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Predicting the forming limit diagram (FLD) for sheet metals with planar anisotropy

机译:预测平面各向异性的板材金属的成形限位图(FLD)

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We have employed Hill's 1948 yield criterion to predict the forming limit curve for planar anisotropic sheet materials by using bifurcation theory. The effects of the material anisotropic parameters, R_0, R_(45) and R_(90), on the orientation of the neck and the forming limit diagram are analyzed in a systematic manner. It is found that in biaxial stretching, the value of R_0 significantly affects the limit strains, whereas R_(90) has a small contribution. On the other hand, R_(45) has no effect on the limit strains. In a drawing mode of deformation, the effects of the R's on the limit strains are insignificant. The calculated shear band (or localized neck) is assumed to take place along the zero-extension direction independently of the R values. In the case of biaxial tension deformation, the neck will always form along a principal direction. For a sheet material whose anisotropic parameter R in the major strain direction is smaller than that in the minor strain direction, the neck will form along the major strain if the state of deformation is in the vicinity of equal-biaxial stretching. In all other cases the neck will form along the minor strain direction. The forming limits as predicted by this model agree well with experimental data
机译:我们使用Hill 1948的屈服标准来通过使用分叉理论来预测平面各向异性片材的成形极限曲线。以系统的方式分析了材料各向异性参数,R_0,R_(45)和R_(90)的效果,在颈部和成形极限图的方向上进行分析。结果发现,在双轴拉伸中,R_0的值显着影响极限菌株,而R_(90)具有较小的贡献。另一方面,R_(45)对极限菌株没有影响。在绘图变形模式中,R在极限菌株上的效果是微不足道的。假设计算的剪切带(或局部颈部)沿着零延伸方向独立于R值进行。在双轴张力变形的情况下,颈部将始终沿主要方向形成。对于主要应变方向上的各向异性参数R的片材小于次要应变方向的薄片材料,如果变形状态在相等的双轴拉伸附近,颈部将形成沿着主应变。在所有其他情况下,颈部将沿着微小的应变方向形成。如此模型预测的形成限制与实验数据很好

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