Intelligent water pool access and automatic water supply and drainage track board water culture system

The smart water pool system with a partitioned design and automated control addresses the issue of debris impact and inefficient water penetration in rail track systems, enhancing curing efficiency and resource conservation.

CN120307445AActive Publication Date: 2025-07-15WUHAN SLEEPER TRACK EQUIPMENT CO LTD
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Patent Information

Application Number
CN202510646858.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-07-15
Estimated Expiration
2045-05-20

AI Technical Summary

Technical Problem

During the water maintenance process of existing track plates, dust and debris are prone to impact the track plates during water supply and drainage, resulting in damage and low water resource utilization efficiency.

Method used

The partition plate is used to separate the pool body into two upper and lower layers. The track plate is placed above the partition plate, and dust and debris are settled below through the through holes. The through holes on the partition plate are used for water to penetrate into the track plate, and combined with the solenoid valve to control the water supply and drainage system and float balls to adjust the water level to achieve regular drainage and water resources.

Benefits of technology

It reduces the probability of dust and debris impacting the track plate, improves water infiltration efficiency, saves water resources, simplifies the cleaning process, and reduces resource waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an intelligent pool access and automatic water supply and drainage track board water maintenance system, and relates to the technical field of traffic equipment production and maintenance, the system comprises a pool body, the side wall, close to the bottom, of the pool body is connected with a drainage pipe, the side wall, close to the top, of the pool body is connected with a water supply pipe, and the drainage pipe and the water supply pipe are both provided with electromagnetic valves; a partition plate is arranged at the position, close to the bottom of the pool body, in the pool body, the partition plate divides the pool body into an upper layer and a lower layer, a plurality of through holes are formed in the partition plate in an array mode, and the effect of reducing the collision probability of dust and chippings on the track plate is achieved.
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Description

Technical Field

[0001] This application relates to the field of production and maintenance of transportation equipment, and in particular to an intelligent track slab water curing system for entering and exiting a water tank and automatically draining and filling water. Background Technique

[0002] A track slab refers to a new type of sub-rail component with a plate-shaped structure, used to support and fix the rail, and distribute the load transmitted by the train through the rail to the base under the plate.

[0003] The tracks used in existing high-speed railways are usually ballastless tracks, and the track slabs used in ballastless tracks are usually made of reinforced concrete structure. As a hydraulic material, concrete needs to undergo a hydration reaction during the setting and hardening process. As the hydration reaction continues, the concrete strength continues to increase. During its strength growth period, in order to fully carry out the hydration reaction of the concrete, promote internal chemical reactions, reduce internal defects, ensure the strength and durability of the concrete, and prevent dry shrinkage cracks caused by drying, it is necessary to cure the track slab with water. According to the concrete hydration theory and the technical requirements for track slab water curing, in order to make the concrete gradually harden and increase in strength, the track slab should be cured in water for more than 3 days.

[0004] Existing curing usually places the track slab in a curing pool and cures the track slab by injecting water into the curing pool for soaking. During the soaking process, dust and some loose debris on the surface of the track slab will fall off, and the dust and debris will flow with the water flow when draining and filling the curing pool, thus hitting the track slab and causing damage to the track slab. Summary of the Invention

[0005] In order to reduce the probability of dust and debris hitting the track slab, this application provides an intelligent track slab water curing system for entering and exiting a water tank and automatically draining and filling water.

[0006] An intelligent track slab water curing system for entering and exiting a water tank and automatically draining and filling water provided by this application adopts the following technical solutions: An intelligent track slab water curing system for entering and exiting a water tank and automatically draining and filling water, including a pool body. A drain pipe is connected to the side wall of the pool body near the bottom, and a water supply pipe is connected to the side wall of the pool body near the top. Solenoid valves are installed on both the drain pipe and the water supply pipe. A partition plate is arranged near the bottom of the pool body, and the partition plate divides the pool body into upper and lower layers. A number of through holes are arranged in a whole row on the partition plate.

[0007] By adopting the above technical solution, the pool body is separated by a partition plate. The track slab to be water-cured is placed above the partition plate. The dust and debris falling from the track slab will precipitate below the partition plate through the through holes, thereby reducing the probability that the dust and debris impact the track slab along with the water flow during the water supply and drainage of the curing pool. At the same time, the through holes on the partition plate can enable the track slab to contact water on one side of the partition plate, thus improving the efficiency of water seeping into the side of the track slab placed inside the pool body and enhancing the overall curing effect of the track slab.

[0008] Optionally, a reduced-diameter collar is fixedly provided on one side of the partition plate facing the bottom of the pool body. The diameter of the reduced-diameter collar gradually decreases from the partition plate towards the bottom of the pool body. A number of reduced-diameter collars are provided and are arranged corresponding to the through holes.

[0009] Optionally, a waste discharge port is opened at the bottom of the pool body, and a sealing cover plate is detachably installed at the waste discharge port.

[0010] Optionally, the bottom of the pool body is inclined towards the waste discharge port.

[0011] Optionally, a blocking plate is arranged inside the partition plate. A number of blocking plates are provided and are arranged corresponding to the through holes. The blocking plates slide to close or open the through holes.

[0012] Optionally, a number of driving rods are slidably arranged inside the partition plate. The driving rods slide in parallel inside the partition plate, and the sliding of the driving rods drives the blocking plates in the same row to open or close the through holes.

[0013] Optionally, a connecting rod is slidably arranged inside the partition plate, and the connecting rod connects all the driving rods.

[0014] Optionally, a push-pull rod is fixedly provided on the connecting rod, and the push-pull rod penetrates through the pool body and extends outside the pool body.

[0015] Optionally, a floating ball is slidably arranged on the side wall of the pool body, a travel switch is arranged above the floating ball, and the travel switch is slidably arranged inside the pool body.

[0016] Optionally, a crane is installed above the pool body. The crane sends the track slab into or out of the pool body. The cooperation between the crane and the pool body is as follows: when it is necessary to grab the track slab into one of the pool bodies, the water in this pool body needs to be pumped dry through the water supply and drainage system and pumped into the pool body filled with track slabs, and then the crane is used to place the track slab full into the pool body with the water already pumped dry.

[0017] In summary, the present application includes at least one of the following beneficial technical effects: 1. The pool body is partitioned by a partition board. The track slab to be water-cured is placed above the partition board. Dust and debris falling from the track slab will precipitate below the partition board through the through holes, thereby reducing the probability that the dust and debris flow with the water flow and impact the track slab during the water supply and drainage of the curing pool. At the same time, the through holes on the partition board can enable the track slab to contact water on one side of the partition board, thereby improving the efficiency of water seeping into the side of the track slab placed in the pool body and enhancing the overall curing effect of the track slab. 2. The height of the travel switch can be adjusted according to the height of the track slab placed in the pool body, so as to control the water in the pool body to completely submerge the track slab without exceeding the track slab too much, thereby saving water resources. The travel switch is connected to a computer control program. When the floating ball abuts and triggers the upper travel switch, the solenoid valve on the water supply pipe closes to stop supplying water to the pool body. A timer is set on the travel switch above the floating ball. After the travel switch above the floating ball is triggered and reaches the time set by the timer, the solenoid valve on the drain pipe is opened to drain the pool body, thereby realizing the timed replacement of the pool water. 3. The form of the reduced opening can reduce the probability that the dust and debris below the partition board return to above the partition board through the through holes, thereby further reducing the probability of the dust and debris impacting the track slab. The reduced opening ring sleeve made of rubber material can slow down the impact force of the dust and debris through deformation when the dust and debris impact, thereby reducing the probability of the reduced opening ring sleeve being damaged by impact. At the same time, it can also make the through hole of the reduced opening ring sleeve be squeezed through deformation, thereby further reducing the probability of the dust and debris returning to above the partition board through the through holes. 4. The water curing time is relatively long. When a large amount of dust and debris accumulate below the partition board during the water curing process, cleaning the dust and debris will drain all the water in the pool body. Closing the through holes with a blocking board can temporarily partition the upper and lower parts of the partition board, so that when discharging the dust and debris below the partition board, the discharge of the water above the partition board can be reduced. When cleaning the dust and debris, there is no need to drain all the water in the pool body, thereby saving resources. Using a single-piece sliding blocking board to close the through holes has a simple structure and low cost; using multiple rotating and sliding blocking boards to close the through holes has a small installation space requirement for the structure. 5. The connecting rod and the driving rod can synchronously drive all the blocking boards to realize the simultaneous opening and closing of the through holes. 6. The setting of the push-pull rod facilitates driving the connecting rod. The push-pull rod extending out of the pool body is convenient for applying force to the push-pull rod. At the same time, an automatic driving of the push-pull rod can also be realized by setting a driving mechanism outside the pool body. Compared with setting a driving mechanism inside the pool body, setting a driving mechanism outside the pool body is more convenient, and at the same time, there is no need to consider the waterproof performance of the driving mechanism. Description of the Drawings

[0018] Figure 1 It is a schematic diagram of the overall structure of the first embodiment of the present application.

[0019] Figure 2 It is a schematic diagram of the pool structure in the first embodiment of this application.

[0020] Figure 3 It is a sectional view of the pool structure in the first embodiment of this application.

[0021] Figure 4 It is a partial sectional view of the pool structure in the first embodiment of this application.

[0022] Figure 5 It is Figure 4 an enlarged view of part A in

[0023] Figure 6 It is a partial sectional view of the pool structure in the second embodiment of this application.

[0024] Figure 7 It is Figure 6 an enlarged view of part B in

[0025] In the figure, 0, overhead crane; 1, pool body; 2, drain pipe; 3, water supply pipe; 4, solenoid valve; 5, partition plate; 6, through hole; 7, reduced diameter ring sleeve; 8, impurity discharge port; 9, cover plate; 10, baffle plate; 11, drive rod; 12, connecting rod; 13, push-pull rod; 14, sliding groove; 15, insertion groove; 16, lever; 17, abutting rod; 18, spring; 19, drive ring; 20, inclined guide groove; 21, guide rod; 22, drive tooth; 23, external drive gear ring; 24, floating ball; 25, travel switch; 26, guide cylinder; 27, opening. Detailed implementation manners

[0026] The following further describes this application in conjunction with the appended Figures 1-7 drawings and specific embodiments: First of all, it should be noted here that in the description of this application, when terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and other orientation words appear, the orientation or position relationship indicated is based on the orientation or position relationship shown in the drawings. It is only for the convenience of description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, so it cannot be understood as a limitation to this application; in addition, when terms such as "first", "second", "third" and other numerical quantifiers appear, they are only for descriptive purposes and cannot be understood as indicating or implying relative importance. In addition, in this application, unless otherwise clearly specified and limited, when terms such as "installation", "connection", "connection" appear, they should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, an interference fit, a transitional fit and other limiting connections, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium; therefore, for those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances. Embodiment 1

[0027] This application embodiment discloses an intelligent track slab water curing system for entering and exiting a water tank and automatically supplying and draining water. Refer to Figure 1 、 Figure 2 and Figure 3, including a pool body 1 that is generally rectangular in shape. A drain pipe 2 is connected and communicated on the side wall of the pool body 1 near the bottom. A water supply pipe 3 is connected and communicated on the side wall of the pool body 1 near the top. Solenoid valves 4 are installed on both the drain pipe 2 and the water supply pipe 3. The solenoid valves 4 are connected to a computer control program. By controlling the opening and closing of the solenoid valves 4 through the computer control program, the water supply and drainage of the drain pipe 2 and the water supply pipe 3 are realized. A partition plate 5 is integrally formed at a position near the bottom of the pool body 1. The partition plate 5 divides the pool body 1 into upper and lower layers. The upper part of the partition plate 5 is used to place the track plate. The height ratio of the upper part of the partition plate 5 to the lower part of the partition plate 5 is five to one. A number of through holes 6 are arranged in a whole row on the partition plate 5. The through holes 6 communicate the upper and lower parts of the partition plate 5. By separating the pool body 1 with the partition plate 5, the track plate that needs to be water-cured is placed above the partition plate 5. The dust and debris that fall from the track plate will precipitate to the lower part of the partition plate 5 through the through holes 6, thereby reducing the probability that the dust and debris will hit the track plate along with the water flow during the water supply and drainage of the curing pool; when the track plate is water-cured in the pool body 1, all surfaces of the track plate need to be wetted. In the traditional curing pool water, it can only slowly seep into the placement surface from the edge of the placement surface. The arrangement of the through holes 6 on the partition plate 5 enables the water to seep into the placement surface through the through holes 6 arranged on the partition plate 5 when the track plate is placed on the partition plate 5, so that the water can seep into the placement surface of the track plate from multiple positions, improving the wetting efficiency of the placement surface, and thus improving the overall curing effect of the track plate; A gantry crane 0 is installed above the pool body 1. The gantry crane 0 is installed above the pool body 1 through a frame or directly fixed to the top of the building where the pool body 1 is placed. The gantry crane 0 sends the track plate into or out of the pool body 1. The arrangement of the gantry crane 0 facilitates the handling of the track plate at the pool body 1. The cooperation between the gantry crane 0 and the pool body 1 is as follows: when it is necessary to grab the track plate into one of the pool bodies 1, the water in the pool body needs to be drained through the water supply and drainage system and pumped into the pool body filled with the track plate, and then the gantry crane 0 is used to fill the drained pool body 1 with the track plate. In this embodiment, a water level sensor can be set on the pool body 1, and a PLC controller is set between the water level sensor and the power system of the gantry crane 0, so that after the pool body 1 is emptied, the gantry crane 0 can automatically transfer the track plate into the pool body 1, realizing the intelligent cooperation between the gantry crane 0 and the water supply and drainage system of the pool body 1.

[0028] Refer to Figure 2 and Figure 3, a floating ball 24 is slidably arranged on the side wall of the pool body 1. The floating ball 24 floats on the surface of the pool water. A guide cylinder 26 is vertically fixed on one side wall of the pool body 1. The floating ball 24 is placed in the guide cylinder 26 and slides along the height direction of the pool body 1 in the pool body 1 through the guidance of the guide cylinder 26. A plurality of openings 27 are formed in the circumferential direction of the guide cylinder 26 along the length direction of the guide cylinder 26. The size of the opening 27 is smaller than the size of the floating ball 24. The opening 27 enables water to normally enter the guide cylinder 26 and does not allow the floating ball 24 to fall off the guide cylinder 26. A travel switch 25 is arranged above the floating ball 24; the travel switch 25 is slidably arranged in the pool body 1 along the height direction of the pool body 1. The height adjustment of the travel switch 25 can be adjusted according to the height at which the track slab is placed in the pool body 1, so as to control the water in the pool body 1 to completely submerge the track slab without exceeding the track slab too much, thereby saving water resources. The travel switch 25 is connected to a computer control program. When the floating ball 24 abuts against and triggers the upper travel switch 25, the solenoid valve 4 on the water supply pipe 3 is closed to stop supplying water to the pool body 1. A timer is arranged on the travel switch 25 above the floating ball 24. After the travel switch 25 above the floating ball 24 is triggered and reaches the time set by the timer, the solenoid valve 4 on the drain pipe 2 is opened to drain the pool body 1, thereby realizing the timed replacement of the pool water in the pool body 1.

[0029] Refer to Figure 2 and Figure 3 , a reduced-diameter ring sleeve 7 is fixedly arranged on one side of the partition plate 5 facing the bottom of the pool body 1. The diameter of the reduced-diameter ring sleeve 7 gradually decreases from the partition plate 5 facing the bottom of the pool body 1. A plurality of reduced-diameter ring sleeves 7 are arranged corresponding to the through holes 6. In this embodiment, the through holes 6 are circular holes. The reduced-diameter ring sleeve 7 is integrally frustum-shaped. In this embodiment, the reduced-diameter ring sleeve 7 is made of rubber material. The form of reducing the diameter can reduce the probability that the dust and debris below the partition plate 5 return to the upper part of the partition plate 5 through the through holes 6, thereby further reducing the probability of the dust and debris hitting the track slab. The rubber reduced-diameter ring sleeve 7 can slow down the impact force of the dust and debris through deformation when the dust and debris hit, thereby reducing the probability of the reduced-diameter ring sleeve 7 being damaged by the impact. At the same time, it can also make the through holes 6 of the reduced-diameter ring sleeve 7 be squeezed through deformation, thereby further reducing the probability of the dust and debris returning to the upper part of the partition plate 5 through the through holes 6.

[0030] Refer to Figure 2, a filter screen is installed at the outlet of the drain pipe 2 inside the pool body 1. A waste discharge port 8 is opened at the bottom of the pool body 1. A sealing cover plate 9 is detachably installed at the waste discharge port 8 through bolts. A sealing ring is embedded on the sealing cover plate 9. When the sealing cover plate 9 is installed at the waste discharge port 8, the sealing ring is wrapped outside the waste discharge port 8. In this embodiment, the waste discharge port 8 is opened at the center of the pool body 1, and the bottom of the pool body 1 is inclined towards the waste discharge port 8 at the center of the pool body 1. The setting of the filter screen can reduce the probability of large-particle dust and debris entering the drain pipe 2, thereby reducing the probability of the drain pipe 2 being blocked by large-particle dust and debris. The waste discharge port 8 is used to discharge large-particle sundries in the pool body 1. The inclination of the bottom of the pool body 1 guides the large-particle dust and sundries to the waste discharge port 8, which facilitates the discharge of large-particle dust and sundries after the waste discharge port 8 is opened. At the same time, the guiding can reduce the probability of sundries blocking the drain pipe 2 at the filter screen.

[0031] Refer to Figure 4 and Figure 5 , a partition board 10 is arranged inside the partition plate 5. A number of partition boards 10 are provided. The partition boards 10 are arranged in a whole row corresponding to the through holes 6 on the partition plate 5. In this embodiment, a partition board 10 is arranged at each through hole 6. The partition board 10 closes or opens the through hole 6 by sliding. A sliding groove 14 for the partition board 10 to slide is opened on the partition plate 5 on the side of the through hole 6 facing the length direction of the pool body 1. An insertion slot 15 is opened on the partition plate 5 on the other side of the through hole 6 facing the length direction of the pool body 1. When the partition board 10 opens the through hole 6, the partition board 10 is embedded and stored in the sliding groove 14. When the partition board 10 slides to close the through hole 6, the partition board 10 is inserted into the insertion slot 15 to improve the sealing effect of the closure; the water-cultivation time is relatively long, and when a large amount of dust and debris accumulate under the partition plate 5 during the water-cultivation process, cleaning the dust and debris will drain all the water in the pool body 1. Closing the through hole 6 by the partition board 10 can temporarily separate the upper and lower parts of the partition plate 5, so that the discharge of water above the partition plate 5 can be reduced when discharging dust and debris under the partition plate 5, and there is no need to drain all the water in the entire pool body 1 when cleaning the dust and debris, thereby saving resources.

[0032] Refer to Figure 4 and Figure 5, a number of driving rods 11 are slidably arranged in the partition plate 5. In this embodiment, the driving rods 11 slide along the length direction of the pool body 1. The number of driving rods 11 are evenly distributed along the width direction of the pool body 1, and the driving rods 11 are parallel to each other. A number of dial rods 16 are fixedly arranged on the driving rods 11. The number of the dial rods 16 is the same as that of the same row of partition plates 10. An abutting rod 17 is fixedly arranged on the partition plate 10. A spring 18 is placed in the sliding groove 14. The elastic force of the spring 18 drives the partition plate 10 to slide towards the bottom of the sliding groove 14. The abutting rod 17 abuts against the side of the dial rod 16 away from the bottom of the sliding groove 14. The sliding of the driving rod 11 drives the partition plates 10 in the same row to open or close the through holes 6. The driving rod 11 can drive the partition plates 10 in the same row to conveniently open or close the through holes 6 in the same row synchronously; A connecting rod 12 is slidably arranged in the partition plate 5. The connecting rod 12 is connected to all the driving rods 11. The connecting rod 12 can drive all the driving rods 11 synchronously, so as to realize the synchronous opening or closing of all the through holes 6, and further improve the ease of operation of opening or closing the through holes 6; A push-pull rod 13 is fixedly arranged on the connecting rod 12. The push-pull rod 13 penetrates through the pool body 1 and extends out of the pool body 1. By driving the push-pull rod 13 to slide towards the outside of the pool body 1, the connecting rod 12 can be driven to slide so as to drive all the driving rods 11. The arrangement of the push-pull rod 13 can facilitate the driving of the connecting rod 12. The push-pull rod 13 can be pushed and pulled manually or can be driven to push and pull by setting an electric push cylinder; The driving rod 11 drives the abutting rod 17 through the dial rod 16, thereby driving the partition plate 10 to slide to close the through hole 6. When the pulling force on the push-pull rod 13 is removed, the spring 18 pulls the partition plate 10 to slide and be received in the sliding groove 14 by elastic force. At the same time, the abutting rod 17 drives the dial rod 16 to slide, so that the driving rod 11 is reset.

[0033] The implementation principle of the embodiments of this application is as follows: First, open the impurity discharge port 8 to clean the pool body 1, then cover and close the impurity discharge port 8 with the sealing cover plate 9. Place the track slab in the pool body 1 and adjust the height position of the travel switch 25 in the pool body 1 according to the height of the track slab after placement. The height of the travel switch 25 is higher than the highest point after the track slab is placed, so as to ensure that the pool water can completely submerge the track slab. Then, open the solenoid valve 4 on the water supply pipe 3 to inject pool water into the pool body 1. When the pool water completely submerges the track slab and the floating ball 24 hits the travel switch 25, close the solenoid valve 4 on the water supply pipe 3 to stop water supply, and start timing at the same time. When the preset time is reached, open the solenoid valve 4 on the drain pipe 2 to drain the pool body 1, and close the solenoid valve 4 on the drain pipe 2 after the drainage is completed. Open the solenoid valve 4 on the water supply pipe 3 to start supplying water to the pool body 1 again; during this period, the dust and debris on the surface of the track slab will fall into the lower part of the partition plate 5 through the through holes 6. When there is a large amount of dust and debris stacked under the partition plate 5, drive the push-pull rod 13 to slide towards the outside of the pool body 1, so as to drive the blocking partition 10 to close the through hole 6 and completely separate the upper and lower parts of the partition plate 5. Then, first drain the water under the partition plate 5 through the drain pipe 2, and then clean the dust and debris under the partition plate 5 by opening the impurity discharge port 8. Then drive the push-pull rod 13 to slide towards the inside of the pool body 1 by a certain distance to reset the blocking partition 10 to open the through hole 6, and supplement the water discharged during the cleaning of the dust and debris to the pool body 1 through the water supply pipe 3. Embodiment 2

[0034] The difference between this embodiment and Embodiment 1 lies in the opening and closing method of the blocking partition 10 and the driving method of the driving rod 11. Refer to Figure 6 and Figure 7 , a blocking partition 10 is arranged in the partition plate 5. A number of blocking partitions 10 are arranged. The blocking partitions 10 are arranged in a whole row corresponding to the through holes 6 on the partition plate 5. In this embodiment, five blocking partitions 10 are arranged at each through hole 6. The five blocking partitions 10 close or open the through hole 6 through sliding rotation. A sliding groove 14 is opened on the partition plate 5 in the circumferential direction of the through hole 6. The five blocking partitions 10 are all triangular blocks. One corner of the blocking partition 10 is hinged in the sliding groove 14. A driving ring 19 is rotatably arranged in the sliding groove 14. An inclined guide groove 20 is opened on the driving ring 19 corresponding to the blocking partition 10. A guide rod 21 is fixedly arranged on one corner of the blocking partition 10. The guide rod 21 is slidably arranged in the inclined guide groove 20. By rotating the driving ring 19, the five blocking partitions 10 are driven to synchronously slide and rotate, so as to realize the opening or closing of the through hole 6; the water curing time is relatively long, and during the water curing process, when there is a large amount of dust and debris accumulated under the partition plate 5, cleaning the dust and debris will drain all the water in the pool body 1. By closing the through hole 6 with the blocking partition 10, the upper and lower parts of the partition plate 5 can be temporarily separated, so that when discharging the dust and debris under the partition plate 5, the discharge of the water above the partition plate 5 can be reduced, and there is no need to drain all the water in the pool body 1 when cleaning the dust and debris, thus saving resources.

[0035] Referring to Figure 6 and Figure 7 , a number of drive rods 11 are slidably arranged in the partition plate 5. In this embodiment, the drive rods 11 slide along the length direction of the pool body 1. The number of drive rods 11 are evenly distributed along the width direction of the pool body 1. The number of drive rods 11 are parallel to each other. A number of drive teeth 22 are fixedly arranged on the drive rods 11 along the length direction of the drive rods 11. An external drive gear ring 23 is sleeved outside the drive ring 19. The drive teeth 22 on the drive rods 11 are all meshed with the external drive gear ring 23 on the same row of drive rings 19. The drive rods 11 slide to drive the partition plates 10 in the same row to open or close the through holes 6. The drive rods 11 can simultaneously drive the partition plates 10 in the same row to conveniently open or close the through holes 6 in the same row; a connecting rod 12 is slidably arranged in the partition plate 5. The connecting rod 12 connects all the drive rods 11. The connecting rod 12 can synchronously drive all the drive rods 11, so as to realize the synchronous opening or closing of all the through holes 6, and further improve the ease of operation of opening or closing the through holes 6; a push-pull rod 13 is fixedly arranged on the connecting rod 12. The push-pull rod 13 penetrates through the pool body 1 and extends outside the pool body 1. By driving the push-pull rod 13 to slide in the direction outside the pool body 1, the connecting rod 12 can be driven to slide so as to drive all the drive rods 11. The arrangement of the push-pull rod 13 can conveniently drive the connecting rod 12. The push-pull rod 13 can be pushed and pulled manually, or can be pushed and pulled by setting an electric push cylinder; the drive rod 11 drives the external drive gear ring 23 to rotate through the drive teeth 22, and drives the partition plate 10 to rotate and slide to close the through hole 6 through the inclined guide groove 20 on the external drive gear ring 23. When the push-pull rod 13 is pushed by a force towards the inside of the pool body 1, the drive rod 11 drives the external drive gear ring 23 to rotate through the drive teeth 22, and drives the partition plate 10 to rotate and slide to open the through hole 6 through the inclined guide groove 20 on the external drive gear ring 23; the structure of this embodiment is more complex than that of the first embodiment, but in this embodiment, multiple partition plates 10 are selected to rotate and slide to open or close the through holes 6. Compared with the partition plates 10 in the first embodiment, the required sliding space is smaller.

[0036] The implementation principle of the embodiments of this application is as follows: The cooperation between the overhead crane 0 and the pool body 1 is as follows: When it is necessary to grab the track slab into one of the pool bodies 1, the water in the pool body 1 needs to be drained through the water supply and drainage system and pumped into the pool body 1 filled with track slabs. Then, use the overhead crane 0 to fill the track slabs into the pool body 1 whose water has been drained. Subsequently, the above operations will not be repeated. First, open the impurity discharge port 8 to clean the pool body 1, then close the impurity discharge port 8 by covering it with the sealing cover plate 9. Place the track slab in the pool body 1 and adjust the height position of the travel switch 25 in the pool body 1 according to the height after the track slab is placed. The height of the travel switch 25 is higher than the highest point after the track slab is placed, so as to ensure that the pool water can completely submerge the track slab. Then, open the solenoid valve 4 on the water supply pipe 3 to inject pool water into the pool body 1. When the pool water completely submerges the track slab and the float ball 24 hits the travel switch 25, close the solenoid valve 4 on the water supply pipe 3 to stop water supply, and start timing at the same time. When the preset time is reached, open the solenoid valve 4 on the drain pipe 2 to drain the pool body 1. After the drainage is completed, close the solenoid valve 4 on the drain pipe 2, and open the solenoid valve 4 on the water supply pipe 3 to start supplying water to the pool body 1 again; During this period, the dust and debris on the surface of the track slab will fall into the space below the partition plate 5 through the through holes 6. When there is a large amount of dust and debris stacked below the partition plate 5, drive the push rod 13 to slide towards the outside of the pool body 1, thereby driving the blocking partition 10 to close the through holes 6 to completely separate the upper and lower parts of the partition plate 5. Then, first drain the water below the partition plate 5 through the drain pipe 2, and then clean the dust and debris below the partition plate 5 by opening the impurity discharge port 8. Then, drive the push rod 13 to slide towards the inside of the pool body 1 by a certain distance to reset the blocking partition 10 to open the through holes 6, and supplement the water discharged during the cleaning of the dust and debris to the pool body 1 through the water supply pipe 3.

[0037] It should be noted that the above embodiments are only used to illustrate this application and do not limit the technical solutions described in this application. Although this specification has described this application in detail with reference to the above embodiments, those of ordinary skill in the art should understand that those skilled in the technical field can still modify this application or make equivalent substitutions. All technical solutions and their improvements that do not depart from the spirit and scope of this application shall be covered within the scope of the claims of this application.

Claims

1. An intelligent track slab water curing system for entering and exiting a pool and automatically supplying and draining water, comprising a pool body (1). A drain pipe (2) is connected to the side wall of the pool body (1) near the bottom, and a water supply pipe (3) is connected to the side wall of the pool body (1) near the top. Solenoid valves (4) are installed on both the drain pipe (2) and the water supply pipe (3), and it is characterized in that: A partition plate (5) is arranged near the bottom of the pool body (1). The partition plate (5) divides the pool body (1) into upper and lower layers, and a number of through holes (6) are arranged in a whole row on the partition plate (5).

2. The intelligent water curing system for track slabs with automatic access to and drainage from the water pool according to claim 1, wherein: A reduced-diameter ring sleeve (7) is fixedly arranged on the side of the partition plate (5) facing the bottom of the pool body (1). The diameter of the reduced-diameter ring sleeve (7) gradually decreases from the partition plate (5) towards the bottom of the pool body (1). A number of reduced-diameter ring sleeves (7) are provided and are arranged corresponding to the through holes (6).

3. The intelligent track slab water curing system for entering and leaving the water tank and automatically supplying and draining water according to claim 2, characterized in that: A waste discharge port (8) is arranged at the bottom of the pool body (1), and a sealing cover plate (9) is detachably installed at the waste discharge port (8).

4. An intelligent water curing system for track slabs with automatic access to and drainage from the water pool according to claim 3, characterized in that: The bottom of the pool body (1) slopes towards the waste discharge port (8).

5. The intelligent water curing system for track slabs with automatic access to and drainage from the water tank according to claim 4, characterized in that: A blocking plate (10) is arranged inside the partition plate (5). A number of blocking plates (10) are provided and are arranged corresponding to the through holes (6). The blocking plate (10) slides to close or open the through hole (6).

6. The intelligent track slab water curing system for entering and leaving the water tank and automatically supplying and draining water according to claim 5, characterized in that: A number of driving rods (11) are slidably arranged inside the partition plate (5). The driving rods (11) slide in parallel inside the partition plate (5), and the driving rods (11) slide to drive the blocking plates (10) in the same row to open or close the through holes (6).

7. An intelligent water curing system for track slabs with automatic access to and drainage from a pool, according to claim 6, characterized in that: A connecting rod (12) is slidably arranged inside the partition plate (5), and the connecting rod (12) connects all the driving rods (11).

8. An intelligent water curing system for track slabs with automatic water inlet, outlet and drainage according to claim 7, characterized in that: A push-pull rod (13) is fixedly arranged on the connecting rod (12), and the push-pull rod (13) penetrates through the pool body (1) and extends outside the pool body (1).

9. The intelligent track slab water curing system for entering and exiting the water pool and automatically supplying and draining water according to claim 1, characterized in that: A floating ball (24) is slidably arranged on the side wall of the pool body (1). A travel switch (25) is arranged above the floating ball (24), and the travel switch (25) is slidably arranged inside the pool body (1).

10. An intelligent water curing system for track slabs with automatic water inlet, outlet and water supply and drainage according to claim 9, characterized in that: An overhead crane (0) is installed above the pool body (1). The overhead crane (0) sends the track plate into or out of the pool body (1). The cooperation between the overhead crane (0) and the pool body (1) is as follows: when it is necessary to grab the track plate into one of the pool bodies (1), the water in this pool body (1) needs to be automatically drained through the water supply and drainage system and pumped into the pool body (1) filled with track plates, and then the overhead crane automatically places the track plates into the pool body (1) from which the water has been drained.

Citation Information

Patent Citations

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