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Die design optimization on sheet metal forming with considering the phenomenon of springback to improve product quality

机译:考虑回弹现象的钣金成形模具设计优化,以提高产品质量

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The process of sheet metal forming is one of the very important processes in manufacture of products mainly in the automotive field. In sheet metal forming, it is added a certain size at the die to tolerate a result of the elasticity restoration of material. Therefore, when the product is removed from the die then the process elastic recovery will end within the allowable tolerance size. Extra size of the die is one method to compensate for springback. The aim of this research is to optimize the die by entering a springback value in die design to improve product quality that is associated with accuracy the final size of the product. Simulation processes using AutoForm software are conducted to determine the optimal parameters to be used in the forming process. Variations the Blank Holder Force of 77 N, 97 N, and 117 N are applied to the plate material. The Blank Holder Force application higher than 97 N cannot be conducted because the Forming Limit Diagram indicates the risk of tearing. Then the Blank Holder Force of 37 N, 57 N and 77 N are selected and applied in cup drawing process. Even though a few of wrinkling are appear, however there is no significant deviation of dimension between the product and the design of cup.
机译:钣金成型过程是主要在汽车领域中制造产品的非常重要的过程之一。在金属板成型中,它在模具上增加一定的尺寸,以承受材料弹性恢复的结果。因此,当产品从模具中取出时,过程弹性恢复将在允许的公差范围内结束。模具的额外尺寸是补偿回弹的一种方法。这项研究的目的是通过在模具设计中输入回弹值来优化模具,以提高与产品最终尺寸精度相关的产品质量。使用AutoForm软件进行仿真过程,以确定要在成型过程中使用的最佳参数。将77 N,97 N和117 N的坯料夹持力变化施加到板材上。不能进行高于97 N的毛坯夹持力应用,因为成形极限图表明存在撕裂的危险。然后选择37 N,57 N和77 N的坯料夹持力,并将其施加到杯子拉伸过程中。即使出现了一些皱纹,但是产品和杯子的设计之间并没有明显的尺寸偏差。

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