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Precision internal grinding of bearing steel based on the state control of oxide layer with electrolytic in-process dressing

机译:基于氧化层状态控制和电解修整的轴承钢精密内磨

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摘要

The oxide layer state directly relates to the grinding efficiency and machining quality in electrolytic in-process (ELID) grinding. However, no proper and detailed information has been found about internal grinding by controlling the state of the oxide layer. Therefore, in this investigation, some experiments have been conducted based on the active control of the oxide layer state to study internal grinding performance and ground surface qualities. The experimental comparison with the traditional ELID grinding has been carried out to prove the advantages of the proposed method in dynamic equilibrium. The influences of the grinding and electrical parameters on the workpiece surface quality, force characteristics and material removal rate of internal machining of bearing steel have been investigated in detail. The experimental results show that the new method can realize a stable internal grinding process even with finer abrasive wheels of W10 and W2.5.
机译:氧化层状态直接关系到电解过程中(ELID)磨削的磨削效率和加工质量。然而,尚未发现关于通过控制氧化物层的状态进行内部研磨的适当且详细的信息。因此,在这项研究中,已经基于对氧化物层状态的主动控制进行了一些实验,以研究内部磨削性能和地面质量。进行了与传统ELID磨削的实验比较,证明了该方法在动态平衡方面的优势。详细研究了磨削和电参数对轴承钢内部加工的工件表面质量,受力特性和材料去除率的影响。实验结果表明,即使使用W10和W2.5的更细砂轮,该新方法也可以实现稳定的内部磨削过程。

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