Waste gas deodorization equipment for clean production of leather products
By incorporating a highly efficient deodorization mechanism and an automatic filter cleaning system, the problems of filter clogging and poor deodorization in existing equipment have been solved. This enables uniform spraying of the deodorant and convenient cleaning of the filter, thereby improving the automation level and deodorization efficiency of the equipment.
Patent Information
- Application Number
- CN202511616683.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2025-12-02
AI Technical Summary
Existing waste gas deodorization equipment suffers from filter clogging during the treatment process, requiring regular manual cleaning, which is cumbersome and ineffective.
It adopts a high-efficiency deodorization mechanism, including a sliding rod and a clamping frame structure, which uses alternating negative pressure to achieve uniform spraying of deodorant; airflow is formed by a pneumatic component, combined with a dispersion mechanism and a transmission component to ensure uniform distribution of deodorant; and the filter screen is automatically cleaned by an electromagnet and a hammer rod assembly, reducing manual maintenance.
It achieves uniform spraying and distribution of deodorant, improves deodorization effect, simplifies filter cleaning process, and reduces manual maintenance workload.
Smart Images

Figure CN121041850A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of leather processing, and more particularly to a waste gas deodorization device for cleaning leather production. Background Technology
[0002] During the production and processing of leather goods, they need to be cleaned in advance, which will also generate some exhaust fumes and odors. Exhaust gas deodorization equipment is used to help deodorize them.
[0003] Existing exhaust gas deodorization equipment uses a fan to create airflow, drawing the gas from the production workshop into the treatment chamber. A pre-placed deodorizing agent in the chamber then assists in adsorption. However, the deodorization effect is relatively weak, and the airflow also contains particulate matter, requiring the use of filters. After prolonged use, the filter screens easily become clogged, necessitating regular disassembly and cleaning by staff – a cumbersome and time-consuming process.
[0004] Therefore, it is necessary to provide a new exhaust gas deodorization device for leather goods cleaning production to solve the above-mentioned technical problems. Summary of the Invention
[0005] To solve the above-mentioned technical problems, the present invention provides a waste gas deodorization device for leather cleaning production.
[0006] The present invention provides a waste gas deodorization device for leather cleaning production, comprising: a base, on which a treatment box is fixedly connected; a pre-filter is provided at the front end of the treatment box; an air inlet pipe is provided on the front wall of the pre-filter; a right-angle air outlet pipe is provided on the rear wall of the treatment box; a cross-shaped spray nozzle is provided on the inner wall of the top of the treatment box; and an upper water tank is provided at the upper end of the base; a high-efficiency deodorization mechanism, comprising a mounting frame, which is fixedly installed on the side wall of the treatment box; a square tube is fixedly connected to the upper end of the mounting frame; an internal piston is provided inside the square tube; sliding rods are slidably connected to the walls of both ends of the square tube; the adjacent ends of the two sliding rods are fixedly connected to the internal piston; the other ends of the two sliding rods are jointly fixedly connected to a clamping frame; liquid exchange components are provided at both ends of the square tube; and a pneumatic component is provided between the mounting frame and the right-angle air outlet pipe.
[0007] Preferably, the fluid exchange assembly includes a three-way pipe, which consists of a main pipe and a branch pipe. One end of the main pipe is connected to one end of the wall of the square pipe. A drain valve is installed inside the branch pipe, and an inlet valve is installed inside the main pipe.
[0008] Preferably, the pneumatic assembly includes a drive shaft rotatably connected to the mounting bracket. A rear seat is provided at the middle position of the clamping frame. The upper end of the drive shaft is a reciprocating lead screw. The rear seat is threadedly connected to the upper end of the drive shaft. A vertical shaft is rotatably connected to the wall of the right-angle air outlet pipe. A fan blade is installed at the lower end of the vertical shaft and is located inside the right-angle air outlet pipe. A small gear is installed at the upper end of the vertical shaft, and a large gear is installed at the lower end of the drive shaft. The small gear and the large gear mesh with each other. A motor is installed on the outside of the right-angle air outlet pipe, and the output end of the motor is fixedly connected to the top end of the vertical shaft.
[0009] Preferably, a dispersion mechanism is provided between the cross-shaped spray nozzle and the treatment box. The dispersion mechanism includes a rotating pipe, which is rotatably connected to the top wall of the treatment box. The lower end of the rotating pipe is fixedly connected to the cross-shaped spray nozzle. An upper frame is provided on the top outer wall of the treatment box. A double-headed liquid inlet is installed and connected on the upper frame. The double-headed liquid inlet is connected to the main pipe port on two three-way pipes through two first connecting pipes. A rotary joint is installed and connected between the double-headed liquid inlet and the rotating pipe. A transmission assembly is provided between the rotating pipe and the drive shaft. A double-headed liquid outlet is installed and connected to the side wall of the upper water tank. The double-headed liquid outlet is connected to the branch pipe port on two three-way pipes through two second connecting pipes.
[0010] Preferably, the transmission assembly includes a main transmission wheel, which is fixedly connected to the upper end of the rotating tube, and a secondary transmission wheel is installed and connected to the lower end of the drive shaft. A transmission belt is installed and connected between the main transmission wheel and the secondary transmission wheel.
[0011] Preferably, an opening is provided between the walls of the pre-filter and the processing box. Two right-angle clips are fixedly connected to the opening, and a filter plate is provided between the two right-angle clips. A ring frame is installed and connected in the opening. Multiple fixed tubes are equidistantly arranged on the ring frame. A hammer rod is slidably connected to one end of each fixed tube. A magnetic block is fixedly connected to one end of each hammer rod. A hammer head is provided at the other end of each hammer rod. A spring is sleeved and connected to the hammer rod. One end of the spring is connected to the magnetic block, and the other end of the spring is connected to the inner wall of the fixed tube. An electromagnet is installed and connected to the inner wall of the other end of the fixed tube. The electromagnet has the same magnetic poles as the magnetic block.
[0012] Preferably, an inclined plate is provided at the other end of the opening, and the inclined plate is fixedly installed on the inner side wall of the processing box.
[0013] Preferably, the lower end wall of the front tank is provided with a drawer opening, and a pull-out box is slidably connected to the drawer opening. The side wall of the upper water tank is provided with a strip opening, and a long window is installed and connected in the strip opening.
[0014] Compared with related technologies, the waste gas deodorization equipment for leather cleaning production provided by the present invention has the following beneficial effects: This invention uses two sliding rods driven by the two ends of the card frame to slide relative to the two ends of the square tube. The two sliding rods drive the built-in piston to move back and forth, changing the negative pressure between the two sides of the built-in piston and the inside of the square tube. The alternating negative pressure causes the water stored in the upper water tank to collect into the rotating pipe. The pumped liquid is transported to the cross spray nozzle and sprayed evenly, so that the deodorizing agent can be used to completely deodorize the gas. This invention drives a vertical shaft to rotate via the output of a motor, and the lower end of the vertical shaft drives the fan blades to rotate, forming an airflow. This allows the gas in the external environment to enter the pre-pack and processing pack through the air inlet pipe for deodorization, and then be discharged through the right-angle air outlet pipe, thus achieving deodorization of the gas. 3. In this invention, a small gear on a vertical shaft drives a large gear meshing with it to rotate. The large gear then drives the drive shaft to rotate simultaneously. The rotation of the drive shaft drives the rear seat to move the clamping frame back and forth. The two ends of the clamping frame drive two sliding rods to slide relative to the two ends of the square tube wall. This allows the two sliding rods to drive the built-in piston to move back and forth relative to the inside of the square tube, changing the space between the built-in piston and the inside of the square tube. 4. In this invention, the upper end of the rotating tube rotates stably relative to the rotary joint, which in turn drives the lower end of the rotating tube to rotate stably. The centrifugal force generated by the rotation allows the dispersed deodorizer to be more evenly distributed inside the treatment chamber, ensuring that the deodorizer can more effectively deodorize the gas. 5. In this invention, the lower end of the drive shaft drives the auxiliary transmission wheel to rotate, and then the transmission belt drives the main transmission wheel to rotate, which in turn drives the rotating tube to rotate. This allows the rotating tube to rotate stably relative to the rotary joint, thereby simultaneously driving the lower end of the rotating tube to drive the rotary joint to rotate. 6. This invention generates magnetism by intermittently energizing multiple electromagnets. The multiple electromagnets alternately repel multiple magnetic blocks, and the magnetic blocks drive the hammer rod to slide relative to one end of the fixed tube wall. The spring inside the fixed tube undergoes elastic deformation, causing the hammer head at one end of the hammer rod to directly strike the mesh surface of the filter screen. This conveniently shakes off the dust particles accumulated on the mesh surface, making it easy to clean the dust on the filter screen. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of a preferred embodiment of the present invention; Figure 2 for Figure 1 The diagram shows a top view of the front-mounted enclosure. Figure 3 for Figure 1 The diagram shows the structure at point A. Figure 4 for Figure 3 The diagram shows the structure of the square tube. Figure 5 for Figure 1 The diagram shows the structure at point B. Figure 6 for Figure 1 The diagram shows the structure at point C. Figure 7 for Figure 1 The diagram shows the structure at point D. Figure 8 for Figure 7 The diagram shows the internal structure of the fixed tube.
[0016] Numbered in the diagram: 1. Base; 2. Processing box; 21. Front box; 211. Pull-out box; 22. Air inlet pipe; 23. Right-angle air outlet pipe; 24. Cross-shaped spray nozzle; 3. Top-mounted water tank; 31. Long window; 4. Mounting bracket; 41. Square tube; 42. Internal piston; 43. Slide rod; 44. Clamping plate frame; 441. Rear seat; 45. T-connector; 46. Drain valve; 47. Inlet valve; 5. Drive shaft; 51. Vertical shaft; 5 2. Fan blade; 53. Small gear; 54. Large gear; 55. Motor; 6. Rotary tube; 61. Upper frame; 62. Rotary joint; 63. Main drive wheel; 64. Secondary drive wheel; 65. Drive belt; 66. Double-ended liquid inlet; 67. Double-ended liquid outlet; 7. Right-angle clamp; 71. Filter screen; 72. Ring frame; 73. Fixed tube; 74. Hammer rod; 75. Magnetic block; 76. Spring; 77. Electromagnet; 8. Inclined plate. Detailed Implementation
[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0018] Please refer to the following: Figures 1 to 8 A waste gas deodorization device for leather cleaning production includes: a base 1, a treatment box 2 fixedly connected to the base 1, a front box 21 at the front end of the treatment box 2, an air inlet pipe 22 on the front wall of the front box 21, a right-angle air outlet pipe 23 on the rear wall of the treatment box 2, a cross-shaped spray nozzle 24 on the inner wall of the top of the treatment box 2, and an upper water tank 3 at the upper end of the base 1; a high-efficiency deodorization mechanism, including a mounting frame 4, the mounting frame 4 fixedly installed on the side wall of the treatment box 2, a square tube 41 fixedly connected to the upper end of the mounting frame 4, an internal piston 42 inside the square tube 41, sliding rods 43 slidably connected to the tube walls at both ends of the square tube 41, the near ends of the two sliding rods 43 being fixedly connected to the internal piston 42, the other ends of the two sliding rods 43 being fixedly connected to a clamping frame 44, liquid replacement components at both ends of the square tube 41, and a pneumatic component between the mounting frame 4 and the right-angle air outlet pipe 23.
[0019] In the specific implementation process, such as Figure 3 and Figure 4 As shown, the fluid exchange assembly includes a three-way pipe 45, which consists of a main pipe and a branch pipe. One end of the main pipe is connected to one end of the wall of the square pipe 41. A drain valve 46 is installed inside the branch pipe, and an inlet valve 47 is installed inside the main pipe.
[0020] It should be noted that: by using alternating negative pressure, the water stored in the upper water tank 3 is transported through the double-ended liquid outlet 67 and the two second connecting pipes to the two three-way pipes 45 respectively. After passing through the two liquid inlet valves 47, it enters the square pipe 41 and then is discharged in one direction through the two liquid outlet valves 46. After passing through the double-ended liquid inlet 66, it is collected and enters the rotating pipe 6. The pumped liquid is transported to the cross spray nozzle 24 and sprayed evenly. The evenly sprayed deodorant can then completely deodorize the gas. By using the two ends of the card frame 44 to drive the two sliding rods 43 to slide relative to the two ends of the square tube 41, the two sliding rods 43 at the near end drive the built-in piston 42 to move back and forth, thereby changing the negative pressure between the two sides of the built-in piston 42 and the inside of the square tube 41.
[0021] refer to Figure 3 and Figure 5 As shown, the wind-driven assembly includes a drive shaft 5, which is rotatably connected to the mounting bracket 4. A rear seat 441 is provided at the middle position of the clamping frame 44. The upper end of the drive shaft 5 is a reciprocating lead screw. The rear seat 441 is threadedly connected to the upper end of the drive shaft 5. A vertical shaft 51 is rotatably connected to the wall of the right-angle air outlet pipe 23. A fan blade 52 is installed and connected to the lower end of the vertical shaft 51. The fan blade 52 is located inside the right-angle air outlet pipe 23. A small gear 53 is installed and connected to the upper end of the vertical shaft 51. A large gear 54 is installed and connected to the lower end of the drive shaft 5. The small gear 53 and the large gear 54 mesh with each other. A motor 55 is installed and connected to the outside of the right-angle air outlet pipe 23. The output end of the motor 55 is fixedly connected to the top end of the vertical shaft 51.
[0022] It should be noted that: starting the motor 55 causes its output end to drive the vertical shaft 51 to rotate, and the lower end of the vertical shaft 51 drives the fan blade 52 to rotate, forming an airflow, which causes the gas in the external environment to enter the pre-pack 21 and the processing box 2 through the air inlet pipe 22 for processing, and then to be discharged through the right-angle air outlet pipe 23. The small gear 53 on the vertical shaft 51 drives the large gear 54 that meshes with it to rotate. The large gear 54 then drives the drive shaft 5 to rotate simultaneously. The rotation of the drive shaft 5 drives the rear seat 441 to move the card frame 44 back and forth.
[0023] refer to Figure 1 and Figure 6As shown, a dispersion mechanism is provided between the cross-shaped spray nozzle 24 and the treatment tank 2. The dispersion mechanism includes a rotating pipe 6, which is rotatably connected to the top wall of the treatment tank 2. The lower end of the rotating pipe 6 is fixedly connected to the cross-shaped spray nozzle 24. An upper frame 61 is provided on the top outer wall of the treatment tank 2. A double-headed liquid inlet 66 is installed and connected on the upper frame 61. The double-headed liquid inlet 66 is connected to the main pipe port on the two three-way pipes 45 through two first connecting pipes. A rotary joint 62 is installed and connected between the double-headed liquid inlet 66 and the rotating pipe 6. A transmission assembly is provided between the rotating pipe 6 and the drive shaft 5. A double-headed liquid outlet 67 is installed and connected to the side wall of the upper water tank 3. The double-headed liquid outlet 67 is connected to the branch pipe port on the two three-way pipes 45 through two second connecting pipes.
[0024] It should be noted that the lower end of the rotating pipe 6 drives the cross spray element 24 to rotate stably. The centrifugal force generated by the rotation allows the dispersed deodorizer to be more evenly distributed inside the treatment box 2, ensuring that the deodorizer can more fully deodorize the gas.
[0025] refer to Figure 3 and Figure 6 As shown, the transmission assembly includes a main drive wheel 63, which is fixedly connected to the upper end of the rotating tube 6. A secondary drive wheel 64 is installed and connected to the lower end of the drive shaft 5. A transmission belt 65 is installed and connected between the main drive wheel 63 and the secondary drive wheel 64.
[0026] It should be noted that the lower end of the drive shaft 5 drives the auxiliary transmission wheel 64 to rotate, and then the transmission belt 65 drives the main transmission wheel 63 to rotate the rotating tube 6, so that the upper end of the rotating tube 6 rotates stably relative to the rotary joint 62.
[0027] refer to Figure 7 and Figure 8 As shown, an opening is provided between the walls of the pre-loading box 21 and the processing box 2. Two right-angle clips 7 are fixedly connected to the opening, and a filter plate 71 is provided between the two right-angle clips 7. An annular frame 72 is installed and connected in the opening. Multiple fixed tubes 73 are equidistantly arranged on the annular frame 72. A hammer rod 74 is slidably connected to the wall of one end of each fixed tube 73. A magnet 75 is fixedly connected to one end of the hammer rod 74. A hammer head is provided at the other end of the hammer rod 74. A spring 76 is sleeved and connected to the hammer rod 74. One end of the spring 76 is connected to the magnet 75, and the other end of the spring 76 is connected to the inner wall of the fixed tube 73. An electromagnet 77 is installed and connected to the inner wall of the other end of the fixed tube 73. The electromagnet 77 and the magnet 75 have the same magnetic poles.
[0028] It should be noted that: the control intermittently energizes multiple electromagnets 77 to generate magnetism, and the multiple electromagnets 77 alternately repel multiple magnetic blocks 75, causing the magnetic blocks 75 to drive the hammer rod 74 to slide relative to one end of the fixed tube 73. The spring 76 inside the fixed tube 73 undergoes elastic deformation, causing the hammer head at one end of the hammer rod 74 to directly strike the mesh surface of the filter screen 71, causing the dust particles accumulated on the mesh surface to fall off.
[0029] refer to Figure 1 and Figure 7 As shown, an inclined plate 8 is provided at the other end of the opening, and the inclined plate 8 is fixedly installed on the inner side wall of the processing box 2.
[0030] It should be noted that the design of the inclined plate 8 ensures that the evenly sprayed deodorant will not enter the interior of the air intake pipe 22.
[0031] refer to Figure 1 and Figure 3 As shown, the lower end of the front tank 21 has a drawer opening, and a pull-out box 211 is slidably connected to the drawer opening. The side wall of the upper water tank 3 has a strip opening, and a long window 31 is installed and connected in the strip opening.
[0032] It should be noted that the pull-out box 211 is designed to conveniently collect ash and facilitate the cleaning of the ash in the front box 21.
[0033] The working principle of the waste gas deodorization equipment for leather cleaning production provided by the present invention is as follows: the motor 55 is started so that its output end drives the vertical shaft 51 to rotate, and the lower end of the vertical shaft 51 drives the fan blade 52 to rotate, forming an airflow, so that the gas in the external environment enters the pre-packet 21 and the treatment box 2 through the air inlet pipe 22 for treatment, and then is discharged through the right-angle air outlet pipe 23.
[0034] The small gear 53 on the vertical shaft 51 drives the large gear 54 meshing with it to rotate. The large gear 54 then drives the drive shaft 5 to rotate simultaneously. The rotation of the drive shaft 5 drives the rear seat 441 to move the clamping frame 44 back and forth. The two ends of the clamping frame 44 drive the two sliding rods 43 to slide relative to the two ends of the square tube 41. The two ends of the two sliding rods 43 drive the built-in piston 42 to move back and forth, thereby changing the negative pressure between the two sides of the built-in piston 42 and the inside of the square tube 41. The alternating negative pressure causes the water stored in the upper water tank 3 to be transported to the two three-way pipes 45 through the double-headed liquid outlet 67 and the two second connecting pipes respectively. After passing through the two liquid inlet valves 47 into the square tube 41, it is discharged one way through the two liquid outlet valves 46. After passing through the double-headed liquid inlet 66, it is collected and enters the rotating pipe 6. The pumped liquid is transported to the cross spray nozzle 24 and sprayed evenly. The evenly sprayed deodorant can completely deodorize the gas.
[0035] The lower end of the drive shaft 5 drives the auxiliary drive wheel 64 to rotate, and then the drive belt 65 drives the main drive wheel 63 to rotate the rotating tube 6. The upper end of the rotating tube 6 rotates stably relative to the rotary joint 62, so that the lower end of the rotating tube 6 drives the cross spray element 24 to rotate stably. The centrifugal force generated by the rotation allows the dispersed sprayed deodorant to be more evenly distributed inside the treatment box 2, ensuring that the deodorant can more fully deodorize the gas.
[0036] When it is necessary to clean the screen surface of the filter plate 71, multiple electromagnets 77 are intermittently energized to generate magnetism. The multiple electromagnets 77 alternately repel multiple magnetic blocks 75, causing the magnetic blocks 75 to drive the hammer rod 74 to slide relative to one end of the fixed tube 73. The spring 76 inside the fixed tube 73 undergoes elastic deformation, causing the hammer head at one end of the hammer rod 74 to directly strike the screen surface of the filter plate 71, causing the dust particles accumulated on the screen surface to fall off. Subsequently, the pull-out box 211 can be directly pulled out to clean the dust stored in the pre-filter box 21.
[0037] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural or procedural transformations made based on the content of the present invention's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present invention.
Claims
1. A waste gas deodorization device for leather goods cleaning production, characterized in that, include: A base (1) is fixedly connected to a processing box (2). A front box (21) is provided at the front end of the processing box (2). An air inlet pipe (22) is provided on the front wall of the front box (21). A right-angle air outlet pipe (23) is provided on the rear wall of the processing box (2). A cross spray element (24) is provided on the inner wall of the top of the processing box (2). An upper water tank (3) is provided at the upper end of the base (1). The high-efficiency deodorization mechanism includes a mounting frame (4), which is fixedly installed on the side wall of the treatment box (2). A square tube (41) is fixedly connected to the upper end of the mounting frame (4). An internal piston (42) is provided inside the square tube (41). Sliding rods (43) are slidably connected to the tube walls at both ends of the square tube (41). The two sliding rods (43) are fixedly connected to the internal piston (42) at one end and to the other end of the two sliding rods (43) together. A card frame (44) is fixedly connected to both ends of the square tube (41). A liquid exchange assembly is provided at both ends of the square tube (41). A wind-driven assembly is provided between the mounting frame (4) and the right-angle air outlet pipe (23).
2. The waste gas deodorization equipment for leather goods cleaning production according to claim 1, characterized in that, The fluid exchange assembly includes a three-way pipe (45), which is composed of a main pipe and a branch pipe. One end of the main pipe is connected to one end of the wall of the square pipe (41). A drain valve (46) is installed inside the branch pipe, and an inlet valve (47) is installed inside the main pipe.
3. The waste gas deodorization equipment for leather goods cleaning production according to claim 1, characterized in that, The wind-driven assembly includes a drive shaft (5), which is rotatably connected to the mounting bracket (4). A rear seat (441) is provided at the middle position of the card frame (44). The upper end of the drive shaft (5) is a reciprocating lead screw. The rear seat (441) is threadedly connected to the upper end of the drive shaft (5). A vertical shaft (51) is rotatably connected to the wall of the right-angle air outlet pipe (23). A fan blade (52) is installed at the lower end of the vertical shaft (51). The fan blade (52) is located inside the right-angle air outlet pipe (23). A small gear (53) is installed at the upper end of the vertical shaft (51). A large gear (54) is installed at the lower end of the drive shaft (5). The small gear (53) and the large gear (54) mesh with each other. A motor (55) is installed on the outside of the right-angle air outlet pipe (23). The output end of the motor (55) is fixedly connected to the top end of the vertical shaft (51).
4. The waste gas deodorization equipment for leather goods cleaning production according to claim 1, characterized in that, A dispersion mechanism is provided between the cross spray nozzle (24) and the treatment box (2). The dispersion mechanism includes a rotating pipe (6). The rotating pipe (6) is rotatably connected to the top wall of the treatment box (2). The lower end of the rotating pipe (6) is fixedly connected to the cross spray nozzle (24). An upper frame (61) is provided on the top outer wall of the treatment box (2). A double-headed liquid inlet (66) is installed on the upper frame (61). The double-headed liquid inlet (66) is connected to the main pipe port on the two three-way pipes (45) through two first connecting pipes. A rotary joint (62) is installed between the double-headed liquid inlet (66) and the rotating pipe (6). A transmission assembly is provided between the rotating pipe (6) and the drive shaft (5). A double-headed liquid outlet (67) is installed on the side wall of the upper water tank (3). The double-headed liquid outlet (67) is connected to the branch pipe port on the two three-way pipes (45) through two second connecting pipes.
5. The waste gas deodorization equipment for leather goods cleaning production according to claim 4, characterized in that, The transmission assembly includes a main drive wheel (63), which is fixedly connected to the upper end of the rotating tube (6). A secondary drive wheel (64) is installed and connected at the lower end of the drive shaft (5). A transmission belt (65) is installed and connected between the main drive wheel (63) and the secondary drive wheel (64).
6. The waste gas deodorization equipment for leather goods cleaning production according to claim 1, characterized in that, An opening is provided between the walls of the pre-loading box (21) and the processing box (2). Two right-angle clips (7) are fixedly connected to the opening. A filter plate (71) is provided between the two right-angle clips (7). A ring frame (72) is installed and connected in the opening. Multiple fixed tubes (73) are provided at equal intervals on the ring frame (72). A hammer rod (74) is slidably connected to the wall of one end of each fixed tube (73). A magnetic block (75) is fixedly connected to one end of the hammer rod (74). A hammer head is provided at the other end of the hammer rod (74). A spring (76) is sleeved and connected to the hammer rod (74). One end of the spring (76) is connected to the magnetic block (75). The other end of the spring (76) is connected to the inner wall of the fixed tube (73). An electromagnet (77) is installed and connected to the inner wall of the other end of the fixed tube (73). The electromagnet (77) and the magnetic block (75) have the same magnetic poles.
7. The waste gas deodorization equipment for leather goods cleaning production according to claim 6, characterized in that, An inclined plate (8) is provided at the other end of the opening, and the inclined plate (8) is fixedly installed on the inner side wall of the processing box (2).
8. The waste gas deodorization equipment for leather goods cleaning production according to claim 1, characterized in that, The lower end of the front tank (21) is provided with a drawer opening, and a pull-out box (211) is slidably connected to the drawer opening. The side wall of the upper water tank (3) is provided with a strip opening, and a long window (31) is installed and connected in the strip opening.
Citation Information
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