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Modeling and numerical simulation of multi-gripper flexible stretch forming process

机译:多爪柔性拉伸成型过程的建模与数值模拟

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Multi-gripper flexible stretch forming (MGFSF) is a recent technological innovation of sheet metal forming process. Straight jaws in traditional stretch forming machines are substituted for a pair of opposed clamping mechanisms movable relative to each other during the forming process. In this paper, spherical part is selected as the study object, and numerical simulations of the MGFSF process under two representative loading paths of horizontal-vertical (HV) loading path and horizontal-tilting-vertical (HTV) loading path have been carried out using a commercially available FEM software (ABAQUS). Four levels of horizontal forces in HV loading path are selected to investigate their influences on strain and forming error distributions of the simulated parts. In addition, four levels of tilting forces in HTV loading path are also taken into consideration. The simulation results reveal that HV loading path would result in a larger strain but a smaller forming error in the forming zone. In contrast, HTV loading path would result in a smaller strain but a larger forming error in the forming zone. Finally, experimental validations are conducted on self-developed apparatus, and the experimental results show a good correlation with the simulation results.
机译:多夹具柔性拉伸成形(MGFSF)是钣金成形工艺的一项最新技术创新。传统拉伸成形机中的直钳口代替了一对在成形过程中可相对移动的相对夹紧机构。本文以球形零件为研究对象,利用水平-垂直(HV)加载路径和水平-垂直-垂直(HTV)加载路径两个代表性加载路径对MGFSF过程进行了数值模拟。市售的FEM软件(ABAQUS)。选择了HV加载路径中的四个水平力,以研究它们对模拟零件的应变和成形误差分布的影响。此外,还考虑了HTV加载路径中的四个水平的倾斜力。仿真结果表明,高压加载路径将在成形区域产生较大的应变,但成形误差较小。相反,HTV加载路径将导致较小的应变,但在成形区域中会产生较大的成形误差。最后,对自行研制的仪器进行了实验验证,实验结果与仿真结果具有很好的相关性。

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