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首页> 外文期刊>Journal of Materials Processing Technology >Comparison on linear synchronous motors and conventional rotary motors driven Wire-EDM processes
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Comparison on linear synchronous motors and conventional rotary motors driven Wire-EDM processes

机译:直线同步电机和传统旋转电机驱动的Wire-EDM工艺的比较

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摘要

Motion control of electrical discharge machining (EDM) processes is getting improved in recent years on both drive types and their control performance. This paper aims at comparison of the Wire-EDM's performance between driven by linear synchronous motors (LSM) and that by conventional rotary motors associated with ball-screw. Mathematical models of both drive types are derived and their parameters are identified through standard procedures. Then some theoretical characteristics are revealed, and the models are verified through conducted experiments. Since both drives are equipped with optical linear scales of sub-micrometer resolution, the measurements are compared on the same level. Specific phenomena such as wear and transmission stiffness of ball-screw driven table and cogging force of direct LSM driven table are discussed. Then the machining errors occurred in corners and arcs cutting, and meso-scaled parts are compared in the Wire-EDM processes. Experimental results showed that the accuracy and deviation outcomes with direct drive are much better than those with conventional drive, especially in high feed rate and around points where feed direction was changed.
机译:近年来,无论是驱动类型还是控制性能,放电加工(EDM)过程的运动控制都得到了改进。本文旨在比较由线性同步电动机(LSM)和与滚珠丝杠相关的传统旋转电动机驱动的Wire-EDM的性能。得出两种驱动器类型的数学模型,并通过标准程序确定其参数。然后揭示了一些理论特征,并通过进行的实验验证了模型。由于两个驱动器均配有亚微米分辨率的光学线性标尺,因此可以在同一水平上比较测量结果。讨论了诸如滚珠丝杠从动工作台的磨损和传动刚度以及直接LSM从动工作台的齿槽力等具体现象。然后,在转角和圆弧切割中发生加工误差,并在Wire-EDM工艺中比较中尺度零件。实验结果表明,直接驱动的精度和偏差结果要比传统驱动好得多,尤其是在高进给率和进给方向改变的点附近。

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