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Experimental investigation of the real-time micro-control of the WEDM process

机译:电火花线切割工艺实时微控制的实验研究

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摘要

The wire electrical discharge machining (WEDM) process has inherent instability due to its high complexity and stochastic characteristics. For more stable and efficient machining, the process must be actively controlled in real time while precisely determining the state of the instantaneous machining process. Feedback information when used in conjunction with an unstable discharge pulse ratio and instantaneous discharge energy can be applied to this micro-control system. This study presents the design and implementation of a system that fulfills these demands. Experimental results demonstrate that the proposed system is capable of simultaneously enhancing the machining stability, machining efficiency, and machining performance. For fine machining, the surface quality was enhanced by approximately 10 % without a loss of machining efficiency. Overall, both the feedrate and the surface roughness could be improved concurrently by more than 5 %.
机译:线放电加工(WEDM)工艺由于其高复杂性和随机特性而具有固有的不稳定性。为了更稳定,更有效地进行加工,必须实时地主动控制过程,同时还要精确确定瞬时加工过程的状态。当与不稳定的放电脉冲比和瞬时放电能量结合使用时,反馈信息可以应用于此微控制系统。这项研究提出了满足这些要求的系统的设计和实现。实验结果表明,所提出的系统能够同时提高加工稳定性,加工效率和加工性能。对于精细加工,表面质量可提高约10%,而不会降低加工效率。总体而言,进给率和表面粗糙度均可同时提高5%以上。

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