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CN107761129A - Control method is peeled off in electrolytic manganese dioxide automation - Google Patents

Control method is peeled off in electrolytic manganese dioxide automation Download PDF

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Publication number
CN107761129A
CN107761129A CN201610669146.4A CN201610669146A CN107761129A CN 107761129 A CN107761129 A CN 107761129A CN 201610669146 A CN201610669146 A CN 201610669146A CN 107761129 A CN107761129 A CN 107761129A
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CN
China
Prior art keywords
plate
anode
manganese dioxide
stripping
electrolytic manganese
Prior art date
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Pending
Application number
CN201610669146.4A
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Chinese (zh)
Inventor
陈奇志
童张法
韦国柱
王绍立
陆宾
史磊
孙丽霞
陈基梅
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
GUANGXI NON-FERROUS METALS GROUP HUIYUAN MANGANESE INDUSTRY Co Ltd
Guangxi University
Original Assignee
GUANGXI NON-FERROUS METALS GROUP HUIYUAN MANGANESE INDUSTRY Co Ltd
Guangxi University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by GUANGXI NON-FERROUS METALS GROUP HUIYUAN MANGANESE INDUSTRY Co Ltd, Guangxi University filed Critical GUANGXI NON-FERROUS METALS GROUP HUIYUAN MANGANESE INDUSTRY Co Ltd
Priority to CN201610669146.4A priority Critical patent/CN107761129A/en
Publication of CN107761129A publication Critical patent/CN107761129A/en
Pending legal-status Critical Current

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    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25BELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
    • C25B1/00Electrolytic production of inorganic compounds or non-metals
    • C25B1/01Products
    • C25B1/21Manganese oxides
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25BELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
    • C25B15/00Operating or servicing cells
    • C25B15/02Process control or regulation

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • Materials Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Automation & Control Theory (AREA)
  • Inorganic Chemistry (AREA)
  • Electrolytic Production Of Metals (AREA)

Abstract

本发明公开了一种电解二氧化锰自动化剥离控制方法,包括校板剥离仓和主料仓,所述校板剥离仓的上方设有供阳极钛板进入的剥离进口,所述校板剥离仓的下方和主料仓相连通,所述校板剥离仓中设有两个并排分布且相对转动的第一滚筒,所述第一滚筒的下方沿阳极钛板下行方向异位错开设置有两个相对转动的第二滚筒。本发明提供的电解二氧化锰自动化剥离控制方法,通过异位错开设置两个第二滚筒使得阳极钛板发生扭曲变形,利用阳极钛板和电解二氧化锰的硬度差使得附着在阳极钛板的电解二氧化锰颗粒脱落下来,避免损伤极板并提高剥离效率,从而能够降低生产成本并缩短电解系统出槽停电时间,提高了生产效率及产品质量,且结构简单,维护方便。

The invention discloses an automatic stripping control method for electrolytic manganese dioxide, which comprises a calibration plate stripping bin and a main material bin. A stripping inlet for anode titanium plates is provided above the calibration stripping bin. The calibration stripping bin The lower part of the first roller is connected with the main material bin, and two first rollers arranged side by side and relatively rotating are arranged in the stripping bin. The lower part of the first roller is staggered along the downward direction of the anode titanium plate to set two Relatively rotating second drum. The electrolytic manganese dioxide automatic stripping control method provided by the present invention distorts and deforms the anode titanium plate by setting two second rollers in different positions, and makes use of the difference in hardness between the anode titanium plate and electrolytic manganese dioxide to make the anode titanium plate adhere to the anode titanium plate. The electrolytic manganese dioxide particles fall off, avoiding damage to the plate and improving the stripping efficiency, thereby reducing production costs and shortening the power outage time of the electrolysis system, improving production efficiency and product quality, and the structure is simple and easy to maintain.

Description

Control method is peeled off in electrolytic manganese dioxide automation
Technical field
The present invention relates to a kind of automated production line control method, more particularly to a kind of automation of electrolytic manganese dioxide to peel off Control method.
Background technology
Electrolytic manganese dioxide product peels off the technical barrier of always this area.The tradition that electrolytic manganese dioxide product is peeled off Mode is manually to beat, and the working strength manually beaten is big, and operating efficiency is low, and the actual bodily harm to worker is big.Traditional The method that electrolytic manganese dioxide product is peeled off, mainly tapping positive plate using hard thing makes electrolytic manganese dioxide product from pole plate Spin off.Such a process increases the correction difficulty of school panel assembly, and easily pole plate is caused to damage, rehabilitation expense is huge.
In addition, the manganese dioxide granularity that traditional stripping mode obtains can not typically meet the production need of subsequent processing Will, therefore need special disintegrating machine to carry out secondary operation after peeling off, add processing cost.
The content of the invention
The technical problems to be solved by the invention are to provide a kind of electrolytic manganese dioxide automation and peel off control method, can Reduce production cost and shorten electrolysis system and go out groove power off time, improve production efficiency and product quality, and technique is simple, is easy to Promote.
The present invention is to provide a kind of electrolytic manganese dioxide automation to solve the technical scheme that above-mentioned technical problem uses Stripping means, comprise the following steps:A) first extract anode titanium plate from manganese dioxide electrolytic cell and obtain manganese dioxide crude product;b) Control anode titanium plate enters back into two after descending the first roller by two out movements of stripping import of school plate mechanism for stripping The second tin roller that individual dystopy is set;C) the anode titanium plate respectively with the tangent deformation that is distorted of the circumference of two second tin rollers, So that the electrolytic manganese dioxide particle for being attached to anode titanium plate splits away off and fallen into major ingredient storehouse;D) control anode titanium plate it is up from Exited among first roller of two out movements of school plate mechanism for stripping, by being extruded while the first roller so that anode Titanium plate obtains shaping correction.
Control method is peeled off in above-mentioned electrolytic manganese dioxide automation, wherein, the step a) includes:A1 groove face) is utilized The anode and cathode of electrolytic pole board is adjusted to pole plate assembling grove position by driving from electrolytic cell, and the separation for carrying out minus plate and anode titanium plate is made Industry;A2 the anode titanium plate of manganese dioxide crude product is attached with after) being separated, is adjusted to by groove face driving positioned at pole plate lifting groove position On pole plate lifting crane, the calling of lifting crane to be stripped is waited;A3 two pole plate lifting cranes) are controlled in left and right directions movement etc. To be called, two pole plate lifting cranes are located at the both sides of school plate mechanism for stripping, the anode titanium on a pole plate lifting crane For plate when peeling off entrance operation, a pole plate lifting crane then prepares next piece of anode titanium plate for school plate mechanism for stripping in addition.
Control method is peeled off in above-mentioned electrolytic manganese dioxide automation, wherein, it is additionally included in the top of school plate mechanism for stripping Cathode-anode plate suspension bracket, a stripping lifting crane and two pole plate lifting cranes are set, and the both sides that the school plate peels off storehouse are respectively set There is a pole plate lifting groove position, the pole plate lifting crane is located above pole plate lifting groove position.
Control method is peeled off in above-mentioned electrolytic manganese dioxide automation, wherein, the cathode-anode plate suspension bracket, which includes two, puts down The girder that row is set, the girder are provided with more crossbeams, and side-lower is provided with the first boatswain chair outside the both ends of every crossbeam, every Side-lower is provided with the second boatswain chair in the both ends of crossbeam, and the both sides of every girder are respectively provided with an anode and cathode seat tube, positioned at outer The anode and cathode seat tube and the first boatswain chair of side are connected, and are connected positioned at the anode and cathode seat tube of inner side and the second boatswain chair, and at least one The top of root crossbeam is provided with hanger and hanger strengthens angle steel;Two hanging backwards to distribution are provided with every piece of minus plate simultaneously Hook, two are set in every piece of anode titanium plate to the suspension hook of distribution;And cathode-anode plate is alternately placed in electrolytic cell;Electrolytic cell When going out groove, groove face driving is reached above electrolysis groove face by the hanger on cathode-anode plate suspension bracket, is hung by outermost first Two anode and cathode seat tubes on plate remove the minus plate suspension hook of the whole groove of hook, utilize two anode and cathode bearings on the boatswain chair of inner side second Pipe removes the anode titanium plate suspension hook of the whole groove of hook.
Control method is peeled off in above-mentioned electrolytic manganese dioxide automation, wherein, the step c) is additionally included in major ingredient storehouse Bottom sets double adjustable crushing mechanisms of rod, starts this pair of rod adjustable crushing mechanism during blowing, and double rods start to extruding electrolysis two Manganese oxide particle.
Control method is peeled off in above-mentioned electrolytic manganese dioxide automation, wherein, it is adjustable that the step c) is additionally included in double rods Crushing mechanism is provided at both ends with regulation spring, and the die opening for adjusting the adjustable crushing mechanism of double rods is 3mm~8mm.
Control method is peeled off in above-mentioned electrolytic manganese dioxide automation, wherein, the top for being additionally included in the first roller is close Peel off entrance and pneumatic hammer mechanism be set, when anode titanium plate it is up by two backwards to the first roller of motion after, start pneumatic hammer machine Structure impacts anode titanium plate so that the electrolytic manganese dioxide that do not fall off in anode titanium plate is further split away off.
Present invention contrast prior art has following beneficial effect:Electrolytic manganese dioxide automation provided by the invention is peeled off Control method, be distorted deformation by two second tin roller anode titanium plates of dystopy stagger setting, using anode titanium plate and The difference of hardness of electrolytic manganese dioxide causes the electrolytic manganese dioxide particle for being attached to anode titanium plate to split away off, and avoids damage to pole plate And charge stripping efficiency is improved, go out groove power off time so as to reduce production cost and shorten electrolysis system, improve production efficiency And product quality, and it is simple in construction, it is easy to maintenance.
Brief description of the drawings
Fig. 1 is that schematic flow sheet is peeled off in electrolytic manganese dioxide of the present invention automation;
Fig. 2 is the structural representation for the stripping off device that the present invention uses;
Fig. 3 is that the electrolytic manganese dioxide that the present invention uses automates stripping off device and groove position sets schematic diagram;
Fig. 4 is the cathode-anode plate hanger structure top view that the present invention uses;
Fig. 5 is the cathode-anode plate cradle sides structural representation that the present invention uses.
In figure:
1 school plate peels off the roller of 2 major ingredient storehouse of storehouse 3 first
The pneumatic hammer mechanism of disintegrating machine 6 that 4 rods of second tin roller 5 pairs are adjustable
7 anode titanium plates 8 peel off the cathode-anode plate suspension bracket of import 9
10, which peel off the pole plate lifting crane 12 of lifting crane 11, adjusts spring
The hanger of 901 anode and cathode seat tube, 902 cathode boom support 903
The first crossbeam of 904 first reinforcing plate, 905 girder 906
The hanger of 907 second reinforcing plate, 908 second cross beam 909 strengthens angle steel
The boatswain chair of 910 first boatswain chair 911 second
Embodiment
The invention will be further described with reference to the accompanying drawings and examples.
Fig. 1 is that schematic flow sheet is peeled off in electrolytic manganese dioxide of the present invention automation;Fig. 2 is the stripping off device that the present invention uses Structural representation.
Fig. 1 and Fig. 2 are referred to, control method, including following step are peeled off in electrolytic manganese dioxide automation provided by the invention Suddenly:
A) first extract anode titanium plate 7 from manganese dioxide electrolytic cell and obtain manganese dioxide crude product;Waste liquid in electrolytic cell New liquid is formed after sending chemical combination workshop to be processed into coarse filtration liquid, after purified workshop processing to rejoin in electrolytic cell.
B) anode titanium plate 7 is controlled to peel off descending the first rolling by two out movements of import 8 from school plate mechanism for stripping The second tin roller 4 that two dystopys are set is entered back into after cylinder 3.
C) the anode titanium plate 7 respectively with the tangent deformation that is distorted of the circumference of two second tin rollers 4 so that be attached to sun The electrolytic manganese dioxide particle of pole titanium plate 7, which is split away off, to be fallen into major ingredient storehouse 2;Electrolytic manganese dioxide particle after stripping is deposited Storage, sampling analysis send finishing plant to carry out product handling system.
D) control anode titanium plate 7 is up to be exited among the first roller 3 of two out movements of school plate mechanism for stripping, pass through Extruded while crossing the first roller 3 so that anode titanium plate 7 obtains shaping correction.
Control method is peeled off in electrolytic manganese dioxide automation provided by the invention, as shown in figure 3, in school plate mechanism for stripping Top sets 9, one, cathode-anode plate suspension bracket to peel off lifting crane 10 and two pole plate lifting cranes 11, and the school plate peels off storehouse 1 Both sides be respectively provided with pole plate lifting groove position, the pole plate lifting crane 11 be located at pole plate lifting groove position top;Profit of the invention The cathode-anode plate of whole electrolytic cell is hung out into electrolytic cell with groove face driving and cathode-anode plate suspension bracket 9, and anode and cathode is separated, Carry out subsequent treatment.Such as:Anode sends to stripping area, and negative electrode sends to flushing processing.Lifting crane 10 is peeled off mainly to be responsible for pole plate The positive plate hung in material driving is hung to stripping mouth, carries out overburden operation.The positive plate that pole plate is hung in material driving 11 is driven a vehicle by groove face There is provided by cathode-anode plate suspension bracket 9, and giving for block-by-block peels off lifting crane and hang and peel off.Specifically, the step a) bags Include:
A1) driven a vehicle using groove face and the anode and cathode of electrolytic pole board is adjusted to pole plate assembling grove position from electrolytic cell, carry out negative electrode The detached job of plate and anode titanium plate;
A2 the anode titanium plate of manganese dioxide crude product is attached with after) being separated, is adjusted to lift positioned at pole plate by groove face driving On the pole plate lifting crane 11 of groove position, the calling of lifting crane 10 to be stripped is waited;
A3 two pole plate lifting cranes 11) are controlled in be called, two pole plate lifting cranes such as left and right directions movements The 11 anode titanium plate 7 on the both sides of school plate mechanism for stripping, a pole plate lifting crane is when peeling off entrance operation, in addition One pole plate lifting crane 11 then prepares next piece of anode titanium plate 7 for school plate mechanism for stripping.
The structure for the cathode-anode plate suspension bracket 9 that the present invention uses is as shown in Figure 4 and Figure 5.The cathode-anode plate suspension bracket 9 includes two The girder 905 that root be arranged in parallel, the girder 905 are provided with more crossbeams, such as first crossbeam 906 and second cross beam 908, every Side-lower is provided with the first boatswain chair 910 outside the both ends of crossbeam, and side-lower is provided with the second boatswain chair 911 in the both ends of every crossbeam, The both sides of every girder 905 are respectively provided with an anode and cathode seat tube 901, are hung positioned at the anode and cathode seat tube 901 in outside and first Plate 910 is connected, and the anode and cathode seat tube 901 positioned at inner side is connected with the second boatswain chair 911, and the top of at least one crossbeam is provided with Hanger 903 and hanger strengthen angle steel 909.
The cathode-anode plate suspension bracket 9 that the present invention uses, the girder 905 and first crossbeam 906, the connection of second cross beam 908 Portion is provided with axle sleeve and rotary shaft, and the hanger 903 is strengthened angle steel 909 by hanger and is fixed on crossbeam, positioned at outside Anode and cathode seat tube 901 is fixedly linked by cathode boom support 902 and girder 905, the anode and cathode seat tube positioned at inner side 901 are fixedly linked by reinforcing plate and girder 905.
The present invention is each provided with two pieces of suspension hooks on cathode-anode plate simultaneously, and two suspension hooks on every piece of minus plate are all backwards Set, two suspension hooks in anode titanium plate 7 are then arranged oppositely.Cathode-anode plate in electrolytic cell alternately place negative electrode with Distance between negative electrode be it is fixed for 150mm, anode it is same.But the position that cathode-anode plate suspension hook is set is fixed and wrong Position.
As shown in figure 4, cathode-anode plate hanger beam, which is provided with hanger at two, strengthens angle steel 909, mainly make of being scattered hang Stress between ear is on crossbeam.The effect of first crossbeam 906 and second cross beam 908 is by under suffered by the girder 905 of left and right two End is hung power and connected, and is connected to by hanger 903 in groove face driving, realizes the lifting of whole cathode-anode plate.Electrolytic cell goes out When groove, groove face driving is sent to above electrolysis groove face, the outermost on Fig. 5 by the hanger 903 on cathode-anode plate suspension bracket 9 The two anode and cathode seat tubes 901 set go to drive the first boatswain chair 910 movable on cathode-anode plate suspension bracket 9.Set by outermost The two anode and cathode seat tubes 901 put remove the minus plate suspension hook of the whole groove of hook, on two the second boatswain chairs 911 set by inner side Anode and cathode seat tube 901 removes the plate suspension hook of the whole groove of hook.All cathode-anode plates of whole electrolytic cell are all lifted like this Handle.It is of course also possible to individually take positive plate, this is no longer going to repeat them.
Anode titanium plate 7 (attachment product) after being separated, the pole plate for being adjusted to peel off preparation system by groove face driving lift groove On pole plate lifting crane 11 on position, the calling of lifting crane 10 to be stripped is waited.Meanwhile the pole plate on two pole plate lifting groove positions Lifting crane 11 moves the calling for waiting pole plate in left and right directions, and the pole plate on a pole plate lifting crane 11 is peeling off entrance During operation, a pole plate lifting crane 11 is then preparing next piece of anode titanium plate 7 in addition, is ready for stripping machine system.Should Process is completed by automatic control program.
Anode titanium plate 7 is come downwards to school plate mechanism for stripping by the stripping preparation system of the present invention from import 8 is peeled off, and is shelled through school plate Disembark structure two out movements the first roller 3 after enter dystopy set second tin roller 4, at this moment anode titanium plate 7 there occurs Torsional deformation.Because electrolytic manganese dioxide is attached to anode titanium plate 7 and hardness is larger.Therefore, it is attached to the electricity of anode titanium plate 7 Solution manganese dioxide product is split away off immediately.
The up process of anode titanium plate 7, after two the first rollers 3 moved backwards of school plate mechanism for stripping, pneumatic hammer machine Structure 6 starts, impact anode titanium plate 7 so that the electrolytic manganese dioxide that do not fall off in anode titanium plate 7 is further split away off.Meanwhile By being extruded while multiple first roller 3 so that anode titanium plate 7 has obtained shaping.
In order to meet electrolytic manganese dioxide finished product processing requirement, the crude product that anode titanium plate 7 is stripped out also need into Row further crushes.Production line is peeled off in the electrolytic manganese dioxide automation of the present invention, has electrolytic manganese dioxide product crushing work Can, it can directly be worked into the granularity (3-8mm) for meeting subsequent processing.And traditional stripping mode needs special disintegrating machine Secondary operation is carried out, adds processing cost.Concrete function is embodied as:Double rods are provided with the warehouse bottom of stripping machine system can Disintegrating machine 5 is adjusted, it is necessary to start this pair of rod adjustable disintegrating machine 5 during blowing, double rods start to extruding electrolytic manganese dioxide product, The die opening for being provided at both ends with regulation spring 12, the adjustable disintegrating machine 5 of double rods being adjusted of double adjustable disintegrating machines 5 of rod.And realize The electrolytic manganese dioxide product granularity come is broken off to can adjust.Meanwhile double adjustable disintegrating machines 5 of rod are also equipped with sub-sea valve Function, the electrolytic manganese dioxide product transmitting-receiving in stripping machine system bin body freely controls, powerful.
In summary, control method is peeled off in electrolytic manganese dioxide automation provided by the invention, is carried out from peeling off in principle Improve.Major advantage is as follows:1st, solve electrolytic manganese dioxide product and peel off problem.The tradition that electrolytic manganese dioxide product is peeled off Mode is manually to beat, and the working strength manually beaten is big, and operating efficiency is low, and the actual bodily harm to worker is big.2nd, pass through Difference of hardness between positive plate and electrolytic manganese dioxide reaches the purpose that electrolytic manganese dioxide strips down from positive plate.So Damage very little of the production line to positive plate is peeled off in electrolytic manganese dioxide automation.3rd, present invention uses stripping off device and school plate Structure of the device in a warehouse so that the harmful effect such as noise pollution, dust pollution falls below minimum.4th, it is of the invention Production line is peeled off in electrolytic manganese dioxide automation, is had electrolytic manganese dioxide product crushing function, can be directly worked into satisfaction The granularity (3-8mm) of subsequent processing.
Although the present invention is disclosed as above with preferred embodiment, so it is not limited to the present invention, any this area skill Art personnel, without departing from the spirit and scope of the present invention, when a little modification and perfect, therefore the protection model of the present invention can be made Enclose to work as and be defined by what claims were defined.

Claims (7)

1. control method is peeled off in a kind of electrolytic manganese dioxide automation, it is characterised in that is comprised the following steps:
A) first extract anode titanium plate from manganese dioxide electrolytic cell and obtain manganese dioxide crude product;
B) control anode titanium plate from school plate mechanism for stripping peel off descending the first roller by two out movements of import after again The second tin roller set into two dystopys;
C) the anode titanium plate respectively with the tangent deformation that is distorted of the circumference of two second tin rollers so that be attached to anode titanium plate Electrolytic manganese dioxide particle split away off and fall into major ingredient storehouse;
D) anode titanium plate is up is exited among the first roller of two out movements of school plate mechanism for stripping for control, by first Extruded while roller so that anode titanium plate obtains shaping correction.
2. control method is peeled off in electrolytic manganese dioxide automation as described in claim 1, it is characterised in that the step a) Including:
A1) driven a vehicle using groove face and the anode and cathode of electrolytic pole board be adjusted to pole plate assembling grove position from electrolytic cell, carry out minus plate and The detached job of anode titanium plate;
A2 the anode titanium plate of manganese dioxide crude product is attached with after) being separated, is adjusted to by groove face driving positioned at pole plate lifting groove position Pole plate lifting crane on, wait the calling of lifting crane to be stripped;
A3) control two pole plate lifting cranes to be called in left and right directions movement etc., two pole plate lifting cranes are located at school The both sides of plate mechanism for stripping, the anode titanium plate on a pole plate lifting crane is when peeling off entrance operation, a pole plate in addition Lifting crane then prepares next piece of anode titanium plate for school plate mechanism for stripping.
3. control method is peeled off in electrolytic manganese dioxide automation as described in claim 2, it is characterised in that is additionally included in school The top of plate mechanism for stripping sets cathode-anode plate suspension bracket (9), a stripping lifting crane (10) and two pole plate lifting cranes (11), the both sides of school plate stripping storehouse (1) are respectively provided with a pole plate lifting groove position, and the pole plate lifting crane (11) is located at pole Above plate lifting groove position.
4. control method is peeled off in electrolytic manganese dioxide automation as described in claim 3, it is characterised in that the anode and cathode Plate suspension bracket (9) includes two girders (905) be arrangeding in parallel, and the girder (905) is provided with more crossbeams, and the two of every crossbeam The outer side-lower in end is provided with the first boatswain chair (910), and side-lower is provided with the second boatswain chair (911) in the both ends of every crossbeam, every The both sides of girder (905) are respectively provided with an anode and cathode seat tube (901), positioned at the anode and cathode seat tube (901) in outside and first Boatswain chair (910) is connected, and the anode and cathode seat tube (901) positioned at inner side is connected with the second boatswain chair (911), at least crossbeam Top is provided with hanger (903) and hanger strengthens angle steel (909);
Two suspension hooks backwards to distribution are provided with every piece of minus plate simultaneously, two are set in every piece of anode titanium plate to distribution Suspension hook;And cathode-anode plate is alternately placed in electrolytic cell;When electrolytic cell goes out groove, groove face driving is hung by cathode-anode plate Hanger (903) on frame (9) is reached above electrolysis groove face, passes through two anode and cathode bearings on the boatswain chair of outermost first (910) Pipe (901) removes the minus plate suspension hook of the whole groove of hook, is gone using two anode and cathode seat tubes (901) on the boatswain chair of inner side second (911) The anode titanium plate suspension hook of the whole groove of hook.
5. control method is peeled off in electrolytic manganese dioxide automation as described in claim 1, it is characterised in that the step c) The bottom for being additionally included in major ingredient storehouse sets double adjustable crushing mechanisms of rod, starts this pair of rod adjustable crushing mechanism during blowing, double rods are opened Begin to extruding electrolytic manganese dioxide particle.
6. control method is peeled off in electrolytic manganese dioxide automation as described in claim 5, it is characterised in that the step c) Be additionally included in the adjustable crushing mechanism of double rods is provided at both ends with regulation spring, and the die opening for adjusting the adjustable crushing mechanism of double rods is 3mm~8mm.
7. control method is peeled off in electrolytic manganese dioxide as described in claim 1 automation, it is characterised in that is additionally included in the The top of one roller sets pneumatic hammer mechanism close to entrance is peeled off, and passes through two the first rollings backwards to motion when anode titanium plate is up After cylinder, start pneumatic hammer mechanism impact anode titanium plate so that not falling off in anode titanium plate is under electrolytic manganese dioxide further comes off Come.
CN201610669146.4A 2016-08-15 2016-08-15 Control method is peeled off in electrolytic manganese dioxide automation Pending CN107761129A (en)

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