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A study of electromagnetic free forming in AA5052 using digital image correlation method and FE analysis

机译:基于数字图像相关法和有限元分析的AA5052电磁自由成形研究

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摘要

Electromagnetic forming (EMF) is a promising process that can improve the forming limit under room temperature. In this work, AA5052 sheets were electromagnetic free formed at various discharging energies with an elliptic spiral coil and an elliptical hollow die. Two high-speed cameras with a certain angle to each other photographed the entire deformation process. Full-field displacement, velocity, strain and strain rate were calculated by a digital image correlation (DIC) system. The sheets were deformed into oval domes and the peak strain rate measured was about 12,400 s(-1). A 3D numerical model was established using the method of combing Finite Analysis (FEA) and Boundary Element Method (BEM). The simulation results were in good agreement with the experiments. Sheet deformation at the center region had a significant delay relative to the periphery region, and the velocity curves could be divided into three stages: initial increase, speed sustention and second-time increase. Several microscopic test regions with same final equivalent strain but different strain histories were confirmed by DIC technology and FEA/BEM model. Different strain histories would affect grain distribution and local hardness.
机译:电磁成型(EMF)是一种有前途的工艺,可以提高室温下的成型极限。在这项工作中,AA5052薄板通过椭圆形螺旋线圈和椭圆形空心模具在各种放电能量下无电磁干扰。两个彼此成一定角度的高速相机拍摄了整个变形过程。全场位移,速度,应变和应变率是通过数字图像相关(DIC)系统计算得出的。片材变形为椭圆形圆顶,测得的峰值应变速率约为12,400 s(-1)。使用有限分析(FEA)和边界元方法(BEM)相结合的方法建立了3D数值模型。仿真结果与实验吻合良好。中心区域的片材变形相对于外围区域有明显的延迟,速度曲线可以分为三个阶段:初始增加,速度维持和第二次增加。通过DIC技术和FEA / BEM模型确认了几个具有相同最终等效应变但应变历史不同的微观测试区域。不同的应变历史会影响晶粒分布和局部硬度。

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