CN222593049U - A winding and bundling machine for electric wire production - Google Patents

A winding and bundling machine for electric wire production Download PDF

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Publication number
CN222593049U
CN222593049U CN202421389687.8U CN202421389687U CN222593049U CN 222593049 U CN222593049 U CN 222593049U CN 202421389687 U CN202421389687 U CN 202421389687U CN 222593049 U CN222593049 U CN 222593049U
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China
Prior art keywords
winding
wire
evenly distributed
bundling machine
seats
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CN202421389687.8U
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Chinese (zh)
Inventor
李秀杰
白丽换
郭会英
陈万里
和洋
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Henan Weicheng Optical Cable Co ltd
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Henan Weicheng Optical Cable Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/82Recycling of waste of electrical or electronic equipment [WEEE]

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Abstract

本实用新型公开了一种电线生产用缠绕成束机,包括支撑架;支撑架:其右壁通过轴承转动连接有缠绕轴,缠绕轴的外侧右端设有均匀分布的旋转座,旋转座之间通过转轴转动连接有均匀分布的放线盘,左侧的旋转座的右侧通过均匀分布的伸缩柱一和弹簧一固定连接有均匀分布的挤压座,弹簧一均与相邻的伸缩柱一的外端活动套接,挤压座均与相邻的放线盘配合安装,缠绕轴的外侧左端分别设有缠绕盘和弧形壳,缠绕盘的内部开设有均匀分布的穿线孔,该电线生产用缠绕成束机,通过弹性挤压元件从而对放线盘放线过程中进行旋转限制,从而避免电线缠绕成束过程中出现缠绕松弛现象,使用方便。

The utility model discloses a winding and bundling machine for electric wire production, comprising a support frame; the support frame: the right wall of the support frame is rotatably connected with a winding shaft through a bearing, the outer right end of the winding shaft is provided with evenly distributed rotating seats, evenly distributed wire-releasing drums are rotatably connected between the rotating seats through rotating shafts, the right side of the left rotating seat is fixedly connected with evenly distributed extrusion seats through evenly distributed telescopic columns and springs, the springs are movably sleeved with the outer ends of adjacent telescopic columns, the extrusion seats are matched and installed with adjacent wire-releasing drums, the outer left end of the winding shaft is respectively provided with a winding drum and an arc shell, evenly distributed threading holes are opened inside the winding drum, the winding and bundling machine for electric wire production limits the rotation of the wire-releasing drum during the wire-releasing process through elastic extrusion elements, thereby avoiding the phenomenon of winding looseness during the wire winding and bundling process, and is easy to use.

Description

Winding bundling machine for wire production
Technical Field
The utility model relates to the technical field of wire winding and bundling, in particular to a winding and bundling machine for wire production.
Background
The electric wire refers to a wire for transmitting electric energy, the wire is divided into a bare wire, an electromagnetic wire and an insulating wire, the bare wire is not provided with an insulating layer and comprises copper, aluminum flat wires, overhead stranded wires and various sectional materials (such as molded lines, buses, copper bars, aluminum bars and the like), the wire is mainly used for outdoor overhead and indoor bus bars and switch boxes, the wire is required to be wound together through a bunching machine in the production process, and part of the wire is wound into the bunching machine for production, and the bunching machine comprises a base and a driving mechanism; the wire winding device comprises a base, wherein a vertical plate is arranged on the right side of the upper end of the base, a mounting rod is rotatably connected in a mounting groove arranged at the left end of the vertical plate through a bearing, a wire spool is arranged on the left side of the outer cambered surface of the mounting rod, wiring grooves are respectively arranged at the right end of the wire spool, a plurality of wire reels are arranged at the right end of the mounting rod and are rotatably connected through the bearing, when a plurality of wires are wound into a bundle, the initial ends of the wires wound in the wire reels penetrate through the corresponding wiring grooves, then the mounting rod is rotated through a driving mechanism, so that the plurality of wires in the wire reels are wound into a bundle at the left end of the wire reels, however, in the wire winding and bundling process of the device, the wire reels are rotated around the axis of the wire reels through corresponding winding and bundling tightening force of the wires, if the length of the wires which are spirally discharged out of the wire reels exceeds the wire paying-off amount required in the winding and bundling process, the wire winding and loosening phenomenon can be caused, and the wire winding and bundling are required to be improved.
Disclosure of utility model
The utility model aims to overcome the existing defects, and provides a winding bundling machine for wire production, which is used for limiting rotation of a paying-off reel in the paying-off process by an elastic extrusion element, so that the phenomenon of winding relaxation in the wire winding bundling process is avoided, the use is convenient, and the problems in the background art can be effectively solved.
In order to achieve the aim, the utility model provides the technical scheme that the winding and bundling machine for wire production comprises a supporting frame;
The right wall of the support frame is rotationally connected with a winding shaft through a bearing, the right end of the outer side of the winding shaft is provided with evenly distributed rotating seats, evenly distributed pay-off reels are rotationally connected between the rotating seats through rotating shafts, the right side of the left rotating seat is fixedly connected with evenly distributed extrusion seats through evenly distributed telescopic posts I and springs I, the springs I are movably sleeved with the outer ends of adjacent telescopic posts I, the extrusion seats are matched and installed with adjacent pay-off reels, the left end of the outer side of the winding shaft is respectively provided with a winding disc and an arc-shaped shell, evenly distributed threading holes are formed in the winding disc, and the device rotationally limits the pay-off reels in the paying-off process through elastic extrusion elements, so that the phenomenon of winding looseness in the wire winding and bundling process is avoided, and the device is convenient to use.
Further, a control switch is arranged on the right side of the supporting frame, the input end of the control switch is electrically connected with an external power supply, and the control of the electrical elements is convenient.
Further, the right side of support frame is connected with the drive shaft through the bearing rotation, and the right-hand member of drive shaft and winding axle all is equipped with the belt pulley, is connected through belt transmission between the belt pulley, and the right wall of support frame is equipped with the motor, and the input of motor is connected with control switch's input electricity, and the output shaft of motor and the right-hand member fixed connection of drive shaft provide power for the device to the electric wire winding bundle.
Further, the right side of the extrusion seat is provided with a rubber ring, so that the contact friction force between the extrusion seat and the pay-off reel is increased.
Further, the wire winding device also comprises a wire seat, wherein the wire seat is uniformly arranged on the outer cambered surface of the rotary seat at the left side, and wires in the wire releasing disc are wound into bundles for guiding.
Further, the outside left end of winding axle is equipped with the go-between, and the outside of go-between is equipped with evenly distributed's receipts holding ring through flexible post two and spring two, and spring two all cup joints with the outer end activity of adjacent flexible post two, thereby carries out elasticity through the compression elasticity of spring two to the wire between wire holder and the through wires hole and tightens up, further avoids the wire winding to take place winding relaxation phenomenon in-process.
Further, evenly distributed cross semicircle grooves are formed in the wire seat, the tightening ring and the threading hole, rotating balls are slidably connected in the cross semicircle grooves, and contact abrasion among the wire seat, the tightening ring, the threading hole and corresponding wires is reduced in the wire winding and bundling process.
Compared with the prior art, the winding and bundling machine for producing the electric wire has the advantages that:
In the wire winding and bundling process, the wires are wound and bundled by tightening force so that the wires drive the corresponding pay-off reels to rotate around the axes of the wires, in the process, the extrusion force is applied to the pay-off reels by the extrusion seats through the compression elasticity of the first spring, so that extrusion friction force between the wire-off reels and adjacent extrusion seats needs to be overcome when the wire-off reels are in autorotation and paying-off, the autorotation of the pay-off reels is limited, the phenomenon that the length of the paid-off wires exceeds the wire paying-off amount required in the winding and bundling process due to unrestricted autorotation is avoided, the phenomenon that the wires wound and bundled are easy to occur is avoided, the contact friction force between the extrusion seats and the pay-off reels is increased through the rubber ring, and the wire production is rotationally limited in the paying-off reels paying-off process through the elastic extrusion element, so that the phenomenon that the wire winding and bundling phenomenon occurs is avoided, and the wire winding and bundling machine is convenient to use.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
Fig. 2 is an enlarged schematic view of the structure of the present utility model at a.
In the figure, a supporting frame 1, a control switch 2, a winding shaft 3, a rotating seat 4, a rotating shaft 5, a paying-off disc 6, a telescopic column I7, a spring I9, a squeezing seat 10, a rubber ring 11, a wire seat 12, a telescopic column II 13, a spring II 14, a tightening ring 15, a winding disc 16, a threading hole 17, an arc-shaped shell 18, a belt pulley 19, a belt 20, a motor 21 and a rotating ball 22 are arranged.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-2, the embodiment provides a technical scheme that a winding and bundling machine for wire production comprises a supporting frame 1;
Support frame 1: the right wall of the winding shaft 3 is rotationally connected with the winding shaft 3 through a bearing, the right end of the outer side of the winding shaft 3 is provided with evenly distributed rotating seats 4, evenly distributed pay-off reels 6 are rotationally connected between the rotating seats 4 through rotating shafts 5, the right side of the left rotating seat 4 is fixedly connected with evenly distributed extrusion seats 9 through evenly distributed telescopic posts 7 and springs 8, the springs 8 are movably sleeved with the outer ends of the adjacent telescopic posts 7, the extrusion seats 9 are cooperatively installed with the adjacent pay-off reels 6, the left end of the outer side of the winding shaft 3 is respectively provided with a winding disc 16 and an arc-shaped shell 18, evenly distributed threading holes 17 are formed in the winding disc 16, the right side of the supporting frame 1 is provided with a control switch 2, the input end of the control switch 2 is electrically connected with an external power supply, the right side of the supporting frame 1 is rotationally connected with a driving shaft through a bearing, the right end of drive shaft and winding axle 3 all is equipped with belt pulley 19, pass through belt 20 transmission connection between the belt pulley 19, the right wall of support frame 1 is equipped with motor 21, motor 21's input is connected with control switch 2's input electricity, motor 21's output shaft and drive shaft's right-hand member fixed connection, the right side of extrusion seat 9 all is equipped with rubber ring 10, still include wire seat 11, wire seat 11 evenly sets up the extrados in left rotary seat 4, the outside left end of winding axle 3 is equipped with go-between 12, the outside of go-between 12 is equipped with evenly distributed's receipts holding ring 15 through telescopic post two 13 and spring two 14, spring two 14 all cup joints with the outer activity of adjacent telescopic post two 13, when twining into a bundle to many wires in the wire production process, at first, the initial ends of the wire on the pay-off reel 6 pass adjacent wire seat 11 respectively in proper order, The tightening ring 15 and the threading hole 17 are wound and twisted at the left end of the arc-shaped shell 18, in the process, the tightening ring 15 is pressed to enable the telescopic end of the telescopic post II 13 and the spring II 14 to be contracted, then a wire wound into a bundle passes through a guide hole on the right wall of the support frame 1 and is connected with an external traction device, then the switch 2 is controlled to start the motor 21 to enable the output shaft of the motor to drive the driving shaft to rotate, the driving shaft drives the winding shaft 3 to rotate through belt transmission between the belt pulleys 19 and the belt 20, the diameters of the two belt pulleys 19 are different, belt transmission is realized, the winding shaft 3 drives the rotating seat 4 and the winding disc 16 to rotate, a plurality of wires are bundled at the left Fang Chanrao of the arc-shaped shell 18, meanwhile, the wire wound into a bundle is collected through the external traction device, in the wire winding and bundling process, each wire drives the corresponding paying-off disc 6 to rotate around the axis of the motor through the winding bundle tightening force of the wires, in the process, the extrusion seat 9 applies extrusion force to the pay-off reel 6 through the compression elastic force of the first spring 8, so that extrusion friction force between the pay-off reel 6 and the adjacent extrusion seat 9 needs to be overcome when the pay-off reel 6 rotates and pays out, the rotation of the pay-off reel 6 is limited, the phenomenon that the length of a paid-out wire exceeds the wire paying-off amount required in the winding and bundling process due to unrestricted rotation of the pay-off reel 6 is avoided, the phenomenon that the wire wound and bundled easily occurs, the contact friction force between the extrusion seat 9 and the pay-off reel 6 is increased through the rubber ring 10, meanwhile, the wire between the wire seat 11 and the threading hole 17 is elastically tightened through the compression elastic force of the second spring 14, the phenomenon that the wire is wound and loosened in the winding and bundling process is further avoided, the winding and bundling effect of the device on the wire is effectively improved, according to the winding bundling machine for wire production, the elastic extrusion element is used for limiting rotation of the paying-off reel 6 in the paying-off process, so that the phenomenon of winding relaxation in the wire winding bundling process is avoided, and the use is convenient;
wherein, evenly distributed's semicircle groove has all been seted up to wire holder 11, tightening ring 15 and threading hole 17's inside, and the inside of semicircle groove all sliding connection has swivel ball 22, and the electric wire winding in-process of bundling, wire and the contact of corresponding swivel ball 22, and swivel ball 22 is around the self-adaptation of corresponding semicircle groove, through reducing area of contact to reduce the contact wear between wire holder 11, tightening ring 15 and threading hole 17 and the wire that corresponds.
The working principle of the winding bundling machine for wire production provided by the utility model is as follows: when a plurality of wires are wound into a bundle in the wire production process, firstly, the initial ends of the wires on the pay-off reel 6 sequentially pass through the adjacent wire seat 11, the tightening ring 15 and the threading hole 17 respectively, and are wound and twisted at the left end of the arc-shaped shell 18, in the process, the tightening ring 15 is pressed to enable the telescopic end of the telescopic post II 13 and the spring II 14 to shrink, then the wires wound into a bundle pass through the guide hole on the right wall of the support frame 1 and are connected with an external traction device, then the switch 2 is controlled to start the motor 21 to enable the output shaft thereof to drive the driving shaft to rotate, the driving shaft is driven by a belt between the belt pulley 19 and the belt 20 to enable the winding shaft 3 to rotate, the diameters of the two belt pulleys 19 are different, thereby realizing belt transmission, the winding shaft 3 drives the rotating seat 4 and the winding disc 16 to rotate, thereby enabling the plurality of wires to be bundled at the left Fang Chanrao of the arc-shaped shell 18, meanwhile, the electric wires wound into bundles are collected through an external traction device, in the process of winding the electric wires into bundles, the wires are wound into bundles by the tightening force of the wires, so that the wires drive the corresponding pay-off reels 6 to rotate around the axes of the wires, in the process, the extrusion seats 9 apply extrusion force to the pay-off reels 6 through the compression elasticity of the springs 8, so that extrusion friction force between the adjacent extrusion seats 9 needs to be overcome when the pay-off reels 6 rotate and pay-off is required, the rotation of the pay-off reels 6 is limited, the phenomenon that the length of the paid-off wires exceeds the wire paying-off amount required in the process of winding into bundles due to unrestricted rotation of the pay-off reels 6 is avoided, the phenomenon that the wires wound into bundles are wound and loosened easily occurs is avoided, the contact friction force between the extrusion seats 9 and the pay-off reels 6 is increased through the rubber ring 10, simultaneously, the wire between the wire seat 11 and the threading hole 17 is elastically tightened through the compression elastic force of the second spring 14, so that the winding and loosening phenomenon in the wire winding and bundling process is further avoided, the wire winding and bundling effect of the device on the wire is effectively improved, meanwhile, in the wire winding and bundling process, the wire is contacted with the corresponding rotating ball 22, the rotating ball 22 rotates around the corresponding semicircular groove in a self-adaptive manner, and the contact abrasion among the wire seat 11, the tightening ring 15, the threading hole 17 and the corresponding wire is reduced through reducing the contact area.
It should be noted that the motor 21 disclosed in the above embodiment may employ Y80M1-2, and the control switch 2 is provided with a control button corresponding to the motor 21 for controlling the switch thereof.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes or direct or indirect application in other related technical fields are included in the scope of the present utility model.

Claims (7)

1. The winding and bundling machine for wire production is characterized by comprising a supporting frame (1);
The right wall of the support frame (1) is rotationally connected with a winding shaft (3) through a bearing, the right end of the outer side of the winding shaft (3) is provided with evenly distributed rotating seats (4), evenly distributed pay-off reels (6) are rotationally connected between the rotating seats (4) through rotating shafts (5), the right side of the left rotating seat (4) is fixedly connected with evenly distributed extrusion seats (9) through evenly distributed telescopic columns I (7) and springs I (8), the springs I (8) are movably sleeved with the outer ends of adjacent telescopic columns I (7), the extrusion seats (9) are matched and installed with the adjacent pay-off reels (6), the outer left ends of the winding shafts (3) are respectively provided with winding discs (16) and arc-shaped shells (18), and evenly distributed threading holes (17) are formed in the winding discs (16).
2. The winding and bundling machine for wire production according to claim 1, characterized in that the right side of the supporting frame (1) is provided with a control switch (2), and the input end of the control switch (2) is electrically connected with an external power supply.
3. The winding and bundling machine for wire production according to claim 2, wherein the right side of the supporting frame (1) is rotatably connected with a driving shaft through a bearing, belt pulleys (19) are respectively arranged at the right ends of the driving shaft and the winding shaft (3), the belt pulleys (19) are in transmission connection through a belt (20), a motor (21) is arranged at the right wall of the supporting frame (1), the input end of the motor (21) is electrically connected with the input end of the control switch (2), and the output shaft of the motor (21) is fixedly connected with the right end of the driving shaft.
4. The wire winding machine for producing electric wires according to claim 1, characterized in that the right side of the extrusion seat (9) is provided with rubber rings (10).
5. The winding and bundling machine for electric wire production according to claim 1, characterized by further comprising a wire holder (11), wherein the wire holder (11) is uniformly arranged on the outer arc surface of the rotary holder (4) on the left side.
6. The wire production winding and bundling machine according to claim 5, wherein a connecting ring (12) is arranged at the left end of the outer side of the winding shaft (3), uniformly distributed tightening rings (15) are arranged on the outer side of the connecting ring (12) through a second telescopic column (13) and a second spring (14), and the second spring (14) is movably sleeved with the outer end of the second telescopic column (13) which is adjacent to the second telescopic column.
7. The wire winding and bundling machine according to claim 6, characterized in that the wire seat (11), the tightening ring (15) and the threading hole (17) are provided with uniformly distributed semicircular grooves, and the inside of each semicircular groove is slidably connected with a rotating ball (22).
CN202421389687.8U 2024-06-18 2024-06-18 A winding and bundling machine for electric wire production Active CN222593049U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421389687.8U CN222593049U (en) 2024-06-18 2024-06-18 A winding and bundling machine for electric wire production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421389687.8U CN222593049U (en) 2024-06-18 2024-06-18 A winding and bundling machine for electric wire production

Publications (1)

Publication Number Publication Date
CN222593049U true CN222593049U (en) 2025-03-11

Family

ID=94848840

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421389687.8U Active CN222593049U (en) 2024-06-18 2024-06-18 A winding and bundling machine for electric wire production

Country Status (1)

Country Link
CN (1) CN222593049U (en)

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