Waste recovery mechanism of terminal stripping machine
By utilizing the stirring and magnetic separation components and the rinsing and separation components of the terminal stripping machine, and by employing the stirring and magnetic separation of the electromagnetic rod under different conditions, the problem of difficult removal of metal debris from the outer sheath of the wires is solved, achieving efficient cleaning and recycling.
Patent Information
- Application Number
- CN202511310551.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2025-11-04
AI Technical Summary
Existing terminal stripping machines have difficulty effectively removing metal debris when cleaning the outer insulation of wires, which affects subsequent processing.
The system employs a stirring and magnetic separation assembly and a rinsing and separation assembly. Electromagnetic rods are used to stir and magnetically separate the metal debris in both vertical and horizontal positions, combined with the circulation of clean water, to achieve efficient removal of metal debris.
It improves the cleaning effect of the outer insulation of the wires, ensures complete removal of metal debris, and enhances the quality and efficiency of waste recycling.
Smart Images

Figure CN120886384A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of plastic recycling, specifically a waste recycling mechanism for a terminal stripping machine. Background Technology
[0002] A terminal stripping and crimping machine is a type of wire processing equipment, primarily used to strip the insulation from the ends of wires and then crimp metal terminals onto the exposed conductor. The waste material generated by this machine that needs to be recycled is mainly the outer insulation of the wires. During the waste recycling process, the surface of the outer insulation is prone to dirt accumulation, necessitating cleaning to remove the stains. This is typically done using a cleaning tank. The working principle involves placing the outer insulation into the cleaning tank, adding cleaning water, and using a stirring device to agitate the water and impact the outer insulation, thus removing the stains. However, the following drawbacks still exist: During the stripping process of the wires, the ferromagnetic material on the wires may be scraped off and adhere to the outer insulation of the wires. After cleaning and drainage, these metal fragments can easily return to the outer insulation of the wires, making the outer insulation of the wires incompletely cleaned and affecting subsequent processing. Summary of the Invention
[0003] In view of the above situation and to overcome the defects of the prior art, the present invention provides a waste recycling mechanism for a terminal stripping machine, which effectively solves the problem that it is not easy to effectively remove metal fragments from waste through cleaning.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a waste recycling mechanism for a terminal stripping machine, comprising a processing box, wherein a stirring magnetic separation assembly is arranged above the processing box, and a rinsing and separation assembly is arranged inside the processing box; The stirring magnetic separation assembly includes a top cover located above the processing tank, a rotating stirring component on the top cover, a longitudinal shaft rotatably mounted on the top cover, an installation plate located below the longitudinal shaft, a connecting rod installed at equal angles between the longitudinal shaft and the installation plate, a movable plate slidably mounted on the connecting rod, and four horizontal sliding frames installed at equal angles on the outer side of the installation plate, with metal magnetic separators mounted on the horizontal sliding frames. A pressure rod is fixedly installed at the bottom of the movable plate, extending through to the bottom of the mounting plate, and a pressure plate is installed at the bottom of the pressure rod; The metal magnetic separator includes a sliding block slidably connected to a horizontal sliding frame. A rotating base is installed at the bottom of the sliding block, and a rotating head is rotatably mounted on the rotating base. An end gear is installed at the end of the rotating head's shaft, and an electromagnetic rod is installed at the bottom of the rotating head. A rotation drive is connected to the outside of the end gear. The rotation drive is used to rotate the electromagnetic rod. When in a vertical position, it agitates the waste material and cleaning water, facilitating cleaning and magnetic separation. When in a horizontal position, the electromagnetic rod cooperates with the rinsing and separation assembly to remove and collect the adhered metal, while the pressure plate cooperates with the rinsing and separation assembly to rinse the electromagnetic rod.
[0005] Preferably, the rotation drive component includes a toothed plate disposed on one side of the end gear, a top plate disposed above the sliding block, the top plate being fixedly connected to the toothed plate, the toothed plate being slidably connected to the sliding block, springs being symmetrically installed at the bottom end of the top plate, the bottom end of the springs being fixedly connected to the sliding block, a sliding box being installed at the top end of the sliding block, the top plate being slidably connected to the sliding box, a magnet being installed on the top plate, and an electromagnet being installed on the inner bottom wall of the sliding box.
[0006] Preferably, four connecting rods are hinged at equal angles on the outer side of the movable plate, and the four connecting rods correspond one-to-one with the four sliding blocks. The other end of the connecting rod is hinged to the sliding box on the top of the corresponding sliding block. A second screw is rotatably installed between the longitudinal axis and the mounting plate. The second screw is threadedly connected to the movable plate. The top end of the second screw is fixedly connected to the output shaft of the third motor. The third motor is fixedly installed on the longitudinal axis.
[0007] Preferably, a driven gear is fixedly installed at the top end of the longitudinal shaft, a driving gear is meshed with one side of the driven gear, the driving gear is fixedly connected to the output shaft of the second motor, the second motor is fixedly installed at the top end of the top cover, hanging rods are symmetrically installed at the bottom end of the top cover, a filter base plate is installed at the bottom end of the hanging rods, a longitudinal sliding frame is installed at equal angles on the outside of the treatment box, a support frame is installed at equal angles on the bottom end of the top cover, the support frame is slidably connected to the longitudinal sliding frame, a first screw is rotatably installed inside the longitudinal sliding frame, the first screw is threadedly connected to the support frame, the top end of the first screw is fixedly connected to the output shaft of the first motor, and the first motor is fixedly installed at the top end of the longitudinal sliding frame.
[0008] Preferably, the rinsing and separation assembly includes an inner cylinder fixedly installed on the bottom wall of the treatment tank, a first side pipe installed at an equal angle at the bottom outer end of the inner cylinder, a first one-way valve installed inside the first side pipe, four metal separation components installed at equal angles inside the treatment tank, and a pressure plate located above the inner cylinder.
[0009] Preferably, the metal separator includes a separation chamber formed at equal angles inside the processing box. An insertion hole is provided at the top of the separation chamber on the side closest to the inner cavity of the processing box. The height of the insertion hole is consistent with the height of the electromagnetic rod when it is rotated to a horizontal state. A metal filter plate is installed in the middle of the insertion hole. A cleaning tank is provided on the side of the separation chamber closest to the outer wall of the processing box. A stop door is bolted to the outer wall of the processing box. The stop door is used to close the cleaning tank, which is located above the metal filter plate.
[0010] Preferably, nozzles are evenly installed at the top of the separation chamber, and four top slots are opened at equal angles inside the processing box. The top slots are located above the corresponding separation chambers and are connected to the nozzles. A connecting piece is provided between the top slots and the inner cylinder.
[0011] Preferably, the processing box has four water storage tanks at equal angles inside, and the water storage tanks are located below the corresponding separation chambers. A longitudinal groove is formed between the water storage tanks and the separation chambers. A piston plate is movably installed inside the water storage tank. A cylinder is fixedly installed on the outer wall of the processing box. The output end of the cylinder passes through the inside of the water storage tank and is fixedly connected to the piston plate. A second side pipe is installed at the end of the water storage tank near the inner cavity of the processing box. A second one-way valve is installed inside the second side pipe. The piston plate is located on the side of the longitudinal groove away from the second side pipe. The filter base plate is located above the first side pipe and the second side pipe.
[0012] Preferably, the connecting member includes a bottom groove formed inside the processing box, the bottom groove being located below the inner cylinder and connected to the inner cylinder, and a connecting groove formed at equal angles on the outer side of the bottom groove, and multiple connecting grooves extending into the interior of each top groove.
[0013] Preferably, the bottom of the processing box is equipped with support legs at equal angles, and a drain pipe is installed at the bottom of the processing box, with a solenoid valve installed on the drain pipe.
[0014] Compared with the prior art, the beneficial effects of the present invention are: 1. In this invention, when the electromagnetic rod is in a vertical state, it is inserted into the cleaning water to stir the cleaning water and the outer rubber of the wire. This can clean the stains on the surface of the outer rubber of the wire and facilitate the separation of the outer rubber of the wire from the metal debris attached to it. At the same time, after the electromagnetic rod generates magnetic force, it can attract the metal debris and expand the attraction range by rotating, thereby improving the metal debris removal effect. 2. In this invention, when the electromagnetic rod is in a vertical state, it is driven to move along the horizontal sliding frame, which can expand the stirring range and the magnetic separation range. When the electromagnetic rod is rotated to a horizontal state, it is driven to move along the horizontal sliding frame, so that it enters the separation chamber to remove metal debris, thus avoiding the decrease in magnetic separation effect caused by excessive metal debris adsorption on the outside of the electromagnetic rod. 3. In this invention, after the metal debris is completely adsorbed by the electromagnetic rod and enters the separation chamber, it is demagnetized and falls off. While it continues to move, the pressure plate continues to move downward, pushing the cleaning water inside the inner cylinder to spray out from the nozzle at the top of the separation chamber. This can wash off the metal debris adhering to the surface of the electromagnetic rod and improve the metal debris separation effect. 4. In this invention, after the clean water enters the water storage tank, the cylinder and piston plate push the clean water in the water storage tank into the treatment tank, so that the clean water can circulate inside the treatment tank, the inner cylinder and the water storage tank, thereby improving the cleaning impact effect of the clean water on the outer rubber of the wire and improving the treatment efficiency of the outer rubber of the wire. Attached Figure Description
[0015] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.
[0016] In the attached diagram: Figure 1 This is a schematic diagram of the waste recycling mechanism of the terminal stripping machine of the present invention; Figure 2 This is a schematic diagram of the stirring magnetic separation component of the present invention; Figure 3 This is a schematic diagram of the rotating stirring component of the present invention; Figure 4 This is a schematic diagram of the structure of the metal magnetic separator of the present invention; Figure 5 This is a schematic diagram of the rinsing and separation component structure of the present invention; Figure 6 For the present invention Figure 5 Enlarged view of point A in the middle; Figure 7 This is a schematic diagram of the communicating groove structure of the present invention; In the diagram: 1. Processing box; 2. Support leg; 3. Drain pipe; 4. Solenoid valve; 5. Stirring and magnetic separation assembly; 501. Top cover; 502. Longitudinal sliding frame; 503. Support frame; 504. First screw; 505. First motor; 506. Second motor; 507. Drive gear; 508. Rotating stirring component; 5081. Longitudinal shaft; 5082. Driven gear; 5083. Mounting plate; 5084. Connecting rod; 5085. Horizontal sliding frame; 5086. Moving plate; 5087. Connecting rod; 5088. Second screw; 5089. Third motor; 50810. Pressure rod; 50811. Pressure plate; 509. Metal magnetic separator; 5091. Sliding block; 5092. Rotary seat; 5093. Rotating head; 5094. Solenoid rod; 5095. 5096. End gear; 5097. Tooth plate; 5098. Top plate; 5099. Spring; 5099. Sliding box; 50910. Magnetic block; 50911. Electromagnet; 510. Filter base plate; 511. Hanging rod; 6. Flushing and separating assembly; 601. Inner cylinder; 602. Bottom groove; 603. First side pipe; 604. First one-way valve; 605. Connecting groove; 606. Metal separating component; 6061. Separation chamber; 6062. Insertion hole; 6063. Metal filter plate; 6064. Cleaning groove; 6065. Baffle; 6066. Nozzle; 6067. Top groove; 6068. Water storage tank; 6069. Longitudinal groove; 60610. Piston plate; 60611. Cylinder; 60612. Second side pipe; 60613. Second one-way valve. Detailed Implementation
[0017] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0018] Depend on Figures 1-7 The present invention relates to a waste recycling mechanism for a terminal stripping machine, comprising a processing box 1, a stirring magnetic separation component 5 disposed above the processing box 1, a rinsing and separation component 6 disposed inside the processing box 1, support legs 2 installed at equal angles at the bottom of the processing box 1, a drain pipe 3 installed at the bottom of the processing box 1, and a solenoid valve 4 installed on the drain pipe 3.
[0019] The stirring magnetic separator 5 includes a top cover 501 disposed above the processing tank 1.
[0020] A rotating agitator 508 is provided on the top cover 501. The rotating agitator 508 includes a longitudinal shaft 5081 rotatably mounted on the top cover 501. A mounting plate 5083 is provided below the longitudinal shaft 5081. A connecting rod 5084 is installed at equal angles between the longitudinal shaft 5081 and the mounting plate 5083. A movable plate 5086 is slidably mounted on the connecting rod 5084. Four horizontal sliding frames 5085 are installed at equal angles on the outer side of the mounting plate 5083. A metal magnetic separator 509 is provided on the horizontal sliding frame 5085. A pressure rod 50810 is fixedly installed at the bottom end of the movable plate 5086. The pressure rod 50810 extends through to the bottom of the mounting plate 5083. A pressure plate 50811 is installed at the bottom end of the pressure rod 50810.
[0021] A driven gear 5082 is fixedly installed at the top of the longitudinal shaft 5081. A driving gear 507 is meshed with one side of the driven gear 5082. The driving gear 507 is fixedly connected to the output shaft of the second motor 506. The second motor 506 is fixedly installed at the top of the top cover 501. A hanging rod 511 is symmetrically installed at the bottom of the top cover 501. A filter base plate 510 is installed at the bottom of the hanging rod 511. A longitudinal sliding frame 502 is installed at equal angles on the outside of the treatment box 1. A support frame 503 is installed at equal angles on the bottom of the top cover 501. The support frame 503 is slidably connected to the longitudinal sliding frame 502. A first screw 504 is rotatably installed inside the longitudinal sliding frame 502. The first screw 504 is threadedly connected to the support frame 503. The top of the first screw 504 is fixedly connected to the output shaft of the first motor 505. The first motor 505 is fixedly installed at the top of the longitudinal sliding frame 502.
[0022] The metal magnetic separator 509 includes a sliding block 5091 slidably connected to a horizontal sliding frame 5085. A rotating base 5092 is mounted on the bottom end of the sliding block 5091, and a rotating head 5093 is rotatably mounted on the rotating base 5092. An end gear 5095 is mounted on the end of the rotating shaft of the rotating head 5093, and an electromagnetic rod 5094 is mounted on the bottom end of the rotating head 5093. When the electromagnetic rod 5094 is in a vertical state, it is inserted into the cleaning water to agitate the cleaning water and the outer rubber of the wire, thereby cleaning the surface of the outer rubber of the wire and facilitating the removal of metal fragments adhering to the outer rubber of the wire. The process involves separating metal debris. Simultaneously, the electromagnetic rod 5094 generates magnetic force to attract metal debris, and its rotation expands the attraction range, improving the removal effect. A rotating drive is connected to the outer side of the end gear 5095 to rotate the electromagnetic rod 5094. When in a vertical position, it agitates the waste and cleaning water, facilitating cleaning and magnetic separation. When in a horizontal position, the electromagnetic rod 5094 works with the rinsing and separation assembly 6 to remove and collect the adhered metal. The pressure plate 50811 works with the rinsing and separation assembly 6 to rinse the electromagnetic rod 5094.
[0023] The rotation drive component includes a toothed plate 5096 disposed on one side of the end gear 5095, a top plate 5097 disposed above the sliding block 5091, the top plate 5097 being fixedly connected to the toothed plate 5096, the toothed plate 5096 being slidably connected to the sliding block 5091, springs 5098 symmetrically mounted on the bottom end of the top plate 5097, the bottom end of the springs 5098 being fixedly connected to the sliding block 5091, a sliding box 5099 mounted on the top end of the sliding block 5091, and the top plate 5097 being slidably connected to the sliding box 5099. A magnetic block 50910 is installed on the plate 5097, and an electromagnet 50911 is installed on the inner bottom wall of the sliding box 5099. When the electromagnetic rod 5094 is in a vertical state, it is driven to move along the horizontal sliding frame 5085, which can expand the stirring range and magnetic separation range. When the electromagnetic rod 5094 is rotated to a horizontal state, it is driven to move along the horizontal sliding frame 5085 to remove metal debris, thus avoiding a decrease in magnetic separation effect due to excessive adsorption of metal debris on the outside of the electromagnetic rod 5094.
[0024] Four connecting rods 5087 are hinged at equal angles on the outer side of the movable plate 5086. The four connecting rods 5087 correspond one-to-one with the four sliding blocks 5091. The other end of the connecting rod 5087 is hinged to the sliding box 5099 on the top of the corresponding sliding block 5091. A second screw 5088 is rotatably installed between the longitudinal shaft 5081 and the mounting plate 5083. The second screw 5088 is threadedly connected to the movable plate 5086. The top end of the second screw 5088 is fixedly connected to the output shaft of the third motor 5089. The third motor 5089 is fixedly installed on the longitudinal shaft 5081.
[0025] The rinsing and separation assembly 6 includes an inner cylinder 601 fixedly installed on the bottom wall of the treatment tank 1. A first side pipe 603 is installed at an equal angle on the outer bottom end of the inner cylinder 601. A first one-way valve 604 is provided inside the first side pipe 603. Four metal separation parts 606 are provided at an equal angle inside the treatment tank 1. A pressure plate 50811 is located above the inner cylinder 601.
[0026] The metal separator 606 includes a separation chamber 6061 equidistantly formed inside the processing chamber 1. An insertion hole 6062 is provided at the top of the separation chamber 6061 on the side closest to the inner cavity of the processing chamber 1. The height of the insertion hole 6062 is the same as the height of the electromagnetic rod 5094 when rotated to a horizontal position. A metal filter plate 6063 is installed in the middle of the insertion hole 6062. A cleaning trough 6064 is provided on the side of the separation chamber 6061 closest to the outer wall of the processing chamber 1. A stop door 6065 is bolted to the outer wall of the processing chamber 1 to close the cleaning trough 6064. The cleaning trough 6064 is located above the metal filter plate 6063. Sprayers are evenly installed at the top of the separation chamber 6061. The nozzle 6066 and the processing box 1 have four top grooves 6067 at equal angles inside. The top grooves 6067 are located above the corresponding separation chambers 6061 and are connected to the nozzles 6066. After the electromagnetic rod 5094 completely enters the separation chamber 6061 after adsorbing metal debris, it loses its magnetism and drops the material. While it continues to move, the pressure plate 50811 continues to move downward, pushing the cleaning water inside the inner cylinder 601 to spray out from the nozzles 6066 at the top of the separation chamber 6061. This can wash off the metal debris adhering to the surface of the electromagnetic rod 5094 and improve the metal debris separation effect. A connecting piece is provided between the top grooves 6067 and the inner cylinder 601.
[0027] The processing tank 1 has four water storage tanks 6068 equidistantly formed inside, each located below a corresponding separation chamber 6061. A longitudinal groove 6069 is formed between the water storage tanks 6068 and the separation chambers 6061. A piston plate 60610 is movably installed inside each water storage tank 6068. A cylinder 60611 is fixedly installed on the outer wall of the processing tank 1, with its output end penetrating into the water storage tank 6068 and fixedly connected to the piston plate 60610. A second side pipe 60612 is installed at one end of the water storage tank 6068 closest to the inner cavity of the processing tank 1. The interior of the second side pipe 60612... A second one-way valve 60613 is installed, and a piston plate 60610 is located on the side of the longitudinal groove 6069 away from the second side pipe 60612. The filter base plate 510 is located above the first side pipe 603 and the second side pipe 60612. After the clean water enters the water storage tank 6068, it is pushed into the treatment tank 1 by the cylinder 60611 and the piston plate 60610. This allows the clean water to circulate inside the treatment tank 1, the inner cylinder 601 and the water storage tank 6068, thereby improving the cleaning impact effect of the clean water on the outer sheath of the wire and improving the treatment efficiency of the outer sheath of the wire.
[0028] The connecting member includes a bottom groove 602 opened inside the processing box 1. The bottom groove 602 is located below the inner cylinder 601 and is connected to the inner cylinder 601. A connecting groove 605 is opened at an equal angle on the outer side of the bottom groove 602. Multiple connecting grooves 605 extend into the interior of each top groove 6067.
[0029] Working principle: During use, the outer sheath of the wires collected from the terminal stripping machine is placed onto the filter base plate 510. Then, each of the first motors 505 is turned on simultaneously, driving the first screw 504 to rotate. Since the support frame 503 is threadedly connected to the first screw 504, the top cover 501 is moved downward, causing the filter base plate 510 to move downward into the processing tank 1. Then, clean water is introduced into the processing tank 1 through the gap between the processing tank 1 and the top cover 501. Since the first one-way valve 604 only allows external water to enter the inner cylinder 601, under the action of the communicating vessel principle, some clean water enters the inner cylinder 601 from the first side pipe 603 until the liquid levels inside and outside the inner cylinder 601 are level. At this time, the second motor 506 is turned on, driving the drive gear 507 to rotate. Since the driven gear 5082 at the top of the longitudinal shaft 5081 is meshed with the drive gear 507, the entire device at the bottom of the longitudinal shaft 5081 is rotated. During the rotation of the electromagnetic rod 5094, the outer rubber of the wire is stirred with the cleaning water, so that the cleaning water can impact the outer rubber of the wire, thereby cleaning and removing the dirt on the surface of the outer rubber of the wire, which is convenient for subsequent recycling. At the same time, it can also detach the metal on the outer rubber of the wire into the cleaning water. During the stirring process, the electromagnetic rod 5094 is energized to generate magnetic force, which adsorbs the metal detached from the outer rubber of the wire, thus completing the magnetic separation. After a period of stirring, the longitudinal shaft 5081 is rotated to a position where each electromagnetic rod 5094 corresponds to each insertion hole 6062. The encoder installed on the second motor 506 enables the mounting plate 5083 to rotate a full number of revolutions, ensuring that after the rotation stops, the electromagnetic rods 5094 and insertion holes 6062 are still in a one-to-one correspondence. The electromagnet 50911 is energized to attract the magnetic block 50910, thereby driving the top plate 5097 to move downward, which in turn pushes the toothed plate 5096 to move downward. Since the toothed plate 5096 meshes with the end gear 5095, it drives the electromagnetic rod 5094 to rotate away from the mounting plate 5083 until it rotates to a horizontal position. At this time, a lot of metal debris is adsorbed on the outer wall of the electromagnetic rod 5094. The power supply for the electromagnetic rods 5094 and the electromagnet 50911 is installed on their respective sliding blocks 5091. Then, the third motor 5089 is turned on, driving the second screw 5088 to rotate. Since the second screw 5088 is threadedly connected to the moving plate 5086, it drives the moving plate 5086 to move downward along the connecting rod 5084. Through each connecting rod 5087, each electromagnetic rod 5094 is pushed along the horizontal sliding frame 5085 towards the corresponding insertion hole 6062, so that the magnetic part of the insertion hole 6062 continuously enters the separation chamber 6061. After the magnetic part enters the separation chamber 6061, the power to the electromagnetic rod 5094 is cut off, so that the metal debris adsorbed on the electromagnetic rod 5094 falls off under the action of gravity after losing the attraction force. Simultaneously, as the electromagnetic rod 5094 moves, the moving plate 5086 moves downward, causing the pressure plate 50811 to move downward and enter the inner cylinder 601, generating pressure on the cleaning water in the inner cylinder 601. Under pressure, the cleaning water cannot enter the processing tank 1 through the first side pipe 603 via the first one-way valve 604. Instead, the cleaning water is forced into the top groove 6067 through the connecting groove 605 and sprayed downward from the nozzle 6066 at the top of the separation chamber 6061 to rinse the electromagnetic rod 5094, washing off the metal debris adhering to the electromagnetic rod 5094 and improving the metal debris separation effect. Then, the moving plate 5086 moves upward and pulls the electromagnetic rod 5094 back, leaving it from the separation chamber 6061. Then, the electromagnet 50911 is de-energized, and the electromagnetic rod 5094 is re-energized. The above operation is repeated to continue stirring and magnetic separation. The cleaning water used to rinse the electromagnetic rod 5094 enters the separation chamber 6061. The metal debris is filtered at the metal filter plate 6063. The cleaning water enters the water storage tank 6068 through the longitudinal groove 6069. Then, the control cylinder 60611 is opened, causing the piston plate 60610 to move and push the cleaning water back into the processing tank 1 through the second side pipe 60612. This allows the cleaning water in the processing tank 1 to circulate, improving the cleaning effect on the outer rubber of the wire. The second one-way valve 60613 only allows water from the water storage tank 6068 to enter the processing tank 1. Within a certain period of time, the operator needs to open the baffle door 6065 to collect and process the metal debris filtered out by the metal filter plate 6063. After cleaning is completed, the top cover 501 is moved upward and lifted by the first motor 505. Then, the staff collects the cleaned wire outer rubber on the filter bottom plate 510 and opens the drain pipe 3 to drain the cleaning water inside the treatment box 1. The drain pipe 3 is best located at the bottom of the bottom groove 602. When draining, it can drain the cleaning water in the inner cylinder 601 and the connecting groove 605.
[0030] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0031] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A waste recycling mechanism for a terminal stripping machine, comprising a processing box (1), characterized in that: A stirring magnetic separation assembly (5) is provided above the processing tank (1), and a rinsing separation assembly (6) is provided inside the processing tank (1). The stirring magnetic separator assembly (5) includes a top cover (501) disposed above the processing tank (1), a rotating stirring component (508) disposed on the top cover (501), the rotating stirring component (508) includes a longitudinal shaft (5081) rotatably mounted on the top cover (501), an mounting plate (5083) disposed below the longitudinal shaft (5081), a connecting rod (5084) is installed at equal angles between the longitudinal shaft (5081) and the mounting plate (5083), a movable plate (5086) is slidably mounted on the connecting rod (5084), four horizontal sliding frames (5085) are installed at equal angles on the outer side of the mounting plate (5083), and metal magnetic separators (509) are disposed on the horizontal sliding frames (5085); A pressure rod (50810) is fixedly installed at the bottom of the movable plate (5086). The pressure rod (50810) extends through to the bottom of the mounting plate (5083). A pressure plate (50811) is installed at the bottom of the pressure rod (50810). The metal magnetic separator (509) includes a sliding block (5091) slidably connected to a horizontal sliding frame (5085). A rotating seat (5092) is installed at the bottom of the sliding block (5091). A rotating head (5093) is rotatably mounted on the rotating seat (5092). An end gear (5095) is installed at the end of the rotating shaft of the rotating head (5093). An electromagnetic rod (5094) is installed at the bottom of the rotating head (5093). A rotating drive is connected to the outside of the end gear (5095). The rotating drive is used to rotate the electromagnetic rod (5094). When it is in a vertical position, it stirs the waste and cleaning water, which is convenient for cleaning and magnetic separation. When it is in a horizontal position, the electromagnetic rod (5094) cooperates with the rinsing and separation assembly (6) to remove and collect the adhered metal. The pressure plate (50811) cooperates with the rinsing and separation assembly (6) to rinse the electromagnetic rod (5094).
2. The waste recycling mechanism of a terminal stripping machine according to claim 1, characterized in that: The rotation drive includes a toothed plate (5096) disposed on one side of the end gear (5095), a top plate (5097) disposed above the sliding block (5091), the top plate (5097) being fixedly connected to the toothed plate (5096), the toothed plate (5096) being slidably connected to the sliding block (5091), springs (5098) being symmetrically installed at the bottom end of the top plate (5097), the bottom end of the springs (5098) being fixedly connected to the sliding block (5091), a sliding box (5099) being installed at the top end of the sliding block (5091), the top plate (5097) being slidably connected to the sliding box (5099), a magnet (50910) being installed on the top plate (5097), and an electromagnet (50911) being installed on the inner bottom wall of the sliding box (5099).
3. The waste recycling mechanism of a terminal stripping machine according to claim 1, characterized in that: Four connecting rods (5087) are hinged at equal angles on the outer side of the movable plate (5086). The four connecting rods (5087) correspond one-to-one with the four sliding blocks (5091). The other end of the connecting rod (5087) is hinged to the sliding box (5099) on the top of the corresponding sliding block (5091). A second screw (5088) is rotatably installed between the longitudinal shaft (5081) and the mounting plate (5083). The second screw (5088) is threadedly connected to the movable plate (5086). The top end of the second screw (5088) is fixedly connected to the output shaft of the third motor (5089). The third motor (5089) is fixedly installed on the longitudinal shaft (5081).
4. The waste recycling mechanism of a terminal stripping machine according to claim 1, characterized in that: A driven gear (5082) is fixedly installed at the top of the longitudinal shaft (5081). A driving gear (507) is meshed with one side of the driven gear (5082). The driving gear (507) is fixedly connected to the output shaft of the second motor (506). The second motor (506) is fixedly installed at the top of the top cover (501). A hanging rod (511) is symmetrically installed at the bottom of the top cover (501). A filter base plate (510) is installed at the bottom of the hanging rod (511). The outer side of the treatment box (1) is equidistantly equipped with... The top cover (501) is equipped with a longitudinal sliding frame (502) and a support frame (503) is installed at an equal angle at the bottom end of the top cover (501). The support frame (503) is slidably connected to the longitudinal sliding frame (502). A first screw (504) is rotatably installed inside the longitudinal sliding frame (502). The first screw (504) is threadedly connected to the support frame (503). The top end of the first screw (504) is fixedly connected to the output shaft of the first motor (505). The first motor (505) is fixedly installed on the top end of the longitudinal sliding frame (502).
5. The waste recycling mechanism of a terminal stripping machine according to claim 1, characterized in that: The rinsing and separation assembly (6) includes an inner cylinder (601) fixedly installed on the bottom wall of the treatment box (1), a first side pipe (603) installed at an equal angle on the outer bottom end of the inner cylinder (601), a first one-way valve (604) provided inside the first side pipe (603), four metal separation parts (606) provided at an equal angle inside the treatment box (1), and a pressure plate (50811) located above the inner cylinder (601).
6. The waste recycling mechanism of a terminal stripping machine according to claim 5, characterized in that: The metal separator (606) includes a separation chamber (6061) that is opened at an equal angle inside the processing box (1). An insertion hole (6062) is provided on the top side of the separation chamber (6061) near the inner cavity of the processing box (1). The height of the insertion hole (6062) is the same as the height of the electromagnetic rod (5094) when it is rotated to a horizontal state. A metal filter plate (6063) is installed in the middle of the insertion hole (6062). A cleaning tank (6064) is provided on the side of the separation chamber (6061) near the outer wall of the processing box (1). A stop door (6065) is bolted on the outer wall of the processing box (1). The stop door (6065) is used to close the cleaning tank (6064). The cleaning tank (6064) is located above the metal filter plate (6063).
7. The waste recycling mechanism of a terminal stripping machine according to claim 6, characterized in that: The top of the separation chamber (6061) is uniformly equipped with nozzles (6066), and the inside of the processing box (1) is provided with four top grooves (6067) at equal angles. The top grooves (6067) are located above the corresponding separation chambers (6061), and the top grooves (6067) are connected to the nozzles (6066). A connecting piece is provided between the top grooves (6067) and the inner cylinder (601).
8. The waste recycling mechanism of a terminal stripping machine according to claim 1, characterized in that: The processing box (1) has four water storage tanks (6068) equidistantly formed inside. The water storage tanks (6068) are located below the corresponding separation chambers (6061). A longitudinal groove (6069) is formed between the water storage tanks (6068) and the separation chambers (6061). A piston plate (60610) is movably installed inside the water storage tanks (6068). A cylinder (60611) is fixedly installed on the outer wall of the processing box (1). The output end of the cylinder (60611) extends through the water storage tank (6068). Inside the water tank (6068), and fixedly connected to the piston plate (60610), a second side pipe (60612) is installed at one end of the water tank (6068) near the inner cavity of the treatment box (1). A second one-way valve (60613) is installed inside the second side pipe (60612). The piston plate (60610) is located on the side of the longitudinal groove (6069) away from the second side pipe (60612). The filter base plate (510) is located above the first side pipe (603) and the second side pipe (60612).
9. The waste recycling mechanism of a terminal stripping machine according to claim 7, characterized in that: The connecting element includes a bottom groove (602) opened inside the processing box (1). The bottom groove (602) is located below the inner cylinder (601) and is connected to the inner cylinder (601). A connecting groove (605) is opened at an equal angle on the outer side of the bottom groove (602). Multiple connecting grooves (605) extend into the interior of each top groove (6067).
10. The waste recycling mechanism of a terminal stripping machine according to claim 1, characterized in that: The bottom of the processing box (1) is equipped with support legs (2) at equal angles, and a drain pipe (3) is installed at the bottom of the processing box (1). A solenoid valve (4) is installed on the drain pipe (3).