Shielding layer structure integrated design module
By introducing a mechanism that facilitates splicing and a mechanism that strengthens the load-bearing capacity into the shielding layer structure, the problems of low efficiency in disassembly and installation and inconvenience in handling the shielding layer are solved, achieving the effect of rapid splicing and efficient handling.
Patent Information
- Application Number
- CN202520068738.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-01-13
AI Technical Summary
Existing integrated shielding layer design modules are inefficient to disassemble and install, cannot serve as load-bearing structures, and are inconvenient to transport, wasting time and resources.
An integrated shielding layer structure module was designed, which includes a mechanism for easy splicing, a mechanism for strengthening the load-bearing capacity, and a mechanism for easy handling. It achieves rapid splicing, enhanced load-bearing capacity, and convenient handling through components such as triangular grooves, slots, connecting columns, and springs.
It improves the installation efficiency of the shielding layer, enhances the load-bearing capacity, simplifies the handling process, and enables rapid assembly and efficient handling.
Smart Images

Figure CN223706688U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of shielding layer, concretely to a shielding layer structure integration design module. BACKGROUND
[0002] Nuclear medicine radioactive storehouse, accelerator and the like shielding layer usually adopt thick reinforced concrete wall body, have the condition to become the load-bearing component of structure, and the integration design with structure can greatly increase the rationality and economy of building structure, the current shielding layer structure integration design module suitable for on the market is various, but still some shortcomings exist.
[0003] If in the actual use process, the general shielding layer structure integration design module, reinforced concrete wall body shielding layer dismounts and installs more inconveniently, can influence the efficiency of installation, and the wall body shielding layer cannot be applied on the bearing structure, can greatly waste its own structure bearing capacity, secondly, the wall body shielding layer installs and carries, more troublesome and the like problem, therefore, we propose a shielding layer structure integration design module to solve the problem proposed in the above. UTILITY MODEL CONTENTS
[0004] The utility model discloses a kind of shielding layer structure integration design modules, to solve the problem proposed in the above background art of current shielding layer structure integration design module, reinforced concrete wall body shielding layer dismounts and installs more inconveniently, can greatly influence the efficiency of installation, and the wall body shielding layer cannot be applied on the bearing structure, but as equipment accessory facilities, can greatly waste its own structure bearing capacity, secondly, the wall body shielding layer installs and carries, needs to be carried piece by piece, more troublesome and can appear waste time and the like problem.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of shielding layer structure integration design module, comprising:
[0006] First shielding layer, the rear side of the first shielding layer is provided with second shielding layer;
[0007] Further comprising:
[0008] The inside and rear side of the first shielding layer are provided with a convenient splicing mechanism, wherein the convenient splicing mechanism includes a triangular groove, a clamping groove, a triangular block, a clamping block, a second shielding layer, a connecting column, a fixed shaft, a spring, a clamping strip and a bayonet, the inside of the triangular groove is symmetrically provided with the triangular block on the inside and rear side of the first shielding layer, and the clamping block is symmetrically provided with the clamping groove on the inside and rear side of the first shielding layer, and the triangular groove is symmetrically provided with the clamping block on the inside and rear side of the first shielding layer, and the clamping block is symmetrically provided with the clamping groove on the inside and rear side of the first shielding layer.
[0009] The outer side of the first shielding layer and the second shielding layer is symmetrically provided with a convenient carrying mechanism on the left and right sides, wherein the convenient carrying mechanism comprises a fixed plate, a connecting block, a connecting hook, an elastic rope and a limiting plate, the outer side of the second shielding layer is symmetrically provided with the fixed plate by bolt fixing, the outer side of the rear of the fixed plate is equidistantly provided with the connecting block, the outer side of the connecting block is hingedly connected with the connecting hook, and the front side of the connecting hook is fixedly connected with the elastic rope.
[0010] Preferably, the triangular block and the clamping block are fixedly installed on the front side of the second shielding layer, the front side of the second shielding layer is symmetrically provided with the connecting column, and the middle portion of the connecting column is provided with the fixed shaft.
[0011] Preferably, the outer side of the fixed shaft is provided with the spring, and the outer side of the spring is provided with the clamping strip.
[0012] Preferably, the clamping strip is hingedly connected with the clamping opening, and the clamping opening is arranged in the inner portion of the first shielding layer.
[0013] Preferably, the inner portion of the first shielding layer is provided with the horizontal steel strip, the inner portion of the horizontal steel strip is penetratedly connected with the vertical steel strip, the outer side of the vertical steel strip is provided with the inclined steel strip, and the inclined steel strip is arranged in a slope type.
[0014] Preferably, the inner portion of the first shielding layer is provided with the sound-absorbing layer, the front side of the sound-absorbing layer is provided with the water-absorbing layer, and the front side of the water-absorbing layer is provided with the fireproof layer.
[0015] Preferably, the front side of the elastic rope is fixedly connected with the limiting plate.
[0016] Compared with the prior art, the shielding layer structure integrated design module has the beneficial effects that: the convenient splicing mechanism is arranged, so that the wall body shielding layers of the nuclear medicine and the accelerator can be quickly spliced and installed, the installation efficiency is greatly improved, the reinforcing structure bearing capacity mechanism is arranged, the bearing capacity of the shielding layer is strengthened, the wall body is connected, the shielding layer becomes a load-bearing component of the wall structure, the convenient carrying mechanism is arranged, the wall body shielding layers are stacked and limited, and the transportation and carrying are facilitated.
[0017] 1. The first shielding layer, the triangular groove, the clamping groove and the triangular block are arranged, the triangular groove is equidistantly arranged on the inner rear side of the first shielding layer, the clamping groove is symmetrically arranged on the left and right sides, the triangular block is fixedly installed on the middle front side of the second shielding layer, the clamping block is fixedly installed on the left and right sides of the front side of the second shielding layer, the triangular groove is hingedly connected with the triangular block, the clamping groove is hingedly connected with the clamping block, the triangular groove and the triangular block are hingedly connected, the clamping groove and the clamping block are hingedly connected, and the first shielding layer and the second shielding layer are quickly spliced together.
[0018] 2. The utility model provides a shielding layer, is provided with connecting post, fixed shaft, spring and clamping strip, is symmetrically installed connecting post through the left and right sides of the front side of second shielding layer, and the middle part of connecting post is provided with fixed shaft, and the outside of fixed shaft is fixedly connected with spring, and the outside of spring is installed clamping strip, because spring has the elasticity, when first shielding layer and second shielding layer are clamped and are connected, clamping strip will contact with the inside of first shielding layer, spring will contract, and clamping strip moves to the inside, when clamping strip slides to the inside of the opening of first shielding layer, spring will rebound, and will push clamping strip to move to the outside, and is clamped and is connected with the opening of first shielding layer inside setting, can further improve the stability that first shielding layer and second shielding layer install and connect,
[0019] 3. It is provided with horizontal steel strip, vertical steel strip and inclined steel strip, horizontal steel strip and vertical steel strip are equal distance inside first shielding layer and second shielding layer are provided with, horizontal steel strip and vertical steel strip are connected through, and will form a plurality of blocks, and inclined steel strip is provided in the inside of block, and inclined steel strip is inclined, that is, the setting of horizontal steel strip, vertical steel strip and inclined steel strip can strengthen the bearing capacity of first shielding layer and second shielding layer;
[0020] 4. It is provided with first shielding layer, sound absorbing layer, water absorbing layer and fireproof layer, sound absorbing layer is provided in the inside of first shielding layer, and sound absorbing layer has the function of sound absorption, water absorbing layer is provided on the front side of sound absorbing layer, and water absorbing layer has the function of water absorption, and fireproof layer is provided on the front side of water absorbing layer, and fireproof layer has the function of fireproofing;
[0021] 5. It is provided with fixed plate, connecting block, connecting hook and elastic rope, when first shielding layer and second shielding layer need to be carried, first, fixed plate is fixedly connected by bolt on the outside left and right sides of second shielding layer, connecting block is provided on the outside rear side of fixed plate at equal distance, connecting hook is clamped and connected on the outside of connecting block, elastic rope is connected on the front side of connecting hook, and limiting plate is connected on the front side of elastic rope, that is, when first shielding layer and second shielding layer need to be carried, first shielding layer and second shielding layer can be stacked, after stacking, because elastic rope has elasticity, limiting plate can be pulled, so that limiting plate can limit the stacked first shielding layer and second shielding layer, that is, a plurality of first shielding layers and second shielding layers can be carried at one time, which greatly improves the efficiency of carrying. ACCURACY OF DRAWINGS
[0022] Figure 1 It is the perspective structure schematic diagram of the utility model;
[0023] Figure 2 It is the perspective structure schematic diagram of the utility model triangle groove, clamping groove and triangular block connection;
[0024] Figure 3 It is the perspective split schematic diagram of the utility model first shielding layer and second shielding layer.
[0025] Figure 4 It is the connection column, fixed shaft and spring connection perspective structure schematic view of the utility model;
[0026] Figure 5 It is the connection column, fixed shaft and spring connection perspective structure schematic view of the utility model;
[0027] Figure 6 It is the connection column, fixed shaft and spring connection perspective structure schematic view of the utility model.
[0028] In the figure: 1, first shielding layer;2, triangular groove;3, clamping groove;4, triangular block;5, clamping block;6, second shielding layer;7, connecting column;8, fixed shaft;9, spring;10, clamping strip;11, clamping mouth;12, horizontal steel strip;13, vertical steel strip;14, inclined steel strip;15, sound absorbing layer;16, water absorbing layer;17, fireproof layer;18, fixed plate;19, connecting block;20, connecting hook;21, elastic rope;22, limiting plate. DETAILED DESCRIPTION
[0029] 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. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0030] Please refer to Figures 1-6 The utility model provides a technical scheme:
[0031] Embodiment 1: In order to solve the problems existing in the prior art, therefore, the embodiment integrates a shielding layer structure by the following technical scheme, a first shielding layer 1 is generally used for an accelerator shielding layer, a concrete cast-in-place wall with a thickness of about 1000 mm, and a second shielding layer 6 is arranged on the rear side of the first shielding layer 1, and the second shielding layer 6 is generally used for a nuclear medicine radioactive storehouse shielding layer, a concrete cast-in-place wall with a thickness of about 300 mm; a convenient splicing mechanism is arranged inside and on the rear side of the first shielding layer 1, so that the first shielding layer 1 and the second shielding layer 6 can be quickly spliced and connected, and the splicing efficiency can be greatly improved; a reinforced structure bearing capacity mechanism is arranged inside the first shielding layer 1 and the second shielding layer 6, horizontal steel bars 12 and vertical steel bars 13 are arranged at equal distances inside the first shielding layer 1 and the second shielding layer 6, the horizontal steel bars 12 and the vertical steel bars 13 are connected together, inclined steel bars 14 are arranged inside the formed square block to support, and the bearing capacity of the first shielding layer 1 and the second shielding layer 6 can be greatly improved; a convenient carrying mechanism is arranged below the left and right sides outside the first shielding layer 1 and the second shielding layer 6, a plurality of first shielding layers 1 and second shielding layers 6 can be stacked together for carrying, and the carrying efficiency can be improved;Firstly, triangular grooves 2 and slots 3 are respectively formed inside the middle rear side and the left and right sides of the rear side of the first shielding layer 1. This allows the triangular grooves 2 to engage with the triangular blocks 4 installed on the front side of the middle of the second shielding layer 6. At this time, the slots 5 installed on the left and right sides of the front side of the second shielding layer 6 will engage with the slots 3, allowing the first shielding layer 1 and the second shielding layer 6 to quickly engage. Secondly, connecting posts 7 are symmetrically installed on the left and right sides of the front side of the second shielding layer 6. A fixing shaft 8 is set in the middle of the connecting post 7, and a spring 9 is connected to the outside of the fixing shaft 8. A spring 9 is installed on the outside of the spring 9. With the installation of the retaining strip 10, when the first shielding layer 1 and the second shielding layer 6 are joined, the retaining strip 10 will slide into contact with the interior of the first shielding layer 1. At this time, the spring 9 will retract. When the retaining strip 10 slides to the position of the retaining slot 11 inside the first shielding layer 1, the spring 9 will rebound, and the retaining strip 10 will move outward to engage with the retaining slot 11, thus further enhancing the stability of the connection between the first shielding layer 1 and the second shielding layer 6. In addition, horizontal steel bars 12 and vertical steel bars 13 are equally spaced inside the first shielding layer 1 and the second shielding layer 6, and the horizontal steel bars 12 and vertical steel bars 13 are connected through a single... The block formed by the connection is supported by diagonal steel bars 14. The horizontal steel bars 12, vertical steel bars 13, and diagonal steel bars 14 enhance the load-bearing capacity of the first and second shielding layers 1 and 6. When the first and second shielding layers 1 and 6 need to be moved, the fixing plate 18 can be fixed to the rear side of the second shielding layer 6, and then multiple first and second shielding layers 1 and 6 can be stacked. Connecting blocks 19 are installed at equal intervals on the outside of the fixing plate 18. Connecting hooks 20 are engaged on the outside of the connecting blocks 19, and elastic ropes 21 are connected to the front of the connecting hooks 20. A limiting plate 22 is installed on the front side of the first shielding layer 1. Because the elastic rope 21 is elastic, the limiting plate 22 can be pulled to move and engage with the superimposed first shielding layer 1 for positioning. This allows for the simultaneous transport of multiple layers of the first and second shielding layers 1 without any displacement during transport. Furthermore, a sound-absorbing layer 15 is installed inside the first shielding layer 1, which has a sound-absorbing function. A water-absorbing layer 16 is installed in front of the sound-absorbing layer 15, which has a water-absorbing function. Additionally, a fire-resistant layer 17 is installed in front of the water-absorbing layer 16, which has a fire-resistant function.
[0032] Existing design modules are inconvenient to disassemble and install using reinforced concrete wall shielding layers, which greatly affects installation efficiency. Therefore, this embodiment adopts the following technical solution, such as... Figure 3 , Figure 4 and Figure 5As shown, the splicing mechanism includes a triangular groove 2 located inside the rear side of the first shielding layer 1, and symmetrical slots 3 located on the left and right sides of the rear side of the first shielding layer 1. The triangular groove 2 engages with a triangular block 4 installed on the front side of the second shielding layer 6, while the slots 3 engage with locking blocks 5 installed on the left and right sides of the front side of the second shielding layer 6. The engagement of the triangular groove 2 with the triangular block 4 and the slots 3 with the locking blocks 5 allows the first shielding layer 1 and the second shielding layer 6 to be quickly spliced together. Simultaneously, connecting posts 7 are symmetrically installed on the left and right sides of the front side of the second shielding layer 6, and a fixing shaft is provided in the middle of the connecting posts 7. 8. A spring 9 is fixedly connected to the outside of the fixed shaft 8, and a retaining strip 10 is installed on the outside of the spring 9. Since the spring 9 has elasticity, when the first shielding layer 1 and the second shielding layer 6 are engaged, the retaining strip 10 will come into contact with the inside of the first shielding layer 1, the spring 9 will retract, and the retaining strip 10 will move inward. When the retaining strip 10 slides into the slot 11 opened inside the first shielding layer 1, the spring 9 will rebound and push the retaining strip 10 to move outward, engaging with the slot 11 set inside the first shielding layer 1, which can further improve the stability of the installation and connection of the first shielding layer 1 and the second shielding layer 6.
[0033] Example 2: In existing design modules, the wall shielding layer cannot be applied to the load-bearing structure but is instead used as an auxiliary facility for equipment, which greatly wastes its own structural load-bearing capacity. Therefore, this example uses the following technical solution, such as... Figure 6 As shown, the structure strengthening mechanism includes horizontal steel bars 12 and vertical steel bars 13 evenly spaced inside the first shielding layer 1 and the second shielding layer 6. The horizontal steel bars 12 and vertical steel bars 13 are connected to form multiple squares. Inside the squares, diagonal steel bars 14 are arranged at an angle. The arrangement of the horizontal steel bars 12, vertical steel bars 13 and diagonal steel bars 14 can strengthen the overall load-bearing capacity of the first shielding layer 1 and the second shielding layer 6.
[0034] Example 3: In existing design modules, the wall shielding layer needs to be moved piece by piece during installation and transport, which is cumbersome and time-consuming. Therefore, this example uses the following technical solution, such as... Figure 1 , Figure 2 and Figure 3As shown, the handling mechanism includes fixed plates 18 located on the left and right sides below the second shielding layer 6. Connecting blocks 19 are evenly spaced on the rear side of the outer side of the fixed plates 18, and connecting hooks 20 are engaged on the outer side of the connecting blocks 19. Elastic ropes 21 are connected to the front side of the connecting hooks 20, and limiting plates 22 are connected to the front side of the elastic ropes 21. That is, when it is necessary to handle the first shielding layer 1 and the second shielding layer 6, the first shielding layer 1 and the second shielding layer 6 can be stacked layer by layer. After stacking, the elastic ropes 21 have elasticity and can pull the limiting plates 22, so that the limiting plates 22 can limit the stacked first shielding layer 1 and the second shielding layer 6. Multiple first shielding layers 1 and the second shielding layer 6 can be handled at one time, which will greatly improve the handling efficiency.
[0035] The contents not described in detail in this specification are existing technologies known to those skilled in the art. All standard parts used in this utility model can be purchased from the market, and irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art, and the circuit connection adopts conventional connection methods in the prior art, which will not be described in detail here.
[0036] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An integrated design module for a shielding layer structure, comprising: A first shielding layer (1) is provided on the rear side of the first shielding layer (1) and a second shielding layer (6) is provided thereon. Its characteristic is that it further includes: The first shielding layer (1) is provided with a splicing mechanism inside and on the rear side. The splicing mechanism includes a triangular groove (2), a slot (3), a triangular block (4), a locking block (5), a second shielding layer (6), a connecting post (7), a fixed shaft (8), a spring (9), a locking strip (10), and a locking slot (11). The first shielding layer (1) is provided with triangular grooves (2) at equal intervals on the rear side inside. The first shielding layer (1) is provided with slots (3) symmetrically on the left and right sides of the rear side inside. The triangular grooves (2) are connected to the triangular blocks (4) inside, and the slots (3) are connected to the locking blocks (5) inside. The first shielding layer (1) and the second shielding layer (6) are symmetrically provided with a handling mechanism on the lower left and right sides of the outer side. The handling mechanism includes a fixed plate (18), a connecting block (19), a connecting hook (20), an elastic rope (21) and a limiting plate (22). The second shielding layer (6) is symmetrically fixed with a fixed plate (18) by bolts on the outer side. The connecting block (19) is installed at equal distances on the rear side of the fixed plate (18). The connecting hook (20) is engaged with the outer side of the connecting block (19). The elastic rope (21) is fixedly connected to the front side of the connecting hook (20).
2. The integrated design module for a shielding layer structure according to claim 1, characterized in that: The triangular block (4) and the card block (5) are fixedly installed on the front side of the second shielding layer (6), and the front side of the second shielding layer (6) is symmetrically fixedly installed with connecting columns (7), and a fixing shaft (8) is provided in the middle of the connecting column (7).
3. The integrated design module for a shielding layer structure according to claim 2, characterized in that: A spring (9) is installed on the outside of the fixed shaft (8), and a retaining strip (10) is provided on the outside of the spring (9).
4. The integrated design module for a shielding layer structure according to claim 3, characterized in that: The card strip (10) is engaged with the slot (11), and the slot (11) is located inside the first shielding layer (1).
5. The integrated design module for a shielding layer structure according to claim 4, characterized in that: Horizontal steel bars (12) are installed at equal intervals inside the first shielding layer (1) and the second shielding layer (6), and vertical steel bars (13) are connected through the interior of the horizontal steel bars (12), and diagonal steel bars (14) are provided on the outside of the vertical steel bars (13), and the diagonal steel bars (14) are arranged in a sloping manner.
6. The integrated design module for a shielding layer structure according to claim 5, characterized in that: The first shielding layer (1) has a sound-absorbing layer (15) inside, and a water-absorbing layer (16) is installed on the front side of the sound-absorbing layer (15), and a fireproof layer (17) is installed on the front side of the water-absorbing layer (16).
7. The integrated design module for a shielding layer structure according to claim 1, characterized in that: The front side of the elastic rope (21) is fixedly connected to a limiting plate (22).