Plywood transfer device facilitating heat dissipation

By introducing a guide shell, a blower mechanism, and a cooling fan into the plywood transfer device, the problem of poor heat dissipation after hot pressing of plywood was solved, achieving an efficient and safe transfer process and improving product quality and production efficiency.

CN223962927UActive Publication Date: 2026-03-03HAINING SANJIE FURNITURE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

When plywood is hot-pressed and the temperature is high, directly stacking it can lead to poor heat dissipation, affecting product quality and service life.

Method used

Design a plywood transfer device that includes an air guide shell, a blower mechanism, a cooling fan, and a temperature sensor. The device utilizes ventilation holes and the blower mechanism for uniform heat dissipation, and combines the cooling fan and temperature sensor for real-time monitoring and adjustment to ensure efficient cooling.

Benefits of technology

This technology enables efficient heat dissipation of plywood during transport, preventing localized overheating, improving product quality and production efficiency, and ensuring safe transport.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a plywood transfer device convenient for heat dissipation, which comprises a base, the base is connected with a support frame through a damping spring, the support frame is provided with a conveying mesh belt which is obliquely arranged, and the plywood transfer device is characterized in that air guide shells are symmetrically arranged on two sides of the conveying mesh belt; a plurality of evenly-distributed ventilation holes are formed in the inner side of the air guide shell, the ventilation holes are obliquely arranged downwards, an air blowing mechanism is connected to the outer side of the air guide shell and comprises a draught fan and an air guide pipe, one end of the air guide pipe is connected with the draught fan, and the other end of the air guide pipe communicates with the interior of the air guide shell. A dust collection box is arranged below the conveying mesh belt, a filter screen is installed in the dust collection box, a guide plate is arranged at the tail end of the conveying mesh belt, and a buffer pad is connected to the lower end of the guide plate.
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Description

Technical Field

[0001] This utility model belongs to the field of mechanical technology, specifically a plywood transfer device that facilitates heat dissipation. Background Technology

[0002] During the plywood production process, the plywood becomes quite hot after being hot-pressed in a hot press. If these hot plywood boards are directly stacked under these conditions, they will not be able to dissipate heat effectively. This poor heat dissipation will negatively impact the quality of the final product, thereby affecting its overall performance and lifespan.

[0003] In order to achieve efficient plywood transfer and ensure that the plywood can dissipate heat quickly during the transfer process, this utility model proposes a plywood transfer device that facilitates heat dissipation, aiming to solve the problems existing in the prior art. Utility Model Content

[0004] The purpose of this invention is to address the aforementioned problems in existing technologies by proposing a plywood transfer device that facilitates heat dissipation.

[0005] The objective of this utility model can be achieved through the following technical solution: A plywood transfer device for easy heat dissipation, comprising a base, wherein the base is connected to a support frame via a shock-absorbing spring, and a conveyor belt arranged at an incline is installed on the support frame. The device is characterized in that air guide shells are symmetrically arranged on both sides of the conveyor belt, and a plurality of evenly distributed ventilation holes are opened on the inner side of the air guide shells, with the ventilation holes arranged at an incline downwards. A blower mechanism is connected to the outer side of the air guide shells, the blower mechanism comprising a fan and an air duct, one end of the air duct being connected to the fan, and the other end communicating with the interior of the air guide shells. A dust collection box is provided below the conveyor belt, and a filter screen is installed inside the dust collection box. A guide plate is provided at the end of the conveyor belt, and a buffer pad is connected to the lower end of the guide plate.

[0006] It also includes a cooling fan and a temperature sensor. The cooling fan is positioned above the conveyor belt and at the rear end of the air guide housing, and the temperature sensor is positioned in the middle of the conveyor belt.

[0007] The dust collection box has a detachable cleaning door on its side, and the cleaning door is equipped with a handle.

[0008] The conveyor belt also has several rubber protrusions.

[0009] An electrical control box is also installed on the base, and the fan, cooling fan and temperature sensor are all electrically connected to the electrical control box via wiring.

[0010] Compared with existing technologies, this heat-dissipating plywood transfer device has the following advantages:

[0011] In this invention, plywood is placed on a conveyor belt. Through the combined action of the air guide shell and the blower mechanism, the surface temperature of the plywood is effectively reduced. At the same time, ventilation holes are used to achieve uniform heat dissipation and prevent local overheating. Temperature sensors monitor temperature changes in real time and cooling fans provide auxiliary cooling. After heat dissipation treatment, the plywood is smoothly unloaded by the guide plate, ensuring the efficiency and safety of the transfer process. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0013] Figure 2 This is a schematic diagram of the structure of the present invention with the portion removed. Figure 1 .

[0014] Figure 3 This is a schematic diagram of the structure of the present invention with the portion removed. Figure 2 .

[0015] Figure 4 This is a schematic diagram of the structure of the present invention with the portion removed. Figure 3 .

[0016] In the diagram, 1. Base; 2. Shock-absorbing spring; 3. Support frame; 4. Conveyor belt; 5. Air guide shell; 6. Ventilation hole; 7. Fan; 8. Air guide duct; 9. Dust collection box; 10. Filter screen; 11. Guide plate; 12. Buffer pad; 13. Cooling fan; 14. Temperature sensor; 15. Cleaning door; 16. Electrical control box; 17. Rubber protrusion; 18. Handle; 19. Mounting plate; 20. Bracket. Detailed Implementation

[0017] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0018] This utility model provides a plywood transfer device that facilitates heat dissipation; its structure and function are described in the attached diagram. Figure 1 To be continued Figure 4 A detailed demonstration has been provided. The specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0019] The device includes a base 1, which is connected to a support frame 3 via shock-absorbing springs 2. An inclined conveyor belt 4 is mounted on the support frame 3. The conveyor belt 4 is designed to transport the plywood during transport. The conveyor belt 4 operates using existing methods. The conveyor belt 4 also has several rubber protrusions 17. Air guide shells 5 are symmetrically arranged on both sides of the conveyor belt 4. Several evenly distributed ventilation holes 6 are opened inside the air guide shells 5, and these ventilation holes 6 are arranged at an inclined downward direction. The function of these ventilation holes 6 is to evenly distribute airflow onto the surface of the plywood, thereby achieving efficient heat dissipation. A blower mechanism is connected to the outside of the air guide shells 5. The blower mechanism consists of a fan 7 and an air duct 8. One end of the air duct 8 is connected to the fan 7, and the other end is connected to the inside of the air guide shell 5 to ensure that airflow can smoothly enter the air guide shell 5 and be blown onto the surface of the plywood through the ventilation holes 6. Specifically, the fan 7 is mounted on the air guide shell 5 via mounting plates 19.

[0020] A dust collection box 9 is installed below the conveyor belt 4, and a filter screen 10 is installed inside the dust collection box 9. The function of the filter screen 10 is to intercept the dust falling during the heat dissipation process and reduce its diffusion into the working environment. A removable cleaning door 15 is provided on the side of the dust collection box 9, and a handle 18 is installed on the cleaning door 15. This design facilitates the regular cleaning of the dust inside the dust collection box 9. A guide plate 11 is provided at the end of the conveyor belt 4. A buffer pad 12 is connected to the lower end of the guide plate 11. The function of the buffer pad 12 is to reduce the impact force when the plywood slides off the conveyor belt 4 and prevent the plywood from being damaged by collision. After the operator removes the plywood from the guide plate 11, they are stacked.

[0021] To further improve heat dissipation, this invention also includes a cooling fan 13 and a temperature sensor 14. The cooling fan 13 is positioned above the conveyor belt 4 and at the rear end of the air guide housing 5. Specifically, the cooling fan 13 is mounted on the support frame 3 via a bracket 20; it is used for secondary cooling of the plywood after initial heat dissipation. The temperature sensor 14 is located in the middle of the conveyor belt 4. Specifically, the conveyor belt 4 is annular, and the temperature sensor 14 is positioned at the center between the two belt sections of the conveyor belt 4; it is used to monitor the surface temperature of the plywood in real time and feed the monitoring data back to the electrical control box 16 so that the operating status of the fan 7 and the cooling fan 13 can be adjusted according to the actual temperature.

[0022] An electrical control box 16 is also installed on the base 1. The fan 7, cooling fan 13 and temperature sensor 14 are all electrically connected to the electrical control box 16 through lines. This adopts existing technology, and its circuits do not need to be redesigned.

[0023] In practical applications, the working principle of this invention is as follows: First, the plywood to be transported is placed at the starting end of the conveyor belt 4, and the conveyor belt moves the plywood slowly. During this process, the fan 7 is started and airflow is delivered to the inside of the air guide housing 5 through the air guide pipe 8. The airflow is evenly blown onto the surface of the plywood through the ventilation holes 6 on the inner side of the air guide housing 5, thereby achieving initial heat dissipation. At the same time, the temperature sensor 14 monitors the surface temperature of the plywood in real time and transmits the data to the control box 16. If the surface temperature of the plywood is still detected to be high, the control system will automatically start the cooling fan 13 to further cool the plywood. Through this dual heat dissipation mechanism, quality problems caused by local overheating of the plywood can be effectively avoided.

[0024] After the plywood has been transported along the conveyor belt 4, it reaches the end of the conveyor belt 4 and slides smoothly off the guide plate 11. The buffer pad 12 at the lower end of the guide plate 11 can effectively absorb the impact force when the plywood slides down, preventing it from being damaged by collision. The entire transfer process is not only efficient but also safe, which can significantly improve the production efficiency and quality of plywood.

[0025] In summary, this invention achieves efficient heat dissipation of plywood during transport through the coordinated action of the air guide housing 5, the blower mechanism, the cooling fan 13, and the temperature sensor 14. Simultaneously, the guide plate 11 and the buffer pad 12 ensure the safety of the plywood at the end of the transport. This invention features a reasonable structural design and comprehensive functions, making it suitable for various scenarios requiring efficient heat dissipation and safe transport of plywood.

[0026] All of the above components are general standard parts or components known to those skilled in the art. Their structure and principles can be learned by those skilled in the art through technical manuals or conventional experimental methods.

[0027] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.

Claims

1. A plywood transfer device for easy heat dissipation, comprising a base (1), wherein the base (1) is connected to a support frame (3) via a shock-absorbing spring (2), and a conveyor belt (4) arranged at an incline is mounted on the support frame (3), characterized in that, The conveyor belt (4) is symmetrically provided with air guide shells (5) on both sides. The air guide shells (5) have several evenly distributed ventilation holes (6) on their inner side, and the ventilation holes (6) are arranged at an angle downwards. The air guide shells (5) are connected to a blower mechanism on their outer side. The blower mechanism includes a fan (7) and an air guide pipe (8). One end of the air guide pipe (8) is connected to the fan (7), and the other end is connected to the inside of the air guide shells (5). A dust collection box (9) is provided below the conveyor belt (4). A filter screen (10) is installed on the top of the dust collection box (9). A guide plate (11) is provided at the end of the conveyor belt (4). A buffer pad (12) is connected to the lower end of the guide plate (11).

2. The plywood transfer device for easy heat dissipation according to claim 1, characterized in that, It also includes a cooling fan (13) and a temperature sensor (14), the cooling fan (13) being positioned above the conveyor belt (4) and at the rear end of the air guide housing (5), and the temperature sensor (14) being positioned in the middle of the conveyor belt (4).

3. The plywood transfer device for easy heat dissipation according to claim 1, characterized in that, The dust collection box (9) is provided with a detachable cleaning door (15) on its side, and a handle (18) is installed on the cleaning door (15).

4. The plywood transfer device for easy heat dissipation according to claim 1, characterized in that, The conveyor belt (4) also has several rubber protrusions (17).

5. A plywood transfer device for easy heat dissipation according to claim 2, characterized in that, An electrical control box (16) is also installed on the base (1). The fan (7), cooling fan (13) and temperature sensor (14) are all connected to the electrical control box (16) via lines.