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Part accuracy improvement in two point incremental forming with a partial die using a model predictive control algorithm

机译:使用模型预测控制算法提高局部冲模两点增量成型的零件精度

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摘要

As a flexible forming technology, Incremental Sheet Forming (ISF) is a promising alternative to traditional sheet forming processes in small-batch or customised production but suffers from low part accuracy in terms of its application in the industry. The ISF toolpath has direct influences on the geometric accuracy of the formed part since the part is formed by a simple tool following the toolpath. Based on the basic structure of a simple Model Predictive Control (MPC) algorithm designed for Single Point Incremental Forming (SPIF) in our previous work Lu et al. (2015) [1] that only dealt with the toolpath correction in the vertical direction, an enhanced MPC algorithm has been developed specially for Two Point Incremental Forming (TPIF) with a partial die in this work. The enhanced control algorithm is able to correct the toolpath in both the vertical and horizontal directions. In the newly-added horizontal control module, intensive profile points in the evenly distributed radial directions of the horizontal section were used to estimate the horizontal error distribution along the horizontal sectional profile during the forming process. The toolpath correction was performed through properly adjusting the toolpath in two directions based on the optimised toolpath parameters at each step. A case study for forming a non-axisymmetric shape was conducted to experimentally validate the developed toolpath correction strategy. Experiment results indicate that the two-directional toolpath correction approach contributes to part accuracy improvement in TPIF compared with the typical TPIF process that is without toolpath correction.
机译:作为一种灵活的成型技术,增量片材成型(ISF)是小批量或定制生产中传统片材成型工艺的有希望的替代方法,但就其在行业中的应用而言,其零件精度较低。 ISF刀具路径直接影响成型零件的几何精度,因为该零件是由遵循刀具路径的简单刀具形成的。 Lu等人在先前的工作中,基于为单点增量成形(SPIF)设计的简单模型预测控制(MPC)算法的基本结构。 (2015)[1]仅处理垂直方向的刀具路径校正,这项改进的MPC算法专门针对带有部分模具的两点增量成形(TPIF)而开发。增强的控制算法能够在垂直和水平方向上校正刀具路径。在新添加的水平控制模块中,在成形过程中,使用了沿水平截面径向均匀分布的密集轮廓点来估算沿水平截面轮廓的水平误差分布。通过在每个步骤中基于优化的刀具路径参数在两个方向上适当地调整刀具路径来执行刀具路径校正。进行了一个形成非轴对称形状的案例研究,以实验验证所开发的刀具路径校正策略。实验结果表明,与不使用刀具路径校正的典型TPIF工艺相比,双向刀具路径校正方法有助于提高TPIF中的零件精度。

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