Intelligent beam field concrete precast beam plate steam curing chamber
By introducing movable auxiliary components, rotating seals, air intake boosters, and exhaust recovery components into the steam curing chamber for precast concrete beams and slabs, automated hoisting and steam recovery were achieved, solving the problems of hoisting hazards and sealing detection, and improving curing efficiency and safety.
Patent Information
- Application Number
- CN202511616293.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2045-11-06
AI Technical Summary
Existing precast concrete beam and slab steam curing chambers suffer from low efficiency and poor safety in terms of hoisting and sealing testing, which affects the curing effect and the safety of staff.
By employing movable auxiliary components, rotary seals, air intake boosters, and exhaust recovery components, and controlling servo motors and solenoid valves through a control box, automated hoisting, sealing, and steam recovery are achieved, ensuring the safe utilization of steam.
It improves the curing efficiency of precast concrete beams and slabs, avoids the dangers of hoisting, ensures the safe recovery of steam, and reduces safety hazards and maintenance costs.
Smart Images

Figure CN121062012B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of concrete precast beam slab maintenance, more specifically, relates to a kind of wisdom beam field concrete precast beam slab steaming chamber. BACKGROUND
[0002] The use of concrete precast beam slab in wisdom beam field uses steaming chamber, the core is to accelerate the hardening process of concrete by precise temperature and humidity control environment;Traditional natural maintenance needs more than 7 days, while the steaming chamber provides high temperature and humidity conditions by saturated steam, which significantly improves the speed of cement hydration reaction, and the design strength can reach more than 70% within 24-48 hours.
[0003] The current concrete precast beam slab steaming chamber also has the following problems:
[0004] 1. Generally, the concrete precast beam slab is first lifted by lifting machinery to one side of the steaming chamber, and then pushed into the steaming chamber, which affects the maintenance efficiency of the concrete precast beam slab, and there is a certain risk in lifting the concrete precast beam slab;
[0005] 2. Before the maintenance of the concrete precast beam slab, the sealing condition of the steaming chamber cannot be automatically detected, and when there is air leakage in the steaming chamber, the worker cannot know, which affects the recovery effect of the steam after use, and the steam discharged from the gap of the steaming chamber may injure the worker. SUMMARY
[0006] The present application relates to a kind of wisdom beam field concrete precast beam slab steaming chamber, which has movable auxiliary part, rotary sealing part, air inlet booster and exhaust recovery part;It improves the maintenance efficiency of the concrete precast beam slab, and also avoids the danger of lifting the concrete precast beam slab;Avoids steam injury to workers, reduces safety hazards, and also ensures that the steam in the sealing frame can be fully recovered and utilized through the steam recovery pipe;Solve the problem of certain risk in lifting the concrete precast beam slab and the sealing condition of the steaming chamber cannot be automatically detected.
[0007] The present application provides a kind of wisdom beam field concrete precast beam slab steaming chamber, including: sealing frame, movable auxiliary part, rotary sealing part, air inlet booster and exhaust recovery part;Two groups of circular through holes are formed in the top of the sealing frame, and a control box is fixedly installed on the front side of the sealing frame, and two rows of rollers are installed on the bottom of the sealing frame;The movable auxiliary part is installed on the sealing frame;The rotary sealing part is installed on the sealing frame;The air inlet booster is installed on the top of the sealing frame;The exhaust recovery part is installed on the top of the sealing frame.
[0008] In at least some embodiments, the movable auxiliary part comprises: mounting positioning seats, circular mounting rods, and movable auxiliary plates; the mounting positioning seats are provided in four, and the four mounting positioning seats are fixedly installed on the inner wall of the sealing frame; the circular mounting rods are provided in four, and the four circular mounting rods are slidingly installed on the four mounting positioning seats; the movable auxiliary plates are provided in two, and each movable auxiliary plate is fixedly installed at the bottom of two circular mounting rods, and the outer sides of the two movable auxiliary plates are in contact with the sealing frame.
[0009] In at least some embodiments, the movable auxiliary part further comprises: circular reset discs and spiral springs a; the circular reset discs are provided in four, and the four circular reset discs are fixedly installed outside the four circular mounting rods; the spiral springs a are provided in four, and the four spiral springs a are sleeved outside the four circular mounting rods, and the four spiral springs a are located between the four mounting positioning seats and the four circular reset discs.
[0010] In at least some embodiments, the rotary sealing part comprises: circular mounting shafts and rotary sealing plates; the circular mounting shafts are provided in two, and the two circular mounting shafts are rotatably installed on the sealing frame; the rotary sealing plates are provided in two, and the two rotary sealing plates are fixedly installed outside the two circular mounting shafts, and the inner sides of the two rotary sealing plates are further in contact with the two movable auxiliary plates.
[0011] In at least some embodiments, the rotary sealing part further comprises: servo motors and triangular pressing frames; the servo motors are provided in four, and the four servo motors are fixedly installed on the front and back sides of the sealing frame; the output shafts of every two servo motors are fixedly connected with a circular mounting shaft, and the four servo motors are electrically connected with the control box; the triangular pressing frames are provided in four, and every two triangular pressing frames are fixedly installed on a rotary sealing plate, and the four triangular pressing frames are located in the same central plane as the four circular mounting rods.
[0012] In at least some embodiments, the air inlet supercharging part comprises: a conical shell a, a steam inlet pipe, and a solenoid valve a; the conical shell a is fixedly installed at the top of the sealing frame; the steam inlet pipe is fixedly installed at the top of the conical shell a; the solenoid valve a is fixedly installed on the steam inlet pipe, and the solenoid valve a is electrically connected with the control box.
[0013] In at least some embodiments, the air inlet supercharging part further comprises: a detection supercharging pipe, a solenoid valve b, and an air pump; the detection supercharging pipe is fixedly installed on the left side of the conical shell a; the solenoid valve b is fixedly installed on the detection supercharging pipe, and the solenoid valve b is electrically connected with the control box; the air pump is fixedly installed at the top of the sealing frame, the output pipe of the air pump is fixedly connected with the detection supercharging pipe, and the air pump is electrically connected with the control box.
[0014] In at least some embodiments, the exhaust gas recovery part comprises: a conical cover b, a steam recovery pipe, a solenoid valve c and a detection exhaust pipe; the conical cover b is fixedly installed on the top of the sealing frame; the steam recovery pipe is fixedly installed on the top of the conical cover b; the solenoid valve c is fixedly installed on the steam recovery pipe, and the solenoid valve c is electrically connected with the control box; and the detection exhaust pipe is fixedly installed on the right side of the conical cover b.
[0015] In at least some embodiments, the exhaust gas recovery part further comprises: a solenoid valve d, a mounting guide seat, a circular guide shaft and a sealing disc; the solenoid valve d is fixedly installed on the detection exhaust pipe, and the solenoid valve d is electrically connected with the control box; the mounting guide seat is fixedly installed on the outer end of the detection exhaust pipe; the circular guide shaft is slidingly installed on the mounting guide seat; and the sealing disc is fixedly installed on the inner end of the circular guide shaft, and the sealing disc also contacts with the inner wall of the detection exhaust pipe.
[0016] In at least some embodiments, the exhaust gas recovery part further comprises: a spiral spring b, a control button and a pressing protrusion; the spiral spring b is sleeved on the outside of the circular guide shaft, and the spiral spring b is located between the mounting guide seat and the sealing disc; the control button is fixedly installed on the inside of the circular guide shaft, and the control button is electrically connected with the control box; and the pressing protrusion is fixedly installed on the top of the control button.
[0017] Compared with the prior art, the present application has the following beneficial effects:
[0018] 1、When the concrete precast beam slab needs to be maintained, the four servo motors are controlled to work through the control box, so that the two rotating sealing plates are automatically opened, and then the sealing frame is moved to the outside of the concrete precast beam slab by the two rows of rollers, so that the concrete precast beam slab does not need to be moved by external lifting machinery during maintenance, on the one hand, the maintenance efficiency of the concrete precast beam slab is improved, and on the other hand, the danger of lifting the concrete precast beam slab is also avoided; the setting of the four mounting positioning seats and the four circular mounting rods enables the two movable auxiliary plates to have up-down sliding effect;
[0019] In addition, when the two rotating sealing plates are in the open state, the four spiral springs a can drive the two movable auxiliary plates to move upward, so that there is a certain distance between the two movable auxiliary plates and the ground, so as to ensure that the two movable auxiliary plates will not hinder the normal movement of the sealing frame; when the two rotating sealing plates are in the closed state, the four triangular pressing frames can push the four circular mounting rods to move downward, so that the bottoms of the two movable auxiliary plates contact with the ground, on the one hand, the two movable auxiliary plates and the two rotating sealing plates increase the friction between them and the ground, so that the sealing frame is more stable after moving, on the other hand, the two movable auxiliary plates and the two rotating sealing plates play a role in auxiliary sealing, so as to avoid that the steam in the sealing frame is discharged through the bottom of the sealing frame.
[0020] 2. When the precast concrete beams and slabs require curing, the operator starts the air pump through the control box. When the air pump is working, external air enters the sealing frame through a set of circular through holes on the right side. When the two movable auxiliary plates and the two rotating sealing plates are not in full contact with the ground, the air in the sealing frame can be discharged through the gap between the ground and the two movable auxiliary plates and the two rotating sealing plates, so that the sealing disc basically does not move. When the two movable auxiliary plates and the two rotating sealing plates are in full contact with the ground, the air in the sealing frame can only be discharged through the detection exhaust pipe, causing the sealing disc to move.
[0021] Furthermore, when both movable auxiliary plates and two rotating sealing plates are fully in contact with the ground, the sealing disc moves, and the installation guide seat automatically presses the protrusion, putting the control button in the pressed state. When the control button is in the pressed state, the control box controls solenoid valves a and c to open, and also controls solenoid valves b and d to close, realizing automatic steam entry. When the air pump has been working for a certain period of time and the control button is not in the pressed state, the control box controls the air pump to stop working, and the alarm in the control box activates, automatically prompting staff to clean up debris on the ground or assist in sealing the gaps at the two movable auxiliary plates and two rotating sealing plates. On the one hand, this avoids steam injury to staff and reduces safety hazards; on the other hand, it ensures that all steam in the sealing frame can be recovered and reused through the steam recovery pipe, which helps reduce the maintenance cost of precast concrete beams and slabs. Attached Figure Description
[0022] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0023] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0024] In the attached diagram:
[0025] Figure 1 A three-dimensional structural schematic diagram of the present invention is shown;
[0026] Figure 2 A schematic diagram of the sealing frame of the present invention is shown;
[0027] Figure 3 A schematic diagram of the structure of the movable auxiliary component and the rotary seal of the present invention is shown;
[0028] Figure 4 The present invention is shown. Figure 1 A schematic diagram of the central cross-section structure;
[0029] Figure 5 The present invention is shown. Figure 4Partial enlarged structure schematic view of region A;
[0030] Figure 6 The bottom perspective structure schematic view of the present application Figure 1 is shown.
[0031] Figure 7 The partial enlarged structure schematic view of region B in the present application Figure 6 is shown.
[0032] Figure 8 The structure schematic view of the air intake supercharger of the present application is shown.
[0033] Figure 9 The structure schematic view of the air exhaust recovery device of the present application is shown.
[0034] Figure 10 The partial enlarged structure schematic view of region C in the present application Figure 9 is shown.
[0035] List of reference signs:
[0036] 100, sealing frame; 101, circular through hole;
[0037] 200, activity auxiliary device; 201, installation positioning seat; 202, circular installation rod; 203, activity auxiliary plate; 204, circular reset disc; 205, spiral spring a;
[0038] 300, rotary sealing device; 301, circular installation shaft; 302, rotary sealing plate; 303, servo motor; 304, triangular pressing frame;
[0039] 400, air intake supercharger; 401, conical shell a; 402, steam inlet pipe; 403, electromagnetic valve a; 404, detection supercharging pipe; 405, electromagnetic valve b; 406, air pump;
[0040] 500, air exhaust recovery device; 501, conical shell b; 502, steam recovery pipe; 503, electromagnetic valve c; 504, detection exhaust pipe; 505, electromagnetic valve d; 506, installation guide seat; 507, circular guide shaft; 508, sealing disc; 509, spiral spring b; 510, control button; 511, pressing protrusion;
[0041] 600, control box. DETAILED DESCRIPTION
[0042] In order to make the purpose, scheme and advantages of the technical solutions of the present application more clear, the technical solutions of the embodiments of the present application will be described clearly and completely below in combination with the drawings of the specific embodiments of the present application. Unless otherwise specified, the terms used herein have the meanings commonly understood in the art. The same reference numerals in the drawings represent the same components.
[0043] Embodiment: Please refer to Figures 1 to 10 As shown in the figure, the present application provides a kind of wisdom beam field concrete precast beam plate steam curing chamber, comprising: sealed frame 100, movable auxiliary part 200, rotary sealing element 300, air inlet booster 400 and exhaust recovery element 500;Two groups of circular through holes 101 are opened in the top of sealed frame 100, and control box 600 is fixedly installed on the front side of sealed frame 100, and two rows of rollers are installed on the bottom of sealed frame 100;Movable auxiliary part 200 is installed on sealed frame 100;Rotary sealing element 300 is installed on sealed frame 100;Air inlet booster 400 is installed on the top of sealed frame 100;Exhaust recovery element 500 is installed on the top of sealed frame 100.
[0044] In the embodiments of the present disclosure, as Figures 3 to 7 As shown in the figure, movable auxiliary part 200 includes: installation positioning seat 201, circular mounting rod 202 and movable auxiliary plate 203;Four installation positioning seats 201 are provided, and the four installation positioning seats 201 are fixedly installed on the inner wall of sealed frame 100;Four circular mounting rods 202 are provided, and the four circular mounting rods 202 are slidingly installed on the four installation positioning seats 201;Two movable auxiliary plates 203 are provided, and each movable auxiliary plate 203 is fixedly installed at the bottom of two circular mounting rods 202, and the outer side of the two movable auxiliary plates 203 is in contact with sealed frame 100;Movable auxiliary part 200 further includes: circular reset disc 204 and spiral spring a 205;Four circular reset discs 204 are provided, and the four circular reset discs 204 are fixedly installed outside the four circular mounting rods 202;Four spiral springs a 205 are provided, and the four spiral springs a 205 are sleeved outside the four circular mounting rods 202, and the four spiral springs a 205 are located between the four installation positioning seats 201 and the four circular reset discs 204;
[0045] The rotary sealing piece 300 comprises two circular mounting shafts 301 and two rotary sealing plates 302; the two circular mounting shafts 301 are rotatably mounted on the sealing frame 100; the two rotary sealing plates 302 are fixedly mounted on the outside of the two circular mounting shafts 301, and the inner sides of the two rotary sealing plates 302 are in contact with the two movable auxiliary plates 203; the rotary sealing piece 300 further comprises four servo motors 303 and four triangular pressing frames 304; the four servo motors 303 are fixedly mounted on the front and rear sides of the sealing frame 100; the output shafts of every two servo motors 303 are fixedly connected with a circular mounting shaft 301, and the four servo motors 303 are electrically connected with the control box 600; the four triangular pressing frames 304 are fixedly mounted on a rotary sealing plate 302, and the four triangular pressing frames 304 are located in the same central plane with the four circular mounting rods 202.
[0046] Specifically, the bottom of the sealing frame 100 is provided with two rows of rollers, and the two rotary sealing plates 302 are fixedly mounted on the outside of the two circular mounting shafts 301, and the output shafts of every two servo motors 303 are fixedly connected with a circular mounting shaft 301; when the concrete precast beam slab needs to be maintained, the four servo motors 303 are controlled to work by the control box 600, so that the two rotary sealing plates 302 are automatically opened, and then the sealing frame 100 is moved to the outside of the concrete precast beam slab by the two rows of rollers, so that the concrete precast beam slab does not need to be moved by external lifting machinery during maintenance, which improves the maintenance efficiency of the concrete precast beam slab and avoids the danger of lifting the concrete precast beam slab; in addition, the four mounting positioning seats 201 are fixedly mounted on the inner wall of the sealing frame 100, the four circular mounting rods 202 are slidably mounted on the four mounting positioning seats 201, and every movable auxiliary plate 203 is fixedly mounted on the bottom of the two circular mounting rods 202, so that the two movable auxiliary plates 203 have the up-and-down sliding effect.
[0047] Further, since the four circular reset discs 204 are fixedly installed outside the four circular mounting rods 202, and the four spiral springs a 205 are sleeved outside the four circular mounting rods 202, and the four spiral springs a 205 are located between the four mounting positioning seats 201 and the four circular reset discs 204, when the two rotary sealing plates 302 are in the open state, the four spiral springs a 205 can drive the two movable auxiliary plates 203 to move upward, so that there is a certain distance between the two movable auxiliary plates 203 and the ground, which ensures that the two movable auxiliary plates 203 will not hinder the normal movement of the sealing frame 100; and since every two triangular pressing frames 304 are fixedly installed on one rotary sealing plate 302, and the four triangular pressing frames 304 are located in the same central plane as the four circular mounting rods 202, when the two rotary sealing plates 302 are in the closed state, the four triangular pressing frames 304 can push the four circular mounting rods 202 to move downward, so that the bottoms of the two movable auxiliary plates 203 are in contact with the ground. On the one hand, the two movable auxiliary plates 203 and the two rotary sealing plates 302 increase the friction between them and the ground, making the sealing frame 100 more stable after moving; on the other hand, the two movable auxiliary plates 203 and the two rotary sealing plates 302 play an auxiliary sealing effect, avoiding the steam in the sealing frame 100 from being discharged through the bottom of the sealing frame 100.
[0048] In the embodiments of the present disclosure, as shown in Figures 8 to 10 The air inlet supercharger 400 includes a conical shell a 401, a steam inlet pipe 402, and an electromagnetic valve a 403. The conical shell a 401 is fixedly installed on the top of the sealing frame 100. The steam inlet pipe 402 is fixedly installed on the top of the conical shell a 401. The electromagnetic valve a 403 is fixedly installed on the steam inlet pipe 402, and the electromagnetic valve a 403 is electrically connected with the control box 600. The air inlet supercharger 400 further includes a detection supercharging pipe 404, an electromagnetic valve b 405, and an air pump 406. The detection supercharging pipe 404 is fixedly installed on the left side of the conical shell a 401. The electromagnetic valve b 405 is fixedly installed on the detection supercharging pipe 404, and the electromagnetic valve b 405 is electrically connected with the control box 600. The air pump 406 is fixedly installed on the top of the sealing frame 100, and the output pipe of the air pump 406 is fixedly connected with the detection supercharging pipe 404, and the air pump 406 is electrically connected with the control box 600.
[0049] The exhaust gas recovery part 500 comprises a conical cover b 501, a steam recovery pipe 502, an electromagnetic valve c 503 and a detection exhaust pipe 504; the conical cover b 501 is fixedly installed on the top of the sealing frame 100; the steam recovery pipe 502 is fixedly installed on the top of the conical cover b 501; the electromagnetic valve c 503 is fixedly installed on the steam recovery pipe 502, and the electromagnetic valve c 503 is electrically connected with the control box 600; the detection exhaust pipe 504 is fixedly installed on the right side of the conical cover b 501; the exhaust gas recovery part 500 further comprises an electromagnetic valve d 505, a mounting guide seat 506, a circular guide shaft 507 and a sealing disc 508; the electromagnetic valve d 505 is fixedly installed on the detection exhaust pipe 504, and the electromagnetic valve d 505 is electrically connected with the control box 600; the mounting guide seat 506 is fixedly installed on the outer end of the detection exhaust pipe 504; the circular guide shaft 507 is slidingly installed on the mounting guide seat 506; the sealing disc 508 is fixedly installed on the inner end of the circular guide shaft 507, and the sealing disc 508 further contacts with the inner wall of the detection exhaust pipe 504; the exhaust gas recovery part 500 further comprises a spiral spring b 509, a control button 510 and a pressing protrusion 511; the spiral spring b 509 is sleeved on the outside of the circular guide shaft 507, and the spiral spring b 509 is located between the mounting guide seat 506 and the sealing disc 508; the control button 510 is fixedly installed on the inside of the circular guide shaft 507, and the control button 510 is electrically connected with the control box 600; the pressing protrusion 511 is fixedly installed on the top of the control button 510;
[0050] The specific action is that: because the electromagnetic valve a 403 and the electromagnetic valve c 503 are in the closed state in the initial state, and the electromagnetic valve b 405 and the electromagnetic valve d 505 are in the open state in the initial state, and the electromagnetic valve a 403 and the electromagnetic valve c 503 cannot be directly opened by the button in the control box 600, when the concrete precast beam slab needs to be maintained, the staff starts the air pump 406 through the control box 600, when the air pump 406 works, the external air enters the sealing frame 100 through a group of circular through holes 101 on the right side; because the sealing disc 508 further contacts with the inner wall of the detection exhaust pipe 504, and the spiral spring b 509 is sleeved on the outside of the circular guide shaft 507, and the spiral spring b 509 is located between the mounting guide seat 506 and the sealing disc 508, when the two movable auxiliary plates 203 and the two rotating sealing plates 302 are not in contact with the ground, the air in the sealing frame 100 can be discharged through the gap between the ground and the two movable auxiliary plates 203 and the two rotating sealing plates 302, so that the sealing disc 508 basically does not move; when the two movable auxiliary plates 203 and the two rotating sealing plates 302 are in contact with the ground, the air in the sealing frame 100 can only be discharged through the detection exhaust pipe 504, so that the sealing disc 508 moves;
[0051] Moreover, since the control button 510 is fixedly installed inside the circular guide shaft 507, and the control button 510 is electrically connected with the control box 600, and the pressing protrusion 511 is fixedly installed on the top of the control button 510, when the two movable auxiliary plates 203 and the two rotating sealing plates 302 are all in contact with the ground, the sealing disc 508 moves to install the guide seat 506 to automatically press the pressing protrusion 511, so that the control button 510 is in a pressed state; when the control button 510 is in the pressed state, the control box 600 controls the electromagnetic valve a 403 and the electromagnetic valve c 503 to open, and the control box 600 also controls the electromagnetic valve b 405 and the electromagnetic valve d 505 to close, so as to realize automatic entering of the steam; since the alarm is installed in the control box 600, when the control button 510 is not in the pressed state after the air pump 406 works for a certain time, the control box 600 controls the air pump 406 to stop working, and the alarm in the control box 600 works, which can automatically prompt the staff to clean the sundries on the ground or assist in sealing the gap of the two movable auxiliary plates 203 and the two rotating sealing plates 302, on the one hand, it avoids that the steam mistakenly injures the staff, reduces the safety hidden danger, on the other hand, it ensures that the steam in the sealing frame 100 can be all recycled through the steam recycling pipe 502, which is beneficial to reduce the maintenance cost of the concrete precast beam plate.
[0052] The specific use mode and role of the embodiment are as follows:
[0053] Before the sealing frame 100 moves, the four servo motors 303 are controlled to work by the control box 600, so that the two rotating sealing plates 302 are automatically opened. When the two rotating sealing plates 302 are in the open state, the two movable auxiliary plates 203 are driven to move upward by the four spiral springs a 205, so that a certain distance exists between the two movable auxiliary plates 203 and the ground, so as to ensure that the two movable auxiliary plates 203 will not hinder the normal movement of the sealing frame 100. Then, the sealing frame 100 is moved to the outside of the concrete precast beam plate by the staff through the two rows of rollers, and then the external steam exhaust pipe and the steam inlet pipe 402 are fixedly connected, and then the external steam recovery pipeline and the steam recovery pipe 502 are fixedly connected. Then, the two rotating sealing plates 302 are closed by the control box 600. When the two rotating sealing plates 302 are in the closed state, the four triangular pressing frames 304 can push the four circular mounting rods 202 to move downward, so that the bottoms of the two movable auxiliary plates 203 are in contact with the ground. When the concrete precast beam plate needs to be maintained, the staff starts the air pump 406 through the control box 600. When the air pump 406 works, the external air enters the sealing frame 100 through the right group of circular holes 101. When the two movable auxiliary plates 203 and the two rotating sealing plates 302 are not in full contact with the ground, the air in the sealing frame 100 can be discharged through the gap between the ground and the two movable auxiliary plates 203 and the two rotating sealing plates 302, so that the sealing disc 508 basically does not move. When the two movable auxiliary plates 203 and the two rotating sealing plates 302 are in full contact with the ground, the air in the sealing frame 100 can only be discharged through the detection exhaust pipe 504, so that the sealing disc 508 moves. When the two movable auxiliary plates 203 and the two rotating sealing plates 302 are in full contact with the ground, the installation guide seat 506 can automatically press the pressing protrusion 511 after the sealing disc 508 moves, so that the control button 510 is in the pressed state. When the control button 510 is in the pressed state, the control box 600 controls the electromagnetic valve a 403 and the electromagnetic valve c 503 to be opened, and the control box 600 also controls the electromagnetic valve b 405 and the electromagnetic valve d 505 to be closed, so as to realize the automatic entry of the steam. When the control button 510 is not in the pressed state after the air pump 406 works for a certain period of time, the control box 600 controls the air pump 406 to stop working, and the alarm in the control box 600 works, so as to automatically prompt the staff to clean the sundries on the ground or assist in sealing the gap between the two movable auxiliary plates 203 and the two rotating sealing plates 302.
[0054] In this paper, the following points need to be noted:
[0055] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.
[0056] 2. Embodiments of the present disclosure and features in embodiments can be combined with each other to obtain new embodiments in the case of no conflict.
[0057] The above merely describes specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A smart beam yard precast concrete beam curing chamber, comprising: The sealing frame (100), movable auxiliary component (200), rotary seal (300), intake booster component (400), and exhaust recovery component (500) are provided. The top of the sealing frame (100) has two sets of circular through holes (101), and a control box (600) is fixedly installed on the front side of the sealing frame (100). Two rows of rollers are installed on the bottom of the sealing frame (100). The movable auxiliary component (200) is mounted on the sealing frame (100). The movable auxiliary component (200) includes: a circular mounting rod (202) and a movable auxiliary plate (203). Two movable auxiliary plates (203) are provided, and each movable auxiliary plate (203) is fixedly mounted on two circular mounting rods. The bottom of (202) and the outer sides of the two movable auxiliary plates (203) contact the sealing frame (100); the rotary seal (300) is installed on the sealing frame (100); the rotary seal (300) includes: a rotary sealing plate (302) and a triangular pressing bracket (304); there are four triangular pressing brackets (304) in total, and every two triangular pressing brackets (304) are fixedly installed on a rotary sealing plate (302), and the four triangular pressing brackets (304) and four circular mounting rods (202) are located in the same central plane; the intake booster (400) is installed on the top of the sealing frame (100); the exhaust recovery component (500) is installed on the top of the sealing frame (100); The movable auxiliary component (200) further includes: mounting positioning seats (201); there are four mounting positioning seats (201) in total, and the four mounting positioning seats (201) are fixedly installed on the inner wall of the sealing frame (100); there are four circular mounting rods (202) in total, and the four circular mounting rods (202) are slidably installed on the four mounting positioning seats (201); the movable auxiliary component (200) further includes: circular reset discs (204) and helical springs a (205); there are four circular reset discs (204) in total, and the four circular reset discs (204) are fixedly installed on the outside of the four circular mounting rods (202); there are four helical springs a (205) in total, and the four helical springs a (205) are sleeved on the outside of the four circular mounting rods (202), and the four helical springs a (205) are located between the four mounting positioning seats (201) and the four circular reset discs (204); The rotary seal (300) further includes: a circular mounting shaft (301); there are two circular mounting shafts (301), and the two circular mounting shafts (301) are rotatably mounted on the sealing frame (100); there are two rotary sealing plates (302), and the two rotary sealing plates (302) are fixedly mounted on the outside of the two circular mounting shafts (301), and the inner side of the two rotary sealing plates (302) is in contact with two movable auxiliary plates (203); the rotary seal (300) further includes: a servo motor (303); there are four servo motors (303), and the four servo motors (303) are fixedly mounted on the front and rear sides of the sealing frame (100); the output shaft of each pair of servo motors (303) is fixedly connected to one circular mounting shaft (301), and the four servo motors (303) are electrically connected to the control box (600).
2. The intelligent beam yard precast concrete beam curing chamber according to claim 1, characterized in that, The intake booster (400) includes: a conical cover a (401), a steam inlet pipe (402), and a solenoid valve a (403); the conical cover a (401) is fixedly installed on the top of the sealing frame (100); the steam inlet pipe (402) is fixedly installed on the top of the conical cover a (401); the solenoid valve a (403) is fixedly installed on the steam inlet pipe (402), and the solenoid valve a (403) is electrically connected to the control box (600).
3. The intelligent beam yard precast concrete beam curing chamber according to claim 2, characterized in that, The intake booster (400) further includes: a booster detection pipe (404), a solenoid valve b (405), and an air pump (406); the booster detection pipe (404) is fixedly installed on the left side of the conical cover a (401); the solenoid valve b (405) is fixedly installed on the booster detection pipe (404), and the solenoid valve b (405) is electrically connected to the control box (600); the air pump (406) is fixedly installed on the top of the sealing frame (100), and the output pipe of the air pump (406) is fixedly connected to the booster detection pipe (404), and the air pump (406) is electrically connected to the control box (600).
4. The intelligent beam yard precast concrete beam curing chamber according to claim 1, characterized in that, The exhaust recovery component (500) includes: a conical housing b (501), a steam recovery pipe (502), a solenoid valve c (503), and a detection exhaust pipe (504); the conical housing b (501) is fixedly installed on the top of the sealing frame (100); the steam recovery pipe (502) is fixedly installed on the top of the conical housing b (501); the solenoid valve c (503) is fixedly installed on the steam recovery pipe (502), and the solenoid valve c (503) is electrically connected to the control box (600); the detection exhaust pipe (504) is fixedly installed on the right side of the conical housing b (501).
5. The intelligent beam yard precast concrete beam curing chamber according to claim 4, characterized in that, The exhaust recovery component (500) further includes: a solenoid valve d (505), a mounting guide seat (506), a circular guide shaft (507), and a sealing disc (508); the solenoid valve d (505) is fixedly mounted on the detection exhaust pipe (504), and the solenoid valve d (505) is electrically connected to the control box (600); the mounting guide seat (506) is fixedly mounted on the outer end of the detection exhaust pipe (504); the circular guide shaft (507) is slidably mounted on the mounting guide seat (506); the sealing disc (508) is fixedly mounted on the inner end of the circular guide shaft (507), and the sealing disc (508) also contacts the inner wall of the detection exhaust pipe (504).
6. The intelligent beam yard precast concrete beam curing chamber according to claim 5, characterized in that, The exhaust recovery component (500) further includes: a helical spring b (509), a control button (510), and a push-button protrusion (511); the helical spring b (509) is sleeved on the outside of the circular guide shaft (507), and the helical spring b (509) is located between the mounting guide seat (506) and the sealing disc (508); the control button (510) is fixedly installed inside the circular guide shaft (507), and the control button (510) is electrically connected to the control box (600); the push-button protrusion (511) is fixedly installed on the top of the control button (510).
Citation Information
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