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Study of Machining Accuracy of Micro Punching Mold Using Micro-EDM

机译:使用微射频进行微冲模加工精度的研究

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As one of the micro-forming technologies, micro punching process produces workpieces in high efficiency and low cost. It has attracted the attention of researchers from all over the world in recent years. The current micro punching mold is prepared on-line by micro electrical discharge machining (EDM) with simple cross-sectional shape. During punching, the punching load is small due to the soft material and small circumference of workpiece. To form micro part with complex cross sectional shape using micro punching technology, three-dimensional micro-EDM milling and reversed micro EDM are used to generate micro die and punch on-line to provide a solution to alignment of die and punch on machine. In order to obtain high dimensional accuracy of micro punching mold, in this paper, dimensional errors including electrode, reversed electrode, micro die and micro punch caused during machining process are identified. The correlation between dimensional errors and the clearance of micro die and micro punch are analyzed. Based on preliminary experimental results and dimensional error control strategy, the final punching clearance of micro punch molds was machined within the required range.
机译:作为一种微观成形技术之一,微冲压过程以高效率和低成本生产工件。它近年来引起了来自世界各地的研究人员的注意。目前的微冲压模由微电路放电加工(EDM)在线,具有简单的横截面形状。在冲压期间,由于柔软的材料和工件小的圆周,冲压负荷很小。为了使用微型冲压技术形成具有复杂横截面形状的微部分,三维微EDM铣削和反转的微EDM用于产生微模和冲床,以提供模具和打孔机上的溶液。为了获得微冲压模具的高尺寸精度,在本文中,鉴定了包括电极,反向电极,微模和在加工过程中引起的微冲击的尺寸误差。分析了尺寸误差与微模和微冲头的间隙之间的相关性。基于初步实验结果和尺寸误差控制策略,在所需范围内加工微冲模模具的最终冲压间隙。

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