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Sheet bulging experiment with a viscous pressure-carrying medium

机译:粘性承压介质的膨胀试验

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Usually, flexible die forming technology and conventional stamping technology have their own separate and limited application range, as well as their own particular shortcomings. So a more advanced forming method is needed to meet the requirements of increasing component complexity. Viscous pressure forming (VPF). which uses a semi-solid viscous material as the pressure-carrying medium, is suitable for forming parts requiring large sheet deformation using a sequential forming method. In this paper, a sheet metal bulging experiment with three kinds of pressure-carrying media, viscous medium, polyurethane and steel, was studied. The results show that the specimens formed with VPF, compared with those formed with polyurethane and steel, have less wall-thinning and consequently a more uniform wall thickness distribution, and the shape of part is closer to the desired hemisphere. When bulged with back-pressure, the formability of sheet metal can be improved significantly. Thus VPF is a promising sheet metal forming method.
机译:通常,柔性模头成型技术和常规冲压技术具有各自独立且有限的应用范围,以及其各自的缺点。因此,需要一种更先进的成型方法来满足增加零件复杂性的要求。粘性压力成型(VPF)。它使用半固体粘性材料作为承压介质,适用于使用顺序成型方法成型需要较大板材变形的零件。本文研究了使用三种压力传递介质(粘性介质,聚氨酯和钢)的钣金膨胀实验。结果表明,与由聚氨酯和钢制成的试样相比,由VPF制成的试样壁稀少,因此壁厚分布更均匀,零件的形状更接近所需的半球。当用背压隆起时,可以显着提高钣金的可成形性。因此,VPF是一种有前途的钣金成型方法。

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