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Electrode Feeding Path Searching for 5-Axis EDM of Integral Shrouded Blisks

机译:整体式带罩炸药五轴电火花加工的电极进给路径搜索

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With a closed shroud on the top of their blades, the so-called integral shrouded blisks gained more and more applications in turbine engines. 5-axis electrical discharge machining (EDM) is regarded as the most effective approach for integral shrouded blisks machining. The tool electrode is shaped and reduced according to the profile of the flow channels to get enough space for electrode feeding. The key of EDM of integral shrouded blisks is to search an interference-free and optimized electrode feeding path. In this paper, a new electrode feeding path searching method called tangent tracking was proposed. Based on the dynamic programming methodology, the electrode feeding path searching process is decomposed into a number of electrode attitude optimization subproblems. Each subproblem can be further divided into two phases: pre-optimization and re-optimization. The purpose of electrode attitude pre-optimization is to make the tangent vector of the electrode centre curve coincide with that of the flow channel centre curve at the flow channels outlet section. If the electrode interferes with the blisk in the pre-optimization, the re-optimization needs to be conducted in order to find an interference-free attitude in the vicinity of the pre-optimized result. The tangent tracking method is validated by an integral shrouded blisk machining experiment.
机译:凭借其叶片顶部的封闭罩,所谓的整体罩式叶盘在涡轮发动机中得到了越来越多的应用。 5轴放电加工(EDM)被认为是整体带罩叶轮加工的最有效方法。根据流动通道的轮廓对工具电极进行成形和缩小,以获取足够的空间用于进给电极。整体式罩式电火花EDM的关键是寻找无干扰且优化的电极进给路径。本文提出了一种新的切线跟踪电极进给路径搜索方法。基于动态编程方法,将电极馈电路径搜索过程分解为许多电极姿态优化子问题。每个子问题可以进一步分为两个阶段:预优化和重新优化。电极姿态预优化的目的是使电极中心曲线的切线矢量与流道出口部分处的流道中心曲线的切线矢量重合。如果电极在预优化过程中干扰了叶盘,则需要进行重新优化,以便在预优化结果附近找到无干扰的姿态。切线跟踪方法已通过整体罩式叶轮机加工实验得到验证。

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