CN113035465B - Core-sheath separating device for electric engineering cable recovery - Google Patents

Core-sheath separating device for electric engineering cable recovery Download PDF

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Publication number
CN113035465B
CN113035465B CN202110314621.7A CN202110314621A CN113035465B CN 113035465 B CN113035465 B CN 113035465B CN 202110314621 A CN202110314621 A CN 202110314621A CN 113035465 B CN113035465 B CN 113035465B
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China
Prior art keywords
block
rack
guide block
fixing
special
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CN202110314621.7A
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Chinese (zh)
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CN113035465A (en
Inventor
彭元修
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Shengsi Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Zhoushan Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Original Assignee
Shengsi Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Zhoushan Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
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Application filed by Shengsi Power Supply Co of State Grid Zhejiang Electric Power Co Ltd, Zhoushan Power Supply Co of State Grid Zhejiang Electric Power Co Ltd filed Critical Shengsi Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Priority to CN202110314621.7A priority Critical patent/CN113035465B/en
Publication of CN113035465A publication Critical patent/CN113035465A/en
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Publication of CN113035465B publication Critical patent/CN113035465B/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B15/00Apparatus or processes for salvaging material from cables
    • H01B15/005Apparatus or processes for salvaging material from cables by cutting
    • 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]

Abstract

The invention relates to a separating device, in particular to a core-sheath separating device for electrical engineering cable recovery. The invention provides a core skin separating device for recovering an electrical engineering cable, which can be used for rapidly peeling and separating a wire core. The invention provides a core-sheath separating device for recycling an electrical engineering cable, which comprises: the device comprises a rack, a first fixing frame and a second fixing frame, wherein the first fixing frame is arranged on the rack; a second fixing frame is arranged between the upper parts of the racks; the second fixing frame is provided with a cutter assembly; the conveying device is arranged on one side of the rack; and the other side of the rack is provided with the anti-jamming device. Play the guide effect through anti-sticking device to the cable conductor and prevent to block, remove to first mount through promoting the cable conductor, cut the cable conductor through knife tackle spare afterwards.

Description

Core-sheath separating device for electric engineering cable recovery
Technical Field
The invention relates to a separating device, in particular to a core-sheath separating device for electric engineering cable recovery.
Background
A cable is a power or signal transmission device, and is generally composed of several wires or groups of wires. In order to save materials, some waste products, such as control cables, are reprocessed for use. When the cable is repeatedly used, the sheath of the cable is firstly stripped from the core.
In the peeling work of the existing cable, the used peeling tool is a traditional wallpaper knife which is mainly used for cutting objects with soft texture, the knife body is very fragile and cannot extend out of the knife body with overlong texture in use, otherwise, the knife blade is easy to break and hurt people, and meanwhile, the force and the force are needed to be paid attention to when peeling the cable skin, so that the cable peeling speed is too slow, the working efficiency is reduced, and the cable core is damaged and fingers are cut by paying attention to a little, so that the use safety is not high.
Therefore, it is highly desirable to design a core-sheath separating device for recovering electrical engineering cables, which can rapidly sheath and separate the wire core, to solve the above problems.
Disclosure of Invention
In order to overcome traditional wall paper sword, it is too slow to open and shell the cable speed, has reduced work efficiency, careless can damage the cable core and cut broken finger moreover slightly, consequently shortcoming, technical problem that the safety in utilization is not high: the core skin separating device for recovering the electrical engineering cable is capable of rapidly peeling and separating the wire core.
The technical scheme is as follows: a core-sheath separating device for electrical engineering cable recycling comprises: the device comprises a rack, a first fixing frame and a second fixing frame, wherein the first fixing frame is arranged on the rack; a second fixing frame is arranged between the upper parts of the racks; the second fixing frame is provided with a cutter component; the conveying device is arranged on one side of the rack; and the other side of the rack is provided with the anti-jamming device.
Preferably, the conveying device includes: the first placing frame is arranged on one side of the rack; the servo motor is arranged on the first placing frame; the first bearing seat is arranged on one side of the rack; the second bearing seat is arranged on one side of the rack; a rotating shaft is arranged between the first bearing seat and the second bearing seat, and one end of the rotating shaft is connected with an output shaft of the servo motor through a coupler; the friction wheel is arranged in the middle of the rotating shaft; the upper part of one side of the rack is symmetrically provided with a third fixing frame; the first guide block is arranged between the two third fixing frames; the first wire pressing block is slidably arranged on the first guide block.
Preferably, the anti-seizing device comprises: the other side of the rack is symmetrically provided with a first bracket; a first baffle is arranged between the two first brackets; the guide rods are symmetrically arranged at the upper part of the first baffle; the two guide rods are provided with a first line pressing block in a sliding mode; the first fixing blocks are symmetrically arranged on one sides of the second line pressing blocks; the swing rod is rotatably arranged between the two first fixed blocks; and a second placing rack is arranged on the side wall of one side of the first baffle, and the swinging rod is matched with the second placing rack.
Preferably, the method further comprises the following steps: the sliding block is arranged on one side of the rack in a sliding manner; a handle is arranged on one side of the sliding block; the other side of the sliding block is provided with a first special-shaped block; the first dysmorphism piece is provided with the toper retainer plate, be provided with the toper retainer plate on the first dysmorphism piece.
Preferably, the method further comprises the following steps: a fourth fixing frame is arranged between the upper sides of the middle parts of the racks; the fourth fixing frame is provided with a second bracket; the top block is arranged at the bottom of the second bracket; the wire distributing piece is arranged on the top block.
Preferably, the method further comprises the following steps: the rack is provided with a first guide block; the second special-shaped block is arranged on the fourth fixing frame, the second special-shaped block is arranged on the second guide block in a sliding mode, and the second special-shaped block is arranged on two sides of the rack in a sliding mode; the fixing plate is arranged at the bottom of the second special-shaped block on the lower side; the first elastic piece is arranged between the bottom of the fixing plate and the rack; the fixing rod is arranged on the second special-shaped block on the lower side of the fixing rod; the two sides of the fixed rod are symmetrically provided with the second fixed blocks, and the two sides of the bottoms of the two second special-shaped blocks at the upper part are symmetrically provided with the second fixed blocks; the first rotating rod is rotatably arranged between the two adjacent second fixed blocks; the first connecting rods are arranged between the two first rotating rods on the same side; a row of second rotating rods are arranged on the four second special-shaped blocks in a rotating mode; and the rollers are arranged on the second rotating rod.
Preferably, the method further comprises the following steps: the lower part of the rack is symmetrically provided with a third bracket; a third guide block is arranged between the two third brackets; the third irregular blocks are symmetrically arranged on the fixing plate, and the two third irregular blocks are in sliding fit with the third guide block; the connecting rod is arranged between the lower parts of the two third types of blocks; a second baffle is arranged between the upper parts of the two third types of blocks; the lower part of the rack is symmetrically provided with a fourth bracket; a fourth guide block is arranged between the two fourth brackets; the fourth guide block is provided with a fourth guide block; the wedge block is arranged in the fifth guide block in a sliding mode and matched with the second baffle; the second elastic piece is symmetrically arranged between one side of the wedge-shaped block and one side of the fifth guide block; the wedge-shaped block is internally provided with a first rotating rod in a rotating manner; the second connecting rods are arranged at two ends of the third rotating rod; the two sides of the fourth guide block are both provided with fourth special-shaped blocks in a sliding manner; and the fourth rotating rod is arranged between the bottom ends of the fourth special-shaped blocks in a rotating manner, and the other ends of the two second connecting rods are connected with the two sides of the fourth rotating rod in a rotating manner.
Preferably, the handle is provided with rubber.
Compared with the prior art, the invention has the following advantages: 1. play the guide effect through anti-sticking device to the cable conductor and prevent to block, remove to first mount through promoting the cable conductor, cut the cable conductor through knife tackle spare afterwards, can transport the cable conductor that the cutting was accomplished through conveyor.
2. One end card of cable conductor can make this device just move make things convenient for the staff to place the cable conductor and transport on the toper retainer plate.
3. The core and skin separation can be carried out on the cable conductor in the process that the sliding block slides backwards, and a large amount of manpower is saved.
4. The second special-shaped block slides and contracts oppositely to clamp and fix the cable when the core skin is separated.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the conveying device of the present invention.
Fig. 3 is a schematic perspective view of the anti-seizing device of the present invention.
Fig. 4 is a schematic perspective view of a first embodiment of the present invention.
Fig. 5 is a schematic perspective view of a second embodiment of the present invention.
Fig. 6 is a schematic perspective view of a third embodiment of the present invention.
Fig. 7 is a perspective view of a fourth embodiment of the present invention.
Fig. 8 is a schematic perspective view of a fifth embodiment of the present invention.
Description of reference numerals: 1: frame, 2: first mount, 3: second mount, 4: knife assembly, 5: conveying device, 51: first rack, 52: servo motor, 53: first bearing seat, 54: second bearing housing, 55: rotating shaft, 56: friction wheel, 57: third mount, 58: first guide block, 59: first wire pressing block, 6: anti-sticking device, 61: first bracket, 62: first baffle, 63: second line pressing block, 64: guide bar, 65: first fixing block, 66: swing lever, 67: second rack, 7: handle, 8: slider, 9: first profile block, 10: tapered retainer ring, 11: fourth mount, 12: second bracket, 13: top block, 14: branching piece, 15: second guide block, 16: first elastic member, 17: fixing plate, 18: second profile block, 19: fixed bar, 20: second fixed block, 21: first rotation lever, 22: first link, 23: second rotating shaft, 24: roller, 25: third bracket, 26: third guide block, 27: third modular block, 28: connecting rod, 29: second baffle, 30: fourth bracket, 31: fourth guide block, 32: fifth guide block, 33: second elastic member, 34: wedge block, 35: third rotating shaft, 36: second link, 37: fourth profile block, 38: and a fourth rotating rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
As shown in fig. 1, a core-sheath separating device for electrical engineering cable recovery comprises a frame 1, a first fixing frame 2, a second fixing frame 3, a knife assembly 4, a conveying device 5 and an anti-blocking device 6, wherein the first fixing frame 2 is arranged on the frame 1, the second fixing frame 3 is arranged between the upper portions of the frame 1, the knife assembly 4 is arranged on the second fixing frame 3, the conveying device 5 is arranged on the rear side of the frame 1, and the anti-blocking device 6 is arranged on the front side of the frame 1.
When needing to carry out core skin separation to the cable conductor, the staff passes anti-sticking device 6 with the one end of cable conductor, play the guide effect through anti-sticking device 6 to the cable conductor and prevent to block, promote the cable conductor through the staff and remove to first mount 2, cut the cable conductor through knife tackle spare 4 afterwards, the staff stimulates the cable conductor of cutting completion to conveyor 5, transport the cable conductor of cutting completion through conveyor 5, the staff carries out core skin separation to the cable conductor of transporting out, this device simple structure, and the operation of being convenient for.
Example 2
As shown in fig. 2 and fig. 3, on the basis of embodiment 1, the conveying device 5 includes a first rack 51, a servo motor 52, a first bearing seat 53, a second bearing seat 54, a rotating shaft 55, a friction wheel 56, a third fixing frame 57, a first guide block 58 and a first line pressing block 59, the left side of the rear portion of the rack 1 is provided with the first rack 51, the servo motor 52 is arranged on the first rack 51, the left side of the rear portion of the rack 1 is provided with the first bearing seat 53, the right side of the rear portion of the rack 1 is provided with the second bearing seat 54, the rotating shaft 55 is arranged between the first bearing seat 53 and the second bearing seat 54, the left end of the rotating shaft 55 is connected with an output shaft of the servo motor 52 through a coupling, the friction wheel 56 is arranged in the middle of the rotating shaft 55, the third fixing frames 57 are symmetrically arranged on the upper portion of the rear side of the rack 1, the first guide block 58 is arranged between the two third fixing frames 57, and the first line pressing block 59 is slidably arranged on the first guide block 58.
When the core and skin separation of the cable is needed, a worker penetrates one end of the cable through the anti-blocking device 6, the cable is guided to be prevented from being blocked through the anti-blocking device 6, the cable is pushed to move to the first fixing frame 2 through the worker, then the cable is cut through the cutter assembly 4, the worker pulls the cut cable to a position between the friction wheel 56 and the first pressing block 59, the cable is contacted with the first pressing block 59, the first pressing block 59 slides upwards on the first guide block 58 along with the first pressing block, the worker starts the servo motor 52, the servo motor 52 rotates to drive the rotation shaft 55 to rotate, the rotation shaft 55 rotates to drive the friction wheel 56 to rotate, the friction wheel 56 rotates to drive the cable to move backwards to transport, after the cable is completely cut, the cable is separated from the first pressing block 59, the first pressing block 59 slides downwards on the first guide block 58 to reset along with the first pressing block, the worker closes the servo motor 52, the servo motor 52 stops rotating to drive the rotation shaft 55 to stop rotating, and the rotation shaft 55 stops to drive the friction wheel 56 to stop rotating. This device simple structure can transport the cable conductor that the cutting was accomplished, does not need the staff to take out manually.
Anti-sticking device 6 is including first support 61, first baffle 62, second line ball piece 63, guide bar 64, first fixed block 65, swinging arms 66 and second rack 67, 1 front side symmetry of frame is provided with first support 61, two be provided with first baffle 62 between the first support 61, first baffle 62 upper portion symmetry is provided with guide bar 64, two sliding type is provided with second line ball piece 63 on the guide bar 64, second line ball piece 63 front side symmetry is provided with first fixed block 65, two the rotary type is provided with swinging arms 66 between the first fixed block 65, be provided with second rack 67 on the anterior left lateral wall of first baffle 62, swinging arms 66 and the cooperation of second rack 67.
When needs carry out core skin separation to the cable conductor, the staff passes first baffle 62 with the one end of cable conductor, staff's pulling swinging arms 66 outward rotation no longer blocks on second rack 67 afterwards, second line ball piece 63 slides downwards on first baffle 62 thereupon and carries on spacingly with cable conductor shift position, and then play the guide effect to the cable conductor and prevent to block, treat the whole cutting of cable conductor and accomplish the back, the staff promotes second line ball piece 63 and upwards slides on first baffle 62, staff promotes the inside rotation card of swinging arms 66 afterwards and fixes second line ball piece 63 on second rack 67. This device simple structure can play the guide effect to the cable conductor and prevent to block.
Example 3
As shown in fig. 4, 5, 6, 7 and 8, the portable electronic device further comprises a handle 7, a sliding block 8, a first special-shaped block 9 and a conical fixing ring 10, wherein the sliding block 8 is arranged on the right side of the rack 1 in a sliding manner, the handle 7 is arranged on the right side of the sliding block 8, the first special-shaped block 9 is arranged on the left side of the sliding block 8, and the conical fixing ring 10 is arranged on the first special-shaped block 9.
When needing to carry out core skin separation to the cable conductor, the staff passes first baffle 62 card on toper retainer plate 10 with the one end of cable conductor, and the staff drives slider 8 through promoting handle 7 and slides backward in frame 1 afterwards, and slider 8 slides backward and drives the cable conductor and remove and transport to friction pulley 56, accomplishes the back, and the staff drives slider 8 through pulling handle 7 and slides forward and reset in frame 1. This device simple structure can make things convenient for the staff to place the cable conductor and transport when this device just moves.
Still including fourth mount 11, second support 12, kicking block 13 and separated time piece 14, be provided with fourth mount 11 between the frame 1 middle part upside, be provided with second support 12 on the fourth mount 11, be provided with kicking block 13 on the second support 12 bottom, be provided with separated time piece 14 on the kicking block 13.
The slider 8 slides backward and drives the cable conductor to move backward and contact with kicking block 13, and kicking block 13 is ejecting with the copper line in the cable conductor, separates the line skin with the copper line through separated time piece 14 afterwards. This device simple structure, slider 8 gliding in-process can carry out core skin separation to the cable conductor backward, has saved a large amount of manpowers.
Still including second guide block 15, first elastic component 16, fixed plate 17, second dysmorphism piece 18, dead lever 19, second fixed block 20, first transfer pole 21, first connecting rod 22, second transfer pole 23 and gyro wheel 24, be provided with second guide block 15 in the frame 1, be provided with second dysmorphism piece 18 on the fourth mount 11, the sliding type is provided with second dysmorphism piece 18 on second guide block 15, and the sliding type of the 1 left and right sides of frame is provided with second dysmorphism piece 18, downside second dysmorphism piece 18 bottom is provided with fixed plate 17, be provided with first elastic component 16 between fixed plate 17 bottom and the frame 1, the downside be provided with dead lever 19 on the second dysmorphism piece 18, the equal symmetry in fixed lever 19 left and right sides is provided with second fixed block 20, and the equal symmetry in left and right sides of two second dysmorphism pieces 18 bottoms on upper portion is provided with second fixed block 20, and two of similar the second transfer pole 20 between equal rotary type be provided with first transfer pole 21, two of homonymy all be provided with first connecting rod 22 between first transfer pole 21, four on the second dysmorphism piece 18 all be provided with a row of second connecting rod 23, four rotary type gyro wheels 23 on the second dysmorphism piece 23.
The device also comprises a third bracket 25, a third guide block 26, a third irregular block 27, a connecting rod 28, a second baffle 29, a fourth bracket 30, a fourth guide block 31, a fifth guide block 32, a second elastic part 33, a wedge block 34, a third rotating rod 35, a second connecting rod 36, a fourth irregular block 37 and a fourth rotating rod 38, wherein the third bracket 25 is symmetrically arranged at the lower part of the machine frame 1, the third guide block 26 is arranged between the two third brackets 25, the third irregular block 27 is symmetrically arranged on the fixing plate 17, the two third irregular blocks 27 are in sliding fit with the third guide block 26, the connecting rod 28 is arranged between the lower parts of the two third irregular blocks 27, the second baffle 29 is arranged between the upper parts of the two third irregular blocks 27, the fourth bracket 30 is symmetrically arranged at the lower part of the machine frame 1, two be provided with fourth guide block 31 between the fourth support 30, be provided with fifth guide block 32 on the fourth guide block 31, fifth guide block 32 internal sliding type is provided with wedge 34, and wedge 34 cooperates with second baffle 29, the symmetry is provided with second elastic component 33 between wedge 34 one side and the fifth guide block 32 one side, the internal rotating type of wedge 34 is provided with third dwang 35, both ends all are provided with second connecting rod 36 about third dwang 35, the equal sliding type in fourth guide block 31 left and right sides is provided with fourth dysmorphism piece 37, two the rotary type is provided with fourth dwang 38 between fourth dysmorphism piece 37 bottom, and two second connecting rod 36 other ends are connected with fourth dwang 38 both sides rotary type.
Before the worker pushes the handle 7, the worker presses the third irregular block 27 to slide downwards on the third guide block 26, the third irregular block 27 slides downwards to drive the second baffle plate 29 to move downwards to extrude the wedge-shaped block 34 to slide backwards in the fifth guide block 32, the second elastic element 33 is compressed, when the second baffle plate 29 moves downwards and does not extrude the wedge-shaped block 34 any more, the second elastic element 33 is reset to drive the wedge-shaped block 34 to slide forwards in the fifth guide block 32 to clamp the second baffle plate 29, the third irregular block 27 slides downwards to drive the fixing plate 17 to move downwards, the first elastic element 16 is compressed, the fixing plate 17 moves downwards to drive the second irregular block 18 to slide downwards on the second guide block 15, the second irregular block 18 slides downwards to drive the fixing rod 19 to move downwards, the fixing rod 19 moves downwards to drive the first connecting rod 22 to rotate upwards on the first rotating rod 21, the first connecting rod 22 rotates upwards to drive the second irregular blocks 18 on the left side and the right side to slide backwards and expand, then the worker pushes the handle 7 to drive the cable to move backwards, the cable moves backwards to drive the roller 24 to rotate, the sliding block 8 moves backwards to press the fourth special-shaped block 37 to slide downwards on the fourth guide block 31, the fourth special-shaped block 37 slides downwards to drive the second connecting rod 36 to rotate upwards on the third rotating rod 35 and the fourth rotating rod 38, the second connecting rod 36 rotates upwards to drive the wedge block 34 to slide backwards in the fifth guide block 32, the second elastic part 33 is compressed, the wedge block 34 moves backwards without clamping the second baffle 29, the first elastic part 16 drives the fixing plate 17 to move upwards to reset along with the resetting, the fixing plate 17 moves upwards to drive the second special-shaped block 18 to slide upwards to reset on the second guide block 15, the second special-shaped block 18 slides upwards to drive the fixing rod 19 to move upwards, the fixing rod 19 moves upwards to drive the first connecting rod 22 to rotate downwards on the first rotating rod 21, the first connecting rod 22 rotates downwards to drive the second special-shaped blocks 18 on the left side and the right side to slide and contract oppositely to clamp the cable, the cable is driven to be rapidly separated from core and skin under the rotating action of the friction wheel 56, the sliding block 8 moves backwards and does not extrude the fourth special-shaped block 37 any more, the second elastic piece 33 resets to drive the wedge block 34 to slide forwards in the fifth guide block 32, the wedge block 34 slides forwards to drive the second connecting rod 36 to rotate downwards to reset on the third rotating rod 35 and the fourth rotating rod 38, and the second connecting rod 36 rotates downwards to drive the fourth special-shaped block 37 to slide upwards to reset on the fourth guide block 31. The device has simple structure, and the second special-shaped blocks 18 slide and contract oppositely to clamp and fix the cable when the core and the sheath are separated.
The handle 7 is provided with rubber, and can play a role in skid resistance.
The above-mentioned embodiments are merely preferred embodiments of the present invention, which are not intended to limit the scope of the present invention, and therefore, all equivalent changes made by the contents of the claims of the present invention should be included in the claims of the present invention.

Claims (2)

1. The utility model provides an electrical engineering cable is retrieved and is used core skin separator which characterized in that includes:
the device comprises a rack (1), wherein a first fixing frame (2) is arranged on the rack (1);
the second fixing frame (3) is arranged between the upper parts of the racks (1);
the knife component (4) is arranged on the second fixing frame (3);
the conveying device (5) is arranged on one side of the rack (1);
the anti-jamming device (6) is arranged on the other side of the rack (1);
the conveying device (5) comprises:
the device comprises a first placing frame (51), wherein the first placing frame (51) is arranged on one side of the rack (1);
the servo motor (52) is arranged on the first placing frame (51);
the bearing device comprises a first bearing seat (53), wherein the first bearing seat (53) is arranged on one side of the rack (1);
the second bearing block (54), one side of the frame (1) is provided with the second bearing block (54);
the rotating shaft (55) is arranged between the first bearing seat (53) and the second bearing seat (54), and one end of the rotating shaft (55) is connected with an output shaft of the servo motor (52) through a coupler;
the friction wheel (56) is arranged in the middle of the rotating shaft (55);
the upper part of one side of the rack (1) is symmetrically provided with a third fixing frame (57);
the first guide block (58) is arranged between the two third fixing frames (57);
the first wire pressing block (59) is arranged on the first guide block (58) in a sliding mode;
the anti-seize device (6) comprises:
the other side of the rack (1) is symmetrically provided with first brackets (61);
a first baffle (62), wherein the first baffle (62) is arranged between the two first brackets (61);
the guide rods (64) are symmetrically arranged at the upper part of the first baffle plate (62);
the two guide rods (64) are provided with a second wire pressing block (63) in a sliding manner;
the first fixing blocks (65) are symmetrically arranged on one side of the second line pressing block (63);
the swing rod (66) is rotatably arranged between the two first fixing blocks (65);
the side wall of one side of the first baffle plate (62) is provided with a second placing frame (67), and the swinging rod (66) is matched with the second placing frame (67);
further comprising:
the sliding block (8) is arranged on one side of the rack (1) in a sliding manner;
a handle (7) is arranged on one side of the sliding block (8);
the other side of the sliding block (8) is provided with a first special-shaped block (9);
the first special-shaped block (9) is provided with a conical fixing ring (10);
further comprising:
a fourth fixing frame (11), wherein the fourth fixing frame (11) is arranged between the upper sides of the middle parts of the machine frames (1);
the fourth fixing frame (11) is provided with a second bracket (12);
the top block (13) is arranged at the bottom of the second bracket (12);
the wire distributing piece (14) is arranged on the top block (13);
further comprising:
the second guide block (15) is arranged on the rack (1);
the second special-shaped block (18) is arranged on the fourth fixing frame (11), the second special-shaped block (18) is arranged on the second guide block (15) in a sliding mode, and the second special-shaped block (18) is arranged on two sides of the rack (1) in a sliding mode;
a fixing plate (17) is arranged at the bottom of the second special-shaped block (18) on the lower side of the fixing plate (17);
the first elastic piece (16) is arranged between the bottom of the fixed plate (17) and the rack (1);
a fixing rod (19), wherein the second special-shaped block (18) on the lower side is provided with the fixing rod (19);
the two sides of the fixed rod (19) are symmetrically provided with the second fixed blocks (20), and the two sides of the bottoms of the two second special-shaped blocks (18) at the upper part are symmetrically provided with the second fixed blocks (20);
the first rotating rod (21) is rotatably arranged between two adjacent second fixed blocks (20);
the first connecting rods (22) are arranged between the two first rotating rods (21) on the same side;
a row of second rotating rods (23) are arranged on the four second special-shaped blocks (18) in a rotating mode;
the four rows of second rotating rods (23) are provided with rollers (24);
further comprising:
the lower part of the rack (1) is symmetrically provided with a third bracket (25);
a third guide block (26), wherein a third guide block (26) is arranged between the two third brackets (25);
the third three-shaped block (27) is symmetrically arranged on the fixing plate (17), and the two third three-shaped blocks (27) are in sliding fit with the third guide block (26);
a connecting rod (28) is arranged between the lower parts of the two third types of blocks (27);
a second baffle plate (29), wherein a second baffle plate (29) is arranged between the upper parts of the two third irregular blocks (27);
the lower part of the rack (1) is symmetrically provided with fourth brackets (30);
a fourth guide block (31), wherein a fourth guide block (31) is arranged between the two fourth brackets (30);
a fifth guide block (32), wherein the fourth guide block (31) is provided with the fifth guide block (32);
the wedge block (34) is arranged in the fifth guide block (32) in a sliding mode, and the wedge block (34) is matched with the second baffle (29);
the second elastic piece (33) is symmetrically arranged between one side of the wedge block (34) and one side of the fifth guide block (32);
the third rotating rod (35) is arranged in the wedge-shaped block (34) in a rotating mode;
the second connecting rod (36) is arranged at each of two ends of the third rotating rod (35);
the two sides of the fourth guide block (31) are both provided with fourth special-shaped blocks (37) in a sliding manner;
fourth dwang (38), two the rotary type is provided with fourth dwang (38) between fourth dysmorphism piece (37) bottom, and two second connecting rod (36) other ends are connected with fourth dwang (38) both sides rotary type.
2. The core-sheath separating device for recycling the electric engineering cable according to claim 1, wherein the handle (7) is provided with rubber.
CN202110314621.7A 2021-03-24 2021-03-24 Core-sheath separating device for electric engineering cable recovery Active CN113035465B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110314621.7A CN113035465B (en) 2021-03-24 2021-03-24 Core-sheath separating device for electric engineering cable recovery

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110314621.7A CN113035465B (en) 2021-03-24 2021-03-24 Core-sheath separating device for electric engineering cable recovery

Publications (2)

Publication Number Publication Date
CN113035465A CN113035465A (en) 2021-06-25
CN113035465B true CN113035465B (en) 2022-11-01

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