Bundled scrap iron wire winding device

By designing a device for bundling and winding waste wire, the problems of irregular stacking of wire and safety hazards were solved, and the orderly winding and safe stacking of wire were achieved.

CN223687830UActive Publication Date: 2025-12-19ZHANGJIAGANG BEIER MACHINERY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423204542.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-19
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

In existing technologies, the wire cut during the unpacking of waste plastic bags is irregularly long and sharp, making it difficult to stack and posing a safety hazard.

Method used

A device for bundling and winding scrap iron wire was designed, comprising a base frame, a wire placement cavity, a wire winding device, a wire limiting and blocking device, a wire pressing device, a wire placement beam, a wire outlet, and a collection box. Through the coordinated operation of a hydraulic system, the device achieves the orderly winding of the iron wire.

Benefits of technology

This allows for the orderly stacking of wires, reducing safety risks for operators.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223687830U_ABST
    Figure CN223687830U_ABST
Patent Text Reader

Abstract

A bale waste iron wire winding device relates to the technical field of waste plastic cleaning and recycling equipment and comprises a bottom frame, a wire containing cavity, a wire winding device, a limiting wire blocking device, a wire pressing device, a wire containing beam, a wire outlet, a collecting box and a hydraulic station. A wire containing cavity is fixed to the bottom frame, a wire winding device and a limiting wire blocking device are arranged on the two sides of the wire containing cavity respectively, a wire pressing device is installed at the upper end of the wire containing cavity, a wire containing beam is fixed in the wire containing cavity, a wire outlet is formed below the wire containing beam, and a collecting box is arranged below the wire outlet. According to the bundling scrap iron wire winding device, treated iron wires are regular in shape and convenient to stack, and danger to operators is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to waste plastics cleaning and recycling equipment technical field, concretely relates to bale waste iron wire winding device. BACKGROUND

[0002] In order to facilitate storage and transportation, usually adopt hydraulic packing machine and compress the waste plastics, when hydraulic packing machine extrudes a certain number of waste plastics to the set volume, through the iron wire, the compressed waste plastics are tied, make the dispersed waste plastics form the package block, and the waste plastics are stacked and transferred, and in the waste plastics cleaning and recycling industry, need to successively carry out unpacking, crushing, cleaning, dehydration and other processes to waste plastics package block, when waste plastics package block enters the recycling production line, need to unpack waste plastics package block, and the unpacking mode usually adopts manual cutting, and then the iron wire is separated, and then the cut iron wire is stacked to a certain specific position of production area. The cut iron wire is irregular strip, and the length is different, and the cutting mouth at the both ends of the iron wire is also relatively sharp, and such iron wire not only has difficulty in stacking, but also has certain safety hazard to the operating personnel. Therefore, the technical personnel in the art provide bale waste iron wire winding device to solve the problems in the background art. SUMMARY

[0003] The utility model discloses a bale waste iron wire winding device to solve the problems in the background art.

[0004] The utility model discloses a technical scheme which is adopted to realize the above-mentioned purpose: it contains the chassis, the silk cavity, the silk winding device, the limit silk blocking device, the silk pressing device, the silk beam, the silk outlet, the collection box and the hydraulic station, the silk cavity is fixed on the chassis, and the silk winding device and the limit silk blocking device are arranged on the both sides of the silk cavity respectively, the silk pressing device is installed on the upper end of the silk cavity, the silk beam is fixed in the silk cavity, the silk outlet is below the silk beam, the collection box is arranged below the silk outlet, the silk winding device contains the silk winding box, the moving guide rail, the moving sliding block, the silk winding moving seat, the silk winding shaft, the hydraulic motor, the silk embedding groove, the silk winding moving cylinder, the silk unloading wallboard and the passing hole, the moving guide rail is installed in the silk winding box, the moving sliding block is slidably connected on the moving guide rail, the silk winding moving seat is fixed on the moving sliding block, the silk winding moving cylinder is drivingly connected with the silk winding moving seat, the hydraulic motor is installed on the silk winding moving seat, the hydraulic motor is drivingly connected with the silk winding shaft, the silk winding shaft is installed and connected with the silk winding moving seat through the bearing, the silk embedding groove is arranged on the end of the silk winding shaft, the silk unloading wallboard is fixed on the silk winding box of the end, the passing hole is arranged on the silk unloading wallboard, the limit silk blocking device contains the limit silk blocking box, the support wallboard, the limit groove, the silk blocking sliding sleeve, the silk blocking sliding rod, the silk blocking sliding rod seat and the silk blocking moving cylinder, the support wallboard is fixed on one side of the limit silk blocking box, the limit groove is arranged on the support wallboard, the silk blocking sliding sleeve is installed on the support wallboard, the silk blocking sliding rod is slidably inserted in the silk blocking sliding sleeve, the end of the silk blocking sliding rod is fixed through the silk blocking sliding rod seat, and the silk blocking moving cylinder is drivingly connected with the silk blocking sliding rod seat, the silk pressing device contains the silk pressing box, the silk pressing wallboard, the silk pressing sliding sleeve, the silk pressing sliding rod, the silk pressing sliding rod seat, the silk pressing moving cylinder, the silk pressing crossbeam seat and the silk pressing crossbeam, the silk pressing crossbeam is arranged above in the silk cavity, the silk pressing crossbeam is fixed on the silk pressing crossbeam seat, the silk pressing sliding rod is connected on the silk pressing crossbeam seat, the silk pressing wallboard is arranged on the upper end of the silk cavity, the silk pressing sliding sleeve is fixed on the silk pressing wallboard, the silk pressing sliding sleeve is slidably sleeved on the outside of the silk pressing sliding rod, the silk pressing sliding rod seat is fixed on the upper end of the silk pressing sliding rod, the silk pressing moving cylinder is drivingly connected with the silk pressing sliding rod seat, and the silk pressing moving cylinder is installed in the silk pressing box, and the hydraulic station is drivingly connected with the hydraulic motor, the silk winding moving cylinder, the silk blocking moving cylinder and the silk pressing moving cylinder respectively.

[0005] Further, the silk blocking sliding sleeve has a plurality of, and is evenly distributed along the circumferential direction, and the silk blocking sliding rod is slidably inserted in each silk blocking sliding sleeve.

[0006] Further, the silk pressing sliding rod has a plurality of, and is evenly distributed along the circumferential direction, and the silk pressing sliding sleeve is slidably sleeved on the outside of each silk pressing sliding rod.

[0007] Further, the silk pressing crossbeam is inverted Y type.

[0008] With the above structure, the beneficial effects of the present application are that the baling waste iron wire winding device can process the iron wire into a regular shape for easy stacking and reduce the danger to the operator. BRIEF DESCRIPTION OF DRAWINGS

[0009] Figure 1 is a structural diagram of the present application;

[0010] Figure 2 is Figure 1 a top view.

[0011] BRIEF DESCRIPTION OF DRAWINGS:

[0012] The bottom frame 1, the wire placing cavity 2, the wire winding device 3, the wire winding box 31, the moving guide rail 32, the moving sliding block 33, the wire winding moving seat 34, the wire winding shaft 35, the hydraulic motor 36, the wire embedding groove 37, the wire winding moving cylinder 38, the wire unloading wall plate 39, the passing hole 310, the limiting wire blocking device 4, the limiting wire blocking box 41, the supporting wall plate 42, the limiting groove 43, the wire blocking sliding sleeve 44, the wire blocking sliding rod 45, the wire blocking sliding rod seat 46, the wire blocking moving cylinder 47, the wire pressing device 5, the wire pressing box 51, the wire pressing wall plate 52, the wire pressing sliding sleeve 53, the wire pressing sliding rod 54, the wire pressing sliding rod seat 55, the wire pressing moving cylinder 56, the wire pressing cross beam seat 57, the wire pressing cross beam 58, the wire placing beam 6, the wire outlet 7, the collecting box 8, and the hydraulic station 9. DETAILED DESCRIPTION

[0013] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained according to these drawings without creative labor for those skilled in the art.

[0014] Referring to FIG. Figure 1 Figure 2 The present embodiment adopts the following technical solutions: it comprises a bottom frame 1, a wire placing cavity 2, a wire winding device 3, a limiting wire blocking device 4, a wire pressing device 5, a wire placing beam 6, a wire outlet 7, a collecting box 8, and a hydraulic station 9; the bottom frame 1 is fixed with the wire placing cavity 2, the wire winding device 3 and the limiting wire blocking device 4 are arranged on both sides of the wire placing cavity 2, the wire pressing device 5 is installed at the upper end of the wire placing cavity 2, the wire placing beam 6 is fixed in the wire placing cavity 2, the wire outlet 7 is below the wire placing beam 6, the collecting box 8 is arranged below the wire outlet 7, and the wound winding iron wire falls into the collecting box 8 in the bottom frame 1 through the wire outlet 7 below the wire placing cavity 2.

[0015] ​The wire winding device 3 comprises a wire winding box 31, a moving guide rail 32, a moving slider 33, a wire winding moving seat 34, a wire winding shaft 35, a hydraulic motor 36, a wire embedding groove 37, a wire winding moving cylinder 38, a wire unloading wall plate 39 and a passing hole 310; the wire winding box 31 is internally provided with the moving guide rail 32, the moving guide rail 32 is slidably connected with the moving slider 33, the moving slider 33 is fixedly provided with the wire winding moving seat 34, the wire winding moving cylinder 38 is drivingly connected with the wire winding moving seat 34, the wire winding moving cylinder 38 is installed on the chassis 1, the hydraulic motor 36 is installed on the wire winding moving seat 34, the hydraulic motor 36 is drivingly connected with the wire winding shaft 35, the wire winding shaft 35 is installedly connected with the wire winding moving seat 34 through a bearing, the wire winding shaft 35 is provided with the wire embedding groove 37 at an end thereof, the wire winding box 31 at the end is fixedly provided with the wire unloading wall plate 39, the wire unloading wall plate 39 is provided with the passing hole 310, the wire winding moving cylinder 38 drives the wire winding moving seat 34 and the wire winding shaft 35 to move rightward, the wire embedding groove 37 is used for clamping a wire, the wire winding shaft 35 passes through the passing hole 310 to enter the wire placing cavity 2, the hydraulic motor 36 drives the wire winding shaft 35 to rotate, and a wire winding action is performed.

[0016] The limiting wire blocking device 4 comprises a limiting wire blocking box 41, a supporting wall plate 42, a limiting groove 43, a wire blocking sliding sleeve 44, a wire blocking sliding rod 45, a wire blocking sliding rod seat 46 and a wire blocking moving cylinder 47; one side of the limiting wire blocking box 41 is fixedly provided with the supporting wall plate 42, the supporting wall plate 42 is provided with the limiting groove 43, the supporting wall plate 42 is installed with a plurality of wire blocking sliding sleeves 44 which are uniformly distributed in a circumferential direction, the wire blocking sliding sleeves 44 are respectively slidably inserted with the wire blocking sliding rods 45, the wire blocking sliding rods 45 are fixedly provided with the wire blocking sliding rod seats 46 at ends thereof, the wire blocking moving cylinder 47 is drivingly connected with the wire blocking sliding rod seats 46, the limiting groove 43 is used for limiting the wire winding shaft 35 to move to the right end, the supporting wall plate 42 is provided with holes for the wire blocking sliding rods 45 to enter and exit, the wire blocking moving cylinder 47 drives the wire blocking sliding rods 45 to move into the wire placing cavity 2, and a wire blocking action is performed.

[0017] The wire pressing device 5 comprises a wire pressing box 51, a wire pressing wall plate 52, a wire pressing sliding sleeve 53, a wire pressing sliding rod 54, a wire pressing sliding rod seat 55, a wire pressing moving oil cylinder 56, a wire pressing beam seat 57 and a wire pressing beam 58; the wire pressing beam 58 is arranged above the wire placing cavity 2, the wire pressing beam 58 is in an inverted Y shape, the wire pressing beam 58 is fixed on the wire pressing beam seat 57, a plurality of wire pressing sliding rods 54 are uniformly distributed in the circumferential direction and connected to the wire pressing beam seat 57, the wire placing cavity 2 is provided with the wire pressing wall plate 52 at the upper end, a plurality of wire pressing sliding sleeves 53 are uniformly distributed in the circumferential direction and fixed on the wire pressing wall plate 52, the wire pressing sliding sleeves 53 are respectively slidably sleeved on the outside of the wire pressing sliding rods 54, the wire pressing sliding rod seat 55 is fixed on the upper end of the wire pressing sliding rod 54, the wire pressing moving oil cylinder 56 is drivingly connected with the wire pressing sliding rod seat 55, the wire pressing moving oil cylinder 56 is installed in the wire pressing box 51, the iron wire is placed on the wire placing beam 6 in the direction perpendicular to the wire placing beam 6, the wire pressing moving oil cylinder 56 drives the wire pressing sliding rod 54 to move downwards to press the iron wire, and the iron wire is fixed in the inverted Y-shaped structure of the wire pressing beam 58.

[0018] The hydraulic station 9 is drivingly connected with the hydraulic motor 36, the wire winding moving oil cylinder 38, the wire blocking moving oil cylinder 47 and the wire pressing moving oil cylinder 56 respectively, and provides power sources for them through the hydraulic station 9.

[0019] The working principle of the utility model is as follows: the operator puts the irregular iron wire cut open into the wire placing beam 6, the wire pressing moving oil cylinder 56 drives the wire pressing sliding rod 54 to move downwards, the iron wire is fixed between the wire pressing beam 58 and the wire placing beam 6, after the telescopic shaft of the wire pressing moving oil cylinder 56 is moved to the position, the telescopic shaft of the wire winding moving oil cylinder 38 moves to the right, the wire winding shaft 35 passes through the passing hole 310, the fixed iron wire is clamped into the wire embedding groove 37 and moves to the limiting groove 43 to the right, after the telescopic shaft of the wire winding moving oil cylinder 38 is moved to the position, the telescopic shaft of the wire blocking moving oil cylinder 47 moves to the left, the wire blocking sliding rod 45 enters the wire placing cavity 2 and is distributed on the circumference outside the wire winding shaft 35, after the telescopic shaft of the wire blocking moving oil cylinder 47 is moved to the position, under the action of the hydraulic motor 36, the wire winding shaft 35 rotates, because the iron wire is clamped into the wire embedding groove 37 on the wire winding shaft 35 and under the action of the wire blocking sliding rod 45, in the process of the rotation of the wire winding shaft 35, the iron wire is gradually wound on the wire winding shaft 35, and the winding state is formed, after the winding is completed, the hydraulic motor 36 rotates to the initial position and stops, the telescopic shaft of the wire winding moving oil cylinder 38 is withdrawn to the left side, when the wire winding shaft 35 passes out of the passing hole 310, the wound winding iron wire is separated from the wire winding shaft 35 under the action of the wire discharging wall plate 39 and falls into the collecting box 8 in the bottom frame 1 through the wire outlet 7 below the wire placing cavity 2, after the telescopic shaft of the wire winding moving oil cylinder 38 moves to the left side to the initial position, the wire blocking moving oil cylinder 47 and the wire pressing moving oil cylinder 56 are sequentially moved to the initial position, and the winding work of the irregular iron wire cut open is completed.

[0020] The basic principle and main features of the present application and the 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 present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A baling wire scrap winding device, characterized by: It contains the chassis, the silk cavity, the silk winding device, the limiting silk blocking device, the silk pressing device, the silk beam, the silk outlet, the collection box and the hydraulic station; the silk cavity is fixed on the chassis, the silk winding device and the limiting silk blocking device are arranged on the both sides of the silk cavity respectively, the silk pressing device is installed on the upper end of the silk cavity, the silk beam is fixed in the silk cavity, the silk outlet is below the silk beam, the collection box is arranged below the silk outlet, the silk winding device contains the silk winding box, the moving guide rail, the moving sliding block, the silk winding moving seat, the silk winding shaft, the hydraulic motor, the silk embedding groove, the silk winding moving cylinder, the silk unloading wall plate and the passing hole; the moving guide rail is installed in the silk winding box, the moving sliding block is slidably connected on the moving guide rail, the silk winding moving seat is fixed on the moving sliding block, the silk winding moving cylinder is drivingly connected with the silk winding moving seat, the hydraulic motor is installed on the silk winding moving seat and drivingly connected with the silk winding shaft, the silk winding shaft is installed and connected with the silk winding moving seat through the bearing, the silk embedding groove is arranged on the end of the silk winding shaft, the silk unloading wall plate is fixed on the end of the silk winding box, the passing hole is arranged on the silk unloading wall plate; the limiting silk blocking device contains the limiting silk blocking box, the supporting wall plate, the limiting groove, the silk blocking sliding sleeve, the silk blocking sliding rod, the silk blocking sliding rod seat and the silk blocking moving cylinder; the supporting wall plate is fixed on one side of the limiting silk blocking box, the limiting groove is arranged on the supporting wall plate, the silk blocking sliding sleeve is installed on the supporting wall plate, the silk blocking sliding rod is slidably inserted in the silk blocking sliding sleeve, the end of the silk blocking sliding rod is fixed through the silk blocking sliding rod seat, and the silk blocking moving cylinder is drivingly connected with the silk blocking sliding rod seat; the silk pressing device contains the silk pressing box, the silk pressing wall plate, the silk pressing sliding sleeve, the silk pressing sliding rod, the silk pressing sliding rod seat, the silk pressing moving cylinder, the silk pressing cross beam seat and the silk pressing cross beam; the silk pressing cross beam is arranged above the silk cavity and fixed on the silk pressing cross beam seat, the silk pressing sliding rod is connected with the silk pressing cross beam seat, the silk pressing wall plate is arranged on the upper end of the silk cavity and fixed with the silk pressing sliding sleeve, the silk pressing sliding sleeve is slidably sleeved on the outside of the silk pressing sliding rod, the silk pressing sliding rod seat is fixed on the upper end of the silk pressing sliding rod, the silk pressing moving cylinder is drivingly connected with the silk pressing sliding rod seat and installed in the silk pressing box; the hydraulic station is drivingly connected with the hydraulic motor, the silk winding moving cylinder, the silk blocking moving cylinder and the silk pressing moving cylinder respectively.

2. The baling wire scrap winding device of claim 1, wherein: The silk blocking sliding sleeve is provided in plurality and uniformly distributed in the circumferential direction, and the silk blocking sliding rod is slidably inserted in each silk blocking sliding sleeve.

3. The baling wire scrap winding device of claim 1, wherein: The silk pressing sliding rod is provided in plurality and uniformly distributed in the circumferential direction, and the silk pressing sliding sleeve is slidably sleeved on the outside of each silk pressing sliding rod.

4. The baling wire scrap winding device of claim 1, wherein: The silk pressing cross beam is in inverted Y shape.