首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Assessment of Corner Failure Depths in the Deep Drawing of 3D Panels Using Simplified 2D Numerical and Analytical Models
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Assessment of Corner Failure Depths in the Deep Drawing of 3D Panels Using Simplified 2D Numerical and Analytical Models

机译:使用简化的2D数值和分析模型评估3D面板深冲中的角部破坏深度

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Methodologies of rapidly assessing maximum possible forming heights are needed for three-dimensional (3D) sheet metal forming processed at the preliminary design stage. In our previous work, we proposed to use an axisymmetric finite element model with an enlarged tooling and blank size to calculate the failure height in a 3D part forming. The amount of enlargement is called center offset, which provides a powerful means using 2D models for the prediction of 3D forming behaviors. In this work, an analytical beam model to calculate the center offset is developed. Starting from the study of a square cup forming, a simple analytical model is proposed and later generalized to problems with corners of an arbitrary geometry. The 2D axisymmetric models incorporated with calculated center offsets were compared to 3D finite element simulations for various cases. Good assessments of failure height were obtained.
机译:对于在初步设计阶段进行的三维(3D)钣金成形,需要快速评估最大可能成形高度的方法。在我们之前的工作中,我们建议使用具有扩大的工具和毛坯尺寸的轴对称有限元模型来计算3D零件成形中的破坏高度。扩大量称为中心偏移量,它提供了使用2D模型预测3D成形行为的强大手段。在这项工作中,开发了用于计算中心偏移的分析光束模型。从研究方形杯成型开始,提出了一个简单的分析模型,随后将其推广到具有任意几何形状的角的问题。在各种情况下,将带有计算出的中心偏移的2D轴对称模型与3D有限元模拟进行了比较。获得了良好的故障高度评估。

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