Hoisting equipment for steel structure production
By introducing structures such as lifting connecting blocks, ropes, sliding blocks, and slide rails into the lifting equipment, and combining them with a motor drive and linkage gear system, the problem of insufficient stability of traditional lifting equipment in steel structure construction has been solved, enabling rapid and stable movement and positioning of steel structures and improving construction safety.
Patent Information
- Application Number
- CN202520383270.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-03-06
AI Technical Summary
Traditional hoisting equipment poses safety hazards in steel structure construction due to insufficient stability and swaying issues, increasing construction risks.
The system employs a structure consisting of lifting connecting blocks, ropes, sliding blocks, and slide rails, combined with a motor drive and linkage gear system, to achieve lateral and longitudinal movement of the steel structure. Through the cooperation of lateral and longitudinal slide rails, along with the motor drive and linkage structure, the lifting equipment can move the steel structure quickly and stably.
It improved the stability and efficiency of hoisting equipment, reduced safety hazards during construction, and enabled the rapid and flexible movement and positioning of steel structures.
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Figure CN223722560U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to steel structure production technical field, specifically a kind of hoisting equipment for steel structure production. BACKGROUND
[0002] Steel structure is the important component part indispensable in modern building, and its construction process cannot be separated from efficient hoisting equipment.
[0003] Traditional hoisting equipment often leads to security risks due to insufficient stability during operation.
[0004] Steel structure engineering is widely used in large factory, bridge, venue, super high-rise building and other fields due to its light weight, simple construction and other advantages. In the construction process of steel structure, hoisting equipment plays a crucial role, responsible for accurately moving steel beam, steel column, steel truss and other components to designated position. However, the existing hoisting equipment often shakes during operation, increasing the risk of construction.
[0005] Therefore, the utility model provides a kind of hoisting equipment for steel structure production. UTILITY MODEL CONTENTS
[0006] In order to make up for the deficiencies of prior art and solve at least one technical problem raised in the background art.
[0007] The utility model solves the technical scheme that the utility model discloses a kind of hoisting equipment for steel structure production, including hoisting connecting block, the hoisting connecting block bottom is connected with two ropes, the rope bottom is fixedly connected with hook, the hoisting connecting block top is connected sliding block, the sliding block is slidably installed in the sliding slot of the top of sliding rod, the sliding rod both ends are slidably installed with slide rail rod, the slide rail rod one end is fixedly connected with first adapter block, the slide rail rod other end installs second adapter block, the first adapter block bottom is fixedly connected with first support rod, the second adapter block bottom is fixedly connected with first support rod, steel structure is moved under the device by cooperation, by the above structure, the device hoists the steel structure required to be hoisted, by the cooperation of horizontal and longitudinal slide rail, the hoisted steel structure can be moved according to the required requirement, increase the practicality of device.
[0008] Preferably, the lifting connecting block side wall is provided with a first driving motor, the output end of the first driving motor is rotationally connected with a first rotating shaft, the first rotating shaft penetrates through the lifting connecting block side wall, two driving gears are mounted on the first rotating shaft, the driving gears are located on the two inner walls of the lifting connecting block, the same driving gears are mounted on the two sides of the bottom of the driving gears, three driving gears form a linkage group, a rotating connecting rod is fixedly connected between the two driving gears, and the rotating connecting rod is connected with a rope.
[0009] Preferably, the second adapter block side wall is connected with a second driving motor, the output end of the second driving motor is rotationally connected with a linkage gear, one end of the linkage gear is provided with a second rotating shaft, a protective cover is mounted between the two second adapter blocks, the second rotating shaft is wrapped by the protective cover, the second rotating shaft is provided with an opposite linkage gear at one end, a rotating group is rotationally mounted in the two slide rail rods, the rotating group penetrates through the slide rods, corresponding threads are arranged on the outer wall of the rotating group and the connection position between the rotating group and the slide rods, the rotating group penetrates through the slide rail rods and is connected with one end of the second adapter block, the rotating group located at the end penetrating through the second adapter block is fixedly connected with a linkage gear, and a third driving motor is mounted on the side wall of the slide rod, the output end of the third driving motor is rotationally connected with the rotating group, the rotating group penetrates through the slide block and the slide rod, and corresponding threads are arranged on the outer wall of the rotating group and the connection position between the rotating group and the slide block.
[0010] Preferably, the lifting connecting block bottom is provided with an L-shaped telescopic rod, the L-shaped telescopic rod is internally provided with a rope, the L-shaped telescopic rod is provided with two, and the L-shaped telescopic rods are oppositely mounted.
[0011] Preferably, the lifting connecting block top is provided with a third rotating shaft, and the top of the third rotating shaft is fixedly connected with a slide block.
[0012] Preferably, the first support rod bottom is fixed with a base, the base is provided with ground nail mounting round holes at four corners, the first support rod outer wall is fixed with a top of the base reinforcing stabilizer, the reinforcing stabilizer is provided with four, through the above structure, the ground nail mounting hole is added, so that the device can be better fixed in the required position, and the practicality of the device is improved.
[0013] Preferably, the hook is made of high-strength corrosion-resistant material, through the above structure, the device has good tensile strength and corrosion resistance during hoisting.
[0014] The beneficial effects of the utility model are as follows:
[0015] 1. The utility model discloses a hoisting equipment for steel structure production, through making the device hoist the required steel structure, through the cooperation of horizontal and longitudinal sliding rails, the hoisted steel structure can be moved according to the required requirements, and the practicality of the device is improved.
[0016] 2. The utility model discloses a hoisting equipment for steel structure production, through adopting linkage structure cooperation motor drive, the device can be screwed to cooperate to make the device complete smooth position movement, and the position movement work of steel structure is more quickly completed, the practicality and work efficiency of the device are improved. DRAWINGS
[0017] The utility model will be further described below in combination with the drawings.
[0018] Figure 1 It is the perspective view of the utility model;
[0019] Figure 2 It is the structural schematic view of the hoisting connecting block in the utility model;
[0020] Figure 3 It is the structural schematic view of the L-shaped telescopic rod in the utility model;
[0021] Figure 4 It is the structural schematic view of the driving gear in the utility model;
[0022] Figure 5 It is the structural schematic view of the linkage gear in the utility model;
[0023] Figure 6 It is the structural schematic view of the first rotating shaft in the utility model;
[0024] In the diagram: 1. Lifting connecting block; 11. Rope; 12. Hook; 13. Sliding block; 14. Sliding rod; 15. Slide rail rod; 16. First adapter block; 17. First support rod; 18. Second adapter block; 2. First drive motor; 21. First rotating shaft; 22. Drive gear; 23. Rotating connecting rod; 3. Second drive motor; 31. Third drive motor; 32. Rotating assembly; 33. Linkage gear; 34. Second rotating shaft; 35. Protective cover; 4. L-shaped telescopic rod; 41. Stabilizing telescopic rod; 42. Second support rod; 5. Third rotating shaft; 6. Base; 61. Reinforcing and stabilizing component. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.
[0026] Specific implementation examples are given below.
[0027] like Figures 1 to 4 As shown in the embodiment of this utility model, a hoisting device for steel structure production includes a hoisting connecting block 1. Two ropes 11 are connected to the bottom of the hoisting connecting block 1, and hooks 12 are fixed to the bottom of each rope 11. A sliding block 13 is connected to the top of the hoisting connecting block 1. The sliding block 13 is slidably installed on the top of a sliding rod 14 and has a sliding groove. A slide rail rod 15 is slidably installed at each end of the sliding rod 14. A first adapter block 16 is fixed to one end of each slide rail rod 15, and a second adapter block 18 is installed at the other end of each slide rail rod 15. A first support rod 17 is fixed to the bottom of the first adapter block 16, and the first support rod 17 is fixed to the bottom of the second adapter block 18. During operation, the steel structure to be hoisted is placed below the hoisting connecting block 1, and the hooks 12 are hung at both ends of the steel structure, cooperating with the ropes 11... The steel structure is lifted and moved along the sliding rod 14 by sliding block 13. Sliding block 13 moves the lifting connecting block 1, which in turn moves the rope 11, which in turn moves the hook 12, causing the steel structure to move below the sliding rod 14. Sliding rod 14 then moves it along the slide rail 15, which in turn moves sliding block 13, which in turn moves the lifting connecting block 1, causing the lower steel structure to move along the slide rail 15. This coordinated movement allows the steel structure to move below the device. Through this structure, the device can lift the required steel structure. The use of horizontal and vertical slide rails allows the lifted steel structure to move according to requirements, increasing the device's practicality.
[0028] As shown in Figures 1 to 4 and Figure 6 The first drive motor 2 is mounted on the side wall of the lifting connecting block 1, the output end of the first drive motor 2 is rotatably connected with the first rotating shaft 21, the first rotating shaft 21 penetrates through the side wall of the lifting connecting block 1, two drive gears 22 are mounted on the first rotating shaft 21, the drive gears 22 are located on the inner walls of the lifting connecting block 1, the same drive gears 22 are mounted on the bottom of the two sides of the drive gears 22, so that the three drive gears 22 form a linkage group, the rotating connecting rod 23 is fixedly connected between the two drive gears 22, and the rotating connecting rod 23 is connected with the rope 11. In working, the first drive motor 2 is started, the output end of the first drive motor 2 drives the first rotating shaft 21 to rotate, the first rotating shaft 21 drives the drive gears 22 to rotate, the linkage drive gears 22 drive the rotating connecting rod 23 to rotate, the rotating connecting rod 23 is rotated, the rotating connecting rod 23 winds up the rope 11, the rope 11 drives the hook 12 to move upwards, the hook 12 lifts the steel structure, through the above structure, the rope 11 can be lifted more quickly through the motor rotation cooperation linkage structure, the device can quickly complete the lifting work, and the adaptability and working efficiency of the device are increased.
[0029] As shown in Figures 1 to 2 and Figure 5As shown, the second adapter block 18 side wall is connected with the second driving motor 3, the output end of the second driving motor 3 is rotationally connected with the linkage gear 33, one end of the linkage gear 33 is mounted with the second rotating shaft 34, the protective cover 35 is mounted between the two second adapter blocks 18, the protective cover 35 wraps the second rotating shaft 34, one end of the second rotating shaft 34 is mounted with the opposite linkage gear 33, the rotating group 32 is rotationally mounted inside the two slide rail rods 15, the rotating group 32 penetrates to connect the slide rod 14, and corresponding threads are arranged at the connection between the outer wall of the rotating group 32 and the slide rod 14, one end of the rotating group 32 penetrates the slide rail rod 15 and is connected with the second adapter block 18, the linkage gear 33 is fixedly connected to the end of the rotating group 32 penetrating the second adapter block 18, the third driving motor 31 is mounted on the side wall of the slide rod 14, the output end of the third driving motor 31 is rotationally connected with the rotating group 32, the rotating group 32 penetrates the slide block 13 and the slide rod 14, and the same threads are arranged at the connection between the outer wall of the rotating group 32 and the slide block 13, in working, the second driving motor 3 is started, the second driving motor 3 drives the linkage gear 33 to rotate, the linkage gear 33 drives the second rotating shaft 34 to rotate, the second rotating shaft 34 drives the linkage gear 33 at the other end to rotate, through the linkage structure, the linkage gear 33 drives the linkage gear 33 connected with the rotating group 32, the linkage gear 33 drives the rotating group 32 to rotate, through the threads at the connection between the outer wall of the rotating group 32 and the slide rod 14, the slide rod 14 slides on the slide rail rod 15, the second driving motor 3 is reversely rotated, the slide rod 14 reversely moves, the third driving motor 31 is started, the third driving motor 31 drives the rotating group 32 to rotate, through the threads at the connection between the outer wall of the rotating group 32 and the slide block 13, the slide block 13 moves on the slide rod 14, the second driving motor 3 is reversely rotated, the slide block 13 reversely moves, through the above structure, the linkage structure is matched with the motor driving, the device is threadedly matched, the position movement of the device is smoothly completed, the position movement work of the steel structure is more quickly completed, and the practicality and the working efficiency of the device are increased.
[0030] As Figure 2 and Figure 4As shown, the lifting connecting block 1 bottom is provided with L type telescopic rod 4, the L type telescopic rod 4 is internally provided with rope 11, the L type telescopic rod 4 is provided with two, the L type telescopic rod 4 is oppositely installed, the lifting connecting block 1 both sides are each provided with stable telescopic rod 41, the stable telescopic rod 41 is vertically installed with L type telescopic rod 4, the L type telescopic rod 4, stable telescopic rod 41 is installed with second support rod 42, the second support rod 42 is installed with two, in working, by pulling up the bottom L type telescopic rod 4, the L type telescopic rod 4 drives the second support rod 42 to move, the second support rod 42 drives the stable telescopic rod 41 to move, so that the length of the L type telescopic rod 4 on both sides is consistent with the length of the steel structure, so that the rope 11 can provide more hoisting angle for the hook 12, while the stable telescopic rod 41, the second support rod 42 provides the L type telescopic rod 4 with good support, through the above structure, the device is well supported when hoisting the steel structure, and the practicality of the device is increased.
[0031] As shown in the figure, Figure 4 As shown, the lifting connecting block 1 top is provided with third rotating shaft 5, the third rotating shaft 5 top is fixedly connected with sliding block 13, in working, by rotating the third rotating shaft 5, the third rotating shaft 5 drives the lifting connecting block 1 to rotate, so that the device can change the direction of the steel structure while lifting the steel structure, through the above structure, the rotation structure is added, so that the steel structure can be adjusted in direction during hoisting, and the practicality and flexibility of the device are increased.
[0032] As shown in the figure, Figure 1 As shown, the first support rod 17 bottom is fixedly connected with base 6, the base 6 four corners are provided with ground nail mounting circular hole, the first support rod 17 outer wall is fixedly connected with base 6 top reinforcing stability part 61, the reinforcing stability part 61 is provided with four, in working, the device is fixed to the required position through the ground nail mounting circular hole provided on the base 6, through the above structure, the ground nail mounting port is added, so that the device can be better fixed in the required position, and the practicality of the device is increased.
[0033] As shown in the figure, Figure 1 As shown, the hook 12 is made of high-strength corrosion-resistant material, in working, the hook 12 has high strength tensile resistance and corrosion resistance, through the above structure, the device has good tensile resistance and corrosion resistance during hoisting.
[0034] When working, the steel structure to be hoisted is placed below the hoisting connecting block 1, the hooks 12 are hung on both ends of the steel structure, the steel material is hoisted by cooperating with the rope 11, the sliding block 13 is moved on the sliding rod 14 by sliding, the sliding block 13 drives the hoisting connecting block 1 to move, the hoisting connecting block 1 drives the rope 11 to move, the rope 11 drives the hook 12 to move, so that the steel structure moves below the sliding rod 14, the sliding rod 14 is moved on the sliding rail rod 15 by sliding, the sliding rod 14 drives the sliding block 13 to move, the sliding block 13 drives the hoisting connecting block 1 to move, the hoisting connecting block 1 drives the steel structure below to move, so that the steel structure moves along the sliding rail rod 15, the first driving motor 2 is started, the first driving motor 2 drives the first rotating shaft 21 to rotate, the first rotating shaft 21 drives the driving gear 22 to rotate, the driving gear 22 drives the rotating connecting rod 23 to rotate by linkage, the rotating connecting rod 23 is rotated, the rotating connecting rod 23 winds up the rope 11, the rope 11 drives the hook 12 to move upwards, the hook 12 hoists the steel structure, the second driving motor 3 is started, the second driving motor 3 drives the linkage gear 33 to rotate, the linkage gear 33 drives the second rotating shaft 34 to rotate, the second rotating shaft 34 drives the other end linkage gear 33 to rotate, through the linkage structure, the linkage gear 33 drives the linkage gear 33 connected by the rotating group 32, the linkage gear 33 drives the rotating group 32 to rotate, the sliding rod 14 is slid on the sliding rail rod 15 through the threads at the connection between the outer wall of the rotating group 32 and the sliding rod 14, the second driving motor 3 is reversely rotated, so that the sliding rod 14 moves reversely, the third driving motor 31 is started, the third driving motor 31 drives the rotating group 32 to rotate, the sliding block 13 is moved on the sliding rod 14 through the threads at the connection between the outer wall of the rotating group 32 and the sliding block 13, the sliding block 13 moves reversely by reversely rotating the second driving motor 3, the second supporting rod 42 is moved by pulling up the L-shaped telescopic rod 4 at the bottom, the second supporting rod 42 drives the stable telescopic rod 41 to move, so that the length of the L-shaped telescopic rod 4 on both sides is consistent with the length of the steel structure, so that the rope 11 can provide more hoisting angles for the hook 12, at the same time, the stable telescopic rod 41 and the second supporting rod 42 provide good support for the L-shaped telescopic rod 4, the third rotating shaft 5 is rotated, so that the third rotating shaft 5 drives the hoisting connecting block 1 to rotate, so that the device can hoist the steel structure while changing the direction of the steel structure, the device is fixed to the required position through the ground nail installation round hole arranged on the base 6, and the hook 12 has high strength tensile resistance and corrosion resistance.
[0035] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A hoisting device for steel structure production, comprising a hoisting connecting block (1); characterized in that: The lifting connecting block (1) is connected with two ropes (11) at the bottom; the bottom of the rope (11) is fixedly connected with a hook (12); the top of the lifting connecting block (1) is connected with a sliding block (13); the sliding block (13) is slidingly installed on the top of a sliding rod (14) provided with a sliding groove; the two ends of the sliding rod (14) are slidingly installed with sliding rail rods (15); one end of the sliding rail rod (15) is fixedly connected with a first adapter block (16); the other end of the sliding rail rod (15) is installed with a second adapter block (18); the bottom of the first adapter block (16) is fixedly connected with a first supporting rod (17); the bottom of the second adapter block (18) is fixedly connected with a first supporting rod (17).
2. The hoisting apparatus for steel structure production according to claim 1, characterized in that: The first driving motor (2) is installed on the side wall of the lifting connecting block (1); the output end of the first driving motor (2) is rotatably connected with a first rotating shaft (21); the first rotating shaft (21) penetrates through the side wall of the lifting connecting block (1); two driving gears (22) are installed on the first rotating shaft (21); the driving gears (22) are located on the inner walls of the lifting connecting block (1); the same driving gears (22) are installed on the bottom of the driving gears (22); three driving gears (22) form a linkage group; a rotating connecting rod (23) is fixedly connected between the two driving gears (22); the rotating connecting rod (23) is connected with the rope (11) on the outer wall.
3. The hoisting apparatus for steel structure production according to claim 1, characterized in that: The second driving motor (3) is connected with the side wall of the second adapter block (18); the output end of the second driving motor (3) is rotatably connected with a linkage gear (33); one end of the linkage gear (33) is installed with a second rotating shaft (34); a protective cover (35) is installed between the two second adapter blocks (18); the second rotating shaft (34) is wrapped by the protective cover (35); one end of the second rotating shaft (34) is installed with an opposite linkage gear (33); a rotating group (32) is rotatably installed in the two sliding rail rods (15); the rotating group (32) penetrates through the sliding rod (14); the outer wall of the rotating group (32) is provided with corresponding threads at the connection with the sliding rod (14); one end of the rotating group (32) penetrates through the sliding rail rod (15) and is connected with the second adapter block (18); the other end of the rotating group (32) penetrates through the second adapter block (18) and is fixedly connected with the linkage gear (33); the third driving motor (31) is installed on the side wall of the sliding rod (14); the output end of the third driving motor (31) is rotatably connected with the rotating group (32); the rotating group (32) penetrates through the sliding block (13) and the sliding rod (14); the outer wall of the rotating group (32) is provided with the same threads at the connection with the sliding block (13).
4. The hoisting apparatus for steel structure production according to claim 1, characterized in that: The lifting connecting block (1) is provided with an L-shaped telescopic rod (4) at the bottom; the L-shaped telescopic rod (4) is internally provided with a rope (11); the L-shaped telescopic rod (4) is provided with two; the L-shaped telescopic rods (4) are oppositely installed; the lifting connecting block (1) is provided with a stable telescopic rod (41) on each side; the stable telescopic rods (41) are vertically installed with the L-shaped telescopic rods (4); the L-shaped telescopic rods (4) and the stable telescopic rods (41) are provided with a second supporting rod (42) therebetween; the second supporting rod (42) is provided with two.
5. The hoisting apparatus for steel structure production according to claim 1, characterized in that: The lifting connecting block (1) is provided with a third rotating shaft (5) at the top; the third rotating shaft (5) is fixedly connected with a sliding block (13) at the top.
6. The hoisting apparatus for producing a steel structure according to claim 1, characterized in that: The first supporting rod (17) is fixedly connected with a base (6) at the bottom; the base (6) is provided with a ground nail mounting circular hole at the corners; the outer wall of the first supporting rod (17) is fixedly connected with a reinforcing and stabilizing piece (61) on the top of the base (6); the reinforcing and stabilizing piece (61) is provided with four.
7. The hoisting apparatus for producing a steel structure according to claim 1, characterized in that: The hook (12) is made of high-strength corrosion-resistant material.