A small-area wall pouring leak repairer and repair method
By using small-area wall casting loophole repairers, including tempered glass sealing plates and grouting pressure components, the problem of large workload and poor adhesion in the concrete pouring process is solved, and efficient mortar filling and good adhesion are achieved.
Patent Information
- Application Number
- CN202211511626.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-29
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2042-11-29
AI Technical Summary
During the concrete pouring process, the wall is prone to loopholes, and the existing repair methods have a large construction workload and poor adhesion, which is prone to falling off.
A small-area wall casting loophole repairer is adopted, including tempered glass sealing plates, grouting pressure components, adjustment seals and sealing structures. Through the slurry structure and ash cleaning mechanism on the sealing structure, the mortar is fully filled and good adhesion is formed.
Improve the pouring adhesiveness after repair, reduce the repair workload, ensure the adhesion after mortar molding, and avoid falling off.
Smart Images

Figure CN115788097B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a device for repairing concrete pouring holes, specifically to a repairer and a repair method for small-area wall pouring holes, belonging to the technical field of concrete construction. Background Art
[0002] Concrete pouring refers to the process of pouring concrete into a mold until it is plasticized.
[0003] After the formwork for wall pouring is removed, holes are likely to appear. Currently, it is usually carried out by chiseling, roughening, cleaning dust, sealing the formwork, and then pouring again. However, the adhesion with the previously poured concrete after pouring is not good and it is prone to falling off, and the construction workload of the existing technology is relatively large. Therefore, the inventor proposes a repairer for small-area wall pouring holes that can improve the pouring adhesion to solve the above problems. Summary of the Invention
[0004] The purpose of the present invention is to provide a device suitable for repairing small-area wall pouring holes, hoping to improve the pouring adhesion after repair and reduce the repair workload.
[0005] The present invention is specifically implemented as follows:
[0006] A repairer for small-area wall pouring holes includes a toughened glass sealing plate, on which a grouting pressure application component, an adjustment seal and a sealing structure are respectively arranged. A slurry discharge structure is arranged on the sealing structure, and a dust cleaning mechanism connected to the sealing structure is arranged on the grouting pressure application component.
[0007] A further scheme is:
[0008] The grouting pressure application component includes a grouting cylinder connected to the right side of the toughened glass sealing plate. A movable sealing disk is slidably connected inside the grouting cylinder. The diameter of the movable sealing disk is equal to the inner diameter of the grouting cylinder, which is convenient for extruding the mortar inside the grouting cylinder. A threaded support frame is fixedly installed on the right side of the grouting cylinder. An activity seat is fixedly embedded on the right side of the movable sealing disk. A threaded adjustment rod that movably penetrates the grouting cylinder and is threadedly connected to the activity seat is threadedly connected inside the threaded support frame. A threaded groove threadedly adapted to the threaded adjustment rod is opened on the threaded support frame. A grouting connection head is communicated with the top of the grouting cylinder. Limit cylinders are communicated with the top and bottom on the right side of the grouting cylinder. A movable limit rod that movably penetrates the limit cylinder and is fixedly connected to the movable sealing disk is slidably connected inside the limit cylinder.
[0009] A further scheme is:
[0010] The adjusting seal includes a sealing groove formed on the left side of the tempered glass sealing plate, cavities formed at the top and bottom inside the tempered glass sealing plate, and mounting grooves formed at the top and bottom inside the tempered glass sealing plate and communicating with the cavities. A moving disc that slidably connects in the sealing groove and penetrates through to the right side of the tempered glass sealing plate is provided. A plug disc is inserted on the left side of the moving disc. A moving ring is fixedly installed between the right sides of the two moving discs. Moving positioning rods that fixedly install at the top and bottom of the moving ring and penetrate through the tempered glass sealing plate and slidably connect with the cavities are provided. A number of positioning tooth grooves are formed on the outer part of the moving positioning rod. A telescopic spring is fixedly installed in the mounting groove. Positioning insertion rods that are inserted into the positioning tooth grooves are fixedly installed on the opposite surfaces of the two telescopic springs. Pulling ropes that pass through the telescopic springs and penetrate through to the outside of the tempered glass sealing plate are fixedly installed on the opposite sides of the two positioning insertion rods.
[0011] A further solution is:
[0012] The moving disc is in a toroidal shape. A slot corresponding to the insertion of the sealing ring is formed on the left side of the moving disc. The sealing ring is a toroidal rubber. The sealing groove is in a circular ring shape and has the same width as the sealing ring to ensure the sealing effect of the connection and contact between the sealing ring and the tempered glass sealing plate. The positioning tooth grooves are horizontally and equidistantly distributed. The right opening of the positioning tooth groove slopes downward at an angle of 45 degrees. The shape and size of the end of the positioning insertion rod located in the positioning tooth groove match the positioning tooth groove, which is convenient for the positioning insertion rod to move in the positioning tooth groove to avoid obstruction when the moving positioning rod moves to the left.
[0013] A further solution is:
[0014] The sealing structure includes a number of through holes formed at the top and bottom on the right side of the tempered glass sealing plate. Nuts are embedded and fixed in the through holes. Threaded plugging rods are threadedly connected in the nuts. When the moving limit rod is at the leftmost side in the limit cylinder, the left surface of the moving sealing disc is flush with the left surface of the tempered glass sealing plate. When the threaded plugging rod is in a state of being threadedly tightened, the left surface of the threaded plugging rod is flush with the left surface of the tempered glass sealing plate.
[0015] A further solution is:
[0016] The slurry discharging structure includes a pressure relief cylinder threadedly connected to the top nut. A mounting frame is fixedly installed on the outer part of the right side of the pressure relief cylinder. A moving rod located inside the pressure relief cylinder penetrates through the mounting frame movably. A spring that is penetrated by the moving rod and fixedly connected to the moving rod is fixedly installed on the left side of the mounting frame. A sealing disc that contacts the pressure relief cylinder is fixedly installed on the left side of the moving rod. Jack holes are formed on the top, bottom of the mounting frame and on the moving rod. A positioning pin is inserted between the three jack holes. When the positioning pin is located in the jack hole, the left surface of the sealing disc is flush with the left surface of the tempered glass sealing plate.
[0017] A further solution is as follows:
[0018] The dust cleaning mechanism includes a collection cylinder fixedly installed at the bottom of the grouting cylinder. A micro air pump is fixedly installed on the right side of the collection cylinder. An air pipe communicating with the collection cylinder is connected to the air suction port of the micro air pump. A suction pipe is connected to the left side of the collection cylinder, and a threaded connection cylinder corresponding to the threaded connection with the bottom nut is connected to the bottom of the suction pipe.
[0019] A further solution is as follows:
[0020] The slurry discharging structure is convenient for cooperating with the upper perforation for pressure relief and slurry discharging, and the dust cleaning mechanism is convenient for cooperating with the lower perforation for dust removal.
[0021] A further solution is as follows:
[0022] The inner diameter of the nut is equal to the diameter of the perforation, and the threaded plugging rod has the same diameter as the perforation, the pressure relief cylinder and the threaded connection cylinder.
[0023] A further solution is as follows:
[0024] A pull ring is fixedly installed at the top of the pull rope. A switch cover is inserted into the bottom of the collection cylinder. An activated carbon dust-proof net located outside the air pipe is laid inside the collection cylinder. A manual switch valve is connected to the right side of the grouting connection head. Pulling the pull rope drives the positioning plug rod to separate from the positioning tooth groove, and then the moving ring can be pulled to move to adjust the position of the sealing ring.
[0025] The manual switch valve facilitates manually closing the manual switch valve to seal the grouting connection head after the grouting into the grouting cylinder is completed. At the same time, the activated carbon dust-proof net prevents the inhaled dust from entering the air pipe and damaging the micro air pump, and the switch cover is convenient for opening to clean the dust inside the collection cylinder.
[0026] A further solution is as follows:
[0027] The toughened glass sealing plate and the grouting cylinder are both made of transparent glass material, which is convenient for observing the mortar in the wall hole and the grouting cylinder, and avoiding gaps in the mortar filling in the hole.
[0028] The grouting connection head, the movable sealing disc, the threaded support frame, the movable seat, the threaded adjusting rod, the limiting cylinder, the movable limiting rod, the movable disc, the movable ring, the movable positioning rod, the telescopic spring, the positioning plug rod, the nut, the threaded plugging rod, the pressure relief cylinder, the mounting frame, the movable rod, the spring, the positioning pin, the sealing disc, the threaded connection cylinder and the manual switch valve are all made of stainless steel. The sealing ring is a sealing rubber ring. The pull rope is a braided rope. The collection cylinder and the switch cover are both made of hard plastic material. The air pipe and the suction pipe are plastic hoses.
[0029] The present invention also provides a method for repairing small-area wall pouring holes, which specifically includes:
[0030] Use fastening screws to fix the tempered glass sealing plate to the outside of the hole in the wall. Press the moving ring to drive the sealing ring on the moving disc to move synchronously and fit tightly with the wall to ensure the sealing effect. The moving ring moves synchronously to drive the moving positioning rod to move synchronously in the cavity, so that the elastic telescopic action of the matching telescopic spring pushes the positioning plug into the positioning tooth groove on the moving positioning rod to ensure the fixation of the moving positioning rod after movement, thus realizing the fixation of the moving ring and ensuring the sealing effect of the sealing ring;
[0031] The mutual connection between the micro air pump, the air pipe, the collection cylinder, the suction pipe and the threaded connection cylinder enables the threaded connection cylinder to be connected to the nut below and communicate with the perforation while sucking the dust in the hole into the collection cylinder for storage, achieving the effect of environmental protection dust removal, and also avoiding the influence of dust in the hole on the adhesiveness of the later grouting molding;
[0032] The grouting connector connects the grouting pipe to inject mortar into the grouting cylinder. After the grouting cylinder is filled, with the cooperation of the set threaded adjusting rod, it is convenient for the thread to be screwed in. While the threaded adjusting rod rotates on the movable seat, with the cooperation of the limiting cylinder, the movable limiting rod on the movable sealing disc is limited to move, and at the same time, the movable sealing disc is pushed to move to extrude the mortar. Ensure that the mortar can fill the hole. At the same time, when the movable sealing disc cannot move under pressure, through the set positioning pin, it is convenient to pull out the positioning pin from the jack, and at the same time, by continuing to screw in the threaded adjusting rod, the movable sealing disc can be moved to the leftmost side in the grouting cylinder. At the same time, the mortar under pressure squeezes and pushes the sealing disc in the pressure relief cylinder to move and drives the movable rod to move synchronously to compress the spring. Ensure that the sealing disc moves out of the pressure relief cylinder, and the excess mortar is discharged from the pressure relief cylinder. Thus, it is ensured that after the excess mortar is discharged, pressing the movable rod to push the sealing disc to reset and then inserting the pin into the jack can position the movable rod, ensuring the integrity of the mortar filling in the hole, ensuring the adhesiveness of the mortar after molding, and avoiding falling off.
[0033] The small-area wall pouring hole repairer and repair method provided by the present invention, through the set tempered glass sealing plate, facilitate the use of fastening screws to fix the tempered glass sealing plate to the wall, cooperate with the adjusting seal to ensure good sealing of the plugged hole, cooperate with the grouting pressure application component to inject mortar, cooperate with the slurry discharge structure and the sealing structure to ensure the filling effect of the grouting, and at the same time cooperate with the sealing structure and the dust cleaning mechanism to ensure dust cleaning before grouting, ensuring the filling effect of the grouting and the adhesiveness of the grouting molding. Description of the Drawings
[0034] Figure 1 It is a cross-sectional view of a small-area wall pouring hole repairer according to an embodiment of the present invention;
[0035] Figure 2 isFigure 1 Enlarged view at position A in [the figure];
[0036] Figure 3 is Figure 1 Enlarged view at position B in [the figure];
[0037] Figure 4 Partial structural schematic diagram of a small - area wall casting leak repairer according to an embodiment of the present invention;
[0038] Figure 5 Front view of a small - area wall casting leak repairer according to an embodiment of the present invention.
[0039] Wherein: 1 tempered glass sealing plate, 2 grouting cylinder, 3 grouting connector, 4 movable sealing disk, 5 threaded support frame, 6 movable seat, 7 threaded adjusting rod, 8 limiting cylinder, 9 movable limiting rod, 10 sealing groove, 11 cavity, 12 installation groove, 13 movable disk, 14 sealing ring, 15 movable ring, 16 movable positioning rod, 17 positioning tooth groove, 18 telescopic spring, 19 positioning insertion rod, 20 pull rope, 21 perforation, 22 nut, 23 threaded plugging rod, 24 pressure - relief cylinder, 25 mounting bracket, 26 movable rod, 27 spring, 28 jack, 29 positioning pin, 30 sealing disk, 31 collection cylinder, 32 micro - air pump, 33 air pipe, 34 suction pipe, 35 threaded connection cylinder, 36 switch cover, 37 manual switch valve. Detailed implementation manners
[0040] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0041] Embodiment 1
[0042] As shown in the Figures 1-5 accompanying drawings, a small - area wall casting leak repairer in this embodiment includes a tempered glass sealing plate 1. A grouting pressure - applying assembly is provided on the tempered glass sealing plate 1. An adjusting seal member is provided on the tempered glass sealing plate 1. A sealing structure is provided on the tempered glass sealing plate 1. A slurry - discharging structure is provided on the sealing structure. A dust - cleaning mechanism connected to the sealing structure is provided on the grouting pressure - applying assembly.
[0043] The grouting pressure - applying component in this embodiment includes a grouting cylinder 2 connected to the right side of the toughened - glass sealing plate 1. A movable sealing disc 4 is slidably connected inside the grouting cylinder 2. The diameter of the movable sealing disc 4 is equal to the inner diameter of the grouting cylinder 2, which is convenient for extruding the mortar inside the grouting cylinder 2. A threaded support frame 5 is fixedly installed on the right side of the grouting cylinder 2. An activity seat 6 is fixedly embedded on the right side of the movable sealing disc 4. A threaded adjusting rod 7 that movably penetrates the grouting cylinder 2 and is thread - connected to the activity seat 6 is in threaded connection with the threaded support frame 5. A threaded groove that is thread - adapted to the threaded adjusting rod 7 is provided on the threaded support frame 5. A grouting connection head 3 is communicated with the top of the grouting cylinder 2. Limit cylinders 8 are communicated with both the top and the bottom on the right side of the grouting cylinder 2. A movable limit rod 9 that movably penetrates the limit cylinder 8 and is fixedly connected to the movable sealing disc 4 is slidably connected inside the limit cylinder 8.
[0044] Both the toughened - glass sealing plate 1 and the grouting cylinder 2 are made of transparent toughened glass, which is convenient for observing the situation of the mortar inside the wall hole and the grouting cylinder 2, and avoids gaps in the mortar filling in the hole.
[0045] The adjusting and sealing component in this embodiment includes a sealing groove 10 opened on the left side of the toughened - glass sealing plate 1, cavities 11 opened at the top and bottom inside the toughened - glass sealing plate 1, and installation grooves 12 opened at the top and bottom inside the toughened - glass sealing plate 1 and communicated with the cavities 11. A movable disc 13 that movably penetrates to the right side of the toughened - glass sealing plate 1 is slidably connected inside the sealing groove 10. A movable disc 14 is inserted on the left side of the movable disc 13. A movable ring 15 is fixedly installed between the right sides of the two movable discs 13. Movable positioning rods 16 that movably penetrate the toughened - glass sealing plate 1 and are slidably connected to the cavities 11 are fixedly installed at both the top and the bottom of the movable ring 15. A number of positioning tooth grooves 17 are provided on the outer part of the movable positioning rod 16. A telescopic spring 18 is fixedly installed inside the installation groove 12. Positioning insertion rods 19 that are inserted into the positioning tooth grooves 17 are fixedly installed on the opposite surfaces of the two telescopic springs 18. Pulling ropes 20 that pass through the telescopic spring 18 and movably penetrate to the outside of the toughened - glass sealing plate 1 are fixedly installed on the opposite sides of the two positioning insertion rods 19.
[0046] It should be noted that the movable disc 13 is in a ring shape. A slot corresponding to the insertion of the sealing ring 14 is opened on the left side of the movable disc 13. The sealing ring 14 is made of ring - shaped rubber. The sealing groove 10 is in a circular - ring shape and has the same width as the sealing ring 14, ensuring the sealing effect of the connection and contact between the sealing ring 14 and the toughened - glass sealing plate 1. The positioning tooth grooves 17 are horizontally and equidistantly distributed. The right - hand opening of the positioning tooth grooves 17 is inclined downward at an angle of 45 degrees. The shape and size of the end of the positioning insertion rod 19 located inside the positioning tooth groove 17 match the positioning tooth groove 17, which is convenient for the positioning insertion rod 19 to move inside the positioning tooth groove 17 to avoid obstruction when the movable positioning rod 16 moves to the left.
[0047] The sealing structure in this embodiment includes a number of perforations 21 opened at the top and bottom on the right side of the tempered glass sealing plate 1. Nuts 22 are embedded and fixed in the perforations 21. A threaded plugging rod 23 is threadedly connected in the nuts 22. When the moving limit rod 9 is at the leftmost side in the limit cylinder 8, the left surface of the moving sealing disc 4 is flush with the left surface of the tempered glass sealing plate 1. When the threaded plugging rod 23 is in a thread-tightening state, the left surface of the threaded plugging rod 23 is flush with the left surface of the tempered glass sealing plate 1.
[0048] Among them, the slurry discharge structure is convenient for cooperating with the upper perforations 21 for pressure relief and slurry discharge, and the dust cleaning mechanism is convenient for cooperating with the lower perforations 21 for dust removal.
[0049] Among them, the slurry discharge structure includes a pressure relief cylinder 24 threadedly connected to the top nut 22. An installation frame 25 is fixedly installed on the outer side of the right side of the pressure relief cylinder 24. A moving rod 26 located in the pressure relief cylinder 24 movably penetrates through the installation frame 25. A spring 27 that is penetrated by the moving rod 26 and fixedly connected to the moving rod 26 is fixedly installed on the left side of the installation frame 25. A sealing disc 30 that contacts the pressure relief cylinder 24 is fixedly installed on the left side of the moving rod 26. Jack holes 28 are opened on the top and bottom of the installation frame 25 and on the moving rod 26. A positioning pin 29 is inserted between the three jack holes 28. When the positioning pin 29 is located in the jack hole 28, the left surface of the sealing disc 30 is flush with the left surface of the tempered glass sealing plate 1.
[0050] In addition, the dust cleaning mechanism includes a collection cylinder 31 fixedly installed at the bottom of the grouting cylinder 2. A micro air pump 32 is fixedly installed on the right side of the collection cylinder 31. An air pipe 33 communicating with the collection cylinder 31 is connected to the air extraction port of the micro air pump 32. The left side of the collection cylinder 31 is communicated with a suction pipe 34. The bottom of the suction pipe 34 is communicated with a threaded connection cylinder 35 corresponding to being threadedly connected to the bottom nut 22.
[0051] It should be noted that the inner diameter of the nut 22 is equal to the diameter of the perforation 21, and the threaded plugging rod 23 has the same diameter as the perforation 21, the pressure relief cylinder 24, and the threaded connection cylinder 35.
[0052] A pull ring is fixedly installed at the top of the pull rope 20. A switch cover 36 is inserted at the bottom of the collection cylinder 31. An activated carbon dust-proof net located outside the air pipe 33 is laid on the inner side of the collection cylinder 31. A manual switch valve 37 is communicated with the right side of the grouting connection head 3. Pulling the pull rope 20 to drive the positioning rod 19 to separate from the positioning tooth groove 17 can pull the moving ring 15 to move and adjust the position of the sealing ring 14.
[0053] The manual switch valve 37 facilitates manually closing the manual switch valve 37 after grouting into the grouting cylinder 2 to seal the grouting connector 3. At the same time, the activated carbon dust-proof net prevents the inhaled dust from entering the air pipe 33 and damaging the micro air pump 32. The switch cover 36 is convenient for opening to clean the dust inside the collection cylinder 31.
[0054] The tempered glass sealing plate 1 and the grouting cylinder 2 are both made of transparent glass. The grouting connector 3, the movable sealing disk 4, the threaded support frame 5, the movable seat 6, the threaded adjusting rod 7, the limiting cylinder 8, the movable limiting rod 9, the movable disk 13, the movable ring 15, the movable positioning rod 16, the telescopic spring 18, the positioning plug rod 19, the nut 22, the threaded plugging rod 23, the pressure relief cylinder 24, the mounting bracket 25, the movable rod 26, the spring 27, the positioning pin 29, the sealing disk 30, the threaded connecting cylinder 35 and the manual switch valve 37 are all made of stainless steel. The sealing ring 14 is a sealing rubber ring. The pull rope 20 is a braided rope. The collection cylinder 31 and the switch cover 26 are both made of hard plastic. The air pipe 33 and the suction pipe 34 are plastic hoses.
[0055] Embodiment 2
[0056] This embodiment provides a method for repairing small-area wall pouring holes, mainly using a small-area wall pouring hole repairer of Embodiment 1, where:
[0057] By providing the tempered glass sealing plate 1, it is convenient to fix the tempered glass sealing plate 1 to the outside of the hole on the wall using fastening screws. At the same time, with the provided movable ring 15, it is convenient to press the movable ring 15 to drive the sealing ring 14 on the movable disk 13 to move synchronously and fit tightly with the wall to ensure the sealing effect. While the movable ring 15 moves, it synchronously drives the movable positioning rod 16 to move synchronously in the cavity 11, so that with the elastic telescopic action of the telescopic spring 18, the positioning plug rod 19 is inserted into the positioning tooth groove 17 on the movable positioning rod 16 to ensure the fixation of the movable positioning rod 16 after movement, thereby realizing the fixation of the movable ring 15 and ensuring the sealing effect of the sealing ring 14.
[0058] In addition, by providing the micro air pump 32, it is convenient for the micro air pump 32 to pump air. At the same time, with the mutual connection between the micro air pump 32, the air pipe 33, the collection cylinder 31, the suction pipe 34 and the threaded connecting cylinder 35, when the threaded connecting cylinder 35 is connected to the nut 22 below and the through holes 21 are connected, the dust in the holes is sucked into the collection cylinder 31 for storage, achieving the effect of environmental protection and dust removal. At the same time, it also avoids the existence of dust in the holes affecting the adhesion of the later grouting molding (it should be noted that the setting of multiple through holes 21 below facilitates the installation of the threaded connecting cylinder 35 in the corresponding through holes 21 connected to the holes, ensuring that the dust inside the holes can be sucked out).
[0059] Meanwhile, the grouting connector 3 is arranged in cooperation, so that while the grouting connector 3 is convenient to connect the grouting pipe to inject mortar into the grouting cylinder 2, the mortar is filled into the wall hole. At the same time, after the grouting cylinder 2 is filled, the threaded adjusting rod 7 is arranged in cooperation, so that while it is convenient for the threaded adjusting rod 7 to rotate on the movable seat 6 by screwing in, and while the limiting cylinder 8 limits the movement of the movable limiting rod 9 on the movable sealing disc 4, the movable sealing disc 4 is pushed to move to extrude the mortar, ensuring that the mortar can fill the hole. At the same time, when the movable sealing disc 4 cannot move under pressure, through the arranged positioning pin 29, it is convenient to pull out the positioning pin 29 from the jack 28, and at the same time, by continuously screwing in the threaded adjusting rod 7, the movable sealing disc 4 can be moved to the leftmost side in the grouting cylinder 2. At this time, the mortar under pressure extrudes and pushes the sealing disc 30 in the pressure relief cylinder 24 to move, driving the movable rod 26 to move synchronously to compress the spring 27, ensuring that the sealing disc 30 moves out of the pressure relief cylinder 24, and the excess mortar is discharged from the pressure relief cylinder 24. Thus, after the excess mortar is discharged, by pressing the movable rod 26 to push the sealing disc 30 to reset, the movable rod 26 can be positioned by inserting the pin 29 into the jack 28, ensuring the integrity of the mortar filling in the hole (it should be noted that the arrangement of multiple perforations 21 above is convenient to install the pressure relief cylinder 24 in the uppermost perforation 21 corresponding to the connection of the hole according to the position of the hole, so that the excess mortar filled in the hole can be discharged from the topmost position, ensuring the mortar filling effect), ensuring the adhesiveness of the mortar after forming and avoiding falling off.
[0060] Although the present invention has been described herein with reference to its exemplary embodiments, the above embodiments are only the preferred embodiments of the present invention, and the embodiments of the present invention are not limited by the above embodiments. It should be understood that those skilled in the art can design many other modifications and embodiments, which will fall within the scope and spirit of the principles disclosed in this application.
Claims
1. A small-area wall pouring leak repairer, characterized in that: It includes a toughened glass sealing plate, on which a grouting pressure application component, an adjusting seal and a sealing structure are respectively arranged. A slurry discharge structure is arranged on the sealing structure, and a dust cleaning mechanism connected to the sealing structure is arranged on the grouting pressure application component; The grouting pressure application component includes a grouting cylinder communicated with the right side of the toughened glass sealing plate. A movable sealing disc is slidably connected inside the grouting cylinder. The diameter of the movable sealing disc is equal to the inner diameter of the grouting cylinder, which is convenient for extruding the mortar inside the grouting cylinder. A threaded support frame is fixedly installed on the right side of the grouting cylinder. A movable seat is fixedly embedded on the right side of the movable sealing disc. A threaded adjusting rod that movably penetrates through the grouting cylinder and is threadedly connected to the movable seat is threadedly connected inside the threaded support frame. A threaded groove threadedly adapted to the threaded adjusting rod is opened on the threaded support frame. A grouting connection head is communicated with the top of the grouting cylinder. The top and bottom of the right side of the grouting cylinder are both communicated with a limiting cylinder. A movable limiting rod that movably penetrates through the limiting cylinder and is fixedly connected to the movable sealing disc is slidably connected inside the limiting cylinder; The adjusting seal includes a sealing groove opened on the left side of the toughened glass sealing plate, cavities opened at the top and bottom inside the toughened glass sealing plate, and installation grooves opened at the top and bottom inside the toughened glass sealing plate and communicated with the cavities. A movable disc that movably penetrates to the right side of the toughened glass sealing plate is slidably connected inside the sealing groove. A movable disc is inserted on the left side of the movable disc. A movable ring is fixedly installed between the right sides of the two movable discs. Movable positioning rods that movably penetrate through the toughened glass sealing plate and are slidably connected to the cavities are fixedly installed at the top and bottom of the movable ring. A number of positioning tooth grooves are opened on the outer part of the movable positioning rod. A telescopic spring is fixedly installed inside the installation groove. Positioning insertion rods inserted into the positioning tooth grooves are fixedly installed on the opposite surfaces of the two telescopic springs. Pulling ropes that pass through the telescopic spring and movably penetrate to the outside of the toughened glass sealing plate are fixedly installed on the opposite surfaces of the two positioning insertion rods; The sealing structure includes a number of through holes opened at the top and bottom on the right side of the toughened glass sealing plate. Nuts are fixedly embedded inside the through holes. Threaded plugging rods are threadedly connected inside the nuts. When the movable limiting rod is at the leftmost position inside the limiting cylinder, the left surface of the movable sealing disc is flush with the left surface of the toughened glass sealing plate. When the threaded plugging rod is in a state of being threadedly tightened, the left surface of the threaded plugging rod is flush with the left surface of the toughened glass sealing plate; The slurry discharge structure includes a pressure relief cylinder threadedly connected to the top nut. An installation frame is fixedly installed on the outer part of the right side of the pressure relief cylinder. A movable rod located inside the pressure relief cylinder movably penetrates through the installation frame. A spring that is penetrated by the movable rod and fixedly connected to the movable rod is fixedly installed on the left side of the installation frame. A sealing disc in contact with the pressure relief cylinder is fixedly installed on the left side of the movable rod. Jack holes are opened on the top, bottom and the movable rod of the installation frame. A positioning pin is inserted between the three jack holes. When the positioning pin is located inside the jack hole, the left surface of the sealing disc is flush with the left surface of the toughened glass sealing plate; The dust cleaning mechanism includes a collection cylinder fixedly installed at the bottom of the grouting cylinder. A micro air pump is fixedly installed on the right side of the collection cylinder. An air pipe communicating with the collection cylinder is connected to the air extraction port of the micro air pump. The left side of the collection cylinder is communicated with a suction pipe, and the bottom of the suction pipe is communicated with a threaded connection cylinder corresponding to the threaded connection with the bottom nut.
2. The small-area wall pouring leak repairer according to claim 1, characterized in that: The moving disc is in the shape of a ring. A slot corresponding to the insertion of the sealing ring is opened on the left side of the moving disc. The sealing ring is a rubber ring in the shape of a ring, and the sealing groove is circular and has the same width as the sealing ring, ensuring the sealing effect of the connection and contact between the sealing ring and the toughened glass sealing plate. The positioning tooth grooves are horizontally and equidistantly distributed. The right opening of the positioning tooth groove is inclined downward at an angle of 45 degrees. The shape and size of the end of the positioning insertion rod located in the positioning tooth groove match the positioning tooth groove, facilitating the movement of the positioning insertion rod in the positioning tooth groove to avoid obstruction when the moving positioning rod moves to the left.
3. The small-area wall pouring leak repairer according to claim 1, characterized in that: The slurry discharge structure facilitates the cooperation with the upper perforation for pressure relief and slurry discharge, and the dust cleaning mechanism facilitates the cooperation with the lower perforation for dust removal.
4. The small-area wall pouring leak repairer according to claim 3, characterized in that: The inner diameter of the nut is equal to the diameter of the perforation, and the threaded plugging rod has the same diameter as the perforation, the pressure relief cylinder, and the threaded connection cylinder; A pull ring is fixedly installed at the top of the pull rope. A switch cover is inserted into the bottom of the collection cylinder. An activated carbon dust-proof net located outside the air pipe is laid inside the collection cylinder. A manual switch valve is connected to the right side of the grouting connection head. Pulling the pull rope drives the positioning insertion rod to separate from the positioning tooth groove, and then the moving ring can be pulled to move to adjust the position of the sealing ring.
5. The small-area wall pouring leak repairer according to claim 4, characterized in that: The toughened glass sealing plate and the grouting cylinder are both made of transparent glass. The grouting connection head, the movable sealing disc, the threaded support frame, the movable seat, the threaded adjusting rod, the limiting cylinder, the movable limiting rod, the moving disc, the moving ring, the moving positioning rod, the telescopic spring, the positioning insertion rod, the nut, the threaded plugging rod, the pressure relief cylinder, the mounting frame, the moving rod, the spring, the positioning pin, the sealing disc, the threaded connection cylinder, and the manual switch valve are all made of stainless steel. The sealing ring is a sealing rubber ring, the pull rope is a braided rope, the collection cylinder and the switch cover are both made of hard plastic, and the air pipe and the suction pipe are plastic hoses.
6. A small-area wall pouring leak repair method, characterized in that The small-area wall pouring hole repairer described in any one of claims 1 to 5 is adopted, and specifically includes: The toughened glass sealing plate is fixed to the outside of the hole on the wall by using fastening screws. Pressing the moving ring drives the sealing ring on the moving disc to move synchronously and fit tightly with the wall to ensure the sealing effect. The movement of the moving ring synchronously drives the moving positioning rod to move synchronously in the cavity, so that the elastic telescopic action of the telescopic spring is used to push the positioning insertion rod to be inserted into the positioning tooth groove on the moving positioning rod, ensuring the fixation of the moving positioning rod after movement, thereby realizing the fixation of the moving ring and ensuring the sealing effect of the sealing ring; The mutual connection between the micro air pump, the air pipe, the collection cylinder, the suction pipe, and the threaded connection cylinder enables the threaded connection cylinder to be connected to the nut below and communicate with the perforation, while sucking the dust in the hole into the collection cylinder for storage, achieving the effect of environmental protection and dust removal, and also avoiding the influence of dust in the hole on the adhesion of the later grouting molding; The grouting connector connects the grouting pipe to inject mortar into the grouting cylinder. After the grouting cylinder is filled, in cooperation with the provided threaded adjusting rod, it is convenient for the screw thread to be screwed into the threaded adjusting rod. While the threaded adjusting rod rotates on the movable seat, in cooperation with the limiting cylinder, the movable limiting rod on the movable sealing disc is limited in movement. At the same time, the movable sealing disc is pushed to move to extrude the mortar, ensuring that the mortar can fill the hole. When the movable sealing disc cannot move under pressure, through the provided positioning pin, it is convenient to pull out the positioning pin from the jack. At the same time, by continuously screwing the threaded adjusting rod, the movable sealing disc can be moved to the leftmost side in the grouting cylinder. While the mortar is under pressure, it squeezes and pushes the sealing disc in the pressure relief cylinder to move, driving the movable rod to move synchronously to compress the spring, ensuring that the sealing disc moves out of the pressure relief cylinder, and the excess mortar is discharged from the pressure relief cylinder. Thus, after the excess mortar is discharged, pressing the movable rod to push the sealing disc to reset, and then inserting the pin into the jack to position the movable rod, ensuring the integrity of the mortar filling in the hole, ensuring the adhesion of the mortar after forming, and avoiding falling off.
Citation Information
Patent Citations
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