Enameled wire recycling and treating device
By designing the enameled wire recycling and processing equipment, and using the transmission system to realize the crushing and carrying of the enameled wire, the problem of the inability to crush and recycling of enameled wire in the prior art is solved, and effective recycling and processing is achieved.
Patent Information
- Application Number
- PCT/CN2024/131043
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-12-27
- Filing Date
- 2024-11-08
- Publication Date
- 2025-07-03
AI Technical Summary
The prior art cannot realize the crushing and recycling of enameled wire.
An enameled wire recycling and processing equipment is designed, including an installation box group, a crushing group and a transport group. By executing the motor to drive the clutch slide rod and clutch disc transmission, the crushing rod is then driven to rotate, and the crushing rod is realized; at the same time, by executing the motor and the active roller to drive the carrying roller to rotate, the carrying and position adjustment of the enameled wire is realized.
The effective crushing and carrying of the enameled wire is realized, and the recycling and processing of the enameled wire is completed.
Smart Images

Figure CN2024131043_03072025_PF_FP_ABST
Abstract
Description
Enameled wire recycling equipment Technical Field
[0001] The invention belongs to the technical field of enameled wire recycling, and in particular relates to an enameled wire recycling and processing device. Background Art
[0002] For example, a device for recovering enameled wire with patent application number CN202321629861.7 comprises a box body, a filter screen is provided inside the box body and the filter screen is installed inside the fixed frame, a movable assembly is provided on the rear side of the box body, the movable assembly comprises a rotating handwheel, a screw and a fixed plate, the rotating handwheel is connected to the middle part of the fixed plate and the middle part of the rotating handwheel is threadedly connected to the screw, one end of the screw is rotatably connected to the rotating shaft and one end of the rotating shaft is fixedly connected to the filter screen, a motor is provided on the rear side of the box body, one end of the motor is connected to a bearing and a belt is provided on the outside of the bearing, one end of the belt is connected to another bearing, and the front sides of the two bearings are connected to threaded rods, but the disadvantage of this technical solution is that there is no way to achieve the crushing and recovery of the enameled wire.
[0003] Summary of the Invention
[0004] The purpose of the present invention is to provide an enameled wire recycling and processing device to solve the technical problem that there is no way to realize the crushing and recycling of enameled wire.
[0005] To achieve the above-mentioned purpose, the specific technical solution of an enameled wire recycling and processing equipment of the present invention is as follows:
[0006] An enameled wire recycling and processing device comprises an installation box group, a crushing group, and a transporting group. The installation box group is connected to the crushing group, and the transporting group is connected to the installation box group.
[0007] Furthermore, the installation box group includes an installation box body, a middle partition, a through hole, and an installation plate. The middle partition is fixedly installed on the installation box body, a through hole is opened on the middle partition, and there are multiple through holes. The installation plate is fixedly installed on the installation box body.
[0008] Furthermore, the plurality of through holes are arranged in a circumferential array along the central axis of the middle end partition.
[0009] Furthermore, a storage box is fixedly installed on the installation box.
[0010] Furthermore, the crushing group includes a mounting plate 2, a connecting base, an execution motor 1, a clutch slide bar 1, a clutch push spring 1, a clutch disc 1, a clutch disc 2, a mounting column 1, and a crushing rod. The mounting plate 2 is fixedly connected to the mounting box, the mounting plate 2 is fixedly mounted with a connecting base, the connecting base is mounted with an execution motor 1, the output shaft of the execution motor 1 is mounted on the clutch slide bar 1, the clutch slide bar 1 is rotatably mounted on the mounting plate 2, the clutch disc 2 is slidably mounted on the clutch slide bar 1, a clutch push spring 1 is provided between the clutch disc 2 and the clutch slide bar 1, the clutch disc 2 is meshed with the clutch disc 1 for transmission, the clutch disc 1 is fixedly mounted with a mounting column 1, the crushing rod is fixedly mounted on the mounting column 1, and a plurality of crushing rods are provided, and the mounting column 1 is rotatably mounted on the middle-end partition.
[0011] Furthermore, the plurality of pulverizing rods are arranged in a circumferential array along the central axis of the first mounting rotating column.
[0012] Furthermore, the sliding contact surface between the clutch disc 2 and the clutch slide bar 1 is a non-circular structure.
[0013] Furthermore, the carrying group includes a carrying sleeve, a connecting bracket 1, a limiting ring 1, a mounting frame 1, a buffer spring 1, a carrying roller 1, a connecting pulley 1, a driving belt 1, a mounting slider, a connecting bracket 2, a buffer spring 2, a limiting ring 2, a mounting frame 2, a carrying roller 2, a connecting pulley 2, a driving belt 2, an executive motor 2, an active roller 1, an active pulley 1, an executive motor 3, an active pulley 2, an active roller 2, a sliding connecting rod, a positioning slot, and a mounting screw. The carrying sleeve is fixedly installed on the mounting box, and a connecting bracket 1 is fixedly installed on the carrying sleeve by means of the mounting screws. A mounting frame 1 is slidingly limitedly installed on the connecting bracket 1 by means of a limiting ring 1, and a buffer spring 1 is provided between the mounting frame 1 and the connecting bracket 1. A carrying roller 1 is rotatably installed on the mounting frame 1, and a connecting roller 1 is fixedly installed on the carrying roller 1. Pulley one, an executive motor two is installed on the mounting frame one, the output shaft of the executive motor two is installed on the active roller one, the active pulley one is fixedly installed on the active roller one, a driving belt one is installed between the active pulley one and the connecting pulley one, a sliding connecting rod is fixedly installed on the carrying sleeve, a mounting slider is slidably installed on the sliding connecting rod, a connecting bracket two is fixedly installed on the mounting slider, a mounting frame two is slidingly limitedly installed on the connecting bracket two through a limiting ring two, a carrying roller two is rotatably installed on the mounting frame two, a connecting pulley two is fixedly installed on the carrying roller two, an executive motor three is installed on the mounting frame two, the output shaft of the executive motor three is installed on the active roller two, the active roller two is rotatably installed on the connecting bracket two, a driving pulley two is fixedly installed on the active roller two, and a driving belt two is installed between the active pulley two and the connecting pulley two.
[0014] Furthermore, a positioning slot is provided on the sliding connecting rod, and there are multiple positioning slots. A positioning rod is slidably installed on the mounting slide, and a positioning rod push spring is provided between the positioning rod and the mounting slide, and the positioning rod is cooperatively connected with the positioning slot.
[0015] The advantages of the present invention are:
[0016] 1. Start the execution motor 1, which in turn drives the clutch slide bar 1 to rotate, which in turn drives the installation column 1 to rotate through the clutch disc 2 and the clutch disc 1, which in turn drives the crushing rod to rotate through the installation column 1. The crushing rod contacts the enameled wire, thereby crushing the enameled wire and completing the recovery of the enameled wire.
[0017] 2. Start the execution motor 2, and then drive the active roller 1 to rotate through the execution motor 2, and then drive the active pulley 1 to move through the active roller 1, and then drive the connecting pulley 1 to move through the driving belt 1 through the active pulley 1, and then drive the carrying roller 1 to rotate, and through the contact between the carrying roller 1, the active roller 1 and the enameled wire, the enameled wire is carried; at the same time, the installation slider is slid along the sliding connecting rod, and then the connecting bracket 2 is driven to move through the installation slider, and then the contact position of the carrying roller 2 and the active roller 2 with the enameled wire is changed through the connecting bracket 2, thereby realizing the adjustment of the enameled wire carrying position. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] FIG1 is a schematic diagram of the overall structure of the present invention;
[0019] FIG2 is a schematic diagram of the position of the section line of FIG1 ;
[0020] FIG3 is a cross-sectional view along section AA of FIG2 ;
[0021] FIG4 is a schematic structural diagram of an installation box assembly according to the present invention;
[0022] FIG5 is a schematic diagram of the position of the cutting line of FIG4;
[0023] FIG6 is a cross-sectional view along section BB of FIG5 ;
[0024] FIG7 is a schematic diagram of the structure of the pulverizing group of the present invention;
[0025] FIG8 is a schematic diagram of the position of the cutting line of FIG7;
[0026] FIG9 is a cross-sectional view taken along section CC of FIG8 ;
[0027] FIG10 is a schematic diagram of the structure of the carrier group of the present invention;
[0028] FIG11 is a schematic diagram of the position of the section line of FIG10;
[0029] FIG12 is a cross-sectional view of FIG11 along section DD;
[0030] FIG13 is a cross-sectional view of FIG11 along section EE;
[0031] FIG14 is a schematic diagram of the carrier casing structure of the present invention;
[0032] Description of the marks in the figure:
[0033] Mounting box assembly 1; mounting box 1-1; storage box 1-2; middle partition 1-3; through hole 1-4; mounting plate 1-5; crushing assembly 2; mounting plate 2-1; connecting base 2-2; actuator motor 1-2-3; clutch slide bar 1-2-4; clutch push spring 1-2-5; clutch disc 1-2-6; clutch disc 2-7; mounting column 1-2-8; crushing rod 2-9; carrying assembly 3; carrying sleeve 3-1; connecting bracket 1-3-2; limiting ring 1-3-3; mounting bracket 1-3-4; buffer spring 1-3-5; carrying roller 1-3-6; connecting pulley 1-3-7; drive Belt one 3-8; mounting slider 3-9; connecting bracket two 3-10; buffer spring two 3-11; limiting ring two 3-12; mounting frame two 3-13; carrying roller two 3-14; connecting pulley two 3-15; driving belt two 3-16; executing motor two 3-17; active roller one 3-18; active pulley one 3-19; executing motor three 3-20; active pulley two 3-21; active roller two 3-22; sliding connecting rod 3-23; positioning slot 3-24; mounting screw 3-26; positioning lever 3-27; positioning lever push spring 3-28. DETAILED DESCRIPTION
[0034] The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0035] In the description of the present invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limitations on the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0036] Example 1
[0037] As shown in Figure 1-3, an enameled wire recycling and processing equipment includes an installation box group 1, a crushing group 2, and a transporting group 3. The installation box group 1 is connected to the crushing group 2, and the transporting group 3 is connected to the installation box group 1.
[0038] Example 2
[0039] As shown in Figure 4-6, the installation box group 1 includes an installation box body 1-1, a middle partition 1-3, a through hole 1-4, and an installation plate 1-5. The middle partition 1-3 is fixedly installed on the installation box body 1-1, and a through hole 1-4 is opened on the middle partition 1-3, and there are multiple through holes 1-4. The installation plate 1-5 is fixedly installed on the installation box body 1-1.
[0040] Among them, the plurality of through holes 1-4 are arranged in a circumferential array along the central axis of the middle end partition 1-3.
[0041] Wherein, a storage box 1-2 is fixedly installed on the installation box 1-1.
[0042] Example 3
[0043] As shown in Figure 7-9, the crushing group 2 includes a mounting plate 2-1, a connecting base 2-2, an executive motor 2-3, a clutch slide bar 2-4, a clutch push spring 2-5, a clutch disc 2-6, a clutch disc 2-7, a mounting column 2-8, and a crushing rod 2-9. The mounting plate 2-1 is fixedly connected to the mounting box 1-1, and the connecting base 2-2 is fixedly installed on the mounting plate 2-1. The executive motor 2-3 is installed on the connecting base 2-2. The output shaft of the executive motor 2-3 is installed on the clutch slide bar 2-4. The clutch slide bar 2-4 is rotatably installed on the mounting plate 2-1. The clutch disc 2-7 is slidably installed on the clutch slide bar 2-4. A clutch is provided between the clutch disc 2-7 and the clutch slide bar 2-4. The push spring 2-5 is engaged, the clutch disc 2-7 is meshed with the clutch disc 2-6 for transmission, the clutch disc 2-6 is fixedly installed with a mounting column 2-8, the mounting column 2-8 is fixedly installed with a crushing rod 2-9, and there are multiple crushing rods 2-9, the mounting column 2-8 is rotatably installed on the middle-end partition 1-3, so that the execution motor 2-3 is started, and the clutch slide 2-4 is driven to rotate by the execution motor 2-3, and the mounting column 2-8 is driven to rotate by the clutch disc 2 2-7 and the clutch disc 2-6, and the crushing rod 2-9 is driven to rotate by the mounting column 2-8, and the enameled wire is crushed by the crushing rod 2-9 through the contact between the enameled wire and the enameled wire, thereby completing the recovery of the enameled wire.
[0044] Among them, the multiple crushing rods 2-9 are arranged in a circumferential array along the central axis of the mounting rotating column 2-8.
[0045] Among them, the sliding contact surface between the clutch disc 2 2-7 and the clutch slide bar 1 2-4 is a non-circular structure.
[0046] Example 4
[0047] As shown in Figure 10-14, the carrying group 3 includes a carrying sleeve 3-1, a connecting bracket 1 3-2, a limiting ring 1 3-3, a mounting frame 1 3-4, a buffer spring 1 3-5, a carrying roller 1 3-6, a connecting pulley 1 3-7, a driving belt 1 3-8, a mounting slider 3-9, a connecting bracket 2 3-10, a buffer spring 2 3-11, a limiting ring 2 3-12, a mounting frame 2 3-13, a carrying roller 2 3-14, a connecting pulley 2 3-15, a driving belt 2 3-16, an executing motor 2 3-17, an active roller 1 3-18, an active pulley 1 3-19, an executing motor 3 3-20, an active pulley 2 3-21, an active roller 2 3-22, a sliding connecting rod 3-23, a positioning slot 3-24, and an installing member 3-15. The screw 3-26 is installed, and the carrying sleeve 3-1 is fixedly installed on the installation box 1-1. The carrying sleeve 3-1 is fixedly installed with a connecting bracket 3-2 by means of the mounting screw 3-26. The connecting bracket 3-2 is slidingly limited with a mounting frame 3-4 by means of a limiting ring 3-3, and a buffer spring 3-5 is provided between the mounting frame 3-4 and the connecting bracket 3-2. A carrying roller 3-6 is rotatably installed on the mounting frame 3-4, and a connecting pulley 3-7 is fixedly installed on the carrying roller 3-6. An executive motor 2 3-17 is installed on the mounting frame 3-4, and the output shaft of the executive motor 2 3-17 is installed on the active roller 3-18, and the active pulley 3-1 is fixedly installed on the active roller 3-18. 9. A driving belt 3-8 is installed between the active pulley 3-19 and the connecting pulley 3-7. A sliding connecting rod 3-23 is fixedly installed on the carrying sleeve 3-1. A mounting slider 3-9 is slidably installed on the sliding connecting rod 3-23. A connecting bracket 3-10 is fixedly installed on the mounting slider 3-9. A mounting frame 3-13 is slidably limited and installed on the connecting bracket 3-10 through a limiting ring 3-12. A carrying roller 3-14 is rotatably installed on the mounting frame 3-13. A connecting pulley 3-15 is fixedly installed on the carrying roller 3-14. An executive motor 3-20 is installed on the mounting frame 3-13. The output shaft of the executive motor 3-20 is installed on the active roller 3-22. The active roller 3-3 -22 is rotatably mounted on the connecting bracket 2 3-10, a driving pulley 2 3-21 is fixedly mounted on the active roller 2 3-22, and a driving belt 2 3-16 is installed between the active pulley 2 3-21 and the connecting pulley 2 3-15. With this arrangement, the execution motor 2 3-17 is started, and the execution motor 2 3-17 drives the active roller 1 3-18 to rotate, and the active roller 1 3-18 drives the active pulley 1 3-19 to move, and the active pulley 1 3-19 drives the connecting pulley 1 3-7 to move through the driving belt 1 3-8, and the carrying roller 1 3-6 is driven to rotate, and the carrying roller 1 3-6 is carried out by the contact between the active roller 1 3-18 and the enameled wire, thereby realizing the transportation of the enameled wire;At the same time, the installation slider 3-9 slides along the sliding connecting rod 3-23, and then the installation slider 3-9 drives the second connecting bracket 3-10 to move, and then the second connecting bracket 3-10 drives the second carrying roller 3-14 and the second active roller 3-22 to change the contact position with the enameled wire, thereby achieving the adjustment of the enameled wire carrying position.
[0048] Among them, a positioning slot 3-24 is opened on the sliding connecting rod 3-23, and a plurality of positioning slots 3-24 are provided. A positioning rod 3-27 is slidably installed on the mounting slider 3-9, and a positioning rod push spring 3-28 is provided between the positioning rod 3-27 and the mounting slider 3-9. The positioning rod 3-27 is cooperatively connected with the positioning slot 3-24.
[0049] It will be understood that the present invention is described by way of some embodiments, and it will be appreciated by those skilled in the art that various changes or equivalent substitutions may be made to these features and embodiments without departing from the spirit and scope of the present invention. In addition, under the teachings of the present invention, these features and embodiments may be modified to adapt to specific circumstances and materials without departing from the spirit and scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are intended to be protected by the present invention.
Claims
1. A enamelled wire recycling and processing device, characterized in that, It includes an installation box group (1), a crushing group (2), and a transportation group (3). The installation box group (1) is connected to the crushing group (2), and the transportation group (3) is connected to the installation box group (1).
2. The enameled wire recycling and processing equipment according to claim 1, characterized in that, The installation box group (1) includes an installation box body (1-1), a middle partition board (1-3), a first through hole (1-4), and a first installation board (1-5). The middle partition board (1-3) is fixedly installed on the installation box body (1-1). The first through hole (1-4) is formed on the middle partition board (1-3), and there are multiple first through holes (1-4). The first installation board (1-5) is fixedly installed on the installation box body (1-1).
3. The enameled wire recycling and processing equipment according to claim 2, characterized in that, The multiple first through holes (1-4) are circumferentially arranged in an array along the central axis of the middle partition board (1-3).
4. The enameled wire recycling and processing equipment according to claim 2, characterized in that, A storage box (1-2) is fixedly installed on the installation box body (1-1).
5. The enameled wire recycling and processing equipment according to claim 2, characterized in that, The crushing group (2) includes a second installation board (2-1), a connection base (2-2), a first execution motor (2-3), a first clutch slide rod (2-4), a first clutch push spring (2-5), a first clutch disc (2-6), a second clutch disc (2-7), a first installation rotating column (2-8), and a crushing rod (2-9). The second installation board (2-1) is fixedly connected to the installation box body (1-1). The connection base (2-2) is fixedly installed on the second installation board (2-1). The first execution motor (2-3) is installed on the connection base (2-2). The output shaft of the first execution motor (2-3) is installed on the first clutch slide rod (2-4). The first clutch slide rod (2-4) is rotatably installed on the second installation board (2-1). The second clutch disc (2-7) is slidably installed on the first clutch slide rod (2-4). A first clutch push spring (2-5) is arranged between the second clutch disc (2-7) and the first clutch slide rod (2-4). The second clutch disc (2-7) is in meshing transmission with the first clutch disc (2-6). The first installation rotating column (2-8) is fixedly installed on the first clutch disc (2-6). The crushing rod (2-9) is fixedly installed on the first installation rotating column (2-8), and there are multiple crushing rods (2-9). The first installation rotating column (2-8) is rotatably installed on the middle partition board (1-3).
6. The enameled wire recycling and processing equipment according to claim 5, characterized in that, The multiple crushing rods (2-9) are circumferentially arranged in an array along the central axis of the first installation rotating column (2-8).
7. An enameled wire recycling and processing device according to claim 5, characterized in that, The sliding contact surface between the second clutch disc (2-7) and the first clutch slide rod (2-4) is a non-circular structure.
8. The enameled wire recycling and processing equipment according to claim 2, wherein, The carrier group (3) includes a carrier sleeve (3-1), a first connecting bracket (3-2), a first limiting ring (3-3), a first mounting bracket (3-4), a first buffer spring (3-5), a first carrier roller (3-6), a first connecting pulley (3-7), a first drive belt (3-8), a mounting slider (3-9), a second connecting bracket (3-10), a second buffer spring (3-11), a second limiting ring (3-12), a second mounting bracket (3-13), a second carrier roller (3-14), a second connecting pulley (3-15), a second drive belt (3-16), a second actuator motor (3-17), a first driving roller (3-18), a first driving pulley (3-19), a third actuator motor (3-20), a second driving pulley (3-21), a second driving roller (3-22), a sliding connecting rod (3-23), a positioning card slot (3-24), and mounting screws (3-26). The carrier sleeve (3-1) is fixedly installed on the mounting box body (1-1). The first connecting bracket (3-2) is fixedly installed on the carrier sleeve (3-1) through the mounting screws (3-26). The first mounting bracket (3-4) is slidably and limitedly installed on the first connecting bracket (3-2) through the first limiting ring (3-3). A first buffer spring (3-5) is arranged between the first mounting bracket (3-4) and the first connecting bracket (3-2). The first carrier roller (3-6) is rotatably installed on the first mounting bracket (3-4). The first connecting pulley (3-7) is fixedly installed on the first carrier roller (3-6). The second actuator motor (3-17) is installed on the first mounting bracket (3-4). The output shaft of the second actuator motor (3-17) is installed on the first driving roller (3-18). The first driving pulley (3-19) is fixedly installed on the first driving roller (3-18). A first drive belt (3-8) is installed between the first driving pulley (3-19) and the first connecting pulley (3-7). The sliding connecting rod (3-23) is fixedly installed on the carrier sleeve (3-1). The mounting slider (3-9) is slidably installed on the sliding connecting rod (3-23). The second connecting bracket (3-10) is fixedly installed on the mounting slider (3-9). The second mounting bracket (3-13) is slidably and limitedly installed on the second connecting bracket (3-10) through the second limiting ring (3-12). The second carrier roller (3-14) is rotatably installed on the second mounting bracket (3-13). The second connecting pulley (3-15) is fixedly installed on the second carrier roller (3-14). The third actuator motor (3-20) is installed on the second mounting bracket (3-13). The output shaft of the third actuator motor (3-20) is installed on the second driving roller (3-22). The second driving roller (3-22) is rotatably installed on the second connecting bracket (3-10). The second driving pulley (3-21) is fixedly installed on the second driving roller (3-22). A second drive belt (3-16) is installed between the second driving pulley (3-21) and the second connecting pulley (3-15).
9. The enamelled wire recycling and processing equipment according to claim 8, characterized in that, The sliding connecting rod (3-23) is provided with positioning card slots (3-24), and there are multiple positioning card slots (3-24). A positioning card rod (3-27) is slidably mounted on the mounting slider (3-9), and a positioning card rod push spring (3-28) is arranged between the positioning card rod (3-27) and the mounting slider (3-9). The positioning card rod (3-27) is cooperatively connected with the positioning card slot (3-24).
Citation Information
Patent Citations
Cabling machine for producing high-temperature-resistant satellite communication cable
CN117059329A
Enameled wire recovery processing equipment
CN117711715A
Crushing device for cable material processing
CN211359069U
Groove pressing machine for metal plate machining
CN218452525U
Electric wire crusher
JP2009037990A