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1.
Preparation of bismuth nanoparticles by DC arc plasma method
直流电弧等离子体法制备铋纳米粉体
2.
Preparation of Nano-structure Oxide Powder by DC Arc Plasma and Sintered by Spark Plasma Sintering Technique;
氧化物纳米粉末的直流电弧等离子体制备及放电等离子(SPS)烧结
3.
Numerical Simulation of D.C. Arc Plasma Torch and the Physical Study of Electron Beam Ion Trap
直流电弧等离子体发生器的数值模拟及电子束离子阱物理研究
4.
RESEARCHES ON EXPERIMENT APPARATUS OF PREPARATION NANOPARTICLES BY DC ARC PLASMA METHOD
直流电弧等离子体法制备纳米粒子实验装置研究
5.
Study on the Residual Stresses and Cracking of Diamond Film Produced by DC Arc Plasma Jet
直流电弧等离子体喷射金刚石膜残余应力及开裂破坏研究
6.
Analysis of Residual Stress Distribution in DC Arc Plasma Jet CVD High Quality Diamond Films by Raman Spectroscopy
直流电弧等离子体喷射化学气相沉积高质量金刚石膜残余应力分布的拉曼谱分析(英文)
7.
Research on Dark Features in Diamond Films Produced by DC Arc Plasma Jet Method
高功率直流电弧等离子体喷射法制备的金刚石厚膜中黑色缺陷的研究
8.
Flow Velocity Measurement in a Non-Transferred DC Arc Plasma-Jet by Using Electrostatic Probes
减压直流非转移弧等离子体射流速度的静电探针测量
9.
arc plasma jet spraying coating
电弧等离子体射流喷涂涂层
10.
The Synthesized Processing Study of Diamond Films Deposition on the WC-Co Tools Substrate by DC Arc Discharge Plasma CVD;
直流弧光放电等离子体CVD金刚石薄膜硬质合金刀具制备工艺研究
11.
Studies on the Jet Fluctuation of DC Arc Plasma Torch;
直流电弧等离子发生器射流脉动的研究
12.
Numerical Simulation of DC Arc and Trait Research of Plasma Ignition;
直流电弧数值模拟及等离子点火特性研究
13.
Research on Soft-switching Mode Power Supply of Arc-welding and Air-plasma-cutting;
逆变式直流弧焊及等离子切割电源的研究
14.
Research on the thermal efficiency of a DC non-transfer arc plasma torch
直流非转移弧热等离子体喷枪加热效率分析
15.
Generation and Electromagnetic Acceleration of DC Plasma Arc in Water Jet
直流电压下水射流等离子弧的产生及其电磁加速过程
16.
The Modeling of Flow Fields and Numerical Analyses of the Helical Instabilities of Arc Plasma;
电弧等离子体流场及螺旋不稳定性数值研究
17.
THE ENHANCEMENT EFFECT OF NON-EASILY IONIZED ELEMENTS ON EMISSION INTENSITIES IN AN AC ARC PLASMA
难电离元素对交流电弧等离子体中发射强度的增强效应
18.
The arc source produces the arc discharging of cold cathode so that metal plasma is formed and it supplies the high density of metal ion current.
弧源因 产生冷阴极弧光放电而产生金属等离子体,形成高密度的金属离子流。