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Investigation on a Microextrusion Process of Parallel Protrusions from Metal Strip

机译:金属带材平行突出微挤压工艺研究

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摘要

The continuous purchase of higher quality standards in the production with parallel reduction of the costs leads to the need of a robust process design avoiding as much as possible the occurrence of defects in the production. Complex processes like microforming are highly dependent on local raw material changes, normally affecting more than 10% of the production which, as a result, has to be rejected. A possible approach consists in an adaptive control system based on a metamodel processing the data of online measuring: in a multistep microforming process the relevant features of the workpiece are measured inline and the deviations reduced by online adjustment of the most effective process parameters. This paper presents a simulative study of a full forward extrusion process from metal strip. Multiple parallel ribs are formed in the middle of a more complex workpiece resulting from a multi step microforming process made up also of cut-ting, deep drawing and bending stages. The simulations are based on a full factorial design of experiment which reproduces the different workpiece conditions, mainly due to strip thickness spread and variable lubrication.
机译:在生产中连续购买更高质量的标准,同时降低成本导致需要可靠的过程设计,从而尽可能避免在生产中出现缺陷。诸如微成型之类的复杂过程高度依赖于本地原材料的变化,通常影响产量的10%以上,因此必须予以拒绝。一种可能的方法包括基于处理在线测量数据的元模型的自适应控制系统:在多步微成型工艺中,在线测量工件的相关特征,并通过在线调整最有效的工艺参数来减少偏差。本文介绍了金属带材完全向前挤压过程的模拟研究。在由切割,深冲和弯曲阶段组成的多步微成型过程中,在更复杂的工件中间形成了多个平行肋。这些模拟是基于实验的全因子设计,该实验再现了不同的工件条件,这主要归因于带材厚度分布和可变润滑。

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