A waste plastic recycling equipment
The cup-shaped plastic is separated and rinsed by a cutting and hammering separation component, which solves the problem of difficult separation of impurities in cup-shaped plastic and improves recycling quality and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-17
- Publication Date
- 2026-03-20
AI Technical Summary
In existing technologies, it is difficult to separate impurities from plastics during the recycling process of cup-shaped plastics. In particular, when the stacked structure is broken, the impurities and plastics are severely mixed, which affects the recycling quality. Moreover, it is difficult to remove impurities from cup-shaped plastics.
The cup-shaped plastic is cut into two halves using a cutting component. Combined with a hammer separation component and a rinsing component, the cutting is fixed by a puncture needle, the impurities are separated by hammering, and the material is soaked and rinsed twice. A water treatment system is then used to remove soluble residues.
It effectively separates impurities, improves the quality of recycled plastics, reduces sorting time and labor intensity, shortens the processing cycle, and improves equipment utilization.
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Figure CN120422385B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of plastic recycling, in particular to a waste plastic recycling equipment. BACKGROUND
[0002] In the prior art, for the recycling of cup-shaped plastics (such as milk tea cups, including single and stacked forms), a common processing method is to directly crush them into small pieces. However, this processing method has significant defects: in the crushing process, the impurities mixed in the cup-shaped plastics are crushed together, and the fine particles generated during crushing are easily squeezed into or embedded in the plastics, making it difficult to separate the impurities from the plastics, which seriously affects the quality of the recycled plastics. Especially for cup-shaped plastics stacked together, the stacking structure will exacerbate the mixing of impurities and plastics during crushing, further affecting the quality of the recycled plastics. In addition, cup-shaped plastics are used to hold beverages containing sugar, and additional rinsing operations are required during recycling. SUMMARY
[0003] In order to overcome the problem that impurities mixed in cup-shaped plastics are crushed together, and fine particles generated during crushing are easily squeezed into or embedded in the plastics, making it difficult to separate the impurities from the plastics, the present application provides a waste plastic recycling equipment.
[0004] The technical solution is as follows: a waste plastic recycling equipment, comprising a cabin; a first feeding port is provided at the upper right part of the cabin, and a second feeding port is provided at the lower right part of the cabin; a first discharging port is provided at the upper left part of the cabin, and a second discharging port is provided at the lower left part of the cabin;
[0005] It further comprises a slitting assembly, a hammering separation assembly, and a rinsing assembly; the slitting assembly is installed at the upper part of the cabin, and the cup-shaped plastics sent from the first feeding port are cut into two halves by the cutter of the slitting assembly; the hammering separation assembly is installed at the first discharging port, and the cup-shaped plastics cut into two halves and stacked are separated by hammering of the hammering separation assembly; the rinsing assembly is installed at the lower part of the cabin, and the plastic pieces after the first crushing are rinsed by the rinsing assembly.
[0006] Further, it further comprises a conveying and selecting assembly, which is provided at one side of the cabin; the cup-shaped plastics treated by hammering of the hammering separation assembly enter the conveying and selecting assembly, and the workers select the impurities in the cut cup-shaped plastics at the selection station of the conveying and selecting assembly.
[0007] Further, it further comprises a crushing and conveying assembly, which is provided at one side of the cabin; the cup-shaped plastics selected by the workers are sent to the crushing and conveying assembly for crushing, and plastic pieces are obtained, which are conveyed to the rinsing assembly for rinsing through the second feeding port.
[0008] Further, the cabin bottom has a drain port, through which the water in the cabin is drained, and the drain port is connected to the water treatment system, through which water is supplied to the cabin.
[0009] Further, the slitting assembly comprises a receiving plate, a lifting assembly, a connecting frame, a pressing plate and a cutting unit; the receiving plate is fixedly connected to the middle of the cabin; a plurality of lifting assemblies are installed on the upper side of the cabin; the connecting frame is fixedly connected to the lifting part of the lifting assembly; the pressing plate is fixedly connected to the lower side of the connecting frame; the cutting unit is arranged between the receiving plate and the pressing plate.
[0010] Further, the cutting unit comprises a first translation assembly, a first push plate and a flat cutting knife; the first translation assembly is installed on the side wall of the cabin; the first translation assembly has upper, middle and lower moving parts; the first push plate is fixedly connected to the upper and lower moving parts; the flat cutting knife is fixedly connected to the middle moving part, and the flat cutting knife is initially located in the rectangular groove of the first push plate.
[0011] Further, the slitting assembly further comprises a first electric push rod and a needle plate; the first electric push rod is installed on the upper side of the connecting frame, and the needle plate is fixedly connected to the extension part of the first electric push rod; the needle plate has a plurality of puncture needles, and the pressing plate has a through hole matched with the puncture needles.
[0012] Further, the slitting assembly further comprises a connecting plate, a second electric push rod, a support rod and a rotating plate; a plurality of rotating plates are rotatably connected to the receiving plate, and the rotating plates have through holes matched with the puncture needles; a plurality of connecting plates are fixedly connected to the side wall of the cabin and located below the receiving plate; the second electric push rod is fixedly connected to the connecting plate; the support rod is fixedly connected to the second electric push rod, and the rotating plate is supported by the support rod.
[0013] Further, the hammering and separating assembly comprises a third electric push rod, a hammering plate and a rectangular frame; the rectangular frame is fixedly connected to the first discharge port of the cabin; the hammering plate is slidably connected in the rectangular frame and moves up and down; the hammering plate is fixedly connected to the extension part of the third electric push rod; the third electric push rod is installed on the cabin.
[0014] Further, the rinsing assembly comprises a filter plate, a second translation assembly and a second push plate; the filter plate is fixedly connected to the lower side of the cabin; the second translation assembly is installed on the lower side of the cabin; the second push plate is fixedly connected to the moving part of the second translation assembly, and the plastic blocks on the filter plate are pushed to the second discharge port by the second push plate. Advantages
[0015] 1. By cutting the cup-shaped plastic, the stacked cup-shaped plastics are separated from each other, and the cup-shaped plastics are divided into two, then sent to the manual selection station for selection, which is more conducive to picking out impurities than the whole stacked cup-shaped plastics; After picking out a large amount of impurities, the cup-shaped plastics are crushed to obtain plastic blocks with a diameter of about 5 cm, and then the impurities are picked out by manual selection after rinsing, so that the impurities of the cup-shaped plastics are greatly reduced during subsequent crushing, overcoming the problem that the impurities mixed in the cup-shaped plastics are crushed together, and the fine particles generated during crushing are easily squeezed into or embedded in the plastic, making it difficult to separate the impurities from the plastic.
[0016] 2. While cutting the cup-shaped plastic, the cup-shaped plastic can also be soaked twice (soaked during cutting and soaked after primary crushing of the plastic blocks), which can eliminate the sugar content in the cup-shaped plastic and greatly improve the quality of the recycled cup-shaped plastic.
[0017] 3. The cup-shaped plastic is fixed by the puncture needle and cut into two halves, and the structure is open after cutting, so that the impurities are more easily exposed and separated. The cutting strength of the stacked cup body is greatly reduced, and combined with the reciprocating hammering of the hammering plate, the nested cup body can be quickly separated, avoiding the problem that the stacked cup body is wrapped with impurities due to adhesion in the traditional crushing process. The cup body after cutting and separation is in a single piece state, and the impurities are exposed obviously, so that workers can quickly pick and sort at the conveying station, reducing the sorting time and labor intensity.
[0018] 4. The water treatment system dissolves the soluble residues such as sugar in the cup by soaking, cooperates with the rotating plate to agitate the water flow to strengthen the soaking effect, and accelerates the liquid discharge by the inclined structure during drainage, reduces the impurity residue, and avoids the mixed pollution after crushing.
[0019] 5. The cutting assembly and the rinsing assembly can process different batches of materials in parallel, realize "cutting-washing-crushing" assembly line operation, shorten the processing cycle of each batch, and improve the utilization rate of the equipment. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 is a structure diagram of the present application;
[0021] Figure 2 is a sectional view of the present application;
[0022] Figure 3 is a partial structure diagram of Figure 2 ; is a partial structure diagram of
[0023] Figure 4 is a state diagram of Figure 3 , in which the lower pressing plate rises upward;
[0024] Figure 5 is a structure diagram of the cutting assembly of the present application;
[0025] Figure 6 is a partial structure diagram of Figure 5 ;
[0026] Figure 7 is a state diagram of the support rod disclosed by the present application when moving down;
[0027] Figure 8 is a combined structure diagram of the first translation assembly, the first push plate, the flat cutting knife, the second translation assembly and the second push plate disclosed by the present application;
[0028] Figure 9 is an enlarged view of A of Figure 8 ;
[0029] In the figure: 1-cabin body, 2-separating assembly, 3-hammering separating assembly, 4-rinsing assembly, 1a1-first feeding port, 1a2-second feeding port, 1b1-first discharging port, 1b2-second discharging port, 21-accepting plate, 22-lifting assembly, 23-connecting frame, 24-pressing plate, 25-first electric push rod, 26-needle plate, 27-connecting plate, 28-second electric push rod, 29-supporting rod, 211-turning plate, 201-first translation assembly, 202-first push plate, 203-flat cutting knife, 31-third electric push rod, 32-hammering plate, 33-rectangular frame, 41-filtering plate, 42-second translation assembly, 43-second push plate. DETAILED DESCRIPTION
[0030] The embodiments of the present application are described below with reference to the accompanying drawings.
[0031] Example 1: A waste plastic recycling equipment, as shown in Figures 1-9 , comprising a cabin body 1; the cabin body 1 is provided with a first feeding port 1a1 at the upper right part and a second feeding port 1a2 at the lower right part; the cabin body 1 is provided with a first discharging port 1b1 at the upper left part and a second discharging port 1b2 at the lower left part;
[0032] Cup-shaped plastics are sent into the upper part of the cabin body 1 through the first feeding port 1a1, and the cup-shaped plastics have single and stacked shapes;
[0033] Plastic blocks after primary crushing are sent into the lower part of the cabin body 1 through the second feeding port 1a2, and the plastic blocks have a diameter of about 5 cm;
[0034] The first feeding port 1a1, the second feeding port 1a2, the first discharging port 1b1 and the second discharging port 1b2 can be closed by a gate to facilitate water filling into the cabin body 1, which is a prior art and will not be described here;
[0035] Also includes a cutting assembly 2, hammering separation assembly 3 and rinsing assembly 4; the cutting assembly 2 is installed at the upper part of the cabin 1, and the cup-shaped plastic sent from the first feeding port 1a1 is cut into two halves by the cutting assembly 2; the hammering separation assembly 3 is installed at the first discharging port 1b1, and the cup-shaped plastic cut into two halves and stacked is separated by the hammering separation assembly 3; the rinsing assembly 4 is installed at the lower part of the cabin 1, and the plastic block after the first crushing is rinsed by the rinsing assembly 4.
[0036] Also includes a conveying and selecting assembly, which is arranged at one side of the cabin 1, and the cup-shaped plastic after the hammering treatment by the hammering separation assembly 3 enters the conveying and selecting assembly, and the worker selects the impurities in the cut cup-shaped plastic at the selecting station of the conveying and selecting assembly.
[0037] Also includes a crushing and conveying assembly, which is arranged at one side of the cabin 1, and the cup-shaped plastic after the manual selection is sent to the crushing and conveying assembly for crushing to obtain plastic blocks, which are conveyed to the rinsing assembly 4 through the second feeding port 1a2 for rinsing.
[0038] The bottom of the cabin 1 has a drain port for draining the water in the cabin 1, and the drain port is connected to a water treatment system for sending water to the cabin 1.
[0039] As shown in Figure 3 , Figure 4 , the cutting assembly 2 includes a receiving plate 21, a lifting assembly 22, a connecting frame 23, a pressing plate 24 and a cutting unit; the receiving plate 21 is fixedly connected to the middle part of the cabin 1; a plurality of lifting assemblies 22 are installed at the upper side of the cabin 1; the connecting frame 23 is fixedly connected to the lifting part of the lifting assembly 22; the pressing plate 24 is fixedly connected to the lower side of the connecting frame 23; and the cutting unit is arranged between the receiving plate 21 and the pressing plate 24.
[0040] As shown in Figure 9 , the cutting unit includes a first translation assembly 201, a first push plate 202 and a flat cutter 203; the first translation assembly 201 is installed on the side wall of the cabin 1; the first translation assembly 201 has upper, middle and lower moving parts, and the first push plate 202 is fixedly connected to the upper and lower moving parts; the flat cutter 203 is fixedly connected to the middle moving part, and initially located in the rectangular groove of the first push plate 202.
[0041] The cutting assembly 2 further includes a first electric push rod 25 and a needle plate 26; the first electric push rod 25 is installed on the upper side of the connecting frame 23, and the needle plate 26 is fixedly connected to the extension part of the first electric push rod 25; the needle plate 26 has a plurality of puncture needles, and the through holes matched with the puncture needles are formed in the pressing plate 24.
[0042] As shown in Figure 5As shown, the slitting assembly 2 further comprises a connecting plate 27, a second electric push rod 28, a support rod 29 and a rotating plate 211; a plurality of rotating plates 211 are rotatably connected to the receiving plate 21, and the rotating plate 211 is provided with a through hole matched with the puncture needle; a plurality of connecting plates 27 are fixedly connected to the side wall of the cabin body 1 and located below the receiving plate 21; the second electric push rod 28 is fixedly connected to the connecting plate 27; and the support rod 29 is fixedly connected to the second electric push rod 28 and supports the rotating plate 211.
[0043] The hammering separation assembly 3 comprises a third electric push rod 31, a hammering plate 32 and a rectangular frame 33; the rectangular frame 33 is fixedly connected to the first discharge port 1b1 of the cabin body 1; the hammering plate 32 is slidably connected in the rectangular frame 33 and moves up and down; the hammering plate 32 is fixedly connected to the telescopic part of the third electric push rod 31; and the third electric push rod 31 is installed on the cabin body 1.
[0044] The rinsing assembly 4 comprises a filter plate 41, a second translation assembly 42 and a second push plate 43; the filter plate 41 is fixedly connected to the lower side in the cabin body 1; the second translation assembly 42 is installed on the lower side in the cabin body 1; and the second push plate 43 is fixedly connected to the moving part of the second translation assembly 42 and pushes the plastic blocks on the filter plate 41 to the second discharge port 1b2 through the second push plate 43.
[0045] In the prior art, for plastics, especially cup-shaped plastics such as milk tea cups (with single and stacked ones), most of them are directly crushed into small pieces, so that the sundries are also crushed, which is not easy to separate, and the fine particles of the crushed sundries are also squeezed or embedded into the plastics during the crushing process, which is difficult to separate and affects the quality of the recycled plastics.
[0046] In view of the above problems, in the working process of the present application, the collected cup-shaped plastics (with single and stacked ones) are poured from the first feeding port 1a1, as shown in the figure, Figures 3-5 As shown, the cup-shaped plastics are poured on the receiving plate 21, and when the cup-shaped plastics are fed, the first feeding port 1a1 is closed, then the lifting assembly 22 is controlled to move downward, driving the connecting frame 23 and the lower pressing plate 24 to move downward, and the cup-shaped plastics are pressed on the receiving plate 21 by the lower pressing plate 24; then the first electric push rod 25 is controlled to push the needle plate 26 to move downward, the puncture needle of the needle plate 26 directly pierces the cup-shaped plastics and passes through the rotating plate 211, and then the needle plate 26 is controlled to move upward and retreat by two-thirds, that is, the puncture needle is inserted into the cup-shaped plastics by one-third of the depth, so that the cup-shaped plastics are fixed and the whole is pierced;
[0047] Then control the moving part of the first translation assembly 201 to drive the flat cutter 203 to move left to cut the cup-shaped plastic in the middle, cut the cup-shaped plastic into two halves, and because the piercing needle is inserted into the cup-shaped plastic to a depth of one-third, the cup-shaped plastic cannot move when it is cut in the middle, ensuring the cutting effect, and the flat cutter 203 will not touch the piercing needle; After cutting, the needle plate 26 moves up to reset, and the flat cutter 203 moves right to reset;
[0048] Then control the water treatment system to send water into the cabin 1, soak the cup-shaped plastic in the water, and melt the sugar in the cup-shaped plastic into the water. After soaking, the water is discharged through the drain at the bottom of the cabin 1 to take away the sugar; At the same time, because the cup-shaped plastic is cut into two halves and pierced by the piercing needle in advance, most of the water in the cup-shaped plastic can be discharged through the drain;
[0049] Further, when the cup-shaped plastic is soaked in water, the second electric push rod 28 can be controlled to extend and retract to push the support rod 29 to reciprocatingly move up and down, thereby making the rotating plate 211 reciprocatingly rotate to stir the water flow, improving the soaking effect of the water on the cup-shaped plastic, and allowing the sugar to fully melt into the water; and when draining, the support rod 29 is controlled to move down, as shown in Figure 7 At this time, the rotating plate 211 is turned down by gravity, allowing the water to flow down from the opening of the receiving plate 21, and the cup-shaped plastic is also inclined on the rotating plate 211, which can improve the outflow speed of the water in the cup-shaped plastic and shorten the drainage time.
[0050] When the water in the cabin 1 is drained, the moving part of the first translation assembly 201 is controlled to drive the first push plate 202 and the flat cutter 203 to move left at the same time, and the first push plate 202 is used to push the cut cup-shaped plastic into the rectangular frame 33, and the third electric push rod 31 is controlled to extend and retract to drive the hammering plate 32 to reciprocatingly move up and down to hammer the cup-shaped plastic. Because the cup-shaped plastic is cut open, the connection strength between the cup-shaped plastics stacked together is greatly weakened, and when passing through the hammering plate 32, the hammering plate 32 hammers the cup-shaped plastics stacked together to separate them; facilitating subsequent manual sorting of impurities in the cup-shaped plastic;
[0051] Then the cup-shaped plastic is transferred from the first discharge port 1b1 to the conveying and selecting assembly, and the worker selects the impurities in the cut cup-shaped plastic at the selection station of the conveying and selecting assembly.
[0052] Then the cup-shaped plastic selected by the worker is sent to the crushing and conveying assembly for primary crushing to obtain plastic blocks with a diameter of about 5 cm. The plastic blocks are conveyed to the rinsing assembly 4 through the second feeding port 1a2 for rinsing. The plastic blocks are located on the filter plate 41, and at the same time, the cutting assembly 2 synchronously performs the cutting and rinsing work on the next batch of cup-shaped plastic;
[0053] Then when the plastic blocks are rinsed on the filter plate 41 and the water in the cabin 1 is drained, the plastic blocks fall on the filter plate 41, the second translation assembly 42 is controlled to push the second push plate 43 to move to the left, and the plastic blocks are pushed out of the second feeding port 1a2, so that the plastic blocks are subjected to subsequent recycling steps;
[0054] It should be noted that in the drawings of the present application, the size of the stacked cup-shaped plastics is only for convenient display, and multiple groups of conveying and selecting assemblies, crushing and conveying assemblies can also be provided, for example, the plastic blocks can also be processed by another group of conveying and selecting assemblies, crushing and conveying assemblies to improve the recycling effect.
[0055] As can be seen from the above, the present application has the following effects:
[0056] 1. By hammering the cup-shaped plastics after cutting, the stacked cup-shaped plastics are separated from each other, and the cup-shaped plastics are cut in half, and then sent to the manual selection station for selection, which is more conducive to picking out impurities than the whole stacked cup-shaped plastics; After a large amount of impurities are selected, the cup-shaped plastics are subjected to primary crushing to obtain plastic blocks with a diameter of about 5 cm, and after rinsing, the impurities are selected by manual selection again, so that the impurities of the cup-shaped plastics are greatly reduced during subsequent crushing, overcoming the problem that in the prior art, impurities mixed in the cup-shaped plastics are crushed together, and fine particles generated during crushing are easily squeezed into or embedded in the plastics, making it difficult to separate the impurities from the plastics.
[0057] 2. While cutting the cup-shaped plastics, the cup-shaped plastics can also be subjected to two soaking treatments (soaking during cutting and soaking after primary crushing of the plastic blocks), which can eliminate the sugar content in the cup-shaped plastics and greatly improve the quality of the recycled cup-shaped plastics.
[0058] 3. The cup-shaped plastics are fixed by the piercing needle and cut in half in the middle, the structure is open after cutting, and the impurities are more easily exposed and separated. The stacking connection strength of the cut cup body is greatly reduced, combined with the reciprocating hammering of the hammering plate 32, the nested cup body can be quickly separated, avoiding the problem that in the traditional crushing process, the stacked cup body is difficult to separate due to adhesion, resulting in impurities wrapping. The cup body after cutting and separation is in a single piece state, and the impurities are obviously exposed, so workers can quickly pick and sort at the conveying station, reducing the time and labor intensity of sorting.
[0059] 4. The water treatment system dissolves the soluble residues such as sugar in the cup by soaking, cooperates with the rotating plate 211 to stir the water flow to strengthen the soaking effect, and accelerates the liquid discharge by the inclined structure during drainage, reduces impurity residues, and avoids mixed pollution after crushing.
[0060] 5. The cutting assembly 2 and the rinsing assembly 4 can process different batches of materials in parallel, realize the "cutting-washing-crushing" assembly line operation, shorten the processing period of a single batch, and improve the utilization rate of the equipment.
[0061] Finally, it should be noted that the above examples are merely intended to illustrate the technical solutions of the present application and not to limit the scope of protection of the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or equivalently replaced without departing from the essence and scope of the technical solutions of the present application.
Claims
1. A waste plastic recycling and regeneration equipment, comprising a chamber (1); the upper right part of the chamber (1) is provided with a first feed inlet (1a1) and the lower right part is provided with a second feed inlet (1a2); the upper left part of the chamber (1) is provided with a first discharge outlet (1b1) and the lower left part is provided with a second discharge outlet (1b2). Its characteristics are, It also includes a cutting assembly (2), a hammer separation assembly (3), and a rinsing assembly (4); the upper part of the chamber (1) is equipped with a cutting assembly (2), which uses a cutter to cut the cup-shaped plastic fed from the first feed port (1a1) into upper and lower halves; the first discharge port (1b1) is equipped with a hammer separation assembly (3), which uses hammering to separate the cup-shaped plastic that has been cut into two halves and stacked; the lower part of the chamber (1) is equipped with a rinsing assembly (4), which uses rinsing to rinse the plastic blocks after primary crushing. The slitting assembly (2) includes a receiving plate (21), a lifting assembly (22), a connecting frame (23), a lower pressure plate (24), and a cutting unit; the receiving plate (21) is fixedly connected to the middle of the cabin (1); multiple lifting assemblies (22) are installed on the upper side of the cabin (1); the connecting frame (23) is fixedly connected to the lifting part of the lifting assembly (22); the lower pressure plate (24) is fixedly connected to the lower side of the connecting frame (23); a cutting unit is provided between the receiving plate (21) and the lower pressure plate (24); The cutting unit includes a first translation component (201), a first push plate (202), and a flat cutter (203); the first translation component (201) is installed on the side wall of the cabin (1); the first translation component (201) has three moving parts, upper, middle and lower, the upper and lower moving parts are fixedly connected to the first push plate (202); the middle moving part is fixedly connected to the flat cutter (203), and the flat cutter (203) is initially located in the rectangular groove of the first push plate (202); The slitting assembly (2) also includes a first electric push rod (25) and a needle plate (26); the first electric push rod (25) is installed on the upper side of the connecting frame (23), and the needle plate (26) is fixedly connected to the telescopic part of the first electric push rod (25). The needle plate (26) has multiple puncture needles, and the lower pressure plate (24) has through holes adapted to the puncture needles.
2. The waste plastic recycling and regeneration equipment according to claim 1, characterized in that, It also includes a conveying and sorting component. The conveying and sorting component is provided on one side of the cabin (1). The cup-shaped plastic, which has been hammered by the hammering separation component (3), enters the conveying and sorting component. The workers pick out the impurities in the cut cup-shaped plastic at the sorting station of the conveying and sorting component.
3. The waste plastic recycling and regeneration equipment according to claim 2, characterized in that, It also includes a crushing and conveying assembly. The crushing and conveying assembly is provided on one side of the cabin (1). The cup-shaped plastics that have been manually selected are fed into the crushing and conveying assembly for crushing to obtain plastic blocks. The plastic blocks are conveyed to the rinsing assembly (4) through the second feed port (1a2) for rinsing.
4. The waste plastic recycling and regeneration equipment according to claim 1, characterized in that, The bottom of the compartment (1) has a drain outlet, through which water in the compartment (1) is discharged. The drain outlet is connected to a water treatment system, through which water is sent into the compartment (1).
5. The waste plastic recycling and regeneration equipment according to claim 1, characterized in that, The slitting assembly (2) also includes a connecting plate (27), a second electric push rod (28), a support rod (29), and a rotating plate (211); multiple rotating plates (211) are rotatably connected to the receiving plate (21), and the rotating plates (211) are provided with through holes adapted to the puncture needle; multiple connecting plates (27) are fixed to the side wall of the chamber (1), and the connecting plates (27) are located below the receiving plate (21); a second electric push rod (28) is fixed to the connecting plate (27); the second electric push rod (28) is fixed to the support rod (29), and the rotating plate (211) is supported by the support rod (29).
6. The waste plastic recycling and regeneration equipment according to claim 1, characterized in that, The hammer separation assembly (3) includes a third electric push rod (31), a hammer plate (32) and a rectangular frame (33); the rectangular frame (33) is fixedly connected to the first discharge port (1b1) of the chamber (1); the hammer plate (32) that moves up and down is slidably connected in the rectangular frame (33); the hammer plate (32) is fixedly connected to the telescopic part of the third electric push rod (31); the third electric push rod (31) is installed on the chamber (1).
7. The waste plastic recycling and regeneration equipment according to claim 1, characterized in that, The rinsing assembly (4) includes a filter plate (41), a second translation assembly (42), and a second pusher plate (43); the filter plate (41) is fixedly connected to the lower side of the chamber (1); the second translation assembly (42) is installed on the lower side of the chamber (1); the moving part of the second translation assembly (42) is fixedly connected to the second pusher plate (43), and the plastic block on the filter plate (41) is pushed towards the second discharge port (1b2) by the second pusher plate (43).
Citation Information
Patent Citations
Paper cup recovery and pretreatment device
CN112024574A
Scrap removing device for manufacturing engineering plastics
CN214352842U