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Numerical Simulation and Experiment Research on Thick Plate Multi-Point Forming Process with Elastic Cushion

机译:弹性垫层厚板多点成形过程的数值模拟与实验研究

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摘要

Multi-point forming (MPF) is an advanced flexible manufacturing technology for three-dimensional sheet metal forming. The substance of MPF is replacing the conventional solid dies by a set of discrete punches called "punch group". Because the reconfigurable discrete punches are used, part manufacturing costs are reduced and manufacturing time is shortened. However due to the discrete contacts between the workpiece and punches, the dimple defects occurred, which are inevitable and particular for MPF. For thick plate, the surface defect is the mainly dimple defect during its MPF process. In this study, elastic cushion was proposed to prevent these surface defects. The dynamic explicit finite element method was chosen to implement the simulation of MPF process. The Hill's anisotropic yield criterion was used to describe the workpiece material behavior, and the elastic cushion was described with using the hyperelastic material model. The method to determine each punch position to construct forming surface was introduced. The MPF process with and without using elastic cushion was simulated to study the effect of the elastic cushion on preventing the surface defects. The relevant experiment was implemented, and it verified that the elastic cushion is effective method to suppress the surface defects during the thick plate MPF process.
机译:多点成型(MPF)是一种先进的柔性制造技术,用于三维钣金成型。 MPF的实质是通过一组称为“打孔组”的离散打孔器代替了传统的固态模具。由于使用了可重构的离散冲头,因此降低了零件制造成本,并缩短了制造时间。然而,由于工件和冲头之间的离散接触,会产生凹痕缺陷,这对于MPF是不可避免的,尤其是MPF。对于厚板,在MPF过程中,表面缺陷是主要的凹痕缺陷。在这项研究中,提出了弹性垫以防止这些表面缺陷。选择了动态显式有限元方法来实现MPF过程的仿真。用希尔氏各向异性屈服准则描述工件的材料行为,并使用超弹性材料模型描述弹性垫层。介绍了确定每个冲头位置以构造成型表面的方法。模拟了使用和不使用弹性垫的MPF工艺,以研究弹性垫对防止表面缺陷的影响。进行了相关实验,验证了弹性垫层是抑制厚板MPF过程中表面缺陷的有效方法。

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