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1)  micro-arc
微弧
1.
Ti-alloy lower temperature pulse micro-arc anode oxidation;
钛合金低温脉冲微弧阳极氧化技术
2)  micro-arc oxidation
微弧氧化
1.
Effects of a novel near β titanium alloy Ti-5Zr-3Sn-5Mo-15Nb modified by micro-arc oxidation on initial osteoblast responses;
近β钛合金表面微弧氧化处理对成骨细胞早期行为的影响
2.
Effect of voltage on formation of ceramic coating prepared by micro-arc oxidation on aluminum alloy;
电压对铝合金微弧氧化陶瓷层形成的影响
3.
Effects of anode current density on micro-arc oxidation ceramic coating of aluminum alloy;
阳极电流密度对铝合金微弧氧化陶瓷膜的影响
3)  microarc oxidation
微弧氧化
1.
Engineering applications of microarc oxidation and magnetron sputtering;
微弧氧化与磁控溅射的工程应用
2.
Study on microarc oxidation processes for Mg alloy;
镁合金微弧氧化膜的制备工艺研究
3.
Electrochemical corrosion behavior of microarc oxidation film on LC4 aluminum alloy;
LC4超硬铝合金微弧氧化膜电化学腐蚀特性
4)  micro-arc oxidization
微弧氧化
1.
Corrosion resistance of magnesium alloy micro-arc oxidization ceramic coating;
镁合金微弧氧化陶瓷层的耐蚀性
2.
The micro-arc oxidization is an efficient and pollution-free technique of surface processing and can form in situ a ceramic layer on the surface of nonferrous metal.
采用自行研制的脉冲微弧氧化设备,在TiAl合金表面制备了微弧氧化陶瓷层。
3.
Ceramic coating on the surface of die casting Al alloy ADC12 with high Si content has been prepared by micro-arc oxidization (MAO) in an electrolyte containing Na2SiO3 and NasPO4 as its major compositions at constant current density.
利用恒流微弧氧化技术,在以Na2SiO3和Na3PO4为主盐的电解液中,在高硅压铸Al合金ADC12表面制备了 陶瓷膜。
5)  MAO [mau]
微弧氧化
1.
Research of IGBT driving and protection in MAO source equipment;
微弧氧化电源IGBT驱动和保护研究
2.
Control of Constant-Current-Constant-Voltage in Plasma MAO Positive-Negative Pulsed Power Supply;
等离子体微弧氧化双向脉冲电源稳流稳压控制
3.
Analysis of MAO Process on Magnesium Alloy and Design of Main Circuit;
镁合金微弧氧化过程工艺分析及主电源设计
6)  micro-arc breakdown
微弧击穿
1.
The micro-arc breakdown at different coating-forming voltages was discussed with respect to experiment and calculation,and the correlation between the coating thickness and coating-forming voltage was analyzed.
用测量法和计算法证明了各形成电压范围下微弧击穿的后果及涂层厚度与其形成电压的密切关系。
补充资料:寄微之 时微之为虢州长史。
【诗文】:
高天默默物茫茫,各有来由致损伤。
鹦为能言长剪翅,龟缘难死久搘床。
莫嫌冷落抛闲地,犹胜炎蒸卧瘴乡。
外物竟关身底事,谩排门戟系腰章?





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