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Estimating surface hardening profile of blank for obtaining high drawing ratio in deep drawing process using FE analysis

机译:使用Fe分析估算坯料表面硬化曲线,以获得深拉工艺中的高拉伸比

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We constructed an FE axisymmetric model to simulate the effect of partially hardened blanks on increasing the limiting drawing ratio (LDR) of cylindrical cups. We partitioned an arc-shaped hard layer into the cross section of a DP590 blank. We assumed the mechanical property of the layer is equivalent to either DP980 or DP780. We verified the accuracy of the model by comparing the calculated LDR for DP590 with the one reported in the literature. The LDR for the partially hardened blank increased from 2.11 to 2.50 with a 1 mm depth of DP980 ring-shaped hard layer on the top surface of the blank. The position of the layer changed with drawing ratios. We proposed equations for estimating the inner and outer diameters of the layer, and tested its accuracy in the simulation. Although the outer diameters fitted in well with the estimated line, the inner diameters are slightly less than the estimated ones.
机译:我们构建了FE轴对称模型,以模拟部分硬化坯料对增加圆柱形杯子的限制拉伸比(LDR)的影响。我们将弧形硬层划分为DP590空白的横截面。我们假设层的机械性能等同于DP980或DP780。通过将计算的LDR与文献中报道的一个人进行比较,我们通过比较DP590的计算的LDR来验证了模型的准确性。用于部分硬化坯料的LDR从2.11增加到2.11至2.50,在坯料的顶部表面上具有1mm的DP980环形硬层。该层的位置随着拉伸比而改变。我们提出了用于估计层的内径和外径的方程,并在模拟中测试其精度。尽管与估计线合良好的外径,但内径略小于估计的线。

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