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An experimental and analytical model for force prediction in sheet metal forming process using perforated sheet and origami principles

机译:采用多孔板和折纸原理的金属板成型工艺力预测实验和分析模型

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In this work, we present a model for origami-based sheet metal (OSM) folding that can predict the required bending force. OSM folding is enabled by introducing bending features along the bending line, named material discontinuity (MD). Firstly, the introduced analysis in this work developed a bending setup for OSM that does not require a die then introduced a method to analytically derive the bending force for a regular sheet without any added folding features. The analytical approach is followed using an experimental setup identical to the developed OSM bending configuration. Secondly, the OSM bending experiment is conducted to measure the required bending force and to identify which parameters influence the OSM bending force significantly. Finally, an empirical model is proposed considering the analytical force in the first step and the influencing parameters defined in the second step. Regression analysis is carried out using one portion of experimental force measurement to determine the coefficients of the proposed empirical model. The other measurement set is used to validate the prediction model. The validation results of the proposed prediction model show good agreement between the developed prediction model and the experiment results. The prediction model provided a shape factor that represents the topology of each bending feature, as well.
机译:在这项工作中,我们提出了一种用于折纸的钣金(OSM)折叠的模型,可以预测所需的弯曲力。通过沿着弯曲线引入弯曲功能来实现OSM折叠,命名为材料不连续(MD)。首先,在该工作中介绍的分析为OSM开发了一个不需要管芯的弯曲设置,然后介绍了一种用于分析常规表的弯曲力的方法,而没有任何增加的折叠特征。遵循分析方法,然后使用与开发的OSM弯曲配置相同的实验设置。其次,进行OSM弯曲实验以测量所需的弯曲力,并识别哪些参数显着影响OSM弯曲力。最后,提出了考虑第一步中的分析力和第二步中定义的影响参数的实证模型。使用一部分实验力测量进行回归分析,以确定所提出的经验模型的系数。其他测量集用于验证预测模型。所提出的预测模型的验证结果显示了发育预测模型与实验结果之间的良好一致性。预测模型提供了表示每个弯曲特征的拓扑的形状因子。

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