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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Innovative metamodelling-based process design for manufacturing: an application to Incremental Sheet Forming
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Innovative metamodelling-based process design for manufacturing: an application to Incremental Sheet Forming

机译:基于元建模的创新制造工艺设计:增量板材成型的应用

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摘要

The use of metamodelling techniques in process design has become indispensable to perform faster solutions reducing time to market. This approach allows the implementation of decision support tools which are easier to use than the conventional numerical simulations. In this paper, a robust metamodelling technique has been designed and its feasibility has been validated for the crucial problem of localised thinning in sheet metal forming process. The proposed methodology is based on the innovative integration between the Design of Experimental statistical method and the Kriging one. This approach, in fact, allows to analyse contemporary the continuous and categorical factors and, as a consequence, to define a single tool for changing process conditions (i.e., material and product shape). To test the reliability of the mathematical approach, the same was performed for the case study of Incremental Sheet Forming, a process strongly affected by the not homogeneous distribution of the thickness. Taking advantage of this strategy, a wide experimental investigation has been performed to build the base of knowledge of the problem both for the metamodelling design and for the validation of the decision support tool; moreover, the experimental data were utilized to set and validate a numerical model, which was subsequently used to enrich the dataset. The proposed metamodel, suitably modified according to each process peculiarities, can be generally adapted for sheet thickness prediction.
机译:在工艺设计中使用元建模技术对于执行更快的解决方案、缩短上市时间变得不可或缺。这种方法允许实施比传统数值模拟更易于使用的决策支持工具。本文设计了一种鲁棒的元建模技术,并验证了该技术在钣金成形过程中局部变薄这一关键问题的可行性。所提出的方法基于实验统计方法设计与克里金法之间的创新整合。事实上,这种方法允许分析当代的连续和分类因素,从而定义一个单一的工具来改变工艺条件(即材料和产品形状)。为了测试数学方法的可靠性,对增量板材成型的案例研究进行了相同的研究,该过程受到厚度分布不均匀的强烈影响。利用这一策略,进行了广泛的实验调查,为元建模设计和决策支持工具的验证建立了问题的知识基础;此外,利用实验数据建立和验证数值模型,随后用于丰富数据集。所提出的元模型,根据每个工艺特点进行适当修改,通常可以用于板材厚度预测。

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