hollow cathode
中空阴极,[电子] 空心阴极
2026-04-13 10:04 浏览次数 15
中空阴极,[电子] 空心阴极
hollow-cathode lamp空心阴极灯;空心阴极电子管
hollow arbor cathode tube空心阴极管
hollow-cathode tube空心阴极管英语
hollow-cathode discharge空心阴极放电
hollow-cathode laser空心阴极激光器
hollow-cathode discharge lamp空心阴极灯
hollow-cathode atomizer空心阴极原子化器
hollow arbor cathode环形阴极
The functions of the hollow cathode for electron bombardment mercury ion thruster and its requirements are described.
本文叙述了空心阴极在电子轰击式汞离子推力器中的功能、推力器对空心阴极的要求。
A discharge model on the sputtering hollow cathode discharge (SHCD) copper ion laser is established, its characteristics of discharge, sputtering and the particle interaction processes are analysed.
本文祥细分析了溅射型空心阴极放电(SHCD)铜离子激光器的放电、溅射特性和粒子的相互作用过程,建立了放电模型。
The power has been used to conduct two sorts of experiments including both to restrain arc discharge and to control hollow cathode discharge.
采用中频交流脉沖等离子体源进行了抑制弧光放电和空心阴极效应以及离子渗氮工艺的实验。
This assembly uses mode of 「first absorption then spectroscope , excitation source of deuterium hollow cathode lamp or broadening line hollow cathode lamp.」
采用「先吸收后分光」方式,氘空心阴极灯或变宽谱线空心阴极灯作激发光源。
This welding equipment consists of hollow cathode welding torch, vacuum system, welding power source, gas flow control unit and compact control device.
空心阴极焊接设备由空心阴极焊枪、真空系统、焊接电源、气体流量控制单元、总控制箱组成。
The article researched heating mechanics of hollow cathode discharge effect and the process of hollow cathode plasma sintering cerium-tungsten alloy billets.
本文研究了空心阴极效应的发热机理及空心阴极等离子烧结铈钨坯的工艺。
A chromium hollow cathode lamp was used as a light source instead of the deuterium continuum source.
铬空心阴极灯可代替氘灯作为测定光源。
While hollow cathode being discharged, migration, diffusion, evaporation and sputtering of reaction products were analyzed.
论述了空心阴极放电时,其内部化学反应生成物的迁移、扩散、蒸发和溅射。
The influence of argon flow, are length, the inner diameter of hollow cathode on the voltage - ampere characteristics are discussed.
并讨论了氩气流量、弧长和空心阴极内径对电弧伏安特性的影响。
Aslo the paper has dealed with the mechanism of the hollow cathode vacuum arc discharge and analyzed the starting arc process according to the neutralizing theory of ionized gas.
根据电离气体中性化条件,初步探讨了在低气压下空心阴极电弧放电的引弧过程,分析了影响低气压下空心阴极电弧放电引弧电压的因。
This welding equipment consists of hollow cathode welding torch, vacuum system, welding power source, gas flow control unit and compact control dev...
空心阴极焊接设备由空心阴极焊枪、真空系统、焊接电源、气体流量控制单元、总控制箱组成。
The result shows that heating efficiency of hollow cathode is effectively enhanced by using heat shield.
结果证明,热屏蔽层的应用有效地提高了空心阴极加热效率。
The main construction and key technique of long pulse length hollow cathode plasma electron gun are presented.
给出长脉沖空心阴极等离子体电子枪结构与关键技术。
The ultraviolet copper ion laser with helical hollow cathode has been experimentally investigated. The discharge and laser gain and output characteristics were studied.
采用螺旋形空心阴极放电激励紫外铜离子激光器,实验研究了空心阴极放电,激光增益和激光输出功率特性。
The differences of discharge characteristics between the hollow cathode arc under low pressure and the conventional TIG arc under atmosphere are discussed.
本文介绍了空心阴极真空电弧焊接技术的特点及其放电机理,讨论了低气压下空心阴极电弧放电与常规电弧放电的不同特点。
The basic are phenomena and characteristics of hollow cathode vacuum are Welding (HCVAW) are studied.
研究了空心阴极真空电弧焊接(HCVAW)的一些基本现象和特性。
Using hollow cathode lamps, the atomic state lifetimes have been measured by laser fluorescence spectroscopy.
利用空心阴极放电灯的激光感生荧光技术进行了原子能级寿命测量的研究。
Surface morphology and composition analysis of the failure emitter of hollow cathode were characterized by using FESEM and EDS.
利用场发射扫描电镜(FESEM)及其附带能谱仪研究了失效空心阴极发射体的表面形貌、元素组成。
The results indicate that it has visible effect on restraining arc discharge and hollow cathode discharge as well as ion nitriding on high-chrome steel material surface.
结果表明,交流脉沖放电在抑制弧光放电和空心阴极效应方面是非常有效的,对于高铬钢材料表面的离子渗氮作用是明显的。
The application of the hollow cathode discharge source in the trace amount element analysis is recommended.
并介绍了空心阴极光源在痕量分析上的应用。
The plasma produced in ablative capillaries by high power discharges between an anode and a hollow cathode can be used as sources for electrothermal/electrothermal chemical launchers.
利用可消融材料制成毛细管,在其两端阳极与中空阴极间进行大功率放电,形成高压等离子体源。