Wear-resistant composite board drying device

By using a servo motor-driven roller and lead screw system in conjunction with temperature sensors and heating elements, the composite board is dried uniformly. Exhaust fans and blowers are used to handle moisture and cool the system, solving the problems of low efficiency and uneven drying in traditional drying devices and improving the drying quality of the composite board.

CN223783276UActive Publication Date: 2026-01-09WUXI WEI KELAI TECH CO LTD
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Patent Information

Application Number
CN202520028853.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2026-01-09
Estimated Expiration
2035-01-07

AI Technical Summary

Technical Problem

Traditional drying equipment has low drying efficiency and uneven drying of the composite board surface, which affects the quality of the composite board.

Method used

The system employs a servo motor-driven roller and lead screw system, combined with a temperature sensor and heating elements, to achieve uniform drying of the composite board; it is equipped with an exhaust fan and a blower fan, which are used to remove moisture and cool the composite board, respectively.

Benefits of technology

It improves drying efficiency, ensures uniform heating of the composite board surface, prevents the composite board from deforming due to moisture or high temperature, and improves product quality.

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Abstract

The utility model relates to the technical field of wear-resistant composite board production, in particular to a wear-resistant composite board drying device which comprises a base, symmetrical supporting plates are perpendicularly and fixedly connected to the two sides of the top of the base, a roller shaft is rotationally connected between the supporting plates, and one end of the roller shaft is connected with a servo motor through a coupler. A plurality of connecting rollers which are arranged in parallel at equal intervals are rotationally connected to one sides of the roller shafts and located between the supporting plates, a conveying belt is jointly wound between the connecting rollers and the roller shafts, a drying box with a downward opening is fixedly connected to the positions, located between the tops of the supporting plates, above the connecting rollers, and symmetrical fixing bases are arranged on the two sides in the drying box; a lead screw is rotationally connected between the fixing bases, one end of the lead screw is connected with a driving motor through a coupler, a sliding rod is further arranged below the lead screw, a sliding block is connected to the outer side of the lead screw in a matched mode, the lower portion of the sliding block is in sliding fit with the sliding rod, a mounting frame is fixedly connected to the bottom of the sliding block, and a drying assembly is arranged below the mounting frame.
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Description

Technical Field

[0001] This utility model relates to the field of wear-resistant composite board production, and in particular to a wear-resistant composite board drying device. Background Technology

[0002] Composite panels are a type of board made using composite technology. They can be divided into metal composite panels, wood composite panels, color steel composite panels, and rock wool composite panels, etc. The simplest and most direct method of composite panel bonding is to use adhesive. The adhesive is liquid, and after the composite panel is produced and processed, it needs to be cleaned. Therefore, composite panels need to be dried frequently during the production process to obtain high-quality composite panels. However, traditional drying equipment has problems such as low drying efficiency and uneven heating of the composite panel surface, which greatly reduces the efficiency of the drying operation. Utility Model Content

[0003] In view of the above situation and to overcome the defects of the prior art, the purpose of this utility model is to provide a wear-resistant composite board drying device, which has the advantages of solving the problems mentioned in the background art.

[0004] The above-mentioned technical objective of this utility model is achieved through the following technical solution:

[0005] A wear-resistant composite board drying device includes a base. Symmetrical support plates are vertically fixed to both sides of the top of the base. A roller shaft is rotatably connected between the support plates. One end of the roller shaft is connected to a servo motor via a coupling. Multiple equally spaced and parallel connecting rollers are rotatably connected to one side of the roller shaft between the support plates. A conveyor belt is wound around the multiple connecting rollers and the roller shaft. A drying chamber with an opening facing downwards is fixedly connected above the multiple connecting rollers between the top of the support plates. Symmetrical fixed seats are provided on both sides inside the drying chamber. A lead screw is rotatably connected between the fixed seats. One end of the lead screw is connected to a drive motor via a coupling. A sliding rod is also provided below the lead screw. A slider is matched and connected to the outside of the lead screw. The slider slides in cooperation with the sliding rod. A mounting frame is fixedly connected to the bottom of the slider. A temperature sensor is provided on one side of the mounting frame. A heating element is provided at the bottom of the mounting frame. The heating element is electrically connected to a control power supply. The control power supply is located on the outer wall of the support plate. A controller for signal connection between the control power supply and the temperature sensor is also provided on the outer wall of the support plate.

[0006] By adopting the above technical solution, during operation, the operator places the composite board on the surface of the conveyor belt. At this time, the operator turns on the servo motor, which drives the roller to rotate. The roller and multiple connecting rollers, together with the conveyor belt, transport the composite board to the bottom of the drying chamber. The operator then turns on the temperature sensor to detect the temperature of the wear-resistant composite board and transmits the temperature signal to the control power supply through the controller. The control power supply is electrically connected to the heating element to control the heating power and on / off status of the heating element, thereby realizing the drying operation of the composite board. During the drying operation, the operator turns on the drive motor, which drives the lead screw to rotate. At this time, the slider on the lead screw and other components at the bottom of the slider work together with the slide bar to move back and forth, thereby achieving uniform drying of the composite board and improving the drying efficiency.

[0007] Further configuration: The top of the drying box is also provided with a through-hole for installing an exhaust fan.

[0008] By adopting the above technical solution, during the drying process, the exhaust fan is used to remove the moisture generated during the drying process, thus avoiding quality problems caused by moisture in the composite board.

[0009] Further feature: The conveyor belt is provided with several heat dissipation holes.

[0010] By adopting the above technical solution, the heat dissipation holes can release the moisture generated during the drying process, thus avoiding quality problems caused by moisture in the composite board.

[0011] Further configuration: A connecting plate is fixedly connected to one side of the drying oven between the top of the support plate and the top of the drying oven. A set of connecting holes are opened through the connecting plate. A blower is installed in each of the connecting holes. The blower is electrically connected to a battery holder. The battery holder is fixedly connected to one side of the connecting plate. A control switch electrically connected to the battery holder is also provided on one side of the connecting plate.

[0012] By adopting the above technical solution, after the drying operation is completed, the composite board on the conveyor belt passes under the connecting plate. At this time, the operator turns on the control switch and turns on the blower to cool the dried composite board. The blower cooling can quickly reduce the temperature of the composite board and reduce the thermal stress caused by the high temperature of drying, thereby preventing deformation and failure.

[0013] Further configuration: Support seats are fixedly connected to all four sides of the bottom of the base, and shock-absorbing plates are fixedly connected to the bottom of each support seat.

[0014] By adopting the above technical solution, the support base and the shock-absorbing plate work together to support and stabilize the entire equipment.

[0015] In summary, this utility model has the following beneficial effects:

[0016] In operation, the operator places the composite board on the conveyor belt. The operator then activates the servo motor, which drives the rollers to rotate. The conveyor belt, with its rollers and multiple connecting rollers rotating around it, transports the composite board to the bottom of the drying chamber. The operator then activates a temperature sensor to detect the temperature of the wear-resistant composite board and transmits the temperature signal to the control power supply via a controller. The control power supply electrically connects to the heating elements to control their heating power and on / off status, thus drying the composite board. During the drying process, the operator activates the drive motor, which drives the lead screw to rotate. The slider on the lead screw and other components at its bottom reciprocate in conjunction with the sliding rod, ensuring uniform drying of the composite board and improving drying efficiency.

[0017] After the drying process is completed, the composite board on the conveyor belt passes under the connecting plate. At this time, the operator turns on the control switch and turns on the blower to cool the dried composite board. The blower cooling can quickly reduce the temperature of the composite board and reduce the thermal stress caused by the high temperature of drying, thereby preventing deformation and failure. Attached Figure Description

[0018] The accompanying drawings, which are provided to further illustrate the present invention and form part of this application, do not constitute an undue limitation of the present invention. In the drawings:

[0019] Figure 1 This is the front view of this utility model;

[0020] Figure 2 This is a top view of the present invention;

[0021] Figure 3 This is a schematic diagram of the structure of the drying oven of this utility model.

[0022] In the diagram, 1. Base; 2. Support plate; 3. Roller shaft; 4. Servo motor; 5. Connecting roller; 6. Conveyor belt; 7. Drying oven; 8. Fixed seat; 9. Lead screw; 10. Drive motor; 11. Slide bar; 12. Slider; 13. Mounting bracket; 14. Temperature sensor; 15. Heating element; 16. Control power supply; 17. Controller; 18. Mounting hole; 19. Exhaust fan; 20. Heat dissipation hole; 21. Connecting plate; 22. Connecting hole; 23. Blower fan; 24. Battery holder; 25. Control switch; 26. Support seat; 27. Shock absorber plate. Detailed Implementation

[0023] The foregoing and other technical contents, features and effects of this utility model are described in conjunction with the appendix below. Figure 1 To be continued Figure 3The detailed description of the embodiments will make this clear. All structural details mentioned in the following embodiments are based on the accompanying drawings.

[0024] Exemplary embodiments of the present invention will now be described with reference to the accompanying drawings.

[0025] Example 1: A wear-resistant composite board drying device, such as Figure 1 , 2 As shown in Figure 3, the system includes a base 1. Symmetrical support plates 2 are vertically fixed to both sides of the top of the base 1. A roller shaft 3 is rotatably connected between the support plates 2. One end of the roller shaft 3 is connected to a servo motor 4 via a coupling. Multiple equally spaced and parallel connecting rollers 5 are rotatably connected to one side of the roller shaft 3 between the support plates 2. A conveyor belt 6 is wound around the multiple connecting rollers 5 and the roller shaft 3. A drying chamber 7 with its opening facing downwards is fixedly connected above the multiple connecting rollers 5 between the tops of the support plates 2. Symmetrical fixed seats 8 are provided on both sides inside the drying chamber 7. A rotatable connection is made between the fixed seats 8. A lead screw 9 is provided, with a drive motor 10 connected to one end via a coupling. A slide rod 11 is also provided below the lead screw 9. A slider 12 is matched and connected to the outside of the lead screw 9. The slider 12 slides and engages with the slide rod 11. A mounting bracket 13 is fixedly connected to the bottom of the slider 12. A temperature sensor 14 is provided on one side of the mounting bracket 13. A heating element 15 is provided at the bottom of the mounting bracket 13. The heating element 15 is electrically connected to a control power supply 16. The control power supply 16 is located on the outer wall of the support plate 2. A controller 17 is also provided on the outer wall of the support plate 2 to connect the control power supply 16 and the temperature sensor 14.

[0026] like Figure 2 As shown, the top of the drying oven 7 is also provided with a through hole 18, and an exhaust fan 19 is fixedly installed in the through hole 18.

[0027] like Figure 2 As shown, the conveyor belt 6 has several heat dissipation holes 20.

[0028] like Figure 2 As shown, a connecting plate 21 is fixedly connected to one side of the drying oven 7 between the top of the support plate 2 and the top of the support plate 2. A set of connecting holes 22 are opened through the connecting plate 21. A blower 23 is installed in each of the connecting holes 22. The blower 23 is electrically connected to a battery holder 24. The battery holder 24 is fixedly connected to one side of the connecting plate 21. A control switch 25 electrically connected to the battery holder 24 is also provided on one side of the connecting plate 21.

[0029] like Figure 1 As shown, support seats 26 are fixedly connected to all four sides of the bottom of the base 1, and shock-absorbing plates 27 are fixedly connected to the bottom of each support seat 26.

[0030] In this embodiment of the invention, the operator places the composite board on the surface of the conveyor belt 6. At this time, the operator turns on the servo motor 4, which drives the roller shaft 3 to rotate. The roller shaft 3 and multiple connecting rollers 5 rotate together around the conveyor belt 6 to transport the composite board to the bottom of the drying box 7. At this time, the operator turns on the temperature sensor 14 to detect the temperature of the wear-resistant composite board and transmits the temperature signal to the control power supply 16 through the controller 17. The control power supply 16 is electrically connected to the heating element 15 to control the heating power and on / off state of the heating element 15, thereby realizing the drying operation of the composite board. During the drying operation, the operator turns on the drive motor 10, which drives the lead screw 9 to rotate. At this time, the slider 12 on the lead screw 9 and other components at the bottom of the slider 12 move back and forth with the slide rod 11 to achieve uniform drying of the composite board and improve the drying efficiency.

[0031] After the composite board has finished drying, it passes under the connecting plate 21. At this time, the operator turns on the control switch 25 and turns on the blower 23 to cool the dried composite board. The blower cooling can quickly reduce the temperature of the composite board and reduce the thermal stress caused by the high temperature of drying, thereby preventing deformation and failure.

[0032] The above description is a further detailed explanation of the present utility model in conjunction with specific embodiments, and it should not be considered that the specific implementation of the present utility model is limited to this. For those skilled in the art to which the present utility model pertains and related fields, any extensions, operation methods, and data substitutions made based on the technical solution concept of the present utility model should fall within the protection scope of the present utility model.

Claims

1. A wear-resistant composite board drying device, comprising a base (1), characterized in that: The base (1) has symmetrical support plates (2) vertically fixed on both sides of its top. A roller shaft (3) is rotatably connected between the support plates (2). One end of the roller shaft (3) is connected to a servo motor (4) via a coupling. Multiple equally spaced and parallel connecting rollers (5) are rotatably connected between the support plates (2) on one side of the roller shaft (3). A conveyor belt (6) is wound around the multiple connecting rollers (5) and the roller shaft (3). A drying box (7) with its opening facing downward is fixedly connected above the multiple connecting rollers (5) between the top of the support plates (2). Symmetrical fixed seats (8) are provided on both sides inside the drying box (7). A lead screw (9) is rotatably connected between the fixed seats (8). One end of the screw (9) is connected to a drive motor (10) via a coupling. A slide rod (11) is provided below the screw (9). A slider (12) is matched and connected to the outside of the screw (9). The slider (12) slides and engages with the slide rod (11) below. A mounting bracket (13) is fixedly connected to the bottom of the slider (12). A temperature sensor (14) is provided on one side of the mounting bracket (13). A heating element (15) is provided at the bottom of the mounting bracket (13). The heating element (15) is electrically connected to a control power supply (16). The control power supply (16) is located on the outer wall of the support plate (2). A controller (17) is also provided on the outer wall of the support plate (2) to connect the control power supply (16) and the temperature sensor (14) for signal connection.

2. The wear-resistant composite board drying device according to claim 1, characterized in that: The top of the drying box (7) is also provided with a through hole (18), and an exhaust fan (19) is fixedly installed in the through hole (18).

3. The wear-resistant composite board drying device according to claim 1, characterized in that: The conveyor belt (6) has several heat dissipation holes (20).

4. The wear-resistant composite board drying device according to claim 1, characterized in that: A connecting plate (21) is fixedly connected to one side of the drying oven (7) between the top of the support plate (2). A set of connecting holes (22) are opened through the connecting plate (21). A blower (23) is installed in each of the connecting holes (22). The blower (23) is electrically connected to a battery holder (24). The battery holder (24) is fixedly connected to one side of the connecting plate (21). A control switch (25) electrically connected to the battery holder (24) is also provided on one side of the connecting plate (21).

5. The wear-resistant composite board drying device according to claim 1, characterized in that: The base (1) is fixedly connected to support seats (26) around its bottom, and the support seats (26) are fixedly connected to shock-absorbing plates (27) at their bottom.