Storage device for fiberboards
By using a movable load-bearing plate and track beam transmission design, combined with fan ventilation, the problems of moisture prevention and inconvenient removal during fiberboard storage are solved, achieving rapid movement and ventilation drying, thus improving storage efficiency and board quality.
Patent Information
- Application Number
- CN202520217097.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-12
AI Technical Summary
Existing fiberboard storage devices lack moisture protection during the rainy season, making the boards prone to mold. Furthermore, stacked fiberboard is bulky and heavy, making it difficult to remove quickly and resulting in poor ventilation.
The design employs a mobile load-bearing plate, combined with a track beam and screw drive, to achieve rapid movement and ventilation drying of the fiberboard. The plate is ventilated and dehumidified by a fan, and the position of the plate is controlled by a lifting frame and hydraulic cylinder, achieving rapid movement and ventilation.
It enables rapid movement and ventilation drying of fiberboard, solves the problems of moisture prevention and inconvenient removal, and improves storage efficiency and board quality.
Smart Images

Figure CN223721630U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the storage related technical field of fiberboard, and specifically relates to a storage device for fiberboard. BACKGROUND
[0002] At present, common fiberboard shelves stack many fiberboards together. In storage, the fiberboards cannot be ventilated, and in the rainy season, the fiberboards lack moisture-proof function, and after stacking, the whole fiberboard has a large volume and heavy weight, is not easy to take out quickly, and has other defects, and the taking-out and ventilation do not change during listing, especially the board body stacked at the lower part is most prone to mold due to dampness, thereby affecting the quality of the fiberboard. SUMMARY
[0003] The utility model provides a storage device for fiberboard to solve the technical problem in the above background technology.
[0004] The storage device for fiberboard comprises a frame body, a moving frame and a lifting frame, the frame body is provided with at least three layers, the moving frame support plate is movably arranged in each layer of the frame body, the lifting frame is arranged on the side of the frame body, each layer of the frame body is provided with a first track beam on both sides, at least two first screws are rotatably arranged in the first track beam, a hollow beam is arranged in the middle of the moving frame, ventilation holes are arranged on the upper end surface of the hollow beam, slide rail beams are arranged on both sides of the moving frame, the hollow beam penetrates the slide rail beams in the middle, support plates are horizontally arranged on the upper and lower parts of the slide rail beams, the support plates are movably arranged above the first screws, screw grooves are arranged on the lower end surface of the support plates, the screw grooves are engaged with the first screws, air bellow is arranged on the outer end of the first track beam in communication, a fan is arranged on the outer end surface of the air bellow, the side of the lifting frame is a longitudinal track, a lifting plate is movably arranged in the middle of the lifting frame, track wheels are arranged on the side of the lifting plate, the track wheels are movably arranged in the longitudinal track, horizontal pulleys are arranged on the upper end surface of the lifting frame, a support plate is arranged on the side end of the lifting plate, hydraulic cylinders are arranged on the outer end surface of the support plate, a push plate is movably arranged on the inner side of the support plate, and the push plate is controlled by the hydraulic cylinders. Second screws are rotatably arranged in the middle of both sides of the lifting frame, the second screws rotatably penetrate both sides of the lifting plate, and the rotatable penetration part of the second screw and the lifting plate is engaged. First drive motors are arranged on the upper ends of both sides of the lifting frame, and the first drive motors drive the second screws.
[0005] Preferably, the first track beams on both sides of the moving frame are hollow, and the outer end surface is open.
[0006] Preferably, the first track beams of the frame body are connected with connecting plates at the rear ends, chain wheels are arranged on both sides of the end surface of the connecting plates, the chain wheels are coaxially rotatable with the first screws, the chain wheels are connected by chains, a support box body is arranged on the outer end surface of the connecting plate, a second drive motor is arranged on the outer end surface of the support box body, and the second drive motor drives at least one chain wheel.
[0007] Preferably, the fiberboard storage device, the lower end surface of the lifting plate is provided with a proximity switch, and the lower side of the first track beam of the frame body is provided with a receiving plate.
[0008] Preferably, the fiberboard storage device, a communication pipe is arranged between the first track beam and the air bellow, and the inside of the air bellow and the first track beam is communicated through the communication pipe.
[0009] Preferably, the fiberboard storage device, the bottom of the frame body is provided with a vacant second track beam on both sides, the first track beam and the second track beam are consistent in internal profile, and the outer side end surface of the controlled second track beam is closed.
[0010] Preferably, the fiberboard storage device, the lifting frame is provided with an auxiliary beam on both sides, and the auxiliary beam penetrates through the side of the lifting plate.
[0011] Beneficial effects: the scheme adopts a movable bearing plate body, and the bearing plate body has a ventilation function, thereby ventilating the lower part of the bearing fiberboard, moving the bearing plate body and the bearing goods through the transmission of the track beam and the screw, and lifting, so that the effect of quick movement and ventilation drying is realized. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a three-dimensional structure schematic diagram of the utility model;
[0013] Figure 2 It is Figure 1 the enlarged view of A;
[0014] Figure 3 It is a combination schematic diagram of the movable frame and the first track beam of the utility model;
[0015] Figure 4 It is a movable frame structure diagram of the utility model;
[0016] Figure 5 It is Figure 4 the enlarged view of B;
[0017] Figure 6 It is a combination side partial section view of the movable frame and the first track beam of the utility model;
[0018] Figure 7 It is a rear end surface view of the first track beam of the utility model;
[0019] Figure 8 It is a lifting frame structure diagram of the utility model;
[0020] The drawings are numbered as follows: frame body 1, first track beam 101, wind box 1011, communication pipe 10111, fan 1012, first screw rod 102, connecting plate 103, chain wheel 1031, chain 1032, support box body 1033, second driving motor 1034, second track beam 104, moving frame 2, hollow beam 201, ventilation hole 2011, sliding rail beam 202, support plate 2021, screw groove 2022, lifting frame 3, longitudinal track 301, lifting plate 302, track wheel 3021, transverse pulley 3022, support plate 3023, hydraulic cylinder 30231, push plate 30232, proximity switch 3024, second screw rod 303, first driving motor 304, auxiliary beam 305. DETAILED DESCRIPTION
[0021] The embodiments of the present application will be described in detail below with reference to the drawings. The described embodiments are part of the present application, but not all of the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0022] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "set", "mount", "connected", "connected" should be understood broadly, for example, it can be fixedly connected, it can be bolted, it can also be detachably connected, or integrally connected; it can be mechanically connected, or electrically connected; it can be directly connected, or indirectly connected through an intermediate medium; it can be the communication between two elements, and those skilled in the art can understand the specific meaning of the above terms in the present application according to the specific circumstances.
[0023] As Figures 1-8The shown fiberboard storage device includes a frame body 1, a moving frame 2, and a lifting frame 3. The frame body 1 is provided with at least three layers. The moving frame 2 is movably arranged in each layer of the frame body 1. The lifting frame 3 is arranged at the side of the frame body 1. Each layer of the frame body 1 is provided with a first track beam 101 at both sides. At least two first screws 102 are rotatably arranged in the first track beam 101. A hollow beam 201 is arranged in the middle of the moving frame 2. Ventilation holes 2011 are arranged on the upper end surface of the hollow beam 201. Slide rail beams 202 are arranged at both sides of the moving frame 2. The hollow beam 201 penetrates the slide rail beams 202. Support plates 2021 are transversely arranged on the upper and lower parts of the slide rail beams 202. The support plates 2021 are movably arranged above the first screws 102. Thread grooves 2022 are arranged on the lower end surface of the support plates 2021. The thread grooves 2022 are engaged with the first screws 102. Air boxes 1011 are arranged on the outer ends of the first track beams 101. Fans 1012 are arranged on the outer end surfaces of the air boxes 1011. The side of the lifting frame 3 is a longitudinal track 301. A lifting plate 302 is movably arranged in the middle of the lifting frame 3. Track wheels 3021 are arranged on the side of the lifting plate 302. The track wheels 3021 are movably arranged in the longitudinal track 301. Transverse pulleys 3022 are arranged on the upper end surface of the lifting frame 3. Support plates 3023 are arranged at the side of the lifting plate 302. Hydraulic cylinders 30231 are arranged on the outer end surface of the support plates 3023. Push plates 30232 are movably arranged on the inner side of the support plates 3023. The hydraulic cylinders 30231 are connected to the push plates 30232. Second screws 303 are rotatably arranged in the middle of both sides of the lifting frame 3. The second screws 303 rotatably penetrate both sides of the lifting plate 302. The second screws 303 are engaged with the rotatable penetration of the lifting plate 302. First drive motors 304 are arranged on the upper end of both sides of the lifting frame 3. The first drive motors 304 drive the second screws 303.
[0024] Further, the first track beams 101 on both sides of the moving frame 2 are hollow, and the outer end surface is open.
[0025] Further, the rear end of the first track beam 101 of the frame body 1 is connected with a connecting plate 103. Sprockets 1031 are arranged on both sides of the end surface of the connecting plate 103. The sprockets 1031 are coaxially rotatable with the first screws 102. The sprockets 1031 are connected and driven by a chain 1032. A support box body 1033 is arranged on the outer end surface of the connecting plate 103. A second drive motor 1034 is arranged on the outer end surface of the support box body 1033. The second drive motor 1034 drives at least one sprocket 1031.
[0026] Further, the lower end surface of the lifting plate 302 is provided with a proximity switch 3024. A receiving plate is arranged below the first track beam 101 of the frame body 1 to reflect the signal of the proximity switch 3024.
[0027] Further, the first track beam 101 and the wind box 1011 are arranged with a communication pipe 10111, and the wind box 1011 and the inside of the first track beam 101 are communicated through the communication pipe 10111.
[0028] Further, the second track beam 104 is arranged at the bottom of the frame body 1, the first track beam 101 and the second track beam 104 are consistent in internal profile, and the outer side end face of the controlled second track beam 104 is closed.
[0029] Further, the auxiliary beam 305 is arranged at both sides of the lifting frame 3, and the auxiliary beam 305 penetrates through the side of the lifting plate 302.
[0030] The piled fiberboard body is moved to the upper end of the moving frame 2 on the upper end surface of the lifting plate 302 of the lifting frame 3 through the lifting device, the first driving motor 304 is started, the first driving motor works to make the second screw rod 303 rotate, so that the lifting plate 302 is lifted or lowered, the auxiliary beam 305 ensures the balance of the lifting plate 302 in the lifting process, and the track wheel 3021 of the lifting plate 302 slides in the longitudinal track 301, when reaching the specified layer, the proximity switch 3024 detects the blocking of the receiving plate, at this time the upper end surface of the lifting plate 302 is the same horizontal surface as the lower end surface of the first track beam, and the first driving motor 304 is instructed to stop through the control end, at this time the hydraulic cylinder 30231 starts to push the moving frame 2, and is adjusted to the corresponding position of the contour of the first track beam 101 of the frame body 1, the hydraulic cylinder 30231 pushes the moving frame 2 through the push plate, and the moving frame 2 is moved through the auxiliary movement of the transverse pulley, the lowest end of the push plate is higher than the highest point of the transverse pulley, so that no blocking occurs, at this time the second driving motor 1034 works, and the first screw rod 102 is rotated through the chain drive of the chain 1032 and the sprocket 1031, when the side end sliding rail beam 202 of the moving frame 2 is inserted into the contour of the first track beam 101, the first screw rod 102 engages the threaded groove 2022 at the lower end of the side end upper and lower supporting plates 3023 of the sliding rail beam 202 through rotation, so as to move the moving frame 2 in the transverse direction in the middle of the frame body 1, when moving to the inside, the fan 1012 of the outer end surface bellow 1011 of the first track beam 101 works, the outer end surface of the sliding rail beam 202 is not closed, so when the fan 1012 works, the air is sent into or out of the hollow beam 201 of the moving frame 2 through the first track beam 101 and the bellow 1011, and then the fiberboard piled on the upper end of the moving frame 2 is ventilated and dehumidified through the air hole, and the lower part of the frame body 1 is provided with a spare second track beam 104 for bearing the empty moving frame 2 during movement, and the second track beam 104 is provided with the same first screw rod 102 and second driving motor 1034 as the first track beam 101, so that the moving frame 2 can be moved in the same way, and the empty second track beam 104 does not need to be ventilated, so the second track beam 104 is not provided with the bellow 1011 and fan 1012 at the side end, the bearing layer of the scheme is provided with at least three layers, the moving frame is adjusted by manual adjustment to exchange, the lowest layer is provided with an empty layer to facilitate the placement of the empty moving frame, so as to realize the alternation during exchange.
[0031] Those skilled in the art should understand that the above embodiments do not limit the utility model in any form, and any technical solution obtained by equivalent replacement or equivalent transformation falls within the protection scope of the utility model.
Claims
1. A storage device for fiberboard, comprising a frame (1), a movable frame (2), and a lifting frame (3), characterized in that: The frame (1) has at least three layers. The support plate (2021) of the movable frame (2) is movable in each layer of the frame (1). The lifting frame (3) is located on the side of the frame (1). Each layer of the frame (1) has a first track beam (101) on both sides. The first track beam (101) has at least two first screws (102) rotatably mounted inside. The movable frame (2) has hollow beams (201) arranged in the middle. The upper end of the hollow beams (201) has ventilation holes (2011). The two ends of the movable frame (2) are provided with... A slide rail beam (202) is provided, with a hollow beam (201) passing through the middle of the slide rail beam (202). The upper and lower parts of the slide rail beam (202) are laterally extended with support plates (2021). The support plates (2021) are movably positioned above the first screw (102), and the lower end face of the support plates (2021) is provided with threaded grooves (2022). The threaded grooves (2022) mesh with the first screw (102). The outer end of the first track beam (101) is provided with a bellows (1011), and the outer end face of the bellows (1011) is provided with a fan. (1012), the side of the lifting frame (3) is a longitudinal track (301), the middle of the lifting frame (3) is provided with a lifting plate (302), the side of the lifting plate (302) is provided with track wheels (3021), the track wheels (3021) are movably arranged in the longitudinal track (301), the upper end face of the lifting frame (3) is provided with a transverse pulley (3022), the side end of the lifting plate (302) is provided with a support plate (3023), the outer end face of the support plate (3023) is provided with a hydraulic cylinder (30231), the support... A push plate (30232) is provided on the inner side of the plate (3023). A hydraulic cylinder (30231) controls the push plate (30232). A second screw (303) is provided in the middle of both sides of the lifting frame (3). The second screw (303) rotates through both sides of the lifting plate (302), and the second screw (303) and the lifting plate (302) are meshed through the rotational passage. A first drive motor (304) is provided at the upper end of both sides of the lifting frame (3). The first drive motor (304) drives the second screw (303).
2. The fiberboard storage device according to claim 1, characterized in that: The first track beams (101) on both sides of the mobile frame (2) are hollow and the outer end faces are open.
3. The fiberboard storage device according to claim 1, characterized in that: The frame (1) has a connecting plate (103) connected to the rear end of the first track beam (101). Sprockets (1031) are arranged on both sides of the end face of the connecting plate (103). The sprockets (1031) rotate coaxially with the first screw (102). The sprockets (1031) are driven by a chain (1032). The outer end face of the connecting plate (103) is provided with a support box (1033). The outer end face of the support box (1033) is provided with a second drive motor (1034). The second drive motor (1034) drives and connects at least one sprocket (1031).
4. The storage device for fiberboard according to claim 1, characterized in that: The lower end face of the lifting plate (302) is provided with a proximity switch (3024), and a receiving plate is provided below the first track beam (101) of the frame (1).
5. The fiberboard storage device according to claim 1, characterized in that: A connecting pipe (10111) is arranged between the first track beam (101) and the bellows (1011), and the bellows (1011) is connected to the interior of the first track beam (101) through the connecting pipe (10111).
6. The fiberboard storage device according to claim 1, characterized in that: The frame (1) has two empty second track beams (104) on both sides of the bottom. The inner contours of the first track beam (101) and the second track beam (104) are consistent, and the outer end face of the controlled second track beam (104) is closed.
7. The fiberboard storage device according to claim 1, characterized in that: The lifting frame (3) is provided with auxiliary beams (305) on both sides, and the auxiliary beams (305) pass through the side of the lifting plate (302).