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Additive manufacturing of a stretch forming die using 3D printing technology

机译:使用3D印刷技术的拉伸成型模具的添加剂制造

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3D printing is a maturing technology,that can be used from fast prototyping to industrial scale.A key aspect of 3D printing is the ability to control the material density,thus it's hardness.This factor assures that 3D printing is not only economical competitive,but it also provides parts with improved mechanical properties.Furthermore,it is a good alternative for manufacturing stretch-forming dies.Implementing 3D printed dies offers an economical advantage,as cost for producing are a fraction of the cost of standard metal die,and the technology behind the process is simpler.Therefore,in this paper we have chosen to study stretch forming on a die that has components 3D printed from polylactic acid(PLA).The length and width of the punch is maintained constant while the radius varied from R180 ÷ R1080 [mm],with an increment of 180 [mm].A total number of 6 punches were used in these experiments to stretch sheet metal stripes made of aluminium 2024-T0,a material specific for aircraft skin.In addition to the shape of the resulted part,in the present study other process parameters have been investigated(punch force,part radius and deviation from circularity).
机译:3D打印是一种成熟技术,可以从快速原型设计到工业规模。3D打印的关键方面是控制材料密度的能力,因此是硬度。本因素确保3D打印不仅经济竞争,但它还提供了具有改进的机械性能的零件。繁殖,它是制造拉伸成型模具的良好替代方案。根据标准金属模具的生产成本,可将3D印刷模具提供经济优势,是一种很好的替代品。生产成本是标准金属模具成本的一小部分,以及该技术的成本在这个过程后面是更简单的。因此,在本文中,我们选择在具有从聚乳酸(PLA)印刷的部件3D上的模具上进行研究的延伸形成。在R180÷的半径变化时,冲头的长度和宽度保持恒定。 R1080 [mm],增量为180 [mm]。在这些实验中使用了6个冲头的总数,以拉伸由铝2024-t0制成的钣金条纹,用于飞机皮的材料.I n除了所得部分的形状中,在本研究中,已经研究了其他工艺参数(冲压力,部分半径和偏离圆形的偏差)。

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