Thermal insulation storage device for concrete block production
By designing a combined structure of support platform, load-bearing plate and inverted U-shaped plate, the problems of concrete blocks falling off and insufficient insulation during storage were solved, achieving a stable and efficient storage effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-04-10
AI Technical Summary
Existing concrete block storage equipment lacks effective fixing and insulation measures, which makes the blocks prone to falling during handling and storage, and also results in low storage efficiency.
A heat-insulating storage device was designed, comprising a support platform, a bearing plate, an inverted U-shaped plate, and an electric heating wire. The position of the blocks is fixed by a limiting device, and the storage stability and heat preservation effect are improved by using a buffer spring and vent holes.
It effectively prevents blocks from falling during storage, improving storage efficiency, and provides heat preservation protection through electric heating wires and ventilation holes, thus improving the storage quality of blocks.
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Figure CN224104558U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to concrete block production technical field, concretely relates to a kind of heat preservation storage device for concrete block production. BACKGROUND
[0002] Concrete block is a kind of new building material with light weight, good heat insulation, fire resistance, nailing, sawing, planing and certain anti-seismic ability, and aerated concrete is a kind of light-weight porous silicate product made of siliceous material as main raw material, mixed with air-entraining agent, through processes such as batching, stirring, pouring, cutting, autoclaving and curing.
[0003] At present, there is no specific storage equipment for storing processed concrete blocks, and they are all placed in order along the wall or classified and placed by carrier plate. The wall placement method requires manual handling when loading the blocks, causing inconvenience. The carrier plate placement method is to stack the blocks on the carrier plate, and the carrier plate does not have a limiting device, which is easy to cause the blocks to fall off when vibrating. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the technical problems of the above-mentioned and provides a kind of heat preservation storage device for concrete block production.
[0005] To achieve the above purpose, the utility model provides a kind of heat preservation storage device for concrete block production, including support platform, support platform bottom is equipped with support column, support column bottom is equipped with support foot;The upper side of the support platform is provided with a carrier plate and an inverted U-shaped plate, and the carrier plate bottom is connected with the support platform by a plurality of evenly distributed buffer springs;The carrier plate is provided with a partition plate, the top surface of the carrier plate is provided with a slide, and the bottom surface of the partition plate is provided with a sliding block one, which can slide in the slide;The side of the partition plate is provided with a folded edge, the folded edge is provided with a limiting hole, the limiting hole is provided with a limiting rod, and the carrier plate is provided with a plurality of evenly distributed limiting grooves matched with the limiting rod;The top surface of the support platform is provided with two sliding grooves, the sliding grooves are located on the front and rear sides of the carrier plate, the sliding grooves are provided with sliding rails, and the two sliding rails are provided with sliding blocks two;The two bottom surfaces of the inverted U-shaped plate are respectively fixedly connected with two sliding blocks two;The carrier plate is provided with a cavity, and the carrier plate is provided with a ventilation hole, the cavity is provided with an electric heating wire, and the cavity is provided with an auxiliary hole matched with the electric heating wire connecting line.
[0006] Preferably, the cross-sectional shape of the slide and the sliding block one is I-shaped.
[0007] Preferably, the sliding groove is provided with a limiting plate, the limiting plate is provided with a through hole, the through hole is provided with a threaded rod, and the sliding block two is provided with a threaded groove matched with the threaded rod.
[0008] Preferably, the inside of the inverted U-shaped plate is attached to the side of the bearing plate.
[0009] Preferably, a push-pull handle is arranged on the inverted U-shaped plate.
[0010] Preferably, a supporting roller is arranged in the sliding groove, and the top surface of the supporting roller abuts against the bottom surface of the inverted U-shaped plate.
[0011] The beneficial effects of the present application are as follows: 1. According to the actual size of the concrete block, the distance between the partitions is adjusted, and the position of the partition is fixed by the limiting rod, the limiting hole and the limiting groove. The concrete blocks are stacked on the bearing plate, and the buffer spring at the bottom of the bearing plate prevents the vibration of the blocks during placement, avoids the situation of block falling, and further protects the blocks.
[0012] 2. After the blocks are completely placed, the staff moves the inverted U-shaped plate by hand, until the threaded rod is screwed into the threaded groove through the through hole, and the inverted U-shaped plate is fixed. At this time, the inverted U-shaped plate can wrap the blocks to a certain extent, reduce the influence of the environment on the blocks, and reduce the air flow in the inverted U-shaped plate. In combination with the electric heating wire, the air hole and the auxiliary hole, the blocks are heated to a certain extent, and the storage effect of the blocks is improved. BRIEF DESCRIPTION OF DRAWINGS
[0013] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor.
[0014] Figure 1 is a structural schematic diagram of the present application;
[0015] Figure 2 is a schematic diagram of the internal structure of the present application;
[0016] Figure 3 is Figure 2 is an enlarged view of A in FIG.
[0017] Figure 4 is a schematic diagram of the internal structure of the sliding groove;
[0018] Figure 5 is a schematic diagram of the top view of the bearing plate.
[0019] In the figure, 1. support table, 2. support column, 3. support foot, 4. bearing plate, 5. inverted U-shaped plate, 6. buffer spring, 7. partition, 8. slide, 9. slider one, 10. folded edge, 11. limiting rod, 12. limiting groove, 13. sliding groove, 14. sliding rail, 15. slider two, 16. cavity, 17. air hole, 18. electric heating wire, 19. auxiliary hole, 20. limiting plate, 21. through hole, 22. threaded rod, 23. push-pull handle, 24. support roller. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will be further described in detail. It should be understood that the specific embodiments described herein are only used to explain the utility model, and are not used to limit the utility model.
[0021] REFERENCE Figures 1-5 The embodiment provides a heat preservation storage device for concrete block production, which comprises a support table 1, the bottom surface of the support table 1 is provided with a support column 2, and the bottom surface of the support column 2 is provided with a support foot 3; the upper side of the support table 1 is provided with a bearing plate 4 and an inverted U-shaped plate 5, the bottom surface of the bearing plate 4 is connected with the support table 1 through a plurality of uniformly distributed buffer springs 6; a partition 7 is arranged on the bearing plate 4, the top surface of the bearing plate 4 is provided with a slide 8, the bottom surface of the partition 7 is provided with a slider one 9, and the slider one 9 can slide in the slide 8; the side surface of the partition 7 is provided with a folded edge 10, a limiting hole is arranged on the folded edge 10, a limiting rod 11 is arranged in the limiting hole, and a plurality of uniformly distributed limiting grooves 12 that cooperate with the limiting rod 11 are arranged on the bearing plate 4; the top surface of the support table 1 is provided with two sliding grooves 13, the sliding grooves 13 are located on the front and back sides of the bearing plate 4, sliding rails 14 are arranged in the sliding grooves 13, and the two sliding rails 14 are both provided with a slider two 15; the two bottom surfaces of the inverted U-shaped plate 5 are respectively fixedly connected with the two slider twos 15; the bearing plate 4 is internally provided with a cavity 16, the bearing plate 4 is provided with an air hole 17, an electric heating wire 18 is arranged in the cavity 16, and an auxiliary hole 19 that cooperates with the connecting line of the electric heating wire 18 is arranged on the cavity 16.
[0022] The cross-sectional shape of the slide 8 and the slider one 9 is all I-shaped, so that the moving stability and fixing effect of the partition 7 are improved.
[0023] The sliding groove 13 is internally provided with a limiting plate 20, the limiting plate 20 is provided with a through hole 21, a threaded rod 22 is arranged in the through hole 21, the slider two 15 is provided with a threaded groove that cooperates with the threaded rod 22, and the position of the inverted U-shaped plate 5 can be fixed by screwing the threaded rod 22 into the threaded groove.
[0024] The inner side surface of the inverted U-shaped plate 5 is attached to the side surface of the bearing plate 4, so that the wrapping effect of the inverted U-shaped plate 5 is improved, and when the block is placed, the shaking amplitude of the bearing plate 4 can be reduced.
[0025] The push-pull handle 23 is arranged on the inverted U-shaped plate 5, facilitating the movement of the inverted U-shaped plate 5 by the staff.
[0026] The supporting roller 24 is arranged in the sliding groove 14, and the top surface of the supporting roller 24 abuts against the bottom surface of the inverted U-shaped plate 5, so that the movement stability of the inverted U-shaped plate 5 is increased when the inverted U-shaped plate 5 moves, the force borne by the sliding block 15 is shared, and the service life of the sliding rail 14 is increased.
[0027] During use, the distance between the partitions 7 is adjusted according to the specifications of the actual concrete blocks, and the position of the partitions 7 is fixed by the limiting rods 11, the limiting holes and the limiting grooves 12.
[0028] After the concrete blocks are completely placed, the staff moves the inverted U-shaped plate 5 by hand, until the threaded rod 22 is screwed into the threaded groove through the through hole 21, and the inverted U-shaped plate 5 is fixed.
[0029] Of course, the above description is not limited to the above examples, and the technical features not described in the utility model can be realized by or using the prior art, which will not be described here; the above embodiments and drawings are only used to illustrate the technical scheme of the utility model and are not limited to the utility model, and the preferred embodiments of the utility model are described in detail, and those skilled in the art should understand that the changes, modifications, additions or replacements made by those skilled in the art within the essential scope of the utility model do not deviate from the purpose of the utility model, and should also belong to the protection scope of the claims of the utility model.
Claims
1. A heat preservation storage device for concrete block production, comprising a support table (1), the bottom surface of the support table (1) is provided with a support column (2), and the bottom surface of the support column (2) is provided with a support foot (3); characterized in that, The support table (1) is provided with a bearing plate (4) and an inverted U-shaped plate (5) on the upper side, the bottom surface of the bearing plate (4) is connected to the support table (1) through a plurality of evenly distributed buffer springs (6); the bearing plate (4) is provided with a partition plate (7), the top surface of the bearing plate (7) is provided with a sliding groove (8), the bottom surface of the partition plate (7) is provided with a sliding block (9), the sliding block (9) can slide in the sliding groove (8); the side surface of the partition plate (7) is provided with a folded edge (10), the folded edge (10) is provided with a limiting hole, a limiting rod (11) is arranged in the limiting hole, a plurality of evenly distributed limiting grooves (12) are arranged on the bearing plate (4) and matched with the limiting rod (11); the top surface of the support table (1) is provided with two sliding grooves (13), the sliding grooves (13) are located on the front and rear sides of the bearing plate (4), the sliding grooves (13) are provided with sliding rails (14) therein, and the two sliding rails (14) are provided with sliding blocks (15) thereon; the two bottom surfaces of the inverted U-shaped plate (5) are respectively fixedly connected to the two sliding blocks (15); the bearing plate (4) is internally provided with a cavity (16), the bearing plate (4) is provided with a breathable hole (17), the cavity (16) is internally provided with an electric heating wire (18), and the cavity (16) is provided with an auxiliary hole (19) matched with the connecting line of the electric heating wire (18).
2. The heat-insulating storage device for producing concrete blocks according to claim 1, characterized in that, The cross-sectional shape of the sliding groove (8) and the sliding block (9) is all I-shaped.
3. The heat-insulating storage device for producing concrete blocks according to claim 1, characterized in that, The sliding groove (13) is provided with a limiting plate (20) therein, the limiting plate (20) is provided with a through hole (21), the through hole (21) is provided with a threaded rod (22), and the sliding block (15) is provided with a threaded groove matched with the threaded rod (22).
4. The heat-insulating storage device for producing concrete blocks according to claim 1, characterized in that, The inner side surface of the inverted U-shaped plate (5) is arranged in abutment with the side surface of the bearing plate (4).
5. The heat-insulating storage device for producing concrete blocks according to claim 1, characterized in that, The inverted U-shaped plate (5) is provided with a push-pull handle (23).
6. The heat-insulating storage device for producing concrete blocks according to claim 1, characterized in that, The sliding groove (13) is provided with a supporting roller (24) therein, and the top surface of the supporting roller (24) abuts against the bottom surface of the inverted U-shaped plate (5).