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Analysis of the elastic characteristics of forging die for the cold forged dimensional accuracy

机译:冷锻件尺寸精度的锻模弹性特性分析

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Systematic understanding of dimensional difference between forging tools and forged components is tried by both experimental and FEM analysis. The difference is mainly influenced by the elastic deflections of the die and the elastic recovery of the forged part. Since the die is continuously deformed during the loading, unloading, and ejecting stage, the elastic strains of die are measured at each forging stage using strain gages. For a comparison with the measured elastic strains, two FEM modeling approaches are tried by using a commercial FEM-code, DEFOPM-2D. The first of the two modeling approaches regards the die as a rigid body at an entire forging cycle, and pressure from the deformed part is used as the die stress analysis. For the second approach, it is assumed that both the die and workpiece are considered as a deformable body during the forming simulation. Therefore, the elastic strain of tool is calculated at each deformation step. The FEM analysis result from the consideration of the die as a deformable body are well agreed with the experimental results. As well, the method considering a shrink-fitting factor is discussed. When the shrink-fitting factor is adequately compensated, the analyzed dimensional difference results are well fitted to the measured data within the range of 1 tem.
机译:通过实验和有限元分析尝试对锻造工具和锻造零件之间的尺寸差异进行系统的理解。差异主要受模具的弹性变形和锻件的弹性回复影响。由于在加载,卸载和弹出阶段模具会不断变形,因此在每个锻造阶段都使用应变计测量模具的弹性应变。为了与测得的弹性应变进行比较,使用商用FEM代码DEFOPM-2D尝试了两种FEM建模方法。两种建模方法中的第一种都将模具在整个锻造循环中视为刚体,并将变形部分的压力用作模具应力分析。对于第二种方法,假设模具和工件在成型模拟过程中均被视为可变形体。因此,在每个变形步骤计算工具的弹性应变。将模具视为可变形体的有限元分析结果与实验结果完全吻合。同样,讨论了考虑收缩拟合因子的方法。当收缩拟合系数得到充分补偿时,分析的尺寸差结果可以很好地拟合到1 tem范围内的测量数据。

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