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直流辉光放电 DC glow discharge英语短句 例句大全

时间:2023-01-18 16:17:45

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直流辉光放电 DC glow discharge英语短句 例句大全

直流辉光放电,DC glow discharge

1)DC glow discharge直流辉光放电

1.On the improvement of hydrophilicity of inner surface of PVC tube byDC glow discharge plasma利用直流辉光放电等离子体改善聚氯乙烯细管内表面亲水性的研究

2.Polycrystalline diamond films are etched at different etching parameters in oxygen plasma produced byDC glow discharge.在直流辉光放电等离子体装置上,利用不同直流功率和工作气压下产生的氧等离子体对CVD金刚石厚膜的表面进行了刻蚀。

3.Measurements of rotational temperature as low as several hundred Kelvin have been achieved using optical emission spectroscopy (OES) in nitrogenDC glow discharge.本文报道了氮气气压分别为 10和 2 0Pa时 ,对直流辉光放电的发射光谱进行测量和分析的结果。

英文短句/例句

1.Simultaneous Determination of Eleven Elements in Silicon Steel by Direct Current Glow Discharge Optical Emission Spectrometry直流辉光放电光谱法同时测定硅钢中11种元素

2.The Spectroscopy Diagnosis of OH Radicals and Active Species Produced in Pulsed Corona Discharge and DC Glow Discharge;脉冲电晕放电与直流辉光放电中OH自由基等活性物种的光谱诊断

3.The Optical Diagnosis of OH Radical Produced in Dielectric Barrier Discharge and DC Glow Discharge介质阻挡放电与直流辉光放电中OH自由基的光谱诊断

4.Field Emission Properties of DC-PCVD Deposited Carbon Nano Tubes;直流辉光放电PCVD方法制备碳纳米管及场发射特性研究

5.A Study on DC Glow Discharge Plasma Generated Inside a Metallic Tube and Its Preliminary Application;细长金属管内产生的直流辉光放电等离子体及其初步应用研究

6.The Theoretical Investigation of the Transport Behaviors of the Species in Nitrogen DC Glow Discharge Plasma;氮气直流辉光放电空间等离子体粒子运动行为研究

7.Plasma Degradation of Dye by a Nonpulsed Direct Current Glow Discharge in an Aqueous Solution and Synthesis of Terephthalic Acid;非脉冲直流辉光放电等离子体降解有机染料及对苯二甲酸合成研究

8.On the improvement of hydrophilicity of inner surface of PVC tube by DC glow discharge plasma利用直流辉光放电等离子体改善聚氯乙烯细管内表面亲水性的研究

9.A sealed transverse discharge device for getting homogeneous glow discharge excited with a DC power supply一种可获得均匀辉光放电的封离式直流横向激励气体放电结构的研究

10.A luminous discharge of current that is formed when a strong current jumps a gap in a circuit or between two electrodes.电弧,弧光当强电流在回路裂缝或两电极间跃升时形成的辉光放电

11.Boundary Layer Flows with One Atmosphere Uniform Glow Discharge Plasma常气压辉光放电等离子体对边界层流动的影响

12.power grid-glow tube强信号栅控辉光放电管

13.hot-cathode grid glow tube热阴极栅控辉光放电管

14.high-voltage glow-discharge ion source高压辉光放电离子源

15.glow discharge lubricant辉光放电合成润滑剂

16.Does the fluorescent lamp discharge in the form of glow or arc日光灯气体放电是辉光放电还是弧光放电

17.Brilliant Achievements of DC Power Supply System in China"s Electric Power Industry(To Celebrate the 30th Anniversary of Adopting the Policy of Reform and Opening up in China)中国电力工业直流电源系统的辉煌成就《庆祝祖国改革开放30周年》

18.Optical Study of OH Radicals Produced by DC Corona Discharge;直流电晕放电OH自由基发射光谱研究

相关短句/例句

Direct current glow discharge直流辉光放电

1.This dissertation consists of two different parts,Part one: Plasma degradation of dye by a nonpulsed direct current glow discharge in an Aqueous Solution;Part two : the synthesis of terephthalic.本论文的研究分为两部分,第一部分是非脉冲直流辉光放电等离子体降解水中染料的研究,第二部分是对苯二甲酸的新合成路线研究。

2.With the development of the micro-electronic fabrication, the technology of the direct current glow discharge is applied in much fields.正是由于直流辉光放电等离子体源的广泛应用,对其需求与日剧增,因此对其放电生成等离子体源特性的研究有着非常重要的意义。

3.In contrast to the investigations of the steady-state of direct current glow plasma, the characteristics of ionization progress in direct current glow discharge is less studied.了解直流辉光放电的电离过程,能够更深入的了解辉光放电过程中粒子的输运特性,正确的模拟这一电离过程将对以后的实际应用起理论指导作用。

3)C V D直流辉光放电(CVD)

4)nitrogen dc glow discharge氮直流辉光放电

5)DC atmospheric glow discharge大气压直流辉光放电

6)HeGDC氦直流辉光放电清洗

1.By studying the characteristics of discharge and the removing efficiency ofHeGDC in the HL-1M Tokamak, we found that the electric field near the symmetric position of the anode section was very weak, and the depth of the cathodic potential fall was much larger than the free mean path of He ions,which lde to a serious reduction of removing efficiency.通过对HL-1M的氦直流辉光放电清洗(HeGDC)的放电特点和清除效率的研究,发现环形真空室的对称性导致与阳极截面相对称的区域的场强很弱,使其阴极位降区的厚度远大于氦离子的平均自由程,严重影响辉光清除效率。

延伸阅读

辉光放电处理分子式:CAS号:性质:对难粘的聚烯烃类塑料表面的处理方法。在基材上或基材下的金属支承物上施加300~1000V的电压,使101Pa的真空室内的气体分子激发活化并吸向电极至基材的表面产生物理化学反应,使基材表面活化,增加黏结力。这种处理方法比电晕放电处理节省能量。

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