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A Leakage Flux Cancellation Technique for Series-Parallel Combined Resonant Circuits with Asymmetric Rotary Transformers Used for Ultrasonic Spindle Drive

机译:具有超声旋转变压器的串联平行组合谐振电路漏磁通消除技术,用于超声旋转变压器的超声波主轴驱动器

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This paper proposes a novel leakage flux cancellation technique suitable for series-parallel combined resonant circuits with asymmetric rotary transformer used for ultrasonic spindles drive. An asymmetric rotary transformer is utilized in the ultrasonic spindle in order to realize automated tool change. However, an asymmetric rotary transformer is likely to occur much leakage fluxes in secondly core due to asymmetric core structures. This large leakage inductance affects a drive circuit using a series-parallel combined resonant circuit, and the resonant characteristics in the drive circuit become very steep. In this state, the resonance circuit does not realize the desired function when the drive frequency fluctuates or the error of resonance parameters occurs. Therefore, this paper proposes a novel leakage flux cancellation technique used for ultrasonic spindle drive. The effectiveness of the proposed method is discussed from the theoretical analysis and experimental test.
机译:本文提出了一种新型漏焊剂消除技术,适用于具有用于超声波锭子驱动器的非对称旋转变压器的串联平行组合谐振电路。在超声波主轴中使用不对称的旋转变压器,以实现自动换刀。然而,由于不对称的核心结构,不对称旋转变压器可能在第二芯中发生太多泄漏通量。这种大的漏电电感会使用串联平行组合谐振电路影响驱动电路,驱动电路中的谐振特性变得非常陡峭。在这种状态下,当发生驱动频率波动或发生谐振参数的误差时,谐振电路不实现期望的功能。因此,本文提出了一种用于超声波主轴驱动的新型泄漏助焊剂消除技术。从理论分析和实验测试中讨论了所提出的方法的有效性。

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