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Influence of drawbead geometry on sheet metal forming

机译:拉延筋几何形状对钣金成形的影响

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This paper describes a numerical model devised to determine the pull force, shear force and bending moment required to form sheet metal subject to plane strain along the width. This model is formulated to fit with the finite element package MARC. To simplify the analysis, it is assumed that the planes remain unchanged and always normal to the mid-surface, and the plane stress develops across the thickness. Bending, unbending and reverse bending of the strip during deformation is analyzed and the constitutive law for this cyclic process is discussed. The output of the model provides the geometry of the deformed shape, the forces and moments applied along the strip, and stress-strain distributions. He forces are expressed in terms of the drawbead geometry and coefficient of friction. The model s used for the investigations of blankholding conditions and friction on the deformation of the material which will be passed through the drawbead gap. The numerical results were found in good agreement with the experimental results.
机译:本文描述了一种数值模型,该模型旨在确定在沿宽度方向承受平面应变的钣金时所需的拉力,剪切力和弯矩。制定该模型以适合有限元软件包MARC。为了简化分析,假设平面保持不变,并且始终垂直于中表面,并且平面应力在整个厚度方向上逐渐增大。分析了带钢在变形过程中的弯曲,未弯曲和反向弯曲,并讨论了该循环过程的本构定律。模型的输出提供变形形状的几何形状,沿钢带施加的力和力矩以及应力应变分布。力以拉延筋的几何形状和摩擦系数表示。该模型用于研究毛坯保持条件以及将通过拉延筋间隙的材料变形的摩擦。数值结果与实验结果吻合良好。

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