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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Numerical simulation and experimental investigation of incremental sheet forming with an elastic support
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Numerical simulation and experimental investigation of incremental sheet forming with an elastic support

机译:弹性支撑增量板成形的数值模拟与实验研究

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摘要

Incremental sheet forming (ISF), a flexible forming process of rapid prototyping, enables complex shapes to be produced without dedicated dies and suits for small-batch production with short lead time. Support is an important component of incremental forming, which is critical to ensure the geometry precision of parts. However, rigid support is usually adopted which costs much and goes against springback compensation. Thus, in this study, the influence of elastic supports on springback and formability of incremental forming was explored based on numerical simulation and experimental validation. Three kinds of materials (polyurethane material, rubber material, and wood material) were selected to obtain the supports of incremental forming. It was found if a same tool path is employed the more elasticity the support has the larger the shape error is. Additionally, a springback compensation method with a rubber support based on the tool path revision was proposed to improve the geometrical accuracy. This strategy makes uses of the significant elastic deformation of the rubber support, and needs no support repair or change especially compared with a multistage process.
机译:增量片材成型(ISF)是一种快速成型的灵活成型工艺,无需复杂的模具即可生产出复杂的形状,并且不适用于短批量的小批量生产。支撑是增量成型的重要组成部分,对于确保零件的几何精度至关重要。但是,通常采用刚性支撑,成本高昂并且不利于回弹补偿。因此,在本研究中,基于数值模拟和实验验证,探讨了弹性支撑对回弹和增量成形性的影响。选择三种材料(聚氨酯材料,橡胶材料和木材材料)以获得增量成型的支撑。发现如果采用相同的刀具路径,则支撑件的弹性越大,形状误差就越大。此外,提出了一种基于刀具路径修正的带橡胶支撑的回弹补偿方法,以提高几何精度。该策略利用了橡胶支撑物的显着弹性变形,并且不需要支撑物的修理或更换,尤其是与多阶段工艺相比。

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