首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Feedrate planning for synchronized movements involving rotary axes in multi-axis EDM for shrouded blisks
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Feedrate planning for synchronized movements involving rotary axes in multi-axis EDM for shrouded blisks

机译:用于同步运动的进给涉及多轴EDM中的旋转轴的运动罩,用于遮盖的外来发

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摘要

As compared to traditional machining approaches, multi-axis electrical discharge machining (EDM) has its unique advantages in machining components which are made of difficult-to-cut materials and have complex structures, such as shrouded blisks. Manufacturing processes of such complex parts involve synchronized movements of both linear and rotary axes. Due to different dimensions of angular and linear velocities, there is a discrepancy between demanded and actual feedrates. This feedrate discrepancy, on the one hand, can cause feedrate fluctuations leading to a machining instability, and on the other hand, can cause inaccurate heights of electrode jumps. In order to ensure the machining stability, this paper proposes a feedrate planning method for multi-axis EDM of shrouded blisks. In this method, CAD models of both an electrode and an shrouded blisk are utilized to extract characteristic radii for feedrate planning in G-code generations. A feedrate post-processing algorithm for multi-axis EDM for shrouded blisks is proposed to reduce feedrate fluctuations and achieve a proper electrode jump height. Data analysis demonstrates the resultant feedrate can be kept in a proper range. In comparative multi-axis EDM for shrouded blisks, the machining time has been reduced by up to 21.43 % by using the proposed feedrate planning method.
机译:与传统的加工方法相比,多轴放电加工(EDM)在加工部件方面具有独特的优势,该组件由难以切割的材料制成并且具有复杂的结构,例如遮罩的外部。这种复杂部件的制造过程涉及线性和旋转轴的同步运动。由于角度和线性速度的不同尺寸,所需和实际进给之间存在差异。这种进料差异一方面会导致进料波动导致加工不稳定,另一方面,可能导致电极跳跃的不准确的高度。为了确保加工稳定性,本文提出了一种用于多轴EDM的遮蔽质询的进给速率计划方法。在该方法中,使用电极和笼罩的闪烁的CAD模型来提取用于在G代码几代内的进给规划的特征半径。提出了一种用于用于遮蔽外部的多轴EDM的进给后处理算法,以减少进给率波动并实现适当的电极跳跃高度。数据分析表明所得进给率可以保持在适当的范围内。在对遮罩质询的比较多轴EDM中,通过使用所提出的进给规划方法,加工时间减少了多达21.43%。

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