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Research on three-dimensional surface parts in multi-gripper flexible stretch forming

机译:多爪柔性拉伸成形中三维表面零件的研究

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摘要

Multi-gripper flexible stretch forming (MGFSF) is a novel flexible forming process of sheet metal based on the multi-point forming principle. The straight jaws in traditional transverse stretch forming (TSF) are replaced by several discrete clamping mechanisms on both sides. To help understand the forming characters of MGFSF, spherical and concave-convex parts were selected as the research objects and finite element analyses on TSF and MGFSF were implemented using an explicit nonlinear finite element code. The influence of the transition length on the forming results in MGFSF was also taken into account in the present work. The simulation results reveal that a shorter transition length in MGFSF would result in an easier conformability of the sheet metal to the desired shape as well as a smaller strain variation in the forming zone. It is also found that, compared to TSF, the sheet metal can be formed without transition zone by utilizing MGFSF, which could significantly improve the material utilization and save the manufacturing costs. Finally, experimental validations were conducted on the self-developed MGFSF apparatus and the experimental results show a good agreement with the numerical results.
机译:多夹持器柔性拉伸成形(MGFSF)是一种基于多点成形原理的新型钣金柔性成形工艺。传统的横向拉伸成形(TSF)中的直钳口在两侧均被多个离散的夹紧机构所取代。为了帮助理解MGFSF的形成特性,选择球形和凹凸部分作为研究对象,并使用显式非线性有限元代码对TSF和MGFSF进行了有限元分析。在目前的工作中也考虑了过渡长度对MGFSF成形结果的影响。仿真结果表明,在MGFSF中较短的过渡长度将使金属薄板更容易符合所需形状,并且在成形区域中产生较小的应变变化。还发现,与TSF相比,利用MGFSF可以在没有过渡区的情况下形成钣金,这可以显着提高材料利用率并节省制造成本。最后,对自行研制的MGFSF仪器进行了实验验证,实验结果与数值结果吻合良好。

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