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Experimental and numerical study of reverse re-drawing of anisotropic sheet metals

机译:各向异性片金属反向重新绘制的实验性和数值研究

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This study deals with the experimental and numerical reverse re-drawing of cylindrical cups. Experiments were carried out on a classical tensile test machine of maximum load 100 kN. Experimental data consist of force-displacement curves of the punch and thickness distribution in the cup wall at 0°, 45° and 90° to the rolling direction (RD). The drawing process was simulated using both the dynamic explicit finite element code Pam-Stamp and the static implicit home code DD3IMP. Two extreme cases have been considered: a dynamic explicit calculation with shell elements, leading to low CPU times and a static implicit calculation with solid elements, which is CPU time-consuming. The accuracy of these numerical results, when compared to experimental ones, is then studied. Moreover, the occurrence of strain path changes during the first and the second stage is also investigated in order to estimate their influence.
机译:该研究涉及圆柱形杯的实验和数值逆向重绘。在最大负载100kn的经典拉伸试验机上进行实验。实验数据由杯壁的冲头和厚度分布的力 - 位移曲线组成,在0°,45°和90°到滚动方向(RD)。使用动态显式有限元代码PAM标记和静态隐式主页代码DD3IMM模拟绘图过程。已经考虑了两个极端情况:使用shell元素的动态显式计算,导致低CPU次数和具有固体元素的静态隐式计算,即CPU耗时。然后研究了与实验结果相比这些数值结果的准确性。此外,还研究了在第一和第二阶段期间的应变路径变化的发生,以估计它们的影响。

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