Building climbing frame for building construction
By using sealing strips and stabilizing components at the joints of adjacent protective components in the climbing scaffold, the stability problem at the joints is solved, ensuring the stability and safety of the climbing scaffold.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG JIANAN IOT TECH CO LTD
- Filing Date
- 2025-06-27
- Publication Date
- 2026-07-21
AI Technical Summary
The existing building climbing formwork lacks protection at the connection points between adjacent protective frames, affecting the stability of the connection.
Sealing strips are used to seal the joints between adjacent protective components, and the stability of the components is ensured through the design of the stabilizing components, including a stabilizing outer plate, a stabilizing inner plate, a buffer rubber pad, and bolt connections.
This ensures the stability of the connection between adjacent protective components, improving the stability and safety of the building climbing formwork during use.
Smart Images

Figure CN224532198U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building construction technology, specifically a building climbing formwork for building construction. Background Technology
[0002] In the field of modern building construction, climbing formwork is an important piece of equipment for high-rise building construction. It is widely used because of its advantages, such as being able to rise and fall with the construction progress and reducing the workload of scaffolding erection and dismantling.
[0003] The existing patent document with authorization announcement number CN222435844U describes a building climbing scaffold for construction, comprising: a protective frame and a footplate rotatably connected to the bottom of the protective frame. A square groove is formed on one side of the protective frame, and a circular groove is formed at the bottom of the inner wall of the square groove. A spring is fixedly fitted to the bottom of the inner wall of the circular groove. This technical solution achieves fixation, and when disassembly is required, only the pull ring needs to be pulled to separate the locking block from the fixing pin, thus improving the installation efficiency of the device and ensuring the rapid progress of the project. However, the lack of protection at the connection points of adjacent protective frames affects the stability of the connected structure. Utility Model Content
[0004] To address the above problems, the purpose of this utility model is to provide a construction climbing scaffold for building construction, which solves the problem that the lack of protection at the connection points of adjacent protective scaffolds affects the stability of the scaffold after connection. It enables the assembly of one stabilizing component with two adjacent protective components at the same time, and uses sealing strips to seal the connection points of the two adjacent protective components, thereby ensuring stability during subsequent use.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a building climbing scaffold for construction, comprising a protective component, a stabilizing component, an assembly component, a positioning component, and a foot pedal component. The protective component includes a protective frame plate; the stabilizing component includes a stabilizing outer plate; the assembly component includes an assembly rubbing block, an assembly slot, and a positioning slot; the positioning component includes a positioning side plate, a compression spring, and a fixed inner box; the foot pedal component includes a foot pedal; the two ends of the protective frame plate are connected to a first protective plate and a second protective plate by welding; the end of the first protective plate away from the protective frame plate is connected to an assembly first plate; the end of the second protective plate away from the protective frame plate is connected to an assembly second plate; the inner side of the assembly rubbing block has a rubbing block hole slot; one end of the positioning side plate is connected to a positioning column by an integrated molding process; the inner wall of the fixed inner box is bonded with an anti-collision block by strong adhesive; and the outer ring of the positioning column is connected to a limit side plate by a hot-pressing embedding process.
[0006] The beneficial effects of this utility model are as follows: After the assembly of two adjacent protective components is completed, a buffer rubber pad is laid in the slot formed by the assembly plate and the assembly plate, and then the stabilizing inner plate is inserted into the slot. Double-headed bolts are passed through the countersunk hole and the slot in the plate in sequence, and the stabilizing inner plate is tightened and fixed by nuts on the other side, so that one stabilizing component can be assembled with two adjacent protective components at the same time. At the same time, sealing strips are used to seal the connection between the two adjacent protective components, thereby ensuring the stability during subsequent use.
[0007] To ensure a tight fit between the sturdy outer panel and the first and second protective panels, and to make the surfaces of the protective frame panels flush with those of the sturdy outer panel: As a further improvement to the above technical solution: the first protective plate and the second protective plate are the same size, and the same number of inner holes are opened on the inner side of both. The thickness of the protective frame plate is equal to the thickness of the first protective plate plus the thickness of the stabilizing outer plate.
[0008] The beneficial effects of this improvement are as follows: When assembling two protective frame plates, first apply waterproof sealant to the contact surfaces of the slots of the first and second protective plates, then insert the stabilizing outer plate into the slot, aligning the countersunk hole with the inner groove of the plate. Use hexagonal bolts to pass through the countersunk hole and the inner groove of the plate in sequence, and add a spring washer on one side of the nut. Tighten diagonally to ensure that the stabilizing outer plate is tightly fitted with the first and second protective plates, making the surfaces of the protective frame plate and the stabilizing outer plate flush.
[0009] To assemble the protective components, the assembly block of the second protective component is inserted into the assembly slot of the first protective component: As a further improvement to the above technical solution: the size of the first assembly plate is the same as that of the second assembly plate, and four identical assembly rubbing blocks are fixed to the end of the first assembly plate away from the first protective plate by welding. The inner side of the assembly slot has two assembly slots and two positioning slots.
[0010] The beneficial effects of this improvement are as follows: When assembling the protective components, lubricant is applied to the surface of the assembly rubbing block, and the assembly rubbing block of the second protective component is inserted into the assembly slot of the first protective component. During the insertion process, the assembly rubbing block squeezes the positioning column of the positioning component to retract it until the first assembly plate of the second protective frame plate and the second assembly plate of the first protective frame plate are tightly fitted together. At this time, the positioning column is inserted into the inner hole slot of the plate under the action of the compression spring, realizing the combination and splicing of the two adjacent protective components.
[0011] To achieve a seal at the connection between two adjacent protective components, thereby ensuring stability during subsequent use: As a further improvement to the above technical solution: the rear end of the stabilizing outer plate is connected to a stabilizing inner plate by a detachable bolt and nut assembly. The length of the stabilizing inner plate is twice the length of the assembled two plates. The inner side of the stabilizing outer plate is provided with countersunk holes, and the number of countersunk holes is twice the number of plate inner hole grooves opened on the inner side of the protective two plates.
[0012] The beneficial effects of this improvement are as follows: After the assembly of two adjacent protective components is completed, a buffer rubber pad is laid in the slot formed by the assembly plate and the assembly plate. Then, the stabilizing inner plate is inserted into the slot, and double-ended bolts are passed through the countersunk hole and the slot in the plate in sequence. Finally, the stabilizing inner plate is tightened with nuts on the other side, so that one stabilizing component can be assembled with two adjacent protective components at the same time. At the same time, sealing strips are used to seal the connection between the two adjacent protective components, thereby ensuring the stability during subsequent use.
[0013] The positioning slots are designed to provide space for securing the inner casing during installation. As a further improvement to the above technical solution: the assembly slot is connected to the corresponding positioning slot, and the positioning slot is set close to the bottom of the assembly slot. The number of assembly slots is half the number of assembly wiping blocks. The size of the assembly wiping block and the assembly slot adopt an interference fit.
[0014] The beneficial effects of this improvement are: the assembly slot is used for inserting the assembly blocks that are assembled with it, and the positioning slot is used to fix the space for installation of the inner box.
[0015] To compress the spring and reset it, the limiting side plate is pushed to drive the positioning column into the corresponding slot in the plate, completing the assembly of two adjacent protective components: As a further improvement to the above technical solution: the outer wall of the fixed inner box is provided with external threads, which are screwed into the inner wall of the positioning groove. The inner side of the fixed inner box is fixed with anti-slip washers by bolts. The anti-collision blocks are rectangular rubber blocks, arranged in pairs and symmetrically, and are snapped into the inner wall of the fixed inner box by slots. The size of the positioning column matches the size of the inner hole groove of the plate. The front end of the compression spring is welded to the inner wall of the fixed inner box, and the end is connected to the limiting side plate by a hook structure.
[0016] The beneficial effects of this improvement are as follows: When assembling two protective components, pulling the positioning side plate causes the positioning column to move, while the limiting side plate squeezes the compression spring. After the assembly rubbing block is inserted into place, the positioning side plate is released, the compression spring returns to its original position, and the limiting side plate is pushed to drive the positioning column to insert into the corresponding plate slot, thus completing the combination and splicing of the two adjacent protective components.
[0017] To assemble two adjacent foot pedals by using countersunk screws to fasten them through the pedal hole slots: As a further improvement to the above technical solution: one end of the foot pedal is connected to a limiting block by welding, a pedal groove is provided on the inner side of the end of the foot pedal away from the limiting block, a pedal hole groove is provided on the inner side of the foot pedal, barbed anti-slip protrusions are provided on the inner wall of the pedal groove, and anti-slip grooves are correspondingly provided on the surface of the limiting block.
[0018] The beneficial effect of this improvement is that after inserting the adjacent limiting blocks into the pedal slots, they are fastened with countersunk screws through the pedal holes, thus realizing the assembly of two adjacent pedals.
[0019] To insert the limiting block on one side of the foot pedal into the pedal groove of the adjacent foot pedal, and to tighten the limiting block by passing a bolt through the foot pedal: As a further improvement to the above technical solution: a connecting plate is welded to one end of the foot pedal, and the connecting plate is rotatably connected to the protective frame plate through a hinge shaft.
[0020] The beneficial effects of this improvement are as follows: by rotating the foot pedal 90° through the connecting plate, the limiting block on one side of the foot pedal is inserted into the pedal groove of the adjacent foot pedal, and the limiting block is tightened by passing the bolt through the foot pedal, thus completing the fixation of the foot pedal assembly. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0022] Figure 2 This is a three-dimensional structural diagram of the protective frame plate of this utility model.
[0023] Figure 3 for Figure 2 A magnified structural diagram of point A in the middle.
[0024] Figure 4 This is a schematic diagram of the structure of the stabilizing outer panel of this utility model.
[0025] Figure 5 This is a side view sectional structural diagram of the fixed inner box of this utility model.
[0026] In the diagram: 1. Protective component; 11. Protective frame plate; 12. Protective first plate; 13. Assembly first plate; 14. Protective second plate; 15. Assembly second plate; 16. Inner hole groove of the plate; 2. Stabilizing component; 21. Stabilizing outer plate; 22. Stabilizing inner plate; 23. Countersunk hole; 3. Assembly component; 31. Assembly rubbing block; 32. Rubbing block hole groove; 33. Assembly slot; 34. Positioning groove; 4. Positioning component; 41. Positioning side plate; 42. Compression spring; 43. Fixed inner box; 44. Positioning column; 45. Anti-collision block; 46. Anti-slip washer; 47. Limiting side plate; 5. Pedal assembly; 51. Foot pedal; 52. Pedal groove; 53. Limiting block; 54. Pedal hole groove; 55. Connecting plate. Detailed Implementation
[0027] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be described in detail below with reference to the accompanying drawings. The description in this part is only exemplary and explanatory, and should not be used to limit the scope of protection of this utility model in any way.
[0028] like Figure 1-5As shown, a building climbing scaffold for construction includes a protective component 1, a stabilizing component 2, an assembly component 3, a positioning component 4, and a footboard assembly 5. The protective component 1 includes a protective frame plate 11; the stabilizing component 2 includes a stabilizing outer plate 21; the assembly component 3 includes an assembly block 31, an assembly slot 33, and a positioning slot 34; the positioning component 4 includes a positioning side plate 41, a compression spring 42, and a fixed inner box 43; and the footboard assembly 5 includes a footboard 51. The two ends of the protective frame plate 11 are connected by a first protective plate 12 and a second protective plate 14 via welding. The end of the first protective plate 12 away from the protective frame plate 11 is connected to an assembly plate 13; and the end of the second protective plate 14 away from the protective frame plate 11 is connected to an assembly plate 14. 5. The inner side of the assembled wiping block 31 is provided with a wiping block slot 32. One end of the positioning side plate 41 is connected to a positioning column 44 through an integrated molding process. The inner wall of the fixed inner box 43 is bonded with a collision-resistant block 45 by strong adhesive. The outer ring of the positioning column 44 is connected to a limiting side plate 47 through a hot-pressing fitting process. The first protective plate 12 and the second protective plate 14 are the same size, and both have the same number of plate inner slots 16 on their inner sides. The thickness of the protective frame plate 11 is equal to the thickness of the first protective plate 12 plus the thickness of the stabilizing outer plate 21. When assembling the two protective frame plates 11, first apply waterproof sealant to the contact surface of the slots between the first protective plate 12 and the second protective plate 14, and then insert the stabilizing outer plate 21 into the slots, so that the countersunk holes Align 23 with the inner slot 16 of the plate, and use hexagonal socket head cap screws to pass through the countersunk hole 23 and the inner slot 16 of the plate in sequence. Add a spring washer on one side of the nut, and tighten diagonally to ensure that the outer plate 21 is tightly fitted with the first protective plate 12 and the second protective plate 14, so that the surface of the protective frame plate 11 is flush with the surface of the outer plate 21. The dimensions of the first assembly plate 13 are the same as those of the second assembly plate 15. Four identical assembly rubbing blocks 31 are fixed to the end of the first assembly plate 13 away from the first protective plate 12 by welding. The inner side of the assembly slot 33 has two assembly slots 33 and two positioning slots 34. When assembling the protective component 1, apply lubricant to the surface of the assembly rubbing blocks 31, and then assemble the second protective component 1. Block 31 is inserted into the assembly slot 33 of the first protective component 1. During the insertion process, the assembly block 31 presses the positioning column 44 of the positioning component 4 to retract it until the assembly plate 13 of the second protective frame plate 11 and the assembly plate 15 of the first protective frame plate 11 are tightly fitted together. At this time, the positioning column 44 is inserted into the inner hole slot 16 of the plate under the action of the compression spring 42, realizing the combination splicing of the two adjacent protective components 1. The rear end of the stable outer plate 21 is connected to the stable inner plate 22 by a detachable bolt and nut assembly. The length of the stable inner plate 22 is twice the length of the assembly plate 15. The inner side of the stable outer plate 21 is provided with countersunk holes 23. The number of countersunk holes 23 is twice the number of inner hole slots 16 opened on the inner side of the second protective plate 14.After the assembly of two adjacent protective components 1 is completed, a buffer rubber pad is laid in the slot formed by the assembly plate 15 and the assembly plate 13. Then, the stabilizing inner plate 22 is inserted into the slot, and double-ended bolts are passed through the countersunk hole 23 and the inner slot 16 in sequence. Finally, a nut is tightened on the other side of the stabilizing inner plate 22 to fix it, so that one stabilizing component 2 can be assembled with two adjacent protective components 1 at the same time. At the same time, a sealing strip is used to seal the connection between the two adjacent protective components 1, thereby ensuring the stability during subsequent use. The assembly slot 33 is interconnected with the corresponding positioning slot 34, and the positioning slot 34 is set close to the bottom of the assembly slot 33. The quantity is half the number of the assembled wiping blocks 31. The size of the assembled wiping blocks 31 is interference-fitted with the assembly slots 33. The assembly slots 33 are used for the insertion of the assembled wiping blocks 31, and the positioning slots 34 are used to fix the space for the inner box 43. The outer wall of the inner box 43 is provided with external threads, which are screwed into the inner wall of the positioning slots 34. The inner side of the inner box 43 is fixed with anti-slip washers 46 by bolts. The anti-collision blocks 45 are rectangular rubber blocks, arranged in pairs and symmetrically, and are engaged with the inner wall of the inner box 43 by slots. The size of the positioning column 44 matches the size of the inner hole slot 16 of the plate. The compression spring... The front end of 42 is welded to the inner wall of the fixed inner box 43, and the end is connected to the limiting side plate 47 through a hook structure. When assembling the two protective components 1, the positioning side plate 41 is pulled, and the positioning side plate 41 drives the positioning column 44 to move. At the same time, the limiting side plate 47 squeezes the compression spring 42. When the assembly rubbing block 31 is inserted into place, the positioning side plate 41 is released, the compression spring 42 returns to its original position, and the limiting side plate 47 is pushed to drive the positioning column 44 to insert into the corresponding plate inner hole slot 16, completing the combination and splicing of the two adjacent protective components 1. One end of the foot pedal 51 is connected to the limiting block 53 by welding. The inner side of the foot pedal 51 away from the limiting block 53 is provided with a pedal groove 52. A foot pedal slot 54 is provided on the side, and the inner wall of the foot pedal slot 52 is provided with barbed anti-slip protrusions. The surface of the limiting block 53 is provided with corresponding anti-slip grooves. After inserting the adjacent limiting blocks 53 into the foot pedal slot 52, they are fastened with countersunk screws through the foot pedal slot 54 to assemble two adjacent foot pedals 51. A connecting plate 55 is welded to one end of the foot pedal 51. The connecting plate 55 is rotatably connected to the protective frame plate 11 through a hinge shaft. The foot pedal 51 is rotated 90° through the connecting plate 55, and the limiting block 53 on one side of the foot pedal 51 is inserted into the foot pedal slot 52 of the adjacent foot pedal 51. With the help of bolts passing through the foot pedal 51, the limiting block 53 is fastened to complete the fixation of the foot pedal assembly 5.
[0029] The working principle of this utility model is as follows: When assembling the protective component 1, lubricant is applied to the surface of the assembly rubbing block 31. The assembly rubbing block 31 of the second protective component 1 is inserted into the assembly slot 33 of the first protective component 1. During the insertion process, the assembly rubbing block 31 presses the positioning column 44 of the positioning component 4 to retract it until the assembly plate 13 of the second protective frame plate 11 and the assembly plate 15 of the first protective frame plate 11 are tightly fitted together. At this time, the positioning column 44 is inserted into the inner hole slot 16 of the plate under the action of the compression spring 42, realizing the combination and splicing of the two adjacent protective components 1. When the two adjacent protective components are completed, After assembly of component 1, a buffer rubber pad is placed in the slot formed by assembly plate 15 and assembly plate 13. Then, the inner stabilizing plate 22 and the outer stabilizing plate 21 are inserted into the slot, aligning the countersunk hole 23 with the inner slot 16. Hex socket head cap screws are then passed through the countersunk hole 23 and the inner slot 16, with a spring washer added to one side of the nut. By tightening diagonally, the outer stabilizing plate 21 is ensured to fit tightly against the first protective plate 12 and the second protective plate 14, making the surface of the protective frame plate 11 flush with the surface of the outer stabilizing plate 21. This allows one stabilizing component 2 to simultaneously connect with two adjacent protective components 1. The assembly process involves sealing the joints with sealing strips to ensure stability during subsequent use. The assembly slot 33 allows for the insertion of the assembly rubbing block 31, which is then assembled with the component. The positioning slot 34 provides space for the inner casing 43. When assembling the two protective components 1, pulling the positioning side plate 41 moves the positioning column 44, while the limiting side plate 47 compresses the compression spring 42. Once the assembly rubbing block 31 is inserted, the positioning side plate 47 is released. 1. The compression spring 42 returns to its original position, pushing the limiting side plate 47 to drive the positioning column 44 to insert into the corresponding plate inner hole groove 16, completing the combination and splicing of two adjacent protective components 1. After inserting the adjacent limiting block 53 into the pedal groove 52, it is fastened with countersunk screws through the pedal hole groove 54 to realize the assembly of two adjacent foot pedals 51. The foot pedal 51 is rotated 90° through the connecting plate 55, and the limiting block 53 on one side of the foot pedal 51 is inserted into the pedal groove 52 of the adjacent foot pedal 51. The bolt passes through the foot pedal 51 to fasten the limiting block 53, thus completing the fixation of the pedal assembly 5.
[0030] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Specific examples have been used in this document to illustrate the principles and implementation methods of this utility model. These examples are merely for the purpose of helping to understand the method and core ideas of this utility model. The above descriptions are only preferred embodiments of this utility model. It should be pointed out that, due to the limitations of written expression, there are objectively infinite specific structures. For those skilled in the art, several improvements, modifications, or variations can be made without departing from the principles of this utility model, and the above technical features can be combined in an appropriate manner. These improvements, modifications, variations, or combinations, or the direct application of the concept and technical solution of this utility model to other situations without modification, should all be considered within the scope of protection of this utility model.
Claims
1. A building climbing scaffold for construction, comprising a protective component (1), a stabilizing component (2), an assembly component (3), a positioning component (4), and a footboard assembly (5), wherein the protective component (1) comprises a protective frame plate (11), the stabilizing component (2) comprises a stabilizing outer plate (21), the assembly component (3) comprises an assembly rubbing block (31), an assembly slot (33), and a positioning slot (34), the positioning component (4) comprises a positioning side plate (41), a compression spring (42), and a fixed inner box (43), and the footboard assembly (5) comprises a footboard (51), characterized in that: The protective frame plate (11) is connected to the two ends of the protective first plate (12) and the protective second plate (14) by welding process. The protective first plate (12) is connected to the assembly first plate (13) at the end away from the protective frame plate (11). The protective second plate (14) is connected to the assembly second plate (15) at the end away from the protective frame plate (11). The inner side of the assembled wiping block (31) is provided with a wiping block hole groove (32). The positioning side plate (41) is connected to the positioning column (44) at one end by an integrated molding process. The inner wall of the fixed inner box (43) is bonded with a collision-resistant card block (45) by strong adhesive. The outer ring of the positioning column (44) is connected to the limiting side plate (47) by a hot pressing embedding process.
2. The building climbing formwork for construction according to claim 1, characterized in that: The protective plate (12) and the protective plate (14) are the same size, and the same number of plate slots (16) are opened on the inner side of both. The thickness of the protective frame plate (11) is equal to the thickness of the protective plate (12) plus the thickness of the stabilizing outer plate (21).
3. The building climbing formwork for construction according to claim 1, characterized in that: The size of the first assembly plate (13) is the same as that of the second assembly plate (15). The end of the first assembly plate (13) away from the first protective plate (12) is fixed with four identical assembly rubbing blocks (31). The inner side of the assembly slot (33) has two assembly slots (33) and two positioning slots (34).
4. A building climbing formwork for construction according to claim 1, characterized in that: The rear end of the stabilizing outer plate (21) is connected to the stabilizing inner plate (22) by a detachable bolt and nut assembly. The length of the stabilizing inner plate (22) is twice the length of the assembled second plate (15). The inner side of the stabilizing outer plate (21) is provided with countersunk holes (23). The number of countersunk holes (23) is twice the number of plate inner hole grooves (16) provided on the inner side of the protective second plate (14).
5. A building climbing formwork for construction according to claim 1, characterized in that: The assembly slot (33) is connected to the corresponding positioning slot (34), and the positioning slot (34) is set close to the bottom of the assembly slot (33). The number of assembly slots (33) is half the number of assembly rubbing blocks (31). The size of the assembly rubbing blocks (31) and the assembly slots (33) are interference fit.
6. A building climbing formwork for construction according to claim 1, characterized in that: The outer wall of the fixed inner box (43) is provided with external threads, which are screwed into the inner wall of the positioning groove (34). The inner side of the fixed inner box (43) is fixed with anti-slip washers (46) by bolts. The anti-collision block (45) is a rectangular rubber block, with two blocks arranged symmetrically. It is snapped into the inner wall of the fixed inner box (43) through the slot. The size of the positioning column (44) matches the size of the inner hole groove (16) of the plate. The front end of the compression spring (42) is welded to the inner wall of the fixed inner box (43), and the end is connected to the limiting side plate (47) through a hook structure.
7. A building climbing formwork for construction according to claim 1, characterized in that: One end of the foot pedal (51) is connected to a limiting block (53) by welding. The foot pedal (51) has a pedal groove (52) on the inner side of the end away from the limiting block (53). The foot pedal (51) has a pedal hole groove (54) on the inner side. The inner wall of the pedal groove (52) is provided with barbed anti-slip protrusions. The surface of the limiting block (53) is provided with corresponding anti-slip grooves.
8. A building climbing formwork for construction according to claim 1, characterized in that: A connecting plate (55) is welded to one end of the foot pedal (51), and the connecting plate (55) is rotatably connected to the protective frame plate (11) through a hinge shaft.