Winding device for steel wire production
By introducing wire clamping blocks and guiding structures into the wire production winding device, the problem of wire detaching from the winding drum during the winding process was solved, achieving a stable and efficient winding effect.
Patent Information
- Application Number
- CN202423063941.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-12
AI Technical Summary
In existing technologies, when steel wire is wound onto the winding drum, it is prone to detachment due to excessive tension, which affects the stability and efficiency of the winding process.
A wire production winding device was designed, including a wire clamping block and a guide structure. The wire clamping block is provided with a wire clamping groove and a wire clamping protrusion for fixing the end of the wire. The guide block and guide rod are used for guidance. The drive motor and lead screw are used to control the winding process and ensure stable winding of the wire.
It improves the stability and efficiency of wire winding, avoids the phenomenon of wire detaching from the winding drum during the winding process, and improves work efficiency.
Smart Images

Figure CN223475955U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a steel wire winding device, specifically a steel wire production winding device. Background Technology
[0002] After the steel wire is processed, it needs to be wound onto a winding drum for storage. In existing technology, before winding the wire onto the drum, one end of the wire must first be wrapped around the drum and fixed in place, or the wire must be manually wound multiple times onto the drum before being pulled and wound onto the drum as it rotates. However, in existing technology, at the beginning of winding, excessive force pulling the wire often causes one end of the wire to detach from the drum, preventing normal winding and causing problems for the entire winding process and affecting work efficiency. Therefore, a steel wire production winding device is proposed. Utility Model Content
[0003] The purpose of this invention is to provide a wire production winding device to solve the above problems.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a steel wire production winding device, comprising a frame, characterized in that it further comprises a winding frame slidably mounted on the frame, a winding drum movably mounted on the winding frame, and a motor mounted on the frame for driving the winding drum to move; it further comprises a wire guide mounted on the frame and a guide block slidably mounted on the frame for guiding the steel wire; it further comprises a wire clamping block mounted on the winding drum for fixing the end of the steel wire and facilitating the winding of the steel wire onto the winding drum, wherein the wire clamping block is provided with a wire clamping groove, the upper part of the wire clamping groove is provided with an opening for clamping the wire into the wire clamping groove, and the wire clamping groove is provided with a plurality of wire clamping protrusions for increasing the firmness of the connection between the steel wire and the wire clamping groove and preventing easy detachment.
[0005] More preferably, the upper part of the plurality of wire protrusions is sharply defined.
[0006] A further preferred embodiment includes a drive motor mounted on the frame, a lead screw movably mounted on the lead frame and connected at one end to the drive motor, and a nut seat movably mounted on the lead screw and fixedly connected to the guide block; the lead frame is also equipped with a guide rod slidably connected to the guide block and guiding the movement of the guide block; the guide block is provided with a wire hole, and the two ends of the wire hole are provided with arc chamfers.
[0007] A further preferred embodiment includes a limit switch mounted on the guide frame for detecting the position of the guide block and limiting its reciprocating travel.
[0008] A further preferred embodiment includes a driver movably mounted on the frame for moving the winding frame. The winding frame is provided with a U-shaped limiting groove, and the winding drum has transmission shafts at both ends that are adapted to the U-shaped limiting grooves. A detachable transmission component is connected between the transmission shaft on one side and the motor.
[0009] More preferably, the motor is provided with an output shaft, and both the output shaft and the transmission shaft are provided with protrusions. The transmission component is a connecting sleeve that is fitted onto the protrusion and is arranged in a U-shape. The connecting sleeve and the protrusion are connected by bolts.
[0010] More preferably, the actuator is a pneumatic cylinder or a hydraulic cylinder.
[0011] The beneficial effects of this utility model are as follows: By installing a wire clamping block on the winding drum, one end of the steel wire is clamped on the wire clamping block when the steel wire begins to be wound on the winding drum, which facilitates the winding of the steel wire. At the same time, the steel wire is not easily pulled off when the winding drum is rotating, thereby improving the stability and efficiency of winding. Attached Figure Description
[0012] Appendix Figure 1 This is a schematic diagram of the structure of this utility model;
[0013] Appendix Figure 2 This is a partial structural diagram of the connection between the motor and the winding drum in this utility model;
[0014] Appendix Figure 3 This is a partial structural schematic diagram of the present invention;
[0015] Appendix Figure 4 This is a schematic diagram of the wire-locking block in this utility model;
[0016] Appendix Figure 5 This is a cross-sectional structural diagram of the wire-locking block in this utility model.
[0017] Legend: 1. Frame; 2. Winding frame; 3. Winding drum; 4. Motor; 5. Wire guide; 51. Guide block; 6. Wire clamping block; 61. Wire clamping groove; 62. Opening; 63. Wire clamping protrusion; 7. Drive motor; 71. Lead screw; 72. Nut seat; 73. Guide rod; 74. Wire hole; 8. Limit switch; 9. Driver; 91. U-shaped limit groove; 92. Drive shaft; 93. Transmission component; 94. Output shaft; 95. Protrusion. Detailed Implementation
[0018] The steel wire production winding device of this utility model will be further described below with reference to the accompanying drawings.
[0019] It should be noted that all directional indicators such as up, down, left, right, front, back, etc. in the embodiments of this utility model are only used to explain the relative positional relationship and movement of the components in a specific posture as shown in the attached figure. If the specific posture changes, the directional indicator will also change accordingly.
[0020] In this utility model, unless otherwise explicitly specified and limited, the terms "connection," "fixing," etc., should be interpreted broadly; for example, "fixing" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0021] See Figure 1-5 As shown, a wire production winding device includes a frame 1, characterized in that it further includes a winding frame 2 slidably mounted on the frame 1, a winding drum 3 movably mounted on the winding frame 2, and a motor 4 mounted on the frame 1 for driving the winding drum 3 to move; it also includes a wire guide 5 mounted on the frame 1 and a guide block 51 slidably mounted on the frame 1 for guiding the wire; and a wire clamping block 6 mounted on the winding drum 3 for fixing the end of the wire and facilitating the winding of the wire onto the winding drum 3. The wire clamping block 6 is provided with a wire clamping groove 61, and the upper part of the wire clamping groove 61 is provided with an opening 62 for clamping the wire into the wire clamping groove 61. The wire clamping groove 61 is provided with a plurality of wire clamping protrusions 63 for increasing the connection between the wire and the wire clamping groove 61 and preventing easy detachment.
[0022] By installing a wire clamping block 6 on the winding drum 3, one end of the wire is clamped on the wire clamping block 6 when the wire begins to be wound on the winding drum 3, which facilitates the winding of the wire. At the same time, it is not easy to pull the wire off when the winding drum 3 is rotating, thereby improving the stability and efficiency of winding.
[0023] The upper part of the several wire-locking protrusions 63 is sharply defined;
[0024] The wire-locking groove 61 and the opening 62 are designed to hold the steel wire into the wire-locking groove 61 through the opening 62. Several wire-locking protrusions 63 are provided in the wire-locking groove 61, and the upper part of the wire-locking protrusions 63 is sharp. The purpose is to enhance the firmness of the steel wire in the wire-locking groove 61 and prevent the steel wire from easily coming out of the wire-locking groove 61 due to the pulling force generated on the steel wire when the winding drum 3 starts to rotate.
[0025] In one embodiment, the device further includes a drive motor 7 mounted on the frame 1, a lead screw 71 movably mounted on the guide frame 5 and connected to the drive motor 7 at one end, and a nut seat 72 movably mounted on the lead screw 71 and fixedly connected to the guide block 51; the guide frame 5 is also equipped with a guide rod 73 that is slidably connected to the guide block 51 and guides the movement of the guide block 51; the guide block 51 is provided with a wire hole 74, and the two ends of the wire hole 74 are provided with arc chamfers.
[0026] With the transmission motor 7 in place, when the steel wire is wound onto the winding drum 3, the winding drum 3 rotates while the transmission motor 7 rotates in both directions, driving the lead screw 71 to rotate. The lead screw 71, through its cooperation with the nut seat 72, drives the guide block 51 to reciprocate, thereby evenly winding the steel wire onto the winding drum 3.
[0027] The purpose of setting arc chamfers at both ends of the wire hole 74 is to prevent the edges of the wire hole 74 from damaging the steel wire.
[0028] In one embodiment, a limit switch 8 is also included, which is installed on the guide frame 5 to detect the position of the guide block 51 and limit its reciprocating travel; the limit switch 8 limits the travel of the guide block 51 to prevent overtravel.
[0029] In one embodiment, the device further includes a driver 9 movably mounted on the frame 1 for moving the winding frame 2. The winding frame 2 is provided with a U-shaped limiting groove 91, and the winding drum 3 is provided with transmission shafts 92 at both ends that are adapted to the U-shaped limiting grooves 91. A detachable transmission component 93 is connected between the transmission shaft 92 on one side and the motor 4.
[0030] With the U-shaped limiting groove 91, when the winding drum 3 is installed on the winding frame 2, the drive shaft 92 on the winding drum 3 can be directly inserted into the U-shaped limiting groove 91. When the winding drum 3 is removed, it can also be directly removed from the winding frame 2, which facilitates the disassembly and assembly of the winding drum 3.
[0031] In one embodiment, the motor 4 is provided with an output shaft 94, and both the output shaft 94 and the transmission shaft 92 are provided with protrusions 95. The transmission component 93 is a connecting sleeve that is fitted on the protrusions 95 and is arranged in a U-shape. The connecting sleeve and the protrusions 95 are connected by bolts.
[0032] The detachable transmission component 93 facilitates the connection and disconnection between the transmission shaft 92 on the winding drum 3 and the output shaft 94 of the motor 4. When connecting, simply put the connecting sleeve on the two protrusions 95 and then tighten it by passing the bolt through the connecting sleeve and the protrusions 95. When disassembling, simply unscrew the bolt, remove the connecting sleeve, and the connection between the transmission shaft 92 and the output shaft 94 can be disconnected, and the winding drum 3 can be disassembled.
[0033] In one embodiment, the driver 9 is a pneumatic cylinder or a hydraulic cylinder; the driver 9 is used to drive the winding frame 2 to move. When the winding cylinder 3 is disassembled or assembled, the driver 9 drives it to move out of the winding position, so that the winding cylinder 3 can be disassembled or assembled by equipment, etc., while avoiding interference and collision with other components during disassembly or assembly.
[0034] In use, this invention is as follows: First, the winding drum 3 is installed onto the winding frame 2 manually or by equipment. During installation, the drive shaft 92 is inserted into the U-shaped limiting groove 91. Then, the driver 9 is started, driving the winding frame 2 forward to the set position. Then, the winding drum 3 is rotated so that the protrusion 95 on the drive shaft 92 corresponds at an angle to the protrusion 95 on the output shaft 94 of the motor 4. Then, the connecting sleeve is fitted onto the two protrusions 95, and the protrusions 95 and the connecting sleeve are locked together with bolts. Then, one end of the steel wire is passed through the wire hole 74 of the guide block 51 and locked into the wire slot 61 of the wire clamping block 6. Then, the motor 4 can be started. Machine 4 drives the transmission shaft 92, which in turn drives the winding drum 3 to rotate. As the winding drum 3 rotates, it pulls the steel wire, winding the steel wire onto the winding drum 3. At the same time, the transmission motor 7 is started. The transmission motor 7 drives the lead screw 71 to rotate in both directions. The lead screw 71, through its cooperation with the nut seat 72, drives the guide block 51 to reciprocate, guiding the position of the steel wire wound on the winding drum 3. After the steel wire is wound, the transmission motor 7 and the motor 4 stop operating. Then, the connecting sleeve is removed, and the drive driver 9 moves the winding frame 2 out. Finally, the winding drum 3 is removed from the winding frame 2 using the equipment.
[0035] The scope of protection of this utility model is not limited to the above embodiments and their variations. Conventional modifications and substitutions made by those skilled in the art based on the content of these embodiments are all within the scope of protection of this utility model.
Claims
1. A steel wire production winding device, comprising a frame (1), characterized in that: It also includes a winding frame (2) that slides on the frame (1), a winding drum (3) that is movably mounted on the winding frame (2), and a motor (4) mounted on the frame (1) to drive the winding drum (3) to move; it also includes a wire frame (5) mounted on the frame (1) and a guide block (51) that slides on the wire frame (5) to guide the wire; it also includes a wire clamping block (6) mounted on the winding drum (3) to fix the end of the wire and facilitate winding the wire onto the winding drum (3), the wire clamping block (6) is provided with a wire clamping groove (61), the upper part of the wire clamping groove (61) is provided with an opening (62) for clamping the wire into the wire clamping groove (61), and the wire clamping groove (61) is provided with a number of wire clamping protrusions (63) to increase the connection between the wire and the wire clamping groove (61) and prevent easy separation.
2. The steel wire production winding device according to claim 1, characterized in that: The upper part of the aforementioned several wire protrusions (63) is sharply set.
3. The steel wire production winding device according to claim 1, characterized in that: It also includes a drive motor (7) mounted on the wire frame (5), a lead screw (71) movably mounted on the wire frame (5) and connected to the drive motor (7) at one end, and a nut seat (72) movably mounted on the lead screw (71) and fixedly connected to the guide block (51); the wire frame (5) is also equipped with a guide rod (73) that is slidably connected to the guide block (51) and guides the movement of the guide block (51); the guide block (51) is provided with a wire hole (74), and the two ends of the wire hole (74) are provided with arc chamfers.
4. A steel wire production winding device according to claim 3, characterized in that: It also includes a limit switch (8) installed on the conductor frame (5) to detect the position of the guide block (51) and limit its reciprocating travel.
5. A wire production winding device according to claim 1, characterized in that: It also includes a driver (9) that is movably mounted on the frame (1) for moving the winding frame (2). The winding frame (2) is provided with a U-shaped limiting groove (91). The winding drum (3) is provided with a transmission shaft (92) at both ends that is adapted to the U-shaped limiting groove (91). A detachable transmission component (93) is connected between the transmission shaft (92) on one side and the motor (4).
6. A wire production winding device according to claim 5, characterized in that: The motor (4) is provided with an output shaft (94), and both the output shaft (94) and the transmission shaft (92) are provided with protrusions (95). The transmission component (93) is a connecting sleeve that is fitted on the protrusion (95) and is arranged in a U-shape. The connecting sleeve and the protrusion (95) are connected by bolts.
7. A wire production winding device according to claim 5, characterized in that: The driver (9) is a pneumatic cylinder or a hydraulic cylinder.