Traction tool for metal hanging object
By designing the traction tools of universal ball head and electromagnetic column, the problem that the traction rope cannot change its direction and angle during metal lifting is solved, and safe and reliable multi-directional multi-angle lifting is achieved, reducing safety risks.
Patent Information
- Application Number
- CN202422206986.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-10
AI Technical Summary
During the existing metal lifting process, the traction rope cannot meet the traction needs of lifting objects of different heights, and cannot flexibly change direction and angle, which poses safety risks.
A traction tool including a traction main rod, a traction secondary rod, a universal ball head and an electromagnetic column is designed. The traction of multi-directional and multi-angle objects through the universal ball head is realized, and the electromagnetic column can instantly adsorb or disengage metal objects to ensure a safe distance.
It realizes safe, reliable, convenient and efficient metal lifting traction, reduces safety risks, and enhances the flexibility and accuracy of the lifting process.
Smart Images

Figure CN223133960U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of hardware tools and relates to a traction tool for metal hanging objects. Background Art
[0002] During the precise lifting of some metal parts, it is sometimes impossible to tie the traction rope, or the traction rope cannot be untied after being tied, or multiple traction ropes need to be tied. All of the above situations result in a long time of aerial lifting, large differences in running trajectories, and poor traction effects. When the lifting object is too high or personnel touch the lifting object too early, it is easy to violate some regulations of the production site, posing a major safety risk. Therefore, a safe, reliable, convenient and efficient metal lifting object traction tool is needed. Utility Model Content
[0003] The purpose of the utility model is to provide a traction tool for metal hoists in response to the problems existing in the prior art, which solves the problem that during the precise lifting of existing metal parts, the traction rope cannot meet the traction requirements of objects at different heights and cannot arbitrarily change the traction direction and angle.
[0004] To this end, the utility model adopts the following technical solutions:
[0005] A traction tool for metal hanging objects comprises a traction main rod, a traction sub-rod is inserted on the top of the traction main rod, and a handle is provided on the bottom, one end of the traction sub-rod is connected to the traction main rod through a locking collar, and the other end is provided with a traction base, and the two are connected through a connecting thread head, a universal ball head is provided on the top of the traction base, a refueling nozzle is provided on the outer shell of the universal ball head, an electromagnetic base is provided on the exposed part of the inner ball, and an electromagnetic column is provided on the side of the electromagnetic base.
[0006] Furthermore, the main traction rod and the auxiliary traction rod are both hollow, and a power cord is passed through the inside of both. The side wall of the auxiliary traction rod is provided with a threading hole, and the end of the power cord passes through the threading hole and is electrically connected to the electromagnetic column.
[0007] Furthermore, the power line is provided with a first ring-shaped line and a second ring-shaped line, and the two are connected by a straight wire, the first ring-shaped line is located inside the traction sub-rod, and the second ring-shaped line is located on the side of the electromagnetic column.
[0008] Furthermore, an insulating rubber ring is provided at the connection between the traction main rod and the traction auxiliary rod.
[0009] Furthermore, a battery is provided at the bottom of the handle, and a power switch and a switch lock button are provided at the side, and the battery, the power switch and the switch lock button are electrically connected in sequence.
[0010] Furthermore, the connecting wire head and the traction base are connected via a locking nut.
[0011] The beneficial effects of the utility model are:
[0012] The utility model realizes traction of suspended objects in multiple directions and angles by setting a universal ball head structure design. At the same time, by setting an electromagnetic column for power control, it can instantly absorb or detach from metal suspended objects. It is convenient and quick to use, and allows the traction personnel to maintain a certain safe distance from the suspended objects, reducing the safety risk of traction of suspended objects and enhancing the safety and reliability during the traction process of suspended objects. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a structural schematic diagram of the utility model.
[0014] In the figure, 1-battery, 2-traction main rod, 3-traction auxiliary rod, 4-universal ball head, 5-electromagnetic column, 6-handle, 7-power switch, 8-switch lock button, 9-locking ring, 10-insulating rubber ring, 11-threading hole, 12-connecting thread head, 13-locking nut, 14-traction base, 15-oil nozzle, 16-electromagnetic base, 17-power cord, 18-1-first ring line, 18-2-second ring line. DETAILED DESCRIPTION
[0015] The technical solution of the utility model is described below in conjunction with the accompanying drawings and implementation methods.
[0016] like Figure 1 As shown, a traction tool for metal hanging objects includes a traction main rod 2, a traction sub-rod 3 is inserted on the top of the traction main rod 2, a handle 6 is provided on the bottom, and an insulating rubber ring 10 is provided at the connection between the traction main rod 2 and the traction sub-rod 3; specifically, the insulating rubber ring 10 is used to prevent the traction sub-rod 3 from causing scratches to the power cord 17 during the extension and retraction process.
[0017] One end of the traction secondary rod 3 is connected to the traction main rod 2 through a locking collar 9, and the other end is provided with a traction base 14, and the two are connected through a connecting thread head 12, and the connecting thread head 12 and the traction base 14 are connected through a locking nut 13; specifically, the locking collar 9 is used to adjust the extension length of the traction secondary rod 3.
[0018] A universal ball head 4 is provided on the top of the traction base 14, a refueling nozzle 15 is provided on the outer shell of the universal ball head 4, an electromagnetic base 16 is provided on the exposed part of the inner ball, and an electromagnetic column 5 is provided on the side of the electromagnetic base 16; specifically, the refueling nozzle 15 is used to add lubricating grease to the universal ball head 4 to ensure the flexibility of the universal ball head 4.
[0019] The traction main rod 2 and the traction auxiliary rod 3 are both hollow, and a power line 17 is passed through the inside of the two. The side wall of the traction auxiliary rod 3 is provided with a threading hole 11, and the end of the power line 17 passes through the threading hole 11 and is electrically connected to the electromagnetic column 5.
[0020] The power cord 17 is provided with a first annular wire 18-1 and a second annular wire 18-2, and the two are connected by a straight wire. The first annular wire 18-1 is located inside the traction auxiliary rod 3, and the second annular wire 18-2 is located on the side of the electromagnetic column 5; specifically, the first annular wire 18-1 and the second annular wire 18-2 are used to compensate for the shortage of the power cord caused by the outward extension of the traction auxiliary rod and the steering of the universal ball head.
[0021] A battery 1 is provided at the bottom of the handle 6, a power switch 7 and a switch lock button 8 are provided on the side, and the battery 1, the power switch 7 and the switch lock button 8 are electrically connected in sequence; specifically, the battery 1 provides power for the electromagnetic column 5; the power switch 7 is used to control the energization of the electromagnetic column 5, and the power switch 7 is configured with a switch lock button 8 for the electromagnetic column 5 to be energized for a long time without continuously pressing the power switch 7, ensuring the continuous reliability of traction.
[0022] The usage process of the present utility model is as follows:
[0023] When it is necessary to tow a metal load, according to the distance between the tow person and the load, the lengths of the traction main rod 2 and the traction auxiliary rod 3 are adjusted through the locking collar 9, the electromagnetic column 5 is aligned with the metal load, the power switch 7 and the switch lock button 8 are pressed, the battery 1 supplies power to the electromagnetic column 5 through the power cord 17, the electromagnetic column 5 generates a magnetic force to hold the metal load, and the tow person holds the handle 6 to tow the load. On the other hand, the universal ball head 4 continuously changes the direction and angle according to the movement of the load and the change of the personnel's standing position until the load is accurately placed. Then, the switch lock button 8 is pressed again to cut off the power supply of the electromagnetic column 5, and the electromagnetic column 5 naturally separates from the metal load, ending the towing.
Claims
1. A traction tool for metal lifting objects, characterized in that, The invention comprises a traction main rod (2), a traction secondary rod (3) is inserted at the top of the traction main rod (2), and a handle (6) is provided at the bottom. One end of the traction secondary rod (3) is connected to the traction main rod (2) via a locking collar (9), and the other end is provided with a traction base (14), and the two are connected via a connecting thread (12). A universal ball head (4) is provided at the top of the traction base (14), a refueling nozzle (15) is provided at the outer shell of the universal ball head (4), an electromagnetic base (16) is provided at the exposed part of the inner ball, and an electromagnetic column (5) is provided at the side of the electromagnetic base (16).
2. The traction tool for metal lifting objects according to claim 1, characterized in that The main traction rod (2) and the auxiliary traction rod (3) are both hollow, and a power cord (17) is passed through the inside of the two rods. The side wall of the auxiliary traction rod (3) is provided with a threading hole (11), and the end of the power cord (17) passes through the threading hole (11) and is electrically connected to the electromagnetic column (5).
3. The traction tool for metal suspended loads according to claim 2, wherein The power line (17) is provided with a first loop-shaped line (18-1) and a second loop-shaped line (18-2), and the two are connected via a straight wire, the first loop-shaped line (18-1) is located inside the traction sub-rod (3), and the second loop-shaped line (18-2) is located on the side of the electromagnetic column (5).
4. A traction tool for metal suspended objects according to claim 1, characterized in that, An insulating rubber ring (10) is provided at the connection between the traction main rod (2) and the traction auxiliary rod (3).
5. A traction tool for metal lifting objects according to claim 1, characterized in that, A battery (1) is provided at the bottom of the handle (6), and a power switch (7) and a switch lock button (8) are provided at the side thereof. The battery (1), the power switch (7) and the switch lock button (8) are electrically connected in sequence.
6. The traction tool for metal lifting objects according to claim 1, characterized in that, The connecting thread head (12) and the traction base (14) are connected via a locking nut (13).