Creeping formwork top layer assembly type operation platform
Through the design of the top-level prefabricated working platform of the climbing mold, the combination of frame body, bearing components and connecting components is used to solve the problem of cumbersome support platforms in the climbing mold construction, and rapid installation and dismantling are achieved, and construction efficiency and safety are improved.
Patent Information
- Application Number
- CN202422581804.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-24
AI Technical Summary
During the existing climbing mold construction, there are many rods on the top bracket platform of the climbing mold frame, and the installation and disassembly are complicated, which affects work efficiency.
A top-level prefabricated working platform for climbing molds is designed, including multiple rectangular frames, load-bearing parts, protective parts and connecting parts. The platform is quickly erected and removed through a simple combination, and stable connection and protection is achieved using connecting snaps and restraint components.
The rapid installation and removal of the platform on the mold climbing bracket is realized, the work efficiency is improved, and construction safety is ensured.
Smart Images

Figure CN223281677U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building construction, in particular to a climbing formwork top-floor assembled working platform. Background Art
[0002] Bridge tower climbing formwork construction is a construction method that uses climbing formwork, climbing frames, jacks and other equipment to achieve self-climbing of formwork in tall structures such as bridge towers. It is widely used in bridge construction and high-rise building construction.
[0003] During the climbing formwork construction process, a support platform is usually set up on the top of the climbing formwork frame for workers to work on. However, the support platform has many rods and is cumbersome to install and dismantle, which affects work efficiency. Therefore, this application specifically proposes a climbing formwork top-level assembled work platform that is easy to install and dismantle. Utility Model Content
[0004] The main purpose of the utility model is to provide a climbing formwork top-level assembled working platform which is convenient for assembly and disassembly.
[0005] To achieve the above-mentioned purpose, the utility model provides a climbing formwork top-level assembled working platform, comprising:
[0006] A plurality of frames, each of which is rectangular and is sequentially connected head to tail and arranged around the construction facility, and each of which is arranged on top of a climbing formwork support;
[0007] A carrying component, provided on the frame, for carrying staff;
[0008] A protective component is provided on a side of the frame away from the construction facility to protect the construction safety of workers;
[0009] The connecting component is arranged between two adjacent frames, and is used to connect the two adjacent frames.
[0010] Furthermore, the cross beam at the top of the frame along its length direction is a first load-bearing beam, the cross beam at the top of the frame along its width direction is a second load-bearing beam, and the height of the top surface of the first load-bearing beam is lower than the height of the top surface of the second load-bearing beam;
[0011] The bearing component includes a plurality of bearing plates arranged above the first bearing beam, and the head and tail of each bearing plate are in contact in sequence until the top surface of the first bearing beam is covered. When the bearing plate is arranged on the first bearing beam, the height of the top surface of the bearing plate is flush with the height of the top surface of the second bearing beam. The bearing plate is used to carry staff, and a constraint component is further provided between each bearing plate and the frame. When the bearing plate is arranged above the first bearing beam, the constraint component is used to limit the movement of the bearing plate on the first bearing beam.
[0012] Furthermore, the constraint assembly includes a plurality of limit blocks distributed on both sides of the bottom end of the bearing plate, and the bottom end of each limit block is provided with a limit groove arranged along the length direction of the first bearing beam, and the groove width of the limit groove corresponds to the width of the first bearing beam. When the bearing plate is set above the first bearing beam, each first bearing beam is inserted into the corresponding limit groove. At this time, the limit block is used to prevent the bearing plate from moving along the length direction of the second bearing beam.
[0013] Furthermore, a plurality of reserved holes are vertically opened on a side of the top of the frame away from the construction facility;
[0014] The protective component includes a first rod body vertically inserted into each of the reserved holes, and a locking sleeve is provided on the first rod body. When each of the first rod bodies is inserted into the corresponding reserved hole, the heights of the locking sleeves on each of the first rod bodies correspond one to one and are concentrically arranged. The first rod body is also distributed with a second rod body arranged along the length direction of the first load-bearing beam, and each of the second rod bodies is inserted into each of the locking sleeves. The second rod body is used to prevent the staff from accidentally detaching from the frame.
[0015] Furthermore, the connecting component includes a connecting buckle arranged between two adjacent frames, the connecting buckle includes a positioning block arranged between the two frames, and two clamping assemblies relatively arranged on both sides of the positioning block, the clamping assembly includes two arc-shaped clamps arranged on the positioning block for relative rotation, the arc-shaped clamps are used to clamp the corresponding frames, and each arc-shaped clamp is provided with a screw hole at one end away from the positioning block, and a bolt is also provided on the screw hole on one of the arc-shaped clamps. When the two arc-shaped clamps are in contact with the frames, the bolt is passed through the two corresponding screw holes and screwed together, and the bolt provides pressure toward the center of the arc-shaped clamps for the corresponding two arc-shaped clamps.
[0016] The beneficial effects of the present invention are as follows:
[0017] The utility model can quickly set up a platform for workers to carry out construction on the climbing formwork bracket through the cooperation between the frame, the bearing parts, the protective parts and the connecting parts. The steps for disassembling and assembling the bearing parts and the protective parts on the frame are clear and simple, thereby improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a three-dimensional view of the front of the climbing formwork top-level assembled work platform of the utility model;
[0019] Figure 2 This is an exploded view of the front of the climbing formwork top-level assembled work platform of the utility model;
[0020] Figure 3 This is a construction diagram of the front side of the climbing formwork top-level assembled working platform of the utility model;
[0021] Figure 4 yes Figure 3 Magnified view at point A in the middle;
[0022] Figure 5 It is a structural view of the load-bearing component;
[0023] Figure 6 It is a structural view of the connected components.
[0024] Description of reference numerals:
[0025] 1. Frame; 11. First load-bearing beam; 12. Second load-bearing beam; 13. Reserved hole; 2. Load-bearing component; 21. Load-bearing plate; 22. Constraint assembly; 221. Limit block; 222. Limit groove; 3. Protective component; 31. First rod; 32. Locking sleeve; 33. Second rod; 4. Connecting component; 41. Connecting buckle; 42. Positioning block; 43. Clamping assembly; 431. Arc clamp; 4311. Screw hole; 44. Bolt; 45. Spacer; 5. Climbing formwork bracket; 6. Construction facilities. Specific implementation plan
[0026] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. In the absence of conflict, the embodiments and features in the embodiments of the present application can be combined with each other.
[0027] See also Figures 1-6 .
[0028] The utility model discloses a climbing formwork top-level assembled working platform, comprising:
[0029] A plurality of frames 1, each frame 1 being rectangular and contacting each other end to end and arranged around the construction facility 6, and each frame 1 being arranged on top of a climbing formwork support 5;
[0030] The carrying component 2 is provided on the frame 1 and is used to carry the staff;
[0031] The protective component 3 is provided on the side of the frame 1 away from the construction facilities 6 and is used to protect the construction safety of the workers;
[0032] The connecting component 4 is provided between two adjacent frames 1 and is used to connect the two adjacent frames 1 .
[0033] In specific implementation, when it is necessary to set up a platform, each frame 1 is first set on the top of the climbing formwork bracket 5, and the heads and tails of each frame 1 are contacted in turn and arranged around the construction facility 6. At this time, the two adjacent frames 1 are connected in turn through the connecting component 4, and then the bearing component 2 is set on each frame 1, so as to provide the staff with the activity space required for work, and then the protective component 3 is connected to the frame 1 to avoid accidental falls of the staff and protect the construction safety of the staff. When the staff completes the construction of the current work area, the climbing formwork bracket 5 moves upward, and the climbing formwork bracket 5 drives each frame 1 to move together, thereby making the staff's working area move upward until it moves synchronously with the waiting work area on the construction facility 6.
[0034] According to the utility model, a platform for workers to carry out construction can be quickly set up on the climbing formwork bracket 5 through the cooperation between the frame 1, the bearing component 2, the protective component 3 and the connecting component 4. The steps for disassembling and assembling the bearing component 2 and the protective component 3 on the frame 1 are clear and simple, thereby improving work efficiency.
[0035] It should be noted that the climbing formwork support 5 is common knowledge to those skilled in the art, so its structure and function will not be described in detail here.
[0036] In one embodiment, the cross beam at the top of the frame 1 along its length is a first load-bearing beam 11, and the cross beam at the top of the frame 1 along its width is a second load-bearing beam 12, and the height of the top surface of the first load-bearing beam 11 is lower than the height of the top surface of the second load-bearing beam 12;
[0037] The bearing component 2 includes a plurality of bearing plates 21 arranged above the first bearing beam 11, and each bearing plate 21 contacts in turn from head to tail until the top surface of the first bearing beam 11 is covered. When the bearing plate 21 is arranged on the first bearing beam 11, the height of the top surface of the bearing plate 21 is flush with the height of the top surface of the second bearing beam 12. The bearing plate 21 is used to carry staff, and a constraint component 22 is also provided between each bearing plate 21 and the frame 1. When the bearing plate 21 is arranged above the first bearing beam 11, the constraint component 22 is used to limit the movement of the bearing plate 21 on the first bearing beam 11.
[0038] With this design, after each frame 1 is set up, each load-bearing plate 21 is placed on top of the first load-bearing beam 11 in turn until the top surface of the first load-bearing beam 11 is fully paved. At this time, one side of the load-bearing plates 21 arranged at both ends of the first load-bearing beam 11 abuts against one side of the corresponding second load-bearing beam 12, so that each load-bearing plate 21 cannot move along the length direction of the first load-bearing beam 11, and each constraint component 22 prevents the corresponding load-bearing plate 21 from moving along the length direction of the second load-bearing beam 12, thereby constraining the load-bearing plate 21 on the frame 1.
[0039] In one embodiment, the constraint assembly 22 includes a plurality of limit blocks 221 distributed on both sides of the bottom end of the load-bearing plate 21, and the bottom end of each limit block 221 is provided with a limit groove 222 arranged along the length direction of the first load-bearing beam 11. The groove width of the limit groove 222 corresponds to the width of the first load-bearing beam 11. When the load-bearing plate 21 is arranged above the first load-bearing beam 11, each first load-bearing beam 11 is inserted into the corresponding limit groove 222. At this time, the limit block 221 is used to prevent the load-bearing plate 21 from moving along the length direction of the second load-bearing beam 12.
[0040] With this design, when the load-bearing plate 21 is arranged above the first load-bearing beam 11, each first load-bearing beam 11 is inserted into the corresponding limit groove 222. At this time, each limit block 221 is erected above the corresponding first load-bearing beam 11, and the side wall of each limit groove 222 is in contact with the side wall of the corresponding first load-bearing beam 11, thereby constraining the load-bearing plate 21 to move along the length direction of the second load-bearing beam 12. When the load-bearing plate 21 needs to be removed, just move the load-bearing plate 21 upward until the load-bearing plate 21 is separated from the frame 1. The operation is simple.
[0041] In one embodiment, a plurality of reserved holes 13 are vertically opened on the top of the frame 1 away from the construction facility 6;
[0042] The protective component 3 includes a first rod body 31 vertically inserted into each reserved hole 13, and a locking sleeve 32 is provided on the first rod body 31. When each first rod body 31 is inserted into the corresponding reserved hole 13, the height of the locking sleeve 32 on each first rod body 31 corresponds to each other and is concentrically arranged. The first rod body 31 is also distributed with a second rod body 33 arranged along the length direction of the first load-bearing beam 11, and each second rod body 33 is inserted into each locking sleeve 32. The second rod body 33 is used to prevent the staff from accidentally escaping from the frame 1.
[0043] With this design, after the frame 1 is set up, each first rod 31 is vertically inserted into the reserved hole 13. At this time, each reserved hole 13 prevents the corresponding first rod 31 from separating from the frame 1. After each first rod 31 is inserted, the corresponding locking sleeve 32 on each first rod 31 is concentrically set, and then the second rod 33 is passed through the locking sleeve 32. At this time, each first rod 31, each locking sleeve 32 and the second rod 33 form a guardrail-shaped protective frame at the end of the frame 1 away from the construction facility 6, thereby preventing workers from accidentally separating from the frame 1 during work and ensuring construction safety.
[0044] It should be noted that a plurality of locking sleeves 32 may be vertically distributed on the first rod 31 , so that each group of concentrically arranged locking sleeves 32 can be penetrated by a second rod 33 , thereby further protecting the construction safety of workers.
[0045] It should be noted that a plurality of reserved holes 13 may also be vertically opened on one side of the top of the frame 1 close to the construction facility 6, so that when installing the frame 1, there is no need to adjust the installation direction of the frame 1 due to the subsequent installation of the first rod 31.
[0046] It should be noted that a plurality of first through holes (not shown in the figure) may be provided on the frame body 1, and each first through hole is connected to the corresponding reserved hole 13, and each first rod body 31 is also provided with a second through hole (not shown in the figure). When the first rod body 31 is inserted into the reserved hole 13, the second through hole on the first rod body 31 is concentrically arranged with the corresponding first through hole. At this time, the pin (not shown in the figure) is passed through the corresponding first through hole and inserted into the corresponding second through hole, thereby preventing the first rod body 31 from moving vertically, further increasing the stability of the first rod body 31 in the reserved hole 13, and preventing the first rod body 31 from accidentally detaching from the reserved hole 13.
[0047] In one embodiment, the connecting component 4 includes a connecting buckle 41 arranged between two adjacent frames 1, the connecting buckle 41 includes a positioning block 42 arranged between the two frames 1, and two clamping components 43 relatively arranged on both sides of the positioning block 42, the clamping component 43 includes two arc clamps 431 relatively rotated on the positioning block 42, the arc clamps 431 are used to clamp the corresponding frame 1, and each arc clamp 431 is provided with a screw hole 4311 at one end away from the positioning block 42, and a bolt 44 is also provided on the screw hole 4311 on one of the arc clamps 431. When the two arc clamps 431 are in contact with the frame 1, the bolt 44 is passed through the two corresponding screw holes 4311 and screwed together, and the bolt 44 provides pressure toward the center of the arc clamp 431 for the corresponding two arc clamps 431.
[0048] With this design, after each frame 1 is set on the climbing formwork bracket 5, each connecting clip 41 is respectively set between two adjacent frames 1. When installing the connecting clip 41, the positioning block 42 is set between the two adjacent frames 1 and each clamping assembly 43 is framed at one end of the corresponding frame 1. Then, each arc clamp 431 is rotated to make the two arc clamps 431 in the same clamping assembly 43 approach each other until each arc clamp 431 contacts the frame 1. At this time, the bolt 44 is passed through the screw hole 4311 on the two corresponding arc clamps 431, and the bolt 44 is tightened. At this time, the bolt 44 provides pressure to the corresponding two arc clamps 431 toward the center of the arc clamp 431, thereby making the connection between the two adjacent frames 1 more stable.
[0049] Preferably, each arc-shaped clamp 431 is detachably provided with a pad 45 capable of increasing the friction coefficient, and the clamping surface of the pad 45 corresponds to the contact surface of the frame 1 , so that each clamping assembly 43 can better clamp the frame 1 .
[0050] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention. In addition, "multiple", "multiple groups", and "several" refer to more than two.
Claims
1. A climbing formwork top-level assembled work platform, characterized in that: include: A plurality of frames (1), each of the frames (1) is rectangular and is arranged in a manner such that the ends thereof are in contact with each other and are arranged around the construction facility (6), and each of the frames (1) is arranged on top of a climbing formwork support (5); A carrying component (2) is provided on the frame (1) and is used to carry staff; A protective component (3) is provided on a side of the frame (1) away from the construction facility (6) and is used to protect the construction safety of workers; A connecting component (4) is provided between two adjacent frames (1), and the connecting component (4) is used to connect the two adjacent frames (1).
2. The climbing formwork top-level assembled working platform according to claim 1 is characterized in that: The crossbeam at the top of the frame (1) along its length direction is a first load-bearing beam (11), the crossbeam at the top of the frame (1) along its width direction is a second load-bearing beam (12), and the height of the top surface of the first load-bearing beam (11) is lower than the height of the top surface of the second load-bearing beam (12); The bearing component (2) includes a plurality of bearing plates (21) arranged above the first bearing beam (11), and the head and tail of each bearing plate (21) are in contact with each other in sequence until the top surface of the first bearing beam (11) is fully covered, and when the bearing plate (21) is arranged on the first bearing beam (11), the height of the top surface of the bearing plate (21) is flush with the height of the top surface of the second bearing beam (12), and the bearing plate (21) is used to carry staff. A restraint component (22) is also provided between each bearing plate (21) and the frame (1), and when the bearing plate (21) is arranged above the first bearing beam (11), the restraint component (22) is used to limit the movement of the bearing plate (21) on the first bearing beam (11).
3. The climbing formwork top-level assembled working platform according to claim 2 is characterized in that: The constraint assembly (22) includes a plurality of limit blocks (221) distributed on both sides of the bottom end of the bearing plate (21), and the bottom end of each limit block (221) is provided with a limit groove (222) arranged along the length direction of the first bearing beam (11), and the groove width of the limit groove (222) corresponds to the width of the first bearing beam (11). When the bearing plate (21) is arranged above the first bearing beam (11), each first bearing beam (11) is inserted into the corresponding limit groove (222), and at this time, the limit block (221) is used to prevent the bearing plate (21) from moving along the length direction of the second bearing beam (12).
4. The climbing formwork top-level assembled working platform according to claim 2 is characterized in that: A plurality of reserved holes (13) are vertically opened on a side of the top of the frame (1) away from the construction facility (6); The protective component (3) includes a first rod (31) vertically inserted into each of the reserved holes (13); a locking sleeve (32) is provided on the first rod (31); when each of the first rods (31) is inserted into the corresponding reserved hole (13), the heights of the locking sleeves (32) on each of the first rods (31) correspond to each other and are concentrically arranged; a second rod (33) is also distributed on the first rod (31) and arranged along the length direction of the first load-bearing beam (11), and each of the second rods (33) is inserted into each of the locking sleeves (32); the second rod (33) is used to prevent a worker from accidentally escaping from the frame (1).
5. The climbing formwork top-level assembled working platform according to claim 1 is characterized in that: The connecting component (4) includes a connecting buckle (41) arranged between two adjacent frames (1), the connecting buckle (41) includes a positioning block (42) arranged between the two frames (1), and two clamping assemblies (43) relatively arranged on both sides of the positioning block (42), the clamping assembly (43) includes two arc-shaped clamps (431) relatively rotated on the positioning block (42), the arc-shaped clamps (431) are used to clamp the corresponding frame (1), each arc A screw hole (4311) is provided at one end of the arc-shaped clamp (431) away from the positioning block (42), and a bolt (44) is further provided on the screw hole (4311) on one of the arc-shaped clamps (431). When the two arc-shaped clamps (431) are in contact with the frame (1), the bolt (44) is passed through the two corresponding screw holes (4311) and screwed together, and the bolt (44) provides pressure to the corresponding two arc-shaped clamps (431) in the direction of the center of the arc-shaped clamp (431).