Fixed T-shaped beam maintenance device facilitating construction waste water recycling
By designing a fixed, easy-to-construct, wastewater reuse T-beam curing device, the problems of water waste and construction difficulties during the precast beam spraying process were solved, realizing the recycling of wastewater and the convenience of construction.
Patent Information
- Application Number
- CN202511559857.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-29
- Publication Date
- 2025-11-28
Smart Images

Figure CN121018740A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of concrete beam maintenance device, and particularly relates to a fixed type T-shaped beam maintenance device with easy construction and wastewater recycling. BACKGROUND
[0002] The prefabricated beam maintenance spraying device is a device specially used for the maintenance of the prefabricated beam, which sprays water mist or maintenance agent to maintain the prefabricated beam, so as to improve the strength and durability thereof, and is widely used in the prefabricated beam processing field. SUMMARY
[0003] The present application aims to provide a fixed type T-shaped beam maintenance device with easy construction and wastewater recycling to solve the above problems.
[0004] To achieve the above-mentioned purpose, the present application provides the following scheme: a fixed type T-shaped beam maintenance device with easy construction and wastewater recycling, comprising:
[0005] A base pool is provided with a beam bearing platform above, the beam bearing platform is used for placing a T-shaped beam, and a drainage device is arranged on both sides of the beam bearing platform and communicates with the inside of the base pool;
[0006] A water spraying assembly is provided, which comprises a full-length water pipe, the full-length water pipe communicates with a water supply mechanism and a wastewater supply mechanism, a plurality of rotating water pipes are arranged on both sides of the full-length water pipe, a plurality of water spraying pipes are respectively connected to the rotating water pipes, the water spraying pipes are arranged on both sides of the beam bearing platform, when the rotating water pipes drive the water spraying pipes to be in a vertical state, the water spraying pipes spray water to the surface of the T-shaped beam, and when the rotating water pipes drive the water spraying pipes to be in a prostrate state, the water spraying pipes are used to avoid interference with the taking and placing of the T-shaped beam.
[0007] Preferably, a plurality of support short columns are vertically and fixedly connected in the base pool, the top of the support short columns is fixedly connected with a pool top platform, the beam bearing platform is fixedly connected to the pool top platform, and the drainage device is arranged between the pool top platform and the base pool.
[0008] Preferably, the drainage device comprises two groups of filter screens, the top of the pool top platform and the top of the two opposite inner walls of the base pool are respectively provided with a placing groove, the two filter screens are respectively fixedly connected between the pool top platform and the base pool, and the filter screens are matched with the placing grooves.
[0009] Preferably, the top of the pool top platform is provided with two groups of drainage slopes, the two drainage slopes are respectively located on the two sides of the beam pile cap, and the bottom ends of the two drainage slopes are respectively correspondingly provided with the two filter screens.
[0010] Preferably, the rotating water pipe assembly comprises a longitudinal pipe fixedly connected to the pool top platform and located inside the beam pile cap, two ends of the longitudinal pipe are respectively connected to the base pool and the water supply mechanism, and a plurality of longitudinal transverse pipes are connected to the side wall of the longitudinal pipe, the longitudinal transverse pipes are symmetrically distributed on the two sides of the longitudinal pipe, and one end of the longitudinal transverse pipe away from the longitudinal pipe penetrates the side wall of the beam pile cap and is connected to the water spraying pipe through a rotating drive mechanism.
[0011] Preferably, the rotating drive mechanism comprises an L-shaped bend pipe and a first rotating sleeve, one end of the L-shaped bend pipe is rotatably connected to one end of the longitudinal transverse pipe away from the longitudinal pipe through the first rotating sleeve, the other end of the L-shaped bend pipe is connected to the water spraying pipe, a first rotating shaft fixing plate is fixedly arranged on the longitudinal transverse pipe, a first electric rotating shaft is fixedly connected to the first rotating shaft fixing plate, a first gear is drivingly connected to the output shaft of the first electric rotating shaft, a second gear is fixedly arranged on one end of the L-shaped bend pipe close to the longitudinal transverse pipe, and the first gear is engaged with the second gear.
[0012] Preferably, a second rotating drive mechanism for driving the water spraying pipe to rotate around the water spraying pipe axis is arranged between the L-shaped bend pipe and the water spraying pipe, the second rotating drive mechanism comprises a second rotating sleeve, one end of the L-shaped bend pipe away from the longitudinal transverse pipe is rotatably connected to the water spraying pipe through the second rotating sleeve, a second rotating shaft fixing plate is fixedly arranged on one end of the L-shaped bend pipe close to the water spraying pipe, a second electric rotating shaft is fixedly connected to the second rotating shaft fixing plate, a fourth gear is fixedly arranged on the output end of the second electric rotating shaft, a third gear is fixedly arranged on the water spraying pipe, and the third gear is engaged with the fourth gear.
[0013] Preferably, the water supply mechanism comprises an external water inlet pipe, one end of the external water inlet pipe is connected to the water inlet of an external water pump, and the water outlet of the external water pump is connected to one end of the longitudinal pipe.
[0014] Preferably, the waste water supply mechanism comprises a waste water pump, the water outlet of the waste water pump is connected to one end of the longitudinal pipe away from the external water pump, one end of a waste water inlet pipe is connected to the water inlet of the waste water pump, and the other end of the waste water inlet pipe is connected to the base pool.
[0015] Preferably, the side wall of the base pool is sequentially fixed with a second water level sensor and a first water level sensor from top to bottom, and the second water level sensor and the first water level sensor are respectively used for detecting the upper limit and the lower limit of the water level in the base pool.
[0016] Compared with the prior art, the present application has the following advantages and technical effects: the present application sets the rotating water pipe, drives the water pipe to be in the fallen state, and to a certain extent, facilitates the precast beam hoisting and on-site construction, and through placing a certain mold on the beam pile cap, the support can realize the precast beam pouring and curing on the beam pile cap. Meanwhile, the base pool of the present application can recycle the waste water flowing down during the curing and spraying, and through the recycling of the waste water, the beam is sprayed and cured, which greatly saves the water resources. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0018] Figure 1 It is a front view of the curing device of the present application;
[0019] Figure 2 It is a back view of the curing device of the present application;
[0020] Figure 3 It is a structural schematic view of the base pool of the present application;
[0021] Figure 4 It is a structural schematic view of the rotating water pipe of the present application;
[0022] Figure 5 It is a structural schematic view of the full-length water pipe of the present application;
[0023] Figure 6 It is a connection structure schematic view between the full-length horizontal pipe, the L-shaped bend pipe and the water spraying pipe of the present application;
[0024] Wherein, 1, base pool; 2, first water level sensor; 3, second water level sensor; 4, filter screen; 5, drainage slope; 6, waste water inlet pipe; 7, waste water pump; 8, through water pipe; 81, through longitudinal pipe; 82, through horizontal pipe; 9, beam pile cap; 10, first electric rotating shaft; 11, first gear; 12, second gear; 13, first rotating sleeve; 14, first rotating shaft fixing plate; 15, L-shaped bend pipe; 16, second rotating shaft fixing plate; 17, second rotating sleeve; 18, third gear; 19, fourth gear; 20, second electric rotating shaft; 21, water spraying pipe; 22, spray head; 23, external water pump; 24, external inlet pipe; 25, support short column; 26, pool top platform; 27, first hole; 28, second hole; 29, first rotating shaft; 30, second rotating shaft; 31, third rotating shaft; 32, fourth rotating shaft. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.
[0026] In order to make the above-mentioned purposes, features and advantages of the present application more obvious and easy to understand, the present application will be further described in detail below with reference to the drawings and specific embodiments.
[0027] Reference Figures 1-6 The present application provides a fixed easy-to-construct wastewater recycling T-shaped beam maintenance device, comprising:
[0028] The base pool 1 is provided with a beam pile cap 9 above, the beam pile cap 9 is used for placing the T-shaped beam, and the both sides of the beam pile cap 9 are provided with drainage devices which are communicated with the inside of the base pool 1.
[0029] The water spraying assembly comprises a through water pipe 8, the through water pipe 8 is communicated with the water supply mechanism and the waste water supply mechanism, the both sides of the through water pipe 8 are provided with a plurality of rotating water pipes, the plurality of rotating water pipes are respectively communicated with a plurality of water spraying pipes 21, the plurality of water spraying pipes 21 are respectively arranged on the both sides of the beam pile cap 9, when the rotating water pipe drives the water spraying pipe 21 to be in the vertical state, the water spraying pipe 21 is used for spraying water to the surface of the T-shaped beam, and when the rotating water pipe drives the water spraying pipe 21 to be in the horizontal state, it is used for avoiding the interference of the water spraying pipe 21 to the taking and placing of the T-shaped beam.
[0030] The main function of the base water tank 1 is to store the spray liquid generated during the spray curing process; the main function of the drainage component is to guide the spray liquid into the base water tank 1; the main function of the rotating water pipe component is to drive the spray pipe 21 to rotate in the vertical plane, so that the spray pipe 21 is in a folded state when the T-beam is placed to avoid interference with the construction operation, and in a vertical state during the spraying process to facilitate spraying on the surface of the T-beam; the main function of the water supply mechanism is to supply water to the long water pipe 8 to realize the spraying of the spray pipe 21; the main function of the wastewater supply mechanism is to pass the spray liquid stored in the base water tank 1 into the long water pipe 8 to realize the secondary use of the spray liquid. Overall, by setting the rotating water pipe component, the invention facilitates the hoisting of precast beams and on-site construction to a certain extent by driving the water pipe to a folded state. By placing a certain mold on the beam support platform, the precast beam can be cast and cured on the beam support platform. Meanwhile, the base water tank of this invention can recycle and reuse the wastewater that flows down during the maintenance spraying. By recycling the wastewater, the beam can be sprayed and maintained, which greatly saves water resources.
[0031] Further optimize the plan, such as Figure 1 As shown, a number of nozzles 22 are connected to the side wall of the water spray pipe 21, and the nozzles 22 are located on the same straight line parallel to the axis of the water spray pipe 21.
[0032] like Figure 1 As shown, the spray liquid is sprayed onto the surface of the T-beam through several nozzles 22.
[0033] In a further optimized design, several short supporting columns 25 are vertically fixedly connected inside the base pool 1. A pool top platform 26 is fixedly connected to the top of the short supporting columns 25. A beam support 9 is fixedly connected to the pool top platform 26. A drainage component is installed between the pool top platform 26 and the base pool 1.
[0034] like Figure 3 As shown, the top platform 26 of the water tank is supported in the base water tank 1 by several short support columns 25, so as to realize the placement of the beam support platform 9 and provide an operating platform for the prefabrication and spray curing of T-beams.
[0035] Further optimization of the scheme: the drainage component includes two sets of filter screens 4. Placement slots are respectively opened on the top two sides of the top platform 26 of the water tank and the top of the two opposite inner walls of the base water tank 1. The two filter screens 4 are respectively fixedly connected between the top platform 26 of the water tank and the base water tank 1, and the filter screens 4 are compatible with the placement slots.
[0036] To further optimize the design, two sets of drainage slopes 5 are provided on the top of the water tank platform 26. The two drainage slopes 5 are located on both sides of the beam support 9, and the bottom ends of the two drainage slopes 5 are respectively set with two filter screens 4.
[0037] like Figure 1As shown, filter screens 4 are installed on both sides of the top platform 26 of the water tank. The spray liquid sprayed from the spray pipe 21 flows down the T-beam and then flows along the drainage slopes 5 on both sides to the filter screens 4, and then flows into the base water tank 1 through the filter screens 4. The filter screens 4 can filter impurities and prevent too many impurities from entering the base water tank 1.
[0038] Further optimization of the scheme: the rotating water pipe fitting includes a longitudinal pipe 81, which is fixedly connected to the top platform 26 of the water tank and located inside the beam support 9. The two ends of the longitudinal pipe 81 are respectively connected to the base water tank 1 and the water supply mechanism. Several longitudinal horizontal pipes 82 are connected to the side wall of the longitudinal pipe 81. The several longitudinal horizontal pipes 82 are symmetrically distributed on both sides of the longitudinal pipe 81. The ends of the several longitudinal horizontal pipes 82 away from the longitudinal pipe 81 pass through the side wall of the beam support 9 and are connected to several spray pipes 21 through the rotating drive mechanism.
[0039] like Figure 5 As shown, after water enters the longitudinal pipe 81, it can sequentially enter each longitudinal horizontal pipe 82, and finally be sprayed out from each spray pipe 21.
[0040] The scheme is further optimized. The rotary drive mechanism includes an L-shaped bend 15 and a first rotating assembly 13. One end of the L-shaped bend 15 is rotatably connected to the end of the through horizontal pipe 82 away from the through vertical pipe 81 through the first rotating assembly 13. The other end of the L-shaped bend 15 is connected to the spray pipe 21. A first rotating shaft fixing plate 14 is fixedly sleeved on the through horizontal pipe 82. A first electric rotating shaft 10 is fixedly connected to the first rotating shaft fixing plate 14. The output shaft of the first electric rotating shaft 10 is driven by a first gear 11. A second gear 12 is fixedly sleeved on the end of the L-shaped bend 15 near the through horizontal pipe 82. The first gear 11 and the second gear 12 mesh with each other.
[0041] Further optimize the plan, such as Figure 6 As shown, the horizontal end of the L-shaped bend 15 is fixedly fitted with a second rotating shaft 30, and the end of the through-length longitudinal tube 81 away from the through-length transverse tube 82 is fixedly fitted with a first rotating shaft 29. The first rotating shaft 29 and the second rotating shaft 30 are respectively rotatably connected in the first rotating assembly 13, thereby realizing the rotational connection between the through-length transverse tube 82 and the L-shaped bend 15 through the first rotating assembly 13.
[0042] like Figure 4 and Figure 6As shown, in this embodiment, the first electric rotating shaft 10 is driven by a motor. When it is necessary to make the water spray pipe 21 lie down, the first electric rotating shaft 10 can be controlled to rotate, thereby driving the L-shaped bend 15 to rotate through the first gear 11 and the second gear 12. This causes the other end of the L-shaped bend 15 to deflect around the axis of the long horizontal pipe 82, thereby causing the water spray pipe 21 to deflect around the axis of the long horizontal pipe 82 by a certain angle, achieving the lying down state or even a horizontal state for the water spray pipe 21. Similarly, controlling the first electric rotating shaft 10 to reverse the direction can drive the water spray pipe 21 to deflect in the opposite direction by a certain angle, making it vertical.
[0043] In a further optimized design, a second rotary drive mechanism is provided between the L-shaped bend 15 and the water spray pipe 21 to drive the water spray pipe 21 to rotate around its axis. The second rotary drive mechanism includes a second rotating assembly 17. The end of the L-shaped bend 15 away from the continuous horizontal pipe 82 is rotatably connected to the water spray pipe 21 through the second rotating assembly 17. The end of the L-shaped bend 15 near the water spray pipe 21 is fixedly fitted with a second rotating shaft fixing plate 16. A second electric rotating shaft 20 is fixedly connected to the second rotating shaft fixing plate 16. A fourth gear 19 is fixedly fitted at the output end of the second electric rotating shaft 20. A third gear 18 is fixedly fitted on the water spray pipe 21. The third gear 18 meshes with the fourth gear 19.
[0044] Further optimize the plan, such as Figure 6 As shown, the vertical end of the L-shaped bend 15 is fixedly fitted with a third rotating shaft 31, and the bottom end of the water spray pipe 21 is fixedly fitted with a fourth rotating shaft 32. The third rotating shaft 31 and the fourth rotating shaft 32 are respectively rotatably connected in the second rotating assembly 17, thereby realizing the rotational connection between the L-shaped bend 15 and the water spray pipe 21 through the second rotating assembly 17.
[0045] like Figure 4 and Figure 6 As shown, during the spraying process, the second electric rotating shaft 20 reciprocates at a certain angle, thereby driving the fourth gear 19 to cause the third gear 18 to reciprocate at a certain angle, which in turn drives the water spray pipe 21 to deflect left and right within the range of the moving angle. In this embodiment, the water spray pipe 21 drives the nozzle 22 to reciprocate within the angle range of 30° to 150° with the plane of the T-beam, so as to spray a larger area.
[0046] The scheme is further optimized. The water supply mechanism includes an external water inlet pipe 24. One end of the external water inlet pipe 24 is connected to the inlet of an external water pump 23, and the outlet of the external water pump 23 is connected to one end of a long longitudinal pipe 81.
[0047] like Figure 2 and Figure 3As shown, a second hole 28 is provided on the top of the water tank platform 26 near the external water pump 23. One end of the external water inlet pipe 24 is connected to an external water source, and the other end of the external water inlet pipe 24 passes through the second hole 28 and is connected to the external water pump 23. The external water pump 23 is installed on the top of the water tank platform 26 near the second hole 28.
[0048] Further optimization of the scheme: the wastewater supply mechanism includes a wastewater pump 7. The outlet of the wastewater pump 7 is connected to the end of the long longitudinal pipe 81 away from the external pump 23. The inlet of the wastewater pump 7 is connected to one end of the wastewater inlet pipe 6. The other end of the wastewater inlet pipe 6 is connected to the base water tank 1.
[0049] like Figure 1 and Figure 3 As shown, a first hole 27 is provided on the top of the water tank platform 26 near the wastewater pump 7. One end of the wastewater inlet pipe 6 is placed at the bottom of the base water tank 1, and the other end of the wastewater inlet pipe 6 passes through the first hole 27 and is connected to the wastewater pump 7. The wastewater pump 7 is installed on the top of the water tank platform 26 near the first hole 27.
[0050] In a further optimized design, a second water level sensor 3 and a first water level sensor 2 are fixedly connected from top to bottom on the side wall of the base pool 1. The second water level sensor 3 and the first water level sensor 2 are used to detect the upper limit and lower limit of the water level in the base pool 1, respectively.
[0051] The working process of this embodiment is as follows: After placing the T-beam to be cured on the beam support 9, the curing device is turned on. The first electric rotating shaft 10 will slowly start to rotate, causing the L-shaped bend 15 to rotate, so that the water spray pipe 21 rotates from being parallel to the ground to being perpendicular to the ground. After the water spray pipe 21 is perpendicular to the ground, the second electric rotating shaft 20 starts to work, causing the water spray pipe 21 to reciprocate within a range of 30° to 150° with the beam plane. At the beginning of the spray curing, the external water pump 23 starts working first. The system supplies external water into the longitudinal pipe 81, which then flows through the transverse pipe 82, L-shaped bend 15, and spray pipe 21 from the nozzle 22. The wastewater from the spray flows through the drainage slope 5 and is filtered by the filter screen 4 before flowing into the base water tank 1. When the water level in the base water tank 1 is higher than the second water level sensor 3, the external water pump 23 stops working, and the wastewater pump 7 starts working, pumping water from the base water tank 1 into the longitudinal pipe 81 to continue spraying and maintenance. When the level of the recycled wastewater in the base water tank 1 is lower than the first water level sensor 2, the wastewater pump 7 stops working, and the external water pump 23 starts working, repeating this cycle to greatly improve the utilization rate of water resources.
[0052] In the description of this invention, it should be understood that the terms "longitudinal", "lateral", "up", "down", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this invention, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention.
[0053] The embodiments described above are merely preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Various modifications and improvements made by those skilled in the art to the technical solutions of the present invention without departing from the spirit of the present invention should fall within the protection scope defined by the claims of the present invention.
Claims
1. A fixed, easy-to-construct wastewater reuse T-beam curing device, characterized in that... ,include: A base water tank (1) is provided above the base water tank (1), and a beam support platform (9) is provided above the base water tank (1). The beam support platform (9) is used to place T-shaped beams. Drainage components are provided on both sides of the beam support platform (9), and the drainage components are connected to the interior of the base water tank (1). The sprinkler assembly includes a continuous water pipe (8) that connects a water supply mechanism and a wastewater supply mechanism. Several rotating water pipe fittings are provided on both sides of the continuous water pipe (8). Several rotating water pipe fittings are respectively connected to several spray pipes (21). Several spray pipes (21) are respectively provided on both sides of the beam support (9). When the rotating water pipe fittings drive the spray pipes (21) to be in a vertical state, the spray pipes (21) spray water onto the surface of the T-beam. When the rotating water pipe fittings drive the spray pipes (21) to be in a folded state, it is used to avoid the spray pipes (21) interfering with the picking and placing of the T-beam.
2. The fixed, easy-to-construct wastewater reuse T-beam curing device according to claim 1, characterized in that: The base pool (1) is vertically fixedly connected to several short support columns (25), and the top of the several short support columns (25) is fixedly connected to the top platform (26) of the pool. The beam support (9) is fixedly connected to the top platform (26) of the pool, and the drainage component is set between the top platform (26) of the pool and the base pool (1).
3. A fixed, easy-to-construct wastewater reuse T-beam curing device according to claim 2, characterized in that: The drainage component includes two sets of filter screens (4). Placement slots are respectively provided on the top two sides of the top platform (26) of the pool and the top of the two opposite inner walls of the base pool (1). The two filter screens (4) are respectively fixedly connected between the top platform (26) of the pool and the base pool (1), and the filter screens (4) are adapted to the placement slots.
4. A fixed, easy-to-construct wastewater reuse T-beam curing device according to claim 3, characterized in that: The top of the water tank platform (26) is provided with two sets of drainage slopes (5). The two drainage slopes (5) are located on both sides of the beam support (9), and the bottom ends of the two drainage slopes (5) are respectively set with the two filter screens (4).
5. A fixed, easy-to-construct wastewater reuse T-beam curing device according to claim 1, characterized in that: The rotating water pipe includes a longitudinal pipe (81), which is fixedly connected to the top platform (26) of the water tank and located inside the beam support (9). The two ends of the longitudinal pipe (81) are respectively connected to the base water tank (1) and the water supply mechanism. Several longitudinal horizontal pipes (82) are connected to the side wall of the longitudinal pipe (81). Several longitudinal horizontal pipes (82) are symmetrically distributed on both sides of the longitudinal pipe (81). The ends of several longitudinal horizontal pipes (82) away from the longitudinal pipe (81) pass through the side wall of the beam support (9) and are connected to several spray pipes (21) through the rotating drive mechanism.
6. A fixed, easy-to-construct wastewater reuse T-beam curing device according to claim 5, characterized in that: The rotary drive mechanism includes an L-shaped bend (15) and a first rotating assembly (13). One end of the L-shaped bend (15) is rotatably connected to the end of the through horizontal pipe (82) away from the through vertical pipe (81) through the first rotating assembly (13). The other end of the L-shaped bend (15) is connected to the water spray pipe (21). A first rotating shaft fixing plate (14) is fixedly sleeved on the through horizontal pipe (82). A first electric rotating shaft (10) is fixedly connected on the first rotating shaft fixing plate (14). The output shaft of the first electric rotating shaft (10) is driven by a first gear (11). A second gear (12) is fixedly sleeved on the end of the L-shaped bend (15) near the through horizontal pipe (82). The first gear (11) meshes with the second gear (12).
7. A fixed, easy-to-construct wastewater reuse T-beam curing device according to claim 6, characterized in that: A second rotary drive mechanism is provided between the L-shaped bend (15) and the water spray pipe (21) for driving the water spray pipe (21) to rotate around the axis of the water spray pipe (21). The second rotary drive mechanism includes a second rotating assembly (17). The end of the L-shaped bend (15) away from the long horizontal pipe (82) is rotatably connected to the water spray pipe (21) through the second rotating assembly (17). The end of the L-shaped bend (15) near the water spray pipe (21) is fixedly fitted with a second rotating shaft fixing plate (16). A second electric rotating shaft (20) is fixedly connected to the second rotating shaft fixing plate (16). A fourth gear (19) is fixedly fitted at the output end of the second electric rotating shaft (20). A third gear (18) is fixedly fitted on the water spray pipe (21). The third gear (18) meshes with the fourth gear (19).
8. A fixed, easy-to-construct wastewater reuse T-beam curing device according to claim 5, characterized in that: The water supply mechanism includes an external water inlet pipe (24), one end of which is connected to the inlet of an external water pump (23), and the outlet of the external water pump (23) is connected to one end of the longitudinal pipe (81).
9. A fixed, easy-to-construct wastewater reuse T-beam curing device according to claim 8, characterized in that: The wastewater supply mechanism includes a wastewater pump (7), the outlet of which is connected to the end of the longitudinal pipe (81) away from the external pump (23), the inlet of which is connected to one end of a wastewater inlet pipe (6), and the other end of the wastewater inlet pipe (6) is connected to the base pool (1).
10. A fixed, easy-to-construct wastewater reuse T-beam curing device according to claim 1, characterized in that: A second water level sensor (3) and a first water level sensor (2) are fixedly connected from top to bottom on the side wall of the base water tank (1). The second water level sensor (3) and the first water level sensor (2) are used to detect the upper limit and lower limit of the water level in the base water tank (1), respectively.