Assembling component hoisting construction structure convenient to receive and take
By using a micro motor to wind the rope in the lifting structure, the problem of rope swing during the lifting process is solved, ensuring the accurate placement and safety of the assembly components.
Patent Information
- Application Number
- CN202422584043.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-25
AI Technical Summary
The draw ropes in the existing lifting construction structure are prone to swing greatly during the lifting process, making it difficult to be accurately held by the working workers when approaching a high-level construction point.
The micro motor is used to wind the draw rope, and the micro motor on the main beam is used to wind and lower the draw rope to ensure that the draw rope does not swing when the lifting is not close to the high construction point, and facilitates workers to hold and pull when approaching.
The pull rope does not swing significantly during the lifting process, and workers can easily guide and place assembled components, improving the accuracy and safety of lifting.
Smart Images

Figure CN223239610U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a construction structure for assembling component hoisting and taking, belonging to the technical field of component hoisting. Background Art
[0002] During steel structure construction, components such as I-beams and square steel are hoisted from the ground to a high-rise construction site. To ensure accurate placement of the components during lowering, pull ropes are installed on the hoisting structure. Workers pull the ropes as the entire structure approaches to guide placement.
[0003] The pull rope installed on the existing hoisting construction structure cannot be retracted (see Chinese Patent Publication No. CN218520974U), and is prone to swinging greatly during the hoisting process, making it inconvenient for workers to hold the rope when approaching the high construction site. Utility Model Content
[0004] In order to solve the above technical problems, the utility model provides a construction structure for assembling components for easy lifting and taking.
[0005] The utility model is achieved through the following technical solutions.
[0006] The utility model provides a construction structure for assembling components for easy connection and lifting, comprising:
[0007] Two main beams are distributed at intervals;
[0008] A micro motor is installed on the main beam, and a pull rope is wound on the micro motor.
[0009] A handle is fixed at the bottom of the pull rope, and a battery for supplying energy to the micro motor is provided on the main beam.
[0010] Side clamps are correspondingly installed on the sides of the two main beams, and the two side clamps clamp the sides of the assembled components; and top plates are provided on the bottom surfaces of the two main beams for tightening the ends of the assembled components.
[0011] A screw rod A is fixed on the side clamping plate. The screw rod A passes through the load-bearing plate A and is screwed with a clamping nut A. The clamping nut A is screwed on the screw rod A to tighten the load-bearing plate A.
[0012] A load-bearing plate B is fixed to the bottom surface of the main beam, and a screw B runs through the load-bearing plate B. The screw B is fixedly connected to a top plate that tightens the ends of the assembled components. A tightening nut is screwed on the screw B for tightening the contact with the top plate.
[0013] The top surfaces of the two main beams distributed at intervals are both fixed with lifting ears, and the lifting ears are provided with lifting holes for connecting with lifting cables, and the lifting cables are hooked and connected with a lifting hook of a crane.
[0014] The two lifting ears are both provided with screw holes screwed through with tension screws, and tension nuts are screwed on both ends of the tension screws. After the tension nuts are screwed on the tension screws, they contact the lifting ears for limiting.
[0015] The beneficial effect of the present invention is that the pull rope is wound up by the micro motor on the main beam, so that the pull rope with the handle will not swing greatly when the hoisting is not close to the high construction point. When approaching the high construction point, the micro motor lowers the pull rope with the handle, so that the worker can easily hold the handle to pull the pull rope and guide it to achieve accurate placement, which solves the problem that the pull rope cannot be retracted and is prone to swing greatly during the hoisting process, resulting in the pull rope that has swung greatly being inconvenient for the worker to hold when approaching the high construction point. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the main view of the utility model when it is hoisted and distributed;
[0017] Figure 2 This is a structural diagram of the installation of the assembled components of the utility model;
[0018] Figure 3 This is a schematic diagram of the structure of the end installation of the assembled components of the utility model;
[0019] In the figure: 1-main beam; 2-side clamp; 21-screw A; 22-loaded plate A; 23-clamping nut A; 24-lifting ear; 25-lifting cable; 31-loaded plate B; 32-screw B; 33-top plate; 34-clamping nut; 4-crane; 41-hook; 51-tension screw; 52-tension nut; 61-micro motor; 62-pull rope; 63-handle; 64-battery; 10-assembly component. DETAILED DESCRIPTION
[0020] The technical solution of the present invention is further described below, but the scope of protection claimed is not limited to the described solution.
[0021] like Figures 1 to 3 shown.
[0022] The present application discloses a construction structure for assembling components for lifting and taking, comprising:
[0023] The main beam 1 as a load-bearing and installation foundation is divided into two main beams 1 distributed at intervals. Side clamps 2 are installed on the sides of the main beam 1, and the two side clamps 2 clamp the sides of the assembly component 10 in opposite directions.
[0024] A screw A21 is fixed to the side clamping plate 2. Screw A21 extends through the load-bearing plate A22 and is screwed onto a clamping nut A23. The clamping nut A23 screws onto screw A21, tightening the load-bearing plate A22. The two load-bearing plates A22 are fixed to the undersides of the main beam 1 at both ends. The clamping nut A23 screws onto screw A21, allowing the side clamping plate 2 to be clamped and released from the side of the assembled component 10.
[0025] A load-bearing plate B31 is fixed to the bottom surface of the main beam 1. A screw B32 extends through the load-bearing plate B31, which is fixedly connected to a top plate 33. A tightening nut 34 is screwed onto the screw B32 for tightening against the top plate 33. The tightening nut 34 is screwed onto the screw B32, allowing the top plate 33 to be adjusted to be tightened or disengaged with the end of the assembly component 10. The load-bearing plates B31 on the two main beams 1 are installed oppositely at the ends of the assembly component 10 for tightening and limiting.
[0026] The top surfaces of the two spaced-apart main beams 1 are both fixed with lifting ears 24 , and the lifting ears 24 have lifting holes for connecting with lifting cables 25 , and the lifting cables 25 are hooked and connected with the hooks 41 on the crane 4 .
[0027] The two lifting ears 24 are both provided with screw holes and screwed with a tension screw 51, and tension nuts 52 are screwed on both ends of the tension screw 51. After the tension nuts 52 are screwed on the tension screw 51, they contact the lifting ears 24 to limit the position; after the side clamps 2 under the main beam 1 clamp the side of the assembled component 10, and at the same time the top plate 33 presses the end of the assembled component 10, the tension screw 51 is installed and screwed on the tension nuts 52 to tighten and limit the overall structure.
[0028] A micro motor 61 is installed on the main beam 1, and a pull rope 62 is wound on the micro motor 61. A handle 63 is fixed to the bottom of the pull rope 62. A battery 64 is provided on the main beam 1 to supply energy to the micro motor 61. The micro motor 61 has its own powered forward and reverse control module to realize remote control of the winding and lowering of the pull rope 62.
[0029] When the crane 4 is lifted to a high altitude, the pull rope 62 is wound by the micro motor 61 on the main beam 1, so that the pull rope 62 with the handle 63 will not swing greatly when the lifting is not close to the high construction point. When approaching the high construction point, the micro motor 61 lowers the pull rope 62 with the handle 63, so that the workers can easily hold the handle 63 to pull the pull rope 62 to guide it for accurate placement, which solves the problem that the pull rope cannot be stored and is prone to swinging greatly during the lifting process, resulting in the pull rope that has swung greatly being inconvenient for workers to hold when approaching the high construction point.
Claims
1. A construction structure for assembling components for easy access, characterized in that: include: Two main beams (1) are spaced apart; A micro motor (61) is installed on the main beam (1), and a pull rope (62) is wound on the micro motor (61).
2. The construction structure for assembling components for easy access as claimed in claim 1, characterized in that: A handle (63) is fixed to the bottom of the pull rope (62), and a battery (64) for supplying energy to the micro motor (61) is provided on the main beam (1).
3. The construction structure for assembling components for easy lifting and taking as claimed in claim 1, characterized in that: Side clamps (2) are correspondingly installed on the sides of the two main beams (1), and the two side clamps (2) clamp the sides of the assembled components (10) in opposite directions; and top plates (33) are provided on the bottom surfaces of the two main beams (1) to press against the ends of the assembled components (10).
4. The construction structure for lifting and taking assembly components according to claim 3, characterized in that: A screw rod A (21) is fixed on the side clamping plate (2), the screw rod A (21) passes through the load-bearing plate A (22) and is screwed with a clamping nut A (23), and the clamping nut A (23) is screwed on the screw rod A (21) to tighten the load-bearing plate A (22).
5. The construction structure for assembling components for easy lifting and taking as claimed in claim 3, characterized in that: A load-bearing plate B (31) is fixed to the bottom surface of the main beam (1), a screw rod B (32) passes through the load-bearing plate B (31), the screw rod B (32) is fixedly connected to a top plate (33) for tightening the end of the assembled component (10), and a tightening nut (34) is screwed on the screw rod B (32) for tightening the contact with the top plate (33).
6. The construction structure for assembling components for easy lifting and taking as claimed in claim 3, characterized in that: The top surfaces of the two main beams (1) distributed at intervals are both fixed with lifting ears (24), and the lifting ears (24) have lifting holes for connecting with lifting cables (25), and the lifting cables (25) are hooked and connected with a lifting hook (41) of a crane (4).
7. The construction structure for assembling components for easy lifting and taking as claimed in claim 6, characterized in that: The two lifting ears (24) are both provided with screw holes and screwed with a tension screw (51), and tension nuts (52) are screwed on both ends of the tension screw (51). After the tension nuts (52) are screwed on the tension screw (51), they contact the lifting ears (24) for limiting.
Citation Information
Patent Citations
Rapid installation device for indoor hoisting points of building
CN218520974U