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1)  galvanoluminescence [,ɡælvənəu,lu:mi'nesns]
电解发光
2)  Photoelectrochemical degradation
光电降解
3)  electrolysis polishing
电解抛光
1.
The paper concerns in the fabrication of ultra-fine molybdenum wire used for Z-pinch physics experiment by alternating current electrolysis polishing method.
研究利用交流电解抛光技术制备用于惯性约束聚变Z-pinch物理实验的超细钼丝。
2.
The microscopic action of magnetic field on electrolysis polishing is hard to be observed through experiment.
通过实验很难观测到磁场对电解抛光的微观作用,因此参照带电粒子在磁场中运动的作用机理,建立起电解抛光时电磁场作用下的带电粒子运动模型。
3.
In view of the tiny electrolysis polishing request,processing workpiece with electrolyze processing or Electrolysis polishing in use of electrochemical micromaching equipment of three-dimensional micro workpiece designed by our own.
针对微细电解抛光的要求,应用所开发的三维微细零件电解掺粉抛光装备对工件进行电解或电解抛光。
4)  electrochemical polishing
电解抛光
1.
The basic principle of electrochemical polishing is summarized.
阐述了电解抛光的基本原理 ,以S1 36不锈钢为对象 ,在实验的基础上进行了电解抛光工艺的初步研究。
5)  Electrolytic polishing
电解抛光
1.
This paper introduces application of electrolytic polishing and electrolytic corrosion in stainless steel sample preparing for metallographic examining, The test results indicate that using electrolytic polishing and electrolytic corrosion to prepare examining sample can obtain microstructure with clear resolution.
文章介绍采用电解抛光及电解腐蚀的不锈钢金相检验制样过程 ,试验结果表明 ,电解抛光及腐蚀法制备试样能获得清晰组织。
2.
Based upon experiements made for many times, the paper presents the method and the conditions under which a tin alloy′s metallographic specimen can be prepared through applying electrolytic polishing.
本文是在通过多次试验的基础上,介绍一种用电解抛光法制备锡合金金相试样的条件和方法,按此方法处理的试样显微组织形貌清晰。
3.
The article presents a new technology of electrolytic polishing by a neutral solution and the sychronization of polishing and removal of oxide from weldments of stainless steel.
主要介绍中性溶液电解抛光新技术及其对不锈钢焊接件氧化及去除的同步作用。
6)  photoelectrolysis
光电解
1.
n this paper, the conditions of reduction and the surface properties of the NiNb2O6 photoelectrodes for water photoelectrolysis in photoelectrochemical solar cells have been studied.
研究了铌酸镍(NiNb2O6)半导体电极的还原条件及在光电化学太阳电池中光电解水制取氢时的表面特性。
补充资料:光电对抗侦察(见光电对抗)


光电对抗侦察(见光电对抗)
electro-optical reconnaissance of electronic warfare

  guangdian duikang zheneha光电对抗侦察(elee‘ro一op‘ical reconnais-sanee ofeleetronicwarfare)见光电对抗。
  
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