Damp-proof heat preservation device for rock wool board production
By designing the lifting mechanism and pallet structure in the moisture-proof insulation box, as well as the coordination of the adapter mechanism and the plywood, the problem of deep position and inconvenient removal of the rock wool board is solved, achieving more efficient operation and better equipment convenience.
Patent Information
- Application Number
- CN202421952308.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-08-12
AI Technical Summary
The existing moisture-proof insulation box design causes the rock wool board to be deeply trapped, causing inconvenience to the staff's operation and removal of the rock wool board.
A moisture-proof and thermal insulation device for rock wool board production is designed, adopting a lifting mechanism and pallet structure. When the box cover moves, the lifting mechanism is driven to run. The pallet rises and lifts the rock wool board for easy removal. At the same time, the adapter mechanism and plyboard are used to clamp and fix the rock wool board.
The cutting height of the rock wool board is improved, reducing the problem of inconvenience in the box depth of the staff, improving the convenience of the device, and effectively avoiding the problem of rock wool board shaking.
Smart Images

Figure CN222860135U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of rock wool board production, and more specifically, to a moisture-proof and heat-insulating device for producing rock wool boards. Background Art
[0002] Rock wool board, also known as rock wool thermal insulation decorative board, is an inorganic fiber board made of basalt as the main raw material and processed by high-temperature melting. During the production process, rock wool board usually needs to be treated with moisture-proof. This is because rock wool board is a thermal insulation material. Its performance and service life are greatly affected by humidity. Therefore, during the production process of rock wool board, rock wool board needs to be placed in a moisture-proof insulation box for storage. If the rock wool board is not adequately treated with moisture-proof during the production process, it may cause it to absorb moisture during use, thereby affecting its thermal insulation performance and structural strength.
[0003] Existing moisture-proof insulation boxes are mostly composed of a box body, a box cover and a temperature control and ventilation module. The box cover is slidably connected to the top of the box body, and the temperature control and ventilation module is installed inside the box body. Its working principle is as follows: first open the box cover, and place multiple groups of rock wool boards in a stacked manner inside the box body, and then close the box cover. At this time, start the temperature control and ventilation module. The temperature control and ventilation module accurately controls the temperature inside the box body to make its temperature the most suitable temperature for the rock wool board, and cooperates to control the air inside the box body to prevent the inside of the box from being too dry. When the rock wool board needs to be removed, open the box cover and take out the rock wool board inside the box, thereby completing the working process of the moisture-proof insulation box.
[0004] However, existing box designs often focus on the flow and thermal conductivity of internal air, resulting in the height of the box being set too high. Although such a design improves the functionality of the box to a certain extent, it makes the rock wool board deeply sunken inside the box, causing great inconvenience to the staff in operating and removing the rock wool board. Utility Model Content
[0005] In order to overcome the above-mentioned defects of the prior art, the utility model proposes a moisture-proof and heat-insulating device for producing rock wool boards.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a moisture-proof and heat-insulating device for the production of rock wool boards, comprising a box body, a temperature-control and ventilation module is installed inside the box body, the temperature-control and ventilation module is used to control the temperature and humidity inside the box body, a box cover is slidably connected to the top of the box body, a pallet is arranged inside the box body, a lifting mechanism is arranged inside the pallet, and the lifting mechanism is used to lift the pallet.
[0007] Furthermore, the lifting mechanism includes a slider, a screw, a limit rod, a spur gear, a rack, a groove and a card plate, the slider is fixed to the inside of the support plate, the outer side of the screw is threadedly connected to the slider, and the bottom end of the screw is rotatably connected to the bottom end of the inner wall of the box body, the bottom end of the limit rod is fixed to the bottom end of the inner wall of the box body, and the limit rod passes through the support plate, the spur gear is fixed to the outer side of the screw, the rack is fixed to the bottom end of the box cover, and the rack is meshed with the spur gear, the groove is opened inside the box body, the card plate is matched with the size of the groove, the card plate is fixed to the bottom end of the box cover, and the card plate is made of rubber.
[0008] Furthermore, a pair of clamping plates are arranged inside the box body, and an adapting mechanism is arranged at the bottom ends of the pair of clamping plates, and the adapting mechanism is used to move the clamping plates to clamp the rock wool board.
[0009] Furthermore, the adaptation mechanism includes an inclined block, a guide plate, a guide rod, a spring and a pressure plate, the inclined block is fixed to the bottom end of the clamping plate, the guide plate is respectively fixed to the two ends of the inclined block, the guide rod passes through the guide plate, and the two ends of the guide rod are fixed to the inner wall of the box body, the spring is fixed between a pair of guide plates, the spring is sleeved on the outside of the guide rod, the pressure plate is fixed to the bottom end of the support plate, and the pressure plate is in contact with the inclined block.
[0010] Furthermore, a connecting plate is fixedly connected to the outer side of the box cover, and a handle is fixedly connected to one end of the connecting plate away from the box cover.
[0011] The technical effects and advantages of the utility model of a moisture-proof and heat-insulating device for producing rock wool boards:
[0012] (1) Through the structural design of the lifting mechanism and the support plate, when the box cover moves, it will drive the lifting mechanism to operate, and the lifting mechanism will drive the support plate to rise, lift the rock wool board, and then remove the rock wool board on the top of the support plate. To a certain extent, the material height of the rock wool board is increased, avoiding the problem that the staff are inconvenient to take the rock wool board due to the depth of the box, thereby improving the convenience of the device.
[0013] (2) Through the structural design of the adapter mechanism and the clamping plate, a pair of clamping plates are in a state of clamping the rock wool board under the action of the adapter mechanism, thereby avoiding the problem of shaking of the rock wool board. When the support plate rises, it means that the rock wool board needs to be removed. At this time, the support plate will simultaneously drive the adapter mechanism to operate during the rising process, and the operation of the adapter mechanism will drive the pair of clamping plates to move away from the support plate. At this time, the clamping of the rock wool board by the clamping plate ends, and the rock wool board can be easily removed. When the support plate moves down and resets, the adapter mechanism will drive the clamping plate to squeeze the rock wool board again, thereby fixing it. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1It is a schematic diagram of the overall structure of the utility model.
[0015] Figure 2 It is a schematic diagram of the cross-sectional structure of the box body in the utility model.
[0016] Figure 3 It is a schematic diagram of the groove structure in the utility model.
[0017] Figure 4 It is a schematic diagram of the lifting mechanism structure in the utility model.
[0018] Figure 5 It is a schematic diagram of the structure of the adapting mechanism in the utility model.
[0019] In the figure:
[0020] 1. Box body; 2. Box cover; 3. Support plate; 4. Screw; 5. Limit rod; 6. Spur gear; 7. Rack; 8. Groove; 9. Card plate; 10. Clamp; 11. Bevel block; 12. Guide plate; 13. Guide rod; 14. Spring; 15. Pressure plate; 16. Connecting plate; 17. Handle. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0022] See also Figure 1 - Figure 4 As shown, a moisture-proof and heat-insulating device for the production of rock wool boards, a temperature-control and ventilation module is installed inside the box body 1, the temperature-control and ventilation module is used to control the temperature and humidity inside the box body 1, a box cover 2 is slidably connected to the top of the box body 1, a support plate 3 is arranged inside the box body 1, a lifting mechanism is arranged inside the support plate 3, and the lifting mechanism is used to lift the support plate 3.
[0023] The existing box 1 design often focuses on the flow of internal air and thermal conductivity, resulting in the height of the box 1 being set too high. Although such a design improves the functionality of the box 1 to a certain extent, it makes the position of the rock wool board deeply sunken inside the box 1, which brings great inconvenience to the staff's operation and removal of the rock wool board. When using this embodiment, first slide open the box cover 2, place multiple groups of rock wool boards on the top of the support plate 3 in a stacked manner, and then close the box cover 2. At this time, start the temperature control ventilation module, which accurately controls the temperature inside the box 1 to make it the most suitable temperature for the rock wool board, and Cooperate with controlling the air inside the box body 1 to prevent the inside of the box body from being too dry. When the rock wool board needs to be removed, open the box cover 2. When the box cover 2 moves, it will drive the lifting mechanism to operate, and the lifting mechanism will drive the support plate 3 to rise, and lift the rock wool board. It should be noted that when the box cover 2 moves to the limit distance, the rock wool board will not exceed the height of the box cover 2, thereby avoiding the rock wool board from hitting the box cover 2 when it rises. Then, the rock wool board on the top of the support plate 3 can be removed. To a certain extent, the unloading height of the rock wool board is increased, avoiding the problem that the staff is inconvenient to take the rock wool board due to the depth of the box body 1, and improving the convenience of the device.
[0024] like Figure 2 , Figure 3 and Figure 4 As shown, the lifting mechanism includes a slider, a screw 4, a limit rod 5, a spur gear 6, a rack 7, a groove 8 and a card plate 9, the slider is fixed to the inside of the support plate 3, the outer side of the screw 4 is threadedly connected to the slider, and the bottom end of the screw 4 is rotatably connected to the bottom end of the inner wall of the box body 1, the bottom end of the limit rod 5 is fixed to the bottom end of the inner wall of the box body 1, and the limit rod 5 passes through the support plate 3, the spur gear 6 is fixed to the outer side of the screw 4, the rack 7 is fixed to the bottom end of the box cover 2, and the rack 7 is meshed with the spur gear 6, the groove 8 is opened in the inside of the box body 1, the card plate 9 is adapted to the size of the groove 8, the card plate 9 is fixed to the bottom end of the box cover 2, and the card plate 9 is made of rubber.
[0025] When the box cover 2 is pulled to move, the box cover 2 will drive the rack 7 to move, and the movement of the rack 7 will drive the spur gear 6 to rotate, and the rotation of the spur gear 6 will drive the screw 4 to rotate. Since the screw 4 is threadedly connected to the slider inside the support plate 3, and the other end of the support plate 3 is limited by the limit rod 5, when the screw 4 rotates, it will drive the support plate 3 to rise through the slider, and the rising of the support plate 3 will drive the rock wool board to rise. When the rack 7 is separated from the interior of the box body 1, the box body 1 needs to have a groove 8 to cooperate with the movement of the rack 7, and the opening of the groove 8 will cause the temperature inside the box body 1 to lose. In order to solve this problem, a card plate 9 is fixed to the bottom end of the box cover 2. In this way, when the box cover 2 is in the closed state, the card plate 9 is just engaged with the inside of the groove 8 to close the groove 8, thereby avoiding temperature loss.
[0026] like Figure 2 and Figure 5 As shown, a pair of clamping plates 10 are arranged inside the box body 1, and an adapting mechanism is arranged at the bottom end of the pair of clamping plates 10, and the adapting mechanism is used to move the clamping plates 10 to clamp the rock wool board.
[0027] When the box body 1 is being transported, the rock wool board on the top of the pallet 3 may shake. When the present embodiment is in use, in the initial state, a pair of clamps 10 are in a state of clamping the rock wool board under the action of the adapter mechanism, thereby avoiding the problem of shaking of the rock wool board. When the pallet 3 rises, it means that the rock wool board needs to be removed. At this time, the pallet 3 will synchronously drive the adapter mechanism to operate during the rising process, and the operation of the adapter mechanism will drive the pair of clamps 10 to move away from the pallet 3. At this time, the squeezing and clamping of the rock wool board by the clamps 10 is completed, and the rock wool board can be conveniently removed. When the pallet 3 moves down and resets, the adapter mechanism will drive the clamps 10 to squeeze the rock wool board again, thereby fixing it.
[0028] like Figure 2 and Figure 5 As shown, the adaptation mechanism includes an inclined block 11, a guide plate 12, a guide rod 13, a spring 14 and a pressure plate 15. The inclined block 11 is fixed to the bottom end of the clamping plate 10, and the guide plate 12 is respectively fixed to the two ends of the inclined block 11. The guide rod 13 passes through the guide plate 12, and the two ends of the guide rod 13 are fixed to the inner wall of the box body 1. The spring 14 is fixed between a pair of guide plates 12, and the spring 14 is sleeved on the outside of the guide rod 13. The pressure plate 15 is fixed to the bottom end of the support plate 3, and the pressure plate 15 fits with the inclined block 11.
[0029] When the support plate 3 rises, the pressure plate 15 is driven to move upward, and the upward movement of the pressure plate 15 will squeeze the inclined surface of the inclined block 11. The inclined block 11 is subjected to force and will drive the guide plate 12 to move along the outer side of the guide rod 13, and this movement is in the direction away from the support plate 3. During the movement of the guide plate 12, the spring 14 will be pulled, causing the spring 14 to deform and generate elastic potential energy. When the inclined block 11 moves, it will also drive the clamping plate 10 to move. When the clamping plate 10 moves, it will be separated from the clamping of the rock wool board, thereby facilitating the removal of the rock wool board. After the support plate 3 is lowered and reset, the support plate 3 drives the pressure plate 15 to be separated from the squeezing of the inclined block 11, the force of the spring 14 ends, and the elastic potential energy is released, and the pressure plate 15 is driven to reset through the guide plate 12. The reset of the pressure plate 15 will drive the clamping plate 10 to reset, so that the clamping plate 10 squeezes the rock wool board again, thereby clamping and limiting the rock wool board.
[0030] like Figure 2 and Figure 4 As shown, a connecting plate 16 is fixedly connected to the outer side of the box cover 2 , and a handle 17 is fixedly connected to one end of the connecting plate 16 facing away from the box cover 2 .
[0031] The provision of the handle 17 can facilitate the staff to pull the box cover 2, thereby avoiding the situation where the box cover 2 is inconvenient to move inside the box body 1.
[0032] Working principle: The existing box 1 design often focuses on the flow and thermal conductivity of the internal air, resulting in the height of the box 1 being set too high. Although such a design improves the functionality of the box 1 to a certain extent, it makes the position of the rock wool board deeply sunken inside the box 1, which brings great inconvenience to the staff's operation and removal of the rock wool board. When using this embodiment, first slide open the box cover 2, place multiple groups of rock wool boards on the top of the support plate 3 in a stacked manner, and then close the box cover 2. At this time, start the temperature control ventilation module, which accurately controls the temperature inside the box 1 to make it the most suitable temperature for the rock wool board, and cooperates with the control of the air inside the box 1 to prevent the inside of the box from being too dry. When it is necessary to remove the rock wool board, open the box cover 2 When the box cover 2 moves, it will drive the lifting mechanism to operate, and the lifting mechanism will drive the support plate 3 to rise, and lift the rock wool board. It should be noted that when the box cover 2 moves to the limit distance, the rock wool board will not exceed the height of the box cover 2, thereby avoiding the rock wool board from hitting the box cover 2 when it rises. Then, the rock wool board on the top of the support plate 3 can be removed. To a certain extent, the unloading height of the rock wool board is improved, and the problem that the staff is inconvenient to take the rock wool board due to the depth of the box body 1 is avoided, and the convenience of the device is improved. When the box cover 2 is pulled to move, the box cover 2 will drive the rack 7 to move, and the movement of the rack 7 will drive the spur gear 6 to rotate, and the rotation of the spur gear 6 will drive the screw 4 to rotate. Since the screw 4 is threadedly connected to the slider inside the support plate 3, and the other end of the support plate 3 When the screw rod 4 is limited by the limit rod 5, it will drive the support plate 3 to rise through the slider when it rotates. The rising of the support plate 3 will drive the rock wool board to rise. When the rack 7 is separated from the interior of the box body 1, the box body 1 needs to have a groove 8 to cooperate with the movement of the rack 7. The opening of the groove 8 will cause the temperature inside the box body 1 to lose. In order to solve this problem, a clamping plate 9 is fixed to the bottom end of the box cover 2. In this way, when the box cover 2 is in the closed state, the clamping plate 9 is just engaged with the inside of the groove 8 to seal the groove 8, thereby avoiding the loss of temperature. When the box body 1 is transported, the rock wool board on the top of the support plate 3 may shake. When this embodiment is in use, in the initial state, a pair of clamping plates 10 are in a state of clamping the rock wool board under the action of the adapter mechanism, thereby avoiding the rock wool When the support plate 3 is lifted up, it indicates that the rock wool board needs to be removed. At this time, the support plate 3 will synchronously drive the adapting mechanism to operate during the lifting process, and the operation of the adapting mechanism will drive a pair of clamping plates 10 to move in the direction away from the support plate 3. At this time, the clamping and holding of the rock wool board by the clamping plates 10 is completed, and the rock wool board can be easily removed. When the support plate 3 is moved down and reset, the adapting mechanism will drive the clamping plates 10 to squeeze the rock wool board again, thereby fixing it. During the lifting process of the support plate 3, the pressure plate 15 is driven to move upward, and the upward movement of the pressure plate 15 will squeeze the inclined surface of the inclined block 11. The inclined block 11 will be subjected to force and will drive the guide plate 12 to move along the outer side of the guide rod 13, and this movement is in the direction away from the support plate 3, and the guide plate 12 is in the process of moving.The spring 14 will be pulled, causing the spring 14 to deform and generate elastic potential energy. When the inclined block 11 moves, it will also drive the clamping plate 10 to move. When the clamping plate 10 moves, it will break away from the clamping of the rock wool board, making it easier to take the rock wool board. After the support plate 3 is lowered and reset, the support plate 3 drives the pressing plate 15 to break away from the squeezing of the inclined block 11. The spring 14 stops being stressed and releases the elastic potential energy. The pressing plate 15 is reset through the guide plate 12. The reset of the pressing plate 15 will drive the clamping plate 10 to reset, causing the clamping plate 10 to squeeze the rock wool board again, thereby clamping and limiting the rock wool board. The setting of the handle 17 can facilitate the staff to pull the box cover 2, avoiding the situation where the box cover 2 is inconvenient to move inside the box body 1.
[0033] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art who is familiar with the present technical field can easily think of changes or substitutions within the technical scope disclosed in the present application, which should be included in the protection scope of the present application. Therefore, the protection scope of the present application should be based on the protection scope of the claims.
Claims
1. A moisture-proof and heat-insulating device for producing rock wool boards, comprising a box (1), a temperature-controlling and ventilation module installed inside the box (1), the temperature-controlling and ventilation module being used to control the temperature and humidity inside the box (1), a box cover (2) being slidably connected to the top of the box (1), a support plate (3) being arranged inside the box (1), characterized in that: A lifting mechanism is arranged inside the support plate (3), and the lifting mechanism is used to lift the support plate (3).
2. The moisture-proof and heat-insulating device for producing rock wool boards according to claim 1, characterized in that: The lifting mechanism comprises a slider, a screw (4), a limiting rod (5), a spur gear (6), a rack (7), a groove (8) and a card plate (9); the slider is fixedly connected to the inside of the supporting plate (3); the outer side of the screw (4) is threadedly connected to the slider, and the bottom end of the screw (4) is rotatably connected to the bottom end of the inner wall of the box body (1); the bottom end of the limiting rod (5) is fixedly connected to the bottom end of the inner wall of the box body (1), and the limiting rod (5) passes through the supporting plate (3); the spur gear (6) is fixedly connected to the outer side of the screw (4); the rack (7) is fixedly connected to the bottom end of the box cover (2), and the rack (7) is meshed with the spur gear (6); the groove (8) is opened in the box body (1); the card plate (9) is adapted to the size of the groove (8); the card plate (9) is fixedly connected to the bottom end of the box cover (2); and the card plate (9) is made of rubber.
3. The moisture-proof and heat-insulating device for producing rock wool boards according to claim 2, characterized in that: A pair of clamping plates (10) are arranged inside the box body (1), and an adapting mechanism is arranged at the bottom ends of the pair of clamping plates (10), and the adapting mechanism is used to move the clamping plates (10) to clamp the rock wool board.
4. The moisture-proof and heat-insulating device for producing rock wool boards according to claim 3, characterized in that: The adapting mechanism comprises an inclined block (11), a guide plate (12), a guide rod (13), a spring (14) and a pressure plate (15); the inclined block (11) is fixedly connected to the bottom end of the clamping plate (10); the guide plate (12) is respectively fixedly connected to the two ends of the inclined block (11); the guide rod (13) passes through the guide plate (12), and the two ends of the guide rod (13) are fixedly connected to the inner wall of the box body (1); the spring (14) is fixedly connected between a pair of guide plates (12); the spring (14) is sleeved on the outside of the guide rod (13); the pressure plate (15) is fixedly connected to the bottom end of the support plate (3); and the pressure plate (15) fits the inclined block (11).
5. The moisture-proof and heat-insulating device for producing rock wool boards according to claim 4, characterized in that: A connecting plate (16) is fixedly connected to the outer side of the box cover (2), and a handle (17) is fixedly connected to one end of the connecting plate (16) facing away from the box cover (2).