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Finite element simulation of multi-gripper flexible stretch forming

机译:多夹持式柔性拉伸成形的有限元模拟

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Multi-gripper flexible stretch forming is a novel sheet metal forming process aimed at improving the conformability of sheet metal to forming die, material utilization and forming quality of sheet metal. Straight jaws in traditional stretch forming machines are replaced by a pair of opposed clamping mechanisms movable relative to each other during the forming process. In the present study, a wave-like surface part was selected as the study object, and the forming processes of traditional stretch forming and multi-gripper flexible stretch forming were performed using a commercially available finite element analysis software to show their influences on conformability of sheet metal. In addition, three levels of transition lengths in multi-gripper flexible stretch forming were chosen to investigate their influence on forming results. The simulation results show that multi-gripper flexible stretch forming would result in an easier conformability of sheet metal than traditional stretch forming. It is also found that the sheet metal can be formed without a transition length, which could significantly improve the material utilization. In addition, the simulation results show that a shorter transition length would result in a smaller maximum strain in the forming zone, which may provide a useful guidance on choosing the transition length of sheet metal. K|Stretch forming;; Conformability;; Transition zone;; Flexible forming
机译:多夹持式柔性拉伸成形是一种新型金属板形成工艺,旨在提高金属板与形成模具,材料利用和形成金属板的质量的形式。传统拉伸成型机中的直爪被在成形过程中由一对相对夹紧机构的相对夹紧机构代替。在本研究中,选择波浪状表面部分作为研究对象,并且使用市售的有限元分析软件进行传统拉伸成形和多夹持式柔性拉伸成形的成形过程,以显示它们对符合性的影响钣金。另外,选择三种多夹钳柔性拉伸形成的过渡长度,以研究它们对形成结果的影响。仿真结果表明,多夹持的柔性拉伸成形将导致金属板的更容易符合性,而不是传统的拉伸成型。还发现可以在没有过渡长度的情况下形成金属板,这可以显着改善材料利用率。另外,仿真结果表明,较短的过渡长度将导致成形区域中的较小的最大应变,这可以提供关于选择金属板的过渡长度的有用指导。 k |拉伸成型;符合性;;过渡区;;灵活成型

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