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Estimating product-to-product variations in metal forming using force measurements

机译:使用力测量估算金属成形的产品 - 产品变化

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The limits of production accuracy of metal forming processes can be stretched by the development of control systems for compensation of product-to-product variations. Such systems require the use of measurements from each semi-finished product. These measurements must be used to estimate the final quality of each product. We propose to predict part of the product-to-product variations in multi-stage forming processes based on force measurements from previous process stages. The reasoning is that final product properties as well as process forces are expected to be correlated since they are both affected by material and process variation. In this study, an approach to construct a moving window process model based on historical data from the process is presented. These regression models can be built and updated in real-time during production. The approach is tested with data from a demonstrator process with cutting, deep drawing and bending stages. It is shown that part of the product-to-product variations in the process can be predicted with the developed process model.
机译:金属成形过程的生产精度的限制可以通过控制系统的控制来延伸,以补偿产品 - 产品变化。这种系统需要使用来自每个半成品的测量值。这些测量必须用于估计每种产品的最终质量。我们建议根据先前的过程阶段的力测量预测多级成型过程中的一部分产品 - 产品变化。推理是预期最终产品性能以及处理力,因为它们都受到材料和工艺变化的影响。在本研究中,提出了一种基于从过程的历史数据构造移动窗口过程模型的方法。这些回归模型可以在生产过程中实时构建和更新。该方法用来自演示器过程的数据进行测试,具有切割,深图和弯曲级。结果表明,可以通过开发的过程模型预测该过程中的产品到产品变化的一部分。

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