Recycling and cleaning equipment for building templates

By designing a building formwork recycling and cleaning equipment with rotary clamping frame and high-pressure nozzle, the problem that existing equipment cannot clean both sides of the formwork at the same time is solved, and efficient and simultaneous cleaning of both sides is achieved, reducing the risk of cleaning water flowing to the work area, and improving the overall cleaning efficiency and water resource recycling rate.

CN120119799AInactive Publication Date: 2025-06-10NANTONG INST OF TECH
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202510500997.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing building formwork cleaning equipment cannot clean both sides of the formwork at the same time, and needs to be re-cleaned after flipping, which reduces work efficiency and the cleaning water can easily flow to the work area, increasing the cleaning intensity.

Method used

A recycling and cleaning equipment for building formwork is designed, using a recycling and cleaning box, which is equipped with a cleaning chamber, a water collection chamber and a filter chamber. The central clamping of the formwork is achieved through an electric telescopic rod and an anti-slip fixed plate. Combined with the drive motor and belt transmission, the square tube drives the clamping frame to rotate, and high-pressure flushing is achieved through the water pump and high-pressure nozzle. The reciprocating movement of the mounting sleeve and the flow guide sleeve are used to enhance the flushing effect, and both sides are cleaned through the scraper.

Benefits of technology

It realizes efficient cleaning of both sides of the building formwork at the same time, reduces the flip steps during the cleaning process, avoids the problem of cleaning water flowing to the work area, and improves the cleaning efficiency and the recycling rate of water resources.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120119799A_ABST
    Figure CN120119799A_ABST
Patent Text Reader

Abstract

The invention relates to recycling and cleaning equipment for building formworks, and belongs to the technical field of building formwork cleaning, the recycling and cleaning equipment comprises a recycling and cleaning box, a cleaning cavity and a water collecting cavity are arranged at the two ends of the interior of the recycling and cleaning box respectively, a filtering cavity is arranged in the recycling and cleaning box, and the filtering cavity is communicated with the interior of the water collecting cavity. According to the device, building templates are clamped in the middle, high-pressure nozzles conduct high-pressure flushing on the two faces of the building templates, under the sliding connection action of guide grooves and guide blocks, mounting sleeves drive flow guide sleeves to integrally conduct reciprocating motion on the outer sides of clamping frames, the overall high-pressure flushing effect is enhanced, and under the elastic action of springs, the flow guide sleeves are driven by the mounting sleeves to integrally conduct reciprocating motion on the outer sides of the clamping frames; the two faces of the building formwork are further cleaned through cooperation with the scraper B, the overall cleaning effect is effectively improved, the clamping frame rotates in the whole process, sewage generated by flushing can be thrown out, it is avoided that a large amount of cleaning water is attached to the outer surface of the building formwork when the building formwork is cleaned and taken out, and the recycling rate of follow-up water resources of the building formwork is increased.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of building formwork cleaning, and particularly to a recycling and cleaning device for building formwork. Background Art

[0002] A building formwork is a temporary support structure, which is made according to the design requirements to form concrete structures and components in accordance with the specified positions and geometric dimensions, maintain their correct positions, and bear the self-weight of the building formwork and the external loads acting on it. The purpose of formwork engineering is to ensure the quality and construction safety of concrete projects, accelerate the construction progress, and reduce the project cost; Chinese Patent Authorization Publication No. CN115026045A discloses a building formwork cleaning device, including a cleaning workbench, a positioning clamping mechanism, a scraping cleaning mechanism, a lifting anti-splash mechanism, a reciprocating area-increasing mechanism, and a recycling cleaning mechanism. A positioning clamping mechanism is connected to the cleaning workbench for fixing the building formwork, and a scraping cleaning mechanism is provided on the cleaning workbench for cleaning the building formwork. Among them, the scraping cleaning mechanism includes a first motor, a pressure chamber is connected to the first motor, a brush and a flushing pipe are connected to the pressure chamber, and a plurality of uniformly distributed scraping knives are connected to the flushing pipe. Through the setting of corresponding mechanisms on the building formwork cleaning device, the present invention reduces the participation of manual labor, not only improves the cleaning effect, but also reduces the impact on subsequent use, while reducing the waste of time, reducing the workload of workers, improving the cleaning efficiency, and at the same time reducing the project cost; the above-mentioned existing technical solutions have the following deficiencies: this cleaning device realizes the single-sided cleaning of the building formwork, but the other side cannot be cleaned synchronously. It is necessary for the staff to flip the building formwork after single-sided cleaning and re-perform the cleaning steps. This operation not only reduces the overall work efficiency, but also the cleaning water remaining on the outer side of the building formwork will flow to the work area, increasing the cleaning intensity of the staff. Therefore, there is a certain room for improvement. Summary of the Invention

[0003] The purpose of the present invention is to provide a recycling and cleaning device for building formwork to solve the problems in the above background art that the cleaning device only performs single-sided cleaning and needs to be flipped and re-cleaned, which not only reduces the overall work efficiency, but also the cleaning water remaining on the outer side of the building formwork will flow to the work area.

[0004] To achieve the above object, the present invention provides the following technical solution: A recycling and cleaning device for building templates, including a recycling and cleaning box. At both ends inside the recycling and cleaning box, a cleaning chamber and a water collecting chamber are respectively arranged. A filtering chamber is arranged inside the recycling and cleaning box, and the filtering chamber is communicated with the inside of the water collecting chamber. A filtering seat is slidably connected inside the filtering chamber. One end of the recycling and cleaning box is provided with a water pump. The water outlet of the water pump is connected to a water outlet pipe, and the water inlet of the water pump is communicated with the inside of the water collecting chamber. A connecting groove A is arranged inside the recycling and cleaning box. The connecting groove A is located on one side of the cleaning chamber. A material receiving wire frame is slidably connected inside the connecting groove A. A square pipe is rotatably connected inside the recycling and cleaning box. The end of the water outlet pipe away from the water pump is rotatably connected to the inside of the square pipe. The material receiving wire frame passes through the inside of the recycling and cleaning box, and the water outlet pipe extends into the inside of the square pipe. Connecting hoses are arranged on the upper surface of the square pipe. Clamping frames are fixed on both sides of the square pipe. Installation sleeves are sleeved on the outside of the two clamping frames. Flow guiding sleeves are fixed at both ends of the two installation sleeves. High-pressure nozzles are arranged on one side of the two flow guiding sleeves away from the square pipe. The inside of the square pipe is communicated with the inside of the flow guiding sleeve through the connecting hose. Guide blocks are fixed at both ends of the installation sleeve. Guide grooves are arranged on the inner wall of the recycling and cleaning box, and the guide grooves are slidably connected with the guide blocks. A driving motor is arranged at one end of the recycling and cleaning box away from the water pump. The output shaft of the driving motor is fixed with a connecting shaft A. An installation groove is arranged inside the recycling and cleaning box. A connecting shaft B is rotatably connected inside the installation groove. The other end of the connecting shaft B is fixed to the square pipe. The outside of the connecting shaft B and the connecting shaft A are connected by a belt drive. The connecting shaft A extends into the inside of the installation groove.

[0005] Preferably, electric telescopic rods are arranged on both sides of the inner walls of the two clamping frames. The telescopic ends of the two electric telescopic rods are fixed with anti-slip fixing plates. Both sides of the anti-slip fixing plates are slidably connected with the inner walls of the clamping frames. Scraping plates A are fixed on one side of the clamping frames away from the square pipe.

[0006] Preferably, the thickness of the clamping frame is greater than the thickness of the anti-slip fixing plate. The thickness of the anti-slip fixing plate is less than the thickness of the building template body. The cross-section of the cleaning chamber is U-shaped, and the lower surface of the cleaning chamber is semicircular. The distance from the square pipe to the scraping plate A is equal to the distance from the lower surface of the square pipe to the bottom of the cleaning chamber.

[0007] Preferably, the cross-section of the guide groove is oval, the cross-section of the guide block is circular, the side of the installation sleeve is in a shape of a double square frame, and the inner wall of the installation sleeve fits with the outside of the clamping frame.

[0008] Preferably, sliding grooves A and a filtering groove are respectively arranged at both ends inside the filtering seat. The filtering groove is located above the sliding groove A. An activated carbon filter plate is slidably connected inside the sliding groove A. A filter screen is snap-connected inside the sliding groove A. A cleaning plate is rotatably connected to the upper surface of the filter screen. An installation ring is rotatably connected to the upper surface of the cleaning plate. A driven gear A is fixed to the outer surface of the installation ring. One end of the filtering seat close to the installation groove is provided with a connecting groove B. The connecting groove B is communicated with the inside of the installation groove. A rotating rod is rotatably connected inside the installation groove. A bevel gear B is fixed to the outer surface of the rotating rod. Two groups of driving gears are fixed to the outer surface of the rotating rod. A bevel gear A is fixed to the outer surface of the connecting shaft A. The bevel gear A is meshed with the bevel gear B. The lower driving gear is meshed with the driven gear A. The driving gear extends into the connecting groove B.

[0009] Preferably, the cross-section of the cleaning plate is arranged in a W shape. The lower surface of the cleaning plate is attached to the upper surface of the filter screen. Both sides of the cleaning plate are attached to the inner wall of the filtering groove.

[0010] Preferably, a circulation port is arranged inside the recycling and cleaning box. A rotating groove is arranged on the inner wall of the circulation port. The cleaning cavity and the water collecting cavity are communicated through the circulation port. A driven gear C is arranged inside the circulation port. A scraping plate C is fixed to the outside of the driven gear C. The scraping plate C is rotatably connected to the rotating groove. A receiving groove is arranged inside the recycling and cleaning box. A driven gear B is rotatably connected inside the receiving groove. The driven gear B is meshed with the scraping plate C. The receiving groove is communicated with the inside of the installation groove. The driven gear B is meshed with the upper driving gear. The driven gear B is located between the driven gear C and the driving gear.

[0011] Preferably, a spring is arranged at one end of the installation sleeve far from the clamping frame. An extrusion plate is fixed to one end of the spring close to the square tube. A connecting rod is fixed to the end of the extrusion plate far from the spring. A scraping plate B is fixed to the end of the connecting rod far from the extrusion plate. The scraping plate B is closely attached to both ends of the clamping frame.

[0012] Preferably, the extrusion plate is closely attached to the inner wall of the installation sleeve. The spring is always in a compressed state. The cross-section of the scraping plate B is arranged in a triangle shape.

[0013] Preferably, a diversion groove is arranged inside the recycling and cleaning box. The connecting groove A is arranged in an inclined shape. One side of the connecting groove A close to the cleaning cavity is lower than the other side. The connecting groove A and the water collecting cavity are communicated with the inside of the filtering cavity through the diversion groove.

[0014] Compared with the prior art, the beneficial effects of the present invention are: The centering clamping of the construction formwork is realized through the electric telescopic rod and the anti-slip fixing plate. Under the driving action of the driving motor and the belt, the square pipe drives the whole clamping frame to rotate. Through the cooperation of the water pump with the water outlet pipe, the square pipe, the connecting hose and the diversion sleeve, and finally through the high-pressure nozzle, the construction formwork is subjected to high-pressure flushing. Under the sliding connection action of the guide groove and the guide block, and with the cross-section of the guide groove being elliptical, the installation sleeve drives the whole diversion sleeve to make a reciprocating motion on the outside of the clamping frame, enhancing the overall high-pressure flushing effect. During the reciprocating motion of the installation sleeve, under the elastic action of the spring, the cleaning effect of the two sides of the construction formwork is further enhanced by the scraper B, effectively improving the overall cleaning effect. Since the square pipe, the clamping frame and the installation sleeve are rotating during the whole process, the sewage generated by the flushing can be thrown out, avoiding a large amount of cleaning water adhering to the outer surface when the construction formwork is cleaned and taken out, and improving the recycling utilization rate of the subsequent water resources of the construction formwork. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0016] Figure 1 It is a three-dimensional structural schematic diagram of the recycling and cleaning box of the present invention; Figure 2 It is a three-dimensional structural schematic diagram of the front cross-section of the recycling and cleaning box of the present invention; Figure 3 It is a three-dimensional distribution structural schematic diagram of the clamping frame of the present invention; Figure 4 It is a three-dimensional distribution structural schematic diagram of the front cross-section of the installation sleeve of the present invention; Figure 5 It is a three-dimensional distribution structural schematic diagram of the scraper B of the present invention; Figure 6 It is a three-dimensional structural schematic diagram of the front cross-section of the filter seat of the present invention; Figure 7 It is a three-dimensional distribution structural schematic diagram of the driving motor of the present invention; Figure 8 It is a three-dimensional distribution structural schematic diagram of the cleaning plate of the present invention.

[0017] Description of the reference numerals in the figures: 1. Recycling and cleaning tank; 11. Cleaning chamber; 111. Guide groove; 12. Water collecting chamber; 121. Filtering chamber; 13. Connecting groove A; 131. Diversion groove; 2. Filter seat; 21. Slide groove A; 211. Activated carbon filter plate; 22. Filtering groove; 221. Filter screen; 222. Cleaning plate; 223. Mounting ring; 224. Driven gear A; 23. Connecting groove B; 3. Water pump; 31. Water outlet pipe; 4. Material receiving wire frame; 5. Square pipe; 51. Connecting hose; 52. Diversion sleeve; 53. High-pressure nozzle; 6. Clamping frame; 61. Electric telescopic rod; 62. Anti-slip fixing plate; 63. Scraper A; 7. Mounting sleeve; 71. Guide block; 72. Spring; 73. Extrusion plate; 74. Connecting rod; 75. Scraper B; 8. Driving motor; 81. Connecting shaft A; 811. Bevel gear A; 82. Connecting shaft B; 83. Belt; 84. Rotating rod; 841. Bevel gear B; 842. Driving gear; 85. Driven gear B; 9. Driven gear C; 91. Scraper C. Detailed implementation manners

[0018] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0019] Embodiment 1 In order to solve the problem that the existing cleaning equipment in the prior art performs one-sided cleaning and needs to be flipped and the cleaning steps are performed again, the following solution is disclosed. Specifically, as Figures 1 - 7 shown: A recycling and cleaning device for building templates comprises a recycling and cleaning box 1, wherein a cleaning chamber 11 and a water collecting chamber 12 are respectively arranged at two ends inside the recycling and cleaning box 1, a filter chamber 121 is arranged inside the recycling and cleaning box 1, the filter chamber 121 is connected with the inside of the water collecting chamber 12, a filter seat 2 is slidably connected inside the filter chamber 121, a water pump 3 is arranged at one end of the recycling and cleaning box 1, a water outlet of the water pump 3 is connected with a water outlet pipe 31, a water inlet of the water pump 3 is connected with the inside of the water collecting chamber 12, a connecting groove A13 is arranged inside the recycling and cleaning box 1, the connecting groove A13 is located on one side of the cleaning chamber 11, a material collecting net frame 4 is slidably connected inside the connecting groove A13, a square tube 5 is rotatably connected inside the recycling and cleaning box 1, an end of the water outlet pipe 31 away from the water pump 3 is rotatably connected with the inside of the square tube 5, the material collecting net frame 4 passes through the inside of the recycling and cleaning box 1, the water outlet pipe 31 extends to the inside of the square tube 5, and the upper surface of the square tube 5 is provided with a connecting groove A13. A connecting hose 51 is provided, and clamping frames 6 are fixed on both sides of the square tube 5. The outer sides of the two groups of clamping frames 6 are sleeved with mounting sleeves 7. Guide sleeves 52 are fixed on both ends of the two groups of mounting sleeves 7. High-pressure nozzles 53 are provided on the side of the two groups of guide sleeves 52 away from the square tube 5. The interior of the square tube 5 is connected with the interior of the guide sleeve 52 through the connecting hose 51. Guide blocks 71 are fixed on both ends of the mounting sleeve 7. Guide grooves 111 are provided on the inner wall of the recovery and cleaning box 1. The guide grooves 111 are slidably connected with the guide blocks 71. A driving motor 8 is provided at one end of the recovery and cleaning box 1 away from the water pump 3. A connecting shaft A81 is fixed on the output shaft of the driving motor 8. A mounting groove is provided inside the recovery and cleaning box 1. A connecting shaft B82 is rotatably connected inside the mounting groove. The other end of the connecting shaft B82 is fixedly connected to the square tube 5. The connecting shaft B82 is connected to the outer side of the connecting shaft A81 through a belt 83. The connecting shaft A81 extends to the inside of the mounting groove.

[0020] On both sides of the inner walls of the two sets of clamping frames 6, electric telescopic rods 61 are provided. Fixed to the telescopic ends of the two sets of electric telescopic rods 61 are anti-slip fixing plates 62. Both sides of the anti-slip fixing plates 62 are slidably connected to the inner walls of the clamping frames 6. Fixed to the sides of the clamping frames 6 away from the square tube 5 are scraping plates A63. The thickness of the clamping frames 6 is greater than the thickness of the anti-slip fixing plates 62, and the thickness of the anti-slip fixing plates 62 is less than the thickness of the building formwork body. The cross-section of the cleaning chamber 11 is U-shaped, and the lower surface of the cleaning chamber 11 is semicircular. The distance from the square tube 5 to the scraping plate A63 is equal to the distance from the lower surface of the square tube 5 to the bottom of the cleaning chamber 11. The cross-section of the guiding groove 111 is oval, and the cross-section of the guiding block 71 is circular. The side of the mounting sleeve 7 is in a shape like a Chinese character 'hui'. The inner wall of the mounting sleeve 7 fits against the outside of the clamping frame 6. At one end of the mounting sleeve 7 away from the clamping frame 6 inside, a spring 72 is provided. Fixed to the end of the spring 72 close to the square tube 5 is a pressing plate 73. Fixed to the end of the connecting rod 74 away from the pressing plate 73 is a scraping plate B75. The scraping plate B75 is in close contact with both ends of the clamping frame 6. The pressing plate 73 is in close contact with the inner wall of the mounting sleeve 7. The spring 72 is always in a compressed state. The cross-section of the scraping plate B75 is triangular.

[0021] In this embodiment, when it is necessary to clean the building formwork, by placing the building formwork inside the clamping frame 6, and by simultaneously starting the electric telescopic rods 61, the two anti-slip fixing plates 62 move towards each other to centrally clamp the building formwork. By starting the driving motor 8, under the driving action of the belt 83, the square tube 5 drives the entire clamping frame 6 to rotate, so that the building formwork rotates around the square tube 5 inside the clamping frame 6. At the same time, start the water pump 3, and the water flow inside the water collecting chamber 12 passes through the water outlet pipe 31, the square tube 5, the connecting hose 51 and the diversion sleeve 52, and finally the building formwork is subjected to high-pressure flushing through the high-pressure nozzle 53. Under the sliding connection action of the guiding groove 111 and the guiding block 71, and in cooperation with the oval cross-section of the guiding groove 111, the mounting sleeve 7 drives the entire diversion sleeve 52 to make a reciprocating motion on the outside of the clamping frame 6, enhancing the overall high-pressure flushing effect. During the reciprocating motion of the mounting sleeve 7, under the elastic action of the spring 72, the scraping plate B75 drives the cleaning components to continuously wipe both sides of the building formwork, further enhancing the cleaning effect and effectively removing stubborn stains. Since the square tube 5, the clamping frame 6 and the mounting sleeve 7 are rotating during the whole process, under the action of the centrifugal force field, the sewage generated during the flushing process is thrown out of the surface of the building formwork, greatly reducing the amount of water remaining on the surface when the formwork is taken out. This not only facilitates the subsequent handling and treatment of the formwork, but also provides convenient conditions for the recycling of water resources.

[0022] Embodiment Two In order to reduce the overall cleaning difficulty, the following solution is disclosed, specifically as follows Figure 2 , Figure 6 , Figure 7 and Figure 8 as shown: At both ends inside the filter seat 2, a chute A21 and a filter slot 22 are respectively arranged. The filter slot 22 is located above the chute A21. An activated carbon filter plate 211 is slidably connected inside the chute A21. A filter net 221 is snap-fitted inside the chute A21. The upper surface of the filter net 221 is rotatably connected to a cleaning plate 222. The upper surface of the cleaning plate 222 is rotatably connected to a mounting ring 223. An idle gear A224 is fixed on the outer surface of the mounting ring 223. One end of the filter seat 2 close to the mounting slot is provided with a connecting slot B23. The connecting slot B23 is communicated with the inside of the mounting slot. A rotating rod 84 is rotatably connected inside the mounting slot. A bevel gear B841 is fixed on the outer surface of the rotating rod 84. Two groups of driving gears 842 are fixed on the outer surface of the rotating rod 84. A bevel gear A811 is fixed on the outer surface of the connecting shaft A81. The bevel gear A811 is meshed with the bevel gear B841. The lower driving gear 842 is meshed with the idle gear A224. The driving gear 842 extends into the connecting slot B23. The cross-section of the cleaning plate 222 is in a W shape. The lower surface of the cleaning plate 222 is in contact with the upper surface of the filter net 221. Both sides of the cleaning plate 222 are in contact with the inner wall of the filter slot 22. A circulation port is arranged inside the recycling and cleaning tank 1. A rotating slot is arranged on the inner wall of the circulation port. The cleaning cavity 11 and the water collecting cavity 12 are communicated through the circulation port. A driven gear C9 is arranged inside the circulation port. A scraping plate C91 is fixed on the outside of the driven gear C9. The scraping plate C91 is rotatably connected to the rotating slot. A receiving slot is arranged inside the recycling and cleaning tank 1. A driven gear B85 is rotatably connected inside the receiving slot. The driven gear B85 is meshed with the scraping plate C91. The receiving slot is communicated with the inside of the mounting slot. The driven gear B85 is meshed with the upper driving gear 842. The driven gear B85 is located between the driven gear C9 and the driving gear 842. A guiding groove 131 is arranged inside the recycling and cleaning tank 1. The connecting slot A13 is arranged in an inclined shape. One side of the connecting slot A13 close to the cleaning cavity 11 is lower than the other side. The connecting slot A13 is communicated with the water collecting cavity 12 through the guiding groove 131 and the inside of the filtering cavity 121.

[0023] In this embodiment, during the rotation of the square pipe 5, the scraper A63 is coordinated to push the sludge and concrete generated on the lower surface of the cleaning chamber 11, and enter the inside of the material collection wire frame 4 through the connecting groove A13 for filtration. The moisture in the sludge and concrete enters the inside of the filtration chamber 121 through the diversion groove 131 for filtration. Under the bonding action of the bevel gear A811 and the bevel gear B841, the rotating rod 84 is driven to rotate. Under the grinding action of the bevel gear B841 and the driven gear A224, the cleaning plate 222 is driven to rotate on the upper surface of the filter screen 221 to prevent the filter screen 221 from being blocked. With the meshing connection of another set of driving gear 842, driven gear B85 and scraper C91, the driven gear C9 is driven to rotate inside the flow port to prevent the flow port from being blocked. The clean water is filtered by the activated carbon filter plate 211 and the filter screen 221, improving the recovery rate of water resources, reducing the overall working intensity of the staff, and making the entire recycling and cleaning equipment more perfect to use.

[0024] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood 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. A recycling and cleaning device for building formwork, characterized in that: The invention comprises a recycling cleaning box, wherein a cleaning chamber and a water collecting chamber are respectively arranged at two ends inside the recycling cleaning box, a filter chamber is arranged inside the recycling cleaning box, the filter chamber is communicated with the inside of the water collecting chamber, a filter seat is slidably connected inside the filter chamber, a water pump is arranged at one end of the recycling cleaning box, a water outlet of the water pump is connected with a water outlet pipe, a water inlet of the water pump is communicated with the inside of the water collecting chamber, a connecting groove A is arranged inside the recycling cleaning box, the connecting groove A is located on one side of the cleaning chamber, a material collecting net frame is slidably connected inside the connecting groove A, a square tube is rotatably connected inside the recycling cleaning box, one end of the water outlet pipe away from the water pump is rotatably connected with the inside of the square tube, the material collecting net frame passes through the inside of the recycling cleaning box, the water outlet pipe extends to the inside of the square tube, a connecting hose is arranged on the upper surface of the square tube, A clamping frame is fixed on both sides of the square tube, and an installation sleeve is sleeved on the outer sides of the two groups of the clamping frames. A guide sleeve is fixed on both ends of the two groups of the installation sleeves. A high-pressure nozzle is provided on the side of the two groups of the guide sleeves away from the square tube. The interior of the square tube is connected with the interior of the guide sleeve through a connecting hose. Guide blocks are fixed on both ends of the installation sleeve. A guide groove is provided on the inner wall of the recovery and cleaning box, and the guide groove is slidably connected to the guide block. A driving motor is provided at one end of the recovery and cleaning box away from the water pump, and a connecting shaft A is fixed to the output shaft of the driving motor. A mounting groove is provided inside the recovery and cleaning box, and a connecting shaft B is rotatably connected inside the mounting groove. The other end of the connecting shaft B is fixedly connected to the square tube, and the connecting shaft B is connected to the outer side of the connecting shaft A through a belt drive, and the connecting shaft A extends to the interior of the mounting groove.

2. The recycling and cleaning equipment for building templates according to claim 1 is characterized in that: Electric telescopic rods are arranged on both sides of the inner walls of the two groups of clamping frames, and anti-skid fixing plates are fixed to the telescopic ends of the two groups of electric telescopic rods. Both sides of the anti-skid fixing plates are slidably connected to the inner walls of the clamping frames, and a scraper A is fixed on the side of the clamping frame away from the square tube.

3. The recycling and cleaning equipment for building templates according to claim 2 is characterized in that: The thickness of the clamping frame is greater than the thickness of the anti-slip fixing plate, the thickness of the anti-slip fixing plate is less than the thickness of the building formwork body, the cross-section of the cleaning cavity is U-shaped, the lower surface of the cleaning cavity is semicircular, and the distance from the square tube to the scraper A is equal to the distance from the lower surface of the square tube to the bottom of the cleaning cavity.

4. The recycling and cleaning equipment for building templates according to claim 2 is characterized in that: The cross section of the guide groove is elliptical, the cross section of the guide block is circular, the side surface of the installation sleeve is in a U-shape, and the inner wall of the installation sleeve is in contact with the outer side of the clamping frame.

5. The recycling and cleaning equipment for building formwork according to claim 1 is characterized in that: A slide groove A and a filter groove are respectively provided at two ends inside the filter seat, and the filter groove is located above the slide groove A. An activated carbon filter plate is slidably connected inside the slide groove A, and a filter net is snap-connected inside the slide groove A. A cleaning plate is rotatably connected to the upper surface of the filter net, and a mounting ring is rotatably connected to the upper surface of the cleaning plate, and a driven tooth A is fixed on the outer surface of the mounting ring. A connecting groove B is provided at one end of the filter seat close to the mounting groove, and the connecting groove B is communicated with the inside of the mounting groove. A rotating rod is rotatably connected inside the mounting groove, and a bevel gear B is fixed on the outer surface of the rotating rod. Two groups of driving teeth are fixed on the outer surface of the rotating rod, and a bevel gear A is fixed on the outer surface of the connecting shaft A. The bevel gear A is meshingly connected with the bevel gear B, and the driving tooth located below is meshingly connected with the driven tooth A, and the driving tooth extends to the inside of the connecting groove B.

6. The recycling and cleaning equipment for building templates according to claim 5 is characterized in that: The cross section of the cleaning plate is arranged in a W shape, the lower surface of the cleaning plate is fitted with the upper surface of the filter screen, and the two sides of the cleaning plate are fitted with the inner wall of the filter tank.

7. The recycling and cleaning equipment for building formwork according to claim 5 is characterized in that: A circulation port is provided inside the recovery and cleaning box, a rotating groove is provided on the inner wall of the circulation port, the cleaning chamber and the water collecting chamber are connected through the circulation port, a driven tooth C is provided inside the circulation port, a scraper C is fixed to the outer side of the driven tooth C, the scraper C is rotatably connected to the rotating groove, a receiving groove is provided inside the recovery and cleaning box, a driven tooth B is rotatably connected inside the receiving groove, the driven tooth B is meshed with the scraper C, the receiving groove is connected to the inside of the mounting groove, the driven tooth B is meshed with the active tooth located above, and the driven tooth B is located between the driven tooth C and the active tooth.

8. The recycling and cleaning equipment for building formwork according to claim 1 is characterized in that: A spring is provided at one end of the mounting sleeve away from the clamping frame, an extrusion plate is fixed to the end of the spring close to the square tube, a connecting rod is fixed to the end of the extrusion plate away from the spring, a scraper B is fixed to the end of the connecting rod away from the extrusion plate, and the scraper B fits tightly with both ends of the square tube.

9. The recycling and cleaning equipment for building formwork according to claim 8 is characterized in that: The extrusion plate is tightly fitted to the inner wall of the mounting sleeve, the spring is always in a compressed state, and the cross-section of the scraper B is arranged to be triangular.

10. The recycling and cleaning equipment for building formwork according to claim 1 is characterized in that: A guide groove is arranged inside the recovery and cleaning box, and the connecting groove A is arranged in an inclined shape. The side of the connecting groove A close to the cleaning chamber is lower than the other side. The connecting groove A and the water collecting chamber are connected with the inside of the filter chamber through the guide groove.

Citation Information

Patent Citations

  • Building template cleaning equipment

    CN115026045A