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Computer aided analysis and design of sheet metal forming processes: Part Ⅱ - Deformation response modeling

机译:钣金成形过程的计算机辅助分析和设计:第二部分-变形响应建模

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摘要

The continually decreasing lead-times for the design approval and the production of stamping dies enforce the stamping methods engineer to apply the finite element method more effectively in the industrial settings. The selection of a proper finite element plasticity model and the efficient utilization of the material formability data are main factors controlling the accuracy of the sheet metal deformation response prediction using a computer simulation code. Especially with the introduction of high strength sheet metals in to the stamping processes the capabilities and limitations of a plasticity model used in finite element process simulations should be reevaluated in order to have an accurate assessment of the part formability and springback deformations. In this part of the study, following a review of the sheet metal deformation properties in conjunction with the initial yield loci and plastic anisotropy concepts, two rate-independent anisotropic plasticity models are employed in the deformation modeling of a stamping part. Their performances in the formability and springback analyses are demonstrated and comparisons are presented.
机译:设计批准和冲压模具生产的交货时间不断减少,迫使冲压方法工程师将有限元方法更有效地应用于工业环境。选择合适的有限元塑性模型和有效利用材料可成形性数据是使用计算机仿真代码控制钣金变形响应预测精度的主要因素。尤其是在冲压过程中引入高强度钣金时,应重新评估在有限元过程仿真中使用的塑性模型的功能和局限性,以便对零件的可成形性和回弹变形进行准确评估。在研究的这一部分中,在结合初始变形轨迹和塑性各向异性概念对钣金变形特性进行了回顾之后,在冲压零件的变形建模中采用了两个与速率无关的各向异性塑性模型。演示了它们在可成形性和回弹分析中的性能,并进行了比较。

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