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Expert drawbead models for sectional FEM analysis of sheet metal forming processes

机译:专家拉延筋模型,用于钣金成形过程的截面有限元分析

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Expert drawbead models which embody the drawing characteristics of the drawbead suitable for a finite element analysis of sheet metal forming processes are developed. The mathematical models of basic drawbeads such as circular drawbeads, stepped drawbeads, and squared drawbeads, of which the dimensions and processes are various, are first derived using bending theory and the belt-pulley equation. Next, experiments for finding the drawing characteristics of the drawbeads are performed. Based on the mathematical models, the expert models are then developed employing a linear multiple regression method by which the deviation of the drawing characteristics between the drawing test and the mathematical model is minimized. For the expert models of combined drawbeads such as double-circular drawbeads, double-stepped drawbeads, circular-and-stepped drawbead, etc., those for the basic drawbeads are combined. Finally, to verify the expert models developed, the drawbead restraining force and bead-exit pre-strain calculated by the expert models of the double-circular drawbead and the circular-and-stepped drawbead are compared with those of experiments. The predictions of the expert models agree well with the experimental measurements.
机译:开发了体现拉延筋拉伸特性的专家拉延筋模型,适用于钣金成形过程的有限元分析。首先使用弯曲理论和皮带轮方程推导基本拉延筋的数学模型,例如圆形拉延筋,阶梯拉延筋和方形拉延筋,其尺寸和过程各不相同。接下来,进行用于发现拉延筋的拉延特性的实验。然后,基于数学模型,使用线性多元回归方法开发专家模型,通过该方法,可以最大程度地减小图纸测试与数学模型之间的图纸特性偏差。对于组合拉筋的专家模型,例如双圆形拉筋,双阶梯拉筋,圆形阶梯拉筋等,将基本拉筋的模型组合在一起。最后,为了验证所开发的专家模型,将由双圆形拉延筋和圆阶梯拉延筋的专家模型计算出的拉延筋约束力和出筋预应变与实验结果进行了比较。专家模型的预测与实验测量非常吻合。

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