CN1053379A - 电弧火炬用的气冷阴极 - Google Patents

电弧火炬用的气冷阴极 Download PDF

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Publication number
CN1053379A
CN1053379A CN91100379A CN91100379A CN1053379A CN 1053379 A CN1053379 A CN 1053379A CN 91100379 A CN91100379 A CN 91100379A CN 91100379 A CN91100379 A CN 91100379A CN 1053379 A CN1053379 A CN 1053379A
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gas
negative electrode
main body
tip
arc torch
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CN1029206C (zh
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克雷格·福尔曼
彼得·菲尔布姆
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Connell Wagner C Holdings Ltd.
PACIFIC POWER
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NEW SOUTH WALES ELECTRICITY COMMISSION
University of Sydney
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05HPLASMA TECHNIQUE; PRODUCTION OF ACCELERATED ELECTRICALLY-CHARGED PARTICLES OR OF NEUTRONS; PRODUCTION OR ACCELERATION OF NEUTRAL MOLECULAR OR ATOMIC BEAMS
    • H05H1/00Generating plasma; Handling plasma
    • H05H1/24Generating plasma
    • H05H1/26Plasma torches
    • H05H1/28Cooling arrangements
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05HPLASMA TECHNIQUE; PRODUCTION OF ACCELERATED ELECTRICALLY-CHARGED PARTICLES OR OF NEUTRONS; PRODUCTION OR ACCELERATION OF NEUTRAL MOLECULAR OR ATOMIC BEAMS
    • H05H1/00Generating plasma; Handling plasma
    • H05H1/24Generating plasma
    • H05H1/26Plasma torches
    • H05H1/32Plasma torches using an arc
    • H05H1/34Details, e.g. electrodes, nozzles
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05HPLASMA TECHNIQUE; PRODUCTION OF ACCELERATED ELECTRICALLY-CHARGED PARTICLES OR OF NEUTRONS; PRODUCTION OR ACCELERATION OF NEUTRAL MOLECULAR OR ATOMIC BEAMS
    • H05H1/00Generating plasma; Handling plasma
    • H05H1/24Generating plasma
    • H05H1/26Plasma torches
    • H05H1/32Plasma torches using an arc
    • H05H1/34Details, e.g. electrodes, nozzles
    • H05H1/3468Vortex generators

Abstract

一种直流电弧火炬用的气冷阴极。所述阴极有 一连接至主体的尖端。一用于工作气体的气体通道 穿过阴极主体,接近尖端,并邻近尖端气体流出主 体。阴极与阳极用绝缘材料套筒隔开和绝缘。

Description

本发明涉及直流电弧火炬用的气冷阴极。直流电弧火炬不应与移动电弧装置例如不熔化极气体保护焊(TIG)混淆,后者阳极包括了焊接工件。一外套围绕着不熔化极气体保护焊机的阴极,一大流量的惰性气体(非工作气体)通过外套吹出,形成惰性环境,并防止阴极和工件氧化。
直流电弧火炬也不应与间断电弧装置,例如用于喷气发动机者相混淆。
在直流电弧火炬内,工作气体被直流电弧加热形成等离子体,该等离子体通过包括其阳极的喷嘴流出。上述装置连续一长段时间使用,而上述等离子体可用以点燃燃料例如发电蒸气锅炉内的煤粉。上述等离子体也可以用来稳定煤的燃烧,还有各种用途,例如用在高炉中,并得到生产用热量。
现有常用的直流电弧火炬都是水冷的,并且水的通道通过阴极和阳极。冷却是重要的,它防止阴极升温至由于熔化或蒸发而变坏的高温。另外,高温的阴极发出的热辐射,将使电弧失去控制。工作气体通过将阳极与阴极隔开的绝缘件,直接地流入阳极与阴极之间的空间。
上述水冷的安排包括将水管连接至火炬,并由于水是导电的,要求将水的回路加以电绝缘。在这些系统中,存在潜伏的不安全的危害,如果使用时有一水管脱落,热的和可能带高压的水流不受控制地喷射出来。
根据本发明,提供了一种气冷阴极,用于直流电弧火炬。所述阴极有尖端连接至主体。一用于工作气体的气体通道,穿过阴极的主体,接近所述尖端,并气体邻近尖端流出主体。阴极与阳极被间隔开,并与阳极加以电绝缘,借助于一电绝缘材料的套筒。
所有被用来支持电弧的工作气体,通过阴极被提供,并冷却阴极,其流向阳极的入口。
最好有一涡流器围绕阴极的尖端,并位于工作气体流出主体的出口的下游。工作气体的旋动改善了在阴极区间内电弧的稳定,并且阳极根部旋动,减少了阳极的侵蚀。在最佳实施例中,涡流器是金属制的,并且当火炬加热至使用温度时,它膨胀并封住将阴极与阳极绝缘的套筒。
在本发明最佳实施例中,气体通道穿过阴极连通所述尖端,致使工作气体通过阴极时接触到其尖端部分。
现在,参阅附图,仅以举例说明的方式介绍本发明。
附图中:
图1是一蒸气锅炉壁部的示意剖面图,锅炉内使用了本发明电弧火炬;
图2a是本发明电弧火炬部分剖视的正视图;
图2b是图2a中阳极沿剖线Ⅱb-Ⅱb的剖面图;
图3a是图2a中阴极的正视图;
图3b是图3a阴极尖端的正视图。
首先参阅图1,一典型的蒸气锅炉有外壁1和内壁2,内壁2铺有水管3。壁内空间装有直流电弧火炬4。一通道5从外壁1延伸往所述电弧火炬用于供应工作气体。
使用时,电弧火炬4发射出以区间6标示的等离子体火舌,进入锅炉的内腔来加热管子3内的水。煤粉被吹入,通过仅以箭头7示意的管道,吹向等离子体,这样加大了能量输出。典型的是取得十倍的能量输出。从第二空气腔室8来的空气与更多的煤粉混合,通过一涡流器9吹出,以箭头10代表其方向,吹入已点燃的等离子体区间,更加大了能量输出。再产生典型的是十倍的能量输出。
在图2中更详细地显示了电弧火炬4,包括以11整体标志的阴极和以12整体标志的阳极。所述阴极包括一铜阴极主体13(图3a中可清楚看到)和一涂钍的钨尖端14(图3b中可看到)。一绝缘陶瓷(玻璃陶瓷)套筒15围绕所述阴极,接着前者又被一铜阴极壳体16所围绕。阳极17本身是铜制的,与阴极之间用套筒15所隔开和绝缘。
阳极17的外表面有纵向延伸的槽18,这可从图2b中看到,并由一黄铜导水环19所围绕,来限定沿着阳极外表面的纵向延伸的水通道。一黄铜阳极壳体20用作支撑阳极和导水环。一环状入水腔室21允许冷却水流入,在使用时,沿着阳极外表面的纵向延伸的水通道流动。然后,水流回到导水环1a的外侧,流入环状出水腔室22。
现翻阅图3a,更详细地介绍阴极11的结构。阴极主体13从其外端由一轴向延伸的气体通道23所贯穿。气体通道23与一内螺纹通道24连通,后者从阴极的内端延伸至阴极主体内。径向延伸的通道25,从气体通道23与通道24的交接处往外延伸。一铜涡流器26位于阴极主体13的最内端,并径向往外地延伸。
阴极尖端14包括一圆顶端部27与一轴向延伸的外螺纹杆28,如图3b所示。所述尖端拧入阴极主体13内,杆28上的外螺纹与通道24的内螺纹相互啮合,致使杆18完全阻塞通道24,并且杆的端头接近气体通道23的端部。
在使用时,一种非氧化的气体例如氮气吹入,通过通道5进入通道23。所述工作气体冲击杆28的端头,并通过径向延伸的通道25流出阴极。所述气体受到阴极主体阶梯剖面和绝缘套筒15的限制并受压通过涡流器26,在阳极的中空内部由于在阴极尖端14与阳极17之间放电,气体被激励成等离子体。
所述氮气通过通道23流动时被冷却,并冲击杆28的端头,保持整个尖端在使用时冷却。气体也保持主体13冷却。
涡流器26典型地是由金属例如铜制作,并当火炬如热至工作温度时,它膨胀接触到绝缘套筒15的内表面,并形成一密封。
实践中得知,火炬的尺寸和工作条件必须小心选择,才可保证本发明的电弧火炬在长时间内满意使用,在一使用实例中,其阴极尖端14有20mm的直径和25mm的长度,而螺纹杆28从背部延伸约10mm。气体通道23直径大约是7mm氮气吹入的流量大约是25gm/sec。电弧的供电电压是300V,电流是200A,涡流器26所达到的温度不超过800℃。
虽然本发明结合了特别实例进行介绍,但它可有多种的形式的实施。例如,其它结构气体通道可以延伸穿过阴极。如需要,也可在阳极12采用气体冷却。另外,并不限定涂钍的钨是制作阴极尖端的唯一一种材料,而它必须由有高熔点的材料制作,并且是由可热离子发射的材料制作。

Claims (4)

1、一种直流电弧火炬的气冷阴极,有一连接至主体的尖端,其内一用于工作气体的气体通道穿过主体,接近尖端,并邻近尖端气体流出主体。
2、根据权利要求1所述的气冷阴极,其特征在于一涡流器围绕阴极的尖端,并位于工作气体流出主体的出口的下游。
3、根据权利要求2所述的气冷阴极,其特征在于上述涡流器是金属制的,使用时当火炬加热至使用温度时,它膨胀并封住将阴极与阳极绝缘的套筒。
4、根据前述任何一项权利要求所述的气冷阴极,其特征在于上述气体通道穿过阴极连通尖端,使工作气体通过阴极时接触到尖端。
CN91100379A 1990-01-17 1991-01-17 电弧火炬用的气冷阴极 Expired - Fee Related CN1029206C (zh)

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AT (1) ATE140579T1 (zh)
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DE (1) DE69120968T2 (zh)
ES (1) ES2091912T3 (zh)
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CN103200758A (zh) * 2010-10-04 2013-07-10 衢州市广源生活垃圾液化技术研究所 电弧等离子体装置
CN104454418A (zh) * 2014-11-05 2015-03-25 中国科学院力学研究所 一种可提高运行稳定性的电弧加热发动机
CN110860691A (zh) * 2018-08-28 2020-03-06 蒋锐 等离子体炬熔融金属丝耗材沉积挤出3d打印喷头
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CN111790334B (zh) * 2016-01-05 2021-12-03 螺旋株式会社 涡水流产生器、水等离子体产生装置、分解处理装置
CN110860691A (zh) * 2018-08-28 2020-03-06 蒋锐 等离子体炬熔融金属丝耗材沉积挤出3d打印喷头

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IN180745B (zh) 1998-03-14
PT96494A (pt) 1994-02-28
CN1029206C (zh) 1995-07-05
EP0571374A1 (en) 1993-12-01
PT96494B (pt) 1996-10-31
WO1991011089A1 (en) 1991-07-25
EP0571374A4 (en) 1993-03-05
JP2775198B2 (ja) 1998-07-16
CA2073986C (en) 1999-08-03
AU7160791A (en) 1991-08-05
DE69120968D1 (de) 1996-08-22
EP0571374B1 (en) 1996-07-17
CA2073986A1 (en) 1991-07-18
KR0137957B1 (ko) 1998-07-01
US5296668A (en) 1994-03-22
ATE140579T1 (de) 1996-08-15
JPH05505697A (ja) 1993-08-19
KR920704551A (ko) 1992-12-19
GR3020567T3 (en) 1996-10-31
AU644132B2 (en) 1993-12-02
DE69120968T2 (de) 1996-11-28
ZA91350B (en) 1992-04-29
ES2091912T3 (es) 1996-11-16

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