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Study on an automotive refill opening cap compound process based on punching and incremental forming

机译:基于冲压和增量成形的汽车再填充开口帽的研究

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An automotive refill opening cap manufactured through the traditional punching process usually performs with lower rigidity, and the punching process increases the production cost and manufacturing cycle, which goes against the fast fabricating requirement in modern industry because of the multi-die produced. In this paper, the compound process, adopting incremental sheet forming (ISF) and punching forming, was used to manufacture the part to solve the problems above by utilizing ISF in the pre-forming stage and punching forming in the subsequent stage. Four parameters, including the pre-forming height (PH), the pre-forming press amount (PPA), the pre-forming tool diameter (PTD) and the pre-forming angle (PA), were taken as test factors in the pre-forming stage, and the max thickness reduction percentage (MTRP) was taken as the test target. The effect of the factors was analyzed using the finite element method and an orthogonal test for the target. The orthogonal test result shows that the major factors were the PH and the PPA, and the secondary factors were the PA and the PTD. The PTD and the PA were obtained through a mean analysis as 8 mm and 40, respectively. A function showing the relationship between the major factors and the target was established through the response surface method to obtain the interaction effect between the PH and the PPA for the target. The PH and the PPA were found by a response surface methodology to be 15 mm and 0.5 mm, respectively. The compound process was verified through an experiment.
机译:通过传统冲压过程制造的汽车refill开口盖通常具有较低的刚性,并且冲压过程增加了生产成本和制造循环,这反对现代行业的快速制造要求,因为产生的多模生产。在本文中,采用增量板形成(ISF)和冲压成形的化合物工艺来制造该部件以通过在后续阶段的预成型阶段和冲压形成中通过ISF来解决上述问题。四个参数,包括预成型高度(pH),预形成压制量(PPA),预成型刀具直径(PTD)和预成形角度(PA)被视为前的测试因子 - 形成阶段,并将最大厚度减少百分比(MTRP)作为测试目标。使用有限元方法和靶的正交试验分析因子的效果。正交试验结果表明主要因素是pH和PPA,次要因素是PA和PTD。通过平均分析分别为8mm和40获得PTD和PA。通过响应表面方法建立了显示主要因素和靶之间的关系的功能,以获得pH与PPA之间的相互作用效果。通过响应表面方法分别发现pH和PPA,分别为15mm和0.5mm。通过实验验证复合过程。

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