Maintenance system capable of improving yield and efficiency

By designing an automated maintenance system, including a maintenance bin and a variety of conveying mechanisms, the automatic transportation and maintenance of inorganic sheets is achieved, which solves the problem of inconvenient transportation of traditional equipment and improves the maintenance efficiency and output.

CN222858362UActive Publication Date: 2025-05-13VEEGOO TECH CO LTD
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Patent Information

Application Number
CN202420782042.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-15
Publication Date
2025-05-13
Estimated Expiration
2034-04-15

AI Technical Summary

Technical Problem

The existing maintenance equipment is inconvenient to transport inorganic boards, resulting in low maintenance efficiency.

Method used

A maintenance system including a maintenance bin, a hot air conveying mechanism, a steam conveying mechanism, a humidification mechanism and an airflow agitating mechanism are designed. Through the provided push and pull mechanism and a transfer mechanism, the automatic transport and maintenance of inorganic sheets are realized.

Benefits of technology

Through automated transport and maintenance processes, the maintenance efficiency and output of inorganic sheets are improved, and the problem of inconvenient transport of traditional equipment is solved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a maintenance system capable of improving yield and efficiency. The maintenance system comprises a maintenance bin, a hot air conveying mechanism, a steam conveying mechanism, a humidifying mechanism and an airflow stirring mechanism, the interior of the curing bin is divided into a left curing cavity and a right curing cavity through a partition plate. And vehicle rails are further arranged in the left maintenance cavity and the right maintenance cavity correspondingly, trolleys capable of sliding back and forth on the vehicle rails are arranged on the vehicle rails, the two ends of the two vehicle rails extend to the outer side of the maintenance bin, and a transfer mechanism and a plurality of push-pull mechanisms are arranged at one ends of the two vehicle rails. The trolley on one of the trolley rails can be pushed to the transfer mechanism through the arranged push-pull mechanism, then the trolley is transferred to one end of the other trolley rail through the transfer mechanism, and then the trolley on the transfer mechanism is pushed to the other trolley rail through the push-pull mechanism. And therefore, the inorganic plates in the left curing cavity are automatically transferred into the right curing cavity, and the curing efficiency and the yield are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of maintenance devices, in particular to a maintenance system for improving output and efficiency. Background Art

[0002] Inorganic sheets are generally made by placing raw materials in a fixed mold. They need to be cured for a period of time at a certain temperature and humidity so that the formed sheets have corresponding characteristics. During the curing process, the inorganic sheets are generally placed in a curing kiln for curing. By forming a temperature and humidity that is conducive to the forming of the inorganic sheets in the curing kiln, the forming and fixing of the inorganic sheets can be accelerated, and the quality of the inorganic sheets after forming and fixing can also be improved.

[0003] For example, the patent with patent number CN219095455U includes a curing room, a solar power generation system, a temperature and humidity auxiliary adjustment system and a control system, and a number of temperature and humidity sensors are arranged in the curing room; a circulation port is arranged on the top of the curing room, and a heat exchange ceiling is installed on the outer cover of the circulation port, and air inlets and air outlets that can be opened and closed are arranged at both ends of the heat exchange ceiling respectively; a partition is arranged in the area between the air inlet and the air outlet of the heat exchange ceiling; the lower end of the partition extends into the curing room; the solar power generation system is laid on the top of the curing room; the working end of the temperature and humidity auxiliary adjustment system is connected to the interior of the curing room; the control system is electrically connected to the solar power generation system, the temperature and humidity sensors and the temperature and humidity auxiliary adjustment system.

[0004] Although the above device can utilize solar energy to reduce energy consumption during the curing process, it is inconvenient to transport the inorganic plate, resulting in low curing efficiency. Utility Model Content

[0005] In view of the above-mentioned defects, the purpose of the utility model is to propose a maintenance system that improves production and efficiency, and solves the problem that the current maintenance equipment is inconvenient to transport inorganic plates, resulting in low maintenance efficiency.

[0006] To achieve this purpose, the utility model adopts the following technical solutions:

[0007] A curing system for improving production and efficiency, comprising a curing bin and a hot air conveying mechanism, a steam conveying mechanism, a humidifying mechanism and an air flow stirring mechanism arranged in the curing bin;

[0008] The curing chamber is divided into a left curing chamber and a right curing chamber by a partition;

[0009] The working end of the hot air conveying mechanism is connected to the left curing chamber, and the hot air conveying mechanism is used to convey hot air into the left curing chamber;

[0010] The working end of the steam conveying mechanism is in communication with the hot air conveying mechanism and the humidifying mechanism, and the steam conveying mechanism is used to convey water vapor to the hot air conveying mechanism and the humidifying mechanism;

[0011] The working end of the humidifying mechanism is in communication with the left curing chamber and the right curing chamber, and the humidifying mechanism is used to transport water vapor into the left curing chamber and the right curing chamber;

[0012] The working end of the airflow stirring mechanism is connected to the left curing chamber and the right curing chamber, and the airflow stirring mechanism is used to stir the water vapor in the left curing chamber and the right curing chamber;

[0013] The left and right maintenance chambers are respectively provided with rails, on which are arranged trolleys which can slide back and forth on the rails, both ends of the two rails extend to the outside of the maintenance chamber, one end of the two rails is provided with a transfer mechanism and a plurality of push-pull mechanisms, the push-pull mechanism is provided at the end of the transfer mechanism away from the rails, and the push-pull mechanisms are respectively provided at the ends of the two rails away from the transfer mechanism, the transfer mechanism is used to receive the trolley on one of the rails and transfer the trolley to one end of the other rail, and the push-pull mechanism is used to push or pull the trolley on the rails and the transfer mechanism to move.

[0014] Preferably, a first door is provided at the opening of the left curing chamber and the right curing chamber, a second door is provided in the left curing chamber, the second door divides the left curing chamber into a preheating temperature zone and a constant temperature zone, a third door is provided in the right curing chamber, the third door divides the right curing chamber into a constant temperature zone and a cooling zone, an exhaust pipe is provided on the curing chamber, an air inlet end of the exhaust pipe is connected to the preheating temperature zone, a blocking mechanism is provided in the exhaust pipe, and the blocking mechanism is used to close or open the air outlet end of the exhaust pipe;

[0015] The air inlet end of the hot air conveying mechanism is connected to the pipe wall of the exhaust pipe, and the air outlet end of the hot air conveying mechanism extends into the preheating temperature rising zone, and the hot air conveying mechanism is used to convey hot air into the preheating temperature rising zone;

[0016] The air outlet end of the steam conveying mechanism is connected to the hot air conveying mechanism, and the steam conveying mechanism is used to convey water vapor into the hot air conveying mechanism;

[0017] The working ends of the humidifying mechanism and the airflow stirring mechanism extend into the constant temperature zone, the air inlet end of the humidifying mechanism is connected with the air outlet end of the steam conveying mechanism, the steam conveying mechanism is used to convey water vapor into the humidifying mechanism, and the airflow stirring mechanism is used to stir the water vapor in the constant temperature zone.

[0018] Preferably, the hot air conveying mechanism includes a heat exchanger, a fan, a hot air main pipe and a hot air branch pipe;

[0019] The air inlet end of the heat exchanger is connected to the pipe wall of the exhaust pipe, the air outlet end of the heat exchanger is connected to the air inlet end of the fan, the air outlet end of the fan is connected to the air inlet end of the hot air main pipe, the air outlet end of the hot air main pipe is connected to the hot air branch pipe, and one end of the hot air branch pipe away from the hot air main pipe passes through the curing chamber and extends into the preheating zone.

[0020] Preferably, the hot air branch pipe is closed at one end away from the hot air main pipe, and a plurality of air outlet holes are provided on the side wall of the hot air branch pipe.

[0021] Preferably, the humidification mechanism includes a first steam branch, a second steam branch and a third steam branch, the first steam branch is located above the curing bin, the air inlet end of the second steam branch is connected to the air outlet end of the first steam branch, the air outlet end of the second steam branch passes through the curing bin and extends into the constant temperature zone to be connected to the air inlet end of the third steam branch.

[0022] Preferably, the steam delivery component includes a steam pipe, the steam pipe is connected to a plurality of air outlet pipes, the bottom end of the hot air main pipe is connected to an air inlet pipe, and an air guide pipe is connected between the air outlet pipe, the air inlet pipe and the first steam branch.

[0023] Preferably, the airflow stirring mechanism includes a first drive motor, which is installed at the top of the curing chamber. The output shaft of the first drive motor passes through the curing chamber and extends to the constant temperature zone and is coaxially connected to a stirring shaft, and the bottom end of the stirring shaft is connected to a stirring paddle.

[0024] Preferably, the sealing mechanism includes a rotating shaft, both ends of which are rotatably connected to the inner wall of the exhaust pipe, and a gate plate is fixedly sleeved on the outer side of the rotating shaft, and the gate plate can close the outlet end of the exhaust pipe so that the inlet end of the exhaust pipe is connected to the air inlet end of the heat exchanger, and one end of the rotating shaft passes through the exhaust pipe and extends to the outside and is coaxially connected to a second drive motor.

[0025] Preferably, the transfer mechanism includes a conveying track, a rail car running on the conveying track, and a driving assembly driving the rail car to slide back and forth on the conveying track. The rail car is provided with a docking track, and through the movement of the rail car, the docking track can be docked with each of the vehicle rails, so that the trolley can drive from the vehicle rail into the docking track or from the docking track into the vehicle rail under the action of the push-pull mechanism.

[0026] Preferably, the push-pull mechanism includes a fixed seat, a side wall of the fixed seat is hinged with a first hydraulic cylinder, the bottom end of the first hydraulic cylinder is provided with a bracket, the output shaft of the first hydraulic cylinder is hinged with a push plate, the middle part of the bottom end of the push plate is provided with a first U-shaped clamp and a second U-shaped clamp, a pull rod is hinged in the first U-shaped clamp, a second hydraulic cylinder is hinged in the second U-shaped clamp, the output shaft of the second hydraulic cylinder is hinged to one end of the pull rod, a baffle rod is fixedly penetrated through the side wall at the other end of the pull rod, and a hook is provided at the bottom end of the trolley, and the hook is used to hook the baffle rod.

[0027] The technical solution provided by the utility model may have the following beneficial effects:

[0028] Through the push-pull mechanism, the trolley on one of the tracks can be pushed onto the transfer mechanism first, and then the trolley can be transferred to one end of the other track through the transfer mechanism. Then, the trolley on the transfer mechanism can be pushed onto the other track through the push-pull mechanism, thereby automatically transferring the inorganic plate in the left curing chamber to the right curing chamber, thereby improving the curing efficiency and output. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0030] Figure 2 It is a schematic diagram of the internal structure of the curing bin of the utility model;

[0031] Figure 3 The utility model Figure 2 A magnified view of area A in;

[0032] Figure 4 It is a structural schematic diagram of the hot air conveying mechanism of the utility model;

[0033] Figure 5 It is a structural schematic diagram of the humidification mechanism and the airflow stirring mechanism of the utility model;

[0034] Figure 6 It is a structural schematic diagram of the utility model in which the damper in the exhaust pipe is in a closed state;

[0035] Figure 7 It is a structural schematic diagram of the utility model in which the damper in the exhaust pipe is in an open state;

[0036] Figure 8 It is a structural schematic diagram of the transfer mechanism of the utility model;

[0037] Fig. 9 It is a structural schematic diagram of the push-pull mechanism of the utility model;

[0038] Fig.10 The utility model Fig. 9Magnified view of area B in .

[0039] Among them: 1. Curing chamber; 11. Left curing chamber; 12. Right curing chamber; 13. Exhaust pipe; 14. Rotating shaft; 15. Gate; 2. Track; 21. Trolley; 22. Hook; 3. Hot air conveying mechanism; 31. Heat exchanger; 32. Fan; 33. Hot air main pipe; 34. Hot air branch pipe; 341. Air outlet; 4. Steam conveying mechanism; 41. Steam pipeline; 42. Air outlet pipe; 43. Air guide pipe; 5. Humidification mechanism; 51. First steam branch; 52. Second Steam branch; 53, third steam branch; 6, air flow stirring mechanism; 61, first drive motor; 62, stirring shaft; 63, stirring paddle; 7, transfer mechanism; 71, conveying track; 72, rail car; 73, docking track; 8, push-pull mechanism; 81, fixed seat; 82, first hydraulic cylinder; 83, push plate; 831, pulley; 832, guide rail; 84, first U-shaped clamp; 85, second U-shaped clamp; 86, pull rod; 861, stop rod; 87, second hydraulic cylinder. DETAILED DESCRIPTION

[0040] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.

[0041] In the description of the present invention, it should be understood that the terms "longitudinal", "transverse", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention. In addition, features defined as "first" or "second" may explicitly or implicitly include one or more of the features, and are used to distinguish and describe features, without distinction of order or importance.

[0042] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0043] Below is the attached figure Figures 1 to 10 The technical solution of the utility model is further illustrated by specific implementation methods.

[0044] like Figure 1-10 As shown, a curing system for improving production and efficiency includes a curing bin 1 and a hot air conveying mechanism 3, a steam conveying mechanism 4, a humidifying mechanism 5 and an air flow stirring mechanism 6 arranged in the curing bin 1;

[0045] The curing chamber 1 is divided into a left curing chamber 11 and a right curing chamber 12 by a partition;

[0046] The working end of the hot air conveying mechanism 3 is connected to the left curing chamber 11, and the hot air conveying mechanism 3 is used to convey hot air into the left curing chamber 11;

[0047] The working end of the steam conveying mechanism 4 is connected to the hot air conveying mechanism 3 and the humidifying mechanism 5, and the steam conveying mechanism 4 is used to convey water vapor to the hot air conveying mechanism 3 and the humidifying mechanism 5;

[0048] The working end of the humidifying mechanism 5 is connected to the left curing chamber 11 and the right curing chamber 12, and the humidifying mechanism 5 is used to transport water vapor into the left curing chamber 11 and the right curing chamber 12;

[0049] The working end of the airflow stirring mechanism 6 is connected to the left curing chamber 11 and the right curing chamber 12, and the airflow stirring mechanism 6 is used to stir the water vapor in the left curing chamber 11 and the right curing chamber 12;

[0050] The left curing chamber 11 and the right curing chamber 12 are respectively provided with rails 2, and the rails 2 are provided with trolleys 21 that can slide back and forth on the rails 2. Both ends of the two rails 2 extend to the outside of the curing chamber 1, and one end of the two rails 2 is provided with a transfer mechanism 7 and a plurality of push-pull mechanisms 8. The end of the transfer mechanism 7 away from the rails 2 is provided with the push-pull mechanism 8, and the ends of the two rails 2 away from the transfer mechanism 7 are respectively provided with the push-pull mechanisms 8. The transfer mechanism 7 is used to receive the trolley 21 on one of the rails 2 and transfer the trolley 21 to one end of the other rail 2, and the push-pull mechanism 8 is used to push or pull the rails 2 and the trolley 21 on the transfer mechanism 7 to move.

[0051] It can be understood that through the push-pull mechanism 8, the trolley 21 on one of the rails 2 can be pushed onto the transfer mechanism 7 first, and then the trolley 21 can be transferred to one end of the other rail 2 through the transfer mechanism 7, and then the trolley on the transfer mechanism 7 can be pushed onto the other rail 2 through the push-pull mechanism 8, thereby automatically transferring the inorganic plate in the left curing chamber 11 to the right curing chamber 12 for curing, thereby improving the curing efficiency and output.

[0052] Specifically, the first door, the second door and the third door are all thermal insulation rolling shutter doors, which are easy to open and close and have good thermal insulation and moisture retention effects, thereby reducing energy consumption.

[0053] like Figure 1-2 As shown, the openings of the left curing chamber 11 and the right curing chamber 12 are both provided with a first door, the left curing chamber 11 is provided with a second door, the second door divides the left curing chamber 11 into a preheating temperature zone and a constant temperature zone, the right curing chamber 12 is provided with a third door, the third door divides the right curing chamber 12 into a constant temperature zone and a cooling zone, the curing chamber 1 is provided with an exhaust pipe 13, the air inlet end of the exhaust pipe 13 is connected to the preheating temperature zone, the exhaust pipe 13 is provided with a blocking mechanism, the blocking mechanism is used to close or open the air outlet end of the exhaust pipe 13;

[0054] The air inlet end of the hot air conveying mechanism 3 is connected to the pipe wall of the exhaust pipe 13, and the air outlet end of the hot air conveying mechanism 3 extends into the preheating temperature rising zone. The hot air conveying mechanism 3 is used to convey hot air into the preheating temperature rising zone.

[0055] The air outlet end of the steam conveying mechanism 4 is connected to the hot air conveying mechanism 3, and the steam conveying mechanism 4 is used to convey water vapor into the hot air conveying mechanism 3;

[0056] The working ends of the humidifying mechanism 5 and the airflow stirring mechanism 6 extend into the constant temperature zone, the air inlet end of the humidifying mechanism 5 is connected with the air outlet end of the steam conveying mechanism 4, the steam conveying mechanism 4 is used to convey water vapor into the humidifying mechanism 5, and the airflow stirring mechanism 6 is used to stir the water vapor in the constant temperature zone.

[0057] Specifically, the left curing chamber 11 and the right curing chamber 12 are divided into a preheating zone, a constant temperature zone and a cooling zone, so that the inorganic plate can be cured in the preheating zone, the constant temperature zone and the cooling zone in turn during the transportation process, thereby meeting the curing conditions required by the inorganic plate at different times.

[0058] Furthermore, the first door, the second door and the third door are all thermal insulation rolling shutter doors, which are easy to open and close and have good thermal insulation and moisture retention effects, thereby reducing energy consumption.

[0059] like Figure 4 As shown, the hot air conveying mechanism 3 includes a heat exchanger 31, a fan 32, a hot air main pipe 33 and a hot air branch pipe 34;

[0060] The air inlet end of the heat exchanger 31 is connected to the pipe wall of the exhaust pipe 13, the air outlet end of the heat exchanger 31 is connected to the air inlet end of the fan 32, the air outlet end of the fan 32 is connected to the air inlet end of the hot air main pipe 33, and the air outlet end of the hot air main pipe 33 is connected to the hot air branch pipe 34. The end of the hot air branch pipe 34 away from the hot air main pipe 33 passes through the curing chamber 1 and extends into the preheating zone.

[0061] Specifically, the fan 32 is started, and the air at the outlet end of the exhaust pipe 13 enters the heat exchanger 31, is heated after heat exchange in the heat exchanger 31 and is transported to the hot air main pipe 33, and then is discharged into the preheating zone through the hot air branch pipe 34, thereby increasing the temperature in the preheating zone.

[0062] like Figure 4 As shown, the hot air branch pipe 34 is closed at one end away from the hot air main pipe 33 , and a plurality of air outlet holes 341 are provided on the side wall of the hot air branch pipe 34 .

[0063] Specifically, the other end of the hot air branch pipe 34 is closed, and a plurality of air outlet holes 341 are opened on the side wall of the hot air branch pipe 34, so that the hot air can be evenly distributed in the preheating zone, and during maintenance, it can be ensured that the stacked inorganic plates can be blown by the hot air.

[0064] like Figure 5 As shown, the humidifying mechanism 5 includes a first steam branch 51, a second steam branch 52 and a third steam branch 53. The first steam branch 51 is located above the curing bin 1, and the air inlet end of the second steam branch 52 is connected to the air outlet end of the first steam branch 51. The air outlet end of the second steam branch 52 passes through the curing bin 1 and extends into the constant temperature zone to be connected to the air inlet end of the third steam branch 53.

[0065] Specifically, high-temperature steam is delivered through the first steam branch 51 , the second steam branch 52 and the third steam branch 53 to heat and humidify the constant temperature zone, thereby meeting the requirements of a hot and humid environment required for curing the inorganic plate.

[0066] like Figure 3 As shown, the steam delivery component 4 includes a steam pipe 41, and a plurality of air outlet pipes 42 are connected to the steam pipe 41. The bottom end of the hot air main pipe 33 is connected to an air inlet pipe, and an air guide pipe 43 is connected between the air outlet pipe 42, the air inlet pipe and the first steam branch 51.

[0067] Specifically, when the temperature and humidity in the preheating zone need to be increased, the water vapor in the steam pipe 41 flows into the hot air main pipe 33 through the outlet pipe 42, the heat conduction pipe 43 and the inlet pipe, and is mixed with the hot air in the hot air main pipe 33 and then discharged through the outlet hole 341 of the hot air branch pipe 34. The hot air mixed with water vapor can increase the temperature and humidity in the preheating zone.

[0068] like Figure 5 As shown, the air flow stirring mechanism 6 includes a first drive motor 61, which is installed at the top of the curing chamber 1. The output shaft of the first drive motor 61 passes through the curing chamber 1 and extends to the constant temperature zone and is coaxially connected with a stirring shaft 62. The bottom end of the stirring shaft 62 is connected with a stirring paddle 63.

[0069] Specifically, the stirring paddle 63 connected to the stirring shaft 62 is driven to rotate by the first driving motor 61 to stir the water vapor in the constant temperature zone, which can increase the flow rate of the water vapor, allowing the water vapor to quickly fill the constant temperature zone, and can also have the effect of blowing and cooling the water vapor, thereby adjusting the temperature of the constant temperature zone.

[0070] like Figure 6-7 As shown, the sealing mechanism includes a rotating shaft 14, both ends of which are rotatably connected to the inner wall of the exhaust pipe 13, and a gate plate 15 is fixedly sleeved on the outer side of the rotating shaft 14, and the gate plate 15 can close the outlet end of the exhaust pipe 13 so that the inlet end of the exhaust pipe 13 is connected to the air inlet end of the heat exchanger 31, and one end of the rotating shaft 14 passes through the exhaust pipe 13 and extends to the outside and is coaxially connected to a second drive motor.

[0071] Specifically, when the humidity in the preheating zone needs to be reduced quickly, the steam delivery mechanism 3 is closed, and the motor drives the rotating shaft 14 to rotate and open the gate 15. At this time, the gate 15 is Figure 7 As shown, the fan 32 draws air from the air outlet and air inlet ends of the exhaust pipe 13, and flows into the air inlet end of the heat exchanger 31 along the left side of the gate plate 15 for heating and transporting the hot air to the preheating zone. At the same time, the water vapor in the preheating zone flows into the air inlet end of the exhaust pipe 13, and flows along the right side of the gate plate 15 to the air outlet end of the exhaust pipe 13 for discharge, thereby quickly reducing the humidity in the heat rising zone.

[0072] Further, when fresh air is not needed, the gate 16 is Figure 6 As shown, the air in the preheating zone flows from the air inlet end of the exhaust pipe 13 into the air inlet end of the heat exchanger 31 to be heated and the hot air is transported to the preheating zone for internal circulation.

[0073] like Figure 8As shown, the transfer mechanism 7 includes a conveying track 71, a rail car 72 running on the conveying track 71, and a driving component that drives the rail car 72 to slide back and forth on the conveying track 71. The rail car 72 is provided with a docking track 73. Through the movement of the rail car 72, the docking track 73 can be docked with each of the vehicle rails 2, so that the trolley 21 can drive from the vehicle rail 2 into the docking track 73 or drive from the docking track 73 into the vehicle rail 2 under the action of the push-pull mechanism 8.

[0074] Specifically, when the docking track 73 on the rail car 72 is connected to one of the rails 2, the push-pull mechanism 8 pushes the trolley 21 on the rail 2 to move, so that the trolley 21 at the end of the rail 2 enters the docking track 73 on the rail car 72, and then the driving component drives the rail car 72 to move along the conveying track 71, so that the docking track 73 is connected to another rail 2, and then the push-pull mechanism 8 pushes the trolley 21 to move, so that the trolley 21 enters the other rail 2, and the trolley 21 at the end of the other rail 2 will be pulled out by the push-pull mechanism 8, thereby completing the transfer of the inorganic artificial stone from the left curing cavity 11 to the right curing cavity 12.

[0075] like Figure 9-10 As shown, the push-pull mechanism 8 includes a fixed seat 81, the side wall of the fixed seat 81 is hinged with a first hydraulic cylinder 82, the bottom end of the first hydraulic cylinder 82 is provided with a bracket, the output shaft of the first hydraulic cylinder 82 is hinged with a push plate 83, the middle part of the bottom end of the push plate 83 is provided with a first U-shaped clamp 84 and a second U-shaped clamp 85, the first U-shaped clamp 84 is hinged with a pull rod 86, the second U-shaped clamp 85 is hinged with a second hydraulic cylinder 87, the output shaft of the second hydraulic cylinder 87 is hinged to one end of the pull rod 86, and a blocking rod 861 is fixedly penetrated through the side wall of the other end of the pull rod 86, and a hook 22 is provided at the bottom end of the trolley 21, and the hook 22 is used to hook the blocking rod 861.

[0076] Specifically, when it is necessary to pull the trolley 21 to move, the first hydraulic cylinder 82 drives the push plate 83 to move so that the push plate 83 is close to the side wall of the trolley 21, and then the second hydraulic cylinder 87 drives the pull rod 86 to rotate to drive the blocking rod 861 to rise, and then the first hydraulic cylinder 82 drives the push plate 83 away from the trolley 21, so that the blocking rod 861 enters the hook groove of the hook 22. At this time, the hook 22 hooks the blocking rod 861, and the blocking rod 861 can pull the trolley 21 to move.

[0077] Furthermore, pulleys 831 are provided on both sides of the bottom end of the push plate 83, and a guide rail 832 is provided at the bottom end of the pulley 831. Through the coordinated use of the pulley 831 and the guide rail 832, the push plate 83 can be made to move more stably and smoothly.

[0078] The technical principle of the present invention is described above in combination with specific embodiments. These descriptions are only for explaining the principle of the present invention and cannot be interpreted as limiting the protection scope of the present invention in any way. Based on the explanations here, technicians in this field can think of other specific implementation methods of the present invention without creative work, and these methods will fall within the protection scope of the present invention.

Claims

1. A curing system for improving production and efficiency, characterized by: It comprises a curing chamber (1) and a hot air conveying mechanism (3), a steam conveying mechanism (4), a humidifying mechanism (5) and an air flow stirring mechanism (6) arranged in the curing chamber (1); The curing chamber (1) is divided into a left curing chamber (11) and a right curing chamber (12) by a partition; The working end of the hot air conveying mechanism (3) is connected to the left curing chamber (11), and the hot air conveying mechanism (3) is used to convey hot air into the left curing chamber (11); The working end of the steam conveying mechanism (4) is in communication with the hot air conveying mechanism (3) and the humidifying mechanism (5), and the steam conveying mechanism (4) is used to convey water vapor to the hot air conveying mechanism (3) and the humidifying mechanism (5); The working end of the humidifying mechanism (5) is in communication with the left curing chamber (11) and the right curing chamber (12), and the humidifying mechanism (5) is used to transport water vapor into the left curing chamber (11) and the right curing chamber (12); The working end of the airflow stirring mechanism (6) is connected to the left curing chamber (11) and the right curing chamber (12), and the airflow stirring mechanism (6) is used to stir the water vapor in the left curing chamber (11) and the right curing chamber (12); The left curing chamber (11) and the right curing chamber (12) are respectively provided with rails (2), and the rails (2) are provided with trolleys (21) that can slide back and forth on the rails (2). Both ends of the two rails (2) extend to the outside of the curing chamber (1). One end of the two rails (2) is provided with a transfer mechanism (7) and a plurality of push-pull mechanisms (8). The end of the transfer mechanism (7) away from the rails (2) is provided with the push-pull mechanism (8). The ends of the two rails (2) away from the transfer mechanism (7) are respectively provided with the push-pull mechanisms (8). The transfer mechanism (7) is used to receive the trolley (21) on one of the rails (2) and transfer the trolley (21) to one end of the other rail (2). The push-pull mechanism (8) is used to push or pull the rails (2) and the trolley (21) on the transfer mechanism (7) to move.

2. A curing system for improving production and efficiency according to claim 1, characterized in that: A first door is provided at the opening of the left curing chamber (11) and the right curing chamber (12); a second door is provided in the left curing chamber (11); the second door divides the left curing chamber (11) into a preheating temperature zone and a constant temperature zone; a third door is provided in the right curing chamber (12); the third door divides the right curing chamber (12) into a constant temperature zone and a cooling zone; an exhaust pipe (13) is provided on the curing chamber (1); an air inlet end of the exhaust pipe (13) is connected to the preheating temperature zone; a blocking mechanism is provided in the exhaust pipe (13); the blocking mechanism is used to close or open the air outlet end of the exhaust pipe (13); The air inlet end of the hot air conveying mechanism (3) is connected to the pipe wall of the exhaust pipe (13), and the air outlet end of the hot air conveying mechanism (3) extends into the preheating temperature rising zone. The hot air conveying mechanism (3) is used to convey hot air into the preheating temperature rising zone; The air outlet end of the steam conveying mechanism (4) is connected to the hot air conveying mechanism (3), and the steam conveying mechanism (4) is used to convey water vapor into the hot air conveying mechanism (3); The working ends of the humidifying mechanism (5) and the airflow stirring mechanism (6) extend into the constant temperature zone; the air inlet end of the humidifying mechanism (5) is connected to the air outlet end of the steam conveying mechanism (4); the steam conveying mechanism (4) is used to convey water vapor into the humidifying mechanism (5); and the airflow stirring mechanism (6) is used to stir the water vapor in the constant temperature zone.

3. A curing system for improving production and efficiency according to claim 2, characterized in that: The hot air conveying mechanism (3) comprises a heat exchanger (31), a fan (32), a hot air main pipe (33) and a hot air branch pipe (34); The air inlet end of the heat exchanger (31) is connected to the pipe wall of the exhaust pipe (13), the air outlet end of the heat exchanger (31) is connected to the air inlet end of the fan (32), the air outlet end of the fan (32) is connected to the air inlet end of the hot air main pipe (33), the air outlet end of the hot air main pipe (33) is connected to the hot air branch pipe (34), and the end of the hot air branch pipe (34) away from the hot air main pipe (33) passes through the curing chamber (1) and extends into the preheating zone.

4. A curing system for improving production and efficiency according to claim 3, characterized in that: One end of the hot air branch pipe (34) away from the hot air main pipe (33) is closed, and a plurality of air outlet holes (341) are provided on the side wall of the hot air branch pipe (34).

5. A curing system for improving production and efficiency according to claim 3, characterized in that: The humidifying mechanism (5) comprises a first steam branch (51), a second steam branch (52) and a third steam branch (53); the first steam branch (51) is located above the curing chamber (1); an air inlet end of the second steam branch (52) is connected to an air outlet end of the first steam branch (51); and an air outlet end of the second steam branch (52) passes through the curing chamber (1) and extends into the constant temperature zone to be connected to an air inlet end of the third steam branch (53).

6. A curing system for improving production and efficiency according to claim 5, characterized in that: The steam conveying mechanism (4) comprises a steam pipeline (41), the steam pipeline (41) is connected to a plurality of air outlet pipes (42), the bottom end of the hot air main pipe (33) is connected to an air inlet pipe, and an air guide pipe (43) is connected between the air outlet pipe (42), the air inlet pipe and the first steam branch (51).

7. A curing system for improving production and efficiency according to claim 2, characterized in that: The air flow stirring mechanism (6) comprises a first drive motor (61), which is installed at the top of the curing chamber (1). The output shaft of the first drive motor (61) passes through the curing chamber (1) and extends to the constant temperature zone and is coaxially connected to a stirring shaft (62). The bottom end of the stirring shaft (62) is connected to a stirring paddle (63).

8. A curing system for improving production and efficiency according to claim 3, characterized in that: The blocking mechanism comprises a rotating shaft (14), both ends of which are rotatably connected to the inner wall of the exhaust pipe (13), a gate plate (15) is fixedly sleeved on the outer side of the rotating shaft (14), and the gate plate (15) can close the air outlet end of the exhaust pipe (13) so that the air inlet end of the exhaust pipe (13) is connected to the air inlet end of the heat exchanger (31), and one end of the rotating shaft (14) passes through the exhaust pipe (13) and extends to the outside and is coaxially connected to a second drive motor.

9. A curing system for improving production and efficiency according to claim 1, characterized in that: The transfer mechanism (7) comprises a conveying track (71), a rail car (72) running on the conveying track (71), and a driving assembly driving the rail car (72) to slide back and forth on the conveying track (71); the rail car (72) is provided with a docking track (73); through the movement of the rail car (72), the docking track (73) can be docked with each of the vehicle rails (2), so that the trolley (21) can drive from the vehicle rail (2) into the docking track (73) or drive from the docking track (73) into the vehicle rail (2) under the action of the push-pull mechanism (8).

10. A curing system for improving production and efficiency according to claim 1, characterized in that: The push-pull mechanism (8) comprises a fixed seat (81), a first hydraulic cylinder (82) is hingedly connected to the side wall of the fixed seat (81), a bracket is provided at the bottom end of the first hydraulic cylinder (82), an output shaft of the first hydraulic cylinder (82) is hingedly connected to a push plate (83), a first U-shaped clamp (84) and a second U-shaped clamp (85) are provided at the middle of the bottom end of the push plate (83), a pull rod (86) is hingedly connected inside the first U-shaped clamp (84), a second hydraulic cylinder (87) is hingedly connected inside the second U-shaped clamp (85), an output shaft of the second hydraulic cylinder (87) is hingedly connected to one end of the pull rod (86), a blocking rod (861) is fixedly penetrated through the side wall at the other end of the pull rod (86), and a hook (22) is provided at the bottom end of the trolley (21), and the hook (22) is used to hook the blocking rod (861).

Citation Information

Patent Citations

  • Inorganic decorative plate maintenance device

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