An adaptive assembled construction platform and an assembling method

By designing an adaptive prefabricated construction platform, the adaptive movement of the load-bearing frame is achieved through the use of protective ropes and a sliding rail system. This solves the safety and efficiency issues of moving tools and materials by construction personnel in high-altitude environments, ensuring the stability and convenience of the construction process.

CN117166723BActive Publication Date: 2025-10-21BODA GANGLI INTELLIGENT EQUIP TECH (SHANDONG CO LTD
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Patent Information

Application Number
CN202311427994.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-31
Publication Date
2025-10-21
Estimated Expiration
2043-10-31

AI Technical Summary

Technical Problem

When construction workers move tools and materials on the construction platform, there are safety risks and low efficiency issues, especially since moving safety ropes frequently in a high-altitude environment is dangerous and inconvenient.

Method used

Design an adaptive prefabricated construction platform, which adopts a support frame, construction platform, protective plate and mobile load-bearing module. The load-bearing frame is moved adaptively by protective rope, protective slider and slide rail, and the stability under inertia is ensured by stopping component and unlocking component.

Benefits of technology

It improves the safety and efficiency of construction workers moving tools and materials in high-altitude environments, reduces manual operation, lowers friction, and ensures the stability and convenience of the load-bearing module.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a self-adaptive assembled construction platform and an assembling method, and relates to the field of construction platforms. The self-adaptive assembled construction platform comprises a support, a construction table fixedly installed on the support, and a protection plate fixedly installed on the two sides of the construction table. A mobile bearing module is arranged on the protection plate. The mobile bearing module comprises a bearing frame, an assembling component, two groups of mobile components, two groups of stopping components, two groups of unlocking components and a protection component. The assembling component can install the mobile components on the protection plate. The bearing frame can be self-adaptively moved along with a construction worker. The construction worker can conveniently store and take tools and materials. When the construction worker stops, the stopping component can lock the mobile components on the protection plate, so that the mobile bearing module cannot continue to move under inertia, and the stability of the mobile bearing module is ensured. When the tools and materials are stored and taken, the mobile components cannot move the bearing frame, and the tools and materials cannot shake during storage and taking, so that the storage and taking are not inconvenient.
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Description

Technical Field

[0001] The present invention relates to the field of construction platforms, and in particular to an adaptive assembled construction platform and an assembly method. Background Art

[0002] A construction platform is a temporary work platform used for construction work on a construction site. Typically constructed from materials such as steel pipes, steel plates, and wooden planks, it can be installed on a building's exterior or indoors, serving as a platform for construction workers, material transportation, and installation. The design and construction of a construction platform must be tailored to the specific building structure and operational requirements, while also taking safety and stability into consideration to ensure workers are protected from danger while working on the platform.

[0003] Scaffolding is a temporary work platform commonly found on construction sites. The main components of a scaffold include vertical poles, horizontal poles, diagonal poles, supports, casters, safety nets, etc. The construction of a scaffold needs to be designed and assembled according to the structure of the building and the operational requirements, while also meeting safety standards and specifications. During the construction process, it needs to be fixed and reinforced in strict accordance with the requirements to ensure the stability and safety of the scaffolding. During use, it needs to be inspected and maintained regularly to detect and address problems in a timely manner.

[0004] The lifting mechanism is a kind of key which is set up in the state that the support frame is the upper end of the support frame, and the lower end of the support frame is the upper end of the support frame, and the support frame is the middle portion that of the key.

[0005] The above patents and prior art also have the following defects:

[0006] When construction workers are working on a construction platform, they sometimes use a large number of tools and materials, and the construction workers will move on the construction platform to carry out construction. The construction workers need to frequently move tools and materials, which is troublesome and leads to reduced construction efficiency. To ensure the safety of the construction workers, the construction workers need to hang a safety rope lock on the construction platform on the high-altitude construction platform. However, when the construction workers move, they need to remove the safety rope and move it to the target position to re-lock it. During the movement, the construction workers are not protected by the safety rope, which is more dangerous.

[0007] Therefore, the present application provides an adaptive prefabricated construction platform and assembly method to meet the needs. Summary of the Invention

[0008] The purpose of this application is to provide an adaptive prefabricated construction platform and assembly method, so that the carrying frame can adaptively follow the movement of construction workers, so that construction workers can easily access tools and materials, and more conveniently, when the construction workers stop, the stop component can lock the moving component on the protective plate to prevent the mobile carrying module from continuing to move under inertia, and ensure the stability of the mobile carrying module. When accessing tools and materials, the moving component will not drive the carrying frame to move, and the tools and materials will not shake during access, causing inconvenience in access.

[0009] To achieve the above-mentioned objectives, the present application provides the following technical solutions: an adaptive prefabricated construction platform, comprising a bracket, a construction platform fixedly mounted on the bracket, protective plates fixedly mounted on both sides of the construction platform, a movable bearing module provided on the protective plates, the movable bearing module comprising a bearing frame, an assembly component, two sets of moving components, two sets of stopping components, two sets of unlocking components, and a protective component, the assembly component being capable of mounting the moving component on the protective plates, and the moving component being capable of driving the bearing frame, the assembly component, the stopping component, and the unlocking component to move on the protective plates;

[0010] The protection assembly includes a protection rope, a protection slider and a protection rail, wherein the protection rail is provided on the moving assembly, the protection rope is mounted on the protection slider, and the protection slider is slidably fitted in the protection rail;

[0011] The stopping component can lock the moving component on the protective plate. When the protective slider moves to the end of the protective slide rail, the protective slider can unlock the stopping component through the unlocking component, so that the movement of the protective slider can drive the moving component to move through the protective slide rail.

[0012] Preferably, two movable holes are provided on the protective plate, and the two groups of movable components are respectively located in the two movable holes. The two groups of movable components each include two movable wheels and two anti-slip plates. The movable wheels are rotatably connected between the two anti-slip plates, and the movable wheels are against the corresponding walls of the movable holes.

[0013] Preferably, two groups of stop assemblies are respectively arranged at both ends of the anti-slip plate, and the two groups of stop assemblies include a fixed plate and several groups of stop units, and the several groups of stop units are arranged in a straight line along the protective plate, and the fixed plate is fixedly mounted on the anti-slip plate, and the stop unit includes a friction block, a fixed block, a fixed rod, a limit block and a compression spring. The friction block is fixedly mounted on the fixed block, and the friction block is abutted against the hole wall corresponding to the movable hole. The friction block has inclined surfaces on both sides of one end away from the fixed block, and the fixed rod is fixedly mounted on one end of the fixed block away from the friction block, and the fixed rod passes through the fixed plate and slides with the fixed plate, and the limit block is fixedly mounted on the end of the fixed rod away from the friction block. One end of the compression spring is fixedly mounted on the fixed plate, and the other end of the compression spring is fixedly mounted on the fixed block, and the compression spring is sleeved on the fixed rod.

[0014] Preferably, the two groups of unlocking assemblies include two groups of unlocking units and connecting rods, and the two groups of unlocking units are respectively on the same side of the two stop assemblies, and the unlocking unit includes a pushing block, a pushing rod, a pushing base plate, two pushing side plates and a plurality of rotating rollers, the pushing block slidingly fits in the protective slide rail, and the protective slide rail and the anti-slip plate are provided with a pushing hole on the side close to the pushing rod, one end of the pushing rod is fixedly mounted on the pushing base plate, and the other end of the pushing rod passes through the pushing hole and is fixedly mounted on the pushing block, the two pushing side plates are fixedly mounted on the pushing base plate, and the plurality of rotating rollers are rotatably connected to the two pushing side plates, and the two pushing blocks in the two unlocking units are connected by the connecting rod, and the protective slide rail is provided with a connecting hole on the side close to the connecting rod, and the end of the connecting rod passes through the connecting hole and is fixedly mounted on the corresponding pushing block.

[0015] Preferably, the unlocking unit also includes a guide rod, a connecting block, a stop block and a return spring, the connecting block is fixedly mounted on the fixing plate, one end of the guide rod is fixedly mounted on the connecting block, the other end of the guide rod passes through the pushing base plate and slides with the pushing base plate, the stop block is fixedly mounted on the end of the guide rod away from the connecting block, one end of the return spring is fixedly mounted on the pushing base plate, the other end of the return spring is fixedly mounted on the connecting block, and the return spring is sleeved on the guide rod.

[0016] The two end bosses are connected to each other with a pair of locks, and the locks are connected with the lock member to form a one-stop shop for the lock member, and the lock member can be connected with the two locks at the same time to ensure the unlocking of the lock member.

[0017] Preferably, the rotating assembly includes a turbine, a worm and a rotating disk, the turbine is fixedly sleeved on the bidirectional threaded rod, the worm is rotatably connected to the stable plate, and the worm is engaged with the turbine, and the rotating disk is fixedly mounted on one end of the worm.

[0018] Preferably, the carrying frame is fixedly mounted on the stabilizing plate, and a plurality of partitions are fixedly mounted inside the carrying frame.

[0019] Preferably, the protective slide rail is fixedly mounted on the corresponding anti-slip plate, a rectangular slide is provided in the protective slide rail, a sliding bar hole is provided on the side of the rectangular slide away from the anti-slip plate, the protective slider and the push block are both rectangular in design, a stabilizing block is fixedly mounted on the protective slider, the stabilizing block passes through the sliding bar hole and extends outward, and the protective rope is fixedly mounted on the stabilizing block.

[0020] A method for assembling an adaptive prefabricated construction platform comprises the following steps:

[0021] Step 1: Fix the bracket and construction platform on one side of the construction location;

[0022] Step 2: Place the two moving components in the moving carrying module into the moving holes of the protective plate;

[0023] Step 3: The bidirectional threaded rod is driven to move by the driving assembly, and the two threaded sleeves move away from the bidirectional threaded rod. The threaded sleeve drives the anti-slip plate to move through the support plate. The anti-slip plate is located on both sides of the protective plate. The anti-slip plate drives the moving wheel to move. The moving wheel is against the wall of the moving hole, and the mobile bearing module is assembled on the protective plate.

[0024] In summary, the technical effects and advantages of the present invention are as follows:

[0025] When the tools and materials are put in the working platform, the lifting device can automatically release the lifting device, thereby saving time and energy.

[0026] 2. In the present invention, the moving wheels move on the walls of the moving holes of the protective plate. The moving wheels can rotate during movement, thereby reducing friction during movement and making it easier to pull the mobile carrying module. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without paying any creative work.

[0028] Figure 1 This is a schematic structural diagram of the support, construction platform, protective plate and mobile load-bearing module in the present invention;

[0029] Figure 2 Schematic diagram of the structure of the carrying platform, protective plate, carrying frame, protective assembly and moving assembly in the present invention;

[0030] Figure 3 This is a schematic diagram of the structure of the protective plate, protective rope, protective slider, protective slide rail and rotating assembly in the present invention;

[0031] Figure 4 Schematic diagram of the structure of the assembly component, support plate, limiting cylinder and limiting rod in the present invention;

[0032] Figure 5 For the present invention Figure 4 Enlarged view of part A;

[0033] Figure 6 Schematic diagram of the structure of the protective plate, movable hole and anti-slip plate in the present invention;

[0034] Figure 7 For the present invention Figure 6 Enlarged view of part B;

[0035] Figure 8 This is a schematic structural diagram of the protective plate, rotating assembly, protective rope and protective slider in the present invention;

[0036] Figure 9 For the present invention Figure 8 Enlarged view of part C;

[0037] Figure 10 This is a schematic structural diagram of the protective slide rail, moving wheels, stop assembly and unlocking assembly of the present invention;

[0038] Figure 11 For the present invention Figure 10 Magnified view of part D.

[0039] : In the figure: 1. bracket; 2. mobile bearing module; 3. bearing frame; 4. assembly component; 41. support plate; 42. two-way threaded rod; 43. threaded sleeve; 44. limiting cylinder; 45. limiting rod; 5. moving component; 51. moving wheel; 52. anti-slip plate; 6. stop component; 61. fixed plate; 62. friction block; 63. fixed rod; 64. limiting block; 65. compression spring; 7. unlocking component; 71. connecting rod; 72. pushing block; 73. pushing rod; 74. pushing bottom plate; 75. pushing side plate; 76. rotating roller; 78. guide rod; 79. reset spring; 8. protection component; 81. protection rope; 82. protection slider; 83. protection slide rail; 9. rotating component; 91. turbine; 92. worm; 93. rotating disk; 10. construction platform; 11. protection plate; 12. moving hole; 13. stabilizing plate; 14. partition. DETAILED DESCRIPTION

[0040] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0041] Example: Reference Figures 1-11An adaptive prefabricated construction platform is shown, comprising a support 1, on which a construction platform 10 is fixedly mounted, with protective plates 11 fixedly mounted on both sides of the construction platform 10, a movable load-bearing module 2 being provided on the protective plates 11, the movable load-bearing module 2 comprising a load-bearing frame 3, an assembly component 4, two sets of movable components 5, two sets of stop components 6, two sets of unlocking components 7, and a protective component 8. The assembly component 4 is capable of mounting the movable component 5 on the protective plates 11, and the movable component 5 is capable of driving the load-bearing frame 3, the assembly component 4, the stop component 6, and the unlocking component 7 to move on the protective plates 11;

[0042] The protection assembly 8 includes a protection rope 81, a protection slider 82 and a protection rail 83. The protection rail 83 is provided on the moving assembly 5. The protection rope 81 is installed on the protection slider 82. The protection slider 82 is slidably fitted in the protection rail 83.

[0043] The stopping component 6 can lock the moving component 5 on the protective plate 11. When the protective slider 82 moves to the end of the protective slide rail 83, the protective slider 82 can unlock the stopping component 6 through the unlocking component 7, so that the movement of the protective slider 82 can drive the moving component 5 to move through the protective slide rail 83.

[0044] Fix the bracket 1 and the construction platform 10 on one side of the construction location, such as one side of the wall, and install the mobile bearing module 2 on the protective plate 11 through the assembly component 4. The construction workers carry out construction on the construction platform 10, place the tools and materials required for construction in the bearing frame 3, and fix the protective rope 81 on the construction workers. The stop component 6 locks the moving component 5 on the protective plate 11, and the mobile bearing module 2 cannot move. When the construction workers move in a small range, they drive the protective rope 81 to move, and the protective rope 81 drives the protective slider 82 to move in the protective slide rail 83. When the construction workers move in a large range, the protective rope 81 is 1 drives the protective slider 82 to move to the end of the protective slide rail 83. The protective slider 82 releases the lock of the mobile assembly 5 by the stop assembly 6 through the unlocking assembly 7, and the mobile assembly 5 can move on the protective plate 11. The protective rope 81 drives the mobile assembly 5 to move through the protective slider 82 and the protective slide rail 83. The mobile assembly 5 drives the carrying frame 3 to move, so that the carrying frame 3 moves with the construction workers. When the construction workers stop, if the mobile carrying module 2 has a tendency to continue moving due to inertia, at this time, the stop assembly 6 locks the mobile assembly 5 on the protective plate 11, so that the mobile carrying module 2 stops moving.

[0045] By setting the protective plates 11 on both sides of the construction platform 10, construction workers are not likely to fall during the construction process. When there are more materials and tools during construction, the mobile component 5 is installed on the protective plate 11 through the assembly component 4, and the tools and materials are placed in the carrying frame 3. When the construction workers move over a large range, the protective rope 81 pulls the mobile component 5 to move on the protective plate 11, so that the carrying frame 3 moves with the construction workers. The construction workers can easily access tools and materials, which is more convenient. When the construction workers stop, the stop component 6 can lock the mobile component 5 on the protective plate 11 to prevent the mobile carrying module 2 from continuing to move under inertia, and ensure the stability of the mobile carrying module 2. When accessing tools and materials, the mobile component 5 will not drive the carrying frame 3 to move. When the construction workers move over a large range again, the stop component 6 can be automatically unlocked, eliminating manual operation, saving time and effort.

[0046] Further, refer to Figures 1-10 Two moving holes 12 are provided on the protective plate 11, and the two groups of moving components 5 are respectively located in the two moving holes 12. The two groups of moving components 5 include two moving wheels 51 and two anti-slip plates 52. The moving wheel 51 rotates and connects between the two anti-slip plates 52, and the moving wheel 51 is against the corresponding hole wall of the moving hole 12.

[0047] By moving the moving wheel 51 on the wall of the moving hole 12 of the protective plate 11 , the moving wheel 51 can rotate during movement, thereby reducing friction during movement and making it easier to pull the mobile carrying module 2 .

[0048] Further, refer to Figures 1-10 , two groups of stop assemblies 6 are respectively arranged at both ends of the anti-slip plate 52, and the two groups of stop assemblies 6 include a fixed plate 61 and several groups of stop units, and several groups of stop units are arranged in a straight line along the protective plate 11. The fixed plate 61 is fixedly mounted on the anti-slip plate 52, and the stop unit includes a friction block 62, a fixed block, a fixed rod 63, a limit block 64 and a compression spring 65. The friction block 62 is fixedly mounted on the fixed block, and the friction block 62 is abutted against the hole wall corresponding to the moving hole 12. The friction block 62 is away from the fixed block. The two sides of the end of the friction block 62 are inclined, and the fixed rod 63 is fixedly mounted on the end of the fixed block away from the friction block 62. The fixed rod 63 passes through the fixed plate 61 and slides with the fixed plate 61. The limit block 64 is fixedly mounted on the end of the fixed rod 63 away from the friction block 62. One end of the compression spring 65 is fixedly mounted on the fixed plate 61, and the other end of the compression spring 65 is fixedly mounted on the fixed block, and the compression spring 65 is sleeved on the fixed rod 63.

[0049] The compression spring 65 will press the friction block 62 against the wall of the movable hole 12 through the fixed block, and the fixed rod 63 will slide on the fixed plate 61. The friction block 62 will prevent the fixed rod 63 from moving, and the fixed rod 63 will prevent the fixed plate 61 from moving. The fixed plate 61 is fixed on the anti-slip plate 52 so that the anti-slip plate 52 cannot move, thereby preventing the movable component 5 from moving and the movable supporting module 2 from moving.

[0050] Further, refer to Figures 1-10 When the locking cam 73 is unlocked, the locking cam 73 is unlocked and the two locking cams 73 are in a state of being locked. When the locking cam 73 is unlocked, the two locking cams 73 are in a state of being locked. When the locking cam 73 is unlocked, the two locking cams 73 are in a state of being locked. When the locking cam 73 is unlocked, the two

[0051] Because the construction workers need to move in two directions along the construction platform 10, two unlocking components 7 are required. When the construction workers move in one direction, they can unlock the stop component 6 through the corresponding unlocking component 7. When moving in the other direction, they can unlock the stop component 6 through the other unlocking component 7. The stop component 6 has two groups, and each unlocking component 7 has two unlocking units, which are respectively located on one side of the two stop components 6. The two unlocking units are connected by a connecting rod 71, so that when the construction workers drive one unlocking unit to move, they can drive the other unlocking unit to move through the connecting rod 71 to unlock the corresponding stop component 6. Specifically, when the construction workers move in a large range, the construction workers drive The protective rope 81 moves, and the protective rope 81 moves to the end of the protective slide rail 83 and contacts the corresponding pushing block 72 to move the pushing block 72. The pushing block 72 in this unlocking unit drives the pushing block 72 in another unlocking unit to move through the connecting rod 71. The pushing block 72 drives the pushing rod 73 to move, and the pushing rod 73 drives the pushing bottom plate 74 to move. The pushing bottom plate 74 drives the pushing side plate 75 to move, and the pushing side plate 75 drives the rotating roller 76 to move. The rotating roller 76 is inserted between the friction block 62 and the wall of the moving hole 12. The end of the friction block 62 is set as an inclined surface. The friction block 62 descends and pushes the compression spring 65 to contract. The friction block 62 is out of contact with the wall of the moving hole 12. At this time, the moving component 5 can move.

[0052] By setting up multiple stop components 6, the friction block 62 with a large area can contact the hole wall of the moving hole 12 to increase the friction force, and can prevent the friction block 62 from immediately losing contact with the hole wall of the moving hole 12 when the unlocking component 7 is inserted between the entire friction block 62 and the hole wall of the moving hole 12. If the area of ​​the friction block 62 is large, the unlocking component 7 has not been fully inserted between the friction block 62 and the hole wall of the moving hole 12, which causes the unlocking component 7 to easily retreat and cause the stop component 6 to be re-locked, resulting in poor stability. The setting of multiple friction blocks 62 has a large friction force between the friction blocks 62 and the hole wall of the moving hole 12. When the unlocking component 7 is inserted between one friction block 62 and the hole wall of the moving hole 12, the other friction blocks 62 continue to remain locked until the unlocking component 7 is inserted between the last friction block 62 and the hole wall of the moving hole 12. The area of ​​a single friction block 62 is small. After the unlocking component 7 is inserted into the last friction block 62, the friction block 62 also has good stability and will not be against the hole wall of the moving hole 12 again.

[0053] Further, refer to Figures 1-10 The unlocking unit also includes a guide rod 78, a connecting block, a stop block and a return spring 79. The connecting block is fixedly mounted on the fixed plate 61, one end of the guide rod 78 is fixedly mounted on the connecting block, the other end of the guide rod 78 passes through the pushing base plate 74 and slides with the pushing base plate 74, the stop block is fixedly mounted on the end of the guide rod 78 away from the connecting block, one end of the return spring 79 is fixedly mounted on the pushing base plate 74, the other end of the return spring 79 is fixedly mounted on the connecting block, and the return spring 79 is sleeved on the guide rod 78.

[0054] When the bottom plate 74 is pushed to move toward the stop assembly 6, the guide rod 78 slides on the bottom plate 74, pushing the bottom plate 74 to compress the return spring 79. When the construction personnel stop moving, the protective slider 82 no longer drives the pushing block 72 to move. At this time, the return spring 79 pushes the pushing side plate 75 to reset in the direction away from the stop assembly 6, pushing the side plate 75 to drive the rotating roller 76 to move, and the rotating roller 76 disengages from between the friction block 62 and the wall of the moving hole 12. The friction block 62 contacts the wall of the moving hole 12 through the compression spring 65, causing the moving assembly 5 to stop moving.

[0055] The elastic force of the return spring 79 is not enough to overcome the rolling friction between the moving wheel 51 and the wall of the moving hole 12, so when the construction personnel drive the moving component 5 to move through the protective rope 81 and the protective slider 82, the protective slider 82 can compress the return spring 79 through the pushing block 72, the pushing rod 73 and the pushing side plate 75, so that the rotating roller 76 is inserted between the friction block 62 and the wall of the moving hole 12.

[0056] Further, refer to Figures 1-10The two end threads of the two-way threaded rod 42 rotate in opposite directions, and the two threaded sleeves 43 are fixedly mounted on the corresponding support plates 41 respectively. The two threaded sleeves 43 are respectively sleeved on the two ends of the two-way threaded rod 42 and threadedly connected to the two-way threaded rod 42. The two-way threaded rod 42 and the stabilizing plate 13 are jointly connected with a rotating assembly 9.

[0057] Fix the bracket 1 and the construction platform 10 on one side of the construction position; place the two moving components 5 in the mobile bearing module 2 in the moving hole 12 of the protective plate 11; drive the bidirectional threaded rod 42 to move through the driving component, and the two threaded sleeves 43 move away from the bidirectional threaded rod 42, and the threaded sleeves 43 drive the anti-slip plate 52 to move through the support plate 41, and the anti-slip plate 52 is located on both sides of the protective plate 11, and the anti-slip plate 52 drives the moving wheel 51 to move, and the moving wheel 51 is against the wall of the moving hole 12, and the mobile bearing module 2 is assembled on the protective plate 11, and the support plate 41 drives the limiting rod 45 to move in the limiting cylinder 44, and the limiting rod 45 makes the support plate 41 more stable and not easy to tilt and shake.

[0058] On the contrary, the threaded sleeve 43 drives the support plate 41 to move toward the direction of the two-way threaded rod 42 through the rotation of the two-way threaded rod 42, and then moves out of the moving hole 12 through the anti-slip plate 52.

[0059] The width of the anti-slip plate 52 is smaller than the width of the moving hole 12 , so that the anti-slip plate 52 can be moved in and out of the moving hole 12 .

[0060] Further, refer to Figures 1-10 The rotating assembly 9 includes a turbine 91, a worm 92 and a rotating disk 93. The turbine 91 is fixedly sleeved on the bidirectional threaded rod 42. The worm 92 is rotatably connected to the stable plate 13, and the worm 92 is engaged with the turbine 91. The rotating disk 93 is fixedly installed on one end of the worm 92.

[0061] The rotating disk 93 is operated to rotate, and the rotating disk 93 drives the worm 92 to rotate, the worm 92 drives the turbine 91 to rotate, and the turbine 91 drives the bidirectional threaded rod 42 to rotate, which saves more effort.

[0062] Further, refer to Figures 1-10 , the carrying frame 3 is fixedly mounted on the stabilizing plate 13, and a plurality of partitions 14 are fixedly mounted inside the carrying frame 3;

[0063] A partition 14 is provided in the carrying frame 3 to facilitate the placement of small tools and the classification of different types of materials in the carrying frame 3 .

[0064] Further, refer to Figures 1-10 The protective slide rail 83 is fixedly installed on the corresponding anti-slip plate 52. A rectangular slide is opened in the protective slide rail 83. A sliding bar hole is opened on the side of the rectangular slide away from the anti-slip plate 52. The protective slider 82 and the pushing block 72 are both rectangular in design. A stabilizing block is fixedly installed on the protective slider 82. The stabilizing block passes through the sliding bar hole and extends outward. The protective rope 81 is fixedly installed on the stabilizing block.

[0065] The protection sliding block 82 and the pushing block 72 will not fall out from the protection sliding rail 83 .

[0066] A method for assembling an adaptive prefabricated construction platform comprises the following steps:

[0067] Step 1: Fix the bracket 1 and the construction platform 10 on one side of the construction location;

[0068] Step 2: Place the two moving components 5 in the moving carrying module 2 into the moving holes 12 of the protective plate 11;

[0069] Step three: The bidirectional threaded rod 42 is driven to move by the driving assembly, and the two threaded sleeves 43 move away from the bidirectional threaded rod 42. The threaded sleeve 43 drives the anti-slip plate 52 to move through the support plate 41. The anti-slip plate 52 is located on both sides of the protective plate 11. The anti-slip plate 52 drives the moving wheel 51 to move. The moving wheel 51 is against the wall of the moving hole 12, and the mobile carrying module 2 is assembled on the protective plate 11.

[0070] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An adaptive assembled construction platform, comprising a bracket (1), a construction platform (10) fixedly mounted on the bracket (1), and protective plates (11) fixedly mounted on both sides of the construction platform (10), characterized in that: The protective plate (11) is provided with a movable bearing module (2), the movable bearing module (2) comprising a bearing frame (3), an assembly component (4), two groups of moving components (5), two groups of stopping components (6), two groups of unlocking components (7) and a protective component (8), the assembly component (4) being capable of mounting the moving component (5) on the protective plate (11), and the moving component (5) being capable of driving the bearing frame (3), the assembly component (4), the stopping component (6) and the unlocking component (7) to move on the protective plate (11); The protection assembly (8) comprises a protection rope (81), a protection slider (82) and a protection slide rail (83), wherein the protection slide rail (83) is arranged on the moving assembly (5), the protection rope (81) is mounted on the protection slider (82), and the protection slider (82) is slidably fitted in the protection slide rail (83); The stop assembly (6) can lock the moving assembly (5) on the protective plate (11); when the protective slider (82) moves to the end of the protective slide rail (83), the protective slider (82) can unlock the stop assembly (6) through the unlocking assembly (7), so that the movement of the protective slider (82) can drive the moving assembly (5) to move through the protective slide rail (83).

2. The adaptive prefabricated construction platform according to claim 1, characterized in that: Two moving holes (12) are provided on the protective plate (11), and two groups of moving components (5) are respectively located in the two moving holes (12). The two groups of moving components (5) each include two moving wheels (51) and two anti-slip plates (52). The moving wheels (51) are rotatably connected between the two anti-slip plates (52), and the moving wheels (51) abut against the corresponding hole walls of the moving holes (12).

3. The adaptive prefabricated construction platform according to claim 2, characterized in that: Two groups of stop components (6) are respectively arranged at both ends of the anti-slip plate (52), and the two groups of stop components (6) each include a fixed plate (61) and a plurality of stop units, and the plurality of stop units are arranged in a straight line along the protective plate (11). The fixed plate (61) is fixedly mounted on the anti-slip plate (52), and the stop unit includes a friction block (62), a fixed block, a fixed rod (63), a limit block (64) and a compression spring (65). The friction block (62) is fixedly mounted on the fixed block, and the friction block (62) abuts against the hole wall corresponding to the movable hole (12). The friction block (62) ) is provided with inclined surfaces on both sides of one end away from the fixed block, the fixed rod (63) is fixedly mounted on one end of the fixed block away from the friction block (62), the fixed rod (63) passes through the fixed plate (61) and slides with the fixed plate (61), the limit block (64) is fixedly mounted on one end of the fixed rod (63) away from the friction block (62), one end of the compression spring (65) is fixedly mounted on the fixed plate (61), the other end of the compression spring (65) is fixedly mounted on the fixed block, and the compression spring (65) is sleeved on the fixed rod (63).

4. The adaptive prefabricated construction platform according to claim 3, characterized in that: The two sets of unlocking components (7) each include two sets of unlocking units and a connecting rod (71). The two sets of unlocking units are respectively on the same side of the two stop components (6). The unlocking unit includes a push block (72), a push rod (73), a push bottom plate (74), two push side plates (75) and a plurality of rotating rollers (76). The push block (72) is slidably fitted in the protective slide rail (83). A push hole is provided on one side of the protective slide rail (83) and the anti-slip plate (52) close to the push rod (73). One end of the push rod (73) is fixedly mounted on the push bottom plate (74). ), the other end of the pushing rod (73) passes through the pushing hole and is fixedly mounted on the pushing block (72), the two pushing side plates (75) are fixedly mounted on the pushing bottom plate (74), a plurality of rotating rollers (76) are rotatably connected to the two pushing side plates (75), the two pushing blocks (72) in the two unlocking units are connected through the connecting rod (71), a connecting hole is provided on the side of the protective slide rail (83) close to the connecting rod (71), and the end of the connecting rod (71) passes through the connecting hole and is fixedly mounted on the corresponding pushing block (72).

5. The adaptive prefabricated construction platform according to claim 4, characterized in that: The unlocking unit further includes a guide rod (78), a connecting block, a stop block and a return spring (79), wherein the connecting block is fixedly mounted on the fixing plate (61), one end of the guide rod (78) is fixedly mounted on the connecting block, the other end of the guide rod (78) passes through the pushing base plate (74) and is slidably engaged with the pushing base plate (74), the stop block is fixedly mounted on an end of the guide rod (78) away from the connecting block, one end of the return spring (79) is fixedly mounted on the pushing base plate (74), the other end of the return spring (79) is fixedly mounted on the connecting block, and the return spring (79) is sleeved on the guide rod (78).

6. The adaptive prefabricated construction platform according to claim 2, characterized in that: The assembly component (4) includes two limiting units, two support plates (41), a bidirectional threaded rod (42) and two threaded sleeves (43), the two support plates (41) are respectively fixedly mounted on the corresponding anti-slip plates (52), the two support plates (41) are jointly fixedly mounted with a stabilizing plate (13), the two limiting units each include a limiting cylinder (44) and two limiting rods (45), a mounting block is fixedly mounted at the center of the limiting cylinder (44), the mounting block is fixedly mounted on the stabilizing plate (13), the two limiting rods (45) are respectively fixedly mounted on the corresponding support plates (41), the two limiting units each include a limiting cylinder (44) and two limiting rods (45), the center of the limiting cylinder (44) is fixedly mounted with a mounting block, ... two limiting units each include a limiting cylinder (44) and two limiting rods (45), the two limiting units each include a limiting cylinder (44) and two limiting rods (45), the two limiting units each include a limiting cylinder (44) and two limiting rods (45), the two limiting units each include a limiting cylinder The rods (45) are all inserted into the limiting cylinder (44) and slidably cooperate with the limiting cylinder (44); the two-way threaded rod (42) is rotatably connected to the limiting plate, and the limiting plate is fixedly installed on the stabilizing plate (13); the two ends of the two-way threaded rod (42) have opposite rotation directions of threads; the two threaded sleeves (43) are respectively fixedly installed on the corresponding supporting plates (41); the two threaded sleeves (43) are respectively sleeved on the two ends of the two-way threaded rod (42) and are threadedly connected to the two-way threaded rod (42); the two-way threaded rod (42) and the stabilizing plate (13) are commonly connected with a rotating component (9).

7. The adaptive prefabricated construction platform according to claim 6, characterized in that: The rotating assembly (9) includes a turbine (91), a worm (92) and a rotating disk (93), wherein the turbine (91) is fixedly sleeved on the bidirectional threaded rod (42), the worm (92) is rotatably connected to the stabilizing plate (13), and the worm (92) is meshed with the turbine (91), and the rotating disk (93) is fixedly mounted on one end of the worm (92).

8. The adaptive prefabricated construction platform according to claim 6, characterized in that: The supporting frame (3) is fixedly mounted on the stabilizing plate (13), and a plurality of partitions (14) are fixedly mounted inside the supporting frame (3).

9. The adaptive prefabricated construction platform according to claim 2, characterized in that: The protective slide rail (83) is fixedly mounted on the corresponding anti-slip plate (52), a rectangular slideway is provided in the protective slide rail (83), a sliding bar hole is provided on the side of the rectangular slideway away from the anti-slip plate (52), the protective slider (82) and the push block (72) are both rectangular, a stabilizing block is fixedly mounted on the protective slider (82), the stabilizing block passes through the sliding bar hole and extends outward, and the protective rope (81) is fixedly mounted on the stabilizing block.

10. An assembly method for an adaptive prefabricated construction platform, applied to the adaptive prefabricated construction platform according to any one of claims 6 to 8, characterized in that: The following steps are involved: Step 1: Fix the bracket (1) and the construction platform (10) on one side of the construction location; Step 2: placing the two moving components (5) in the moving bearing module (2) in the moving holes (12) of the protective plate (11); Step 3: The bidirectional threaded rod (42) is driven to move by the driving assembly, and the two threaded sleeves (43) are moved in a direction away from the bidirectional threaded rod (42). The threaded sleeves (43) drive the anti-slip plate (52) to move through the support plate (41). The anti-slip plate (52) is located on both sides of the protective plate (11). The anti-slip plate (52) drives the moving wheel (51) to move. The moving wheel (51) is against the hole wall of the moving hole (12), and the moving bearing module (2) is assembled on the protective plate (11).

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