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Effect of Loading Location of Viscous Medium on Sheet Deformation in Viscous pressure Bulge (VPB) Test

机译:粘性介质加载位置对粘性压力凸起片变形(VPB)试验的影响

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Viscous pressure forming (VPF) uses a highly viscous but flowable material as pressure-carrying medium (PCM). Due to the relative low flowability of viscous medium compared with fluid, nonuniform pressure distribution in viscous medium can be used to control and regulate the deformation sequence of the workpiece through controlling the loading mode of viscous medium. In the present study, viscous pressure bulge (VPB) tests with three kinds of loading location of viscous medium (central zone, corner zone and the whole deformation zone) are conducted and the influences of loading location of viscous medium on sheet deformation behavior are investigated via numerical simulations and experiments. It is found that changing the loading location of viscous medium can greatly affect the deformation behavior of sheet metal. When the viscous medium is injected from the die corner zone, a local high pressure formed at the corner zone of sheet metal and a higher limiting dome height and strains are obtained.
机译:粘性压力成形(VPF)使用高粘性的但可流动的材料,压力承载介质(PCM)。由于与粘性介质流体,非均匀的压力分布可被用于控制和通过控制粘性介质的装载模式调节工件的变形序列相比粘性介质的相对低的流动性。在本研究中,粘性压力凸起(VPB)具有三种粘性介质(中央区,拐角区和整个变形区)的装载位置被进行,并且在片材变形行为粘性介质的装载位置的影响试验进行了研究通过数值模拟和实验。据发现,改变粘性介质的装载位置可以极大地影响金属片的变形行为。当粘性介质从模具拐角区中喷射,获得在金属板的拐角区域和更高的极限球形高度和菌株形成了局部高压力。

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