An autonomous unblocking anti-blocking well lid
By designing a self-draining, anti-clogging manhole cover, and utilizing components such as a sliding plate, magnets, and nylon mesh, the problem of manhole covers being easily lifted and blocked during heavy rainfall is solved. This achieves the self-cleaning and anti-backflow functions of the manhole cover, ensuring smooth drainage.
Patent Information
- Application Number
- CN202511415160.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2045-09-30
AI Technical Summary
Existing manhole covers are easily lifted up during heavy rainfall, making it easy for vehicles to hit or get stuck in the sewer openings, and the drainage outlets are easily blocked, causing the drainage function to fail.
A self-dredging anti-clogging manhole cover was designed, which uses components such as a sliding plate, magnet, metal block, telescopic rod and nylon net. The manhole cover automatically adjusts its state according to the water level change, realizing the functions of preventing sewage backflow and self-cleaning. The magnet attracts the metal block to unclog the drain outlet, the nylon net intercepts impurities, and the rod clears the blockage.
It enables the prevention of manhole covers from being lifted up under heavy rainfall conditions, avoiding vehicle accidents, maintaining smooth drainage, automatically cleaning impurities, and improving the adaptability and drainage efficiency of manhole covers.
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Figure CN120889331B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of well covers, in particular to a self-unblocking anti-clogging well cover. BACKGROUND
[0002] The well cover is used for draining road surface water while ensuring the safety of pedestrians and vehicles on the road surface, preventing falling. During the drainage process, there are many cases of backflow, for example, impurities in sewage can gradually accumulate in the sewer, causing blockage and preventing drainage. At this time, the water in the sewer will produce a backflow phenomenon, causing sewage to overflow from the drain port of the well cover to the road surface. Or in heavy rainfall weather, the drainage capacity cannot meet the rainfall, and as the road surface continues to accumulate water, the sewer drainage pressure gradually increases, which can also cause a backflow phenomenon. Chinese patent CN112502266A, a well cover for preventing backflow during road construction and its assembly method, when sewage in the sewer backflows, sewage flows into the extended housing, and the accumulation tank housing is displaced upward under the buoyancy of the inner and outer buoyancy plates, so that the drainage hole is horizontal to the sealing sleeve layer or the drainage hole is located on the upper side of the sealing sleeve layer, so that sewage cannot enter from the drainage hole. However, in heavy rainfall weather, as the rainfall increases, the drainage capacity cannot keep up with the rainfall, causing the backflow of rainwater in the sewer to increase continuously. When the anti-backflow structure is used to intercept rainwater from overflowing onto the road surface, rainwater cannot be drained to the ground, and the water pressure of the rainwater in the sewer increases continuously, which continuously exerts pressure on the underside of the well cover. This can cause the well cover to loosen under pressure, and in severe cases, the well cover can be easily lifted by the sewage. Vehicles are also prone to collide with the lifted well cover, and once the well cover is lifted out of the sewer opening, the sewer opening is not supported, and vehicles are also prone to get stuck in the sewer opening and cannot drive.
[0003] At the same time, the drain port on the well cover is prone to blockage due to the accumulation of impurities on the inner wall of the drain port during long-term use, which affects the drainage capacity.
[0004] In view of the above, the present application provides a self-unblocking anti-clogging well cover to improve the above technical problems. SUMMARY
[0005] In order to overcome the shortcomings of the well cover being easily lifted by continuous pressure during heavy rainfall, vehicles being prone to collide with the well cover, and vehicles being prone to get stuck in the sewer opening and unable to drive, and the drain port on the well cover being prone to blockage during long-term use, the present application provides a self-unblocking anti-clogging well cover.
[0006] Technical solution: An autonomous dredging type anti-blocking manhole cover, comprising a base and a manhole cover; the base is provided with a manhole cover; the manhole cover is provided with a plurality of drainage openings; it also comprises a sliding plate, a collection box, a metal block and an extension rod; the manhole cover is slidably connected with the sliding plate, and at least three spiral springs are connected between the sliding plate and the manhole cover; the lower side of the sliding plate is fixedly connected with a magnet, which is arranged in an I shape; the manhole cover is slidably connected with a sliding rod, and the sliding rod is opposite to the magnet; the lower side of the manhole cover is fixedly connected with a plurality of extension rods; the extension ends of the plurality of extension rods are fixedly connected with a collection box, and the collection box has a density less than water; the lower side of the sliding rod is in contact with the collection box; a plurality of metal blocks are slidably connected in the manhole cover through springs, and the metal blocks are equal in size to the gaps of the magnet.
[0007] More preferably, the above-mentioned autonomous dredging type anti-blocking manhole cover further comprises a nylon net; the manhole cover and the collection box are detachably connected with the nylon net which prevents impurities from being directly discharged into the sewer, and the nylon net is arranged in a ring shape.
[0008] More preferably, the above-mentioned autonomous dredging type anti-blocking manhole cover further comprises a baffle, a metal mesh plate, a bearing block, a plug rod and a sliding column; the extension rod is a spring extension rod; the collection box is slidably connected with a metal mesh plate; the lower side of the base is fixedly connected with a plurality of bearing blocks; the upper side of the collection box is fixedly connected with a plurality of plug rods for cleaning the drainage openings, the plug rods are opposite to the corresponding drainage openings, and the diameter of the plug rod is less than the diameter of the drainage opening; the collection box is slidably connected with a plurality of sliding columns; a plurality of rectangular grooves are arranged on each sliding column; a baffle is fixedly connected to each sliding column, and the diameter of the baffle is greater than the diameter of the sliding column, the baffle being located between the collection box and the metal mesh plate.
[0009] More preferably, the above-mentioned autonomous dredging type anti-blocking manhole cover further comprises a plastic plate; a support frame is arranged on the base; a plurality of plastic plates are fixedly connected to the base; the other end of each plastic plate abuts against the adjacent support frame, and the support frame is used to limit the downward opening of the plastic plate; a plurality of communication grooves are formed in the base, and the communication grooves cooperate with the plastic plates to relieve the drainage pressure of the drainage openings.
[0010] More preferably, the upper surface of the sliding plate is lower than the upper surface of the manhole cover.
[0011] More preferably, the upper side of each plug rod is arranged in a forked shape.
[0012] More preferably, the metal mesh plate is made of high-strength metal material.
[0013] More preferably, the magnet does not contact the manhole cover.
[0014] More preferably, the above-mentioned autonomous dredging type anti-blocking manhole cover further comprises a tapered block; the upper side of the collection box is fixedly connected with a tapered block corresponding in number and position to the holes of the metal mesh plate.
[0015] More preferably, the height of the tapered block is equal to the thickness of the metal mesh plate.
[0016] The beneficial effects of the present application are:
[0017] 1、The present application realizes the sealing of the sewer by the cooperation of the collecting box and the base during the rising of the water level, thereby intercepting the overflow of sewage from the drain outlet, avoiding the road waterlogging, and realizing the function of sewage anti-backflow.
[0018] 2、By moving the slide plate downward, the magnet adsorbs the metal block to block the sliding path of the slide rod, so that the sewage can be discharged to the outside through the drain outlet, avoiding the continuous accumulation of sewage under the well cover to cause a large extrusion force, and the phenomenon of sewer backflow caused by heavy rain is prevented in advance.
[0019] 3、The drain outlet is reciprocally cleaned by the cooperation of the inserting rod and the collecting box, so that the drain outlet can be reciprocally cleaned simply without additional active driving mode, and the self-cleaning function of the well cover is realized.
[0020] 4、The holes on the metal mesh plate are dredged by the taper block to prevent impurities from blocking the metal mesh plate, and the self-adaptive ability of the well cover is improved. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a three-dimensional structure schematic diagram of the self-dredging type anti-blocking well cover of the present application;
[0022] Figure 2 is a sectional view of the base and the well cover of the present application;
[0023] Figure 3 is an exploded view of the base and the well cover of the present application;
[0024] Figure 4 is a three-dimensional structure schematic diagram of the well cover and the slide plate combination of the present application;
[0025] Figure 5 is a sectional view of the collecting box and the metal mesh plate combination of the present application, wherein the metal mesh plate is lifted by the slide column;
[0026] Figure 6 is a three-dimensional structure schematic diagram of the taper block of the present application;
[0027] Figure 7 is a structure state schematic diagram when the lower side of the collecting box is flush with the lower side of the base.
[0028] In the attached diagram, the following labels are used: 1-base, 1001-support frame, 1002-connecting groove, 2-manhole cover, 2001-drain outlet, 2002-sliding rod, 3-sliding plate, 3001-magnet, 4-collection box, 5-metal block, 6-nylon mesh, 101-plastic sheet, 102-baffle, 103-metal mesh plate, 104-bearing block, 105-insertion rod, 106-sliding column, 10601-rectangular groove, 107-telescopic rod, 201-conical block, 311-coil spring. Detailed Implementation
[0029] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0030] Example 1
[0031] like Figures 1-5 As shown, a self-draining anti-clogging manhole cover includes a base 1 and a manhole cover 2; the manhole cover 2 is installed on the base 1; and the manhole cover 2 is provided with a plurality of drainage outlets 2001.
[0032] It also includes a sliding plate 3, a collection box 4, metal blocks 5, and telescopic rods 107; the sliding plate 3 is slidably connected to the manhole cover 2, and three helical springs 311 are connected between the sliding plate 3 and the manhole cover 2; a magnet 3001 is fixedly attached to the lower side of the sliding plate 3, and the magnet 3001 is arranged in an I-shape; a sliding rod 2002 is slidably connected to the manhole cover 2, and the sliding rod 2002 is directly opposite the magnet 3001; several telescopic rods 107 are fixedly attached to the lower side of the manhole cover 2; the telescopic ends of several telescopic rods 107 are fixedly attached to the collection box 4, and the density of the collection box 4 is less than that of water; the lower side of the sliding rod 2002 is in contact with the collection box 4; two metal blocks 5 are slidably connected inside the manhole cover 2 by springs, and the gaps of the metal blocks 5 and the magnets 3001 are the same size.
[0033] It also includes a nylon mesh 6; the manhole cover 2 and the collection box 4 are detachably connected to the nylon mesh 6, which is arranged in a ring.
[0034] It also includes a baffle 102, a metal mesh plate 103, a support block 104, a rod 105, and a sliding column 106; the telescopic rod 107 is a spring telescopic rod; the metal mesh plate 103 is slidably connected to the collection box 4; several support blocks 104 are fixedly connected to the lower side of the base 1; several rods 105 are fixedly connected to the upper side of the collection box 4, the rods 105 are directly opposite the corresponding drain outlets 2001, and the diameter of the rods 105 is smaller than the diameter of the drain outlets 2001; several sliding columns 106 are slidably connected to the collection box 4; several rectangular grooves 10601 are provided on each sliding column 106; a baffle 102 is fixedly connected to each sliding column 106, the diameter of the baffle 102 is larger than the diameter of the sliding column 106, and the baffle 102 is located between the collection box 4 and the metal mesh plate 103.
[0035] Further comprising a plastic plate 101; the base 1 is provided with a support frame 1001; the base 1 is fixedly connected with a plurality of plastic plates 101; the other end of each plastic plate 101 abuts against the adjacent support frame 1001, the support frame 1001 is used for limiting the plastic plate 101 from opening downward; a plurality of communication grooves 1002 are formed in the base 1, and the communication grooves 1002 cooperate with the plastic plates 101 to relieve the drainage pressure of the drainage port 2001.
[0036] The upper surface of the sliding plate 3 is lower than the upper surface of the well lid 2, so as to avoid damage of the sliding plate 3 caused by extrusion of vehicles.
[0037] The upper side of each insertion rod 105 is provided in a forked shape, so as to ensure dredging of the drainage port 2001, and avoid blocking of the insertion rod 105 to the drainage port 2001 and affect normal drainage.
[0038] The metal mesh plate 103 is made of high-strength metal material, so as to ensure service life.
[0039] The magnet 3001 does not contact the well lid 2, so as to avoid friction resistance when the sliding plate 3 is lowered.
[0040] The base 1 is formed by workers through cement casting, the well lid 2 is placed on the base 1, it is explained that the collecting box 4 is located in the sewer port, and there is a gap between the collecting box 4 and the sidewall of the sewer port, and the collecting box 4 is made of foam material; in the normal use process, the rainwater on the road surface is drained into the collecting box 4 through the drainage port 2001, and after the collecting box 4 is filled with rainwater, the rainwater is discharged into the sewer through the gap between the collecting box 4 and the sidewall of the sewer.
[0041] Considering that the sewer is easily blocked by impurities during long-term drainage, resulting in reduced or even lost drainage function, and in rainy days, the water level in the sewer rises continuously, and the sewage in the sewer overflows along the drainage port 2001 to the road surface, causing road surface water; therefore, in order to prevent rainwater from flowing back to the sewer, when the water level in the sewer rises continuously, the collecting box 4 rises synchronously under the action of the rising water level due to the fact that the density of the collecting box 4 is less than that of water, and the telescopic rod 107 is compressed, and the collecting box 4 pushes the sliding rod 2002 to slide upward, when the lower side of the collecting box 4 is flush with the lower side of the base 1, at this time, the collecting box 4 cooperates with the base 1 to block the sewer port, avoiding sewage from overflowing from the drainage port 2001 to cause road surface water, and realizing the function of sewage anti-backflow; when the water level in the sewer decreases, the collecting box 4 decreases synchronously, and the road surface water normally flows to the collecting box 4 along the drainage port 2001, and then is drained to the sewer.
[0042] In view of the fact that, in order to ensure the structural strength of the well lid 2, the drain port 2001 cannot be too large or too many, when facing strong rainfall environment, at this time the small diameter drain port 2001 cannot meet the drainage capacity, leading to serious road waterlogging, at the same time, with the continuous development of strong rainfall, the drainage capacity of the sewer cannot meet the drainage, causing the water level in the sewer to rise continuously, and in order to avoid the phenomenon of backflow, the drain port 2001 is blocked by the collecting box 4 cooperating with the base 1 at this time, therefore, the water pressure borne by the collecting box 4 is transmitted to the well lid 2 through the telescopic rod 107, causing the well lid 2 to be easily lifted by sewage, and vehicles are easy to collide with the lifted well lid 2, and with the continuous increase of water pressure, after the well lid 2 is lifted and separated from the sewer port, the sewer port has no support, and vehicles are also easy to be trapped in the sewer port position and cannot drive;Therefore, when facing heavy rainfall, the drainage capacity of the drainage port 2001 cannot meet the rainfall, and as the road surface water continuously increases, the water pressure on the slide plate 3 also increases, and the slide plate 3 gradually moves downward under the action of the water pressure, driving the magnet 3001 to move downward, and the spiral spring 311 between the slide plate 3 and the manhole cover 2 is compressed. When the magnet 3001 approaches the metal block 5, the metal block 5 is attracted to the surface of the magnet 3001 under the attraction of the magnet 3001, and the spring between the metal block 5 and the manhole cover 2 is stretched. It should be noted that part of the metal block 5 is blocked in the sliding path of the slide rod 2002, and part of the metal block 5 is still embedded in the manhole cover 2. As the heavy rainfall continues, the drainage capacity of the sewer cannot meet the rainfall, and the water level in the sewer continuously rises and drives the collection box 4 to move upward. Due to the fact that the metal block 5 is attracted out by the magnet 3001 and blocks the sliding path of the slide rod 2002, the slide rod 2002 cannot move upward under the blockage of the metal block 5, that is, the collection box 4 cannot cooperate with the base 1 to block the sewer. As the water level continuously rises, the sewage in the sewer can flow to the drainage port 2001 through the gap between the collection box 4 and the base 1 and be discharged to the outside. Here, considering that the drainage port 2001 is small, the sewage cannot be quickly discharged to the outside, so the communication groove 1002 is provided. The sewage not only flows to the drainage port 2001, but also flows to the communication groove 1002. Since the plastic plate 101 cannot be opened downward under the limitation of the support frame 1001, when the sewage enters the communication groove 1002, the sewage pushes open the plastic plate 101 as the sewage continuously rises, that is, the sewage is discharged to the road surface, and the base 1 and the manhole cover 2 are drained and depressurized. Through the cooperation of the communication groove 1002 and the drainage port 2001, the water pressure on the base 1 and the manhole cover 2 is reduced, avoiding the continuous accumulation of sewage under the manhole cover 2 causing a large extrusion force. At the same time, by actively discharging the sewage, the manhole cover 2 can also be prevented from being pushed open, thereby providing protection against the sewer backflow phenomenon caused by heavy rainfall in advance, improving the adaptability of the manhole cover 2. When the sewer has drainage capacity, the road surface water is discharged to the sewer along the drainage port 2001, and the amount of water on the manhole cover 2 gradually decreases. At this time, the water cannot extrude the slide plate 3 to move downward, and the slide plate 3 is driven upward by the spiral spring 311, thereby separating the magnet 3001 from the metal block 5. The metal block 5 loses the attraction of the magnet 3001 and is completely embedded in the manhole cover 2 by the spring.
[0043] Considering that when rainwater flows into the sewer through drain 2001, road debris also flows into the sewer along with the rainwater, and the sewer is prone to blockage due to the debris, it is extremely inconvenient for workers to enter the sewer for cleaning. Therefore, by installing nylon netting 6 on collection box 4, when water carrying impurities enters from drain 2001 and falls into collection box 4, nylon netting 6 is used to intercept the debris, preventing it from flowing directly into the sewer with the rainwater. When too much debris accumulates on collection box 4, workers only need to lift manhole cover 2 to raise it. Manhole cover 2 will lift telescopic rod 107 and collection box 4 together, and then the nylon netting 6 can be removed for simple cleaning. In this way, the nylon netting 6 prevents the sewer from becoming blocked in a short time, eliminating the need for workers to frequently enter the depths of the sewer for cleaning.
[0044] When using the drain outlet 2001 to guide and discharge road surface water, the drain outlet 2001 is easily clogged by garbage. Therefore, as the collection box 4 continuously collects road surface water, the amount of rainwater increases, causing the collection box 4 to gradually become heavier, stretching the telescopic rod 107 downwards until the collection box 4 is in contact with the upper side of the support block 104. At this time, the sliding column 106, under the restriction of the support block 104, moves as... Figure 3 As shown, the metal mesh plate 103, which was originally attached to the bottom surface of the collection box 4, is lifted upwards. At this time, the rainwater accumulated on the collection box 4 flows through the metal mesh plate 103 into the cavity between the metal mesh plate 103 and the collection box 4, and finally flows down the drain along the rectangular groove 10601. As the water on the collection box 4 is gradually drained, since the telescopic rod 107 is set as a spring telescopic rod, the collection box 4 cannot continue to stretch the telescopic rod 107 by its own weight, and thus the telescopic rod 107 springs back to its original position. The action causes the collection box 4 to move upward, allowing the insertion rod 105 to extend into the drain outlet 2001. The insertion rod 105 then pokes and pushes out the impurities blocking the drain outlet 2001, thereby achieving self-cleaning of the drain outlet 2001 and ensuring that rainwater can pass through the drain outlet 2001 and flow into the sewer normally. It should be noted that the insertion rod 105 is initially located in the drain outlet 2001, and there is a gap between the insertion rod 105 and the drain outlet 2001, which will not affect the passage of rainwater through the drain outlet 2001.
[0045] Further, in the process of moving the collection box 4, the slide rod 2002 contacts the upper side of the metal mesh plate 103, thereby pushing the metal mesh plate 103 and the slide column 106 to move downward to reset, so that the baffle 102 is attached to the collection box 4, and the collection box 4 is sealed. When the accumulated water flows from the drain 2001 to the collection box 4, the collection box 4 re-contains the accumulated water, so that the weight of the collection box 4 is continuously increased, thereby stretching the telescopic rod 107 downward again, until the slide column 106 contacts the bearing block 104 and is lifted up. In this way, the drain 2001 is repeatedly cleaned without additional active driving, and the self-cleaning function of the well lid 2 is realized. The presence of the metal mesh plate 103 allows the accumulated water to flow through the metal mesh plate 103 to the cavity between the metal mesh plate 103 and the collection box 4, and finally the rainwater is discharged from the rectangular groove 10601, but the impurities are difficult to pass through the metal mesh plate 103. When the accumulated water in the collection box 4 is discharged, the probability of impurities flowing into the sewer is reduced.
[0046] Embodiment 2
[0047] Based on the embodiment 1, as shown in Figure 6 the tapered block 201 is further included, and the upper side of the collection box 4 is fixedly connected with the tapered block 201 corresponding to the number and position of the holes in the metal mesh plate 103.
[0048] The height of the tapered block 201 is equal to the thickness of the metal mesh plate 103.
[0049] In the process of using the metal mesh plate 103 to receive impurities, considering that the continuous accumulation of impurities will block the metal mesh plate 103, therefore, by providing the tapered block 201 on the collection box 4, when the slide rod 2002 pushes the metal mesh plate 103 to approach the collection box 4, the tapered block 201 passes through each hole in the metal mesh plate 103 to dredge the metal mesh plate 103, so that the impurities accumulated on the metal mesh plate 103 are not easy to block the holes, thereby ensuring the normal water permeability of the metal mesh plate 103. Further, since the height of the tapered block 201 is equal to the thickness of the metal mesh plate 103, when the worker needs to disassemble and maintain the metal mesh plate 103 later, the tapered block 201 can be accommodated between the metal mesh plate 103 and the collection box 4, so as to avoid the tapered block 201 protruding from the metal mesh plate 103 and injuring the worker.
[0050] Although the present disclosure has been shown and described with respect to certain exemplary embodiments thereof, it should be understood by those skilled in the art that various changes in form and detail can be made therein without departing from the spirit and scope of the disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above-described embodiments, but should be determined by the appended claims alone, and should be defined by the equivalents of the appended claims.
Claims
1. An autonomous unblocking anti-blocking well lid, comprising a base (1) and a well lid (2); the well lid (2) is installed on the base (1); a plurality of drainage openings (2001) are arranged on the well lid (2); characterized in that, The utility model also includes a sliding plate (3), a collecting box (4), a metal block (5) and a telescopic rod (107); the well lid (2) is slidably connected with the sliding plate (3), and at least three spiral springs (311) are jointly connected between the sliding plate (3) and the well lid (2); the lower side of the sliding plate (3) is fixedly connected with a magnet (3001), and the magnet (3001) is arranged in an I shape; the well lid (2) is slidably connected with a sliding rod (2002), and the sliding rod (2002) is opposite to the magnet (3001); the lower side of the well lid (2) is fixedly connected with a plurality of telescopic rods (107); the telescopic ends of the plurality of telescopic rods (107) are fixedly connected with the collecting box (4), and the collecting box (4) has a density less than water; the lower side of the sliding rod (2002) is in contact with the collecting box (4); a plurality of metal blocks (5) are slidably connected in the well lid (2) through springs, and the metal blocks (5) are equal in size to the gaps of the magnet (3001).
2. The self-cleaning anti-clogging manhole cover according to claim 1, wherein, The utility model also includes a nylon net (6); the well lid (2) and the collecting box (4) are detachably connected with the nylon net (6) for preventing impurities from being directly discharged into the sewer, and the nylon net (6) is arranged in a ring shape.
3. The self-cleaning, anti-clogging, and autonomous manhole cover according to claim 1, wherein, The utility model also includes a baffle (102), a metal mesh plate (103), a bearing block (104), a plug rod (105) and a sliding column (106); the telescopic rod (107) is a spring telescopic rod; the collecting box (4) is slidably connected with the metal mesh plate (103); the lower side of the base (1) is fixedly connected with a plurality of bearing blocks (104); the upper side of the collecting box (4) is fixedly connected with a plurality of plug rods (105) for cleaning the drain outlets (2001), the plug rods (105) are opposite to the corresponding drain outlets (2001), the diameters of the plug rods (105) are less than the diameters of the drain outlets (2001); the collecting box (4) is slidably connected with a plurality of sliding columns (106); each sliding column (106) is provided with a plurality of rectangular grooves (10601); each sliding column (106) is fixedly connected with a baffle (102), the diameter of the baffle (102) is greater than the diameter of the sliding column (106), and the baffle (102) is located between the collecting box (4) and the metal mesh plate (103).
4. The self-cleaning, anti-clogging, and autonomous manhole cover according to claim 3, wherein, The utility model also includes a plastic plate (101); the base (1) is provided with a support frame (1001); the base (1) is fixedly connected with a plurality of plastic plates (101); the other end of each plastic plate (101) abuts against an adjacent support frame (1001), and the support frame (1001) is used for limiting the plastic plate (101) to be opened downward; a plurality of communication grooves (1002) are formed in the base (1), and the communication grooves (1002) cooperate with the plastic plates (101) to relieve the drainage pressure of the drain outlets (2001).
5. The self-cleaning, anti-clogging access cover of claim 1, wherein, The upper surface of the sliding plate (3) is lower than the upper surface of the well lid (2).
6. The self-cleaning, anti-clogging, and autonomous manhole cover according to claim 3, wherein, The upper side of each plug rod (105) is arranged in a forked shape.
7. The self-cleaning, anti-clogging, and autonomous manhole cover according to claim 3, wherein, The metal mesh plate (103) is made of high-strength metal material.
8. The self-cleaning, anti-clogging access cover of claim 1, wherein, The magnet (3001) is not in contact with the well lid (2).
9. The self-cleaning, anti-clogging access cover of claim 7, wherein, The utility model also includes a taper block (201); the upper side of the collecting box (4) is fixedly connected with a taper block (201) corresponding in number and position to the holes in the metal mesh plate (103).
10. The self-cleaning, anti-clogging access cover of claim 9, wherein, The height of the taper block (201) is equal to the thickness of the metal mesh plate (103).
Citation Information
Patent Citations
Anti-backflow well lid for road construction and assembling method of anti-backflow well lid
CN112502266A
Simple sliding grid anti-blocking gully
CN102691350A
Outdoor ground forced drainage anti-backward flow integrated drainage manhole cover
CN102900145A