Steel wire feeding and overturning tool
By designing a wire feeding and turning fixture with anti-slip pads, an electrical telescopic plate, and a fixing rod, the problem of insufficient applicability of existing fixtures to wire coils of different diameters is solved, and stable fixing and efficient turning of wire coils of different diameters are achieved.
Patent Information
- Application Number
- CN202520484494.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-19
AI Technical Summary
The existing wire feeding and turning fixture has low applicability to wire rings of different diameters, which limits its application range.
A wire feeding and turning fixture was designed, comprising a base plate, a movable plate, a movable shaft, and a servo motor. By setting anti-slip pads, an electrically telescopic plate, and a fixing rod, the fixture utilizes anti-slip properties and telescopicity to adapt to wire coils of different diameters, ensuring stable fixing and turning.
This significantly improves the applicability and stability of the device for steel wire coils of different diameters, ensuring the safety and efficiency of the flipping process.
Smart Images

Figure CN223804660U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to metal products processing technical field, more specifically, especially relate to a steel wire loading and overturning tool. BACKGROUND
[0002] The steel wire loading and overturning tool is used in the field of steel wire processing to realize the loading and overturning of a steel wire roll. The steel wire loading and overturning tool realizes the mechanization of the loading process of the steel wire roll, eliminates the need for manual lifting and adjustment, saves time and labor costs, and greatly improves work efficiency. However, the commonly used steel wire loading and overturning tool has low applicability to steel wire coils of different diameters, so a new type of steel wire loading and overturning tool is needed. SUMMARY
[0003] To solve the above technical problems, the utility model provides a steel wire loading and overturning tool to solve the problem of low applicability of the existing steel wire loading and overturning tool to steel wire coils of different diameters.
[0004] The utility model relates to a steel wire loading and overturning tool, which is achieved by the following specific technical means:
[0005] The steel wire loading and overturning tool comprises a bottom plate, a movable plate, and a movable shaft.
[0006] The upper side of the bottom plate is provided with a square hole, the inside of the square hole is provided with a sliding groove on both sides, a fixed frame is fixedly connected to the upper side of the rear end of the bottom plate, two groups of rollers are arranged on the fixed frame, a motor box is fixedly connected to the rear end of the bottom plate, the movable plate is arranged in the square hole on the upper side of the bottom plate, a circular hole is arranged at the center end of the movable plate, two groups of positioning pieces A are fixedly connected to the upper side of the rear end of the movable plate, a connecting piece is arranged on the positioning piece A, the movable shaft is arranged in the circular hole at the center end of the movable plate, three groups of grooves are arranged on the movable shaft, and a fixed plate is fixedly connected to the movable shaft.
[0007] Further, a servo motor is arranged in the motor box, the motor shaft penetrates through both sides of the motor box, a storage frame is fixedly connected to both ends of the motor shaft, a cable is stored in the storage frame, the cable is wound around the rollers, and the cable is fixedly connected to the connecting piece.
[0008] Further, pulleys are arranged on both sides of the front end of the movable plate, the pulleys are clamped in the sliding grooves on the inner side of the square hole of the bottom plate, and the front end of the movable plate is arc-shaped on the lower side.
[0009] Further, a bearing is sleeved on the movable shaft, and the outer side surface of the movable shaft is fixedly connected to the inner side surface of the bearing.
[0010] Further, electric expansion plates are fixedly connected to the three groups of grooves on the movable shaft, fixed pieces are fixedly connected to the outer side of the electric expansion plates, and anti-skid pads are connected to the fixed pieces.
[0011] Further, the upper ends of the three groups of fixing members are connected with positioning members B, the upper ends of the positioning members B are fixedly connected with fixing rods, the fixing rods are sleeved with anti-skid sleeves, and the positioning members B are movably connected with baffles.
[0012] Compared with the prior art, the anti-skid device has the following beneficial effects:
[0013] 1. The anti-skid device has the anti-skid pads connected to the fixing members, the anti-skid pads are in direct contact with the steel wire coils, and the anti-skid pads can effectively increase the friction between the anti-skid pads and the steel wire coils after the steel wire coils are clamped, so that the unnecessary movement of the steel wire coils can be greatly prevented.
[0014] 2. The anti-skid device has the electrically flexible plates fixedly connected in the three groups of grooves on the movable shafts, and the electrically flexible plates can be flexibly driven to adjust the positions of the fixing members and the anti-skid pads by controlling the extension and retraction of the electrically flexible plates, so that more steel wire coils with different diameters can be adapted, and the application range and practicability of the device are improved.
[0015] 3. The anti-skid device has the fixing rods fixedly connected to the upper ends of the positioning members B, and the fixing rods are sleeved with the anti-skid sleeves, so that the anti-skid sleeves can increase the friction between the anti-skid sleeves and the steel wire coils with small diameters, the anti-skid sleeves can be stably sleeved on the fixing rods, and the steel wire coils with small diameters can be firmly fixed in subsequent operations. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 is a structural schematic view of the utility model.
[0017] Figure 2 is a sectional structure schematic view of the bottom plate of the utility model.
[0018] Figure 3 is a sectional structure schematic view of the movable plate of the utility model.
[0019] Figure 4 is a sectional structure schematic view of the movable shaft of the utility model.
[0020] Figure 5 is a structural schematic view of the positioning member B, the fixing rod and the baffle of the utility model.
[0021] In the drawings, the correspondence between the component names and the drawing numbers is as follows:
[0022] 1, bottom plate; 2, fixed frame; 3, motor box; 4, storage rack; 5, cable; 6, roller; 7, movable plate; 8, positioning piece A; 9, movable shaft; 10, fixed plate; 11, connecting piece; 12, pulley; 13, non-slip pad; 14, bearing; 15, electrical expansion plate; 16, fixing piece; 18, positioning piece B; 19, fixed rod; 20, non-slip sleeve; 21, baffle. DETAILED DESCRIPTION
[0023] The embodiments of the present application will be further described in detail below with reference to the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.
[0024] Embodiment:
[0025] As shown in the accompanying drawings Figure 1 to the accompanying drawings Figure 5 As shown in the accompanying drawings
[0026] The utility model provides a steel wire loading turnover tool, including bottom plate 1, movable plate 7, movable shaft 9;
[0027] The upper side of bottom plate 1 is provided with a square hole, the inside of square hole is provided with a chute on both sides, and a fixed frame 2 is fixedly connected to the upper side of the rear end of bottom plate 1, two groups of rollers 6 are arranged on fixed frame 2, a motor box 3 is fixedly connected to the rear end of bottom plate 1, movable plate 7 is arranged in the square hole on the upper side of bottom plate 1, a circular hole is arranged in the center end of movable plate 7, two groups of positioning pieces A 8 are fixedly connected to the upper side of the rear end of movable plate 7, connecting pieces 11 are arranged on positioning pieces A 8, movable shaft 9 is arranged in the circular hole in the center end of movable plate 7, three groups of grooves are arranged on movable shaft 9, and fixed plates 10 are fixedly connected to movable shaft 9.
[0028] Among them, as shown in the accompanying drawings Figure 2 and Figure 3As shown, the inside of the motor box 3 is mounted with a servo motor, and the motor shaft passes through both sides of the motor box 3, and the motor shaft is fixedly connected with the receiving rack 4, the receiving rack 4 receives the cable 5, the cable 5 passes through the roller 6, and is fixedly connected with the connecting piece 11, the front end of the movable plate 7 is provided with a pulley 12 on both sides, and the pulley 12 is clamped in the slide groove on the inside of the square hole of the bottom plate 1, the front end of the movable plate 7 is arc-shaped, and through the operation of the servo motor, it drives the receiving rack 4 to rotate, starts to receive the cable 5, the cable 5 generates a pulling force on the connecting piece 11, and then drives the movable plate 7 connected thereto to slowly lift upward, and the pulley 12 is tightly clamped in the slide groove on the inside of the square hole of the bottom plate 1. This structure not only provides stable support for the overturning movement of the movable plate 7, ensures that the movable plate 7 does not shake or deviate during the coil overturning process, but also accurately limits the movement track of the movable plate 7, so that it can only overturn along the predetermined path. When the servo motor reverses the operation and drives the receiving rack 4 to pay off the cable 5, the movable plate 7 loses the upward pulling force of the cable 5 and tilts backward under the action of its own gravity, and the arc-shaped structure at the lower side of the front end of the movable plate 7 plays a role, so that the movable plate 7 tilts backward and smoothly completes the overturning action, and prepares for subsequent operation.
[0029] As shown in the drawings, the movable shaft 9 is sleeved with the bearing 14, and the outer surface of the movable shaft 9 is fixedly connected with the inner surface of the bearing 14. Figure 3 and Figure 4 As shown, the movable shaft 9 is sleeved with the bearing 14, and the outer surface of the movable shaft 9 is fixedly connected with the inner surface of the bearing 14. When the utility model is used for clamping and fixing the steel wire coil, the bearing 14 can greatly reduce the friction between the movable shaft 9 and the external components. In the subsequent feeding operation process, the steel wire coil sleeved on the movable shaft 9 can rotate smoothly and easily due to the low friction characteristic of the bearing 14, greatly improving the flexibility of the coil rotation and providing a strong guarantee for efficient and accurate subsequent feeding operation, ensuring that the entire feeding process can be carried out smoothly.
[0030] As shown in the drawings, the movable shaft 9 is sleeved with the bearing 14, and the outer surface of the movable shaft 9 is fixedly connected with the inner surface of the bearing 14. Figure 4 As shown, the movable shaft 9 is sleeved with the bearing 14, and the outer surface of the movable shaft 9 is fixedly connected with the inner surface of the bearing 14. When the utility model is used for clamping and fixing the steel wire coil, the bearing 14 can greatly reduce the friction between the movable shaft 9 and the external components. In the subsequent feeding operation process, the steel wire coil sleeved on the movable shaft 9 can rotate smoothly and easily due to the low friction characteristic of the bearing 14, greatly improving the flexibility of the coil rotation and providing a strong guarantee for efficient and accurate subsequent feeding operation, ensuring that the entire feeding process can be carried out smoothly.
[0031] As shown in Figure 5 The upper end of the three sets of fixing members 16 is connected with a positioning member B 18, the upper end of the positioning member B 18 is fixedly connected with a fixed rod 19, the fixed rod 19 is sleeved with an anti-skid sleeve pipe 20, the positioning member B 18 is movably connected with a baffle 21, the anti-skid sleeve pipe 20 can increase the friction between the anti-skid sleeve pipe 20 and the steel wire coil when some steel wire coils with small diameters are sleeved on the fixed rod 19, so that the steel wire coils with small diameters are stably sleeved on the fixed rod 19, and it is ensured that the steel wire coils with small diameters can also be firmly fixed in subsequent operations, the baffle 21 plays an important auxiliary fixing role, effectively blocks the steel wire coils with large diameters during the overturning operation of the device, prevents the steel wire coils with large diameters from falling due to shaking or centrifugal force in the overturning process, and greatly improves the safety and stability of the entire clamping and overturning process.
[0032] The specific use mode and role of the embodiment are as follows:
[0033] As shown in Figures 1 to 5 In the utility model, through the operation of the servo motor, it drives the storage rack 4 to rotate, starts the storage operation of the cable 5, the cable 5 generates a pulling force to the connecting piece 11, and then drives the rear end of the movable plate 7 connected therewith to slowly lift upward, the pulley 12 is tightly clamped in the sliding groove on the inner side of the square hole of the bottom plate 1, this structure not only provides stable support for the overturning movement of the movable plate 7, ensures that the movable plate 7 does not shake or deviate in the coil overturning process, but also accurately limits the movement track of the movable plate 7, so that it can only overturn along the predetermined path, when the servo motor reverses the operation and drives the storage rack 4 to pay off the cable 5, the movable plate 7 loses the upward pulling force of the cable 5 and tilts backward under the action of its own gravity, the arc-shaped structure on the front end of the movable plate 7 plays a role, so that the movable plate 7 tilts backward and smoothly completes the overturning action, prepares for the subsequent operation, the anti-skid pad 13 directly contacts the steel wire coil, and the anti-skid pad 13 can effectively increase the friction between the anti-skid pad 13 and the coil by virtue of the anti-skid property, even when the overturning operation is carried out subsequently, the steel wire coil can also be greatly prevented from moving unnecessarily, and the stability and reliability of the entire clamping process are ensured.
[0034] The parts not described in the utility model are the known technology of those skilled in the art.
Claims
1. A steel wire feeding and overturning tool, characterized in that: It include base plate (1), movable plate (7) and movable shaft (9); The upper side of the base plate (1) is provided with a square hole, the inside of the square hole is provided with a chute on both sides, and a fixed frame (2) is fixedly connected to the upper side of the rear end of the base plate (1), two groups of rollers (6) are arranged on the fixed frame (2), a motor box (3) is fixedly connected to the rear end of the base plate (1), the movable plate (7) is arranged in the square hole on the upper side of the base plate (1), a circular hole is arranged at the center end of the movable plate (7), two groups of positioning pieces A (8) are fixedly connected to the upper side of the rear end of the movable plate (7), a connecting piece (11) is arranged on the positioning piece A (8), the movable shaft (9) is arranged in the circular hole at the center end of the movable plate (7), and three groups of grooves are arranged on the movable shaft (9), and a fixed plate (10) is fixedly connected to the movable shaft (9).
2. The steel wire loading and overturning tooling according to claim 1, characterized in that: The inside of the motor box (3) is provided with a servo motor, and the motor shaft penetrates out of both sides of the motor box (3), the cable (5) is accommodated in the receiving frame (4) on the receiving frame (4), the cable (5) passes around the roller (6), and is fixedly connected with the connecting piece (11).
3. The steel wire loading and turning device according to claim 1, characterized in that: The front end of the movable plate (7) is provided with a pulley (12) on both sides, and the pulley (12) is clamped in the chute inside the square hole of the base plate (1), and the front end of the movable plate (7) is arc-shaped on the lower side.
4. The steel wire loading and turning device according to claim 1, wherein: The movable shaft (9) is sleeved with a bearing (14), and the outer surface of the movable shaft (9) is fixedly connected with the inner surface of the bearing (14).
5. The steel wire loading and turning device according to claim 1, characterized in that: The movable shaft (9) is fixedly connected with three groups of electric expansion plates (15) in the grooves, the outer side of the electric expansion plate (15) is fixedly connected with a fixing piece (16), and the fixing piece (16) is connected with an anti-skid pad (13).
6. The steel wire loading and turning device according to claim 5, characterized in that: The upper end of the three groups of fixing pieces (16) is connected with a positioning piece B (18), the upper end of the positioning piece B (18) is fixedly connected with a fixed rod (19), the fixed rod (19) is sleeved with an anti-skid sleeve (20), and the positioning piece B (18) is movably connected with a baffle (21).