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Numerical simulation and experimental investigation of multistage incremental sheet forming

机译:多级增量板成形的数值模拟与实验研究

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Multistage forming is usually adopted to form those parts which have steep angles or even vertical walls during incremental sheet forming (ISF) process. In order to study the multistage incremental forming further, based on a finite element method model which was experimentally verified, different forming strategies were adopted to form a frustum of cone with a wall angle of 30° to research the influence of the number of forming stages (n) and the incremental wall angle between the two adjacent stages (Δα) on the formability of ISF. The simulation results including the thickness distribution, the equivalent plastic strain, and the magnitude of springback were analyzed in detail. It was found that with the growth of n, the minimum thickness increases largely, and more uniform thickness distribution is achieved, but the quantity of springback becomes larger in contrast with a single-pass process because of the accumulation of springback during each forming stage. Furthermore, an expression to figure out the appropriate value of n was given. In addition, the maximum thickness reduction decreases initially and then increases as the value of Δα grows. Meanwhile, it indicates that there is no relation between Δα and the quantity of springback.
机译:通常采用多级成型来形成那些在增量板材成型(ISF)过程中具有陡峭角度甚至垂直壁的零件。为了进一步研究多级渐进成形,在实验验证的有限元方法模型的基础上,采用不同的成形策略形成锥角为30°的锥台,研究了成形阶段数的影响。 (n)和两个相邻级之间的增量壁角(Δα)对ISF的可成形性。详细分析了包括厚度分布,等效塑性应变和回弹量在内的仿真结果。已经发现,随着n的增加,最小厚度大大增加,并且获得了更均匀的厚度分布,但是与回弹量相比,回弹量由于每个成形阶段期间的回弹的积累而变得更大。此外,给出了找出n的适当值的表达式。另外,最大厚度减小量首先减小,然后随着Δα值的增大而增大。同时,这表明Δα与回弹量之间没有关系。

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