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CN201434601Y - Dual Phase Submerged Arc Furnace - Google Patents

Dual Phase Submerged Arc Furnace Download PDF

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Publication number
CN201434601Y
CN201434601Y CN2009200785181U CN200920078518U CN201434601Y CN 201434601 Y CN201434601 Y CN 201434601Y CN 2009200785181 U CN2009200785181 U CN 2009200785181U CN 200920078518 U CN200920078518 U CN 200920078518U CN 201434601 Y CN201434601 Y CN 201434601Y
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furnace
furnace body
electrode
front bed
slag
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向方贵
向跃新
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Abstract

双相矿热炉,设插入三相交流电极的炉体,增设与炉体连通的前床,内装有直流电极、床面为斜面、排渣口与炉体内液面高度相同;直流电极由蜗轮变速装置提升和用可控硅整流装置供电。冶炼中开始时交流电极在炉体下腔加热矿石融化为液体,工作时上升到约炉体中部固定不动,矿石加至炉顶;前床液体中冶炼金属由斜面自动排入炉体,两处冶炼金属均由炉底连续排出;炉渣也连续排出。金属回收率大大提高,可达98%以上;废渣内金属含量减少至0.09%以下,解决了现有建材环保污染。在炉体中下部冶炼,无烟气排出,大大改善环境污染。连续冶炼与现有一炉一炉冶炼和排放相比,节能约15%,且效率高。可用于从矿石中冶炼铜等各种金属。此‘直流前床’,还可用于焦煤冶炼的鼓风炉和冲天炉。

Two-phase submerged arc furnace is equipped with a furnace body inserted with three-phase AC electrodes, and a front bed connected to the furnace body is added. DC electrodes are installed inside, the bed surface is a slope, and the height of the slag discharge port is the same as the liquid level in the furnace body; the DC electrode is controlled by a worm wheel. The transmission is boosted and powered with a silicon controlled rectifier. At the beginning of smelting, the AC electrode heats the ore in the lower chamber of the furnace body to melt it into a liquid. When it is working, it rises to about the middle of the furnace body and is fixed, and the ore is added to the top of the furnace; The smelted metals are continuously discharged from the bottom of the furnace; the slag is also continuously discharged. The metal recovery rate is greatly improved, which can reach more than 98%; the metal content in the waste residue is reduced to less than 0.09%, which solves the environmental pollution of existing building materials. It is smelted in the middle and lower part of the furnace body, no smoke is discharged, and the environmental pollution is greatly improved. Compared with the existing furnace-by-furnace smelting and emission, continuous smelting saves about 15% of energy and has high efficiency. It can be used to smelt various metals such as copper from ore. This 'direct current front bed' can also be used in blast furnaces and cupolas for coking coal smelting.

Description

Biphase ore furnace
(1) technical field:
The utility model biphase ore furnace relates to a kind of hot stove in ore deposit of metal smelting.Belong to versatible furnace class (F27D).
(2) background technology:
Hot stove in the ore deposit of existing metal smelting and smelting process are seen Fig. 9, and the hot stove in ore deposit is made up of body of heater 1n, slag-drip opening 1.3n, metal notch 1.1n, ac electrode 3n, power distribution equipment 4n and elevating mechanism 5n etc.Its smelting process has the following step: 1. throw solid material volume V and reach 0.15~0.25 of total measurement (volume) in body of heater, elevating mechanism descends ac electrode 3n and inserts in the solid material 6, connect power supply, ac electrode energising heat solid raw material reaches normal value until temperature and electric current; 2. continue to add from the top down the solid raw material to arriving body of heater 1n top; Bottom solid material heating becomes liquid, moves on the liquid level 1.2n during heating, and ac electrode 3n rises simultaneously, until liquid level rises to furnace roof, is liquid in the whole body of heater; 3. open slag-drip opening 1.3n, discharge the first stove slag; 4. repeat above-mentioned steps 2.~3. once, just finish and smelt second stove, the 3rd stove ...., 5. as stated above, open metal notch 1.1n just now behind the many stoves of smelting, emit the liquid metals of smelting in the lump.
There are the following problems for above-mentioned traditional hot stove in ore deposit and smelting process: it is low 1. to smelt the metal recovery rate that, and does not reach national standard.2. smelt overrun metal content in the slag of discharging the back, generally exceeding standard reaches more than 0.3%.Slag is generally silicon and calcium, is liquid when beginning to get rid of, and becomes solid later on, can offer cement plant etc. and make construction material (pulverizing of controlling oneself), and overrun metal content produces secondary pollution in the building materials, is detrimental to health.3. in the smelting process, liquid level 1.2n is when furnace bottom, and the solid material layer depth has sealing function, and the stove outer air does not enter, and belongs to the normal smelting that few air enters; And, that is to say the solid material ore layer height h of liquid level top because after smelting a stove, ac electrode and liquid level need rise to furnace roof always 6nThe close furnace roof of very little (see figure 9) liquid level heat zone, the as easy as rolling off a log liquid level heat zone that enters of stove outer air, every thus refining one stove produces a large amount of gases at furnace roof and discharges, and causes serious environmental to pollute.
(3) summary of the invention:
The biphase ore furnace that the utility model proposes is exactly to solve the existing hot stove in ore deposit and the smelting process metal recovery rate is low, problem such as overrun metal content and environmental pollution in the slag.Its technical scheme is as follows:
Biphase ore furnace, comprise body of heater 1, the ac electrode in body of heater 3, the AC distribution device 4 that has metal notch 1.1 and exchange lowering or hoisting gear 5, it is characterized in that: A) outside body of heater front side wall 1.3, fix an external crucible 2, external crucible have upwards stretch out around the sealing external crucible sidewall 2.2, the rear end is an external crucible rear wall 2.7 near body of heater front side wall 1.3, has connected entrance 1.4 on external crucible rear wall and the body of heater front side wall; The external crucible bed surface is inclined-plane 2.4, and inclined-plane low port 2.6 is connected the connected entrance place; Have slag-drip opening 2.3 on the external crucible sidewall, slag-drip opening height h2.3 is identical with operating fluid level height h1.2 in the body of heater; Preceding bed foundation 2.5 usefulness refractory materials are made, and are supported on ground 9; B) the direct-flow positive pole 2.1+ and the direct current negative pole 2.1-of upper and lower layout are housed in external crucible; The direct current negative pole is imbedded preceding bed foundation 2.5 surfaces, and direct-flow positive pole 2.1+ working depth is below the operating fluid level height; If DC switchgear 7 to direct-flow positive pole and negative pole power supply; If be used for the direct current elevating mechanism 8 of lifting direct-flow positive pole.
Above-mentioned direct current elevating mechanism 8 is provided with: 1. establish transverse arm 8.3, be provided with the clamping head 8.3a of clamping direct-flow positive pole in it, 8.3b and felt pad 8.4, transverse arm two outer end 8.3c, 8.3d be placed in the long column 8.5 that is fixed in ground respectively and be fixed in outside the short column 8.2 of external crucible rear wall 2.7, between transverse arm and column for sliding or rolling cooperation; 2. worm gear speed change lowering or hoisting gear 8.1 is installed on short column or long column, and worm screw 8.1a external part is fixed in transverse arm 8.3 in it.
Above-mentioned slag-drip opening is that the long limit of the rectangular opening of external crucible sidewall short transverse is stopped up one section with refractory material, and obstruction mouthful position can change the movable slag-drip opening 2.3 that forms with liquid surface lifting.
Concrete structure, further features such as above-mentioned DC switchgear 7, direct current elevating mechanism 8, AC distribution device 4, interchange lowering or hoisting gear 5 are described in detail below in conjunction with the accompanying drawings.
The beneficial effects of the utility model:
I. owing to set up and adopt galvanic external crucible, the kish of slag liquid is focused on the external crucible bottom fast up hill and dale by galvanic electrodeposition effect, metal recovery rate is improved greatly, can reach more than 98%.Particularly smelt precious metal, economic benefit improves significantly.Ii. simultaneously, tenor significantly reduces in the waste residue of smelting, is not more than 0.09%, satisfies the building materials environmental protection requirement.Iii. because in the smelting process, operating position liquid surface heat zone (being ac electrode and liquid level position) is in the body of heater middle part all the time, under the sealing of solid material layer, stove outer air inlet is few, remain the normal smelting state of little air, the hot stove furnace roof in ore deposit does not have the flue gas discharge during smelting, improves greatly and smelts environmental pollution.Iv. because the slag-drip opening of design is identical with the liquid level height, slag emission and body of heater raffinate stream after the external crucible smelting all can carry out automatically continuously to external crucible, and then the adding of solid material also can automatic or manual adds continuously by the decline of raw material aspect; Owing to establish the inclined-plane, the interior kish of smelting of external crucible can sink to metal smelting discharge continuously simultaneously in bottom of furnace body and the body of heater continuously simultaneously.Whole thus smelting process is carried out continuously automatically, and ac electrode maintains static during work, ac electrode repetitiousness lifting during with existing mine heat furnace smelting, and the smelting of a stove one stove and the smelting process of discharging are compared, the heat insulation, furnace temperature is stable; Reduced the power consumption that surperficial thawing heats up, but saves energy is about about 15%, and efficient improves greatly.V. automatic continuous discharging slag helps the recovery of various non-ferrous metal metallurgy waste residues.Vi. the utility model ' the direct current external crucible ' that provide also can be used for blast furnace and the furnace cupola that coking coal is smelted, and all can improve metal recovery rate greatly, reduces the waste residue tenor and satisfy the environmental protection demand.The convenient of slag-drip opening position regulated when vii. establishing movable slag-drip opening and can adapt to liquid fluctuating, when smelting different metal kind and content to satisfy, and the adjustment of liquid level.
(4) description of drawings:
General layout of Fig. 1 the utility model and structural representation
Fig. 2 DC switchgear 7 block diagrams
Fig. 3 direct current elevating mechanism 8 schematic diagrames
Fig. 4 Fig. 3 A-A cutaway view (direct current lifting chuck structure)
Fig. 5 AC distribution device 4 block diagrams
Fig. 6 Fig. 5 B-B cutaway view (the ac electrode 3A that only draws is electrically connected diagram)
Fig. 7 exchanges lowering or hoisting gear 4 schematic diagrames (the ac electrode 3A lowering or hoisting gear that only draws, its lowering or hoisting gear in two is identical, and is independently)
Fig. 8 Fig. 7 C-C analyses and observe
Existing hot stove general layout in ore deposit of Fig. 9 and structural representation
(5) specific embodiment:
Embodiment: see Fig. 1~Fig. 8
See Fig. 1, be provided with body of heater 1 in the present embodiment biphase ore furnace, inboard wall of furnace body is the furnace lining that refractory material is made; The rear wall bottom has outer tubaeform metal notch 1.1.Solid material ore 6 is housed in the body of heater during work; (3A, 3B 3C) insert in the ore three-phase alternating current electrode 3, generally adopt three to exchange carbon pole.Be provided with AC distribution device 4 and exchange lowering or hoisting gear 5.Ground is embedded with the thermal insulating layer of making of refractory brick 10 below the bottom of furnace body.
See Fig. 1, outside body of heater front side wall 1.3, fix an external crucible 2, external crucible have upwards stretch out around the sealing external crucible sidewall 2.2, the rear end is an external crucible rear wall 2.7 near body of heater front side wall 1.3, has oblique connected entrance 1.4 on external crucible rear wall 2.7 and the body of heater front side wall 1.3; The external crucible bed surface is inclined-plane 2.4, (one section gradient is selected 1: 9 for good), inclined-plane low port 2.6 is connected connected entrance 1.4 places, and both Dou degree are identical.Have outer tubaeform slag-drip opening 2.3 on the external crucible front end external crucible sidewall 2.2, slag-drip opening height h 2.3With operating fluid level height h in the body of heater 1 1.2Identical; Can adopt the long limit of rectangular opening of external crucible sidewall 2.2 short transverses to stop up one section, and obstruction mouthful position can change the movable slag-drip opening 2.3 that forms with liquid surface lifting with refractory material.Preceding bed foundation 2.5 usefulness refractory materials are made, and can adopt the unsplit bedplate 2.5 that is put in ground 9, also can adopt short base 2.5a, are supported in ground 9 with two leg 2.5b (seeing dotted line among Fig. 1).
See Fig. 1, the direct-flow positive pole 2.1+ and the direct current negative pole 2.1-of upper and lower layout is housed in external crucible; The direct current negative pole is imbedded preceding bed foundation 2.5 surfaces, direct-flow positive pole operating position h below liquid level 2.1The place, h 2.1Be the distance of DC electrode base apart from slag-drip opening.If DC switchgear 7 is powered to the direct current positive and negative electrode; Be provided with the direct current elevating mechanism 8 of lifting direct-flow positive pole.General connected entrance 1.4 is apart from the height h of body of heater bottom surface 1.4Be body of heater height overall H 10.3~0.35.The preceding degree of depth h of bed electrode place 2It is good being chosen as 600mm.
See Fig. 2, DC switchgear 7 following compositions: 1. establish silicon controlled rectifier 7.2, its input 7.2a is connected with three-phase alternating-current supply 7.1, input voltage 380V; Its output DC voltage is 12~24V, draws positive electrode 7+, negative electrode 7-and is electrically connected with direct-flow positive pole 2.1+ and direct current negative pole 2.1-respectively; 2. positive electrode 7+ is a cord, and the cord termination is the copper anchor ear 7.3 that is electrically connected with direct-flow positive pole 2.1+, and based on the scalability of cord, direct-flow positive pole 2.1+ and metal anchor ear can free upper and lower moving under direct current elevating mechanism 8 drives.3. there is controller can control DC voltage, electric current etc. in the silicon controlled rectifier 7.2.
See Fig. 3, Fig. 4, direct current elevating mechanism 8 following compositions: 1. establish transverse arm 8.3, direct-flow positive pole 2.1+ passes the transverse arm place, there is two iron clamping head 8.3a, 8.3b (or iron anchor ear) and the felt pad all around 8.4 that clamps direct-flow positive pole 2.1+ at the transverse arm two ends, transverse arm two outer end 8.3c, 8.3d be placed in the long column 8.5 of fixed bottom boundary respectively and be fixed in outside the short column 8.2 of external crucible rear wall 2.7, slide between transverse arm and column or roll and cooperate, can adorn and slide or rolling bearing, realize that transverse arm can move relative to two columns are upper and lower.2. (column can be used round steel) installs worm gear speed change lowering or hoisting gear 8.1 on short column 8.2 or long column 8.5, and the worm screw 8.1a in this device 8.1 is fixed in transverse arm 8.3.Because can upper and lowerly move on two columns transverse arm two outer ends, thus behind the electric motor starting of worm gear speed change lowering or hoisting gear 8.1, drive that worm gear rotates and worm screw 8.1a is upper and lower moves and drive transverse arm 8.3, direct-flow positive pole 2.1+ and felt pad 8.4 etc. freely rise or descend.Felt pad 8.4 is with direct-flow positive pole 2.1 and transverse arm electric insulation.Direct-flow positive pole 2.1 shape of cross sections are rectangle.It is good that the direct-flow positive pole size can be 300 * 400 * 500mm.
See Fig. 5, Fig. 6, AC distribution device 4 following compositions: the wiring cabinet 4.1 that main widely different road power supply, switch etc. are arranged in 1. establishing; The low-tension transformer 4.3 that the controller 4.2 of temperature and ac electrode lifting etc. and voltage are reduced to 75~120V in control alternating voltage, electric current, the body of heater by 380V.2. the low-tension transformer low-pressure side is drawn three cord 4.3A, 4.3B, 4.3C, its end is adorned metal anchor ear 4.4 respectively, and bind round respectively outside three ac electrode 3A, 3B, 3C, low-voltage AC is transmitted on the electrode, based on the scalability of cord, ac electrode and metal anchor ear exchange lowering or hoisting gear 5 can free upper and lower moving under driving.3. the ac electrode cross section is circular, arranges can be in the space and overlooks leg-of-mutton three vertex positions.
See Fig. 7 and Fig. 8, exchange lowering or hoisting gear 5 following compositions: 1. three ac electrode 3A, 3B, 3C respectively establish a lowering or hoisting gear, establish a transverse arm 5.3 in every, article one, ac electrode 3A passes the transverse arm place, there is the clamping head 5.5 of clamping electrode this transverse arm termination, place, the clamping head opening part is established bolt 5.6 and is tightened up, and insulation tube 5.4 is arranged between clamping head 5.5 and electrode.Transverse arm the inner has sliding sleeve 5.3a to be placed in outside the column 5.2 of fixed bottom boundary, and 5.2 on sliding sleeve 5.3a and column are the slip or the cooperation of rolling.2. worm gear speed change lowering or hoisting gear 5.1 is installed, and the worm screw 5.1a in this device 5.1 is fixed in transverse arm 5.3 on column 5.2.Because can upper and lowerly move on column the transverse arm outer end, behind the electric motor starting of worm gear speed change lowering or hoisting gear 5.1, driving the upper and lower transverse arm 5.3 that moves and drive one of worm gear rotation and worm screw 5.1a, ac electrode 3A, insulation tube 5.4 etc. can free lifting thus.Insulation tube 5.4 is with ac electrode and transverse arm electric insulation.
The smelting process of above-mentioned biphase ore furnace metal smelting, this method comprises the following steps: to see Fig. 1
I., the hot stove in above-mentioned two-phase ore deposit is set.
Ii. connected entrance 1.4 and metal notch 1.1 usefulness refractory materials 1.5 are blocked, thrown solid material ore 6 in body of heater, ore volume V reaches 0.15~0.25 of total measurement (volume), and optional 0.2; Exchange lowering or hoisting gear 5 power supplies and start, ac electrode 3 is descended insert in the ore; Connect AC distribution device 4 power supplys, ac electrode 3 energising heating ores reach normal value until temperature and electric current.
Iii. start direct current elevating mechanism 8, direct-flow positive pole descend and the direct current negative pole between apart from h 2In 30~50mm scope; At this moment, continue to put into from the top down solid material to arriving the body of heater top; Interchange adds pines for that the bottom solid material becomes liquid in the body of heater, liquid level 1.2 moves on gradually, and input currents reach when setting the corresponding numerical value of operating fluid level height in the controller 4.2, controller 4.2 control interchange lowering or hoisting gears 5, make ac electrode stop to rise, be fixed on height H 3The position, H 3Be set at (0.4~0.6) H 1Can be controlled in 0.5H1 herein, H1 is body of heater 1 height overall.Liquid level is apart from the distance h on ac electrode base at this moment 3Can be controlled in 80~120mm scope, can be taken as 100mm; Liquid level 1.2 height h when then working 1.2Can be controlled in 0.5H1+100mm.The metal of producing in the body of heater is sunken at the bottom of the body of heater.
Iv. connect DC switchgear 7 dc sources, two DC electrodes are charged; Remove connected entrance refractory material 1.5, connected entrance 1.4 is communicated with, moment slag liquid flow to external crucible 2; Start direct current elevating mechanism 8, direct-flow positive pole 2.1+ rises with liquid level and rises to place, h2..1 operating position, slag-drip opening below; To be the DC electrode base can be controlled in 80~120mm apart from the distance of slag-drip opening to h2.1, and according to this status requirement, the input current by motor in the control worm gear speed change lowering or hoisting gear 8.1 makes DC electrode stop at this operating position; The DC electric field that forms with kish in the slag liquid inhale in the external crucible bottom through the inclined-plane 2.4, connected entrance 1.5 bottom surfaces pass back into furnace bottom in the body of heater.
V. liquid level 1.2 rises to slag-drip opening 2.2 positions, and the continuous overflow deslagging is loaded in the container 11; While body of heater top ore 6 volumes descend, the at this moment available artificial or additional at any time automatically solid material ore of filling of machinery; Press connected entrance 1.5 and be communicated with back 2~6 hours, open metal notch 1.1, metal is discharged in container 12.Realize thus smelting automatically continuously.The coverture 2.8 of preserving moisture can be placed in the liquid level surface in the external crucible 2, generally adopts husk, so that liquid is incubated and prevents that heat scatters and disappears.

Claims (3)

1.双相矿热炉,包括开有金属流出口(1.1)的炉体(1)、在炉体内的交流电极(3)、交流配电装置(4)和交流升降装置(5),其特征是:1. Two-phase submerged arc furnace, including a furnace body (1) with a metal outlet (1.1), an AC electrode (3) in the furnace body, an AC power distribution device (4) and an AC lifting device (5). Features are: A)在炉体前侧壁(1.3)外固定一个前床(2),前床有向上伸出四周封闭的前床侧壁(2.2),后端紧靠炉体前侧壁(1.3)的为前床后壁(2.7),前床后壁和炉体前侧壁上开有连通口(1.4);前床床面为斜面(2.4),斜面低端口(2.6)连接在连通口处;在前床侧壁上开有排渣口(2.3),排渣口高度(h2.3)与炉体内工作液面高度(h1.2)相同;前床底座(2.5)用耐火材料制作,并被支撑于地面(9);A) A front bed (2) is fixed outside the front side wall (1.3) of the furnace body. The front bed has a closed front bed side wall (2.2) protruding upwards and the rear end is close to the front side wall (1.3) of the furnace body. It is the front bed rear wall (2.7), and the front bed rear wall and the furnace body front side wall are provided with a communication port (1.4); the front bed bed surface is an inclined plane (2.4), and the lower port of the inclined plane (2.6) is connected to the communication port; There is a slag outlet (2.3) on the side wall of the front bed, the height of the slag outlet (h2.3) is the same as the height of the working liquid level (h1.2) in the furnace body; the front bed base (2.5) is made of refractory material, and supported on the ground (9); B)在前床内装有上、下布置的直流正极(2.1+)和直流负极(2.1-);直流负极埋入前床底座(2.5)表面,直流正极工作高度在工作液面高度下面;设向直流正、负极供电的直流配电装置(7);设用于升降直流正极的直流升降机构(8)。B) There are DC positive poles (2.1+) and DC negative poles (2.1-) arranged up and down in the front bed; the DC negative poles are embedded in the surface of the front bed base (2.5), and the working height of the DC positive poles is below the working liquid level; A DC power distribution device (7) for supplying power to the DC positive and negative poles; a DC lifting mechanism (8) for lifting the DC positive pole. 2.按权利要求1所述矿热炉,其特征是所述直流配电装置(7)包括:①可控硅整流装置(7.2),它的输入端(7.2a)与三相交流电源(7.1)连接,它的输出端为直流电源,引出正电极(7+)、负电极(7-)分别与直流正极(2.1+)和直流负极(2.1-)电连接;②正电极(7+)为软电线,其端头装有与直流正极电连接的金属抱箍(7.3)。2. By the described submerged arc furnace of claim 1, it is characterized in that said DC power distribution device (7) comprises: 1. thyristor rectifier (7.2), its input terminal (7.2a) and three-phase AC power supply ( 7.1) Connection, its output terminal is a DC power supply, which leads to the positive electrode (7+) and the negative electrode (7-) to be electrically connected to the DC positive electrode (2.1+) and the DC negative electrode (2.1-) respectively; ②The positive electrode (7+ ) is a flexible wire, and its end is equipped with a metal hoop (7.3) electrically connected to the DC positive pole. 3.按权利要求1所述矿热炉,其特征是直流升降机构(8)设有:①设横臂(8.3),其内设有夹持直流正极的夹持头(8.3a,8.3b)和绝缘垫(8.4),横臂两外端(8.3c,8.3d)分别套于固定于地面的长立柱(8.5)和固定于前床后壁(2.7)的短立柱(8.2)外,横臂和立柱间为滑动或滚动配合;②在短立柱或长立柱上安装蜗轮变速升降装置(8.1),其内蜗杆(8.1a)伸出端固定于横臂(8.3)。3. According to the submerged arc furnace according to claim 1, it is characterized in that the DC lifting mechanism (8) is provided with: ① setting a cross arm (8.3), which is provided with a clamping head (8.3a, 8.3b) for clamping the DC positive pole ) and insulating pads (8.4), the two outer ends of the cross arm (8.3c, 8.3d) are respectively set on the long column (8.5) fixed on the ground and the short column (8.2) fixed on the front wall (2.7) of the bed, There is a sliding or rolling fit between the cross arm and the column; ② install the worm gear variable speed lifting device (8.1) on the short column or the long column, and the extended end of the inner worm (8.1a) is fixed to the cross arm (8.3). 4按权利要求1所述矿热炉,其特征是排渣口为前床侧壁高度方向的矩形口长边用耐火材料堵塞一段,且堵塞口位置可随液面升降改变而形成的活动排渣口(2.3)。4. According to the submerged arc furnace according to claim 1, it is characterized in that the slag discharge port is a rectangular port in the height direction of the front bed side wall, and the long side is blocked with refractory material for a section, and the position of the blockage port can be changed with the liquid level. Slag mouth (2.3).
CN2009200785181U 2009-01-06 2009-01-06 Dual Phase Submerged Arc Furnace Expired - Fee Related CN201434601Y (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101487666B (en) * 2009-01-06 2012-04-25 向方贵 Two-phase ore-smelting furnace and smelting method
CN104482764A (en) * 2014-12-10 2015-04-01 向方贵 Combined protection smelting furnace and smelting method
CN105486094A (en) * 2015-12-23 2016-04-13 河南豫光金铅股份有限公司 Novel method of nitrogen protecting electrothermal external crucible electrode and device thereof
WO2020251491A3 (en) * 2019-06-12 2021-01-14 Karakaş Arge Teknoloji̇ Ulaştirma Gemi̇ Mad. Met. San. Ve Ti̇c. A.Ş Production of metal alloys from ores and metal melting direct current (dc) furnace systems

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101487666B (en) * 2009-01-06 2012-04-25 向方贵 Two-phase ore-smelting furnace and smelting method
CN104482764A (en) * 2014-12-10 2015-04-01 向方贵 Combined protection smelting furnace and smelting method
CN105486094A (en) * 2015-12-23 2016-04-13 河南豫光金铅股份有限公司 Novel method of nitrogen protecting electrothermal external crucible electrode and device thereof
WO2020251491A3 (en) * 2019-06-12 2021-01-14 Karakaş Arge Teknoloji̇ Ulaştirma Gemi̇ Mad. Met. San. Ve Ti̇c. A.Ş Production of metal alloys from ores and metal melting direct current (dc) furnace systems

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