu-Seok, Yu Jae-Hyeong, Chung Wan-Jin, Lee Chang-Whan
Department of Mechanical Design and Manufacturing Engineering, Seoul National University of Science and Technology, Seoul 01811, Korea.
Materials (Basel). 2020 Oct 22;13(21):4719. doi: 10.3390/ma13214719.
Incremental sheet metal forming can manufacture various sheet metal products without a dedicated punch and die set. In this study, we developed a two-stage incremental forming process to decrease shape errors in the conventional incremental forming process. The forming process was classified into the first single point incremental forming (1st SPIF) process for forming a product and the counter single point incremental forming (counter SPIF) process to decrease shape error. The counter SPIF gives bending deformation in the opposite direction. Furthermore, the counter SPIF compensates for shape errors, such as section deflection, skirt spring-back, final forming height, and round. The tool path of the counter SPIF has been optimized through a relatively simple optimization method by modifying the tool path of the previous step. The tool path of the 1st SPIF depends on the geometry of the product. An experiment was performed to form a circular cup shape to verify the proposed tool path of the 1st and counter SPIF. The result confirmed that the shape error decreased when compared to the conventional SPIF. For the application, the ship-hull geometry was adopted. Experimental results demonstrated the feasibility of the two-stage incremental forming process.
增量钣金成形无需专用冲模即可制造各种钣金产品。在本研究中,我们开发了一种两阶段增量成形工艺,以减少传统增量成形工艺中的形状误差。成形工艺分为用于产品成形的第一阶段单点增量成形(第1阶段SPIF)工艺和用于减少形状误差的反向单点增量成形(反向SPIF)工艺。反向SPIF会产生相反方向的弯曲变形。此外,反向SPIF可补偿诸如截面挠度、裙边回弹、最终成形高度和圆角等形状误差。反向SPIF的刀具路径已通过一种相对简单的优化方法进行了优化,即修改上一步的刀具路径。第1阶段SPIF的刀具路径取决于产品的几何形状。进行了一项实验,以形成圆形杯状,以验证所提出的第1阶段和反向SPIF的刀具路径。结果证实,与传统SPIF相比,形状误差有所降低。在应用方面,采用了船体几何形状。实验结果证明了两阶段增量成形工艺的可行性。