Clean high-lead-molecule integrated assembly type detachable and movable lead room
By combining the base plate, roof, gable wall, front wall, rear wall and columns, and using push cylinder and roller assembly, the lead room can be quickly assembled and disassembled, which solves the problem of needing hoisting equipment in the existing technology, improves assembly efficiency and reduces costs.
Patent Information
- Application Number
- CN202422864011.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2034-11-22
AI Technical Summary
The existing lead rooms require hoisting equipment for assembly and disassembly, which is time-consuming and costly, and is not conducive to rapid deployment.
The lead room adopts a combined structure of base plate, roof, gable wall, front wall, rear wall and columns. The rapid assembly and disassembly of the lead room is achieved through push cylinder and roller assembly. The sliding connection between the roof and columns is achieved by the cooperation of push cylinder piston rod and roller assembly, realizing the folding and lifting of the wall, avoiding the use of additional hoisting equipment.
It enables rapid assembly and disassembly of lead rooms, reduces costs, improves assembly and disassembly efficiency, facilitates rapid deployment of lead rooms, and enhances the airtightness of lead rooms through a sealing structure.
Smart Images

Figure CN223937765U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of lead rooms, and in particular to a clean, high-lead molecular integrated prefabricated detachable and movable lead room. Background Technology
[0002] A lead room is a type of radiation protection device made primarily of lead plates. It is widely used for radiation protection in radiation rooms such as CT scanners, ECT, DSA, and X-ray machines, as well as for industrial radiation shielding.
[0003] Chinese utility model patent CN219017257U discloses a prefabricated protective lead room. This protective lead room utilizes a T-shaped locking mechanism with T-slots to enable rapid assembly of the first and second lead wall panels, significantly improving installation efficiency. By using filler lead plates, the space between the top plate and the two first and two second lead wall panels is sealed, preventing radiation leakage and enhancing protection. Furthermore, the drive motor and the four locking plates enable locking and unlocking, facilitating rapid assembly and disassembly of the top plate from the two first and two second lead wall panels. This high-efficiency assembly and disassembly is easy for personnel to operate and highly practical.
[0004] However, due to the large weight of the wall panels of the lead room, and the fact that the wall panels are connected one by one by T-shaped clips and T-slots, hoisting equipment is required when assembling or disassembling the lead room. This results in a long assembly and disassembly time and high cost, which is not conducive to the rapid deployment of the lead room. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides a clean, high-lead molecular integrated prefabricated, detachable, and movable lead room that does not require additional hoisting equipment, achieves rapid assembly and disassembly of the lead room, has low cost, and is conducive to the rapid deployment of the lead room.
[0006] This utility model discloses a clean, high-lead molecular integrated prefabricated, detachable, and movable lead room, comprising a base plate, a roof, two gable walls, a front wall, and a rear wall. A protective sliding door is installed on the front wall. It also includes four columns and two push cylinders. The base plate moves via a roller assembly. The four columns are vertically installed at the four corners of the base plate. The roof is slidably connected to the four columns via clearance holes. The upper ends of the two gable walls are hinged to the left and right ends of the lower surface of the roof, respectively. The upper end of the front wall is hinged to the front end of the lower surface of the roof, and the upper end of the rear wall is hinged to the rear end of the lower surface of the roof. The hinge axis between the front wall and the roof is lower than that of the gable walls. The hinge axis between the wall and the roof is lower than that between the rear wall and the roof. The two side edges of the two gable walls, the two side edges of the front wall, and the two side edges of the rear wall are in sealed contact with the side walls of the four columns. The fixed ends of the two push cylinders are installed on the left and right ends of the roof, and the lower ends of the piston rods of the two push cylinders are connected to the base plate. Before the base plate reaches the designated position, the two gable walls, the front wall, and the rear wall fold to the inside of the roof, and the roof descends and fits tightly against the top of the base plate, thus facilitating the movement of the base plate via the roller assembly. When the base plate reaches the designated position, the piston rods of the two push cylinders extend... The fixed ends of the two push cylinders cause the roof to rise along the four pillars. During the roof's ascent, the rear wall, front wall, and two gable walls gradually straighten under gravity, sealing them against the side walls of the four pillars. After the lower ends of the rear wall, front wall, and two gable walls detach from the upper surface of the base plate, they become vertical under gravity. The piston rods of the two push cylinders then retract, causing the roof to descend. This descent of the roof, in turn, presses the lower ends of the rear wall, front wall, and two gable walls firmly against the upper surface of the base plate. This allows for the rapid assembly of the lead room. When disassembly is required, the piston rods of the two push cylinders extend to raise the roof, causing the lower ends of the rear wall, front wall, and two gable walls to detach from the base plate. First, the two gable walls are pushed inward, then the front and rear walls are pushed inward. The piston rods of the two push cylinders retract, causing the roof to descend, thus folding the two gable walls under the roof, the front wall under the two gable walls, and the rear wall under the front wall. This enables the rapid disassembly of the lead room without the need for additional hoisting equipment. Assembly and disassembly are faster and less costly, which is beneficial for the rapid deployment of lead rooms.
[0007] Preferably, the system also includes multiple Plane 1 and multiple Plane 2. Plane 1 is provided on the side walls of all four columns, and the four Planes 1 are respectively in sealing contact with the two side edges of the two gable walls. Plane 2 is provided on the side walls of all four columns, and the four Planes 2 are respectively in sealing contact with the two side edges of the front wall and the rear wall. By providing multiple Planes 1 and multiple Planes 2, the sealing performance between the four columns and the two gable walls, the front wall and the rear wall is improved. It also facilitates the placement of sealing gaskets in the gaps between the multiple Planes 1 and multiple Planes 2 and the two gable walls, the front wall and the rear wall, thereby improving the sealing performance of the lead room.
[0008] Preferably, it also includes two slots, slot 1 and slot 2. The upper surface of the base plate is provided with two slots, slot 1 and slot 2. Slot 1 is used to receive the lower ends of the two gable walls, and slot 2 is used to receive the lower ends of the front wall and the rear wall. When the two gable walls, the front wall and the rear wall are erected, the lower ends of the two gable walls are respectively inserted into slot 1, and the lower ends of the front wall and the rear wall are respectively inserted into slot 2, thereby positioning and limiting the lower ends of the two gable walls, the front wall and the rear wall, and improving the stability of the two gable walls, the front wall and the rear wall.
[0009] Preferably, the system also includes a winding machine and two cables. The winding machine is installed in the middle of the lower end of the roof. The upper ends of the two cables are wound onto the winding machine, and the lower ends of the two cables are hooked to the inner walls of the two gable walls respectively. When the two gable walls need to be dismantled, the two cables are hooked to the two gable walls respectively, and the winding machine winds up the two cables, causing the two cables to pull the two gable walls inward, so that the two gable walls fold onto the lower end of the roof, assisting in the dismantling of the two gable walls and improving the dismantling efficiency.
[0010] Preferably, the system also includes a second winding machine and a second cable. The second winding machine is installed on the inner wall of the front wall, one end of the second cable is wound onto the second winding machine, and the other end of the second cable is hooked onto the inner wall of the rear wall. The second winding machine is lower than the hook point between the second cable and the rear wall. When the front and rear walls need to be disassembled, the second cable is hooked onto the inner wall of the rear wall, and the second winding machine winds up the second cable, thereby pulling the front and rear walls towards the inside of the roof. Because the second winding machine is lower than the hook point between the second cable and the rear wall, the torque of the front wall is greater than that of the rear wall, causing the front wall to fold inward before the rear wall, allowing the rear wall to fold below the front wall, thus achieving auxiliary disassembly of the front and rear walls and improving disassembly efficiency.
[0011] Preferably, multiple roller assemblies are provided, each mounted on both sides of the base plate. Each roller assembly includes a wheel frame, rollers, a base, and a second push cylinder. The inner end of the wheel frame is hinged to the base plate, and the rollers are rotatably mounted on the outer end of the wheel frame. The base is mounted on the lower surface of the base plate. One end of the second push cylinder is hinged to the base, and the other end is hinged to the wheel frame. When the base plate reaches a designated position, the piston rod of the second push cylinder extends, pushing the outer end of the wheel frame outwards from the base plate, causing the wheel frame to lift the rollers, thus lowering the base plate and supporting the multiple bases on the ground. When movement is required, the piston rod of the second push cylinder retracts, pulling the outer end of the wheel frame inwards from the base plate, causing the wheel frame to rotate the rollers inwards and downwards from the base plate, thus raising the base plate and lifting the multiple bases off the ground. The multiple rollers then roll and support the base plate, facilitating movement and improving practicality.
[0012] Preferably, it also includes a step assembly and a slide rail. The slide rail is installed on the front of the lower end face of the base plate, and the step assembly is slidably installed on the slide rail. The step assembly is aligned with the protective sliding door on the front wall. When the base plate reaches the designated position and lowers to support the ground, the step assembly is pulled outward along the slide rail, so that the staff can climb onto the base plate through the step assembly and enter the lead room through the protective sliding door on the front wall. It is very practical.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: Before the base plate reaches the designated position, the two gable walls, the front wall, and the rear wall fold to the inner side below the roof, and the roof descends and fits tightly against the top of the base plate, thus facilitating the movement of the base plate via the roller assembly. When the base plate reaches the designated position, the piston rods of the two push cylinders extend, causing the fixed ends of the two push cylinders to drive the roof to rise along the four columns. During the process of the roof rising, the rear wall, the front wall, and the two gable walls gradually become vertical under the action of gravity, and the two gable walls, the front wall, and the rear wall respectively seal and contact the side walls of the four columns. After the lower ends of the rear wall, the front wall, and the two gable walls separate from the upper end surface of the base plate, the rear wall, the front wall, and the two gable walls are in a vertical state under the action of gravity, and the piston rods of the two push cylinders extend. The retraction of the rod causes the roof to descend, which in turn causes the rear wall, front wall, and two gable walls to descend, pressing their lower ends against the upper surface of the base plate, thus completing the rapid assembly of the lead room. When disassembly is required, the piston rods of the two push cylinders extend, raising the roof and causing the lower ends of the rear wall, front wall, and two gable walls to detach from the base plate. First, the two gable walls are pushed inward, then the front and rear walls are pushed inward. The piston rods of the two push cylinders retract, causing the roof to descend, resulting in the two gable walls folding under the roof, the front wall folding under the two gable walls, and the rear wall folding under the front wall. This allows for the rapid disassembly of the lead room without the need for additional hoisting equipment, resulting in shorter assembly and disassembly times, lower costs, and facilitating the rapid deployment of lead rooms. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model;
[0015] Figure 2 This is a front sectional view of the present invention;
[0016] Figure 3 This is a side sectional view of the present invention;
[0017] Figure 4 This is a structural schematic diagram of the front and rear walls of this utility model in an auxiliary folding state;
[0018] Figure 5 This is a schematic diagram of the structure of this utility model in its fully folded state;
[0019] Figure 6 It is a structural diagram of the base plate, columns, and roller assembly.
[0020] The following are labels in the attached diagram: 1. Base plate; 2. Roof; 3. Gable wall; 4. Front wall; 5. Rear wall; 6. Column; 7. Push cylinder; 8. Plane 1; 9. Plane 2; 10. Slot 1; 11. Slot 2; 12. Winder 1; 13. Cable 1; 14. Winder 2; 15. Cable 2; 16. Wheel frame; 17. Roller; 18. Base; 19. Push cylinder 2; 20. Step assembly; 21. Slide rail. Detailed Implementation
[0021] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete. Example 1
[0022] like Figures 1 to 6As shown, the clean, high-lead molecular integrated prefabricated detachable and movable lead room includes a base plate 1, a roof 2, two gable walls 3, a front wall 4, and a rear wall 5. A protective sliding door is installed on the front wall 4. It also includes four pillars 6 and two push cylinders 7. The base plate 1 moves via a roller assembly. The four pillars 6 are vertically installed at the four corners of the base plate 1. The roof 2 is slidably connected to the four pillars 6 via clearance holes. The upper ends of the two gable walls 3 are hinged to the left and right ends of the lower surface of the roof 2, respectively. The upper end of the front wall 4 is hinged to the front end of the lower surface of the roof 2. The rear wall 5... The upper end is hinged to the rear end of the lower end face of the roof 2. The hinge axis between the front wall 4 and the roof 2 is lower than the hinge axis between the gable wall 3 and the roof 2. The hinge axis between the rear wall 5 and the roof 2 is lower than the hinge axis between the front wall 4 and the roof 2. The two side edges of the two gable walls 3, the two side edges of the front wall 4, and the two side edges of the rear wall 5 are respectively in sealed contact with the side walls of the four columns 6. The fixed ends of the two push cylinders 7 are installed on the left and right ends of the roof 2. The lower ends of the piston rods of the two push cylinders 7 are connected to the base plate 1. It also includes multiple plane 1 8 and multiple plane 2 9. The side of the four columns 6 The wall is provided with four planes 8, which are respectively in sealed contact with the two side edges of the two gable walls 3. The four columns 6 are each provided with a plane 9, which are respectively in sealed contact with the two side edges of the front wall 4 and the rear wall 5. The base plate 1 also includes two slots 10 and two slots 11. The upper surface of the base plate 1 has two slots 10 and two slots 11. The two slots 10 are used to receive the lower ends of the two gable walls 3, and the two slots 11 are used to receive the lower ends of the front wall 4 and the rear wall 5. The base plate 1 also includes a winding machine. The roof 2 is equipped with a winder 12 and two cables 13. The winder 12 is installed in the middle of the lower end face of the roof 2. The upper ends of the two cables 13 are wound on the winder 12, and the lower ends of the two cables 13 are hooked to the inner walls of the two gable walls 3 respectively. The roof 2 also includes a winder 24 and a cable 25. The winder 24 is installed on the inner wall of the front wall 4. One end of the cable 25 is wound on the winder 24, and the other end of the cable 25 is hooked to the inner wall of the rear wall 5. The winder 24 is lower than the hook point between the cable 25 and the rear wall 5.
[0023] Before the base plate 1 reaches the designated position, the two gable walls 3, the front wall 4, and the rear wall 5 fold to the inside of the roof 2 below. The roof 2 descends and presses against the top of the base plate 1, facilitating the movement of the base plate 1 via the roller assembly. Once the base plate 1 reaches the designated position, the piston rods of the two push cylinders 7 extend, causing the fixed ends of the two push cylinders 7 to lift the roof 2 along the four columns 6. During the lifting of the roof 2, the rear wall 5, the front wall 4, and the two gable walls 3 gradually straighten under gravity, making the two gable walls 3, the front wall 4, and the rear wall 5 seal against the side walls of the four columns 6 respectively. The lower ends of the rear wall 5, the front wall 4, and the two gable walls 3 are in contact with the upper ends of the base plate 1. After the roof detaches, the rear wall 5, front wall 4, and two gable walls 3 are vertical under gravity. The piston rods of the two push cylinders 7 retract, causing the roof 2 to descend. The roof 2 then lowers the rear wall 5, front wall 4, and two gable walls 3, causing the lower ends of the two gable walls 3 to insert into the two slots 10, and the lower ends of the front wall 4 and rear wall 5 to insert into the two slots 11. This positions and limits the lower ends of the two gable walls 3, front wall 4, and rear wall 5, improving their stability and completing the rapid assembly of the lead room. When disassembly is required, the piston rods of the two push cylinders 7 extend, raising the roof 2, causing the rear wall 5, front wall 4, and two gable walls 3 to descend. The lower end of wall 3 is detached from the base plate 1. First, two cables 13 are hooked and connected to the two gable walls 3 respectively. The retractor 12 winds up the two cables 13, causing them to pull the two gable walls 3 inward, folding them onto the lower surface of the roof 2, assisting in the disassembly of the two gable walls 3. Then, cable 2 15 is hooked onto the inner wall of the rear wall 5. The retractor 2 14 winds up cable 2 15, thereby pulling the front wall 4 and the rear wall 5 inward towards the roof 2. Because the retractor 2 14 is lower than the hook point between cable 2 15 and the rear wall 5, the torque on the front wall 4 is greater than that on the rear wall 5, causing the front wall 4 to fold inward before the rear wall 5. The piston rod of the push cylinder 7 retracts, causing the roof 2 to descend, thereby folding the two gable walls 3 under the roof 2, the front wall 4 under the two gable walls 3, and the rear wall 5 under the front wall 4. This enables the lead room to be quickly disassembled without the need for additional hoisting equipment. Assembly and disassembly are less time-consuming and less costly, which is conducive to the rapid deployment of the lead room. By setting multiple plane 1 8 and multiple plane 2 9, the sealing performance between the four columns 6 and the two gable walls 3, the front wall 4, and the rear wall 5 is improved. It also makes it easier to set sealing gaskets in the gaps between the multiple plane 1 8 and multiple plane 2 9 and the two gable walls 3, the front wall 4, and the rear wall 5, thereby improving the sealing performance of the lead room. Example 2
[0024] like Figure 1 , Figure 3 , Figure 4 , Figure 5 and Figure 6As shown, based on Embodiment 1, multiple roller assemblies are provided, and the multiple roller assemblies are respectively installed on both sides of the base plate 1. The roller assembly includes a wheel frame 16, a roller 17, a base 18, and a push cylinder 19. The inner end of the wheel frame 16 is hinged to the base plate 1, the roller 17 is rotatably installed on the outer end of the wheel frame 16, the base 18 is installed on the lower end surface of the base plate 1, one end of the push cylinder 19 is hinged to the base 18, and the other end of the push cylinder 19 is hinged to the wheel frame 16.
[0025] When the base plate 1 reaches the designated position, the piston rod of the second push cylinder 19 extends and pushes the outer end of the wheel frame 16 to the outside of the base plate 1, causing the wheel frame 16 to drive the roller 17 to rise, thereby lowering the base plate 1 and supporting the multiple bases 18 on the ground. When it is necessary to move, the piston rod of the second push cylinder 19 retracts and pulls the outer end of the wheel frame 16 to the inside of the base plate 1, causing the wheel frame 16 to drive the roller 17 to rotate inward and downward on the inside of the base plate 1, thereby raising the base plate 1 and lifting the multiple bases 18 off the ground. The multiple rollers 17 roll to support the base plate 1, facilitating movement. Example 3
[0026] like Figure 1 , Figure 5 and Figure 6 As shown, based on Embodiment 1, it also includes a step assembly 20 and a slide rail 21. The slide rail 21 is installed on the front part of the lower end face of the base plate 1, and the step assembly 20 is slidably installed on the slide rail 21. The step assembly 20 is aligned with the protective sliding door of the front wall 4. When the base plate 1 reaches the designated position and descends to support the ground with the base 18, the step assembly 20 is pulled outward along the slide rail 21, so that the staff can climb onto the base plate 1 through the step assembly 20 and enter the lead room through the protective sliding door of the front wall 4.
[0027] like Figures 1 to 6As shown, this utility model of a clean, high-lead molecular integrated prefabricated detachable and movable lead room operates as follows: First, when the base plate 1 reaches the designated position, the piston rod of the second pusher cylinder 19 extends, pushing the outer end of the wheel frame 16 towards the outside of the base plate 1. This causes the wheel frame 16 to lift the rollers 17, thereby lowering the base plate 1. This allows multiple bases 18 to support the base plate 1 on the ground. Then, the piston rods of the two pusher cylinders 7 extend, causing the fixed ends of the two pusher cylinders 7 to raise the roof 2 along the four columns 6. 2. During the raising process, the rear wall 5, front wall 4, and two gable walls 3 gradually become vertical under the action of gravity, making the two gable walls 3, front wall 4, and rear wall 5 respectively seal in contact with the side walls of the four columns 6. Then, after the lower ends of the rear wall 5, front wall 4, and two gable walls 3 separate from the upper end surface of the base plate 1, the rear wall 5, front wall 4, and two gable walls 3 become vertical under the action of gravity. The piston rods of the two push cylinders 7 retract, causing the roof 2 to descend. The roof 2 then causes the rear wall 5, front wall 4, and two gable walls 3 to descend, thus lowering the rear wall 5, front wall 4, and two gable walls 3. The lower end is inserted and pressed into two slots 10 and two slots 11, thus completing the rapid assembly of the lead room; when disassembly is required, the piston rods of the two push cylinders 7 extend to raise the roof 2, causing the lower ends of the rear wall 5, front wall 4, and two gable walls 3 to detach from the base plate 1. The two pull cables 13 are hooked and connected to the two gable walls 3 respectively. The winding machine 12 winds up the two pull cables 13, causing the two pull cables 13 to pull the two gable walls 3 inward, so that the two gable walls 3 fold onto the lower end surface of the roof 2. The pull cable 215 is hooked onto the rear wall 11. On the inner wall of wall 5, the retractor 2 14 retracts the cable 2 15, thereby pulling the front wall 4 and the rear wall 5 towards the inside of the roof 2. Since the retractor 2 14 is lower than the hook point between the cable 2 15 and the rear wall 5, the torque of the front wall 4 is greater than that of the rear wall 5, causing the front wall 4 to fold inward before the rear wall 5. The piston rods of the two push cylinders 7 contract, causing the roof 2 to descend, thereby causing the two gable walls 3 to fold below the roof 2, the front wall 4 to fold below the two gable walls 3, and the rear wall 5 to fold below the front wall 4, thus achieving the rapid disassembly of the lead room.
[0028] The main functions achieved by this utility model are:
[0029] 1. No additional hoisting equipment is required for the rapid assembly and disassembly of lead rooms, resulting in lower costs and facilitating the rapid deployment of lead rooms;
[0030] 2. It can assist in the assembly and disassembly of the two gable walls 3, the front wall 4, and the rear wall 5, thereby increasing the speed of assembly and disassembly;
[0031] 3. The base plate 1 is raised and lowered by the roller assembly, which facilitates the movement and positioning of the base plate 1.
[0032] The clean, high-lead molecular integrated prefabricated detachable and movable lead room of this utility model uses common mechanical methods for installation, connection, or setting. Any method that can achieve its beneficial effect can be implemented. The base plate 1, roof 2, gable wall 3, front wall 4, rear wall 5, column 6, push cylinder 7, winding machine 12, cable 13, winding machine 2 14, cable 2 15, wheel frame 16, roller 17, push cylinder 2 19, step assembly 20, and slide rail 21 of this utility model are purchased from the market. Technical personnel in this industry only need to install and operate it according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0033] All technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0034] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A clean, high-lead molecular integrated prefabricated, detachable, and movable lead room, comprising a base plate (1), a roof (2), two gable walls (3), a front wall (4), and a rear wall (5), wherein a protective sliding door is provided on the front wall (4); characterized in that, It also includes four columns (6) and two push cylinders (7). The base plate (1) moves via a roller assembly. The four columns (6) are vertically installed at the four corners of the base plate (1). The roof (2) is slidably connected to the four columns (6) via clearance holes. The upper ends of the two gable walls (3) are respectively hinged to the left and right ends of the lower end face of the roof (2). The upper end of the front wall (4) is hinged to the front end of the lower end face of the roof (2). The upper end of the rear wall (5) is hinged to the rear end of the lower end face of the roof (2). The hinge axis between the rear wall (5) and the roof (2) is lower than the hinge axis between the gable wall (3) and the roof (2). The hinge axis between the rear wall (5) and the roof (2) is lower than the hinge axis between the front wall (4) and the roof (2). The two sides of the gable wall (3), the two sides of the front wall (4) and the two sides of the rear wall (5) are respectively in sealed contact with the side walls of the four columns (6). The fixed ends of the two push cylinders (7) are installed on the left and right ends of the roof (2). The lower ends of the piston rods of the two push cylinders (7) are connected to the base plate (1).
2. The clean, high-lead molecular integrated prefabricated detachable and movable lead room as described in claim 1, characterized in that, It also includes multiple plane one (8) and multiple plane two (9). Plane one (8) is provided on the side wall of each of the four columns (6). The four plane one (8) are in sealed contact with the two side edges of the two gable walls (3). Plane two (9) is provided on the side wall of each of the four columns (6). The four plane two (9) are in sealed contact with the two side edges of the front wall (4) and the rear wall (5) respectively.
3. The clean, high-lead molecular integrated prefabricated detachable and movable lead room as described in claim 1, characterized in that, It also includes two slots (10) and two slots (11). Two slots (10) and two slots (11) are provided on the upper surface of the base plate (1). The two slots (10) are used to accommodate the lower ends of the two gable walls (3), and the two slots (11) are used to accommodate the lower ends of the front wall (4) and the rear wall (5).
4. The clean, high-lead molecular integrated prefabricated detachable and movable lead room as described in claim 1, characterized in that, It also includes a winding machine (12) and two cables (13). The winding machine (12) is installed in the middle of the lower end face of the roof (2). The upper ends of the two cables (13) are wound on the winding machine (12), and the lower ends of the two cables (13) are hooked and connected to the inner walls of the two gable walls (3) respectively.
5. The clean, high-lead molecular integrated prefabricated detachable and movable lead room as described in claim 1, characterized in that, It also includes a second winder (14) and a second cable (15). The second winder (14) is installed on the inner wall of the front wall (4). One end of the second cable (15) is wound on the second winder (14), and the other end of the second cable (15) is hooked on the inner wall of the rear wall (5). The second winder (14) is lower than the hook point between the second cable (15) and the rear wall (5).
6. The clean, high-lead molecular integrated prefabricated detachable and movable lead room as described in claim 1, characterized in that, Multiple roller assemblies are provided, and the multiple roller assemblies are respectively installed on both sides of the base plate (1). The roller assembly includes a wheel frame (16), a roller (17), a base (18), and a push cylinder (19). The inner end of the wheel frame (16) is hinged to the base plate (1), the roller (17) is rotatably installed on the outer end of the wheel frame (16), the base (18) is installed on the lower end surface of the base plate (1), one end of the push cylinder (19) is hinged to the base (18), and the other end of the push cylinder (19) is hinged to the wheel frame (16).
7. The clean, high-lead molecular integrated prefabricated detachable and movable lead room as described in claim 1, characterized in that, It also includes a step assembly (20) and a slide rail (21). The slide rail (21) is installed on the front of the lower end face of the base plate (1). The step assembly (20) is slidably installed on the slide rail (21). The step assembly (20) is aligned with the protective sliding door of the front wall (4).
Citation Information
Patent Citations
Fabricated protective lead room
CN219017257U