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1)  quenched arc discharge
断续电弧放电
2)  interrupted arc
断续电弧
3)  discontinuous discharge
断续放电
4)  arc discharge
电弧放电
1.
Analysis of low energy arc discharge characteristics based on linear current attenuation model;
基于电流线性衰减模型分析低能电弧放电特性
2.
The morphologies and microstructures of the cathode deposits prepared by self-sustained arc discharge between graphite rods under different conditions were investigated by means of SEM and TEM,and the relationship between the morphologies and microstructures of the carbon nanotubes and the different conditions of arc discharge was obtained.
通过实现不同条件下的电弧放电,用扫描电子显微镜(SEM)和透射电子显微镜(TEM)对阴极沉积物中碳管的形貌和微结构进行表征,得到碳管的形貌和微结构与放电条件之间的一些对应关系。
3.
The mathematical model of arc discharge for capacitive ignition was established and simulation was made.
建立了容性点燃时的电弧放电数学模型,并进行了仿真。
5)  arc-discharge
电弧放电
1.
The technical processes of preparing onion-like fullerenes (OLFs)with different current densities by arc-discharge in water were explored.
研究了在不同电流值条件下纯石墨电极水下电弧放电法制备洋葱状富勒烯(OLFs)的过程和工艺。
6)  arcing [英][ɑ:k]  [美][ɑrk]
电弧放电
1.
In the practical running of domestic electrified railway,the arcing phenomena are found frequently when the electrical locomotive passing the overlap-phase;Using the air-breaking-down theory,the author analyzes the phenomena according to the construction of Articulated Neutral Section Insulator and the whole passing course.
在我国高速电气化铁道运行中,多次发现电力机车通过关节式电分相时产生电弧放电现象,笔者采用空气击穿放电理论,根据接触网关节式电分相的结构以及机车过电分相的过程,对该放电现象的成因进行了理论分析。
2.
When a solar array with high voltage is put in low earth orbit, arcing may occur, which causes surface degradation, electromagnetic interference and other undesirable side-effects.
把高压太阳电池阵放入低地球轨道中就会发生电弧放电,造成航天器表面退化、电磁干扰、PN结破坏和其它负作用。
3.
Three typical metal defects will be discussed in this paper: arcing defect during Aluminum deposition; ring type defect during metal etch; Aluminum protrusion defect during VIA barrier deposition.
本文主要研究了铝金属化工艺中出现的三种典型缺陷:在淀积铝金属层时产生的电弧放电缺陷;在淀积铝金属层后,蚀刻出金属互连线时产生的环状缺陷;以及在淀积通孔氮化钛阻挡层时产生的铝上窜缺陷。
补充资料:断续电弧
分子式:
CAS号:

性质:控制发射光谱分析的电弧放电呈时断时续状态;有断续交流电弧和断续直流电弧两种。可采用机械断续器或用电子脉冲线路控制电弧激发光源的电路来实现。其参数断续比为电弧的导通时间和熄灭时间之比;断续频率为每分钟断续的次数。断续电弧适用于低熔点试样,具有较低的检出限和较好的重复性。

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