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Experimental Studies on Flexible Forming of Sheet Metals Assisted by Magnetic Force Transfer Medium

机译:磁力传递介质辅助板材柔性成形的实验研究

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To improve the thickness uniformity and increase the forming limit of sheets to enhance their overall quality, a magnetorheological fluid (MRF) was injected into the punch cavity to act as the force transfer medium and fulfill the function of flexible pressing during the sheet bulging process. The rheological properties of the MRF were changed under the influence of a magnetic field produced by loading different currents, which allowed variation of stress states and deformation modes in the 0.75-mm-thick 304 stainless steel sheets. With increasing current (up to 3.5 A), the sheet-forming limit increased by 16.13% at most, and the fracture morphology experienced a certain change. Additionally, both the bulge height and the wall thickness distribution had obvious changes with a punch stroke of 10 mm. According to the experimental analysis, the MRF can be used successfully as a pressure-carrying medium in the sheet forming process.
机译:为了提高厚度均匀性并增加板材的成形极限,以提高板材的整体质量,将磁流变液(MRF)注入冲孔腔中,作为传力介质,并在板材膨出过程中实现柔压的功能。在加载不同电流产生的磁场的影响下,MRF的流变特性发生了变化,从而允许改变0.75毫米厚304不锈钢板的应力状态和变形模式。随着电流的增加(最大3.5 A),成膜极限最多增加了16.13%,并且断裂形态发生了一定的变化。此外,凸出高度和壁厚分布在打孔行程为10 mm时都有明显变化。根据实验分析,MRF可以成功地用作板材成型过程中的承压介质。

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