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Modeling approach to estimate the elastic characteristics of workpiece and shrink-fitted die for cold forging

机译:估算冷锻件和缩口模具弹性特性的建模方法

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摘要

The dimension of cold-forged part is different from that of the forging tool. The difference is influenced with various features. In this study, FEM analyses are performed to investigate the elastic characteristics of die and workpiece. For a comparison with the measured die deflections and dimension of forged part, five FEM modeling approaches have been proposed and simulated by using a commercial FEM-code, DEFORM-2D. Among the various modeling approaches, when the die and workpiece are considered as an elastic material and an elasto-plastic material, respectively, during the forming simulation, the FEM analysis results are well agreed with the experimental results. Furthermore, when dimensional change and stress distribution of shrink-fitted die is considered with realistic die manufacturing, the estimated dimension of forged part are well fitted to the experimental results within the range of ±10 μm. Finally, the reasonable modeling approaches have been proposed that the shrink fitting and machined die dimension could be practically considered and lead to a successful prediction of dimension for cold-forged part.
机译:冷锻零件的尺寸与锻造工具的尺寸不同。差异受各种功能的影响。在这项研究中,进行了有限元分析以研究模具和工件的弹性特征。为了与测得的模具变形和锻造零件的尺寸进行比较,已经提出了五种有限元建模方法,并使用商用有限元代码DEFORM-2D进行了仿真。在各种建模方法中,当模具和工件分别在成形模拟过程中被视为弹性材料和弹塑性材料时,有限元分析结果与实验结果完全吻合。此外,当在实际的模具制造中考虑热缩配合模具的尺寸变化和应力分布时,锻件的估计尺寸在±10μm的范围内与实验结果完全吻合。最后,提出了合理的建模方法,可以实际考虑热缩配合和机加工模具的尺寸,并成功预测了冷锻零件的尺寸。

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