Air treatment device for tire processing and manufacturing
By designing an air purification device for tire processing and manufacturing, and utilizing a combination of air intake aeration components, rotating tubes, and activated carbon adsorption tanks, the problem of untreated exhaust gas emissions was solved. This achieved the purification and combustion of exhaust gas, protected the environment, improved the ease of replacing activated carbon, and enhanced the efficiency of the device.
Patent Information
- Application Number
- CN202511887540.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-15
- Publication Date
- 2026-02-27
AI Technical Summary
The direct emission of untreated industrial waste gas generated during the existing tire manufacturing process poses a threat to the environment and human health. Furthermore, the inconvenience of replacing activated carbon adsorbent blocks affects the efficiency of air purification devices.
An air purification device for tire manufacturing was designed, including a support frame, an impurity treatment tank, an exhaust gas purification mechanism, and a combustion tank. The device achieves the purification and combustion of exhaust gas through the combination of an air intake aeration component, a rotating tube, and an activated carbon adsorption tank. The device also facilitates the rapid replacement of activated carbon adsorption blocks through the plug-in design of a movable sealing cover and a sealing cover.
It achieves effective purification and combustion treatment of waste gas during tire processing and manufacturing, ensuring clean exhaust air and protecting the environment. Furthermore, the quick and convenient replacement of activated carbon adsorption blocks improves the efficiency of the device and the adsorption efficiency of activated carbon.
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Figure CN121570930A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of tire processing, specifically to an air purification device for tire processing and manufacturing. Background Technology
[0002] During tire manufacturing, processes such as vulcanization and rubber mixing generate large amounts of industrial waste gas containing complex components such as carbon black dust, sulfides, and volatile organic compounds. If this waste gas is emitted directly without treatment, it will cause serious harm to the atmospheric environment and human health.
[0003] Currently, activated carbon is fixedly packed inside the adsorption tower. When the adsorption becomes saturated, the tower needs to be opened for replacement, which is cumbersome, time-consuming, and labor-intensive. This makes replacing activated carbon blocks very inconvenient, thus affecting the use of air purification devices. Summary of the Invention
[0004] The purpose of this invention is to provide an air purification device for tire processing and manufacturing, so as to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: An air purification device for tire processing and manufacturing includes a support base and an impurity treatment tank. The impurity treatment tank is located at the top center of the support base, and mounting brackets are provided at both ends of the top of the impurity treatment tank. The bottom of the mounting brackets is fixedly connected to the support base. An air inlet aeration assembly is installed on the support base, with the air inlets of the air inlet aeration assembly located at both ends of the impurity treatment tank. An exhaust hood is installed at the top center of the impurity treatment tank. The device also includes a waste gas purification mechanism, comprising: a first fixed frame, located on top of the mounting bracket; a movable sealing cover slidably mounted on one end of the first fixed frame; and the other end of the first fixed frame connected to a first sealing cover via a first fixed rod. The first sealing cover and the movable sealing cover are mutually sealed and inserted to form an activated carbon adsorption tank. An exhaust nozzle is provided at the end of the movable sealing cover, and a connecting cover is installed on the exhaust nozzle. A rotating tube is rotatably mounted on the first fixed frame and inserted into the first... The device includes a sealed mask with a second aeration pipe installed at the end of a rotating tube, which is placed inside a sealed activated carbon adsorption tank. The end of the rotating tube is connected to an exhaust hood via a first exhaust pipe. An installation sleeve is rotatably mounted on the second aeration pipe at equal intervals, with the sleeve closest to the first mask fixedly connected to the first mask via a second fixing rod. The installation sleeve has several equally spaced insertion grooves, with activated carbon adsorption blocks inserted between these grooves. Each activated carbon adsorption block has an integrally formed insertion rod, which is placed inside the insertion groove for quick insertion. A combustion tank is also included, with both ends fixedly connected to a first fixing frame. One end of the combustion tank has an air outlet, and the outer end of the air outlet has a second mask. Both ends of the second mask are connected to a connecting hood via a second exhaust pipe. The other end of the combustion tank has a circulation pipe inserted into the impurity treatment tank, with an air outlet assembly installed on the circulation pipe.
[0006] Preferably, load-bearing components are installed at the four corners of the support base. The load-bearing components include leveling screws, which are threadedly connected to the support base. A support seat is provided at the bottom of the leveling screw, and a friction pad is embedded at the bottom of the support seat. Brake nuts are threadedly connected to the leveling screws located at both ends of the support base.
[0007] Preferably, the impurity treatment tank is provided with an inlet pipe at the upper end and a drain assembly at both ends of the bottom of the impurity treatment tank; the drain assembly includes a drain pipe, which is electrically connected to the impurity treatment tank, and a first control valve is installed on the drain pipe.
[0008] Preferably, the air intake aeration assembly includes an aeration pump, which is fixedly installed on the support base. One end of the aeration pump is connected to the impurity treatment tank through a first aeration pipe, and the other end of the aeration pump is connected to the air intake pipe through a connecting pipe. The air intake pipe is connected to the support base.
[0009] Preferably, the mounting frame is provided with clamping components at both ends, which are used to symmetrically clamp the two ends of the impurity treatment tank; the clamping components include threaded sleeves, which are embedded in the mounting frame, and the threaded sleeves are internally threaded with clamping screws. A knob is provided at the outer end of the clamping screws, and a clamping seat is provided at the inner end of the clamping screws. The clamping seat contacts and clamps the surface of the impurity treatment tank.
[0010] Preferably, the exhaust gas purification mechanism further includes a mobile drive assembly, which includes a second fixed frame, the second fixed frame being fixedly connected to the mounting frame, a telescopic rod being embedded in the second fixed frame, a connecting frame being connected to the telescopic end of the telescopic rod, and the connecting frame being connected to the mobile sealing cover.
[0011] Preferably, a rotation drive assembly is installed on the first fixed frame, which is used to drive the rotating tube to rotate; the rotation drive assembly includes a rotation motor, a drive gear is installed on the motor shaft of the rotation motor, a driven gear is meshed on the drive gear, and the driven gear is connected to the rotating tube.
[0012] Preferably, an igniter is provided at the top center of the combustion tank, and an air supply pipe is provided at the bottom center of the combustion tank.
[0013] Preferably, the air outlet assembly includes an air outlet pipe, which is connected in communication with the circulation pipe, and a second control valve is installed on the air outlet pipe.
[0014] Compared with the prior art, the beneficial effects of the present invention are: This invention, by setting up an impurity cleaning tank, an exhaust gas purification device, and a combustion tank in an air treatment device, can achieve impurity cleaning, air adsorption and purification, and organic air combustion treatment of the air used in tire manufacturing. This ensures the cleanliness of the air discharged from tire manufacturing and facilitates the use of the device. This invention achieves air circulation treatment before discharge by setting a circulation pipe and an air outlet device at the end of the combustion tank, which can ensure the cleanliness of the discharged air after treatment and thus protect the environment. The present invention allows the movable sealing cover and the first sealing mask to be interlocked to form a sealed activated carbon adsorption tank, and the movable sealing cover and the first sealing mask to be disassembled separately. This allows for quick connection and replacement of the activated carbon adsorption blocks that are interlocked on the mounting sleeve installed on the first sealing mask, thus facilitating the rapid replacement of the activated carbon adsorption blocks and facilitating air purification. The present invention uses a rotating tube to drive the aeration tube to rotate, so that air can pass through the annularly distributed activated carbon adsorption blocks dynamically and evenly, which significantly improves the adsorption efficiency and service life of activated carbon, thus facilitating rapid and uniform adsorption and purification of air. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall three-dimensional structure of an air purification device for tire processing and manufacturing provided by the present invention.
[0016] Figure 2 This is a schematic diagram of the connection between the impurity treatment tank and the mounting frame in an air treatment device for tire processing and manufacturing provided by the present invention.
[0017] Figure 3 This is a schematic diagram of the air intake aeration component in an air treatment device for tire processing and manufacturing provided by the present invention.
[0018] Figure 4 This is a cross-sectional view of an impurity treatment tank in an air treatment device for tire processing and manufacturing provided by the present invention.
[0019] Figure 5 This is a schematic diagram of the moving drive component and the rotating drive component in an air purification device for tire processing and manufacturing provided by the present invention.
[0020] Figure 6 This is a schematic diagram of the structure of an air purification device for tire processing and manufacturing, in which an installation sleeve is inserted into an activated carbon adsorption block.
[0021] Figure 7 This is a cross-sectional view of the aeration pipe in an air treatment device for tire processing and manufacturing provided by the present invention.
[0022] Figure 8 This is a schematic diagram of the structure of an activated carbon adsorption block in an air purification device for tire processing and manufacturing provided by the present invention.
[0023] Figure 9 This invention provides a schematic diagram of the combustion tank and circulation pipe in an air purification device for tire processing and manufacturing.
[0024] Figure 10 This is a cross-sectional view of a combustion tank in an air purification device for tire processing and manufacturing provided by the present invention.
[0025] Figure label: 1. Support frame; 11. Load-bearing component; 111. Leveling screw; 112. Support base; 113. Friction pad; 114. Brake nut; 2. Impurity treatment tank; 21. Liquid inlet pipe; 22. Drainage assembly; 221. Drainage pipe; 222. First control valve; 23. Air inlet aeration assembly; 231. Aeration pump; 232. First aeration pipe; 233. Connecting pipe; 234. Air inlet pipe; 24. Mounting bracket; 25. Clamping assembly; 251. Threaded sleeve; 252. Clamping screw; 253. Knob; 254. Clamping base; 26. Exhaust hood; 3. Waste gas purification system; 31. First fixed frame; 32. Movable sealing cover; 33. First sealing cover; 34. First fixed rod; 35. Exhaust nozzle; 36. Connecting cover; 37. Motion drive assembly; 371. Second fixed frame; 372. Telescopic rod; 373. Connecting frame; 38. Rotating tube; 39. Rotation drive assembly; 391. Rotation motor; 392. Drive gear; 393. Driven gear; 310. First exhaust duct; 311. Second aeration duct; 312. Mounting sleeve; 313. Second fixing rod; 314. Insertion groove; 315. Activated carbon adsorption block; 3151. Insertion rod; 4. Combustion canister; 41. Ignition device; 42. Air supply duct; 43. Air outlet; 44. Second sealing mask; 45. Second exhaust duct; 46. Circulation duct; 47. Air outlet assembly; 471. Air outlet duct; 472. Second control valve. Detailed Implementation
[0026] It should be noted that, unless otherwise specified, the embodiments and features described in the present invention can be combined with each other.
[0027] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the various embodiments of the present invention will be described in detail below with reference to the accompanying drawings. However, those skilled in the art will understand that many technical details have been presented in the various embodiments of the present invention to facilitate a better understanding of this application. However, the technical solutions claimed in this application can be implemented even without these technical details and various changes and modifications based on the following embodiments.
[0028] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0029] See Figures 1-10 In this embodiment of the invention, an air purification device for tire processing and manufacturing includes a support base frame 1 and an impurity treatment tank 2. The impurity treatment tank 2 is placed at the top center of the support base frame 1, and mounting brackets 24 are provided at both ends of the top of the impurity treatment tank 2. The bottom of the mounting brackets 24 is fixedly connected to the support base frame 1. An air inlet aeration assembly 23 is installed on the support base frame 1. The air inlet of the air inlet aeration assembly 23 is located at both ends of the impurity treatment tank 2, and an exhaust hood 26 is installed at the center of the top of the impurity treatment tank 2. It also includes an exhaust gas purification mechanism 3, which includes: The first fixing frame 31 is placed on the top of the mounting frame 24. A movable sealing cover 32 is slidably disposed on the first fixing frame 31 at one end. The first fixing frame 31 at the other end is connected to the first sealing cover 33 through the first fixing rod 34. The first sealing cover 33 and the movable sealing cover 32 are mutually sealed and inserted to form an activated carbon adsorption tank. The movable sealing cover 32 is provided with an exhaust nozzle 35 at its end, and a connecting cover 36 is installed on the exhaust nozzle 35; a rotating tube 38 is rotatably installed on the first fixed frame 31, and the rotating tube 38 is inserted into the first sealing cover 33, and a second aeration tube 311 is installed at the end of the rotating tube 38, and the second aeration tube 311 is placed inside the sealed activated carbon adsorption tank. The end of the rotating tube 38 is connected to the exhaust hood 26 via the first exhaust pipe 310. Mounting sleeve 312 is rotatably mounted on the second aeration pipe 311 at equal intervals, and the mounting sleeve 312 on the side closer to the first sealing mask 33 is fixedly connected to the first sealing mask 33 through the second fixing rod 313; The mounting sleeve 312 has several equally spaced insertion grooves 314, and activated carbon adsorption blocks 315 are inserted between the insertion grooves 314. The activated carbon adsorption blocks 315 are integrally formed with insertion rods 3151, and the insertion rods 3151 are placed inside the insertion grooves 314 to realize the quick insertion of the activated carbon adsorption blocks 315. And a combustion canister 4, the two ends of which are fixedly connected to the first fixed frame 31, and one end of the combustion canister 4 is provided with an air outlet 43, and the outer end of the air outlet 43 is provided with a second sealing mask 44, and the two ends of the second sealing mask 44 are connected to the connecting cover 36 through the second exhaust pipe 45. The other end of the combustion tank 4 is connected to a circulation pipe 46, the bottom of which is inserted into the impurity treatment tank 2, and an air outlet assembly 47 is installed on the circulation pipe 46.
[0030] This invention uses an air intake aeration component 23 to introduce aerated air from tire manufacturing into an impurity treatment tank 2. The solution inside the impurity treatment tank 2 cleans particulate impurities in the air. The cleaned air enters a rotating pipe 38 through an exhaust hood 26 and a first exhaust pipe 310. The rotating pipe 38 drives a second aeration pipe 311 to introduce filtered air into an activated carbon adsorption tank formed by mutual sealing and insertion. The activated carbon adsorption block 315 adsorbs and purifies harmful gases in the air. The purified air is then introduced into a combustion tank 4 for combustion through a connecting cover 36, a second exhaust pipe 45, and a second sealing cover 44. The combusted air is then reintroduced into the impurity treatment tank 2 through a circulation pipe 46 for impurity cleaning. After repeating the above process, the air is discharged through an exhaust component 47, thus achieving the treatment of air from tire manufacturing.
[0031] See Figure 3 In one embodiment of the present invention, load-bearing components 11 are installed at the four corners of the support base 1; The bearing assembly 11 includes a leveling screw 111, which is threadedly connected to the support base 1, and a support seat 112 is provided at the bottom of the leveling screw 111, with a friction pad 113 embedded at the bottom of the support seat 112; Brake nuts 114 are threaded onto the leveling screws 111 located at both ends of the support base 1; The leveling screw 111 is rotated to adjust its position, and the brake nut 114 is used to brake the leveling screw 111 after the position is adjusted. In addition, the friction pad 113 embedded at the bottom of the support seat 112 increases the friction of the support seat 112, thereby achieving stable support for the entire device.
[0032] The friction pad 113 of the present invention is made of rubber material.
[0033] See Figure 4 In one embodiment of the present invention, the impurity treatment tank 2 is provided with an inlet pipe 21 at the upper end and a drain assembly 22 at both ends of the bottom of the impurity treatment tank 2. The drain assembly 22 includes a drain pipe 221, which is connected to the impurity treatment tank 2 and is equipped with a first control valve 222. The drain pipe 221 and drain assembly 22 are designed to facilitate the replacement of the filtered solution inside the impurity treatment tank 2. By opening the first control valve 222, the drain pipe 221 can discharge the filtered solution and the filtered impurities simultaneously.
[0034] See Figure 3In one embodiment of the present invention, the air intake aeration assembly 23 includes an aeration pump 231, which is fixedly installed on the support base 1. One end of the aeration pump 231 is connected to the impurity treatment tank 2 through a first aeration pipe 232, and the other end of the aeration pump 231 is connected to the air intake pipe 234 through a connecting pipe 233. The air intake pipe 234 is connected to the support base 1. The air intake pipe 234 is connected to the air exhaust pipe manufactured by tire processing. The air pump 231 works, and the air is added into the impurity treatment tank 2 through the air intake pipe 234, the connecting pipe 233 and the first aeration pipe 232. The cleaning solution inside the impurity treatment tank 2 cleans and filters the impurities in the air.
[0035] See Figure 2 In one embodiment of the present invention, the mounting frame 24 is provided with clamping components 25 at both ends, and the clamping components 25 are used to symmetrically clamp the two ends of the impurity treatment tank 2. The clamping assembly 25 includes a threaded sleeve 251, which is embedded in the mounting bracket 24. The threaded sleeve 251 is threadedly connected to a clamping screw 252. A knob 253 is provided at the outer end of the clamping screw 252, and a clamping seat 254 is provided at the inner end of the clamping screw 252. The clamping seat 254 contacts and clamps the surface of the impurity treatment tank 2. The clamping screw 252 is driven to move inward by the drive knob 253. The clamping screw 252 drives the clamping seat 254 to contact and clamp the installed impurity treatment tank 2, thereby achieving stable installation of the impurity treatment tank 2.
[0036] See Figure 5 In one embodiment of the present invention, the exhaust gas purification mechanism 3 further includes a moving drive component 37; The mobile drive assembly 37 includes a second fixed frame 371, which is fixedly connected to the mounting frame 24. A telescopic rod 372 is embedded in the second fixed frame 371, and a connecting frame 373 is connected to the telescopic end of the telescopic rod 372. The connecting frame 373 is connected to the mobile sealing cover 32. The connecting frame 373 is moved by the telescopic rod 372. The connecting frame 373 can drive the moving sealing cover 32 to move horizontally, thus realizing the automatic insertion and sealing and disassembly between the moving sealing cover 32 and the first sealing cover 33, which facilitates the replacement of the activated carbon adsorption block 315.
[0037] See Figure 5 In one embodiment of the present invention, a rotation drive assembly 39 is mounted on the first fixing frame 31, and the rotation drive assembly 39 is used to drive the rotating tube 38 to rotate. The rotation drive assembly 39 includes a rotation motor 391, on which a drive gear 392 is mounted, and a driven gear 393 is meshed with the drive gear 392. The driven gear 393 is connected to the rotating tube 38. The rotating motor 391 drives the drive gear 392 to rotate, which in turn drives the meshing driven gear 393 to rotate. The driven gear 393 then drives the rotating tube 38 to rotate, thereby driving the second aeration tube 311 to rotate and perform aeration.
[0038] See Figure 10 In one embodiment of the present invention, an igniter 41 is provided at the top center of the combustion tank 4, and an air supply pipe 42 is provided at the bottom center of the combustion tank 4. The air supply pipe 42 provides oxygen to the combustion tank 4, and works with the igniter 41 to burn the filtered and purified air, thereby removing organic gases from the air.
[0039] See Figure 9 In one embodiment of the present invention, the air outlet assembly 47 includes an air outlet pipe 471, which is connected to the circulation pipe 46. A second control valve 472 is installed on the air outlet pipe 471. By opening the second control valve 472, the air outlet pipe 471 can conveniently discharge the treated air.
[0040] The air purification device for tire manufacturing of the present invention includes the following air purification steps: S1. The present invention connects to the air duct manufactured by tire processing through the air inlet pipe 234, and the aeration pump 231 works to add air into the impurity treatment tank 2 through the air inlet pipe 234, the connecting pipe 233 and the first aeration pipe 232. The filter solution inside the impurity treatment tank 2 filters the impurities in the air, and the filtered air is concentrated at the exhaust hood 26. S2. The air filtered by impurities is sequentially introduced into the rotating pipes 38 set at both ends through the first exhaust pipe 310. The rotating motor 391 works in conjunction with the rotating motor 391. The rotating motor 391 drives the drive gear 392 to rotate. The drive gear 392 drives the meshing driven gear 393 to rotate. The driven gear 393 can drive the rotating pipe 38 to drive the second aeration pipe 311 to rotate synchronously. The second aeration pipe 311 introduces the slag-removed air into the sealed activated carbon adsorption tank formed by the mutual insertion of the first sealing mask 33 and the movable sealing cover 32. The air is adsorbed and purified by the mutual insertion of the activated carbon adsorption blocks 315. Since the first sealing mask 33 and the movable sealing cover 32 are mutually inserted and sealed, and the activated carbon adsorption blocks 315 are mutually inserted with the mounting sleeve 312, the activated carbon adsorption blocks 315 can be quickly replaced. S3. After the air is purified by the activated carbon adsorption block 315, the purified air is added into the combustion tank 4 through the exhaust nozzle 35, the connecting cover 36, the second exhaust pipe 45, the second sealing mask 44, and the air outlet 43. The air is then ignited and burned in conjunction with the igniter 41 and the air supply pipe 42, which can achieve the combustion treatment of organic gases in the air. S4. The air after combustion is reintroduced into the impurity treatment tank 2 through the circulation pipe 46 to repeat the above action. Finally, the repeatedly treated air is discharged through the air outlet assembly 47, thereby ensuring that the air in tire processing and manufacturing is treated and facilitating the use of the treatment device.
[0041] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. An air treatment device for tire processing and manufacturing, comprising a support base (1) and an impurity treatment tank (2), wherein the impurity treatment tank (2) is placed at the top center of the support base (1), and mounting brackets (24) are provided at both ends of the top of the impurity treatment tank (2), and the bottom of the mounting brackets (24) is fixedly connected to the support base (1); An air inlet aeration assembly (23) is installed on the supporting base frame (1). The air inlet of the air inlet aeration assembly (23) is located at both ends of the impurity treatment tank (2), and an exhaust hood (26) is installed at the center of the top of the impurity treatment tank (2). The characteristic feature is that... It also includes an exhaust gas purification mechanism (3), which includes: The first fixed frame (31) is placed on the top of the mounting frame (24). A movable sealing cover (32) is slidably provided on one end of the first fixed frame (31). The other end of the first fixed frame (31) is connected to the first sealing mask (33) through the first fixed rod (34). The first sealing mask (33) and the movable sealing cover (32) are mutually sealed and inserted to form an activated carbon adsorption tank. The movable sealing cover (32) is provided with an exhaust nozzle (35) at its end, and a connecting cover (36) is installed on the exhaust nozzle (35). Rotary tube (38), the rotating tube (38) is rotatably mounted on the first fixed frame (31), and the rotating tube (38) is inserted into the first sealing mask (33), and the end of the rotating tube (38) is equipped with a second aeration tube (311), the second aeration tube (311) is placed inside the sealed activated carbon adsorption tank; The end of the rotating tube (38) is connected to the exhaust hood (26) through the first exhaust pipe (310); the mounting sleeve (312) is rotatably mounted on the second aeration pipe (311) at equal intervals, and the mounting sleeve (312) near the first sealing mask (33) is fixedly connected to the first sealing mask (33) through the second fixing rod (313); The mounting sleeve (312) has several insertion grooves (314) at equal intervals. Activated carbon adsorption blocks (315) are inserted between the insertion grooves (314). The activated carbon adsorption blocks (315) are integrally formed with insertion rods (3151). The insertion rods (3151) are placed inside the insertion grooves (314) to realize the quick insertion of the activated carbon adsorption blocks (315). And a combustion canister (4), the two ends of which are fixedly connected to the first fixed frame (31), and one end of the combustion canister (4) is provided with an air outlet (43), the outer end of the air outlet (43) is provided with a second sealing mask (44), and the two ends of the second sealing mask (44) are connected to the connecting cover (36) through the second exhaust pipe (45); The other end of the combustion tank (4) is connected to a circulation pipe (46), the bottom of which is inserted into the impurity treatment tank (2), and an air outlet assembly (47) is installed on the circulation pipe (46).
2. The tire processing and manufacturing air management apparatus of claim 1, wherein, The support base (1) is equipped with load-bearing components (11) at its four corners. The load-bearing components (11) include leveling screws (111), which are threadedly connected to the support base (1). A support seat (112) is provided at the bottom of the leveling screws (111), and a friction pad (113) is embedded at the bottom of the support seat (112). Brake nuts (114) are threaded onto the leveling screws (111) located at both ends of the support base (1).
3. The tire processing and manufacturing air management apparatus of claim 1, wherein, The impurity treatment tank (2) is provided with an inlet pipe (21) at the upper end and a drain assembly (22) at both ends of the bottom of the impurity treatment tank (2). The drain assembly (22) includes a drain pipe (221), which is connected to the impurity treatment tank (2), and a first control valve (222) is installed on the drain pipe (221).
4. The tire processing and manufacturing air management apparatus of claim 1, wherein, The air intake aeration assembly (23) includes an aeration pump (231), which is fixedly installed on the support base (1); One end of the aeration pump (231) is connected to the impurity treatment tank (2) through the first aeration pipe (232), and the other end of the aeration pump (231) is connected to the air inlet pipe (234) through the connecting pipe (233). The air inlet pipe (234) is connected to the support base frame (1).
5. The tire processing and manufacturing air management apparatus of claim 1, wherein, The mounting bracket (24) is provided with clamping components (25) at both ends, and the clamping components (25) are used to symmetrically clamp the two ends of the impurity treatment tank (2); The clamping assembly (25) includes a threaded sleeve (251), which is embedded in the mounting bracket (24). The threaded sleeve (251) is threadedly connected to a clamping screw (252). A knob (253) is provided at the outer end of the clamping screw (252), and a clamping seat (254) is provided at the inner end of the clamping screw (252). The clamping seat (254) contacts and clamps the surface of the impurity treatment tank (2).
6. The air purification device for tire processing and manufacturing according to claim 1, characterized in that, The exhaust gas purification mechanism (3) further includes a mobile drive assembly (37), which includes a second fixed frame (371), the second fixed frame (371) being fixedly connected to the mounting frame (24), a telescopic rod (372) being embedded on the second fixed frame (371), a connecting frame (373) being connected to the telescopic end of the telescopic rod (372), and the connecting frame (373) being connected to the mobile sealing cover (32).
7. The air purification device for tire processing and manufacturing according to claim 1, characterized in that, The first fixed frame (31) is equipped with a rotation drive assembly (39), which is used to drive the rotating tube (38) to rotate. The rotation drive assembly (39) includes a rotation motor (391), on which a drive gear (392) is mounted, and a driven gear (393) is meshed with the drive gear (392). The driven gear (393) is connected to the rotating tube (38).
8. The air purification device for tire processing and manufacturing according to claim 1, characterized in that, An igniter (41) is provided at the top center of the combustion tank (4), and an air supply pipe (42) is provided at the bottom center of the combustion tank (4).
9. The air purification device for tire processing and manufacturing according to claim 1, characterized in that, The air outlet assembly (47) includes an air outlet pipe (471), which is connected to the circulation pipe (46), and a second control valve (472) is installed on the air outlet pipe (471).