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Research on the Dynamic Compensation System of the Cathode Electrode Wear for a Short Electric Arc Machine Tool

机译:短电弧机床的阴极电极磨损动态补偿系统的研究

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摘要

A methodology of on-line monitoring of the diameter of the cathode electrode is put forward in light of the issue that the diameter of the cathode electrode cannot be detected in an accurate manner in short electric arc machine tools. The monitoring methodology is capable of precisely determining the wear amount of the cathode electrode and uses the bus module in the numerical control machine tool to feed the wear amount of the cathode electrode back to the numerical control system (CNC system). The CNC system dynamically adjusts the position of the cathode electrode by driving the compensation shaft to ensure that the discharge gap between the cathode electrode and the anode electrode is within the control range and attain smooth machining. On this basis, a dynamic compensation system for cathode electrode wear for a short electric arc machine tool is developed, which has the potential to automate short electric arc machining and improving the machining performance of the machine tool. The feasibility of this methodology is verified by a machining experiment.
机译:鉴于在短电弧机床的短电弧机床中不能精确地检测阴极电极的直径,向正极电极直径的在线监测的方法理论。监测方法能够精确地确定阴极电极的磨损量,并在数控机床中使用总线模块,以将阴极电极的磨损量馈送回数值控制系统(CNC系统)。 CNC系统通过驱动补偿轴动态调节阴极电极的位置,以确保阴极电极和阳极电极之间的放电间隙在控制范围内并获得光滑的加工。在此基础上,开发了用于短电弧机床的阴极电极磨损的动态补偿系统,具有自动化短电弧加工和提高机床的加工性能的可能性。通过加工实验验证了该方法的可行性。

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