电弧放电

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  • arc discharge
电弧放电电弧放电
  1. 石墨电弧放电过程中C(60)/C(70)的形成与氧化

    The Formation and Oxidization of C 60 / C 70 in Graphite Arc Discharge Process

  2. 电弧放电方法制备Co掺杂AlN纳米棒

    Synthesis of Cobalt-Doped AlN Nanorod by Arc Discharge

  3. 基于ANSYS的空气电弧放电等离子体温度数值模拟

    Numerical simulation of arc plasma temperature based on ANSYS

  4. 电弧放电法制备SiC纳米丝的实验研究

    Silicon Carbide Nanowires Synthesized by Arc Discharge

  5. 用直流电弧放电法制备C(60)时在负电极石墨棒上长了一些硬度较高的灰色物质。

    The high hard materials with light-colored were grown on negative graphite electrode during preparation of fullerenes C_ ( 60 ) by a plasma discharge .

  6. 电弧放电等离子体CVD快速生长金刚石薄膜

    Rapid Growth of Diamond Films by Arc Discharge Plasma CVD

  7. 但局部放电、火花放电、电弧放电和过热作用会导致SF6发生分解。

    However , partial discharge , spark discharge , electric arc and local overheating can cause SF6 decomposition .

  8. 空气中的电弧放电可以产生NO。空气电晕放电中的OH自由基发射光谱

    The concentration of NO2 and the ratio of NO2 / ( NOx ) must be as little as possible for the medical application of NO. Emission Spectra of Hydroxyl Radical Generated in Air Corona Discharge

  9. 基于微区电弧放电和热循环机理,结合负载电压波形定义了燃弧时间ta和冷却时间tc,认为大弧现象是由tc不足造成。

    Based on local micro-arc discharge and thermal cycling mechanism , the arcing time t_a and the cooling time t_c were defined . Large-arc discharge phenomenon is caused by a lack of cooling time .

  10. 运用纳米Bi2O3微粒作催化剂,在电弧放电条件下,进行了纳米洋葱状富勒烯大量合成的研究。

    The synthesis of nano-onion-like fullerenes on a large scale by the arc discharge method was investigated using Bi_2O_3 as catalyst .

  11. 奥氏体不锈钢可控脉冲电弧焊工艺研究脉冲电弧放电过程中产生的少量NO2有害气体,可以通过一个装有催化剂的NO2-NO转换器而被有效地去除。

    Technological Study of Austenitic Stainless Steel in Controlled Transfer Pulsed Welding In all cases , NO2 can be effectively removed using the NO2-NO catalyst .

  12. TEM表征结果表明,放置于电弧放电区域上面、侧面和下面的不锈钢、石英和硅(100)基底上生成的膜状碳产物均主要由碳纳米颗粒或碳颗粒构成。

    The results of TEM characterization show that the carbon films formed on stainless steel , quartz and Si ( 100 ) substrates , which were put above , at one side of , and under the arc discharge region , mainly consist of carbon nanoparticles or carbon particles .

  13. 稀土元素在Ar-N2/直流电弧放电中的蒸发和激发行为研究

    Studies on the Evaporation and Excitation Behaviour of Rare Earth Elements in Ar-N2 / D. C. ARC Discharge

  14. 低能电弧放电时间与电路参数间的关系

    Relationship between Discharge Time of Low Energy Arc and Circuit Parameters

  15. 电感性本质安全电路电弧放电伏安特性分析

    Analysis of Arc Discharge VA Characteristics in Inductive Intrinsically Safe Circuits

  16. 找到了一定电导率下,电弧放电转化为电晕放电的条件。计算得到相同条件下电晕放电与电弧放电的电效率;

    Condition of spark discharge converting to corona discharge is found .

  17. 电弧放电中纳米洋葱状富勒烯生成机理的研究

    Studies on the Growth Mechanism of Nano-onion-like Fullerenes in Arc Discharge

  18. 本质安全电路低能电弧放电特性及参数

    Low Energy Arc Discharge Characteristic and Parameters of Intrinsically Safe Circuits

  19. 本文仅针对这两个电气量,对四种电弧放电模型进行了分析与比较。

    Such two electrical variables are thoroughly analyzed with four mathematical models .

  20. 低压电器电极间发生的电弧放电及其特性

    Characteristics of Arc Discharge between Electrodes of Low Voltage Apparatus

  21. 直流电弧放电机理研究概况

    Present Status of the Machanism on Direct Current Arc Discharge

  22. 水下电弧放电法制备洋葱状富勒烯

    Synthesis of onion like fullerenes by arc discharge in water

  23. 避雷针的上部表面是否有可见的电弧放电痕迹?

    Are there any visible arc marks on upper surfaces LPS rods ?

  24. 电弧放电法制备洋葱状富勒烯的工艺探讨

    The Preparation of Nano - Onion - Like Fullerenes by Arc Discharge

  25. 氩氧控制气氛下直流电弧放电中氟化反应

    Fluorination Reaction Under Ar-O2 Controlled Atmosphere DC Arc Discharge

  26. 低能电弧放电模型比较分析

    Comparisons of Mathematical Models of Low Energy Arc Discharge

  27. 一种新的镀膜技术&电弧放电离子镀研制成功。

    A new coating technology , arc discharge ion plating has been developed .

  28. 基于电流线性衰减模型分析低能电弧放电特性

    Analysis of low energy arc discharge characteristics based on linear current attenuation model

  29. 电弧放电烧蚀发汗效果试验研究

    Experimental Research of Transpiration Effects in Arc Discharge Ablation

  30. 脉冲电弧放电产生医用一氧化氮的放电条件研究

    Study on Pulsed Arc Discharge Conditions on Production of Nitric Oxide for Medical Application