Medical anti-radiation floor
By combining the supporting frame, the bottom plate, the connecting pillars, and the edge sealing pillars, the problems of complex construction and difficult replacement of lead plates are solved, enabling rapid installation and stable fixation, and improving construction efficiency and safety.
Patent Information
- Application Number
- CN202520130761.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Existing lead plate installation is complex, requires professional personnel, poses safety risks, has low efficiency, and is difficult to replace quickly after damage.
It adopts a combined structure of load-bearing base frame, bottom plate, connecting columns and edge sealing columns, and achieves rapid installation and stable fixation through connection methods such as connecting slots, assembly slots and locking bolts, simplifying the construction process.
It enables rapid and stable installation and convenient replacement of lead plates, improving construction efficiency and reducing safety risks.
Smart Images

Figure CN223738897U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of radiation-proof floor structure, and more specifically, it relates to medical radiation-proof floor. Background Technology
[0002] Medical radiation-proof flooring typically has good radiation protection performance, effectively reducing or blocking radiation from radioactive materials, protecting the health of medical staff, patients, and the public. This type of flooring comes in various materials, including lead-containing materials such as lead plates. Lead has excellent radiation protection properties and can effectively block X-rays, gamma rays, and other radiation. In some places with high radiation protection requirements, lead-containing flooring or lead plates laid under the floor may be used to enhance the radiation protection effect.
[0003] Based on the above, most lead plate installations are currently quite complex and require professional personnel to operate. There are certain risks involved in the installation of lead plates, and strict safety measures must be taken during installation, resulting in low construction efficiency. Furthermore, it is difficult to quickly replace damaged lead plates later. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a medical radiation shielding floor that solves the issues of complex lead plate installation requiring professional personnel, inherent risks during installation, the need for strict safety measures, low construction efficiency, and difficulty in quickly replacing damaged lead plates.
[0005] This utility model of medical radiation-proof flooring is achieved through the following specific technical means:
[0006] Medical radiation shielding flooring, including a load-bearing frame, a bottom plate, connecting supports, and edge-sealing supports;
[0007] The inner side of the load-bearing base frame is provided with a paving groove, and a positioning support frame is fixedly installed inside the paving groove. A positioning support groove is provided through the side of the positioning support frame. The bottom layer of the base plate is set inside the load-bearing base frame through the paving groove. A positioning support layer is fixedly installed at the bottom of the bottom layer of the base plate. A load-bearing groove is opened at the top of the bottom layer of the base plate. A radiation-resistant lead layer is fixedly installed inside the load-bearing groove. The docking support column is set on the side of the bottom layer of the base plate. A docking support block is fixedly installed at both ends of the docking support column. The edge sealing support column is fixedly clamped to the side of the load-bearing base frame. A first connecting block and a second connecting block are fixedly installed on the end face of the edge sealing support column.
[0008] In at least some embodiments, the side of the supporting bottom frame is further provided with: a docking slot, a docking support block, and a locking support hole;
[0009] The docking slot is located on the side of the load-bearing base frame; the docking support block is fixedly installed on the side of the load-bearing base frame; and the locking support hole is located on the side of the docking support block.
[0010] In at least some embodiments, the top of the radiation-resistant lead layer is further provided with: a bearing surface layer and a frosted support layer;
[0011] The bearing surface layer is fixedly installed on top of the radiation-proof lead layer; the frosted support layer is fixedly installed on top of the bearing surface layer.
[0012] In at least some embodiments, the side of the docking support is further provided with: a locking mounting hole and a locking bolt;
[0013] The locking hole is opened through the side of the docking support; the locking bolt is set inside the locking hole through a threaded structure.
[0014] In at least some embodiments, the side of the edge banding post is further provided with: an assembly slot, an assembly block, a locking slot, and a fixing bolt;
[0015] The assembly slot is located on the side of the edge sealing support; the assembly block is fixedly installed on the side of the edge sealing support; the locking slot is located on the side of the assembly slot and the assembly block; the fixing bolt is installed inside the locking slot through a threaded structure.
[0016] The medical radiation-proof floor provided by this utility model has the following beneficial effects:
[0017] This utility model comprises a load-bearing base frame, a bottom base plate, connecting pillars, and edge-sealing pillars. The bottom base plate of a fixed size is prefabricated using collected data. The load-bearing base frame is tightly connected via connecting slots and connecting blocks. The connecting slots and connecting blocks securely fasten the edge-sealing pillars to the side of the load-bearing base frame. The edge-sealing pillars and the load-bearing base frame are locked together using fixing bolts. Connecting pillars are fixed to the top of the load-bearing base frame with locking bolts, allowing the connecting pillars to lock onto the load-bearing base frame. This enables the load-bearing base frame to be stably and quickly laid in the construction area. The laying groove, in conjunction with the positioning groove, engages the bottom base plate with the positioning support layer, ensuring stable load-bearing for the bottom base plate and the frosted support layer. The laid radiation-shielding lead layer provides radiation protection. Attached Figure Description
[0018] Figure 1 This is a structural schematic diagram of the overall assembly of the floor components of this utility model;
[0019] Figure 2 This is a schematic diagram of the overall assembly and unfolding of the load-bearing base frame of this utility model;
[0020] Figure 3 This is a schematic diagram of the assembly and disassembly of the bottom layer integral components of the base plate of this utility model;
[0021] Figure 4 This is a structural diagram illustrating the assembly and disassembly of the overall components of the docking support column of this utility model;
[0022] Figure 5 This is a structural diagram illustrating the assembly and disassembly of the edge-sealing support column of this utility model.
[0023] Figure label:
[0024] 1. Supporting base frame;
[0025] 101. Connecting slot; 102. Connecting support block; 103. Locking support hole; 104. Laying and loading slot; 105. Positioning support frame; 106. Positioning support groove;
[0026] 2. Bottom layer of the base plate;
[0027] 201. Positioning support layer; 202. Load-bearing groove; 203. Radiation-resistant lead layer; 204. Load-bearing surface layer; 205. Frosted support layer;
[0028] 3. Connecting pillars;
[0029] 301. Locking hole; 302. Locking bolt; 303. Connecting support block;
[0030] 4. Edge sealing support pillars;
[0031] 401. Assembly slot; 402. Assembly block; 403. Locking support slot; 404. First connecting block; 405. Second connecting block; 406. Fixing bolt. Detailed Implementation
[0032] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.
[0033] Example 1: As Figures 1 to 5 As shown, the medical radiation protection floor provided by this utility model includes a load-bearing bottom frame 1, a bottom plate 2, connecting pillars 3, and edge-sealing pillars 4;
[0034] The inner side of the load-bearing base frame 1 is provided with a paving groove 104, and a positioning support frame 105 is fixedly installed inside the paving groove 104. A positioning support groove 106 is provided through the side of the positioning support frame 105. The bottom plate 2 is set inside the load-bearing base frame 1 through the paving groove 104. A positioning support layer 201 is fixedly installed at the bottom of the bottom plate 2. A load-bearing groove 202 is opened at the top of the bottom plate 2. A radiation-resistant lead layer 203 is fixedly installed inside the load-bearing groove 202. A connecting support column 3 is set on the side of the bottom plate 2. A connecting support block 303 is fixedly installed at both ends of the connecting support column 3. An edge sealing support column 4 is fixedly clamped to the side of the load-bearing base frame 1. A first connecting block 404 and a second connecting block 405 are fixedly installed on the end face of the edge sealing support column 4.
[0035] Example 2: Figures 2 to 5As shown, the side of the connecting support column 3 is also provided with: a locking mounting hole 301 and a locking bolt 302; the locking mounting hole 301 is opened through the side of the connecting support column 3; the locking bolt 302 is set inside the locking mounting hole 301 through a threaded structure; the side of the edge sealing support column 4 is also provided with: an assembly slot 401, an assembly block 402, a locking support groove 403 and a fixing bolt 406; the assembly slot 401 is opened on the side of the edge sealing support column 4; the assembly block 402 is fixedly set on the side of the edge sealing support column 4; the locking support groove 403 is opened on the side of the assembly slot 401 and the assembly block 402; the fixing bolt 406 is set inside the locking support groove 403 through a threaded structure; the edge sealing support column 4 can be fixedly clamped to the side of the bearing base frame 1 by the assembly slot 401 cooperating with the assembly block 402.
[0036] Example 3: Figures 2 to 5 As shown, the side of the supporting base frame 1 is also provided with: a docking slot 101, a docking support block 102, and a locking support hole 103; the docking slot 101 is opened on the side of the supporting base frame 1; the docking support block 102 is fixedly set on the side of the supporting base frame 1; the locking support hole 103 is opened on the side of the docking support block 102; the top of the radiation-proof lead layer 203 is also provided with: a supporting surface layer 204 and a frosted support layer 205; the supporting surface layer 204 is fixedly set on the top of the radiation-proof lead layer 203; the frosted support layer 205 is fixedly set on the top of the supporting surface layer 204; the supporting surface layer 204 and the frosted support layer 205 can provide stable support for personnel.
[0037] The specific usage and function of this embodiment are as follows: In use, multiple sets of prefabricated load-bearing base frames 1 are laid in the construction area by using the docking slot 101 and docking support block 102. The assembly slot 401 and assembly block 402 fix the edge sealing support 4 to the side of the load-bearing base frame 1. The edge sealing support 4 and the load-bearing base frame 1 are limited and locked by the fixing bolt 406. The top of the load-bearing base frame 1 is fixedly set with the docking support 3 by the locking bolt 302, so that the docking support 3 docks and locks the load-bearing base frame 1. The docking support 3 and the load-bearing base frame 1 are used to position and lock the bottom layer 2 of the base plate as a whole, so that the bottom layer 2 of the base plate and the frosted support layer 205 can provide stable support.
Claims
1. A medical radiation shielding floor comprising: The bearing bottom frame (1), the bottom plate bottom layer (2), the butt joint support (3) and the edge sealing support (4); The bearing bottom frame (1) is internally provided with a paving load groove (104), and the paving load groove (104) is internally fixedly provided with a positioning support frame (105), and the positioning support frame (105) is externally provided with a positioning support groove (106); characterized in that the bottom plate bottom layer (2) is internally provided in the bearing bottom frame (1) through the paving load groove (104), the bottom plate bottom layer (2) is fixedly provided with a positioning support layer (201) at the bottom, and the bottom plate bottom layer (2) is internally provided with a bearing groove (202) at the top, and the bearing groove (202) is internally fixedly provided with a radiation-proof lead layer (203); the butt joint support (3) is provided at the side of the bottom plate bottom layer (2), and the butt joint support (3) is fixedly provided with butt joint blocks (303) at both ends; and the edge sealing support (4) is fixedly provided at the side of the bearing bottom frame (1), and the edge sealing support (4) is fixedly provided with a first joint block (404) and a second joint block (405) at the end face.
2. The medical radiation shielding floor of claim 1, wherein, The bearing bottom frame (1) is further provided with a butt joint clamping groove (101), a butt joint block (102) and a locking support hole (103) at the side; The butt joint clamping groove (101) is externally provided at the side of the bearing bottom frame (1); the butt joint block (102) is fixedly provided at the side of the bearing bottom frame (1); and the locking support hole (103) is externally provided at the side of the butt joint block (102).
3. The medical radiation shielding floor of claim 1, wherein, The radiation-proof lead layer (203) is further provided with a bearing surface layer (204) and a frosted support layer (205) at the top; The bearing surface layer (204) is fixedly provided at the top of the radiation-proof lead layer (203); and the frosted support layer (205) is fixedly provided at the top of the bearing surface layer (204).
4. The medical radiation shielding floor of claim 1, wherein, The butt joint support (3) is further provided with a locking load hole (301) and a locking bolt (302) at the side; The locking load hole (301) is externally provided at the side of the butt joint support (3); and the locking bolt (302) is internally provided in the locking load hole (301) through a threaded structure.
5. The medical radiation shielding floor of claim 1, wherein, The edge sealing support (4) is further provided with an assembly clamping groove (401), an assembly clamping block (402), a locking support groove (403) and a fixed bolt (406) at the side; The assembly clamping groove (401) is externally provided at the side of the edge sealing support (4); the assembly clamping block (402) is fixedly provided at the side of the edge sealing support (4); the locking support groove (403) is externally provided at the side of the assembly clamping groove (401) and the assembly clamping block (402); and the fixed bolt (406) is internally provided in the locking support groove (403) through a threaded structure.