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Ultrasonic-Assisted Incremental Microforming of Thin Shell Pyramids of Metallic Foil

机译:超声波辅助的金属箔薄壳金字塔增量微成型

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摘要

Single point incremental forming is used for rapid prototyping of sheet metal parts. This forming technology was applied to the fabrication of thin shell micropyramids of aluminum, stainless steel, and titanium foils. A single point tool used had a tip radius of 0.1 mm or 0.01 mm. An ultrasonic spindle with axial vibration was implemented for improving the shape accuracy of micropyramids formed on 5–12 micrometers-thick aluminum, stainless steel, and titanium foils. The formability was also investigated by comparing the forming limits of micropyramids of aluminum foil formed with and without ultrasonic vibration. The shapes of pyramids incrementally formed were truncated pyramids, twisted pyramids, stepwise pyramids, and star pyramids about 1 mm in size. A much smaller truncated pyramid was formed only for titanium foil for qualitative investigation of the size reduction on forming accuracy. It was found that the ultrasonic vibration improved the shape accuracy of the formed pyramids. In addition, laser heating increased the forming limit of aluminum foil and it is more effective when both the ultrasonic vibration and laser heating are applied.
机译:单点增量成型用于快速成型钣金零件。该成型技术被应用于铝,不锈钢和钛箔的薄壳微金字塔的制造。使用的单点工具的刀尖半径为0.1 mm或0.01 mm。实施了具有轴向振动的超声波主轴,以提高在5至12微米厚的铝,不锈钢和钛箔上形成的微金字塔的形状精度。还通过比较在有和没有超声振动的情况下形成的铝箔的微型金字塔的成形极限来研究可成形性。逐渐形成的金字塔形状为截头金字塔,扭曲金字塔,阶梯金字塔和星状金字塔,大小约为1毫米。仅对钛箔形成了一个较小的截棱锥,用于定性研究尺寸减小对成形精度的影响。已经发现,超声振动提高了所形成的金字塔的形状精度。另外,激光加热增加了铝箔的成形极限,并且当同时施加超声振动和激光加热时更有效。

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