Cooling tower for three-station glue station

CN224635697UActive Publication Date: 2026-08-14EAST ENTROPY INTELLIGENT TECH (NANJING) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-26
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0003]现有技术中,传统的转动传动装置多采用单一传动带或少数几个传动部件进行动力传递,且未设置专门的限位结构对传动带的运动轨迹加以约束

Benefits of technology

[0021](1)、通过转动机构的传动件A、传动带A、传动件B、传动件C、传动件D、传动件E、传动件F和传动带B等一系列部件的配合传动,实现了动力的高效传递,带动放置架精准转动,同时,限位架A和限位架B对传动带B的运动轨迹进行限制,进一步保证了传动的精准性;

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a cooling tower for a three-station glue station, including a base frame and a support plate. A top frame is provided on the top of the base frame, and a protective top plate is provided on the top of the top frame. The support plate is located inside the top frame, and a drive motor is provided on the top of the support plate. This utility model achieves efficient power transmission and drives the placement rack to rotate precisely through the coordinated transmission of a series of components such as transmission component A, transmission belt A, transmission component B, transmission component C, transmission component D, transmission component E, transmission component F, and transmission belt B in a rotating mechanism. The base frame and top frame form a stable overall structure, and the support plate provides stable support for the drive motor and reducer. The positioning pin ensures a firm connection between the positioning plate and the transmission belt B, ensuring stability and reliability. Through the cooperation of the cylinder, positioning block, and insertion hole, the placement rack can be accurately and firmly positioned when it rotates to the designated position, avoiding displacement during subsequent work.
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Description

Technical Field

[0001] This utility model relates to the field of cooling tower technology, specifically a cooling tower for a three-station glue station. Background Technology

[0002] In industrial production, the preparation, storage, and application of adhesives (such as coating and bonding processes) often need to be carried out under specific temperature conditions to ensure the stability of adhesive performance (such as viscosity, curing speed, and flowability). A three-station adhesive dispensing station is an automated or semi-automated device that integrates multiple functional stations such as adhesive storage, mixing, and metered dispensing, and is widely used in fields such as automotive manufacturing.

[0003] In the existing technology, traditional rotary transmission devices mostly use a single transmission belt or a few transmission components to transmit power, and no special limiting structure is set to constrain the movement trajectory of the transmission belt.

[0004] Because of the limited number of transmission components and the simple structure, problems such as unstable transmission and slippage are prone to occur during power transmission, resulting in low power transmission efficiency and an inability to drive the load (such as the placement frame) to rotate accurately, which in turn affects the operating accuracy and stability of the entire device.

[0005] In light of this, we are launching a cooling tower for three-station glue stations. Utility Model Content

[0006] The purpose of this invention is to provide a cooling tower for a three-station glue station to solve the problems mentioned in the background art.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a cooling tower for a three-station glue station, comprising: a base frame and a support plate;

[0008] A top frame is provided on the top of the bottom frame, and a protective top plate is provided on the top of the top frame;

[0009] The support plate is located inside the top frame, and a drive motor is located on the top of the support plate. A reducer is located on one side of the drive motor and is located on the top of the support plate.

[0010] The bottom frame and the top frame are equipped with a rotating mechanism. Through the coordinated use of the transmission components A, belt A, B, C, D, E and F of the rotating mechanism, the mounting frame of the rotating mechanism will be driven to rotate inside the bottom frame and the top frame.

[0011] Preferably, the rotating mechanism includes a rotating shaft connected inside the reducer, and the rotating shaft passes through the reducer. There are two sets of transmission components A, and the two sets of transmission components A are connected to both ends of the rotating shaft. The transmission belt A is disposed on the surface of the transmission component A, and the other end of the transmission belt A is connected to the surface of the transmission component B. The transmission component B is connected to the inner side of the top frame. The transmission component C is connected to one side of the surface of the transmission component B. The transmission component D is connected to the side of the top frame and is located on one side of the transmission component C. The transmission component E is connected to the inner side of the bottom frame and is located below the transmission component D. The transmission component F is disposed on the inner side of the top frame, and the transmission belt B is provided between the transmission components C, D, E and F.

[0012] Preferably, a positioning plate is connected between the two sets of transmission belts B, and there are two sets of positioning plates. The placement frame is placed between the two sets of positioning plates. A positioning pin is connected between the positioning plate and the transmission belt B. The two sets of transmission belts B are connected as a whole through the positioning plates, so that their movements are synchronized. The two sets of positioning plates fix the placement frame from both sides, ensuring the stability of the placement frame during movement and preventing it from tilting or falling. The positioning pin further strengthens the connection between the positioning plate and the transmission belt B, preventing loosening or relative displacement during long-term use. This ensures that the placement frame can move accurately and stably with the transmission belt B, avoiding positional deviation of the placement frame due to weak connection.

[0013] Preferably, the top of the support plate is provided with a support frame for supporting the rotating shaft. The support frame is installed on the top of the support plate and its position corresponds to the rotating shaft. It can provide additional support for the rotating shaft, effectively share the radial force generated by the rotating shaft during rotation, prevent the rotating shaft from bending or deforming due to its own weight or excessive force, ensure the smoothness and concentricity of the rotating shaft rotation, and thus ensure the accuracy of the transmission of the entire rotating mechanism, avoiding abnormal equipment operation caused by insufficient support of the rotating shaft.

[0014] Preferably, a connecting frame is provided on the inner side of the base frame, and a cylinder is connected to the side of the connecting frame. One end of the cylinder is connected to a positioning block, and the positioning block is inserted into the interior of the positioning plate. The interior of the positioning plate has a socket for inserting the positioning block. The connecting frame provides a stable mounting base for the cylinder, allowing it to be firmly fixed inside the base frame. When the placement frame rotates to the preset position, the cylinder actuates, pushing the positioning block to accurately insert into the socket on the positioning plate, thereby achieving precise positioning and fixing of the positioning plate and the placement frame, preventing accidental movement during operation. The opening position of the socket matches the positioning block, ensuring that the positioning block can be smoothly inserted and tightly fitted, avoiding work errors caused by inaccurate positioning.

[0015] Preferably, the top frame is provided with a baffle A on its side, a fan is provided on one side of the baffle A, an exhaust fan is provided on the top of the fan, and a fan is provided on one side of the baffle A. When the fan is working, the outside air of the equipment is blown out of the fan through the exhaust fan and blown into the interior of the bottom frame and the top frame to exhaust the hot air inside the equipment. An air outlet is provided on one side of the bottom frame, thereby forming an air circulation and improving the cooling efficiency.

[0016] Preferably, a baffle B is connected to the surface of the bottom frame and the top frame. The surface of the bottom frame is provided with a cabinet door. The baffle B covers the surfaces of the bottom frame and the top frame, which can effectively prevent external dust and impurities from entering the equipment. It also plays a certain role in safety protection, preventing personnel from accidentally contacting the internal operating parts of the equipment. The cabinet door is located on the surface of the bottom frame, which makes it convenient for operators to open it to inspect, maintain or replace the internal parts of the equipment. Its opening and closing design is flexible, and it can ensure the airtightness of the equipment when closed, avoiding the problem of damage to internal parts or inconvenience of operation due to insufficient protection of the equipment surface.

[0017] Preferably, the bottom of the base frame is provided with anti-vibration feet at equal intervals. The anti-vibration feet are installed at equal intervals on the bottom of the base frame, which can evenly distribute the weight of the equipment and reduce the vibration and noise generated during the operation of the equipment. At the same time, its height-adjustable feature can ensure that the equipment can maintain horizontal stability in different ground environments, avoiding equipment damage or unstable operation caused by uneven ground or excessive equipment vibration.

[0018] Preferably, a controller is connected to the side of the top frame, and an alarm is connected to the top of the controller. The controller is installed on the side of the top frame, which allows operators to set and adjust various operating parameters of the equipment (such as rotation speed, cooling time, positioning position, etc.) to realize the automated operation of the equipment. The alarm is connected to the controller, and when the equipment malfunctions (such as abnormal drive motor, positioning failure, excessive temperature, etc.), it can promptly issue sound and light alarm signals to remind operators to handle the situation, thus avoiding production accidents or equipment damage caused by failure to detect equipment malfunctions in a timely manner.

[0019] Preferably, the bottom of the base frame is horizontally provided with a limiting frame A to restrict the transmission belt B, and the surface of the base frame is vertically provided with a limiting frame B to restrict the transmission belt B. The limiting frame A is horizontally provided at the bottom of the base frame, which can restrict the movement trajectory of the transmission belt B in the horizontal direction to prevent it from deviating in the horizontal direction. The limiting frame B is vertically provided on the surface of the base frame, which constrains the transmission belt B in the vertical direction. The two work together to ensure that the transmission belt B always runs smoothly within the preset trajectory, avoiding transmission failure or equipment failure caused by transmission belt deviation.

[0020] Compared with the prior art, the beneficial effects of this utility model are:

[0021] (1) Through the coordinated transmission of a series of components such as transmission component A, transmission belt A, transmission component B, transmission component C, transmission component D, transmission component E, transmission component F and transmission belt B of the rotating mechanism, the efficient transmission of power is realized, which drives the placement frame to rotate precisely. At the same time, the limit frame A and limit frame B restrict the movement trajectory of the transmission belt B, further ensuring the accuracy of the transmission.

[0022] (2) The bottom frame and top frame form a stable overall structure, providing a solid foundation for the installation of each component. The support plate provides stable support for the drive motor and reducer. The support frame ensures the stability of the shaft rotation. The positioning pin makes the positioning plate firmly connected to the transmission belt B. These structural designs ensure the stability and reliability of the equipment during operation.

[0023] (3) Through the cooperation of cylinder, positioning block and insertion hole, the placement rack can be accurately and firmly positioned when it is rotated to the designated position, avoiding displacement in subsequent work and ensuring the quality and efficiency of the work. Attached Figure Description

[0024] Figure 1 This is a first-view structural schematic diagram of the present invention;

[0025] Figure 2 This is a structural schematic diagram of the present invention from a second perspective;

[0026] Figure 3 This is a structural schematic diagram of the present invention from a third-view perspective;

[0027] Figure 4 This is a structural schematic diagram of the present invention from a fourth perspective;

[0028] Figure 5 This is a structural schematic diagram of the present invention from a fifth perspective;

[0029] Figure 6 This is a schematic diagram of the structure of the transmission component A and the rotating mechanism of this utility model when they are connected in three dimensions;

[0030] Figure 7 This is a side view of the transmission component A and the rotating mechanism of this utility model.

[0031] In the diagram: 1. Top frame; 2. Controller; 3. Alarm; 4. Protective top plate; 5. Shock-absorbing feet; 6. Support plate; 7. Drive motor; 8. Reducer; 9. Shaft; 10. Transmission component A; 11. Transmission belt A; 13. Transmission belt B; 14. Transmission component D; 15. Positioning plate; 16. Positioning pin; 17. Exhaust fan; 18. Limiting bracket B; 19. Bottom frame; 20. Transmission component E; 21. Placement rack; 23. Transmission component F; 24. Connecting bracket; 25. Cylinder; 26. Positioning block; 27. Insertion hole; 28. Fan; 29. ​​Support frame; 30. Baffle A; 31. Baffle B; 32. Cabinet door; 33. Limiting bracket A; 34. Transmission component B; 35. Transmission component C. Detailed Implementation

[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0033] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed", "equipped with", "sleeved with", "connected", etc., should be interpreted broadly. For example, "connection" 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 an indirect connection through an intermediate medium; it can be a connection within two components. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0034] Please see Figure 1-7 This utility model provides a technical solution: a cooling tower for a three-station glue station, including: a bottom frame 19, a top frame 1 on the top of the bottom frame 19, and a protective top plate 4 on the top of the top frame 1. The bottom frame 19 serves as the basic support structure for the entire equipment, providing a stable installation platform for the top frame 1 above. The top frame 1 and the bottom frame 19 cooperate to form the main frame of the equipment, while the protective top plate 4 covers the top of the top frame 1, effectively preventing external dust, debris, and rainwater from falling into the equipment, protecting the internal components and ensuring the normal operating environment of the equipment.

[0035] A support plate 6 is disposed inside the top frame 1. A drive motor 7 is disposed on the top of the support plate 6. A reducer 8 is disposed on one side of the drive motor 7 and disposed on the top of the support plate 6. The support plate 6 is fixed inside the top frame 1. Its position and structural design ensure that a stable mounting base can be provided for the drive motor 7 and the reducer 8, so that the two will not shake or shift during operation. The drive motor 7, as the power source of the equipment, can reasonably adjust the output power by cooperating with the reducer 8 on one side to meet the requirements of the rotating mechanism for speed and torque. The two are jointly installed on the top of the support plate 6 to ensure the initial stability of power transmission.

[0036] The bottom frame 19 and the top frame 1 are equipped with a rotating mechanism. Through the coordinated use of the transmission components A10, transmission belt A11, transmission component B34, transmission component C35, transmission component D14, transmission component E20 and transmission component F23 of the rotating mechanism, the placement frame 21 of the rotating mechanism will rotate inside the bottom frame 19 and the top frame 1.

[0037] The rotating mechanism includes a rotating shaft 9 connected inside the reducer 8, and the rotating shaft 9 passes through the reducer 8. There are two sets of transmission components A10, connected to both ends of the rotating shaft 9. A transmission belt A11 is disposed on the surface of the transmission component A10, and the other end of the transmission belt A11 is connected to the surface of the transmission component B34. The transmission component B34 is connected to the inner side of the top frame 1. A transmission component C35 is connected to one side of the surface of the transmission component B34. A transmission component D14 is connected to the side of the top frame 1 and located to one side of the transmission component C35. A transmission component E20 is connected to the inner side of the bottom frame 19 and located below the transmission component D14. A transmission component F23 is disposed on the inner side of the top frame 1, and a transmission belt B is provided between the transmission components C35, D14, E20, and F23. 13. The rotating shaft 9 obtains a suitable rotational speed under the action of the reducer 8, and the design of passing through the reducer 8 ensures that the power can be effectively output to the transmission components A10 at both ends. The two sets of transmission components A10 drive the corresponding transmission components B34 to rotate through the transmission belt A11, ensuring the symmetry and balance of power transmission. The installation position of the transmission component B34 on the inner side of the top frame 1 enables it to stably transmit power to the transmission component C35 on one side. The transmission components D14, E20 and F23 are respectively set at specific positions on the side of the top frame 1, the inner side of the bottom frame 19 and the inner side of the top frame 1, forming a complete transmission closed loop with the transmission belt B13, ensuring that the transmission belt B13 can run smoothly, thereby driving the subsequent components to move. The positional relationship of each transmission component is clear and obvious, avoiding transmission failures caused by chaotic layout.

[0038] A positioning plate 15 is connected between the two sets of transmission belts B13. There are two sets of positioning plates 15. The placement frame 21 is located between the two sets of positioning plates 15. A positioning pin 16 is connected between the positioning plate 15 and the transmission belt B13. The two sets of transmission belts B13 are connected as a whole through the positioning plates 15, so that their movements are synchronized. The two sets of positioning plates 15 fix the placement frame 21 from both sides, ensuring the stability of the placement frame 21 during movement and preventing it from tilting or falling. The positioning pin 16 further strengthens the connection between the positioning plate 15 and the transmission belt B13, preventing them from loosening or relative displacement during long-term use. This ensures that the placement frame 21 can move accurately and stably with the transmission belt B13, avoiding positional deviation of the placement frame 21 due to insecure connection.

[0039] The top of the support plate 6 is provided with a support frame 29 for supporting the rotating shaft 9. The support frame 29 is installed on the top of the support plate 6 and its position corresponds to the rotating shaft 9. It can provide additional support for the rotating shaft 9, effectively share the radial force generated by the rotating shaft 9 during rotation, prevent the rotating shaft 9 from bending or deforming due to its own weight or excessive force, ensure the smoothness and concentricity of the rotating shaft 9, and thus ensure the accuracy of the transmission of the entire rotating mechanism, avoiding abnormal equipment operation caused by insufficient support of the rotating shaft 9.

[0040] The inner side of the base frame 19 is provided with a connecting frame 24, and a cylinder 25 is connected to the side of the connecting frame 24. One end of the cylinder 25 is connected to a positioning block 26, and the positioning block 26 is inserted into the interior of the positioning plate 15. The interior of the positioning plate 15 is provided with a socket 27 for inserting the positioning block 26. The connecting frame 24 provides a stable mounting base for the cylinder 25, so that it can be firmly fixed to the inner side of the base frame 19. When the placement frame 21 rotates to the preset working position, the cylinder 25 is activated, pushing the positioning block 26 to accurately insert into the socket 27 on the positioning plate 15, thereby achieving precise positioning and fixing of the positioning plate 15 and the placement frame 21, preventing accidental movement during operation. The opening position of the socket 27 matches the positioning block 26, ensuring that the positioning block 26 can be smoothly inserted and tightly fitted, avoiding working errors caused by inaccurate positioning.

[0041] The top frame 1 has a baffle A30 on its side, and a fan 28 is provided on one side of the baffle A30. An exhaust fan 17 is provided on the top of the fan 28. When the fan 28 is working, it blows the outside air of the equipment out through the exhaust fan 17 and into the interior of the bottom frame 19 and the top frame 1, thus expelling the hot air inside the equipment. The bottom frame 19 has an air outlet on one side, thereby forming an air circulation and improving the cooling efficiency.

[0042] The bottom frame 19 and the top frame 1 are connected by a baffle B31. The bottom frame 19 is provided with a cabinet door 32. The baffle B31 covers the surfaces of the bottom frame 19 and the top frame 1, which can effectively block external dust and impurities from entering the equipment. It also plays a certain safety protection role, preventing personnel from accidentally contacting the internal operating parts of the equipment. The cabinet door 32 is located on the surface of the bottom frame 19, which makes it convenient for operators to open it to inspect, maintain or replace the internal parts of the equipment. Its opening and closing design is flexible, and it can ensure the sealing of the equipment when closed, avoiding the problem of damage to internal parts or inconvenience of operation due to insufficient protection of the equipment surface.

[0043] The bottom of the base frame 19 is provided with anti-vibration feet 5 at equal intervals. The anti-vibration feet 5 are installed at equal intervals on the bottom of the base frame 19, which can evenly distribute the weight of the equipment and reduce the vibration and noise generated during the operation of the equipment. At the same time, its height-adjustable feature can ensure that the equipment can maintain horizontal stability in different ground environments, avoiding equipment damage or unstable operation caused by uneven ground or excessive equipment vibration.

[0044] A controller 2 is connected to the side of the top frame 1, and an alarm 3 is connected to the top of the controller 2. The controller 2 is installed on the side of the top frame 1, which allows operators to set and control various operating parameters of the equipment (such as rotation speed, cooling time, positioning position, etc.) to realize the automated operation of the equipment. The alarm 3 is connected to the controller 2. When the equipment malfunctions (such as abnormal drive motor 7, positioning failure, excessive temperature, etc.), it can promptly issue sound and light alarm signals to remind operators to handle the situation and avoid production accidents or equipment damage caused by failure to detect equipment malfunctions in time.

[0045] The bottom of the base frame 19 is horizontally provided with a limiting frame A33 to restrict the movement trajectory of the transmission belt B13, and the surface of the base frame 19 is vertically provided with a limiting frame B18 to restrict the movement trajectory of the transmission belt B13. The limiting frame A33 is horizontally provided at the bottom of the base frame 19, which can restrict the movement trajectory of the transmission belt B13 in the horizontal direction and prevent it from deviating in the horizontal direction. The limiting frame B18 is vertically provided on the surface of the base frame 19, which constrains the transmission belt B13 in the vertical direction. The two work together to ensure that the transmission belt B13 always runs smoothly within the preset trajectory, avoiding transmission failure or equipment failure caused by transmission belt deviation.

[0046] In this utility model, the control of electrical components such as drive motor 7, fan 28 and cylinder 25 can be automatic, such as PLC system control or microcontroller control, or it can be manually opened and closed by connecting switches to the control panel. The choice can be made flexibly according to the actual use situation, which will not be described in detail here.

[0047] Specifically, during use, when the equipment starts working, the operator issues a start command through the controller 2 connected to the side of the top frame 1. After receiving the command, the drive motor 7 starts and outputs power. The drive motor 7 is set on the top of the support plate 6, which is located inside the top frame 1, providing a stable mounting base for the drive motor 7. The power output by the drive motor 7 is transmitted to the reducer 8, which is also set on the top of the support plate 6 on one side. The reducer 8 reduces the power to meet the working requirements of the subsequent transmission mechanism.

[0048] The power processed by the reducer 8 is transmitted to the internally connected rotating shaft 9. The rotating shaft 9 passes through the reducer 8, and a support frame 29 is provided on the top of the support plate 6 to support the rotating shaft 9, ensuring the stability of the rotating shaft 9 during rotation. Two sets of transmission components A10 are connected to both ends of the rotating shaft 9. As the rotating shaft 9 rotates, the transmission components A10 rotate synchronously. The surface of the transmission component A10 is provided with a transmission belt A11, and the other end of the transmission belt A11 is connected to the surface of the transmission component B34. Driven by the transmission component A10, the transmission belt A11 transmits power to the transmission component B34, causing the transmission component B34 to move inside the top frame 1. The transmission component B34 is connected to a transmission component C35 on one side of its surface. The transmission component C35 rotates together with the transmission component B34. Since a transmission belt B13 is provided between the transmission components C35, D14, E20 and F23, the rotation of the transmission component C35 drives the transmission components D14, E20 and F23 to rotate through the transmission belt B13. The transmission component D14 is connected to the side of the top frame 1 and is located on one side of the transmission component C35. The transmission component E20 is connected to the inside of the bottom frame 19 and is located below the transmission component D14. The transmission component F23 is located on the inside of the top frame 1.

[0049] A positioning plate 15 is connected between the two sets of transmission belts B13. The positioning plate 15 and the transmission belt B13 are connected by a positioning pin 16, which ensures the firmness of the connection between the positioning plate 15 and the transmission belt B13. As the transmission belt B13 moves, the positioning plate 15 moves accordingly. The placement frame 21 is located between the two sets of positioning plates 15, thereby driving the placement frame 21 to rotate inside the bottom frame 19 and the top frame 1. A connecting frame 24 is provided on the inner side of the bottom frame 19. A cylinder 25 is connected to the side of the connecting frame 24. When the placement frame 21 rotates to the designated position, the cylinder 25 works, and the positioning plug 26 connected to one end is inserted into the plug hole 27 opened inside the positioning plate 15 to realize the positioning of the positioning plate 15 and the placement frame 21, ensuring the stable operation of subsequent work.

[0050] The top frame 1 is provided with a baffle A30 on the side, and a fan 28 is provided on one side of the baffle A30. When the fan 28 is working, the outside air of the equipment is blown out from the fan 28 through the exhaust fan 17 and blown into the interior of the bottom frame 19 and the top frame 1 to exhaust the hot air inside the equipment. The bottom frame 19 is provided with an air outlet on one side, thereby forming an air circulation and improving the cooling efficiency.

[0051] The bottom of the base frame 19 is horizontally equipped with a limiting bracket A33 to restrict the movement of the transmission belt B13, and the surface of the base frame 19 is vertically equipped with a limiting bracket B18 to restrict the movement of the transmission belt B13. These two limiting brackets work together to ensure that the transmission belt B13 moves within a specified trajectory, preventing deviation of the transmission belt B13 from affecting the normal operation of the equipment. A baffle B31 connects the bottom frame 19 to the surface of the top frame 1, providing protection against external debris entering the equipment and ensuring the safety of operators. The surface of the base frame 19 is equipped with a cabinet door 32 for convenient inspection and maintenance of the equipment's interior by operators.

[0052] The bottom of the base frame 19 is provided with anti-vibration feet 5 at equal intervals. During the operation of the equipment, the anti-vibration feet 5 can reduce the vibration of the equipment, reduce noise, protect the internal components of the equipment, and extend the service life of the equipment. The controller 2 is used to control and adjust various operating parameters of the equipment. When the equipment malfunctions, the alarm 3 connected to the top of the controller 2 will sound an alarm to promptly remind the operator to handle the situation.

[0053] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. Cooling tower for three-station gum station, characterized in that, include: A bottom frame (19) is provided on the top of the bottom frame (19), and a protective top plate (4) is provided on the top of the top frame (1). Support plate (6), the support plate (6) is disposed on the inner side of the top frame (1), the top of the support plate (6) is provided with a drive motor (7), a reducer (8) is provided on one side of the drive motor (7), and the reducer (8) is disposed on the top of the support plate (6); The bottom frame (19) and the top frame (1) are equipped with a rotating mechanism. Through the coordinated use of the transmission component A (10), transmission belt A (11), transmission component B (34), transmission component C (35), transmission component D (14), transmission component E (20) and transmission component F (23) of the rotating mechanism, the placement frame (21) of the rotating mechanism will rotate inside the bottom frame (19) and the top frame (1).

2. The three-station gum station cooling tower of claim 1, wherein, The rotating mechanism includes a rotating shaft (9) connected inside the reducer (8), and the rotating shaft (9) passes through the reducer (8). There are two sets of transmission components A (10), and the two sets of transmission components A (10) are connected to both ends of the rotating shaft (9). The transmission belt A (11) is provided on the surface of the transmission component A (10), and the other end of the transmission belt A (11) is connected to the surface of the transmission component B (34). The transmission component B (34) is connected to the inner side of the top frame (1). The transmission component C (35) A transmission belt B (13) is connected to one side of the surface of the transmission component B (34), the transmission component D (14) is connected to the side of the top frame (1) and located on one side of the transmission component C (35), the transmission component E (20) is connected to the inside of the bottom frame (19) and located below the transmission component D (14), the transmission component F (23) is located on the inside of the top frame (1), and a transmission belt B (13) is provided between the transmission components C (35), D (14), E (20) and F (23).

3. The three-station gum station cooling tower of claim 2, wherein, A positioning plate (15) is connected between the two sets of the transmission belts B (13). There are two sets of positioning plates (15). The placement frame (21) is located between the two sets of positioning plates (15). A positioning pin (16) is connected between the positioning plate (15) and the transmission belt B (13).

4. The three-station glue station cooling tower of claim 1, wherein, The top of the support plate (6) is provided with a support frame (29) for supporting the rotating shaft (9).

5. The three-station gum station cooling tower of claim 1, wherein, The bottom frame (19) has a connecting frame (24) on its inner side. A cylinder (25) is connected to the side of the connecting frame (24). One end of the cylinder (25) is connected to a positioning block (26). The positioning block (26) is inserted into the interior of the positioning plate (15). The interior of the positioning plate (15) has a socket (27) for inserting the positioning block (26).

6. The three-station gum station cooling tower of claim 1, wherein, The top frame (1) is provided with a baffle A (30) on its side, a fan (28) is provided on one side of the baffle A (30), and an exhaust fan (17) is provided on the top of the fan (28).

7. The three-station gum station cooling tower of claim 1, wherein, The bottom frame (19) and the top frame (1) are connected by a baffle B (31), and the bottom frame (19) is provided with a cabinet door (32).

8. The three-station gum station cooling tower of claim 1, wherein, The bottom of the base frame (19) is provided with shock-absorbing foot cups (5) at equal intervals.

9. The three-station gum station cooling tower of claim 1, wherein, The top frame (1) is connected to a controller (2) on its side, and an alarm (3) is connected to the top of the controller (2).

10. The three-station gum station cooling tower of claim 2, wherein, The bottom of the base frame (19) is provided with a horizontal limiting frame A (33) for limiting the transmission belt B (13), and the surface of the base frame (19) is provided with a vertical limiting frame B (18) for limiting the transmission belt B (13).