Recovery device suitable for wire harness processing
Patent Information
- Application Number
- CN202421659913.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-07-15
Smart Images

Figure CN223552320U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wire harness processing, and in particular to a recycling device suitable for wire harness processing. Background Technology
[0002] A wire harness is a set of service equipment that provides services to a certain group of load sources, such as trunk lines, switching devices, and control systems. Its production process includes raw material selection, wire harness wiring, cutting, drilling, insulation, binding, and testing.
[0003] During wire harness production, a certain amount of short wire segments and waste wires are generated. Traditional recycling methods often involve stripping the copper. For example, Chinese patent CN220526675U discloses a wire harness recycling device, which relates to the field of wire harness technology. This device solves the technical problem that currently, after copper wire harnesses are recycled, the collection box must be returned to its original location to collect alloy waste, increasing the operational steps and making the process cumbersome. The device includes a recycling box, with a crusher fixedly installed at the center of the top of the box. A fixed box is fixedly installed on the right side of the top of the inner wall of the recycling box. A lead screw is rotatably connected inside the fixed box, and a moving plate is threaded onto the surface of the lead screw via a lead screw nut. A support rod is fixedly installed at the bottom of one side of the moving plate, and an electromagnet rod is fixedly installed at one end of the support rod. A copper material recycling box is slidably connected to the left side of the bottom of the inner wall of the recycling box via two first sliding plates.
[0004] The above-mentioned processing methods have the following drawbacks in application:
[0005] Firstly, it is impossible to identify recyclable wire harnesses, resulting in significant waste.
[0006] Secondly, plastic debris will remain on the copper core, which is difficult to remove and can easily cause secondary pollution.
[0007] Third, the equipment requires long-term human monitoring. Utility Model Content
[0008] This invention proposes a recycling device suitable for wire harness processing, which can effectively solve the problems mentioned in the background art.
[0009] To achieve the above objectives, the present invention adopts the following technical solution:
[0010] A recycling device suitable for wire harness processing includes a main frame, a feeding section, a screening section, a stripping section, a storage section, and a control section.
[0011] Specifically, the main frame includes base one, base two, screening seat, and peeling and diverting seat. Base one includes a rectangular hollow container one; base two includes a rectangular hollow container two; the screening seat and peeling and diverting seat are mounted on base two via support columns; the screening seat includes a rectangular hollow container three; the peeling and diverting seat includes a rectangular hollow container four, with a circular through hole one on its upper bottom plate, a discharge through hole one and an air inlet on its right side plate, and a discharge through hole three and a discharge through hole two on its lower bottom plate; partition plate one and partition plate two are installed inside the rectangular hollow container four; a circular through hole two is installed on partition plate one; and a strip through hole one is installed on partition plate two.
[0012] Specifically, the feeding section includes a vibratory feeder, a first conveyor belt, and a protective plate. The vibratory feeder is mounted on a base, with its discharge end located above the first conveyor belt; the first conveyor belt is mounted on a screening seat, with its upper conveyor belt located inside the protective plate, and a support roller is installed below the upper conveyor belt; the protective plate is mounted on the screening seat via a mounting bracket.
[0013] Specifically, the screening section includes a compressor, a push rod motor, a U-shaped limiting groove, a C-shaped slide, and a high-pressure nozzle. The compressor is mounted on the base; the push rod motor is equidistantly positioned on the screening base; the U-shaped limiting groove is located on the movable end of the push rod motor and is adapted to the protective plate; the high-pressure nozzle is located on the upper side of the protective plate; the C-shaped slide is located on the screening base, in front of the U-shaped limiting groove; the high-pressure nozzle and the compressor are connected by a solenoid valve.
[0014] Specifically, the peeling part includes a peeling mechanism and a skin separation mechanism.
[0015] More specifically, the stripping mechanism includes an inlet funnel, a limiting tube, two high-pressure nozzles, two push rod motors, a pressure block, one lead screw stepper motor, one wire feeding groove wheel, one stripping wheel, one servo motor, two wire feeding groove wheels, two stripping wheels, two servo motors, one movable carrier plate, and six push rod motors. The inlet funnel is located within a circular through-hole and at the lower right end of the conveyor belt; the limiting tube is located at the lower end of the inlet funnel; the two push rod motors are mounted on the stripping distributor via a mounting bracket, located above the inlet funnel; the pressure block is located on the movable end of the two push rod motors; one lead screw stepper motor and one slide rail are mounted on a partition plate; the movable carrier plate is slidably connected to the slide rail and connected to the nut seat of the one lead screw stepper motor; one wire feeding groove wheel and one stripping wheel are mounted on the movable carrier plate via a protective side plate; the protective side plate is g-shaped; the servo motor is mounted on the protective side plate and... Servo motor 1 and wire feeding wheel 1 are connected by a reduction gearbox; push rod motor 6 is mounted on movable carrier plate 1, and its movable end is equipped with a "U"-shaped mounting plate; the "U"-shaped mounting plate is adapted to the protective side plate; wire feeding wheel 2, wire stripping wheel 2, and servo motor 2 are mounted on the "U"-shaped mounting plate; servo motor 2 and wire feeding wheel 2 are connected by a reduction gearbox; wire feeding wheel 1 and wire feeding wheel 2 are provided with "V"-shaped grooves and anti-slip textures; wire stripping wheel 2 and wire stripping wheel 1 are provided with convex wire stripping blades adapted to the "V"-shaped grooves; high-pressure nozzle 2 is mounted on the protective side plate.
[0016] More specifically, the cable separation mechanism includes a third push rod motor, a fixed plate, a second movable carrier plate, a fourth push rod motor, and a movable plate. The third push rod motor and the fixed plate are mounted on the second partition plate; the fixed plate is located behind the first strip-shaped through hole; the second movable carrier plate is mounted on the second partition plate via a second slide rail, and is connected to the movable end of the third push rod motor; the fourth push rod motor is mounted on the second movable carrier plate; the movable plate is mounted on the movable end of the fourth push rod motor; the movable plate (505) is inclined at an angle to the vertical plane; the inclination angle ranges from 5° to 10°; separation grooves are provided on the fixed plate and the movable plate.
[0017] Specifically, the storage section includes a storage switching mechanism and a screening mechanism. The storage switching mechanism includes a push rod motor (5), a movable trough tube (1), a discharge tube (1), and a flexible tube; the push rod motor (5) is located on the lower bottom surface of the partition plate (2); the movable trough tube (1) is located on the movable end of the push rod motor (5), with its left end higher than its right end, and its right end located above the discharge tube (1); the discharge tube (1) is located on the discharge through-hole (1); the flexible tube is located on the discharge through-holes (3 and 2). The screening mechanism includes a servo motor (3), a screening fan, and a partition plate (3); the servo motor (3), the screening fan, and the partition plate (3) are located on the lower bottom plate of the peeling and diverting seat; the servo motor (3) and the screening fan are connected by a transmission; the partition plate (3) is located between the discharge through-holes (3 and 2).
[0018] Specifically, the control section includes a control mechanism, a feedback mechanism, and a PLC controller. The control mechanism includes a start switch, a filter switch, and a pause switch. The feedback mechanism includes several photoelectric counting sensor modules, a color sensor module, and a distance sensor module.
[0019] Furthermore, an arc-shaped baffle is added to the peeling and diversion seat.
[0020] Furthermore, a flexible pipe is added to the "C"-shaped slide.
[0021] Furthermore, the vibratory feeder can be replaced with a combination of a belt conveyor and a calibration limit plate.
[0022] Advantages compared to existing technologies:
[0023] In this utility model, the following functions are achieved through the integrated design of the main frame, feeding section, screening section, peeling section, storage section, and control section:
[0024] Firstly, the screening mechanism allows for the rapid recycling of reusable wire harnesses, saving resources and reducing production costs.
[0025] Secondly, compared to the fragmented plastic sheath produced by traditional recycling equipment, the peeling section allows for the complete removal of the wire harness sheath (1-2 pieces), significantly reducing plastic sheath residue and increasing the recyclability of the plastic sheath.
[0026] Thirdly, due to the design of the small-hole feeding, the safety factor is greatly improved, and the staff does not need to monitor it for a long time, which significantly reduces the labor intensity. Attached Figure Description
[0027] Figure 1 This is a top view of a partial cross-sectional structure of the present invention;
[0028] Figure 2 This is a partial cross-sectional view of the present invention.
[0029] Figure 3 This is a partially enlarged cross-sectional view of the present invention.
[0030] Figure 4 Schematic diagram A of the system structure of this utility model;
[0031] Figure 5 This is a schematic diagram (B) of the system structure of this utility model.
[0032] In the diagram: 101. Base 1, 102. Base 2, 103. Screening seat, 104. Stripping and diverting seat, 105. Separator 1, 106. Separator 2, 201. Vibratory feeder, 202. Conveyor belt 1, 203. Protective plate, 301. Push rod motor 1, 302. "U"-shaped limiting groove, 303. "C"-shaped slide rail, 304. High-pressure nozzle 1, 401. Inlet funnel, 402. Limiting tube, 403. Push rod motor 2, 404. Lead screw stepper motor 1, 405. Movable carrier plate 1, 406. Stripping wheel 1, 407. Stripping wheel 1, 408. "U"-shaped mounting plate, 409. High-pressure nozzle 2, 410. Servo motor 2, 411. Push rod motor 6, 501. Push rod motor 3, 502. Fixed plate, 503. Movable carrier plate 2, 504. Push rod motor 4, 505. Movable plate, 601. Push rod motor 5, 602. Movable slot tube 1, 603. Unloading tube 1, 604. Flexible tube, 605. Servo motor 3, 606. Screening fan, 607. Separator plate 3. Detailed Implementation
[0033] Example 1, refer to Appendix Figure 1-5 A recycling device suitable for wire harness processing includes a main frame, a feeding section, a screening section, a stripping section, a storage section, and a control section.
[0034] The main frame includes base one 101, base two 102, screening seat 103 and peeling and diverting seat 104.
[0035] The base 101 includes a rectangular hollow container 1.
[0036] The base 2 102 includes a rectangular hollow container 2.
[0037] The screening seat 103 and the peeling and diverting seat 104 are mounted on the base 102 via support columns.
[0038] The screening seat 103 includes a rectangular hollow container.
[0039] The peeling and diversion seat 104 includes a rectangular hollow container.
[0040] A circular through hole is provided on the upper bottom plate of the rectangular hollow container four.
[0041] The right side plate of the rectangular hollow container four is provided with a discharge port and an air inlet.
[0042] The bottom plate of the rectangular hollow container four is provided with discharge through hole three and discharge through hole two.
[0043] The rectangular hollow container 4 is equipped with partition plate 105 and partition plate 206.
[0044] A circular through hole 2 is provided on the partition plate 105.
[0045] A strip-shaped through hole is provided on the partition plate 2 106.
[0046] The feeding section includes a vibratory feeder 201, a conveyor belt 202, and a protective plate 203.
[0047] The vibratory feeder 201 is mounted on the base 101.
[0048] Conveyor belt 202 is set on the filter seat 103.
[0049] The discharge end of the vibratory feeder 201 is located above the conveyor belt 202.
[0050] The protective plate 203 is mounted on the screening seat 103 via a mounting bracket.
[0051] The upper conveyor belt of conveyor belt 202 is located inside the protective plate 203.
[0052] A support roller is installed below the upper conveyor belt of conveyor belt 202.
[0053] The screening section includes a compressor, a push rod motor 301, a "U"-shaped limiting groove 302, a "C"-shaped slide 303, and a high-pressure nozzle 304.
[0054] The compressor is mounted on base 101.
[0055] Push rod motor 301 is equidistantly arranged on the screening seat 103.
[0056] The U-shaped limiting groove 302 is installed on the movable end of the push rod motor 301; the U-shaped limiting groove 302 is adapted to the protective plate 203.
[0057] The high-pressure nozzle 304 is located on the upper side of the protective plate 203.
[0058] The “C”-shaped slide 303 is installed on the screening seat 103, located in front of the “U”-shaped limiting groove tube 302.
[0059] The high-pressure nozzle 304 and the compressor are connected via a solenoid valve.
[0060] The peeling section includes a peeling mechanism and a skin line separation mechanism.
[0061] The stripping mechanism includes an inlet funnel 401, a limiting tube 402, a high-pressure nozzle 409, a push rod motor 403, a pressure block, a lead screw stepper motor 404, a wire feeding groove wheel 406, a stripping wheel 407, a servo motor 1, a wire feeding groove wheel 2, a stripping wheel 2, a servo motor 2 410, a movable carrier plate 405, and a push rod motor 6 411.
[0062] The inlet funnel 401 is located inside the circular through hole and at the lower right end of the conveyor belt 202.
[0063] The limiting tube 402 is located at the lower end of the inlet funnel 401.
[0064] The push rod motor 403 is mounted on the stripping and diverting seat 104 via a mounting bracket, located above the inlet funnel 401.
[0065] The pressure block is located on the movable end of the push rod motor 403.
[0066] The lead screw stepper motor 404 and the slide rail are mounted on the partition plate 105.
[0067] The movable carrier plate 405 is slidably connected to the slide rail 1, and the movable carrier plate 405 is connected to the nut seat of the lead screw stepper motor 404.
[0068] The wire feeding groove wheel 406 and the wire stripping wheel 407 are mounted on the movable carrier plate 405 via protective side plates.
[0069] The protective side panels are in the shape of a "g".
[0070] Servo motor 1 is mounted on the protective side plate, and servo motor 1 and cable feeder wheel 406 are connected by a reduction gearbox.
[0071] The push rod motor 411 is mounted on the movable carrier plate 405, and its movable end is equipped with a "U"-shaped mounting plate 408; the "U"-shaped mounting plate 408 is adapted to the protective side plate.
[0072] The second wire feeding groove wheel, the second wire stripping wheel, and the second servo motor 410 are mounted on the "U"-shaped mounting plate 408.
[0073] Servo motor 2410 and cable tray wheel 2 are connected by a reduction gearbox.
[0074] The first and second cable trays are provided with "V" shaped grooves and anti-slip textures.
[0075] The second and first stripping wheels 407 are equipped with convex stripping blades that are adapted to the "V" shaped grooves.
[0076] High-pressure nozzle 2409 is installed on the protective side plate.
[0077] The cable separation mechanism includes push rod motor 3 501, fixed plate 502, movable carrier plate 2 503, push rod motor 4 504, and movable plate 505.
[0078] The push rod motor 3 501 and the fixing plate 502 are mounted on the partition plate 2 106.
[0079] The fixing plate 502 is located on the rear side of the strip-shaped through hole.
[0080] The movable carrier plate 2 503 is mounted on the partition plate 2 106 via the slide rail 2; the movable carrier plate 2 503 is connected to the movable end of the push rod motor 3 501.
[0081] The push rod motor 4 504 is mounted on the movable carrier plate 2 503.
[0082] The movable plate 505 is mounted on the movable end of the push rod motor 504;
[0083] The movable plate 505 forms an angle with the vertical plane containing the rear side plate of the diverter seat 104; the angle range is 5°-10°.
[0084] Separation grooves are provided on the fixed plate 502 and the movable plate 505. The fixed plate (502) and the movable plate (505) are compatible with each other.
[0085] The storage section includes a storage switching mechanism and a screening mechanism.
[0086] The storage switching mechanism includes push rod motor 601, movable slot tube 602, unloading tube 603 and flexible tube 604.
[0087] The push rod motor 5601 is located on the bottom surface of the partition plate 2106.
[0088] The movable groove tube 602 is located on the movable end of the push rod motor 601, with the left end of the movable groove tube 602 being higher than the right end, and the right end being located above the unloading tube 603.
[0089] The discharge pipe 603 is installed on the discharge through hole 1.
[0090] Flexible tube 604 is installed on discharge through hole three and discharge through hole two.
[0091] The screening mechanism includes a servo motor 605, a screening fan 606, and a separator 607.
[0092] Servo motor 3605, screening fan 606, and separator plate 3607 are mounted on the lower base plate of peeling and diverting seat 104.
[0093] The transmission connection between servo motor 605 and screening fan 606.
[0094] The partition plate 3607 is located between the discharge through hole 3 and the discharge through hole 2.
[0095] The control section includes a control mechanism, a feedback mechanism, and a PLC controller.
[0096] The control mechanism includes a start switch, a filter switch, and a pause switch.
[0097] The start switch, filter switch, and pause switch are located on the side plate of the filter seat 103.
[0098] The feedback mechanism includes a photoelectric counting sensor module, a color sensor module, and a distance sensor module.
[0099] The photoelectric counting sensor module is installed at the discharge port of the vibratory feeder 201 to assist the PLC controller in detecting the passage of the wire harness segment.
[0100] The color sensor module is mounted on the equidistant feed funnel 401.
[0101] Distance sensor modules are equidistantly arranged on the inlet funnel 401 to assist the PLC controller in detecting the length of the wire harness segment.
[0102] The lead screw stepper motor of this utility model includes a servo motor, a ball screw assembly, and a nut seat; the servo motor and the ball screw assembly are connected by a lead screw drive. The ball screw assembly includes a ball screw, a ball nut, rotating steel balls, and a circulating component. The nut seat is connected to the ball nut of the ball screw assembly.
[0103] Working principle and usage:
[0104] Step 1, Installation:
[0105] Press the start switch to perform a no-load test on this device.
[0106] Place the mixture of wire harness segments (shorter than 5cm) to be recycled into the vibratory feeder 201.
[0107] Place the collection box below the "C"-shaped slide 303, unloading pipe 1 603, unloading pipe 2, and flexible pipe 604.
[0108] Step 2, initial division:
[0109] Press the screening switch, and the PLC controller outputs a signal to the vibratory feeder 201 and the conveyor belt 202.
[0110] When the vibratory feeder 201 starts, the conveyor belt 202 starts after a delay. When the number of photoelectric counting sensor modules reaches 10 (adjustable), the vibratory feeder 201 stops.
[0111] When the wire harness segment passes through the color sensor module, the color sensor module outputs a signal to the PLC controller, which in turn outputs a signal to the corresponding compressor and push rod motor 301. The push rod motor 301 drives the corresponding "U"-shaped limit groove tube 302 to move downward, and the compressor and solenoid valve start after a delay, blowing the wire harness segment (coreless) of the corresponding color into the "C"-shaped slide 303, and then into the corresponding acquisition box.
[0112] Step 3, stripping the thread:
[0113] When the wire harness segment enters the inlet funnel 401, and only the bottommost distance sensor module fails to detect the wire harness segment, the PLC controller outputs signals to the lead screw stepper motor 404, the push rod motor 403, the servo motor 1, and the servo motor 2 410. The lead screw stepper motor 404 drives the high-pressure nozzle 2 409 to move below the limit tube 402, the solenoid valve is activated, blowing up the wire harness segment. Afterwards, the lead screw stepper motor 404 drives the high-pressure nozzle 2 409 to reset, allowing the wire harness segment to completely enter the limit tube 402.
[0114] Servo motor 1 and servo motor 2 410 start, push rod motor 2 403 starts after a delay, and the auxiliary wire harness segment enters the wire feeding groove wheel 1 406, wire stripping wheel 1 407, wire feeding groove wheel 2, and wire stripping wheel 2 to strip the wire harness segment.
[0115] The PLC controller outputs a delayed signal to the push rod motor 3 (501), push rod motor 4 (504), and servo motor 3 (605).
[0116] Push rod motor 4 (504) drives movable plate 505 towards fixed plate 502; push rod motor 3 (501) delays while moving movable plate 505 longitudinally to rub the wire harness. After 5 seconds (adjustable), push rod motors 3 (501) and 4 (504) reset. Servo motor 3 (605) starts, and screening fan 606 begins operation. Under the action of the airflow, the wire harness sheath enters the flexible tube 604 on the left, and then enters the collection box below; the wire core enters the flexible tube 604 on the right, and then enters the collection box below.
[0117] When the wire harness segment is below the center distance between stripping roller 1 (407) and stripping roller 2, pusher motor 6 (411) drives wire feeding groove roller 2 and stripping roller 2 to move to the right and stop working. Pusher motor 5 (601) drives movable groove tube 1 (602) to move forward and connect to unloading tube 1 (603). After that, servo motor 1 starts, pusher motor 2 (403) starts after a delay, and the auxiliary wire harness segment enters wire feeding groove roller 1 (406) and stripping roller 1 (407) to strip the wire harness segment.
[0118] Unpeeled wire harnesses enter the collection box below unloading pipe 603 for easy manual peeling.
[0119] Example 2: Based on Example 1, an arc-shaped baffle is added to the peeling and diversion seat 104 to prevent splashing.
[0120] Example 3: Based on Example 1, a flexible pipe is added to the "C"-shaped slide 303.
[0121] Example 4: Based on Example 1, the vibratory feeder 201 is replaced with a combination of a belt conveyor and a calibration limit plate.
Claims
1. A recycling device suitable for wire harness processing, characterized in that: The system includes a main frame, a feeding section, a screening section, a stripping section, a storage section, and a control section. The main frame includes a base one (101), a base two (102), a screening seat (103), and a stripping and diverting seat (104). The screening section includes a compressor, a push rod motor one (301), a "U"-shaped limiting groove tube (302), a "C"-shaped slide (303), and a high-pressure nozzle one (304). The stripping section includes a stripping mechanism and a wire separation mechanism. The stripping mechanism includes an inlet funnel (401), a limiting tube (402), a high-pressure nozzle two (409), a push rod motor two (403), a pressure block, a lead screw stepper motor one (404), a wire feeding groove wheel one (406), a wire stripping wheel one (407), a servo motor one, a wire feeding groove wheel two, a wire stripping wheel two, a servo motor two (410), and a movable carrier plate one (410). 05) and push rod motor six (411); the inlet funnel (401) is set in the circular through hole one and is located at the lower right end of the conveyor belt one (202); the limit tube (402) is set at the lower end of the inlet funnel (401); the push rod motor two (403) is set on the stripping and diverting seat (104) through the mounting bracket and is located above the inlet funnel (401); the pressure block is set on the movable end of the push rod motor two (403); the lead screw stepper motor one (404) and the slide rail one are set on the partition plate one (105); the movable carrier plate one (405) is slidably connected to the slide rail one and connected to the nut seat of the lead screw stepper motor one (404); the wire feeding groove wheel one (406) and the wire stripping wheel one (407) are set on the movable carrier plate one (405) through the protective side plate; the storage part includes a storage switching mechanism and a screening mechanism.
2. The recycling device suitable for wire harness processing according to claim 1, characterized in that: Servo motor 1 is mounted on the protective side plate, and servo motor 1 and wire feeding groove wheel 1 (406) are connected by a reduction gearbox; push rod motor 6 (411) is mounted on movable carrier plate 1 (405), and its movable end is provided with a "U" shaped mounting plate (408); the "U" shaped mounting plate (408) is adapted to the protective side plate; wire feeding groove wheel 2, wire stripping wheel 2, and servo motor 2 (410) are mounted on the "U" shaped mounting plate (408); servo motor 2 (410) and wire feeding groove wheel 2 are connected by a reduction gearbox; wire feeding groove wheel 1 (406) and wire feeding groove wheel 2 are provided with "V" shaped grooves and anti-slip textures; wire stripping wheel 2 and wire stripping wheel 1 (407) are provided with convex wire stripping blades adapted to the "V" shaped grooves; high pressure nozzle 2 (409) is mounted on the protective side plate.
3. The recycling device suitable for wire harness processing according to claim 1, characterized in that: The cable separation mechanism includes a push rod motor three (501), a fixed plate (502), a movable carrier plate two (503), a push rod motor four (504), and a movable plate (505); the push rod motor three (501) and the fixed plate (502) are mounted on the partition plate two (106); the fixed plate (502) is located behind the strip-shaped through hole one; the movable carrier plate two (503) is mounted on the partition plate two (106) via a slide rail two, and is connected to the movable end of the push rod motor three (501); the push rod motor four (504) is mounted on the movable carrier plate two (503); and the movable plate (505) is mounted on the movable end of the push rod motor four (504).
4. The recycling device suitable for wire harness processing according to claim 1, characterized in that: The feeding section includes a vibratory feeder (201), a first conveyor belt (202), and a protective plate (203); the vibratory feeder (201) is mounted on the first base (101); the first conveyor belt (202) is mounted on the screening seat (103), with its upper conveyor belt located inside the protective plate (203), and a support roller shaft installed below the upper conveyor belt; the discharge end of the vibratory feeder (201) is located above the first conveyor belt (202); the protective plate (203) is mounted on the screening seat (103) via a mounting bracket.
5. The recycling device suitable for wire harness processing according to claim 1, characterized in that: A push rod motor (301) is mounted on the screening seat (103); a "U"-shaped limiting groove (302) is mounted on the movable end of the push rod motor (301) and is adapted to the protective plate (203); a high-pressure nozzle (304) is mounted on the upper side of the side plate of the protective plate (203); a "C"-shaped slide (303) is mounted on the screening seat (103) and is located in front of the "U"-shaped limiting groove (302); the high-pressure nozzle (304) and the compressor are connected by a solenoid valve.
6. The recycling device suitable for wire harness processing according to claim 1, characterized in that: The storage switching mechanism includes a push rod motor five (601), a movable slot tube one (602), a discharge tube one (603), and a flexible tube (604); the push rod motor five (601) is located on the lower bottom surface of the partition plate two (106); the movable slot tube one (602) is located on the movable end of the push rod motor five (601), and its left end is higher than its right end, and its right end is located above the discharge tube one (603); the discharge tube one (603) is located on the discharge through hole one; the flexible tube (604) is located on the discharge through hole three and the discharge through hole two.
7. The recycling device suitable for wire harness processing according to claim 1, characterized in that: The screening mechanism includes a servo motor (605), a screening fan (606), and a partition plate (607); the servo motor (605), the screening fan (606), and the partition plate (607) are disposed on the lower base plate of the peeling and diverting seat (104); the servo motor (605) and the screening fan (606) are connected by a transmission; the partition plate (607) is located between the discharge through hole 3 and the discharge through hole 2.
8. The recycling device suitable for wire harness processing according to claim 1, characterized in that: The protective side panels are in the shape of a "g".
9. A recycling device suitable for wire harness processing according to claim 1, characterized in that: An arc-shaped baffle is added to the peeling and diversion seat (104).
10. A recycling device suitable for wire harness processing according to claim 3, characterized in that: Separation grooves are provided on the fixed plate (502) and the movable plate (505).
Citation Information
Patent Citations
Wire harness recovery device
CN220526675U