An efficient film removal and recycling integrated machine for wheat fields

By introducing lifting and rotating components into the wheat field membrane removal and recycling machine, the problem of fitting between the equipment and the ground and collision of hard objects is solved, and efficient membrane removal and equipment protection is achieved.

CN119924131BActive Publication Date: 2025-07-04SHANXI AGRI UNIV
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Patent Information

Application Number
CN202510439625.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2025-07-04
Estimated Expiration
2045-04-09

AI Technical Summary

Technical Problem

The existing film removal device is difficult to maintain a good fit when facing the undulations and hard objects on the ground, resulting in equipment damage and poor film removal effect.

Method used

A wheat field high-efficiency film removal and recycling integrated machine is designed, using mounting parts and lifting parts, and the height adjustment of the rotating roller is achieved through the spring and sliding groove structure, combining the wedge-shaped movable grooves and reset plates of the rotating parts to prevent the needle rod from colliding with the hard object, ensuring the protection and fit of the equipment.

Benefits of technology

The tight fit of the rotating rollers under different ground flatness conditions is achieved, which improves the film removal thoroughness, reduces the residue of the plastic film, and prevents equipment from being damaged by hard objects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides an all-in-one machine for efficient film removal and recycling in wheat fields, and relates to the technical field of film removal in wheat fields, including: a mounting component; the mounting component includes a main body and an adjustment slot, and the front and rear sides of the main body are provided with coaxial wheel groups; the mounting component is provided with a lifting component; the lifting component is provided with a rotating component, and the rotating roller of the rotating component is rotatably mounted inside the lifting frame, and the needle bar on the rotating roller can pass through the separation slot in the lifting frame. In the process of film removal, the needle bar will be inserted into the ground with the rotation of the rotating roller. When the needle bar encounters hard objects such as stones during movement, the needle bar will be blocked and unable to move, and when the rotating roller rotates, it slides along the wedge structure in the movable slot, so that the needle bar can be retracted inward, thereby passing over the stones, which solves the problem that the existing film removal device lacks a protective structure, and is prone to collision when encountering hard objects such as stones in the soil, causing damage to the film removal device, thereby causing certain economic losses.
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Description

Technical Field

[0001] The present invention relates to the technical field of wheat field film removal, and particularly relates to a high-efficiency wheat field film removal and recycling integrated machine. Background Art

[0002] Mulch film covering refers to a measure of covering the ground surface with agricultural plastic film, which has the functions of reducing raindrop impact, preventing erosion and crust formation, can effectively reduce the evaporation of soil moisture, promote the absorption and growth of crops, and improve the utilization efficiency of soil moisture. However, it is found that after long-term use, after the crops are harvested, the mulch film left in the wheat field not only affects the next planting, but also greatly pollutes the environment. Therefore, it is necessary to use film removal equipment to remove the mulch film in time, so as to minimize the impact brought by the mulch film.

[0003] CN218998758U discloses a mulch film removing device for environmental protection, including a vehicle body. An installation box is fixedly connected to the vehicle body. A grabbing roller is rotatably connected to the bottom of the vehicle body. A plurality of film grabbing hooks are fixedly connected to the side surface of the grabbing roller. One end of the film grabbing hook located at the top of the grabbing roller extends into the installation box. A first through hole adapted to the film grabbing hook is formed in the vehicle body. It also includes an auxiliary film removal assembly. In this utility model, the motor drives the grabbing roller to rotate continuously, so that the film grabbing hooks continuously hook out the mulch film from the field. The film grabbing hooks drive the mulch film to rotate into the installation box. Under the continuous operation of the conveyor belt, the film removal plate pushes the mulch film on the film grabbing hooks to move to the other side, preventing the mulch film from being taken out of the installation box again, realizing the collection of the mulch film. A plurality of film grabbing hooks with very small spacing can hook the mulch film with a small area, making the mulch film in the field cleaner and the removal effect better.

[0004] However, there are some deficiencies in the design of the current mulch film recycling device structure. First of all, the film removal device lacks a structure for automatic adjustment with the ground device. During the film removal process, the unevenness of the ground will be encountered, so it is impossible to ensure that the film removal structure is in good contact with the ground. When the distance is too far or too close, it will affect the film removal of the device. Secondly, the existing film removal device lacks a protection structure. When the film removal device encounters hard objects such as stones in the soil, it is easy to collide, causing damage to the film removal device and resulting in certain economic losses. Summary of the Invention

[0005] The technical problem to be solved by the present invention is to overcome the above-mentioned defects existing in the prior art, and provide a high-efficiency wheat field film removal and recycling integrated machine that can ensure that the film removal equipment is in good contact with the ground, will not have a situation of too far or too close distance, and can protect the film removal equipment during the film removal process, preventing damage when colliding with hard objects such as stones.

[0006] The present invention provides an efficient wheat field film removal and recycling integrated machine, including: a mounting component; the mounting component includes a main body and an adjustment groove, and coaxial wheel sets are provided on the front and rear sides of the main body; the adjustment groove is opened inside the side end of the main body; a lifting component is provided on the mounting component, the lifting frame of the lifting component is arranged inside the main body, and the side blocks at the outer ends of the lifting frame are slidably matched with the sliding grooves at the inner ends of the main body through springs, and the lower ends of the side blocks are in contact with the positioning blocks in the sliding grooves; a rotating component is provided on the lifting component, the rotating roller of the rotating component is rotatably installed inside the lifting frame, and the needle rods on the rotating roller can pass through the separation grooves in the lifting frame, and the driven wheel at the outer end of the rotating roller is located at the outer end of the main body, and the driven wheel is connected to the driving wheel outside the main body through a belt drive.

[0007] Preferably, the mounting component includes: sliding grooves and positioning blocks; the sliding grooves are symmetrically opened at the inner ends of both sides of the main body; the positioning blocks are movably installed in the left sliding groove through screws.

[0008] Preferably, the mounting component includes: a driving wheel and a belt; the driving wheel is rotatably installed at the upper end outside the main body, and the driving wheel is connected to a motor; the belt is installed on the driving wheel through a transmission.

[0009] Preferably, the mounting component includes: a slider and an adjustment wheel; the slider is slidably installed in the adjustment groove through a spring; the adjustment wheel is rotatably installed at the outer end of the slider, and the adjustment wheel is located outside the main body, and the adjustment wheel is connected to the belt through a transmission.

[0010] Preferably, the lifting component includes: a lifting frame and docking holes; the lifting frame is of a rectangular structure, and a protruding rectangular plate is provided at the upper rear end of the lifting frame; the docking holes are symmetrically opened at the upper rear side position of the lifting frame.

[0011] Preferably, the lifting component includes: a collecting piece and inserting rods; the collecting piece is placed on the protruding rectangular plate at the rear end of the lifting frame, and a holding rod is provided at the top of the collecting piece; the inserting rods are symmetrically opened at both sides of the bottom of the collecting piece, and the inserting rods are inserted and matched with the docking holes.

[0012] Preferably, the lifting component includes: separation grooves and side blocks; the separation grooves are equidistantly opened at the middle position of the front side inside the lifting frame; the side blocks are symmetrically arranged at the lower ends of both sides of the lifting frame.

[0013] Preferably, the rotating component includes: a rotating roller, an activity groove and a driven wheel; the rotating roller is of a cylindrical structure; the activity grooves are opened on the outside of the rotating roller in an equidistant and staggered distribution manner, and a wedge-shaped structure is provided inside the activity grooves; the driven wheel is fixedly installed on the outside of the rotating roller.

[0014] Preferably, the rotating member includes: a reset plate and a connecting groove; the reset plate is slidably installed inside each group of movable grooves through a spring; the connecting groove is opened at the inner end of the reset plate.

[0015] Preferably, the rotating member includes: a sliding plate and a needle rod; the sliding plate is located inside the movable groove, and the wedge-shaped structure at the side end of the sliding plate fits with the wedge-shaped structure inside the movable groove, and the sliding plate is slidably engaged with the connecting groove inside the reset plate; the needle rod is fixedly arranged at the outer end of the sliding plate, and the needle rod extends out of the movable groove.

[0016] The beneficial effects of the high-efficiency film removal and recycling machine for wheat fields of the present invention are as follows:

[0017] (1) By setting the installation member and the lifting member, the high-efficiency film removal and recycling machine for wheat fields of the present invention sets a driving wheel connected to a motor at the upper end of the main body, slidably installs a slider on the adjustment groove at the side end of the main body, rotatably installs an adjustment wheel on the slider, sets a lifting frame rotatably installed with a rotating roller inside the main body, and makes the side blocks at both ends of the lifting frame slidably cooperate with the sliding groove through a spring, and drives the driving wheel, the adjustment wheel and the driven wheel through a belt. During use, the spring pushes the side block, so that the rotating roller can keep in close contact with the ground. When encountering a potholed road surface, by sliding the side block in the sliding groove, the rotating roller can automatically adjust its height, and while adjusting the height, the adjustment wheel can slide along the adjustment groove, so that the belt always maintains tension, ensuring that the rotating roller can work normally when floating up and down. By such setting, the device can adapt to wheat fields with different flatness, and can closely fit the ground for operation in both low-lying and raised areas, greatly improving the thoroughness of film removal and reducing film residue.

[0018] (2) By setting the rotating member, the high-efficiency film removal and recycling machine for wheat fields of the present invention staggeredly opens movable grooves inside the rotating roller, slidably installs a reset plate inside the movable groove through a spring, slidably installs a sliding plate on the reset plate through a connecting groove, makes the wedge-shaped structure on the sliding plate fit with the wedge-shaped structure inside the movable groove, and makes the reset plate push the sliding plate to extend the needle rod out of the movable groove. During the film removal process, the needle rod will be inserted into the ground as the rotating roller rotates. When the needle rod encounters hard objects such as stones during the movement, the needle rod will be blocked and unable to move, and when the rotating roller rotates, it will slide along the wedge-shaped structure inside the movable groove, so that the needle rod can contract inward. After the needle rod is contracted, it can cross the stone, so that it will not break due to hitting the stone. By such setting, it can prevent damage caused by collision with hard objects such as stones during the film removal process. Description of the Drawings

[0019] Figure 1 is a three-dimensional structural schematic diagram of an embodiment of the high-efficiency film removal and recycling machine for wheat fields of the present invention;

[0020] Figure 2 It is a right - view structural schematic diagram of an embodiment of the high - efficiency film - removing and recycling machine for wheat fields of the present invention;

[0021] Figure 3 It is an exploded view of an embodiment of the high - efficiency film - removing and recycling machine for wheat fields of the present invention;

[0022] Figure 4 It is a side - end connection schematic diagram of an embodiment of the high - efficiency film - removing and recycling machine for wheat fields of the present invention;

[0023] Figure 5 It is a partial connection structural schematic diagram of the installation component and the lifting component in an embodiment of the high - efficiency film - removing and recycling machine for wheat fields of the present invention;

[0024] Figure 6 It is a three - dimensional structural schematic diagram of the installation component and the lifting component in an embodiment of the high - efficiency film - removing and recycling machine for wheat fields of the present invention;

[0025] Figure 7 It is a partial sectional structural schematic diagram of the lifting component in an embodiment of the high - efficiency film - removing and recycling machine for wheat fields of the present invention;

[0026] Figure 8 It is a connection structural schematic diagram of the lifting component and the rotating component in an embodiment of the high - efficiency film - removing and recycling machine for wheat fields of the present invention;

[0027] Figure 9 It is a sectional structural schematic diagram of the rotating component in an embodiment of the high - efficiency film - removing and recycling machine for wheat fields of the present invention;

[0028] Figure 10 It is a partial three - dimensional structural schematic diagram of the rotating component in an embodiment of the high - efficiency film - removing and recycling machine for wheat fields of the present invention;

[0029] List of reference numerals:

[0030] 1. Installation component; 101. Main body; 1011. Adjusting groove; 102. Sliding groove; 1021. Positioning block; 103. Driving wheel; 1031. Belt; 104. Slide block; 1041. Adjusting wheel;

[0031] 2. Lifting component; 201. Lifting frame; 2011. Docking hole; 202. Collection piece; 2021. Insert rod; 203. Separation groove; 204. Side block;

[0032] 3. Rotating component; 301. Rotating roller; 3011. Activity groove; 3012. Driven wheel; 302. Reset plate; 3021. Connecting groove; 303. Sliding plate; 3031. Needle rod. Detailed implementation manners

[0033] In order to make the purpose, technical solution and advantages of the embodiment of the present invention more clear, the technical solution of the embodiment of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiment of the present invention.

[0034] Example 1: Please refer to Figures 1 to 10 As shown:

[0035] The present invention provides an all-in-one machine for efficient film removal and recycling in wheat fields, comprising: an installation component 1; the installation component 1 comprises a main body 101 and an adjusting slot 1011, the front and rear sides of the main body 101 are provided with coaxial wheel sets; the adjusting slot 1011 is arranged inside the side end of the main body 101; a lifting component 2 is arranged on the installation component 1, a lifting frame 201 of the lifting component 2 is arranged on the inner side of the main body 101, and a side block 204 at the outer end of the lifting frame 201 is slidably matched with a slide slot 102 at the inner end of the main body 101 through a spring, and And the lower end of the side block 204 is in contact with the positioning block 1021 in the slide groove 102; the lifting component 2 is provided with a rotating component 3, and the rotating roller 301 of the rotating component 3 is rotatably installed inside the lifting frame 201, and the needle rod 3031 on the rotating roller 301 can pass through the separation groove 203 in the lifting frame 201, and the driven wheel 3012 at the outer end of the rotating roller 301 is at the outer end of the main body 101, and the driven wheel 3012 is connected to the belt 1031 on the external driving wheel 103 of the main body 101.

[0036] Embodiment 2, based on embodiment 1, as Figures 4 to 6 As shown, the installation component 1 includes: a slide groove 102 and a positioning block 1021; the slide groove 102 is symmetrically opened at the inner ends of both sides of the main body 101; the positioning block 1021 is movably installed in the slide groove 102 on the left side through a screw; a driving wheel 103 and a belt 1031; the driving wheel 103 is rotatably installed at the outer upper end of the main body 101, and the driving wheel 103 is connected to a motor; the belt 1031 is transmission-installed on the driving wheel 103; a slider 104 and an adjusting wheel 1041; the slider 104 is slidably installed in the adjusting groove 1011 through a spring; the adjusting wheel 1041 is rotatably installed at the outer end of the slider 104, and the adjusting wheel 1041 is on the outside of the main body 101, and the adjusting wheel 1041 is transmission-connected to the belt 1031.

[0037] In an embodiment of the present invention, by providing a main body 101, a lifting frame 201 with a rotating roller 301 can be movably installed inside the main body 101; a rectangular adjustment groove 1011 is provided, and by slidably connecting a slider 104 to the adjustment groove 1011, the slider 104 can be slidably installed on the main body 101; a rectangular sliding groove 102 is provided, and by slidably mating a side block 204 with the sliding groove 102, the lifting frame 201 can be slidably installed inside the main body 101; a rectangular positioning block 1021 is provided, and by limiting the side block 204 inside the sliding groove 102 with the positioning block 1021, the lowest working position of the lifting frame 201 inside the main body 101 can be adjusted; a driving wheel 103 is provided, and by drivingly connecting the driving wheel 103 to a driven wheel 3012 through a belt 1031, when the driving wheel 103 rotates, the driven wheel 3012 can be driven to rotate; a belt 1031 is provided, which can be used for the driving connection among the driving wheel 103, an adjusting wheel 1041, and the driven wheel 3012; a rectangular slider 104 is provided, and by rotatably mating the slider 104 with the adjusting wheel 1041, the adjusting wheel 1041 can be slidably installed on the adjustment groove 1011 through the slider 104; an adjusting wheel 1041 is provided, which can be used to adjust the tightness of the belt 1031 connecting the driving wheel 103 and the driven wheel 3012.

[0038] Embodiment 3, on the basis of Embodiment 1, as Figures 5 to 7 shown, the lifting component 2 includes: a lifting frame 201 and a docking hole 2011; the lifting frame 201 is of a rectangular structure, and a protruding rectangular plate is provided at the upper rear end of the lifting frame 201; the docking holes 2011 are symmetrically opened at the position of the upper rear side of the lifting frame 201; a collecting member 202 and insertion rods 2021; the collecting member 202 is placed on the protruding rectangular plate at the rear end of the lifting frame 201, and a holding rod is provided at the top of the collecting member 202; the insertion rods 2021 are symmetrically opened at both sides of the bottom of the collecting member 202, and the insertion rods 2021 are in plug-in fit with the docking holes 2011; a separation groove 203 and side blocks 204; the separation grooves 203 are equidistantly opened at the middle position of the front side inside the lifting frame 201; the side blocks 204 are symmetrically provided at the lower ends of both sides of the lifting frame 201.

[0039] In the embodiment of the present invention, by providing a rectangular lifting frame 201 and rotatably mating the lifting frame 201 with the rotating roller 301, the rotating roller 301 can be movably mounted on the main body 101 through the lifting frame 201; by providing a circular docking hole 2011 and inserting the docking hole 2011 with the insertion rod 2021, the collecting member 202 can be fixed on the lifting frame 201; by providing a rectangular collecting member 202 and installing the collecting member 202 at the upper end of the lifting frame 201, the plastic film can be collected and stored; by providing a cylindrical insertion rod 2021 and inserting the insertion rod 2021 into the docking hole 2011, the collecting member 202 can be fixed on the lifting frame 201; by providing a separation groove 203 and passing the needle rod 3031 through the separation groove 203, the plastic film can be separated from the needle rod 3031; by providing a rectangular side block 204 and slidably mounting the side block 204 in the sliding groove 102, the lifting frame 201 can be slidably mounted inside the main body 101.

[0040] Embodiment 4, on the basis of Embodiment 1, as Figure 8 、 9 shown, the rotating member 3 includes: a rotating roller 301, a movable groove 3011, and a driven wheel 3012; the rotating roller 301 is a cylindrical structure; the movable groove 3011 is opened on the outside of the rotating roller 301 in an equidistantly staggered distribution manner, and a wedge-shaped structure is provided inside the movable groove 3011; the driven wheel 3012 is fixedly mounted on the outside of the rotating roller 301; a reset plate 302 and a connecting groove 3021; the reset plate 302 is slidably mounted inside each movable groove 3011 through a spring; the connecting groove 3021 is opened at the inner end of the reset plate 302; a sliding plate 303 and a needle rod 3031; the sliding plate 303 is located inside the movable groove 3011, and the wedge-shaped structure at the side end of the sliding plate 303 fits with the wedge-shaped structure inside the movable groove 3011, and the sliding plate 303 is slidably engaged with the connecting groove 3021 inside the reset plate 302; the needle rod 3031 is fixedly provided at the outer end of the sliding plate 303, and the needle rod 3031 extends out of the movable groove 3011.

[0041] In the embodiment of the present invention, by providing a cylindrical rotating roller 301, an activity groove 3011 can be formed in the rotating roller 301; by providing an activity groove 3011 with a wedge-shaped structure, a reset plate 302 can be slidably installed into the interior of the rotating roller 301 through the activity groove 3011; by providing a driven wheel 3012 and drivingly connecting the driven wheel 3012 to a driving wheel 103 through a belt 1031, when the driving wheel 103 rotates, the rotating roller 301 can be driven to rotate on a lifting frame 201 through the driven wheel 3012; by providing a rectangular reset plate 302, a sliding plate 303 can be slidably installed into the interior of the activity groove 3011 through the reset plate 302, and a needle rod 3031 on the sliding plate 303 can be pushed out from the interior of the activity groove 3011; by providing a rectangular connection groove 3021 and making the sliding plate 303 slidably cooperate with the connection groove 3021, the sliding plate 303 can be slidably connected to the reset plate 302, and the moving distance of the sliding plate 303 on the reset plate 302 can be limited; by providing a rectangular sliding plate 303 and providing a needle rod 3031 on the sliding plate 303, when the wedge-shaped structure in the activity groove 3011 slides along the wedge-shaped structure on the side end of the sliding plate 303, the sliding plate 303 can retract the needle rod 3031 into the interior of the activity groove 3011; by providing the needle rod 3031 and inserting the needle rod 3031 into the ground, the residual plastic film in the ground can be hooked out.

[0042] The working process and usage mode of the embodiment of the high-efficiency film removal and recycling machine for wheat fields of the present invention are as follows: As Figures 1 to 10As shown, a lifting frame 201 is movably arranged in the main body 101, so that the side block 204 outside the lifting frame 201 is slidably matched with the slide groove 102 through the spring, and the side block 204 is brought into contact with the positioning block 1021 in the left slide groove 102, and the screw rod is rotated to adjust the position of the positioning block 1021, and the lowest position of the lifting frame 201 moving up and down is defined, and the collecting piece 202 is placed on the upper rear end of the lifting frame 201, and the insertion rod 2021 is inserted into the docking hole 2011 of the lifting frame 201, and the lifting frame 201 is rotated in the lifting frame 201. Install the rotating roller 301, slide the reset plate 302 in the movable groove 3011 in the rotating roller 301, slide the sliding plate 303 onto the reset plate 302, so that the needle bar 3031 on the sliding plate 303 extends out from the movable groove 3011, and connect the driving wheel 103 with the adjusting wheel 1041 at the side end of the main body 101 and the driven wheel 3012 at the outer end of the rotating roller 301 through the belt 1031. Start the driving wheel 103, so that the belt 1031 drives the driven wheel 3012 to rotate, and the rotating roller 301 is rotated. The roller 301 rotates while being in contact with the ground. During the rotation of the rotating roller 301, the needle rod 3031 is inserted into the ground, pushing the main body 101 to move, so that the needle rod 3031 hooks out the ground film remaining in the ground. After being hooked out, the needle rod 3031 flips upward and passes through the separation groove 203 of the lifting frame 201. When the needle rod 3031 passes through the separation groove 203, the ground film can be separated from the needle rod 3031 and collected in the collecting part 202. During the film removal process, the rotating roller 301 can The needle rod 3031 moves up and down according to the ups and downs of the ground, ensuring that the rotating roller 301 can always work in close contact with the ground. When the needle rod 3031 encounters hard objects such as stones underground, as the rotating roller 301 rotates, the reset plate 302 will slide along the wedge structure in the movable groove 3011 and retract the needle rod 3031 into the movable groove 3011 to prevent the needle rod 3031 from breaking after hitting hard objects. After the ground film is collected, the collecting piece 202 is removed from the lifting frame 201, and then the ground film collected inside is processed centrally.

Claims

1. A high-efficiency film removal and recycling integrated machine for wheat fields, characterized in that, Comprising: An installation component (1); the installation component (1) includes a main body (101), an adjustment groove (1011), a slider (104), and an adjustment wheel (1041). Coaxial wheel sets are provided on the front and rear sides of the main body (101); the adjustment groove (1011) is opened inside the side end of the main body (101); the slider (104) is slidably installed in the adjustment groove (1011) through a spring; the adjustment wheel (1041) is rotatably installed at the outer end of the slider (104), and the adjustment wheel (1041) is located outside the main body (101), and the adjustment wheel (1041) is in transmission connection with a belt (1031); a lifting component (2) is provided on the installation component (1), the lifting frame (201) of the lifting component (2) is arranged inside the main body (101), and the side block (204) at the outer end of the lifting frame (201) is slidably matched with the chute (102) at the inner end of the main body (101) through a spring, and the lower end of the side block (204) contacts the positioning block (1021) in the chute (102); a rotating component (3) is provided on the lifting component (2), and the rotating component (3) includes a rotating roller (301), a moving groove (3011), a driven wheel (3012), a reset plate (302), a connecting groove (3021), a sliding plate (303), and a needle rod (3031); the rotating roller (301) is of a cylindrical structure, and the rotating roller (301) is rotatably installed inside the lifting frame (201); the moving groove (3011) is opened on the outside of the rotating roller (301) in an equidistant and staggered distribution manner, and a wedge-shaped structure is provided inside the moving groove (3011); the driven wheel (3012) is fixedly installed on the outside of the rotating roller (301), the driven wheel (3012) is located at the outer end of the main body (101), and the driven wheel (3012) is in transmission connection with the belt (1031) on the external driving wheel (103) of the main body (101); the reset plate (302) is slidably installed inside each moving groove (3011) through a spring; the connecting groove (3021) is opened at the inner end of the reset plate (302); the sliding plate (303) is located inside the moving groove (3011), and the wedge-shaped structure at the side end of the sliding plate (303) fits with the wedge-shaped structure in the moving groove (3011), and the sliding plate (303) is slidably matched with the connecting groove (3021) in the reset plate (302); the needle rod (3031) is fixedly arranged at the outer end of the sliding plate (303), and the needle rod (3031) extends out of the moving groove (3011), and the needle rod (3031) can pass through the separation groove (203) in the lifting frame (201).

2. The high-efficiency film removal and recycling integrated machine for wheat fields according to claim 1, wherein: The installation component (1) includes: a chute (102) and a positioning block (1021); the chute (102) is symmetrically opened at the inner ends of both sides of the main body (101); the positioning block (1021) is movably installed in the chute (102) on the left side through a screw.

3. The high-efficiency film removal and recycling integrated machine for wheat fields according to claim 2, wherein: The mounting component (1) comprises: a driving wheel (103) and a belt (1031); the driving wheel (103) is rotatably mounted on the outer upper end of the main body (101), and the driving wheel (103) is connected to a motor; and the belt (1031) is transmission-mounted on the driving wheel (103).

4. A high-efficiency film removal and recycling integrated machine for wheat fields according to any one of claims 1 to 3, characterized in that: The lifting component (2) comprises: a lifting frame (201) and a docking hole (2011); the lifting frame (201) is a rectangular structure, and a protruding rectangular plate is provided at the upper rear end of the lifting frame (201); and the docking hole (2011) is symmetrically arranged at a position on the rear side of the upper end of the lifting frame (201).

5. The high-efficiency film removal and recycling integrated machine for wheat fields according to claim 4, characterized in that: The lifting component (2) comprises: a collecting piece (202) and an insertion rod (2021); the collecting piece (202) is placed on a rectangular plate protruding from the rear end of the lifting frame (201), and a holding rod is provided on the top of the collecting piece (202); the insertion rod (2021) is symmetrically arranged on both sides of the bottom of the collecting piece (202), and the insertion rod (2021) is plugged into and matched with the docking hole (211).

6. The high-efficiency film removal and recycling integrated machine for wheat fields according to claim 5, characterized in that: The lifting component (2) comprises: a separation groove (203) and a side block (204); the separation groove (203) is equidistantly arranged at a middle position of the front side of the lifting frame (201); and the side blocks (204) are symmetrically arranged at the lower ends of both sides of the lifting frame (201).

Citation Information

Patent Citations

  • Sliding plate type residual film recycling combined machine

    CN210093867U

  • Mulching film recovery device suitable for sand pressing melon field

    CN211982480U

  • Device for recovering residual films on earth surface

    CN216930740U