Full-automatic integrated curing device for prefabricated brick production

By using a fully automated integrated curing device, combined with automatic stacking and intelligent water spraying system, the problems of uneven water spraying and water waste during the curing process of precast bricks have been solved, achieving efficient and uniform curing results and improving brick quality and production efficiency.

CN118832709BActive Publication Date: 2026-02-17SUQIAN LIXIN BUILDING MATERIALS CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202411150444.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2026-02-17
Estimated Expiration
2044-08-21

AI Technical Summary

Technical Problem

Existing precast brick curing methods rely on unstable weather conditions, involve high labor intensity due to manual operation, and result in uneven water spraying, leading to unstable curing effects. Furthermore, excess water cannot be properly managed, affecting the humidity of the space.

Method used

The fully automated integrated curing device combines an automatic palletizing system, an internal water spraying curing system, and an external water spraying curing system. Through intelligent control units and temperature and humidity sensors, it achieves precise water spraying and wastewater recycling, ensuring the uniformity and efficiency of the curing process.

Benefits of technology

It has enabled the automation and intelligentization of precast brick curing, shortened the curing cycle, improved brick quality and production efficiency, and reduced water waste.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118832709B_ABST
    Figure CN118832709B_ABST
Patent Text Reader

Abstract

The application discloses a full-automatic integrated curing device for prefabricated brick production, which comprises a curing chamber, an automatic stacking system, an internal water spraying curing system and an external water spraying curing system. The curing chamber is arranged in a slot-shaped manner, a back plate is arranged at the back side of the curing chamber, and a movable guide rail is arranged at the front side of the curing chamber. A hot air blower is arranged in the back plate, and a temperature and humidity sensor is arranged at the middle top of the curing chamber. The full-automatic integrated curing device for prefabricated brick production is used for automatically carrying prefabricated bricks from a production line to the curing chamber through the automatic stacking system, and the prefabricated bricks are neatly stacked in a preset mode. The internal water spraying curing system and the external water spraying curing system are combined for curing. On the basis of automatic curing of the prefabricated bricks, manual control of curing is supported, and secondary treatment is carried out on positions that are not comprehensively cured, so that the curing process is comprehensive and uniform. Precise curing of the prefabricated bricks is realized through automatic control, and the curing period is shortened.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of prefabricated brick production, in particular to a full-automatic integrated curing device for prefabricated brick production. BACKGROUND

[0002] In the complete production process of prefabricated bricks today, the curing link undoubtedly plays a crucial role, which is directly related to the final quality and durability of the bricks. This step aims to promote the full reaction of moisture and cementitious materials inside the bricks by controlling appropriate environmental conditions such as temperature, humidity, and curing time, so as to achieve ideal hardening and strength development;

[0003] However, for a long time, traditional curing methods such as natural curing and artificial water spraying curing, although meet the production needs to some extent, but expose many limitations;

[0004] Natural curing depends on weather conditions and is greatly affected by seasonal changes. The curing period is difficult to accurately control, and it is easily affected by environmental pollutants, resulting in unstable curing effect and uneven brick quality. Artificial water spraying curing can shorten the curing period to some extent, but it relies on manual operation, which not only has high labor intensity, but also easily causes uneven, excessive or insufficient water spraying, further affecting the curing effect;

[0005] The excess water during curing cannot be treated, which can easily cause moisture in the curing space, affecting the curing effect.

[0006] In summary, developing a full-automatic integrated curing device for prefabricated brick production is not only an effective way to solve the problems existing in the current curing method, but also an inevitable requirement for promoting the development of the prefabricated brick industry to higher quality and higher efficiency. SUMMARY

[0007] The purpose of the present application is to provide a full-automatic integrated curing device for prefabricated brick production to solve the technical problems raised in the background.

[0008] To achieve the above purpose, the present application provides the following technical scheme: a full-automatic integrated curing device for prefabricated brick production, comprising a curing chamber, an automatic stacking system, an internal water spraying curing system and an external water spraying curing system, the curing chamber is set as a slot-shaped opposite side, and a back plate is arranged at the back side of the curing chamber, and a movable guide rail is arranged at the front side end of the curing chamber, a heat blower is embedded in the inside of the back plate, and a temperature and humidity sensor is arranged in the middle of the top of the curing chamber.

[0009] The outer wall of the curing chamber is provided with an internal water spraying curing system, the internal water spraying curing system comprises a water supply tank, and the water supply tank is arranged on the top outer wall of the curing chamber, both ends of the water supply tank are provided with water supply pipes, branch pipes of the water supply pipes are connected with side water spraying openings, and the side water spraying openings are arranged on the inner wall of the curing chamber, a water filtering groove is arranged at the middle bottom of the curing chamber, the bottom of the water filtering groove is connected with a water collecting tank, and the outside of the water collecting tank is connected with a water return pipe, and a water supply pump is arranged on one side of the water supply tank, and the water supply pump is used for water supply and water return.

[0010] The top of the movable guide rail is slidably provided with an automatic stacking system, the automatic stacking system comprises a sliding table, a first sliding rail is embedded in the top of the sliding table, a sliding plate is embedded in the top of the first sliding rail, a hydraulic lifting device is arranged on the top of the sliding plate, a stacking table is mounted on the top of the hydraulic lifting device, a hydraulic pushing device is horizontally arranged on the outside of the sliding plate, and a conveying belt is mounted on the top of the stacking table.

[0011] The bottom of the stacking table is mounted with an external water spraying curing system, the external water spraying curing system comprises an electric push rod, a micro water pump is arranged on the side of the electric push rod close to the curing chamber, a hanging water tank is fixed on the outside of the micro water pump, a first spraying head is arranged on the front side of the hanging water tank, water supply side pipes are arranged on both sides of the hanging water tank, a cylinder is arranged at the water outlet end of the water supply side pipes, the cylinder is connected with the stacking table through a rotatable shaft, and the rotatable shaft is arranged between the cylinder and the stacking table, second spraying heads are arranged in communication on the inner circumferential surface of the cylinder, and the second spraying heads can form a circular spraying surface under the driving of the rotatable shaft.

[0012] Both sides of the inside of the curing chamber are arranged with shelves, and a plurality of groups of the shelves and the side water spraying openings are arranged in parallel, a second sliding rail is mounted on the inside bottom of the curing chamber, the specifications and sizes of the second sliding rail and the first sliding rail are matched with each other, and positioning probe plates are symmetrically mounted on the bottom front side of the curing chamber.

[0013] Further, a rotatable cover plate is arranged on the bottom of the rear plate.

[0014] Further, auxiliary wheels are arranged on both sides of the stacking table.

[0015] Further, support plates are symmetrically mounted on the bottom of the curing chamber.

[0016] Further, a water supply main pipe is connected with the bottom of the micro water pump.

[0017] Further, an anti-sinking base plate is mounted on the bottom of the movable guide rail.

[0018] Further, the distance between the sliding table and the two groups of positioning probe plates is matched with each other, and the position of the sliding table can be positioned by the positioning probe plates.

[0019] Further, the sliding table and the movable guide rail, the first sliding rail and the sliding plate, the sliding plate and the second sliding rail respectively form a horizontal sliding structure, and the first sliding rail and the second sliding rail have the same size.

[0020] Further, the first spray head is arranged along the arc surface of the hanging water tank, and the hanging water tank and the micro water pump form a horizontal pushing structure through the electric push rod.

[0021] Compared with the prior art, the beneficial effects of the full-automatic integrated curing device for prefabricated brick production are as follows: the full-automatic integrated curing device for prefabricated brick production adopts the cooperation between multiple mechanisms, has strong functionality, and is used for automatically carrying prefabricated bricks from a production line to a curing chamber through an automatic stacking system, stacking the prefabricated bricks neatly in a preset mode, and curing the prefabricated bricks through an internal water spraying curing system and an external water spraying curing system, so that the prefabricated bricks are accurately cured through automatic control on the basis of automatic curing of the prefabricated bricks, the curing cycle is shortened, and the curing process is comprehensive and uniform through secondary treatment of positions that are not fully cured by supporting manual control of curing.

[0022] The water pump in the internal water spraying curing system can deliver water to the atomizing spray head in the side water spraying port through the water pipe network of the water supply main pipe, so as to realize uniform water spraying curing of the prefabricated bricks; the intelligent control unit can automatically adjust the water spraying amount and the water spraying frequency according to the data fed back by the top temperature and humidity sensor, can collect wastewater generated in the curing process through the water filtering groove, and can recycle the wastewater after physical filtration treatment, so as to reduce water resource waste.

[0023] The external water spraying curing system can spray curing water from the hanging water tank from the first spray head arranged in an arc shape at the front end, provide a horizontal spraying range close to a semicircle, and be provided with a cylinder body provided with a second spray head at both ends, so that the spraying angle can be adjusted under the rotation assistance of the rotatable shaft rod, so as to provide two circular vertical spraying ranges on the side surface, and expand the secondary curing range from two angles.

[0024] Further, the hanging water tank in the external water spraying curing system can adjust the horizontal position through the electric push rod, so as to better meet the spraying curing demand. DETAILED DESCRIPTION

[0025] Figure 1 FIG. 1 is a front perspective structural schematic view of the full-automatic integrated curing device in the application;

[0026] Figure 2 FIG. 2 is a rear perspective structural schematic view of the full-automatic integrated curing device in the application;

[0027] Figure 3 FIG. 3 is an external structural schematic view of the automatic stacking system in the application;

[0028] Figure 4 It is the schematic diagram of the external structure of the external water spraying curing system in the application.

[0029] Figure 5 It is the schematic diagram of the internal structure of the front of the curing room.

[0030] In the figure: 1, curing room; 2, automatic stacking system; 201, sliding table; 202, first sliding rail; 203, sliding plate; 204, hydraulic lifting device; 205, hydraulic pushing device; 206, stacking table; 207, conveying belt; 208, auxiliary wheel; 3, internal water spraying curing system; 301, water supplement tank; 302, water supply pipe; 303, water return pipe; 304, water supply pump; 305, water filtering tank; 306, side water spraying port; 307, water collecting tank; 4, back plate; 401, hot air blower; 402, rotatable cover plate; 5, support plate; 6, external water spraying curing system; 601, suspended water tank; 602, electric push rod; 603, first spraying head; 604, micro water pump; 605, water supply main pipe; 606, water supply side pipe; 607, cylinder; 608, rotatable shaft; 609, second spraying head; 7, frame; 8, second sliding rail; 9, positioning probe plate; 10, anti-sinking pad plate; 11, movable guide rail; 12, temperature and humidity sensor. DETAILED DESCRIPTION

[0031] In the description of the application, unless otherwise specified, the meaning of "a plurality of" is two or more; the orientation or position relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail" and the like is based on the orientation or position relationship shown in the drawings, which is only for the convenience of describing the application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application. In addition, the terms "first", "second", "third" and the like are only for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0032] In the description of the application, it should be noted that, unless otherwise specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.

[0033] As Figures 1-5As shown, the present application provides a technical scheme: a full-automatic integrated curing device for prefabricated brick production, which comprises a curing chamber 1, an automatic stacking system 2, an internal water spraying curing system 3 and an external water spraying curing system 6. The curing chamber 1 is set as a slot-shaped opposite side, and a back plate 4 is arranged at the back side of the curing chamber 1. A movable guide rail 11 is arranged at the front end of the curing chamber 1. A hot air blower 401 is embedded in the inside of the back plate 4. A temperature and humidity sensor 12 is arranged in the middle of the top of the curing chamber 1.

[0034] The outer wall of the curing chamber 1 is provided with the internal water spraying curing system 3. The internal water spraying curing system 3 comprises a water supply tank 301 arranged on the top outer wall of the curing chamber 1. Water supply pipes 302 are arranged at both ends of the water supply tank 301. Branch pipes of the water supply pipes 302 are connected with side water spraying openings 306 arranged on the inner wall of the curing chamber 1. A water filtering groove 305 is arranged at the middle of the bottom of the curing chamber 1. The bottom of the water filtering groove 305 is connected with a water collecting tank 307. The outer side of the water collecting tank 307 is connected with a water return pipe 303. A water supply pump 304 is arranged on one side of the water supply tank 301 for water supply and water return.

[0035] The movable guide rail 11 is slidably provided with the automatic stacking system 2. The automatic stacking system 2 comprises a sliding table 201. A first sliding rail 202 is embedded on the top of the sliding table 201. A sliding plate 203 is embedded on the top of the first sliding rail 202. A hydraulic lifting device 204 is arranged on the top of the sliding plate 203. A stacking table 206 is mounted on the top of the hydraulic lifting device 204. A hydraulic pushing device 205 is horizontally arranged on the outer side of the sliding plate 203. A conveying belt 207 is mounted on the top of the stacking table 206.

[0036] The bottom middle end of the stacking table 206 is provided with the external water spraying curing system 6. The external water spraying curing system 6 comprises an electric push rod 602. A micro water pump 604 is arranged near the end of the curing chamber 1. A hanging water tank 601 is fixed on one side of the outside of the micro water pump 604. A first spraying head 603 is arranged on the front side of the hanging water tank 601. Water supply side pipes 606 are arranged on both sides of the hanging water tank 601. A cylinder 607 is arranged at the water outlet end of the water supply side pipes 606. The cylinder 607 is connected with the stacking table 206 through a rotatable shaft rod 608 arranged between the cylinder 607 and the stacking table 206. Second spraying heads 609 are arranged in communication on the inner circumferential surface of the cylinder 607. The second spraying heads 609 can form a circular spraying surface under the driving of the rotatable shaft rod 608.

[0037] The inside of the curing chamber 1 is arranged with shelves 7, and multiple groups of shelves 7 and side water outlets 306 are arranged in parallel. The inside bottom of the curing chamber 1 is provided with a second sliding rail 8, and the specifications of the second sliding rail 8 and the first sliding rail 202 are matched with each other. The bottom of the curing chamber 1 is symmetrically provided with a positioning probe plate 9. The bottom of the back plate 4 is provided with a rotatable cover plate 402. The two sides of the stacking table 206 are arranged with auxiliary wheels 208. The bottom of the curing chamber 1 is symmetrically provided with a support plate 5. The bottom of the micro water pump 604 is communicated with a water supply main pipe 605. The bottom of the movable guide rail 11 is provided with an anti-sinking pad 10. The spacing between the sliding table 201 and the two groups of positioning probe plates 9 is matched with each other. The sliding table 201, the movable guide rail 11, the first sliding rail 202 and the sliding plate 203, and the sliding plate 203 and the second sliding rail 8 respectively form a horizontal sliding structure. The first spray head 603 is arranged along the arc surface of the hanging water tank 601. The hanging water tank 601 and the micro water pump 604 form a horizontal pushing structure through the electric push rod 602.

[0038] By optimizing the prefabricated brick production process and integrating the efficient collaborative work of multiple agencies, a powerful and intelligent curing system is built. The automatic stacking system 2 as one of the core links of this process not only realizes the seamless connection of prefabricated bricks from the busy production line to the quiet curing chamber, but also ensures that each prefabricated brick can be arranged according to the preset optimal layout, laying a solid foundation for subsequent curing work.

[0039] The hydraulic lifting device 204 and the hydraulic pushing device 205 in the automatic stacking system 2 realize seamless collaborative work, which is not only the core driving force of the efficient operation of the system, but also the key to precise control of the stacking process. The hydraulic lifting device 204 can accurately control the vertical movement of the top stacking table 206 with its strong load-bearing capacity and stable lifting performance, ensuring that the height adjustment during stacking is both fast and stable.

[0040] The hydraulic pushing device 205 further cooperates with the hydraulic lifting device 204, which can guide the stacking table 206 to move flexibly in the left and right directions through the precise pushing and pulling force in the horizontal direction, realize the overall adjustment of the placement position of the prefabricated bricks, and make the stacking table 206 accurately move into the curing chamber 1, and accurately position the prefabricated bricks carried by the stacking table 206 to the specified shelf 7 in the curing chamber. The shelf 7 provides a stable support platform for the prefabricated bricks, ensuring that each prefabricated brick can be safely and neatly stacked.

[0041] Embedded in the inner side of the stacking table 206 is a conveying belt 207, which greatly improves the flexibility of the precast bricks during the stacking process. The conveying belt 207 can adjust the specific position of the precast bricks on the stacking table according to preset programs or manual instructions, ensuring that each layer of precast bricks can be closely fitted, reducing gaps, and improving stacking efficiency and stability. The auxiliary wheels 208 on both sides not only provide additional support and stability for the stacking table, but also assist in adjusting the direction or overcoming slight resistance when needed, making the entire stacking process smoother and unobstructed.

[0042] During the curing stage, the close cooperation between the internal water spraying curing system 3 and the external water spraying curing system 6 demonstrates excellent automation and intelligence. The internal water spraying system uses its efficient water pump device to accurately deliver water from the water supply main pipe 605 to the densely distributed side water outlets 306 in the curing chamber. The built-in high-precision atomizing nozzles finely and uniformly spray water mist on the surface of the precast bricks, effectively promoting the cement hydration reaction and accelerating the strength improvement. The intelligent control unit plays a crucial role in this process, as it intelligently adjusts the water spraying amount and frequency based on real-time data feedback from the top high-precision temperature and humidity sensor, ensuring that the curing environment is always in the best state.

[0043] At the same time, the system is also equipped with an advanced wastewater recycling and recycling mechanism. The wastewater generated during the curing process is collected in the water filter tank 305 and subjected to physical filtration treatment, maximizing the use of water resources and reducing environmental burden.

[0044] The external water spraying curing system 6 further enhances the comprehensiveness and flexibility of curing with its unique design concept. Under the drive of the miniature water pump 604, the curing water in the suspended water tank 601 covers the front surface of the precast bricks in a semicircular spraying trajectory from the first nozzle 603 at the front end. What is particularly innovative is that the second nozzle 609 inside the cylinder 607 at both ends of the system is rotatable and can adjust the spraying angle flexibly with the assistance of the rotatable shaft 608, thereby creating two circular vertical spraying areas on the sides of the precast bricks and achieving comprehensive nourishment from multiple dimensions. In addition, the suspended water tank 601 can also adjust the horizontal position flexibly through the electric push rod 602, which allows the system to accurately position the spraying position according to different sizes of precast bricks or the specific layout of the curing chamber, ensuring uniform and efficient curing effect.

[0045] In summary, this comprehensive curing system not only realizes the full automation and intelligence of the precast brick curing process, but also significantly shortens the curing period, improves production efficiency and product quality through fine design and efficient resource utilization, setting a new benchmark for green production of modern building materials.

[0046] In summary, the full-automatic integrated curing device for prefabricated brick production, when in use, first, after the prefabricated brick production is completed, the prefabricated brick is transported to the rack 7 in the curing chamber 1 by the automatic stacking system 2 and is neatly stacked; wherein during the transportation, through the precise pushing and pulling force of the hydraulic pushing device 205 in the horizontal direction, the stacking table 206 is guided to move flexibly in the left and right directions, so that the stacking table 206 is accurately moved to the inside of the curing chamber 1, and through the strong bearing capacity and lifting performance of the bottom hydraulic lifting device 204, the top stacking table 206 is vertically moved to position the base plate with prefabricated bricks on the stacking table 206 on the rack 7, and during the stacking process, the transmission of the transmission belt 207 can also be controlled according to the stacking state to adjust the stacking position, ensuring the accuracy of the stacking;

[0047] The control system starts the intelligent water spraying system to spray water for curing the prefabricated brick according to the data fed back by the top temperature and humidity sensor 12;

[0048] The internal water spraying system on the inside accurately delivers the water source to the side water spraying ports 306 densely arranged in the curing chamber through the water supply main pipe 605, and the high-precision atomizing nozzles built in the side water spraying ports 306 finely and uniformly spray water mist on the surface of the prefabricated brick to uniformly spray each group of prefabricated bricks, so as to promote the cement hydration reaction and accelerate the strength improvement; and during the spraying process, the data feedback is performed through the top temperature and humidity sensor 12 at all times to intelligently adjust the water spraying amount and frequency, ensuring that the curing environment is always in the best state;

[0049] The external water spraying curing system 6 on the outside can also make the curing water in the suspended water tank 601 cover the front surface of the prefabricated brick in a semicircular spraying track through the first nozzles 603 at the front end under the drive of the micro water pump 604, and the barrels 607 on the two sides can also be sprayed through the second nozzles 609 installed on the inside; during the secondary curing process, the second nozzles 609 can adjust the spraying angle by being rotated by the rotatable shaft 608, better meet the spraying demand, and make the system accurately position the spraying position according to the specific layout of the prefabricated brick or the curing chamber, ensuring the uniformity and efficiency of the curing effect;

[0050] At the same time, the water circulation treatment system continuously operates, the water filtering groove 305 on the bottom side collects, filters and recycles the wastewater generated during the curing process; and the hot air blower 401 arranged at the back side can also regulate the temperature in the curing chamber 1, better meet the curing demand, and make the entire curing process realize full-automatic control without manual intervention.

[0051] It is understood that the above embodiments are only exemplary for illustrating the principles of the present application, and the present application is not limited thereto. Various modifications and improvements can be made by those skilled in the art without departing from the spirit and scope of the present application, and these modifications and improvements are also considered as the protection scope of the present application.

Claims

1. A full-automatic integrated curing device for precast brick production, comprising a curing chamber (1), an automatic stacking system (2), an internal water spraying curing system (3) and an external water spraying curing system (6), characterized in that, The maintenance room (1) is arranged in a slot-shaped manner, a back plate (4) is arranged at the back side of the maintenance room (1), and a movable guide rail (11) is arranged at the front end of the maintenance room (1), a hot air machine (401) is arranged in the back plate (4), and a temperature and humidity sensor (12) is arranged in the middle of the top of the maintenance room (1); The outer wall of the maintenance room (1) is provided with an internal water spraying maintenance system (3), the internal water spraying maintenance system (3) comprises a water supplement tank (301), the water supplement tank (301) is arranged on the top outer wall of the maintenance room (1), water supply pipes (302) are arranged at the two ends of the water supplement tank (301), branch pipes of the water supply pipes (302) are connected with side water spraying openings (306), the side water spraying openings (306) are arranged on the inner wall of the maintenance room (1), a water filtering groove (305) is arranged at the middle of the bottom of the maintenance room (1), a water collecting tank (307) is connected to the bottom of the water filtering groove (305), a water return pipe (303) is connected to the outer side of the water collecting tank (307), and a water supply pump (304) is arranged on one side of the water supplement tank (301), the water supply pump (304) is used for water supply and water return; An automatic stacking system (2) is arranged on the top of the movable guide rail (11), the automatic stacking system (2) comprises a sliding table (201), a first sliding rail (202) is arranged on the top of the sliding table (201), a sliding plate (203) is arranged on the top of the first sliding rail (202), a hydraulic lifting device (204) is arranged on the top of the sliding plate (203), a stacking table (206) is arranged on the top of the hydraulic lifting device (204), and a hydraulic pushing device (205) is arranged on the outer side of the sliding plate (203); An external water spraying maintenance system (6) is arranged on the middle of the bottom of the stacking table (206), the external water spraying maintenance system (6) comprises an electric push rod (602), a micro water pump (604) is arranged on the side of the electric push rod (602) close to the maintenance room (1), a hanging water tank (601) is fixed to the outer side of the micro water pump (604), a first spraying head (603) is arranged on the front side of the hanging water tank (601), water supply side pipes (606) are arranged on the two sides of the hanging water tank (601), a cylinder (607) is arranged at the water outlet end of the water supply side pipes (606), the cylinder (607) is connected to the stacking table (206) through a rotatable shaft (608), and the rotatable shaft (608) is arranged between the cylinder (607) and the stacking table (206), second spraying heads (609) are arranged on the inner circumferential surface of the cylinder (607) in a row and in communication, and the second spraying heads (609) can form a circular spraying surface under the driving of the rotatable shaft (608). Both sides of the inside of the curing chamber (1) are arranged with shelves (7), and a plurality of groups of the shelves (7) and the side water injection ports (306) are arranged in parallel, the bottom side of the inside of the curing chamber (1) is installed with second sliding rails (8), and the second sliding rails (8) and the first sliding rails (202) are matched in size, and the bottom side of the curing chamber (1) is symmetrically installed with positioning probe plates (9).

2. The full-automatic integrated curing device for precast brick production according to claim 1, characterized in that: The bottom of the rear plate (4) is provided with a rotatable cover plate (402).

3. The full-automatic integrated curing device for precast brick production according to claim 1, characterized in that: Both sides of the stacking table (206) are arranged with auxiliary wheels (208).

4. The full-automatic integrated curing device for precast brick production according to claim 1, characterized in that: The bottom of the curing chamber (1) is symmetrically installed with support plates (5).

5. The full-automatic integrated curing device for precast brick production according to claim 1, characterized in that: The bottom of the micro water pump (604) is communicated with a water supply main pipe (605).

6. The full-automatic integrated curing device for precast brick production according to claim 1, characterized in that: The bottom of the movable guide rail (11) is installed with an anti-sinking pad plate (10).

7. The full-automatic integrated curing device for precast brick production according to claim 1, characterized in that: The spacing between the sliding table (201) and the two groups of positioning probe plates (9) is matched.

8. The full-automatic integrated curing device for precast brick production according to claim 1, characterized in that: The sliding table (201) and the movable guide rail (11), the first sliding rail (202) and the sliding plate (203), the sliding plate (203) and the second sliding rail (8) respectively form a horizontal sliding structure.

9. The full-automatic integrated curing device for precast brick production according to claim 1, characterized in that: The first spray head (603) is arranged along the arc surface of the hanging water tank (601), and the hanging water tank (601) and the micro water pump (604) form a horizontal pushing structure through the electric push rod (602).

Citation Information

Patent Citations

  • Stacking device for concrete test block curing

    CN118061341A

  • Brick containing mechanism for light brick making machine

    CN212636111U