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Experimental study of ELID grinding based on the active control of oxide layer

机译:基于氧化物层主动控制的ELID磨削实验研究

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摘要

The oxide layer state directly relates to the grinding efficiency and machining quality in Electrolytic Inprocess Dressing (ELID) grinding. In order to monitor and control the state of the oxide layer, a new high-frequency pulse power source is proposed for ELID grinding. It uses the superposition of big and small pulses to achieve periodical electrolysis and to adjust oxide layer state. Based on an analysis of current change with duty cycle, a pulse-based fuzzy control program was designed to control the state of the oxide layer within a certain range and the oxide layer grinding efficiency in different oxide layer states was studied. The results show that the new power source could maintain a stable grinding process and that the dressing current should be controlled according to the grinding wheel grain size.
机译:氧化层状态直接关系到电解过程修整(ELID)研磨的研磨效率和加工质量。为了监测和控制氧化层的状态,提出了一种用于ELID研磨的新型高频脉冲电源。它使用大和小脉冲的叠加来实现周期性的电解并调整氧化物层的状态。在分析电流随占空比变化的基础上,设计了基于脉冲的模糊控制程序,将氧化层的状态控制在一定范围内,研究了不同氧化层状态下氧化层的磨削效率。结果表明,新电源可以保持稳定的磨削过程,修整电流应根据砂轮粒度进行控制。

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