Mechanical Engineering

Design of High- Frequency Narrow- Pulsed Inverter Power Supply for Micro- Arc Oxidation

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  • 1.School of Mechanical and Automotive Engineering,South China University of Technology,Guangzhou 510640,Guangdong,China; 2.Guangzhou JingYuan Electrical Equipment Co.,Ltd.,Guangzhou 510730,Guangdong,China
杨凯(1986-),男,博士生,主要从事数字化电源设备及智能控制研究

Received date: 2014-03-04

  Revised date: 2014-06-08

  Online published: 2014-08-01

Supported by

广东省 - 教育部产学研结合项目(2012B091100347)

Abstract

In order to enhance the arc controllability during the MAO (Micro- Arc Oxidation) process,a high- fre-quency narrow- pulse inverter power supply for micro- arc oxidation is designed in the perspective of pulse energycontrol.This power supply adds an impedance matching circuit to the main circuit of the source on the basis of a tra-ditional two- stage inverter structure.Thus,rapidly releasing and storing of energy in the circuit and load is realizedunder the variable polarity mode.Then,a cooperative control strategy is presented to carry out DC/pulsed/ variablepolarity pulsed modes,and the corresponding operation patterns for the main circuit are also described.Finally,theload characteristic of the proposed power supply is analyzed and the availability of the equivalent model of the loadcharacteristic is verified by comparing simulation and experimental waveforms.Experimental results demonstrate that,for the proposed power supply,both increasing the pulse frequency (up to 20kHz) and decreasing the pulse width(low to 20μs) help to realize the precise control of pulse energy and enhance the energy utilization of the system,andboth the porosity and surface roughness of the coating obtained in the high- frequency narrow- pulse mode are lower.

Cite this article

Yang Kai Cao Biao Ding Li Yang Guang Huang Zeng- hao . Design of High- Frequency Narrow- Pulsed Inverter Power Supply for Micro- Arc Oxidation[J]. Journal of South China University of Technology(Natural Science), 2014 , 42(9) : 18 -23 . DOI: 10.3969/j.issn.1000-565X.2014.09.004

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