首页> 外文会议>International Conference on Mechatronics and Machine Vision in Practice >Design of multiple-anode and non-transferred laminar DC plasma torch
【24h】

Design of multiple-anode and non-transferred laminar DC plasma torch

机译:多阳极非转移层流式直流等离子体炬的设计

获取原文

摘要

DC plasma torch is the primary component of various industrial thermal plasma processes. Due to DC plasma torch has high energy density, it is widely used in the field of plasma spraying, metal cutting and welding, waste treatment, and gas production etc. This paper presents a new DC plasma torch structure with a high-frequency arc ignition circuit which is capable of generating laminar plasma flow. The plasma torch in this paper has multiple electrodes including a water-cooled cathode, a water-cooled middle electrode and two water-cooled anodes. For convenience, compressed air is chosen to be working gas. The air intake method is designed to be rotating to get a more compressed plasma flow. The diameter of electrodes gradually increases along the direction of the plasma jet. A new cathode structure is designed in this paper. The arc is ignited between the cathode and the middle electrode. After the compression of the first and second anode, the plasma jet is stable and laminar. Besides, a new arc ignition circuit is designed which can be coupled into the main power circuit in series connection. A high-voltage and high-frequency arc ignition circuit is designed to generate the arc. The designed working voltage is 100V and the working current is 50A which is the critical current of thermal plasma.
机译:直流等离子体炬是各种工业热等离子体工艺的主要组成部分。由于直流等离子炬具有较高的能量密度,因此已广泛用于等离子喷涂,金属切割和焊接,废物处理以及气体生产等领域。本文提出了一种具有高频电弧点火的新型直流等离子炬结构能够产生层流等离子体流的电路。本文中的等离子炬具有多个电极,包括水冷阴极,水冷中间电极和两个水冷阳极。为方便起见,选择压缩空气作为工作气体。进气方法设计为旋转以获得更大的压缩血浆流。电极的直径沿等离子流的方向逐渐增加。本文设计了一种新的阴极结构。电弧在阴极和中间电极之间点燃。在压缩第一阳极和第二阳极之后,等离子体射流是稳定且层流的。此外,设计了一种新的电弧点火电路,该电路可以串联连接到主电源电路中。设计了高压和高频电弧点火电路以产生电弧。设计工作电压为100V,工作电流为50A,这是热等离子体的临界电流。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号