Intelligent waste water resin trapper
By designing an intelligent wastewater resin capturer, using remote or on-site intelligent control box and rotary cleaning brush sleeve, the problem of traditional capturers requiring disassembly and cleaning and difficult to detect resin leakage is solved, automatic cleaning and real-time detection are achieved, and the safe operation reliability of the system is improved.
Patent Information
- Application Number
- CN202510169304.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2045-02-17
AI Technical Summary
The traditional wastewater resin trap design needs to be disassembled before cleaning, and it is difficult to accurately judge the resin leakage in the system, affecting the safe operation and reliability of the system.
Design an intelligent wastewater resin trap, adopting a remote or on-site intelligent control box, combining a rotary cleaning brush sleeve and a backflush cleaning water source to realize automated cleaning and impurity interception detection.
Through automated cleaning and real-time inspection, the maintenance workload is significantly reduced, the safe operation reliability of the system is improved, and the interception of impurities in the system can be accurately judged.
Smart Images

Figure CN120037710A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of waste water resin capture, and particularly relates to an intelligent waste water resin catcher. Background Art
[0002] In the design of traditional condensate polishing waste water catchers, a fixed filtration method is usually adopted, and the catcher can only be cleaned by disassembly. However, the intelligent waste water resin catcher of the present invention can completely replace the conventional fixed catcher, realize remote or on-site operation, facilitate more accurate judgment of system impurities, especially resin leakage, and improve the safe operation reliability of the system while significantly reducing the maintenance workload. Summary of the Invention
[0003] The main purpose of the present invention is to provide an intelligent waste water resin catcher, which can effectively solve the problems in the background art.
[0004] To achieve the above purpose, the technical solution adopted by the present invention is as follows:
[0005] An intelligent waste water resin catcher includes a catcher housing. A liquid inlet pipe is fixedly arranged above one side of the catcher housing. A liquid outlet pipe is fixedly arranged at the bottom of the catcher housing. An upper cover is fixedly installed at the upper end of the catcher housing. An intelligent control box is fixedly installed at the front end of the upper cover. A filter screen is arranged inside the catcher housing. Cleaning components are respectively arranged on both sides of the filter screen inside the catcher housing and the upper cover. A driving component is arranged inside the upper cover. The cleaning component includes a recovery cylinder fixedly arranged inside the upper end of the catcher housing near the inner side of the upper cover. A fixing ring is fixedly arranged on the upper inner wall of the recovery cylinder. A bearing is fixedly arranged inside the fixing ring. A cleaning brush sleeve is fixedly arranged inside the bearing. A bottom plate is fixedly arranged at the lower end of the cleaning brush sleeve. A first bevel gear is fixedly arranged at the lower end of the bottom plate. A round rod is arranged inside the cleaning brush sleeve. A threaded portion is arranged at the upper side position of the round rod. Two groups of limiting rings are fixedly arranged at the lower side of the round rod. A guiding portion is fixedly arranged on the outer side of the round rod. A reciprocating guiding groove is arranged on the outer side of the guiding portion. A sleeve ring is sleeved on the outer side of the guiding portion. A guiding shaft is fixedly arranged on the inner wall of the sleeve ring. Four connecting rods are fixedly arranged between the outer side of the sleeve ring and the inner wall of the cleaning brush sleeve. A second bevel gear is fixedly arranged at the position near the outer side of the filter screen at the inner bottom of the catcher housing. A positioning ring is fixedly arranged at the position near the second bevel gear on the outer side of the filter screen.
[0006] Preferably, the driving assembly includes two fixed rods fixedly arranged at the upper ends of two sets of round rods. Chute grooves are provided on both sides of the two fixed rods and the two sets of round rods. Threaded sleeves are sleeved on the outer sides of the two fixed rods. Fixed sleeves are sleeved on the outer sides of the two threaded sleeves. Synchronous pulleys I are rotatably arranged on the outer sides of the two fixed sleeves. Motors are fixedly arranged on the upper ends of the two catcher housings near the inner sides of the upper covers. Synchronous pulleys II are fixedly arranged on the upper rotating shafts of the motors. Synchronous belts are sleeved on the outer sides of the synchronous pulley II and the two synchronous pulleys I. Activity openings are provided on the upper sides of the upper covers corresponding to the positions of the two fixed rods. Sliders are fixedly arranged on the inner walls of the two activity openings corresponding to the positions of the chute grooves.
[0007] Preferably, a cleaning pipe is fixedly arranged near one side of the lower end of the catcher housing, and a drain pipe is fixedly arranged near the other side of the lower end of the catcher housing. Electric control valves are fixedly installed on both the cleaning pipe and the drain pipe. A collecting water tank is fixedly arranged at one end of the drain pipe, and a sewage pump is fixedly installed on the drain pipe.
[0008] Preferably, round openings are provided on the upper ends of the catcher housing corresponding to the positions of the two cleaning brush sleeves. The round openings allow the cleaning brush sleeves to pass through. The intelligent control box can be remotely controlled wirelessly. The filter screen is attached to the inner side of the bevel gear II and is hollow at the bottom. The cleaning brush sleeves are in a stretched and unfolded state. The cleaning brush sleeves are of an elastic memory corrugated structure. The bristles arranged on the surfaces of the cleaning brush sleeves are pig bristles.
[0009] Preferably, the bottom plate can block the round opening provided on the upper side of the catcher housing. The bevel gear I and the positioning ring are in a meshing arrangement. The lower sides of the round rods penetrate through the inside of the bottom plate and the bevel gear I. The two limiting rings are located on the upper and lower sides of the bottom plate and the bevel gear I. The guide shaft is movably arranged inside the reciprocating guide groove.
[0010] Preferably, the fixed rod passes through the inside of the activity opening. The threaded sleeve is adapted to the threaded part, and the threaded sleeve is fixedly installed together with the synchronous pulley I.
[0011] Preferably, the fixed sleeve is fixedly arranged with the recovery cylinder. The lower rotating shaft of the motor passes through the upper end of the catcher housing and is fixedly connected to the filter screen. The motor is electrically connected to the intelligent control box. The slider is meshed with the two chute grooves.
[0012] Preferably, the upper side of the cleaning pipe corresponds to the inner side position of the filter screen, and the drain pipe corresponds to the position between the inner wall of the catcher housing and the filter screen. The electric control valve and the sewage pump are electrically connected to the upper cover.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] 1. Wastewater enters through the inlet pipe. After being filtered by the filter screen, it is discharged outward through the outlet pipe, intercepting resin particles that may exist in the wastewater. Subsequently, by opening the electric control valve and sewage pump on the drain pipe, the resin particles intercepted inside the housing of the trap are discharged into the interior of the collection water tank for collection. During cleaning, cleaning water source is introduced through the cleaning pipe to backwash the filter screen. At the same time, two sets of cleaning components perform brushing work. With the design of a separate cleaning pipeline and a discharge and collection water tank, the cleaning effect is significantly improved, and the interception situation of impurities in the system can be accurately judged. During any cleaning, observe and judge the abnormal situation of impurities, especially resin leakage, inside the system, effectively improving the work efficiency and enhancing the reliability of the safe operation of the system. And through the intelligent control box, remote or on-site control can be achieved, and the cleaning function can be realized without disassembly.
[0015] 2. During the cleaning operation, the motor is controlled to drive the filter screen and the second synchronous wheel to rotate. The rotation of the second synchronous wheel drives two sets of synchronous belts respectively to drive the two connected first synchronous wheels and the threaded sleeves to rotate. The two rotating threaded sleeves drive the round rod with threads to move downward until the threaded part leaves the inner side of the threaded sleeve. At this time, the round rod will extend and unfold the cleaning brush sleeve, making the cleaning brush sleeve fit on the outer side of the filter screen. The bevel gear 1 on the lower side meshes with the positioning ring. The continuous rotation of the threaded sleeve does not affect the extended length of the round rod. The rotating filter screen drives the positioning ring, driving the bevel gears 1 on both sides and the cleaning brush sleeves to rotate, enabling the two cleaning brush sleeves to clean the surface of the filter screen. Combined with the flushing of the cleaning pipe, the purpose of self-cleaning is achieved, significantly reducing the maintenance workload and enhancing the reliability of the safe operation of the system.
[0016] 3. The rotating cleaning brush sleeve drives the connecting rod, collar, and guide shaft connected inside to rotate. While rotating, the guide shaft moves up and down along the reciprocating guide groove, pulling the cleaning brush sleeve with a corrugated structure to move up and down by a certain amplitude, better improving the cleaning effect on the surface of the filter screen and preventing impurities from being intercepted in the gaps of the filter screen.
[0017] 4. After the work is completed, the motor is controlled to rotate in the reverse direction. Combined with the upward elastic support of the stretched cleaning brush sleeve, it promotes the threaded connection between the threaded part and the threaded sleeve, raising the two threaded parts upward. Since the cleaning brush sleeve has a corrugated structure, it can be folded together and stored in the recycling cylinder. At the same time, the bottom plate can block the circular opening of the recycling cylinder corresponding to the upper end of the trap housing, achieving hidden storage, avoiding the situation that when the trap housing is filtering, a large amount of impurities are easily adhered to it in the trap housing, protecting it and preventing it from affecting subsequent use. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a front view structural schematic diagram of an intelligent wastewater resin trap of the present invention;
[0019] Figure 2 Schematic diagram of the partial internal structure of an intelligent waste - water resin catcher according to the present invention;
[0020] Figure 3 For an intelligent waste - water resin catcher of the present invention Figure 2 Schematic diagram of the enlarged structure of part A therein;
[0021] Figure 4 Schematic diagram of the internal structure of the cleaning component of an intelligent waste - water resin catcher according to the present invention;
[0022] Figure 5 Schematic diagram of the structure of the cleaning component and the driving component of an intelligent waste - water resin catcher according to the present invention;
[0023] Figure 6 For an intelligent waste - water resin catcher of the present invention Figure 4 Schematic diagram of the enlarged structure of part B therein;
[0024] Figure 7 For an intelligent waste - water resin catcher of the present invention Figure 4 Schematic diagram of the enlarged structure of part C therein;
[0025] Figure 8 For an intelligent waste - water resin catcher of the present invention Figure 4 Schematic diagram of the enlarged structure of part D therein;
[0026] Figure 9 For an intelligent waste - water resin catcher of the present invention Figure 5 Schematic diagram of the enlarged structure of part E therein;
[0027] Figure 10 Schematic diagram of the partially - sectioned structure of the driving component of an intelligent waste - water resin catcher according to the present invention;
[0028] Figure 11 Schematic diagram of the overall structure of an intelligent waste - water resin catcher according to the present invention.
[0029] In the figure: 1. Catcher housing; 2. Liquid inlet pipe; 3. Liquid outlet pipe; 4. Upper cover; 5. Intelligent control box; 6. Filter screen; 7. Cleaning assembly; 71. Recycling cylinder; 72. Fixed ring; 73. Bearing; 74. Cleaning brush sleeve; 75. Base plate; 76. First bevel gear; 77. Round rod; 78. Threaded part; 79. Limit ring; 710. Guide part; 711. Reciprocating guide groove; 712. Collar; 713. Guide shaft; 714. Connecting rod; 715. Second bevel gear; 716. Positioning ring; 8. Driving assembly; 81. Fixed rod; 82. Chute; 83. Threaded sleeve; 84. Fixed sleeve; 85. First synchronous pulley; 86. Motor; 87. Second synchronous pulley; 88. Timing belt; 89. Movable opening; 810. Slide block; 9. Cleaning pipe; 10. Drain pipe; 11. Electric control valve; 12. Collection water tank; 13. Sewage pump. Detailed implementation manners
[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0031] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is the relative relationship of the orientation or position, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0032] Please refer to Figures 1 - 11, an embodiment provided by the present invention: an intelligent waste water resin catcher, including a catcher housing 1, a liquid inlet pipe 2 is fixedly arranged above one side of the catcher housing 1, a liquid outlet pipe 3 is fixedly arranged at the bottom of the catcher housing 1, an upper cover 4 is fixedly installed at the upper end of the catcher housing 1, an intelligent control box 5 is fixedly installed at the front end of the upper cover 4, a filter screen 6 is arranged inside the catcher housing 1, and cleaning components 7 are respectively arranged on both sides of the filter screen 6 inside the catcher housing 1 and the upper cover 4. A driving component 8 is arranged inside the upper cover 4. The cleaning component 7 includes a recovery cylinder 71 fixedly arranged at the upper end of the catcher housing 1 near the inner side of the upper cover 4. A fixing ring 72 is fixedly arranged on the upper inner wall of the recovery cylinder 71. A bearing 73 is fixedly arranged inside the fixing ring 72. A cleaning brush sleeve 74 is fixedly arranged inside the bearing 73. A bottom plate 75 is fixedly arranged at the lower end of the cleaning brush sleeve 74. A first bevel gear 76 is fixedly arranged at the lower end of the bottom plate 75. A round rod 77 is arranged inside the cleaning brush sleeve 74. A threaded portion 78 is arranged at the upper side position of the round rod 77. Two groups of limit rings 79 are fixedly arranged at the lower side of the round rod 77. A guiding portion 710 is fixedly arranged on the outer side of the round rod 77. A reciprocating guiding groove 711 is opened on the outer side of the guiding portion 710. A sleeve ring 712 is sleeved on the outer side of the guiding portion 710. A guiding shaft 713 is fixedly arranged on the inner wall of the sleeve ring 712. Four connecting rods 714 are fixedly arranged between the outer side of the sleeve ring 712 and the inner wall of the cleaning brush sleeve 74. A second bevel gear 715 is fixedly arranged at the position near the outer side of the filter screen 6 at the inner bottom of the catcher housing 1. A positioning ring 716 is fixedly arranged at the position near the second bevel gear 715 on the outer side of the filter screen 6.
[0033] Round openings are respectively arranged at the upper end of the catcher housing 1 corresponding to the positions of the two groups of cleaning brush sleeves 74, and the round openings are sized to allow the cleaning brush sleeves 74 to pass through. The intelligent control box 5 can be remotely controlled wirelessly. The filter screen 6 is attached to the inner side of the second bevel gear 715 and has a hollow bottom. The cleaning brush sleeve 74 is in a stretched and unfolded state. The cleaning brush sleeve 74 is of an elastic memory corrugated structure. The bristles arranged on the surface of the cleaning brush sleeve 74 are made of pig bristles. The bottom plate 75 can block the round openings opened on the upper side of the catcher housing 1. The first bevel gear 76 is meshed with the positioning ring 716. The lower side of the round rod 77 passes through the inside of the bottom plate 75 and the first bevel gear 76. The two groups of limit rings 79 are located on the upper and lower sides of the bottom plate 75 and the first bevel gear 76. The guiding shaft 713 is movably arranged inside the reciprocating guiding groove 711.
[0034] The rotating cleaning brush sleeve 74 drives the connecting rod 714, collar 712, and guide shaft 713 connected to the inside to rotate. While rotating, the guide shaft 713 moves up and down reciprocally along the reciprocating guide groove 711, pulling the corrugated cleaning brush sleeve 74 to move up and down by a certain amplitude, better improving the cleaning effect on the surface of the filter screen 6 and avoiding the interception of impurities in the gaps of the filter screen. Finally, after the work is completed, the control motor 86 rotates in the reverse direction, cooperating with the upward elastic support of the stretched cleaning brush sleeve 74, promoting the threaded connection between the threaded part 78 and the threaded sleeve 83, lifting the two threaded parts 78 upward. Since the cleaning brush sleeve 74 is of a corrugated structure, it can be folded together and stored in the recycling cylinder 71. At the same time, the bottom plate 75 can block the circular opening of the upper end of the catcher housing 1 corresponding to the recycling cylinder 71, realizing hidden storage, avoiding the adhesion of a large amount of impurities to the catcher housing 1 during filtration in the catcher housing 1, and protecting it from affecting subsequent use.
[0035] The driving assembly 8 includes two fixed rods 81 fixedly arranged at the upper ends of the two round rods 77. Chute 82 is provided on both sides of the two fixed rods 81 and the two round rods 77. Threaded sleeves 83 are sleeved on the outer sides of the two fixed rods 81. Fixed sleeves 84 are sleeved on the outer sides of the two threaded sleeves 83. Synchronous pulleys one 85 are rotatably arranged on the outer sides of the two fixed sleeves 84. Motors 86 are fixedly arranged on the upper ends of the two catcher housings 1 close to the inside of the upper cover 4. Synchronous pulleys two 87 are fixedly arranged on the upper rotating shafts of the motors 86. Synchronous belts 88 are sleeved on the outer sides of the synchronous pulley two 87 and the two synchronous pulleys one 85. Activity openings 89 are provided on the upper sides of the upper cover 4 corresponding to the positions of the two fixed rods 81. Sliders 810 are fixedly arranged on the inner walls of the two activity openings 89 corresponding to the positions of the chutes 82.
[0036] The fixed rod 81 passes through the inside of the activity opening 89. The threaded sleeve 83 is adapted to the threaded part 78. The threaded sleeve 83 and the synchronous pulley one 85 are fixedly installed together. The fixed sleeve 84 and the recycling cylinder 71 are fixedly arranged. The lower rotating shaft of the motor 86 passes through the upper end of the catcher housing 1 and is fixedly connected to the filter screen 6. The motor 86 and the intelligent control box 5 are electrically connected. The slider 810 and the two chutes 82 are engaged.
[0037] During the cleaning operation, the motor 86 is controlled to drive the filter screen 6 and the second synchronous pulley 87 to rotate. The rotation of the second synchronous pulley 87 drives the two sets of synchronous belts 88 to drive the two connected first synchronous pulleys 85 and the threaded sleeves 83 to rotate respectively. The two rotating threaded sleeves 83 drive the round rod 77 provided with threads to move downward until the threaded part 78 leaves the inner side of the threaded sleeve 83. At this time, the round rod 77 will extend and expand the cleaning brush sleeve 74, so that the cleaning brush sleeve 74 fits on the outer side of the filter screen 6. The bevel gear 76 on the lower side will then engage with the positioning ring 716. The continuous rotation of the threaded sleeve 83 will not affect the extended length of the round rod 77. The rotating filter screen 6 drives the positioning ring 716, driving the bevel gears 76 on both sides and the cleaning brush sleeve 74 to rotate, so that the two cleaning brush sleeves 74 clean the surface of the filter screen 6, and cooperate with the cleaning pipe 9 for flushing, achieving the purpose of self-cleaning, significantly reducing the maintenance workload, and improving the safe operation reliability of the system.
[0038] A cleaning pipe 9 is fixedly arranged near one side of the lower end of the catcher housing 1, and a drain pipe 10 is fixedly arranged near the other side of the lower end of the catcher housing 1. Electric control valves 11 are fixedly installed on both the cleaning pipe 9 and the drain pipe 10. One end of the drain pipe 10 is fixedly provided with a collection water tank 12, and a sewage pump 13 is fixedly installed on the drain pipe 10.
[0039] At the position corresponding to the inner side of the filter screen 6 on the upper side of the cleaning pipe 9, at the position between the inner wall of the catcher housing 1 and the filter screen 6 corresponding to the drain pipe 10, the electric control valves 11, the sewage pump 13 and the upper cover 4 are electrically connected.
[0040] Waste water enters through the inlet pipe 2, is filtered by the filter screen 6, and then discharged outward through the outlet pipe 3. Resin particles that may exist in the waste water are intercepted. Subsequently, by opening the electric control valve 11 and the sewage pump 13 on the drain pipe 10, the resin particles intercepted inside the catcher housing 1 are discharged into the interior of the collection water tank 12 for collection. When combined with cleaning, cleaning water source is introduced through the cleaning pipe 9 to backwash the filter screen 6, and at the same time, the two cleaning components 7 perform brush work. Through the design of a separate cleaning pipeline and the discharge and collection water tank, the cleaning effect is significantly improved and the interception situation of impurities in the system can be accurately judged. For any cleaning, observe and judge the abnormal situation of impurities in the system, especially resin leakage, which effectively improves the work efficiency, enhances the safe operation reliability of the system, and realizes remote or on-site control through the intelligent control box 5, and the cleaning function can be realized without disassembly.
[0041] Working principle: When in use, wastewater enters through the liquid inlet pipe 2. After being filtered by the filter screen 6, it is discharged outward through the liquid outlet pipe 3, intercepting resin particles that may exist in the wastewater. Subsequently, by opening the electric control valve 11 and the sewage pump 13 on the drain pipe 10, the resin particles intercepted inside the trap housing 1 are discharged into the interior of the collection water tank 12 for collection. During cleaning, cleaning water source is introduced through the cleaning pipe 9 to backwash the filter screen 6. At the same time, the two cleaning components 7 perform brushing work. With the design of the separate cleaning pipeline and the discharge and collection water tank, the cleaning effect is significantly improved and the interception situation of impurities in the system can be accurately judged. During any cleaning, observe and judge the abnormal situation of impurities, especially resin leakage, inside the system, effectively improving the work efficiency and enhancing the reliability of the safe operation of the system. And remote or local control can be achieved through the intelligent control box 5, and the cleaning function can be realized without disassembly. During the cleaning work, the motor 86 is controlled to drive the filter screen 6 and the synchronous pulley two 87 to rotate. The two synchronous belts 88 driven by the rotating synchronous pulley two 87 respectively drive the two connected synchronous pulleys one 85 and the threaded sleeves 83 to rotate. The two rotating threaded sleeves 83 drive the round rod 77 with threads to move downward until the threaded part 78 leaves the inner side of the threaded sleeve 83. At this time, the cleaning brush sleeve 74 of the round rod 77 will be stretched and unfolded, so that the cleaning brush sleeve 74 fits on the outer side of the filter screen 6. The bevel gear one 76 on the lower side will mesh with the positioning ring 716. The continuous rotation of the threaded sleeve 83 will not affect the extended length of the round rod 77. The rotating filter screen 6 drives the positioning ring 716, driving the bevel gears one 76 on both sides and the cleaning brush sleeve 74 to rotate, so that the two cleaning brush sleeves 74 clean the surface of the filter screen 6, and cooperate with the cleaning pipe 9 for flushing, achieving the purpose of self-cleaning, significantly reducing the maintenance workload and enhancing the reliability of the safe operation of the system. At the same time, the rotating cleaning brush sleeve 74 will drive the connecting rod 714, the collar 712 and the guide shaft 713 connected inside to rotate. The guide shaft 713 moves up and down reciprocally along the reciprocating guide groove 711 while rotating, pulling the cleaning brush sleeve 74 with a corrugated structure to move up and down by a certain amplitude, better improving the cleaning effect on the surface of the filter screen 6 and avoiding the interception of impurities in the filter screen gaps. Finally, after the work is completed, the motor 86 is controlled to rotate in the reverse direction, and with the upward elastic support of the stretched cleaning brush sleeve 74, the threaded part 78 is promoted to be threadedly connected with the threaded sleeve 83, lifting the two threaded parts 78 upward. Since the cleaning brush sleeve 74 is of a corrugated structure, it can be folded together and stored in the recovery cylinder 71. At the same time, the bottom plate 75 can block the circular opening of the trap housing 1 corresponding to the recovery cylinder 71, realizing hidden storage, avoiding the situation that a large amount of impurities are easily adhered to the trap housing 1 during filtration in the trap housing 1, protecting it and avoiding affecting subsequent use.
[0042] The control methods and connection methods of the electronic devices and component structures in the present invention belong to the well-known common knowledge in the field, and their working principles are already well-known technologies. In addition, the models are selected according to actual use. Therefore, no detailed explanation will be given.
[0043] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent wastewater resin trap, comprising a trap housing (1), characterized in that: A liquid inlet pipe (2) is fixedly arranged on the upper side of the trap housing (1), a liquid outlet pipe (3) is fixedly arranged on the bottom of the trap housing (1), an upper cover (4) is fixedly arranged on the upper end of the trap housing (1), an intelligent control box (5) is fixedly arranged on the front end of the upper cover (4), a filter screen (6) is arranged on the inner side of the trap housing (1), cleaning components (7) are respectively arranged on both sides of the trap housing (1) and the upper cover (4) near the filter screen (6), a driving component (8) is arranged on the inner side of the upper cover (4), and the cleaning component (7) comprises a recovery cylinder (71) fixedly arranged on the upper end of the trap housing (1) near the inner side of the upper cover (4), a fixing ring (72) is fixedly arranged on the upper inner wall of the recovery cylinder (71), a bearing (73) is fixedly arranged on the inner side of the fixing ring (72), a cleaning brush sleeve (74) is fixedly arranged on the inner side of the bearing (73), and a cleaning brush sleeve (74) is fixedly arranged on the lower end of the cleaning brush sleeve (74). A bottom plate (75) is provided, a bevel gear (76) is fixedly provided at the lower end of the bottom plate (75), a round rod (77) is provided inside the cleaning brush sleeve (74), a threaded portion (78) is provided at the upper side of the round rod (77), two groups of limit rings (79) are fixedly provided at the lower side of the round rod (77), a guide portion (710) is fixedly provided on the outer side of the round rod (77), a reciprocating guide groove (711) is provided on the outer side of the guide portion (710), and the guide portion (710) is provided with a plurality of guide grooves (711) on the outer side thereof. A collar (712) is sleeved on the outside of the catcher housing (710), a guide shaft (713) is fixedly arranged on the inner wall of the collar (712), four groups of connecting rods (714) are fixedly arranged between the outside of the collar (712) and the inner wall of the cleaning brush sleeve (74), a bevel gear 2 (715) is fixedly arranged at the bottom of the inner side of the catcher housing (1) near the outside of the filter screen (6), and a positioning ring (716) is fixedly arranged at the outside of the filter screen (6) near the bevel gear 2 (715).
2. The intelligent wastewater resin trap according to claim 1, characterized in that: The driving assembly (8) comprises two groups of fixed rods (81) fixedly arranged at the upper ends of the two groups of round rods (77), the two groups of fixed rods (81) and both sides of the two groups of round rods (77) are provided with sliding grooves (82), the outer sides of the two groups of fixed rods (81) are sleeved with threaded sleeves (83), the outer sides of the two groups of threaded sleeves (83) are sleeved with fixed sleeves (84), the outer sides of the two groups of fixed sleeves (84) are rotatably provided with synchronous wheels (85), and the two groups of catcher housings are provided with a plurality of fixed sleeves (85). (1) A motor (86) is fixedly arranged at the upper end near the inner side of the upper cover (4), a second synchronous wheel (87) is fixedly arranged on the upper rotating shaft of the motor (86), and a synchronous belt (88) is sleeved on the outer sides of the second synchronous wheel (87) and the two sets of first synchronous wheels (85), and movable openings (89) are opened on the upper side of the upper cover (4) at positions corresponding to the two sets of fixed rods (81), and sliders (810) are fixedly arranged on the inner walls of the two sets of movable openings (89) at positions corresponding to the slide grooves (82).
3. The intelligent wastewater resin trap according to claim 2 is characterized in that: A cleaning pipe (9) is fixedly arranged near one side of the lower end of the trap housing (1), and a drainage pipe (10) is fixedly arranged near the other side of the lower end of the trap housing (1). An electric control valve (11) is fixedly installed on both the cleaning pipe (9) and the drainage pipe (10). A collection water tank (12) is fixedly arranged at one end of the drainage pipe (10), and a sewage pump (13) is fixedly installed on the drainage pipe (10).
4. The intelligent wastewater resin trap according to claim 1, characterized in that: The upper end of the trap housing (1) is provided with circular openings corresponding to the positions of the two groups of cleaning brush sleeves (74), and the circular openings are sufficient for the cleaning brush sleeves (74) to pass through. The intelligent control box (5) can be remotely controlled wirelessly. The filter (6) is arranged to fit the inner side of the second bevel gear (715) and the bottom is in a hollow state. The cleaning brush sleeve (74) is in a stretched and unfolded state. The cleaning brush sleeve (74) is an elastic memory corrugated structure, and the bristles arranged on the surface of the cleaning brush sleeve (74) are pig bristles.
5. The intelligent wastewater resin trap according to claim 1, characterized in that: The bottom plate (75) can block the circular opening on the upper side of the trap housing (1); the bevel gear 1 (76) and the positioning ring (716) are meshed; the lower side of the round rod (77) passes through the bottom plate (75) and the inside of the bevel gear 1 (76); two groups of limit rings (79) are located on the upper and lower sides of the bottom plate (75) and the bevel gear 1 (76); and the guide shaft (713) is movably arranged on the inner side of the reciprocating guide groove (711).
6. The intelligent wastewater resin trap according to claim 2, characterized in that: The fixing rod (81) passes through the inner side of the movable opening (89), the threaded sleeve (83) is matched with the threaded portion (78), and the threaded sleeve (83) is fixedly mounted with the synchronous wheel (85).
7. The intelligent wastewater resin trap according to claim 2, characterized in that: The fixing sleeve (84) is fixedly arranged with the recovery cylinder (71); the lower rotating shaft of the motor (86) passes through the upper end of the trap housing (1) and is fixedly connected with the filter screen (6); the motor (86) is electrically connected with the intelligent control box (5); and the slider (810) is meshed with the two sets of slide grooves (82).
8. The intelligent wastewater resin trap according to claim 3 is characterized by: The upper side of the cleaning pipe (9) corresponds to the inner side of the filter screen (6), the drainage pipe (10) corresponds to the position between the inner wall of the trap housing (1) and the filter screen (6), and the electric control valve (11), the sewage pump (13) and the upper cover (4) are electrically connected.
Citation Information
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