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Thickness control in a new flexible hybrid incremental sheet forming process

机译:新型柔性混合增量板成型工艺中的厚度控制

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摘要

Incremental sheet forming is a cost-effective process for rapid manufacturing of sheet metal products. However, incremental sheet forming also has some limitations such as severe sheet thinning and long processing time. These limitations hamper the forming part quality and production efficiency, thus restricting the incremental sheet forming application in industrial practice. To overcome the problem of sheet thinning, a variety of processes, such as multi-step incremental sheet forming, have been proposed to improve the material flow and thickness distribution. In this work, a new process has been developed by introducing multi-point forming as preforming step before conducting incremental sheet forming processing. Employing an established hybrid sheet forming system and the corresponding thickness prediction model, the preform shape can be optimized by employing a two-step optimization approach to improve the sheet thickness distribution. In total, two case study examples, including a hemisphere part and an aerospace cowling part, are fabricated using the developed hybrid flexible process in this study. The experimental results show that the hybrid flexible forming process with the optimal preform design could achieve sheet parts with more uniform thickness distribution and reduced forming time.
机译:增量板料成型是一种快速制造金属板产品的经济有效的方法。但是,渐进片材成形还具有一些局限性,例如严重的片材薄化和较长的处理时间。这些限制阻碍了成形零件的质量和生产效率,从而限制了工业实践中增量板成形的应用。为了克服片材变薄的问题,已经提出了多种工艺,例如多步增量片材成型,以改善材料流动和厚度分布。在这项工作中,通过在进行增量片材成形处理之前引入多点成形作为预成形步骤,开发了一种新工艺。利用已建立的混合片材成形系统和相应的厚度预测模型,可以通过采用两步优化方法来改善片材厚度分布来优化预成型坯的形状。总共使用本研究中开发的混合柔性工艺制造了两个案例研究示例,包括半球部分和航空整流罩部分。实验结果表明,采用最佳预成型件设计的混合柔性成型工艺可以使板材零件的厚度分布更均匀,成型时间更短。

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