Thermal insulation board drying device
By cooperating with the clamping and conveying components, the insulation board is ensured to be vertically positioned in the drying device. Combined with the use of adjustment and drying components, the problem of uneven heating of the insulation board is solved, improving drying efficiency and quality, and adapting to insulation boards of different specifications.
Patent Information
- Application Number
- CN202423295604.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-30
AI Technical Summary
In existing insulation board drying devices, the side of the insulation board that contacts the conveyor belt is difficult to heat evenly due to the influence of the conveyor belt, resulting in low drying efficiency and affecting the quality of the insulation board.
The device employs a clamping component in conjunction with a conveying component. The clamping component holds the insulation board and sets it vertically on the placement trough. It is heated evenly by the hot airflow provided by the drying component. The device is combined with an adjusting component to adapt to insulation boards of different lengths. The drying component and dehumidifying component optimize the hot airflow and improve drying efficiency.
It achieves uniform heating of the insulation board, improves drying efficiency and ensures the quality of the insulation board, adapts to insulation boards of different specifications and sizes, and reduces the impact of humidity.
Smart Images

Figure CN223663683U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to drying equipment technical field especially relates to a heat preservation board drying device. BACKGROUND
[0002] The heat preservation board is a kind of material widely used in building and industrial field, mainly used for heat preservation, moisture-proof and waterproof, with high applicability and the advantages such as reducing energy consumption.
[0003] In the existing heat preservation board drying process, the heat preservation board is usually sent to the conveying belt in the drying box by conveyor and dried by heating component, but in actual drying process, the side of heat preservation board contacting with conveying belt is difficult to be dried due to the influence of conveying belt, so that heat preservation board is unevenly heated, thereby affecting drying efficiency, and even affecting heat preservation board quality.Therefore, the present application provides a heat preservation board drying device capable of improving drying efficiency. SUMMARY
[0004] The utility model discloses a kind of heat preservation board drying devices capable of improving drying efficiency.
[0005] To achieve the above object, the utility model provides heat preservation board drying device, comprising:
[0006] Drying box, the drying box one end is equipped with inlet, the other end is equipped with discharge port, and the inlet is opposite to the discharge port;
[0007] Conveying component, it is set in the drying box, one end of the conveying component is set at the inlet, the other end is set at the discharge port, and the conveying component is used to convey heat preservation board from the inlet to the direction close to the discharge port;
[0008] Clamping component, including multiple clamping assemblies set on the conveying component, the clamping assembly includes positioning frame set on the conveying component, the positioning frame is equipped with the placement slot for placing the heat preservation board, the positioning frame is also equipped with two oppositely arranged clamping plates, and each clamping plate is slidably arranged on the corresponding side wall of the placement slot, the clamping plate is used to clamp the heat preservation board, and each clamping plate and the corresponding positioning frame are also provided with elastic unit, the elastic unit is used to apply the pushing force of the corresponding clamping plate to the direction close to the center of the placement slot, and each positioning frame makes the corresponding heat preservation board vertically arranged on the placement slot during moving from the inlet to the direction close to the discharge port;
[0009] The drying part comprises a first drying plate and a second drying plate arranged in the drying box, and the conveying part is arranged between the first drying plate and the second drying plate, and the first drying plate and the second drying plate are used for drying the thermal insulation board.
[0010] Further, the first drying plate is vertically slidably arranged in the drying box, and the first drying plate is arranged above the conveying part, and the second drying plate is arranged below the conveying part.
[0011] The drying part further comprises an adjusting assembly arranged in the drying box, one end of the adjusting assembly is connected with the first drying plate, and the adjusting assembly is used for driving the first drying plate to vertically reciprocate in the drying box.
[0012] Further, the adjusting assembly comprises two screws vertically arranged in the drying box, the two screws are rotatably arranged in the drying box, and the two screws are oppositely arranged and threadedly connected with two sides of the first drying plate, the adjusting assembly further comprises a first power unit arranged in the drying box, a moving end of the first power unit is connected with one of the screws, the first power unit is used for driving the corresponding screw to rotate, and the adjusting assembly further comprises a belt transmission assembly arranged in the drying box, one end of the belt transmission assembly is connected with the moving end of the first power unit, and the other end of the belt transmission assembly is connected with the screw away from the one end of the first power unit, and the first power unit drives the two screws to synchronously rotate through the belt transmission assembly.
[0013] Further, the adjusting assembly comprises two screws vertically arranged in the drying box, and the two screws are oppositely arranged and threadedly connected with two sides of the first drying plate, the adjusting assembly further comprises a first power unit arranged in the drying box, a moving end of the first power unit is connected with one of the screws, the first power unit is used for driving the corresponding screw to rotate, and the adjusting assembly further comprises a belt transmission assembly arranged in the drying box, one end of the belt transmission assembly is connected with the moving end of the first power unit, and the other end of the belt transmission assembly is connected with the screw away from the one end of the first power unit, and the first power unit drives the two screws to synchronously rotate through the belt transmission assembly.
[0014] Further, the conveying component comprises two transmission rods rotatably arranged in the drying box, each of the transmission rods is arranged along the width direction of the drying box, and each of the transmission rods is arranged between the first drying plate and the second drying plate, one of the transmission rods is arranged near one end of the inlet, and the other of the transmission rods is arranged near one end of the outlet, both ends of each of the transmission rods are provided with transmission wheels, the transmission wheels on the same side of the two transmission rods are respectively provided with transmission belts, when one of the transmission rods rotates, the transmission rod drives the other transmission rod to rotate synchronously through each of the transmission belts, each of the positioning frames is arranged between the two transmission belts, and both ends of each of the positioning frames are arranged on the corresponding transmission belts, when one of the transmission rods rotates, each of the positioning frames moves along with the rotation direction of the corresponding transmission belt, and the second power unit is arranged on one side of the drying box, a moving end of the second power unit extends into the drying box and is connected with one of the transmission rods, the connection between the second power unit and the drying box is dynamic sealing connection, and the second power unit is used to drive the corresponding transmission rod to rotate.
[0015] Further, the drying box is further provided with a drying component, the drying component comprises a fan arranged on one side of the drying box, an air inlet of the fan is communicated with an inner cavity of the drying box, and an air outlet of the fan extends out of the drying box, the drying component further comprises a first air duct arranged on an outer wall of the drying box, an air inlet of the first air duct is communicated with the air outlet of the fan, an air outlet of the first air duct is arranged in the drying box and is provided with two second air ducts, the drying component further comprises two air blowing chambers arranged at both ends of the corresponding transmission rods, the two air blowing chambers are oppositely arranged and are respectively arranged at the corresponding connection positions of the conveying component and the drying box, each of the second air ducts is communicated with each of the air blowing chambers, and each of the air blowing chambers is further provided with a plurality of air blowing holes near the side close to the corresponding transmission rod, the fan introduces part of hot air flow in the drying box into the first air duct, and then the hot air flow is blown into the corresponding air blowing chamber through each of the second air ducts and is blown to the center between the two transmission belts through the corresponding air blowing holes.
[0016] Further, the first air duct is further provided with a dehumidifying component, the dehumidifying component comprises a dehumidifier arranged on the first air duct, when air flow enters the first air duct and passes through the dehumidifier, the dehumidifier dehumidifies the excess moisture in the air flow, and the dehumidifying component further comprises a drainage assembly arranged below the dehumidifier, the drainage assembly is used to collect and drain the condensed water generated during the operation of the dehumidifier.
[0017] Further, the drainage assembly comprises a collecting bin arranged at the bottom of the dehumidifier, the collecting bin is communicated with the water outlet of the dehumidifier, and the collecting bin is detachably provided with a collecting rack, and the collecting rack is slidably connected with the collecting bin.
[0018] The beneficial effects of the utility model lie in:
[0019] The utility model discloses, through clamping component and conveying part cooperation, after each clamping assembly clamps corresponding insulation board, conveying part passes through each clamping assembly drive corresponding insulation board to enter drying box, and drive each insulation board from inlet port direction to discharge port movement, the drying component carries out drying to the insulation board in drying box at this time, corresponding clamping assembly makes insulation board set up vertically on corresponding depositing groove while stabilizing insulation board in each insulation board movement process, thereby make insulation board can be more fully with the hot air current of drying component contact, and then increase the drying area of insulation board, make the heat of insulation board more uniform, guarantee drying efficiency and the quality of insulation board. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is the perspective view of the insulation board drying device of the utility model;
[0021] Figure 2 It is the first sectional view of the insulation board drying device of the utility model;
[0022] Figure 3 It is Figure 2 The enlarged view of A in the figure;
[0023] Figure 4 It is the second sectional view of the insulation board drying device of the utility model.
[0024] BRIEF DESCRIPTION OF DRAWINGS
[0025] 1, drying box;11, inlet port;12, discharge port;2, conveying part;21, transmission rod;22, transmission wheel;23, transmission belt;24, second power unit;3, clamping component;31, clamping assembly;311, positioning frame;3111, depositing groove;312, clamping plate;313, elastic unit;4, drying component;41, first drying plate;42, second drying plate;43, adjusting assembly;431, screw;432, first power unit;433, belt transmission assembly;4331, synchronous wheel;4332, synchronous belt;5, drying component;51, fan;52, first air duct;53, second air duct;54, blowing bin;541, blowing hole;6, dehumidification component;61, dehumidifier;62, drainage assembly;621, collecting bin;622, collecting rack;7, insulation board. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. In the case of no conflict, the embodiments in the application and the features in the embodiments can be combined with each other.
[0027] Referring to Figures 1-4 .
[0028] The utility model discloses a heat preservation board drying device, including:
[0029] Drying box 1, this drying box 1 one end is provided with inlet 11, and the other end is provided with discharge gate 12, and inlet 11 and discharge gate 12 are oppositely arranged;
[0030] Conveying part 2 is arranged in drying box 1, one end of the conveying part 2 is arranged at inlet 11, and the other end is arranged at discharge gate 12, and the conveying part 2 is used to convey heat preservation board 7 from inlet 11 to the direction close to discharge gate 12;
[0031] Clamping part 3 includes a plurality of clamping assemblies 31 arranged on conveying part 2, the clamping assembly 31 includes a positioning frame 311 arranged on conveying part 2, the positioning frame 311 is provided with a placing groove 3111 for placing heat preservation board 7, and the positioning frame 311 is also provided with two oppositely arranged clamping plates 312, and each clamping plate 312 is slidably arranged on the corresponding side wall of placing groove 3111, the clamping plate 312 is used to clamp heat preservation board 7, and each clamping plate 312 and the corresponding positioning frame 311 are also provided with elastic unit 313, the elastic unit 313 is used to apply the pushing force of the corresponding clamping plate 312 to the direction close to the center of placing groove 3111, and each positioning frame 311 makes the corresponding heat preservation board 7 vertically arranged on placing groove 3111 during moving from inlet 11 to the direction close to discharge gate 12;
[0032] Drying part 4 includes first drying plate 41 and second drying plate 42 arranged in drying box 1, and the conveying part 2 is arranged between first drying plate 41 and second drying plate 42, and the first drying plate 41 and the second drying plate 42 are used to dry heat preservation board 7.
[0033] In the embodiment, when the conveying component 2 drives the corresponding clamping assembly 31 to move close to the feeding port 11, the worker inserts one end of the heat preservation plate 7 into the feeding port 11 and pushes the heat preservation plate 7 towards the positioning frame 311 close to the feeding port 11 until the heat preservation plate 7 is inserted into the corresponding placing groove 3111, at this time, the heat preservation plate 7 is in contact with the clamping plates 312 on both sides of the corresponding placing groove 3111 and exerts a pushing force on the two clamping plates away from the center of the corresponding positioning frame 311, so that each elastic unit 313 is compressed, at this time, the clamping plates 312 on both sides of the placing groove 3111 clamp the heat preservation plate 7 through the elastic force provided by the corresponding elastic unit 313, so as to avoid the heat preservation plate 7 from falling off the placing groove 3111 accidentally, the conveying component 2 drives the heat preservation plate 7 into the drying box 1 through the corresponding clamping assembly 31 and moves towards the discharging port 12, in the moving process, the drying component 4 heats the heat preservation plate 7 in the drying box 1, and the positioning frame 311 cooperates with the clamping plates 312 on both sides to stand up the heat preservation plate 7, so that the heat preservation plate 7 is vertically arranged to increase the drying area of the heat preservation plate 7, until the corresponding clamping assembly 31 drives the heat preservation plate 7 to move to the discharging port 12, the worker exerts a pulling force on the heat preservation plate 7 away from the drying box 1 through the discharging port 12 until the heat preservation plate 7 is separated from the corresponding placing groove 3111, and the drying is completed.
[0034] The utility model discloses, through clamping component 3 and conveying component 2 cooperation, each clamping assembly 31 clamps corresponding heat preservation plate 7 after, conveying component 2 through each clamping assembly 311 drive corresponding heat preservation plate 7 enter drying box 1, and drive each heat preservation plate 7 from feeding port 11 to the direction of discharging port 12 move, at this time, drying component 4 dries the heat preservation plate 7 in drying box 1, each heat preservation plate 7 moves in the process, corresponding clamping assembly 31 makes heat preservation plate 7 vertical arrangement on corresponding placing groove 3111 while stabilizing heat preservation plate 7, so that heat preservation plate 7 can be more fully with the hot air flow generated by drying component 4 contact, and then increase the drying area of heat preservation plate 7, make heat preservation plate 7 heat more evenly, guarantee drying efficiency and the quality of heat preservation plate 7.
[0035] Preferably, the elastic unit 313 can adopt a spring in the prior art.
[0036] It should be noted that the positioning frame 311 and the clamping plate 312 can be hollowed out, so that the hot air generated by the drying component 4 can dry the end of the heat preservation plate 7 in contact with the clamping assembly 31, further increasing the drying area of the heat preservation plate 7.
[0037] In an embodiment, the first drying plate 41 is vertically slidably arranged in the drying box 1, and the first drying plate 41 is arranged above the conveying component 2, and the second drying plate 42 is arranged below the conveying component 2.
[0038] The drying component further comprises an adjusting assembly 43 arranged in the drying box 1, one end of the adjusting assembly 43 is connected with the first drying plate 41, and the adjusting assembly 43 is used to drive the first drying plate 41 to vertically reciprocate in the drying box 1.
[0039] In this way, when the length of the insulation board 7 is longer than the distance between the first drying plate 41 and the corresponding clamping assembly 31, the adjusting assembly 43 controls the first drying plate 41 to move upwards until the distance between the first drying plate 41 and the corresponding clamping assembly 31 is longer than the length of the insulation board 7, so that the position of the first drying plate 41 can be adjusted according to the length of the insulation board 7, thereby avoiding the interference between the first drying plate 41 and the insulation board 7 when the clamping assembly 31 stands up the insulation board 7, and the first drying plate 41 generates heat and heats the drying box 1 when the clamping assembly 31 conveys the insulation board 7, so that the hot air flow in the drying box 1 heats the top of the insulation board 7, and the second drying plate 42 generates heat and heats the drying box 1, so that the generated hot air flow heats the bottom of the insulation board 7, thereby drying the insulation board 7.
[0040] Preferably, the first drying plate 41 and the second drying plate 42 can adopt the electric heating plate in the prior art.
[0041] In an embodiment, the adjusting assembly 43 comprises two screw rods 431 vertically arranged in the drying box 1, the two screw rods 431 are rotationally arranged in the drying box 1, and the two screw rods 431 are oppositely arranged and threadedly combined with the two sides of the first drying plate 41, further comprising a first power unit 432 arranged in the drying box 1, a moving end of the first power unit 432 is connected with one of the screw rods 431, the first power unit 432 is used to drive the corresponding screw rod 431 to rotate, and further comprising a belt transmission assembly 433 arranged in the drying box 1, one end of the belt transmission assembly 433 is connected with the moving end of the first power unit 432, and the other end of the belt transmission assembly 433 is connected with the screw rod 431 away from the one end of the first power unit 432, and the first power unit 432 drives the two screw rods 431 to synchronously rotate through the belt transmission assembly 433.
[0042] In this way, when it is necessary to adjust the height of the first drying plate 41, the first power unit 432 drives the two screw rods 431 to synchronously rotate through the belt transmission assembly 433, so that the first drying plate 41 vertically reciprocates in the drying box 1, thereby adjusting the distance between the first drying plate 41 and the corresponding clamping assembly 31 until the first drying plate 41 does not interfere with the movement of the insulation board 7.
[0043] Preferably, the first power unit 432 can adopt the high-temperature motor in the prior art.
[0044] It should be noted that the belt transmission assembly 433 includes two synchronous wheels 4331 respectively arranged on the first power unit 432 moving end and the corresponding screw rod 431, and a synchronous belt 4332 connecting the two synchronous wheels 4331, when the first power unit 432 drives the corresponding screw rod 431 to rotate, the synchronous wheel 4331 arranged on the first power unit 432 drives the other synchronous wheel 4331 on the corresponding screw rod 431 to rotate through the synchronous belt 4332, so as to realize the synchronous rotation of the two screw rods 431.
[0045] It should be noted that the adjusting assembly 43 can adapt to different lengths of the heat preservation plate 7 by adjusting the distance between the first drying plate 41 and the corresponding clamping assembly 31, and the clamping assembly 31 can clamp heat preservation plates 7 of different thicknesses through the cooperation between the clamping plate 312, the elastic unit 313 and the placement groove 3111. At this time, through the cooperation of the drying component 4 and the adjusting assembly 43, heat preservation plates 7 of different specifications and sizes can be dried, improving the applicability.
[0046] In an embodiment, the conveying component 2 includes two transmission rods 21 rotatably arranged in the drying box 1, each transmission rod 21 is arranged along the width direction of the drying box 1, and each transmission rod 21 is arranged between the first drying plate 41 and the second drying plate 42. One of the transmission rods 21 is arranged near one end of the inlet 11, and the other transmission rod 21 is arranged near one end of the outlet 12. Both ends of each transmission rod 21 are provided with transmission wheels 22. The transmission wheels 22 on the same side of the two transmission rods 21 are respectively provided with transmission belts 23. When one of the transmission rods 21 rotates, the transmission rod 21 drives the other transmission rod 21 to rotate synchronously through the transmission belts 23. Each positioning frame 311 is distributed between the two transmission belts 23, and both ends of each positioning frame 311 are arranged on the corresponding transmission belt 23. When one of the transmission rods 21 rotates, each positioning frame 311 moves together with the rotation direction of the transmission belt 23. The second power unit 24 is arranged on one side of the drying box 1. The moving end of the second power unit 24 extends into the drying box 1 and is connected with one of the transmission rods 21. The connection between the second power unit 24 and the drying box 1 is a dynamic sealing connection. The second power unit 24 is used to drive the corresponding transmission rod 21 to rotate.
[0047] In this way, when the heat insulation plate 7 is conveyed, the second power unit 24 drives the corresponding transmission rod 21 to rotate, the transmission rod 21 drives the corresponding two transmission wheels 22 to rotate, and the other transmission rod 21 is driven to rotate through the transmission belts 23, at this time, the transmission belts 23 rotate around the transmission wheels 22 in the direction of rotation of the transmission wheels 22, so that the heat insulation plate 7 moves from the inlet 11 to the direction close to the outlet 12, until the heat insulation plate 7 is taken out from the outlet 12, at this time, the corresponding idle clamping assembly 31 continues to move in the direction of rotation of the transmission belts 23, and moves from the outlet 12 to the direction close to the inlet 11, so as to clamp the next heat insulation plate 7.
[0048] In an embodiment, the drying box 1 is also provided with a drying component 5, which includes a fan 51 arranged on one side of the drying box 1, the air inlet of the fan 51 is communicated with the inner cavity of the drying box 1, and the air outlet of the fan 51 penetrates out of the drying box 1, further including a first air duct 52 arranged on the outer wall of the drying box 1, the air inlet of the first air duct 52 is communicated with the air outlet of the fan 51, the air outlet of the first air duct 52 is arranged in the drying box 1 and is provided with two second air ducts 53, further including a blowing chamber 54 arranged at both ends of the corresponding transmission rod 21, and the two blowing chambers 54 are oppositely arranged and respectively arranged at the corresponding connection positions of the conveying component 2 and the drying box 1, each second air duct 53 is communicated with each blowing chamber 54, and each blowing chamber 54 is also provided with a plurality of blowing holes 541 close to one side of the corresponding transmission rod 21, the fan 51 introduces part of the hot air flow in the drying box 1 into the first air duct 52, and then blows into the corresponding blowing chamber 54 through the second air duct 53, and then blows to the center between the two transmission belts 23 through the blowing hole 541.
[0049] In this way, when the heat insulation plate 7 enters the drying box 1, the fan 51 is started and part of the hot air flow in the drying box 1 is introduced into the first air duct 52, and as the fan 51 continues to introduce, the air flow is blown into the corresponding blowing chamber 54 through the second air duct 53, and then is blown to the center between the two transmission belts 23 through the blowing hole 541, so as to dry the two sides of the heat insulation plate 7, thereby improving the drying efficiency.
[0050] In an embodiment, the first air duct 52 is also provided with a dehumidifying component 6, which includes a dehumidifier 61 arranged on the first air duct 52, when the air flow enters the first air duct 52 and passes through the dehumidifier 61, the dehumidifier 61 dehumidifies the excess moisture in the air flow, and further includes a drainage assembly 62 arranged below the dehumidifier 61, which is used to collect and drain the condensed water generated during the operation of the dehumidifier 61.
[0051] Thus, after the heat preservation plate 7 is dried, the humidity of the airflow in the drying box 1 is increased, and the fan 51 introduces the airflow into the first air duct 52. As the airflow continues to flow, the airflow enters the dehumidifier 61, and the dehumidifier 61 dehumidifies the excess moisture in the airflow until the airflow is discharged from the drying machine and continues to flow into the corresponding air blowing bin 54 to dry the heat preservation plate 7. Thus, the drying efficiency can be improved, and the humidity of the airflow in the drying box 1 is reduced. The moisture generated by the dehumidifier 61 is condensed to form water droplets and flows into the drainage assembly 62. The drainage assembly 62 collects and discharges the water droplets generated by the dehumidifier 61, so that the dehumidifier 61 can continuously work.
[0052] It should be noted that the dehumidifier 61 is common knowledge for those skilled in the art, and thus its structure and function will not be described in detail here.
[0053] In an embodiment, the drainage assembly 62 includes a collection bin 621 arranged at the bottom of the dehumidifier 61. The collection bin 621 is in communication with a water outlet of the dehumidifier 61. The collection bin 621 is also detachably provided with a collection rack 622, and the collection rack 622 is in sliding connection with the collection bin 621. The collection rack 622 is used to collect the condensed water generated by the dehumidifier 61.
[0054] Thus, when the dehumidifier 61 generates condensed water, the condensed water flows out of the water outlet of the dehumidifier 61, passes through the collection bin 621, and falls into the collection rack 622. At this time, the collection rack 622 is used to collect the condensed water generated by the dehumidifier 61. When the collection rack 622 stores enough condensed water, the collection rack 622 can be pulled out of the collection bin 621, and the condensed water can be treated.
[0055] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application. In addition, "a plurality of", "a plurality of groups", and "several" refer to two or more.
Claims
1. A drying device for insulation boards, characterized in that, include: A drying box (1) is provided with an inlet (11) at one end and an outlet (12) at the other end, with the inlet (11) and outlet (12) being arranged opposite to each other. A conveying component (2) is provided in the drying box (1). One end of the conveying component (2) is provided at the inlet (11) and the other end is provided at the outlet (12). The conveying component (2) is used to convey the insulation board (7) from the inlet (11) toward the outlet (12). The clamping component (3) includes a plurality of clamping assemblies (31) disposed on the conveying component (2). Each clamping assembly (31) includes a positioning frame (311) disposed on the conveying component (2). The positioning frame (311) has a placement slot (3111) for placing the insulation board (7). The positioning frame (311) also has two opposing clamping plates (312), and each clamping plate (312) is slidably disposed on the corresponding side wall of the placement slot (3111). For clamping the insulation board (7), each clamping plate (312) and the corresponding positioning frame (311) are provided with an elastic unit (313). The elastic unit (313) applies a pushing force to the corresponding clamping plate (312) in the direction close to the center of the placement groove (3111). During the process of moving from the feed port (11) to the direction close to the discharge port (12), the positioning frame (311) makes the corresponding insulation board (7) vertically set on the placement groove (3111). The drying component (4) includes a first drying plate (41) and a second drying plate (42) disposed in the drying box (1), and the conveying component (2) is disposed between the first drying plate (41) and the second drying plate (42). The first drying plate (41) and the second drying plate (42) are used to dry the insulation board (7).
2. The insulation board drying device according to claim 1, characterized in that, The first drying plate (41) is vertically slidably disposed inside the drying box (1), and the first drying plate (41) is disposed above the conveying component (2), while the second drying plate (42) is disposed below the conveying component (2); The drying component (4) further includes an adjustment component (43) disposed in the drying box (1). One end of the adjustment component (43) is connected to the first drying plate (41). The adjustment component (43) is used to drive the first drying plate (41) to move vertically back and forth in the drying box (1).
3. The insulation board drying device according to claim 2, characterized in that, The adjusting assembly (43) includes two screws (431) vertically arranged in the drying chamber (1). The two screws (431) are rotatably arranged in the drying chamber (1) and are arranged opposite to each other and screwed into the two sides of the first drying plate (41). It also includes a first power unit (432) arranged in the drying chamber (1). The moving end of the first power unit (432) is connected to one of the screws (431). The first power unit (432) is used to drive the corresponding screw (431) to rotate. It also includes a belt drive assembly (433) arranged in the drying chamber (1). One end of the belt drive assembly (433) is connected to the moving end of the first power unit (432), and the other end is connected to the screw (431) away from the end of the first power unit (432). The first power unit (432) drives the two screws (431) to rotate synchronously through the belt drive assembly (433).
4. The insulation board drying device according to claim 2, characterized in that, The conveying component (2) includes two transmission rods (21) rotatably disposed in the drying box (1). Each transmission rod (21) is arranged along the width direction of the drying box (1) and is disposed between the first drying plate (41) and the second drying plate (42). One transmission rod (21) is disposed near the inlet (11), and the other transmission rod (21) is disposed near the outlet (12). Both ends of each transmission rod (21) are provided with transmission wheels (22). Transmission belts (23) are respectively provided on the transmission wheels (22) on the same side of the two transmission rods (21). When one of the transmission rods (21) rotates, the transmission rod (21) drives the other transmission rod (21) through the transmission belts (23). One of the transmission rods (21) rotates synchronously. The positioning frames (311) are distributed between the two transmission belts (23), and the two ends of each positioning frame (311) are respectively set on the corresponding transmission belt (23). When one of the transmission rods (21) rotates, each positioning frame (311) moves together with the rotation direction of the transmission belt (23). It also includes a second power unit (24) set on one side of the drying box (1). The moving end of the second power unit (24) extends into the drying box (1) and is connected to one of the transmission rods (21). The connection between the second power unit (24) and the drying box (1) is a dynamic seal connection. The second power unit (24) is used to drive the corresponding transmission rod (21) to rotate.
5. The insulation board drying device according to claim 4, characterized in that, The drying chamber (1) is also provided with a drying component (5), which includes a fan (51) disposed on one side of the drying chamber (1). The air inlet of the fan (51) is connected to the inner cavity of the drying chamber (1), and the air outlet of the fan (51) extends out of the drying chamber (1). It also includes a first air guide pipe (52) disposed on the outer wall of the drying chamber (1). The air inlet of the first air guide pipe (52) is connected to the air outlet of the fan (51). The air outlet of the first air guide pipe (52) is disposed inside the drying chamber (1) and is provided with two second air guide pipes (53). It also includes air blowers disposed at both ends corresponding to the transmission rod (21). The two air-blowing chambers (54) are arranged opposite each other and respectively located at the corresponding connection points between the conveying component (2) and the drying box (1). Each second air guide pipe (53) is connected to each air-blowing chamber (54). Each air-blowing chamber (54) has multiple air-blowing holes (541) distributed on the side near the corresponding transmission rod (21). The fan (51) introduces part of the hot airflow in the drying box (1) into the first air guide pipe (52) and blows it into the corresponding air-blowing chamber (54) through each second air guide pipe (53), and then blows it towards the center between the two transmission belts (23) through the corresponding air-blowing holes (541).
6. The insulation board drying device according to claim 5, characterized in that, The first air duct (52) is also provided with a dehumidification component (6), which includes a dehumidifier (61) installed on the first air duct (52). When the airflow enters the first air duct (52) and passes through the dehumidifier (61), the dehumidifier (61) dehumidifies the excess moisture in the airflow. It also includes a drainage component (62) installed below the dehumidifier (61). The drainage component (62) is used to collect and drain the condensate generated when the dehumidifier (61) is working.
7. The insulation board drying device according to claim 6, characterized in that, The drainage assembly (62) includes a collection chamber (621) disposed at the bottom of the dehumidifier (61), the collection chamber (621) being connected to the outlet of the dehumidifier (61), and a collection rack (622) being detachably disposed in the collection chamber (621), and the collection rack (622) being slidably connected to the collection chamber (621), the collection rack (622) being used to collect the condensate generated by the dehumidifier (61).