2) negative corona plasma
负电晕等离子体
1.
With the electrostatic oiler produced by Wuhan University of Science and Technology as research platform,the mechanism of negative corona plasma discharge was investigated,the parameters in the course of discharge were analyzed,and the breakdown condition in oiler room was discussed.
以武汉科技大学研制的静电涂油机为研究平台,对静电涂油机中负电晕等离子体放电机理进行研究,分析放电过程中的各参数特性,并对涂油室击穿条件进行了讨论。
3) corona plasma
电晕等离子体
1.
It is a new technology that welding soot is purified with corona plasma right on the spot.
应用电晕等离子体对焊接烟尘进行就地净化的技术,是一项新的焊接烟尘净化技术。
4) DC arc plasma
直流电弧等离子体
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.
Chain shaped, well dispersal and nano-scale Ag-Cu-In-Sn powders were successfully prepared by DC arc plasma method.
利用直流电弧等离子体法成功制备了分散性较好的纳米链状Ag-Cu-In-Sn合金粉末。
3.
The pure nickel nanopowders were prepared by DC arc plasma evaporation method using self-designed and fabricated experimental apparatus.
采用自行研制的试验装置,用直流电弧等离子体蒸发法制备了高纯度的纳米镍粉。
5) DC arc plasma jet
直流电弧等离子体喷射
1.
Application of DC arc plasma jet in the commercialization of CVD diamond films;
直流电弧等离子体喷射在金刚石膜制备和产业化中的应用
2.
Numerical model for large area diamond film deposition by DC Arc Plasma Jet CVD method is proposed.
建立了直流电弧等离子体喷射CVD大面积金刚石沉积数学模型。
3.
But during the process of producing diamond film by chemical vapor deposited technology, such as DC arc plasma jet, the problem of film cracking caused by excessive residual stresses has not been well solved yet.
本文以直流电弧等离子体喷射法制备自支撑金刚石厚膜为研究对象,以等离子体炬内外复杂的电、磁、热、力多场耦合变量以及金刚石膜热-力耦合条件下的应力为研究目标,对等离子体的流动和传热以及自支撑金刚石厚膜在制备中各个阶段的应力进行数值模拟,并揭示大尺寸金刚石厚膜发生开裂破坏的原因及其影响因素。
6) DC Arc Plasma Evaporation
直流电弧等离子体蒸发
1.
The nanometer tin powders were prepared by DC arc plasma evaporation method using a self-designed and fabricated apparatus.
采用高纯锡,通过自行设计的直流电弧等离子体蒸发设备制备了纯净的纳米锡粉。
补充资料:直流
直流
Direct current
直流(direet。urrent) ,仅按一个方向流过电路或设备的电流称为直流。与交流电压相比,直流电压的极性是不变的。直流电流相当于电荷沿着闭合的电路以不变的方向流动或位移。直流电流和电压的幅值可以恒定,也可以随时间变化。 蓄电池和旋转发电机产生幅值恒定的额定直流电压,整流器产生幅值随时间而变的直流电压。整流器把交流电压变换为脉动的直流电压。 通常电站不是广泛地将直流电输配给一般用户,相反,在需要直流电(d。)能的场所,是把商业上合用的交流电(ac)能整流为直流电能。 「罗布(D.D.Robb)撰]
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条