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SERVO SCANNING EDM FOR 3D MICRO STRUCTURES

机译:用于3D微结构的伺服扫描电火花加工

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摘要

In electro discharge machining (EDM) for 3D micro structures, the electrode wear is serious and it needs to be compensated in process. To obtain a better balance of the machining accuracy and efficiency, a servo scanning EDM method is proposed for 3D micro structures, in which the electrode wear is compensated on real-time by controlling the discharge gap constant.It is supposed reasonably that the machining depth of each layer in servo scanning EDM is consistent if discharge gap is kept preferably.The servo scanning EDM strategies include the modeld esign by Pro/Engineer (Pro/E), the plan and simulation of scanning path, and the machining process. The 3D micro structures are machined by scanning layer-by-layer under servo control of the electrode with monitoring discharge gap signal. The CAM, gap servo control, and real-time electrode wear compensating are integrated into the machining system.The evaluation experiments of servo scanning EDM and the typical machining experiments of 3D micro structures have been carried out. The machining resultsshow that the electro discharge in the servo scanning EDM is more stable. Servo scanning micro EDM is propitious to improve machining accuracy and efficiency in 3D micro structures.
机译:在用于3D微结构的放电加工(EDM)中,电极磨损严重,需要在过程中进行补偿。为了更好地平衡加工精度和效率,提出了一种用于3D微结构的伺服扫描电火花加工方法,该方法通过控制放电间隙常数来实时补偿电极磨损。合理地假定加工深度如果最好保持放电间隙,则伺服扫描电火花加工中各层的厚度是一致的。伺服扫描电火花加工策略包括Pro / Engineer(Pro / E)建模的设计,扫描路径的计划和仿真以及加工过程。通过在电极的伺服控制下逐层扫描并监控放电间隙信号来加工3D微结构。 CAM,间隙伺服控制和实时电极磨损补偿已集成到加工系统中。进行了伺服扫描电火花加工的评估实验和3D微结构的典型加工实验。加工结果表明,伺服扫描电火花放电更加稳定。伺服扫描微型EDM有助于提高3D微型结构的加工精度和效率。

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