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首页> 外文期刊>International Journal of Mechanical Sciences >Mould correction for sheet-metal multi-step incremental air-bending forming based on close-loop control and FEM simulation
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Mould correction for sheet-metal multi-step incremental air-bending forming based on close-loop control and FEM simulation

机译:基于闭环控制和有限元模拟的钣金多步增量弯曲成形模具校正

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摘要

There exist errors between the manufactured workpieces and the CAD models due to the springback of sheet-metal incremental air-bending forming. To reduce these errors, an off-line closed-loop control iterative algorithm, combined by fast Fourier and wavelet transform, is developed from the displacement adjustment method (DAM), smooth displacement adjustment method (SDAM) and deformation transfer function method (DTFM) for die surface. With this algorithm, the mould surface of sheet-metal incremental air-bending forming could be properly corrected, and the springback errors of the formed workpieces could be effectively reduced. In order to reduce mould cost and labor cost, the springback tests of workpieces forming, needed in the iterative process of closed-loop control system, are substituted by finite element model (FEM) simulation. The above correction algorithm was used in a semiellipse-shape workpiece incremental air-bending forming. Its average errors are +0.74/-0.39 mm. The results show that the mould correction algorithm with Fourier and wavelet transform is reasonable and the means of FEM simulation are effective. It can be taken as a new approach for sheet-metal multi-step incremental air-bending forming and mould design.
机译:由于钣金渐进式空气弯曲成形的回弹,所制造的工件与CAD模型之间存在误差。为了减少这些误差,从位移调整方法(DAM),平滑位移调整方法(SDAM)和形变传递函数方法(DTFM)出发,开发了一种结合快速傅里叶和小波变换的离线闭环控制迭代算法。用于模具表面。利用该算法可以正确地矫正钣金渐进弯曲成形的模具表面,并有效降低成形工件的回弹误差。为了减少模具成本和人工成本,在闭环控制系统的迭代过程中需要进行的工件成形回弹测试被有限元模型(FEM)模拟所替代。上述校正算法用于半椭圆形工件增量气弯成型中。其平均误差为+ 0.74 / -0.39毫米。结果表明,采用傅里叶和小波变换的模具校正算法是合理的,有限元模拟方法是有效的。它可以作为钣金多步增量空气弯曲成型和模具设计的一种新方法。

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