Drip irrigation belt recycling, slitting and briquetting all-in-one machine

By designing an integrated machine for recycling, cutting, and briquetting drip irrigation tape, the problem of insufficient crushing and compression efficiency in drip irrigation tape recycling machines has been solved, achieving efficient recycling and compression of drip irrigation tape and reducing labor costs and working hours.

CN224559597UActive Publication Date: 2026-07-28XINJIANG HONGJINHUI ENVIRONMENTAL PROTECTION EQUIP MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XINJIANG HONGJINHUI ENVIRONMENTAL PROTECTION EQUIP MFG CO LTD
Filing Date
2025-07-11
Publication Date
2026-07-28

AI Technical Summary

Technical Problem

Existing drip irrigation tape recycling machines lack crushing and compression capabilities, resulting in loose accumulation of recycled drip irrigation tape, requiring secondary manual processing, which increases labor costs and time.

Method used

A drip irrigation tape recycling, cutting, and briquetting integrated machine was designed, comprising a recycling device, a roller brush device, a feeding device, a shredding device, a conveying device, and a packaging device. It compresses the drip irrigation tape into regular blocks by grabbing, cleaning, cutting, conveying, and compressing it.

Benefits of technology

No secondary manual processing is required, reducing labor costs, shortening the recycling time of drip irrigation tape, and achieving efficient recycling of drip irrigation tape.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to drip irrigation tape recycling technical field, concretely is a kind of drip irrigation tape recycling slitting briquetting all-in-one machine, including rack, recycling device, rolling brush device, feeding device, chopping knife device, conveying device and packing plant, the recycling device is used to grab and lift drip irrigation tape on ground, and the drip irrigation tape after lifting is cleaned surface soil by rolling brush device, and the drip irrigation tape after surface cleaning is fed into chopping knife device by feeding device, the chopping knife device is used to cut the drip irrigation tape fed into piece, and the piece after chopping is conveyed to packing plant by conveying device, and the packing plant is used to exert pressure to piece, and it is compressed;The utility model solves the problem that even if drip irrigation tape is separated from soil by recycling machine in the background art, due to the lack of crushing and extruding effect of the device, the recycled drip irrigation tape is in a loose and accumulated state, without the need for manual secondary transportation and regeneration processing, reducing labor costs and shortening the recycling time of drip irrigation tape.
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Description

Technical Field

[0001] This utility model relates to the field of drip irrigation tape recycling technology, specifically a drip irrigation tape recycling, cutting, and briquetting integrated machine. Background Technology

[0002] A drip irrigation tape recycling machine is an agricultural machine used to recycle drip irrigation tape used in farmland. It generally consists of a traction mechanism, a winding mechanism, a transmission mechanism, a guiding mechanism, and a power mechanism. During operation, a tractor pulls the recycling machine forward. The guide wheels wind one or more drip irrigation tapes laid in the field onto a winding shaft. Mechanical or hydraulic transmission drives the shaft to rotate, neatly winding and recycling the drip irrigation tape, thus reducing labor requirements.

[0003] Most existing drip irrigation tape recycling machines on the market are traction-type throwing structures. They use mechanical claws or rollers to lift and roll up the drip irrigation tape laid under the soil. This type of recycling machine has drawbacks in use because it does not have the function of crushing and compressing. After the drip irrigation tape is thrown to the ground, it is scattered on the ground in a disorderly and fluffy manner. It requires secondary manual processing before it can be transported and recycled, which increases labor costs and increases the time required for recycling drip irrigation tape. Utility Model Content

[0004] The purpose of this invention is to address the aforementioned shortcomings by providing an integrated machine for recycling, cutting, and briquetting drip irrigation tape. This solves the problem mentioned in the background art where, even if the drip irrigation tape is separated from the soil by the recycling machine, the tape remains loosely piled up due to the lack of crushing and compressing capabilities in the device. This eliminates the need for manual secondary transportation and reprocessing, reducing labor costs and shortening the recycling time for drip irrigation tape.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A drip irrigation tape recycling, slitting, and briquetting integrated machine includes a towable frame. Along the forward direction of the frame, a recycling device, a roller brush device, a feeding device, a shredder device, a conveying device, and a baling device are installed on the frame. The recycling device is used to grab and lift the drip irrigation tape on the ground. The lifted drip irrigation tape is cleaned of surface dirt by the roller brush device. The cleaned drip irrigation tape is fed into the shredder device by the feeding device. The shredder device is used to cut the fed drip irrigation tape into fragments. The shredded fragments are conveyed to the baling device by the conveying device. The baling device is used to apply pressure to the fragments and compress them into regular blocks.

[0007] Furthermore, the recycling device includes a connecting frame installed at the front end of the frame, a grounding wheel axle rotatably connected to the front end of the connecting frame, a grounding wheel disc 1 fixed at both ends of the grounding wheel axle 1, a grounding wheel frame 1 sleeved on the grounding wheel axle 1 and fixed at the end to the grounding wheel disc 1, a recycling motor fixed on the frame, a grounding wheel axle 2 rotatably connected to the frame via a recycling bearing, two grounding wheel discs 2 opposite to the grounding wheel axle 2, and a grounding wheel frame 2 fixedly sleeved on the grounding wheel axle 2. Both ends of the grounding wheel frame 2 are fixed to the grounding wheel discs 2. A recycling drive sprocket is fixed at one end of the grounding wheel axle 2. A recycling driven sprocket is connected to the recycling motor. The recycling drive sprocket and the recycling driven sprocket are connected by a recycling chain. Multiple rods are radially distributed on the grounding wheel frame 1, with gaps between adjacent rods.

[0008] Furthermore, the roller brush device is arranged behind the recycling device, and includes two roller brush shafts that are directly opposite each other and rotatably connected to the frame, brushes disposed on the roller brush shafts, roller brush bearings used to install the roller brush shafts, and roller brush motors used to drive the roller brush shafts to rotate. The brushes are arranged in a spiral and staggered manner on the roller brush shafts.

[0009] Furthermore, the feeding device is connected to the rear of the roller brush device, and includes a pair of parallel feeding rollers, a feeding housing mounted perpendicular to the feeding rollers, a feeding motor fixed to one side of the feeding housing, the feeding rollers being mounted in the middle section of the frame via feeding bearings, the feeding housing being fixed on the frame, one end of the feeding rollers extending into the feeding housing and having a feeding driven gear, and one end of the feeding motor extending into the feeding housing and having a feeding driving gear, the feeding driving gear meshing with the feeding driven gear, the upper and lower feeding driven gears meshing with each other, and the surface of the feeding rollers being provided with anti-slip textures.

[0010] Furthermore, a gearbox is fixed on the frame, with a gearbox input shaft at the input end and a gearbox output shaft at the output end. A gearbox cover and a gearbox side cover are provided on one side of the gearbox housing. The shredding device is located below the feeding device and includes a main shaft pulley mounted on the gearbox output shaft, a shredding motor connected to the gearbox input shaft, a rotatably mounted shredding shaft on the frame, a shredding blade holder and a shredding blade pulley mounted on the shredding shaft, the main shaft pulley and the shredding blade pulley being connected by a shredding belt, a blade mounted on the shredding blade holder, and the gearbox output shaft being mounted on the frame via a shredding bearing.

[0011] Furthermore, the conveying device includes a conveying drive shaft and a conveying driven shaft mounted parallel to the frame, for connecting the conveyor belt body used by the conveying drive shaft and the conveying driven shaft, for mounting multiple conveying bearings used by the conveying drive shaft and the conveying driven shaft, and for driving the conveying motor used by the conveying drive shaft. The conveyor belt body is inclined, and the lower end of the conveyor belt body extends to the bottom of the feeding device. The conveying motor is fixed on the frame.

[0012] Furthermore, the packaging device includes a compression channel mounted on the frame, a front baffle and a rear baffle slidably connected within the compression channel, a bottom end connected to a feed funnel inside the compression channel, a packaging motor fixed to one side of the compression channel, a transmission wheel rotatably connected within the compression channel, and a transmission rod hinged at both ends to the transmission wheel and the front baffle, respectively. One end of the transmission rod hinged to the transmission wheel is offset from the axis of the transmission wheel. The output end of the packaging motor drives a packaging drive sprocket, and a packaging driven sprocket is mounted on the packaging shaft on which the transmission wheel is mounted. The packing drive sprocket and the packing driven sprocket are connected by a packing chain. The inner wall of the compression channel, together with the front baffle and the rear baffle, forms a compression chamber. A baffle return spring connected to the rear baffle is provided at the rear end of the compression channel. An opening is provided on one side of the compression chamber. The large end of the feed funnel is located directly below the top of the conveyor belt body. A door panel is provided at the opening. The door panel is connected to the side of the compression channel by multiple telescopic rods. An opening spring is sleeved on the telescopic rod. When the opening spring is not under force, the door panel blocks the opening.

[0013] Furthermore, the frame includes a main frame, support frames symmetrically arranged on the main frame, a middle and rear crossbeam connecting the left and right support frames, side crossbeams symmetrically arranged on the main frame, a front upper crossbeam and a middle baffle connecting the left and right side crossbeams, a front baffle connected to the front end of the front upper crossbeam, a lower fixed frame connecting the two front baffles, and four forward wheels rotatably connected to the bottom of the main frame. The front end of the main frame is connected to the middle front crossbeam.

[0014] The beneficial effects of this utility model are:

[0015] In use, the tip of the drip irrigation tape is first passed through the recycling device, the roller brush device, and the feeding device in sequence. As the tractor or other traction equipment pulls the frame forward, the recycling device grabs and lifts the drip irrigation tape from the ground. The roller brush device cleans the soil off the surface of the lifted drip irrigation tape. The cleaned drip irrigation tape is then fed into the shredder device by the feeding device. The shredder device cuts the fed drip irrigation tape into fragments. The fragments are then conveyed to the packaging device by the conveyor device. The packaging device applies pressure to the fragments, compressing them into regular blocks. This invention solves the problem mentioned in the background technology that even if the drip irrigation tape is separated from the soil by the recycling machine, the recycled drip irrigation tape is in a loose pile state due to the lack of crushing and compression effects of the device. It eliminates the need for secondary transportation and reprocessing by manual labor, reducing labor costs and shortening the recycling time of the drip irrigation tape. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the recycling device in this utility model;

[0018] Figure 3 This is a schematic diagram of the structure of the second grounding wheel axle, the second grounding wheel disc, the second grounding wheel frame, the recovery drive sprocket, the recovery motor, the recovery driven sprocket, and the recovery chain in this utility model;

[0019] Figure 4 This is a schematic diagram of the structure of the roller brush device in this utility model;

[0020] Figure 5 This is a schematic diagram of the feeding device in this utility model;

[0021] Figure 6 This is a schematic diagram of the shredding device in this utility model;

[0022] Figure 7 This is a schematic diagram of the conveying device in this utility model;

[0023] Figure 8 This is a schematic diagram of the packaging device in this utility model;

[0024] Figure 9 This is a schematic diagram of the frame structure in this utility model;

[0025] Reference numerals: 1. Recycling device; 1-1. Grounding wheel axle 1; 1-2. Grounding wheel disc 1; 1-3. Connecting frame; 1-4. Gearbox input shaft; 1-5. Gearbox; 1-6. Gearbox side cover; 1-7. Gearbox output shaft; 1-8. Grounding wheel frame 1; 1-9. Recycling motor; 1-10. Recycling chain; 1-11. Recycling drive sprocket; 1-12. Recycling bearing; 1-13. Grounding wheel axle 2; 1-14. Grounding wheel disc 2; 1-15. Grounding wheel frame 2; 1-16.

[0026] 2. Roller brush device; 2-1. Brush; 2-2. Roller brush bearing; 2-3.

[0027] Feeding device 3; feeding housing 3-1; feeding bearing 3-2; feeding roller 3-3; feeding motor 3-4;

[0028] Chopping blade device 4; main shaft pulley 4-1; chopping belt 4-2; chopping blade pulley 4-3; chopping blade holder 4-4; blade 4-5; chopping bearing 4-6; chopping shaft 4-7;

[0029] 5. Conveying device; 5-1. Conveying bearing; 5-2. Conveying belt body; 5-3. Conveying drive shaft; 5-4. Conveying motor;

[0030] Frame 6; Front baffle 6-1; Front upper crossbeam 6-2; Side crossbeam 6-3; Support frame 6-4; Middle and rear crossbeam 6-5; Main frame 6-6; Middle baffle 6-7; Middle and front crossbeam 6-8; Lower fixed frame 6-9;

[0031] Packaging device 7; feeding funnel 7-1; front baffle 7-2; packaging chain 7-3; packaging driven sprocket 7-4; transmission wheel 7-5; packaging drive sprocket 7-6; compression channel 7-7; door opening spring 7-8; door panel 7-9; baffle return spring 7-10; packaging motor 7-11; transmission rod 7-12; rear baffle 7-13. Detailed Implementation

[0032] like Figures 1-9 As shown, a drip irrigation tape recycling, slitting, and briquetting integrated machine includes a towable frame 6. Along the forward direction of the frame 6, a recycling device 1, a roller brush device 2, a feeding device 3, a shredder device 4, a conveying device 5, and a baling device 7 are installed on the frame 6. The recycling device 1 is used to grab and lift the drip irrigation tape on the ground. The lifted drip irrigation tape is cleaned of surface soil by the roller brush device 2. The surface-cleaned drip irrigation tape is fed into the shredder device 4 by the feeding device 3. The shredder device 4 is used to cut the fed drip irrigation tape into fragments. The shredded fragments are conveyed to the baling device 7 by the conveying device 5. The baling device 7 is used to apply pressure to the fragments and compress them into regular blocks.

[0033] In use, the front end of the drip irrigation tape is first passed through the recycling device 1, the roller brush device 2, and the feeding device 3 in sequence. As the tractor or other traction equipment pulls the frame 6 forward, the recycling device 1 grabs and lifts the drip irrigation tape from the ground, and the roller brush device 2 cleans the soil off the surface of the lifted drip irrigation tape. The cleaned drip irrigation tape is then fed into the shredder device 4 by the feeding device 3. The shredder device 4 cuts the fed drip irrigation tape into fragments, and the fragments are conveyed to the packaging device 7 by the conveying device 5. The packaging device 7 applies pressure to the fragments, compressing them into regular blocks. This utility model solves the problem mentioned in the background technology that even if the drip irrigation tape is separated from the soil by the recycling machine, the recycled drip irrigation tape is in a loose pile state due to the lack of crushing and compression effects of the device. It eliminates the need for secondary transportation and reprocessing by manual labor, reduces labor costs, and shortens the recycling time of the drip irrigation tape.

[0034] like Figures 1-9 As shown, the recycling device 1 includes a connecting frame 1-3 installed at the front end of the frame 6, a grounding wheel axle 1-1 rotatably connected to the front end of the connecting frame 1-3, grounding wheel discs 1-2 fixed at both ends of the grounding wheel axle 1-1, a grounding wheel frame 1-9 sleeved on the grounding wheel axle 1-1 and fixed at its end to the grounding wheel disc 1-2, a recycling motor 1-10 fixed on the frame 6, and a grounding wheel axle 1-14 rotatably connected to the frame 6 via a recycling bearing 1-13. Two grounding discs 1-15 are mounted on the grounding wheel shaft 1-14, and a grounding wheel frame 1-16 is fixedly mounted on the grounding wheel shaft 1-14. Both ends of the grounding wheel frame 1-16 are fixed to the grounding discs 1-15. A retrieval drive sprocket 1-12 is fixed to one end of the grounding wheel shaft 1-14. A retrieval driven sprocket is connected to the retrieval motor 1-10. The retrieval drive sprocket 1-12 and the retrieval driven sprocket are connected by a [connection / connection]. The recycling chain 1-11 is connected, and multiple rods are radially distributed on the grounding wheel frame 1-9, with gaps between adjacent rods. In this embodiment, before use, the front end of the drip irrigation tape passes through the gap, around the grounding wheel frame 1-16, and then into the roller brush device 2. During the movement of the trolley, the grounding wheel 1-2 rolls along the ground, fixing the recycling path of the drip irrigation tape through the gap. The recycling motor 1-10 uses the recycling drive sprocket 1-12, the recycling chain 1-11, and the recycling driven sprocket to grab and lift the drip irrigation tape. Six drip irrigation tapes can be recycled at once. The use of two grounding wheel frames 1-2 to cooperate in recycling reduces the load on each wheel and prevents damage to the conveying device. The drip irrigation tape is transported by the grounding wheel frame 1-2 to the grounding wheel frame 1-16 above. Under the rotational conveying of the grounding wheel frame 1-16, it enters the roller brush device 2. The drip irrigation tape enters the roller brush device 2 to separate the sand and soil on the drip irrigation tape, and then continues to be transported by the feeding device 3 to the chopping device 4 for cutting.

[0035] like Figures 1-9 As shown, the roller brush device 2 is arranged behind the recycling device 1. It includes two roller brush shafts 2-3 facing each other and rotatably connected to the frame 6, brushes 2-1 mounted on the roller brush shafts 2-3, roller brush bearings 2-2 used to mount the roller brush shafts 2-3, and roller brush motors used to drive the roller brush shafts 2-3 to rotate. The brushes 2-1 are arranged in a spiral staggered pattern on the roller brush shafts 2-3. In this embodiment, before use, the front end of the drip irrigation tape is passed through the shaft gap between the two roller brush shafts 2-3. As the drip irrigation tape continues to pass through the shaft gap, the roller brush motor drives the roller brush shafts 2-3 to rotate, causing the brushes 2-1 to rotate and brush away dirt and other attachments on the surface of the drip irrigation tape. The brushes 2-1 are arranged in a spiral staggered pattern, and the brush body is made of hard nylon.

[0036] like Figures 1-9 As shown, the feeding device 3 is connected to the rear of the roller brush device 2. It includes a pair of parallel feeding rollers 3-3, a feeding housing 3-1 mounted perpendicular to the feeding rollers 3-3, and a feeding motor 3-4 fixed to one side of the feeding housing 3-1. The feeding rollers 3-3 are mounted on the middle section of the frame 6 via feeding bearings 3-2. The feeding housing 3-1 is fixed on the frame 6. One end of the feeding rollers 3-3 extends into the feeding housing 3-1 and is provided with a feeding driven gear. One end of the feeding motor 3-4 extends into the feeding housing 3-1 and is provided with a feeding master gear. The feeding drive gear meshes with the feeding driven gear, and the upper and lower feeding driven gears mesh with each other. The surface of the feeding roller 3-3 is provided with anti-slip texture. In this embodiment, the feeding motor 3-4 drives the feeding driven gear to rotate through the feeding drive gear. The upper and lower feeding driven gears mesh with each other, causing the upper and lower feeding rollers 3-3 to rotate, pushing the drip irrigation tape to the shredder device 4, ensuring that the drip irrigation tape does not slip during the transportation process. The anti-slip texture on the surface of the feeding roller 3-3 gives it a good anti-slip effect. The feeding roller 3-3 is made of low alloy high-strength steel.

[0037] like Figures 1-9As shown, a reduction gearbox 1-5 is fixed on the frame 6. The input end of the reduction gearbox 1-5 is provided with a reduction gearbox input shaft 1-4, and the output end is provided with a reduction gearbox output shaft 1-8. A small reduction gearbox cover 1-6 and a side cover 1-7 are provided on one side of the outer shell of the reduction gearbox 1-5. The shredding device 4 is located below the feeding device 3. It includes a main shaft pulley 4-1 mounted on the reduction gearbox output shaft 1-8, a shredding motor connected to the reduction gearbox input shaft 1-4, a rotatably mounted shredding shaft 4-7 on the frame 6, a shredding blade holder 4-4 and a shredding blade pulley 4-3 mounted on the shredding shaft 4-7, and a connection between the main shaft pulley 4-1 and the shredding blade pulley 4-3. The cutting belt 4-2 is connected to the cutting blade holder 4-4, and the cutting blade 4-5 is installed on the cutting blade holder 4-4. The output shaft 1-8 of the gearbox is installed on the frame 6 through the cutting bearing 4-6. In this embodiment, the output shaft of the cutting motor is reduced in speed by the gearbox 1-5, which drives the output shaft 1-8 to rotate. The output shaft 1-8 drives the cutting blade pulley 4-3 to rotate through the main shaft pulley 4-1 and the cutting belt 4-2. The cutting blade pulley 4-3 drives the cutting blade holder 4-4 and the cutting blade 4-5 on the cutting shaft 4-7 to rotate, thereby achieving efficient cutting of the drip irrigation tape. The cutting blade 4-5 is installed in three groups on the cutting blade holder 4-4, and the cutting gap is controlled by the adjustable feed guide plate.

[0038] like Figures 1-9 As shown, the conveying device 5 includes a conveying drive shaft 5-3 and a conveying driven shaft mounted parallel to the frame 6. The drive shaft 5-3 and the conveying driven shaft are connected to a conveyor belt body 5-2. Multiple conveying bearings 5-1 are mounted on the drive shaft 5-3 and the conveying driven shaft. A conveying motor 5-4 drives the drive shaft 5-3. The conveyor belt body 5-2 is inclined, and its lower end extends below the feeding device 3. The conveying motor 5-4 is fixed to the frame 6. In this embodiment, the fragments chopped by the shredder 4 fall onto the conveyor belt body 5-2. The conveying motor 5-4 drives the drive shaft 5-3. As the drive shaft 5-3 rotates the conveying driven shaft via the conveyor belt body 5-2, the fragments on the conveyor belt body 5-2 are transferred to the packaging device 7. The conveyor belt body 5-2 has side guards on both sides, and its surface is coated with an anti-slip layer.

[0039] like Figures 1-9As shown, the packaging device 7 includes a compression channel 7-7 mounted on the frame 6, a front baffle 7-2 and a rear baffle 7-13 slidably connected within the compression channel 7-7, and a bottom end connected to a feed funnel 7-1 inside the compression channel 7-7. A packaging motor 7-11 is fixed to one side of the compression channel 7-7, and a transmission wheel 7-5 is rotatably connected within the compression channel 7-7. A transmission rod 7-12, hinged at both ends to the transmission wheel 7-5 and the front baffle 7-2 respectively, is also present. One end of the transmission rod 7-12 hinged to the transmission wheel 7-5 is offset from the axis of the transmission wheel 7-5. The output end of the packaging motor 7-11 drives... A packing drive sprocket 7-6 is connected to the packing shaft on which the transmission wheel 7-5 is mounted, and a packing driven sprocket 7-4 is installed. The packing drive sprocket 7-6 and the packing driven sprocket 7-4 are connected by a packing chain 7-3. The inner wall of the compression channel 7-7, together with the front baffle 7-2 and the rear baffle 7-13, forms a compression chamber. A baffle return spring 7-10 connected to the rear baffle 7-13 is provided at the rear end of the compression channel 7-7. An opening is provided on one side of the compression chamber. The large end of the feed funnel 7-1 is positioned directly below the top of the conveyor belt body 5-2. A door panel 7-9 is provided at the opening. Multiple telescopic rods connect the compression channel 7-7 to its side. Each telescopic rod is fitted with an opening spring 7-8. When the opening spring 7-8 is not under force, the door panel 7-9 blocks the opening. In this embodiment, the fragments conveyed by the conveyor belt body 5-2 fall into the feeding hopper 7-1 under gravity and then down into the compression chamber. The packaging motor 7-11 drives the packaging shaft and transmission wheel 7-5 to rotate via the packaging drive sprocket 7-6, packaging chain 7-3, and packaging driven sprocket 7-4. Since the transmission rod 7-12 is hinged at both ends to the transmission wheel 7-5 and the front baffle 7-2, and the hinge point of the transmission rod 7-12 is connected to the transmission wheel 7-5... -5 The centers are offset. During the rotation of the transmission wheel 7-5, the transmission wheel 7-5 drives the front baffle 7-2 at the rear end of the transmission rod 7-12 to slide back and forth along the compression channel 7-7. When the front baffle 7-2 moves backward, the fragments are squeezed and compressed by the front baffle 7-2 and the rear baffle 7-13 to remove the residual water in the drip irrigation tape. During the squeezing process, the rear baffle 7-13 moves backward, and the baffle return spring 7-10 is compressed. After squeezing is completed, the door panel 7-9 is pulled open, and the door opening spring 7-8 is stretched. The squeezed fragments can be taken out from the opening. The rear baffle 7-13 is reset by the baffle return spring 7-10, and the door panel 7-9 is reset by the door opening spring 7-8.

[0040] like Figures 1-9As shown, the frame 6 includes a main frame 6-6, support frames 6-4 symmetrically arranged on the main frame 6-6, a middle and rear crossbeam 6-5 connecting the left and right support frames 6-4, side crossbeams 6-3 symmetrically arranged on the main frame 6-6, a front upper crossbeam 6-2 connecting the left and right side crossbeams 6-3 and a middle baffle 6-7, a front baffle 6-1 connected to the front end of the front upper crossbeam 6-2, a lower fixed frame 6-9 connecting the two front baffles 6-1, and four forward thrust brackets rotatably connected to the bottom of the main frame 6-6. The main frame 6-6 has a front crossbeam 6-8 connected to its front end. In this embodiment, the front baffle 6-1, the lower fixed frame 6-9, and the front crossbeam 6-8 are used to install the recycling wheel device 1. The front upper crossbeam 6-2 and the side crossbeam 6-3 are used to install the roller brush device 2 and the feeding device 3. The front crossbeam 6-8, the middle baffle 6-7, and the rear crossbeam 6-5 are used to install the shredding device 4. The support frame 6-4 is used to install the conveying device 5. The main frame 6-6 below the rear crossbeam 6-5 is used to install the baling device 7.

[0041] The specific embodiments described herein are merely illustrative examples of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the scope defined by this utility model.

Claims

1. A drip irrigation tape recycling, slitting, and briquetting integrated machine, characterized in that: The device includes a draggable frame (6), and along the forward direction of the frame (6), a recycling device (1), a roller brush device (2), a feeding device (3), a shredder device (4), a conveying device (5), and a packaging device (7) are installed on the frame (6). The recycling device (1) is used to grab and lift the drip irrigation tape on the ground. The lifted drip irrigation tape is cleaned of surface soil by the roller brush device (2). The surface-cleaned drip irrigation tape is fed into the shredder device (4) by the feeding device (3). The shredder device (4) is used to cut the fed drip irrigation tape into fragments. The shredded fragments are conveyed to the packaging device (7) by the conveying device (5). The packaging device (7) is used to apply pressure to the fragments and compress them into regular blocks.

2. The drip irrigation tape recycling, slitting, and briquetting integrated machine according to claim 1, characterized in that, The recycling device (1) includes a connecting frame (1-3) installed at the front end of the frame (6), a grounding wheel axle (1-1) rotatably connected to the front end of the connecting frame (1-3), a grounding wheel disc (1-2) fixed at both ends of the grounding wheel axle (1-1), a grounding wheel frame (1-9) sleeved on the grounding wheel axle (1-1) and fixed at its end on the grounding wheel disc (1-2), a recycling motor (1-10) fixed on the frame (6), and a grounding wheel axle (1-14) rotatably connected to the frame (6) via a recycling bearing (1-13). Two bearings are sleeved on the grounding wheel axle (1-14). A second grounding wheel disc (1-15) and a second grounding wheel frame (1-16) fixedly sleeved on the second grounding wheel shaft (1-14). Both ends of the second grounding wheel frame (1-16) are fixed on the second grounding wheel disc (1-15). One end of the second grounding wheel shaft (1-14) is fixed with a recovery drive sprocket (1-12). A recovery driven sprocket is connected to the recovery motor (1-10). The recovery drive sprocket (1-12) and the recovery driven sprocket are connected by a recovery chain (1-11). Multiple rods are radially distributed on the first grounding wheel frame (1-9), with gaps between adjacent rods.

3. The drip irrigation tape recycling, slitting, and briquetting integrated machine according to claim 1, characterized in that, The roller brush device (2) is arranged behind the recycling device (1). It includes two roller brush shafts (2-3) that are directly opposite each other and rotatably connected to the frame (6), a brush (2-1) set on the roller brush shaft (2-3), a roller brush bearing (2-2) used to install the roller brush shaft (2-3), and a roller brush motor used to drive the roller brush shaft (2-3) to rotate. The brush (2-1) is arranged in a spiral and staggered manner on the roller brush shaft (2-3).

4. The drip irrigation tape recycling, slitting, and briquetting integrated machine according to claim 1, characterized in that, The feeding device (3) is connected to the rear of the roller brush device (2). It includes a pair of parallel feeding rollers (3-3), a feeding housing (3-1) installed perpendicular to the feeding rollers (3-3), and a feeding motor (3-4) fixed on one side of the feeding housing (3-1). The feeding rollers (3-3) are installed in the middle section of the frame (6) through the feeding bearing (3-2). The feeding housing (3-1) is fixed on the frame (6). One end of the feeding rollers (3-3) extends into the feeding housing (3-1) and is provided with a feeding driven gear. One end of the feeding motor (3-4) extends into the feeding housing (3-1) and is provided with a feeding driving gear. The feeding driving gear meshes with the feeding driven gear. The upper and lower feeding driven gears mesh with each other. The surface of the feeding rollers (3-3) is provided with anti-slip texture.

5. The drip irrigation tape recycling, slitting, and briquetting integrated machine according to claim 1, characterized in that, A gearbox (1-5) is fixed on the frame (6). The gearbox (1-5) has a gearbox input shaft (1-4) at its input end and a gearbox output shaft (1-8) at its output end. A gearbox cover (1-6) and a gearbox side cover (1-7) are provided on one side of the gearbox (1-5) housing. The shredder device (4) is located below the feeding device (3). It includes a main shaft pulley (4-1) mounted on the output shaft (1-8) of the gearbox, a shredding motor connected to the input shaft (1-4) of the gearbox, a shredding shaft (4-7) rotatably mounted on the frame (6), a shredding blade holder (4-4) and a shredding blade pulley (4-3) mounted on the shredding shaft (4-7). The main shaft pulley (4-1) and the shredding blade pulley (4-3) are connected by a shredding belt (4-2). A blade (4-5) is mounted on the shredding blade holder (4-4). The output shaft (1-8) of the gearbox is mounted on the frame (6) through a shredding bearing (4-6).

6. The drip irrigation tape recycling, slitting, and briquetting integrated machine according to claim 1, characterized in that, The conveying device (5) includes a conveying drive shaft (5-3) and a conveying driven shaft mounted parallel to the frame (6), for connecting the conveying drive shaft (5-3) and the conveying driven shaft using a conveyor belt body (5-2), for mounting multiple conveying bearings (5-1) used by the conveying drive shaft (5-3) and the conveying driven shaft, and for driving the conveying motor (5-4) used by the conveying drive shaft (5-3). The conveyor belt body (5-2) is inclined, and the lower end of the conveyor belt body (5-2) extends to the bottom of the feeding device (3). The conveying motor (5-4) is fixed on the frame (6).

7. The drip irrigation tape recycling, slitting, and briquetting integrated machine according to claim 6, characterized in that, The packaging device (7) includes a compression channel (7-7) mounted on the frame (6), a front baffle (7-2) and a rear baffle (7-13) slidably connected to each other within the compression channel (7-7), and its bottom end connected to the feed funnel (7-1) inside the compression channel (7-7). A packaging motor (7-11) is fixed to one side of the compression channel (7-7), and a drive wheel (7-5) is rotatably connected within the compression channel (7-7). Both ends of the drive wheel (7-5) and the drive rod (7-12) used by the front baffle (7-2) are respectively hinged. One end of the drive rod (7-12) that is hinged to the drive wheel (7-5) is offset from the axis of the drive wheel (7-5). The output end of the packaging motor (7-11) is driven and connected to a packaging drive sprocket (7-6). A packaging device is provided on the packaging shaft on which the drive wheel (7-5) is mounted. The driven sprocket (7-4) and the packing drive sprocket (7-6) are connected by a packing chain (7-3). The inner wall of the compression channel (7-7) is surrounded by the front baffle (7-2) and the rear baffle (7-13) to form a compression chamber. A baffle return spring (7-10) connected to the rear baffle (7-13) is provided at the rear end of the compression channel (7-7). An opening is provided on one side of the compression chamber. The large end of the feed funnel (7-1) is placed directly below the top of the conveyor belt body (5-2). A door panel (7-9) is provided at the opening. The door panel (7-9) is connected to the side of the compression channel (7-7) by multiple telescopic rods. An opening spring (7-8) is sleeved on the telescopic rod. When the opening spring (7-8) is in a state of no force, the door panel (7-9) blocks the opening.

8. The drip irrigation tape recycling, slitting, and briquetting integrated machine according to claim 1, characterized in that, The frame (6) includes a main frame (6-6), support frames (6-4) symmetrically arranged on the main frame (6-6), a middle and rear crossbeam (6-5) connecting the left and right support frames (6-4), side crossbeams (6-3) symmetrically arranged on the main frame (6-6), a front upper crossbeam (6-2) and a middle baffle (6-7) connecting the left and right side crossbeams (6-3), a front baffle (6-1) connected to the front end of the front upper crossbeam (6-2), a lower fixed frame (6-9) connecting the two front baffles (6-1), and four forward wheels rotatably connected to the bottom of the main frame (6-6). The front end of the main frame (6-6) is connected to a middle front crossbeam (6-8).