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Combined electrohydraulic and flexible pin die forming: a novel high strain rate forming die setup

机译:组合电液和柔性销模具成型:一种新型高应变率成型模具设置

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Electrohydraulic forming (EHF) is one of the high-velocity metal forming processes that can significantly increase the formability of metals compared with quasi-static forming processes. On the other way, multi-point forming (MPF) is one of the flexible forming methods that provides different sheet metal geometries by varying the height of the pins. The purpose of this study is to take the advantages of both the EHF and MPF processes by presenting a design for flexible dies to be used in the electrohydraulic forming process. As the first step, electrohydraulic free-forming was performed to investigate the reproducibility and to obtain some of the parameters needed for simulations. Then, the ABAQUS finite element software and Coupled Eulerian-Lagrangian method were used to simulate this process. Afterward, the experimental tests were undergone to determine the defects of the forming process using a flexible pin die. Various geometries were produced by conducting experiments and inserting the proper elastic layer to eliminate the dimpling. The reproducibility and validity of the flexible pin die forming simulation was investigated by analyzing the dome height and final profile of the specimens. After ensuring the accuracy of the simulation, a thicker elastic layer was used to remove the dimpling defect completely. The results of the experiments and simulations illustrated that the use of flexible pin die is possible in the process of EHF and the proper final forms can be obtained by applying the appropriate thickness of the polyurethane layer.
机译:电液形成(EHF)是与准静态成型过程相比,可以显着提高金属的成形性之一。在另一种方式,多点形成(MPF)是通过改变销的高度来提供不同的钣金几何形状的柔性成形方法之一。本研究的目的是通过提出用于电液形成过程的柔性模具的设计来实现EHF和MPF过程的优点。作为第一步,进行电液压形成以研究重现性并获得模拟所需的一些参数。然后,使用ABAQUS有限元软件和耦合的Eulerian-Lagrangian方法来模拟该过程。之后,经历实验测试以确定使用柔性销模具的成形过程的缺陷。通过进行实验并插入适当的弹性层来消除各种几何形状以消除凹陷。通过分析标本的圆顶高度和最终轮廓来研究灵活销模芯片模拟的再现性和有效性。在确保模拟的准确性之后,使用较厚的弹性层完全去除凹陷缺陷。实验和模拟的结果示出了在EHF的过程中,可以通过施加适当的聚氨酯层的厚度来获得柔性销管芯的使用。

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