An intelligent waste gas treatment equipment for lithium battery production and processing
Through the design of the moving plate and reciprocating screw structure, the exhaust gas and treatment liquid in lithium battery production are fully mixed, which solves the problem of low contact efficiency between liquid and exhaust gas in the existing device and achieves a more efficient exhaust gas treatment effect.
Patent Information
- Application Number
- CN202411632849.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2044-11-15
AI Technical Summary
When existing waste gas treatment devices are used to treat lithium battery production, the contact efficiency between the liquid and the waste gas in the spraying method is low, resulting in poor treatment effect.
The movable plate and reciprocating screw structure is adopted. The reciprocating screw is driven by a rotary motor to rotate, so that the movable plate moves in the treatment chamber to achieve compression and expansion of the exhaust gas. Combined with the design of the fixed cylinder and piston, it promotes the full mixing and reaction of the exhaust gas and the treatment liquid, and accelerates the reaction rate through multiple nozzles and stirring devices.
The reaction rate and treatment effect of the waste gas and the treatment liquid are improved, and the efficiency and effect of the waste gas treatment are improved.
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Figure CN119327255B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of waste gas treatment, and in particular to intelligent waste gas treatment equipment for lithium battery production and processing. Background Art
[0002] Lithium batteries are rechargeable batteries widely used in electronic devices, electric vehicles, and energy storage systems. They operate by charging and discharging through the intercalation and deintercalation of lithium ions. Lithium battery production generates waste gases. For example, certain components of the electrolyte may decompose at high temperatures or during chemical reactions, releasing acidic gases such as hydrogen fluoride. Therefore, waste gas treatment equipment is required to treat these waste gases.
[0003] Existing waste gas treatment devices typically use spray equipment to treat waste gas. For example, Chinese Patent Publication No. CN221619058U discloses a waste gas treatment device. Although this device uses a water injection mechanism to spray the waste gas at the bottom of the treatment box when the waste gas enters the treatment box from the air inlet pipe, the water spray head opens to spray the waste gas at the bottom of the treatment box. However, this spray method has a low contact efficiency between the liquid and the waste gas, and some gases may not effectively contact the liquid, resulting in poor waste gas treatment. In view of this, the present invention provides an intelligent waste gas treatment device for lithium battery production and processing to solve the above-mentioned technical problems. Summary of the Invention
[0004] In order to solve the technical problems raised in the background technology, the present invention provides an intelligent waste gas treatment equipment for lithium battery production and processing.
[0005] The technical solution is: an intelligent waste gas treatment equipment for lithium battery production and processing, including a bottom plate, A and B, a bracket is installed on the bottom plate, a processing shell is fixed on the bracket, an air inlet, a water inlet and a drain are provided on the processing shell, a reciprocating screw is rotatably connected in the processing shell, a movable plate is provided on the threaded sleeve of the reciprocating screw, the movable plate is sealed and slidably connected to the processing shell, a rotating motor is installed on the top surface of the processing shell, the output shaft of the rotating motor is fixed to the reciprocating screw, and the movable plate moves the processing shell The interior is divided into two parts: an equipment chamber and a processing chamber. A fixed cylinder is distributed in the processing chamber. A liquid inlet and a liquid outlet are provided on the fixed cylinder. A one-way valve is provided at the liquid inlet and the liquid outlet. A piston is sealed and slidably connected in the fixed cylinder. A fixed rod is fixedly connected between the piston and the movable plate. A fixed seat is fixedly connected to the middle part of the processing shell. A water tank is distributed and fixedly connected on the fixed seat. A straight pipe is connected to one side of the water tank. A first nozzle is distributed and connected to the straight pipe. The water tank is connected to the liquid outlet through a water pipe.
[0006] Furthermore, a gear is distributed and rotatably connected on the fixed seat, one end of the straight pipe passes through the water tank and is fixedly connected to the gear, and a through groove for entering the liquid is provided on the straight pipe, and a rack is distributed and fixedly connected on the bottom surface of the movable plate, and the rack and the gear are engaged with each other.
[0007] Furthermore, a first solenoid valve is installed on the top surface of the movable plate, the first solenoid valve is connected to the processing chamber, a telescopic tube is fixedly connected to the upper part of the first solenoid valve, an exhaust pipe is provided above the processing shell, a draft fan is installed in the exhaust pipe, a detector is installed at one end of the exhaust pipe, and the other end is connected to the telescopic tube through an air pipe.
[0008] Furthermore, an airbag is installed in the equipment cavity, and a second nozzle is distributed and installed at the bottom of the movable plate. The second nozzle is connected to the airbag through an air pipe and a one-way air valve, and the airbag is connected to the exhaust pipe through an air pipe and a one-way air valve.
[0009] Furthermore, a purifier and a stirring device are installed on the bottom plate, and the purifier and the stirring device are connected to each other through a water pipe. The purifier is connected to the drain outlet through the water pipe and the second solenoid valve, and the stirring device is connected to the water inlet through the water pipe water pump and the third solenoid valve. A stirring rod is rotatably connected in the processing chamber, and stirring blades are distributed and fixed on the stirring rod. The stirring rod and the reciprocating screw are connected to each other through a coupling.
[0010] Furthermore, the air inlet is connected to an air intake pipe and a fourth solenoid valve, a filter is sealed and slidably connected in the air intake pipe, a fixed frame is fixed in the air intake pipe, a rotating shaft is rotatably connected to the fixed frame, one end of the rotating shaft is fixed with a fan blade, and the other end is fixed with a scraper, the scraper is in contact with the filter, a sewage pipe and a movable door are provided on the air intake pipe, and the movable door is fixed by a locking component.
[0011] Furthermore, the movable door is sealingly rotatably connected to the air intake pipe, and the locking component includes a locking rod rotatably connected to the air intake pipe, one end of the locking rod is provided with a thread and the threaded sleeve is provided with a locking ring.
[0012] Furthermore, the one-way valve includes a cross and a rubber sheet, which is detachably mounted on the cross. The cross and the rubber sheet at the liquid inlet are installed in opposite directions to the cross and the rubber sheet at the liquid outlet relative to the center of the fixed cylinder.
[0013] Compared with the prior art, the present invention has the following advantages:
[0014] 1. The present invention is provided with components such as a moving plate, and the rotating motor is started, and then the output shaft of the rotating motor drives the reciprocating screw to rotate. The rotation of the reciprocating screw causes the moving plate to move downward, and then the size of the treatment chamber gradually shrinks, and then the exhaust gas is compressed into the interior of the treatment liquid, so that the liquid and the exhaust gas are in contact with each other. Since the treatment liquid reacts with the exhaust gas, it promotes the full mixing and reaction of the exhaust gas and the treatment liquid, which helps to accelerate the reaction rate and improve the treatment effect.
[0015] 2. The present invention is provided with components such as a fixed cylinder and a piston. The movable plate moves upward, and then the movable plate pulls the piston through the fixed rod, causing the piston to move upward, thereby generating negative pressure in the fixed cylinder, so that the fixed cylinder sucks in the treatment liquid through the liquid inlet and the one-way valve. When the movable plate moves downward again, the movable plate squeezes the piston through the fixed rod, causing the piston to move downward, and then the treatment liquid in the fixed cylinder flows into the water tank through the liquid outlet and the one-way valve, and is sprayed out through the first nozzle, thereby causing the treatment liquid to react with the waste gas remaining in the treatment chamber. This cycle is repeated, further improving the reaction rate of the waste gas and the treatment liquid, and improving the waste gas treatment effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0017] Figure 2 It is a cross-sectional view of the processing shell and other components of the present invention.
[0018] Figure 3 It is a cross-sectional view of the fixing cylinder and other components of the present invention.
[0019] Figure 4 1 is an exploded view of the one-way valve of the present invention.
[0020] Figure 5 It is a cross-sectional view of the water tank and other components of the present invention.
[0021] Figure 6 It is a schematic diagram of the air intake pipe and other components of the present invention.
[0022] Figure 7 It is a schematic diagram of the filter and other components of the present invention.
[0023] Figure 8 For the present invention Figure 6 Magnified view of point A.
[0024] Figure 9 Schematic diagram of the exhaust pipe and induced draft fan of the present invention.
[0025] Figure numbers: 101, bottom plate, 102, bracket, 103, purifier, 104, stirring device, 111, processing shell, 1111, air inlet, 1112, water inlet, 1113, drain outlet, 1114, equipment chamber, 1115, processing chamber, 112, exhaust pipe, 113, detector, 114, induced draft fan, 115, second solenoid valve, 116, third solenoid valve, 201, rotating motor, 202, reciprocating screw, 203, moving plate, 211, stirring rod, 212, stirring blade, 301, fixed cylinder, 3011, liquid inlet, 3012, liquid outlet, 302, movable Plug, 303, fixing rod, 304, one-way valve, 305, fixing seat, 306, water tank, 307, straight pipe, 3071, through groove, 308, first nozzle, 311, rack, 312, gear, 321, rubber sheet, 322, cross, 331, airbag, 332, second nozzle, 401, first solenoid valve, 402, telescopic tube, 501, air inlet pipe, 502, filter, 503, fan blade, 504, scraper, 505, sewage pipe, 506, fixing bracket, 507, rotating shaft, 508, fourth solenoid valve, 511, movable door, 521, locking rod, 522, locking ring. DETAILED DESCRIPTION
[0026] The present invention will be further described below with reference to the accompanying drawings and examples.
[0027] An intelligent waste gas treatment equipment for lithium battery production and processing, such as Figures 1-9As shown, it includes a bottom plate 101, a bracket 102 is installed on the bottom plate 101, a processing shell 111 is fixed to the bracket 102, an air inlet 1111 is provided on the front side of the processing shell 111, a water inlet 1112 is provided on the rear side of the processing shell 111, and a drain port 1113 is provided on the bottom surface of the processing shell 111. A reciprocating screw rod 202 is rotatably connected in the processing shell 111, and a movable plate 203 is provided on the threaded sleeve of the reciprocating screw rod 202. The movable plate 203 is sealed and slidably connected to the processing shell 111, so as to prevent exhaust gas leakage. The plate 203 divides the interior of the processing shell 111 into two parts: the equipment chamber 1114 and the processing chamber 1115. No matter how the movable plate 203 moves, the air inlet 1111, the water inlet 1112 and the drain outlet 1113 are always in the processing chamber 1115, so as to ensure the supply of waste gas and liquid and ensure that the waste gas can be processed normally. The top surface of the processing shell 111 is installed with a rotating motor 201, and the output shaft of the rotating motor 201 is fixedly connected to the reciprocating screw 202. The fixed cylinder 301 is symmetrically fixed in the processing chamber 1115. The fixed cylinder 301 There is a liquid inlet 3011 and two liquid outlets 3012 on the top, and a one-way valve 304 is provided at the liquid inlet 3011 and the liquid outlet 3012. A piston 302 is sealed and slidably connected in the fixed cylinder 301. A fixed rod 303 is fixed between the piston 302 and the movable plate 203. A fixed seat 305 is fixed in the processing chamber 1115. Two water tanks 306 are fixed to the fixed seat 305 in a front-to-back symmetrical manner. The side of the front and rear water tanks 306 away from each other is connected with a straight pipe 307. The straight pipe 307 is evenly distributed and connected with four A first nozzle 308, a water tank 306 and a liquid outlet 3012 are connected through a water pipe. It should be noted that the processing shell 111 includes an air pressure sensor and a liquid level sensor, which are installed on the inner wall of the processing chamber 1115 to detect the air pressure and liquid level in the processing chamber 1115. The highest points of the fixed seat 305, the water tank 306 and the first nozzle 308 are all lower than the lowest point of the reciprocating screw 202, so as to prevent the fixed seat 305, the water tank 306 and the first nozzle 308 from interfering with the operation of the movable plate 203.
[0028] It can be seen that during operation, the treatment liquid enters from the water inlet 1112, and then the treatment liquid is filled to the appropriate liquid level, and then the exhaust gas is flushed into the treatment chamber 1115 from the air inlet 1111, and the rotating motor 201 is started, and then the output shaft of the rotating motor 201 drives the reciprocating screw 202 to rotate, and the reciprocating screw 202 rotates to make the movable plate 203 move downward, and then the size of the treatment chamber 1115 gradually shrinks, and then the exhaust gas is compressed into the interior of the treatment liquid, so that the liquid and the exhaust gas contact each other, and because the treatment liquid will react with the exhaust gas, and then promote the full mixing and reaction of the exhaust gas and the treatment liquid, which helps to accelerate the reaction rate and improve the treatment effect, and then the movable plate 203 moves upward, and then the movable plate 203 pulls the piston 302 through the fixed rod 303, so that the piston 302 moves upward, and then the fixed cylinder Negative pressure is generated in 301, causing the fixed cylinder 301 to suck in the treatment liquid through the liquid inlet 3011 and the one-way valve 304. When the movable plate 203 moves downward again, the movable plate 203 squeezes the piston 302 through the fixed rod 303, causing the piston 302 to move downward, and then the treatment liquid in the fixed cylinder 301 flows into the water tank 306 through the liquid outlet 3012 and the one-way valve 304, and is sprayed out through the first nozzle 308, so that the treatment liquid reacts with the residual waste gas in the treatment chamber 1115. This cycle is repeated, further improving the reaction rate of the waste gas and the treatment liquid, and improving the waste gas treatment effect. It should be added that the appropriate liquid level is above the liquid inlet 3011 and below the fixed seat 305, and the specific amount needs to be determined according to actual conditions. The treatment liquid is specifically an alkaline liquid, such as sodium hydroxide, which can react with the acidic gas in the waste gas.
[0029] Furthermore, in order to expand the spray range of the first nozzle 308 and avoid local over-concentration or over-dilutation, two gears 312 are rotatably connected to the fixed seat 305, one end of the straight pipe 307 passes through the water tank 306 and is fixedly connected to the gear 312, and three through grooves 3071 for entering the liquid are provided on the straight pipe 307, and the bottom surface of the movable plate 203 is symmetrically fixed with a rack 311, and the rack 311 is meshed with the two gears 312 at the same time. It can be seen that when the movable plate 203 moves downward again, the movable plate 203 squeezes the piston 302 through the fixed rod 303, causing the piston 302 to move downward, and then the treatment liquid in the fixed cylinder 301 passes through the liquid outlet 306. 012 and the one-way valve 304 flow into the water tank 306, and the treatment liquid in the water tank 306 enters the straight pipe 307 through the through groove 3071 and is finally sprayed out by the first nozzle 308. At the same time, the movable plate 203 drives the rack 311 to move downward when it moves downward, and then the rack 311 drives the gear 312 to rotate through the meshing transmission, and the rotation of the gear 312 drives the straight pipe 307 to rotate, thereby causing the first nozzle 308 to rotate, so that the first nozzle 308 can evenly cover the treatment chamber 1115, avoiding local over-concentration or over-thinness, and improving the waste gas treatment effect. It should be noted that the liquid sprayed by the first nozzle 308 is conical.
[0030] Furthermore, the one-way valve 304 includes a cross 322 and a rubber sheet 321. The center of the rubber sheet 321 is fixed to the cross 322. The corresponding cross 322 is fixed to the liquid inlet 3011 and the liquid outlet 3012. The cross 322 and the rubber sheet 321 of the liquid inlet 3011 are installed in the opposite direction to the cross 322 and the rubber sheet 321 of the liquid outlet 3012 relative to the center of the fixed cylinder 301. That is, the rubber sheet 321 at the liquid inlet 3011 is fixed to the liquid outlet 3012. The rubber sheet 321 is fixed to the side of the cross 322 close to the center of the fixed cylinder 301, and the rubber sheet 321 at the liquid outlet 3012 is fixed to the side of the cross 322 away from the center of the fixed cylinder 301, and the outer wall of the corresponding rubber sheet 321 abuts against the inner wall of the liquid inlet 3011 and the liquid outlet 3012. It can be seen that when the piston 302 moves from bottom to top, negative pressure is generated in the fixed cylinder 301, and then the processing liquid in the processing chamber 1115 squeezes the liquid inlet 3011 and the liquid outlet 3012. When the piston 302 moves from top to bottom, the rubber sheet 321 at the liquid outlet 3012 is deformed, and the rubber sheet 321 at the liquid inlet 3011 is blocked by the cross 322 and will not be deformed, so that the treatment liquid in the fixed cylinder 301 flows into the water tank 306.
[0031] Furthermore, in order to stir the exhaust gas in the processing chamber 1115, an exhaust pipe 112 is provided above the processing shell 111, and an air bag 331 is installed in the equipment chamber 1114. The two ends of the air bag 331 are respectively fixed to the top surface of the movable plate 203 and the top of the equipment chamber 1114. The bottom of the movable plate 203 is evenly distributed and equipped with six second nozzles 332. The second nozzles 332 are connected to the air bag 331 through the air pipe and the one-way air valve. The air bag 331 is connected to the exhaust pipe 112 through the air pipe and the one-way air valve. It can be seen that when the movable plate 203 moves downward, the movable plate 203 pulls one side of the air bag 331, so that the air bag 331 inhales gas from the exhaust pipe 112. When the movable plate 203 moves upward, the movable plate 203 squeezes the airbag 331, so that the gas in the airbag 331 flows into the second nozzle 332 and is ejected by the second nozzle 332. The gas ejected from the second nozzle 332 can stir the exhaust gas in the processing chamber 1115, so that the exhaust gas and the processing liquid can contact and react again. At the same time, the gas ejected from the second nozzle 332 can blow off the residual processing liquid on the bottom surface of the movable plate 203, which not only ensures the cleanliness of the bottom surface of the movable plate 203, but also the blown-off processing liquid will react with the residual exhaust gas again, further improving the exhaust gas treatment effect.
[0032] Furthermore, in order to ensure that the treatment liquid and the exhaust gas are evenly mixed, a stirring rod 211 is rotatably connected in the treatment chamber 1115, and stirring blades 212 are distributed and fixed on the stirring rod 211. The stirring rod 211 and the reciprocating screw 202 are connected to each other through a coupling. It can be seen that when the reciprocating screw 202 rotates, the reciprocating screw 202 drives the stirring rod 211 to rotate through the coupling, and then the stirring rod 211 drives the stirring blades 212 to rotate, and then the stirring blades 212 will stir the treatment liquid in the treatment chamber 1115, so that the treatment liquid and the exhaust gas are fully mixed, thereby improving the overall treatment efficiency and reducing the treatment time.
[0033] Furthermore, in order to discharge exhaust gas more conveniently, a first solenoid valve 401 is installed on the top surface of the movable plate 203, and the first solenoid valve 401 is connected to the processing chamber 1115. A telescopic tube 402 is fixedly connected to the upper part of the first solenoid valve 401, and an induced draft fan 114 is installed in the exhaust pipe 112. A detector 113 is installed at one end of the exhaust pipe 112, and the other end is connected to the telescopic tube 402 through an air pipe. It can be seen that when the movable plate 203 is working, the first solenoid valve 401 is in a closed state, so that the processing chamber 1115 is in a relatively closed state. When the exhaust gas treatment is completed, the first solenoid valve 401 and the induced draft fan 114 are opened, and then the exhaust gas after treatment in the processing chamber 1115 is discharged into the exhaust pipe 112 through the telescopic tube 402 and the air pipe, and discharged to the outside through the exhaust pipe 112. At the same time, when discharged to the outside, the detector 113 will detect whether the exhaust gas is cleanly treated to ensure that the discharged gas meets the emission requirements.
[0034] Furthermore, in order to save energy and reduce maintenance costs, a purifier 103 and a stirring device 104 are installed on the bottom plate 101. The purifier 103 and the stirring device 104 are connected to each other through a water pipe. The purifier 103 is connected to the drain port 1113 through the water pipe and the second solenoid valve 115. The stirring device 104 is connected to the water inlet 1112 through the water pipe, the water pump and the third solenoid valve 116. It can be seen that the second solenoid valve 115 is initially in a closed state, so that a relatively closed space is formed in the processing chamber 1115. After the exhaust gas treatment in the processing chamber 1115 is completed, the second solenoid valve 115 is closed. Valve 115 is opened, and the treated liquid after treatment flows out from the drain port 1113, and flows into the purifier 103 through the water pipe and the second solenoid valve 115 for purification to form a pure water source. The pure water source then flows into the stirring device 104 through the water pipe to provide a pure water source for the stirring device 104. The raw materials of the treated liquid are added into the stirring device 104, and the treated liquid is formed in combination with the pure water source. The treated liquid then flows into the treatment chamber 1115 from the water inlet 1112 through the water pipe, the water pump and the third solenoid valve 116. This can improve the utilization rate of the water source, save energy and reduce maintenance costs.
[0035] Furthermore, in order to remove solid impurities in the exhaust gas, the air inlet 1111 is connected to the air inlet pipe 501 and the fourth solenoid valve 508, the air inlet pipe 501 is sealed and slidably connected with the filter 502, the air inlet pipe 501 is fixed with a fixing frame 506, the fixing frame 506 is rotatably connected with a rotating shaft 507, one end of the rotating shaft 507 is fixed with a fan blade 503, and the other end is fixed with a scraper 504, the scraper 504 is in contact with the filter 502, and the air inlet pipe 501 is provided with a drain pipe 505 and a movable door 511, and the movable door 511 is sealed and fixed by a locking component. It can be seen that the exhaust gas enters the processing chamber 1115 from the air inlet 1111 through the air inlet pipe 501 and the fourth solenoid valve 508, and due to the air inlet pipe 50 1 is provided with a filter 502, so that the solid impurities in the exhaust gas will be filtered out, and the exhaust gas flowing into the processing chamber 1115 will be free of solid impurities to prevent clogging of the equipment. At the same time, due to the flow of exhaust gas, the exhaust gas will drive the fan blade 503 to rotate, and the rotation of the fan blade 503 will cause the rotating shaft 507 to rotate, and the rotating shaft 507 will drive the scraper 504 to rotate, and the scraper 504 will scrape off the impurities attached to the filter 502, and the solid impurities attached to the filter 502 will be scraped off by the scraper 504, flow from the sewage pipe 505 to the outside and be collected. It should be noted that when working in the processing chamber 1115, the fourth solenoid valve 508 is in a closed state, so that the processing chamber 1115 is in a relatively sealed state.
[0036] Furthermore, in order to facilitate the replacement of the filter 502, the movable door 511 is sealed and rotatably connected to the air intake pipe 501, and the locking component includes a locking rod 521 rotatably connected to the air intake pipe 501. One end of the locking rod 521 is provided with a thread and the threaded sleeve is provided with a locking ring 522. It can be seen that when the filter 502 needs to be replaced, the locking ring 522 is rotated, and then the locking ring 522 no longer restricts the movable door 511. Then, the movable door 511 is rotated to remove the old filter 502 from the air intake pipe 501 and replace it with a new filter 502. The movable door 511 is closed and the locking ring 522 is rotated in the opposite direction, so that the locking ring 522 restricts the movable door 511 again, and the movable door 511 is sealed and fixed to the air intake pipe 501, which makes replacing the filter 502 simple and convenient.
[0037] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the scope of protection of the present invention. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the essence and scope of the technical solutions of the present invention.
Claims
1. An intelligent waste gas treatment device for lithium battery production and processing, comprising a base plate (101), a bracket (102) mounted on the base plate (101), a treatment shell (111) fixedly connected to the bracket (102), characterized in that: The processing shell (111) is provided with an air inlet (1111), a water inlet (1112) and a water outlet (1113); a reciprocating screw (202) is rotatably connected in the processing shell (111); a movable plate (203) is threadedly sleeved on the reciprocating screw (202); the movable plate (203) is in sealed sliding connection with the processing shell (111); a rotating motor (201) is installed on the top surface of the processing shell (111); the output shaft of the rotating motor (201) is fixedly connected to the reciprocating screw (202); the movable plate (203) divides the interior of the processing shell (111) into two parts: an equipment chamber (1114) and a processing chamber (1115); fixed components are distributed in the processing chamber (1115). The fixed cylinder (301) is provided with a liquid inlet (3011) and a liquid outlet (3012), and a one-way valve (304) is provided at the liquid inlet (3011) and the liquid outlet (3012). A piston (302) is sealed and slidably connected in the fixed cylinder (301), and a fixed rod (303) is fixedly connected between the piston (302) and the movable plate (203). A fixed seat (305) is fixedly connected to the middle part of the processing shell (111), and a water tank (306) is distributed and fixedly connected on the fixed seat (305). One side of the water tank (306) is connected to a straight pipe (307), and a first nozzle (308) is distributed and connected on the straight pipe (307). The water tank (306) ) is connected to the liquid outlet (3012) through a water pipe, a gear (312) is distributed and rotatably connected on the fixed seat (305), one end of the straight pipe (307) passes through the water tank (306) and is fixedly connected to the gear (312), and a through groove (3071) for entering the liquid is provided on the straight pipe (307), a rack (311) is distributed and fixedly connected on the bottom surface of the movable plate (203), the rack (311) and the gear (312) are meshed with each other, a first electromagnetic valve (401) is installed on the top surface of the movable plate (203), the first electromagnetic valve (401) is connected to the processing chamber (1115), and a telescopic tube (402) is fixedly connected to the upper part of the first electromagnetic valve (401), An exhaust pipe (112) is provided above the processing shell (111), an induced draft fan (114) is installed in the exhaust pipe (112), a detector (113) is installed at one end of the exhaust pipe (112), and the other end is connected to the telescopic pipe (402) through an air pipe, an air bag (331) is installed in the equipment chamber (1114), a second nozzle (332) is distributed and installed at the bottom of the movable plate (203), the second nozzle (332) is connected to the air bag (331) through an air pipe and a one-way air valve, the air bag (331) is connected to the exhaust pipe (112) through an air pipe and a one-way air valve, and the air inlet (1111) is connected to an air inlet pipe (501) and a fourth solenoid valve (508).A filter screen (502) is sealed and slidably connected in the air intake pipe (501). A fixing frame (506) is fixed in the air intake pipe (501). A rotating shaft (507) is rotatably connected to the fixing frame (506). One end of the rotating shaft (507) is fixedly connected to a fan blade (503), and the other end is fixedly connected to a scraper (504). The scraper (504) abuts against the filter screen (502). A sewage pipe (505) and a movable door (511) are provided on the air intake pipe (501). The movable door (511) is fixed by a locking component. The movable door (511) is sealed and rotatably connected to the air intake pipe (501). The locking component includes a locking rod (521) rotatably connected to the air intake pipe (501). One end of the locking rod (521) is provided with a thread, and the threaded sleeve is provided with a lock ring (522).
2. The intelligent waste gas treatment equipment for lithium battery production and processing according to claim 1 is characterized in that: A purifier (103) and a stirring device (104) are installed on the bottom plate (101); the purifier (103) and the stirring device (104) are interconnected through a water pipe; the purifier (103) is connected to the drain port (1113) through the water pipe and the second solenoid valve (115); the stirring device (104) is connected to the water inlet (1112) through a water pipe pump and a third solenoid valve (116); a stirring rod (211) is rotatably connected in the processing chamber (1115); stirring blades (212) are distributed and fixed on the stirring rod (211); the stirring rod (211) and the reciprocating screw rod (202) are interconnected through a coupling.
3. The intelligent waste gas treatment equipment for lithium battery production and processing according to claim 2 is characterized in that: The one-way valve (304) comprises a cross (322) and a rubber sheet (321). The rubber sheet (321) is detachably mounted on the cross (322). The cross (322) and the rubber sheet (321) of the liquid inlet (3011) and the cross (322) and the rubber sheet (321) of the liquid outlet (3012) are mounted in opposite directions relative to the center of the fixed cylinder (301).
Citation Information
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