A wheat drought-resistant water pipe recovery device and a use method thereof

By designing a wheat drought-resistant water pipe recycling device, which utilizes a rotating shaft, crank handle, and cleaning components, the problems of low water pipe winding efficiency and difficulty in cleaning up soil are solved, achieving efficient winding and reduced wear.

CN117602443BActive Publication Date: 2025-12-26AGRI GENE RESOURCES RES CENT OF SHANXI AGRI UNIV
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Patent Information

Application Number
CN202311669684.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-06
Publication Date
2025-12-26
Estimated Expiration
2043-12-06

AI Technical Summary

Technical Problem

Existing water pipe recycling devices are inefficient during the winding process and difficult to clean up dirt, affecting their performance.

Method used

A water pipe recycling device for drought-resistant wheat was designed, including a side shaft plate, a rotating shaft, a crank handle, a storage component, and a cleaning component. By turning the crank handle, the rotating shaft and shaft rod are driven to rotate. The water pipe is wound up and the soil is cleaned by using structures such as a limit rod, a clamp, a curved plate, and a friction pad.

Benefits of technology

It improves the efficiency of water pipe winding, reduces wear and dirt adhesion on the water pipe surface, ensures stable positioning of the water pipe during winding, prevents deviation, and improves the recycling rate of water pipe.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a wheat drought-resistant water pipe recycling device and a use method thereof, and relates to the technical field of agricultural machinery, which comprises side shaft plates, the outer surfaces of the two side shaft plates are rotationally connected with shafts in the middle, the surfaces of the shafts are rotationally connected with crank handles, the upper surfaces of the side shaft plates are fixedly connected with upper connecting plates, the opposite surfaces of the upper connecting plates are rotationally connected with rotating slide rods, the lower surfaces of the side shaft plates are fixedly connected with lower connecting plates on the two sides, and the opposite surfaces of the lower connecting plates are fixedly connected with connecting plates. The water pipe passes through the clamping plate from bottom to top and rubs against the friction pad below. The friction pad is made of flexible material and is provided with a gap at the bottom of the clamping plate. When the water pipe passes through, the friction pad is extruded to adhere to the bottom of the clamping plate, so that the friction caused by the winding and pulling of the water pipe is reduced, the abrasion of the surface of the water pipe is reduced, and the recycling rate of the water pipe is improved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of agricultural machinery, in particular to a water pipe recovery device for drought-resistant wheat and a use method thereof. BACKGROUND

[0002] According to the complex seedling conditions and drought conditions of winter wheat, time-specific, site-specific and seedling-specific technical measures are implemented. For the plots that have been irrigated with winter water and have good seedling and soil conditions, the conventional method is used for management; for the plots that have water irrigation conditions but have not been irrigated with winter water, a small amount of water is fine irrigated in the afternoon of sunny days after the spring (the average daily temperature is stable above 3 DEG C), and appropriate fertilizer is applied; for the plots without water irrigation conditions, the plots are pressed and furrowed; for a small amount of vigorous wheat seedlings, control measures are taken to prevent early decline and lodging.

[0003] At present, in the process of wheat planting, drought resistance needs to be carried out in some extreme weather periods, and after the drought resistance is completed, the water pipe needs to be recovered. In the process of recovering the water pipe, most of the existing water pipes are manually rolled and simply rolled. The existing rolling tool affects the rolling efficiency during use because the water pipe contains a large amount of stored water. In addition, since the water pipe is used in the planting area, a large amount of soil is attached to the surface of the water pipe after the water pipe irrigates the wheat, and it is difficult to clean. SUMMARY

[0004] In order to achieve the above purpose, the following technical scheme is adopted: a water pipe recovery device for drought-resistant wheat, comprising a side shaft plate, the side shaft plate is provided with two, the outer surface of the two side shaft plates is rotationally connected with a rotating shaft in the middle, the surface of the rotating shaft is rotationally connected with a crank handle, the upper surface of the side shaft plate is fixedly connected with an upper connecting plate, the opposite surfaces of the upper connecting plate are rotationally connected with a rotating slide rod, the lower surfaces of the side shaft plates are fixedly connected with lower connecting plates on both sides, the opposite surfaces of the lower connecting plates are fixedly connected with a connecting plate, and the surface of the lower connecting plate close to the rotating slide rod is fixedly connected with a cleaning assembly; the worker inserts the port of the water pipe into the cleaning assembly along the position close to the cleaning assembly, the cleaning assembly is extruded with the surface of the water pipe, then the water pipe is pulled through the rotating slide rod and wound on the surface of the storage assembly for pre-fixing, then the worker rotates the crank handle to drive the rotating shaft and the storage assembly to rotate, and the water pipe is rolled and recovered.

[0005] The water pipe recovery device for drought-resistant wheat further comprises:

[0006] The storage assembly is rotatably connected between the opposite surfaces of the side shaft plate and fixedly connected to the outer surface of the rotating shaft, comprising a shaft rod, the outer surface of the shaft rod is fixedly connected with a rotating disc on both sides, the rotating disc is penetrated by the shaft rod, and the shaft rod extends through the rotating disc to the surface of the rotating shaft. The rotating shaft is rotated by rotating the handle, and since the shaft rod is connected with the rotating shaft, the rotating of the rotating shaft drives the shaft rod and the rotating discs arranged at both ends thereof to rotate, thereby winding and recycling the water pipe.

[0007] Limit rods are arranged between the opposite surfaces of the rotating disc, the limit rods are arranged in a circumferential manner on the outer side of the shaft rod, and clamping pieces are fixedly connected to the limit rods at intervals. The limit rods are arranged on both sides of the clamping pieces, and since the clamping pieces are extruded during winding, the limit rods fix the positions of the clamping pieces and support the clamping pieces.

[0008] Preferably, the cleaning assembly comprises clamping plates fixedly connected to the outer surface of the lower connecting plate, the clamping plates are arranged in pairs, clamping pipe assemblies are fixedly connected between the opposite surfaces of the clamping plates, outer cleaning clamping pieces are fixedly connected to the surfaces of the clamping pipe assemblies, the outer cleaning clamping pieces are arranged in pairs and are symmetrically arranged about the clamping pipe assemblies. The water pipe passes through the inside of the clamping pipe assemblies and rubs against the outer cleaning clamping pieces on both sides, and then is pulled to the surface of the rotating slide rod, is supported by the rotating slide rod and is perpendicular to the ground, a small amount of water in the water pipe that cannot be squeezed out is discharged, and slides downward along the vertical water pipe.

[0009] Preferably, the clamping pieces comprise support frames fixedly connected between the opposite surfaces of the limit rods, supporting blocks are fixedly connected to the outer surfaces of the support frames on both sides, through-pieces are fixedly connected to the inner surfaces of the supporting blocks, curved plates are fixedly connected to the outer surfaces of the through-pieces, and the curved plates are fixedly connected between the opposite surfaces of the support frames. The water pipe is wound on the surfaces of the clamping pieces, and since the types of water pipes for irrigation are various and the diameters of the pipes are different, the water pipe is extruded against the curved plates during winding, the curved plates are extruded downward by the pressure generated by the winding and slide on the surfaces of the through-pieces, and since the arc-shaped cavities are formed between the through-pieces and the curved plates, the curved plates are extruded downward to drive the through-pieces to be extruded downward according to the positions of the diameters of the pipes, and the connecting blocks on both sides are protruded upward, so that the sliding pieces are attached to the outer side of the water pipe.

[0010] Preferably, the through-piece comprises a connecting block fixedly connected to the inner surface of the support frame, a bottom plate fixedly connected to the surface of the connecting block, a sliding sheet fixedly connected to the surface of the bottom plate, the sliding sheet penetrating through the curved plate and extending to the outer side of the curved plate, and a clamping block fixedly connected to the surface of the sliding sheet. The sliding sheet penetrates through the surface of the curved plate and slides on the surface of the sliding sheet when the curved plate is pressed. Since the sliding sheet also has a curved structure and is oppositely arranged with the curved plate on the outer side, an arc-shaped cavity is formed in the middle. When the curved plate is pressed due to the winding of the water pipe, the protruding position of the curved plate is concave downward and slides on the surface of the sliding sheet. When the pressing on the arc-shaped cavity gradually decreases, the curved plate presses the sliding sheet, causing the sliding sheet to slide downward on the inner side of the support frame. At this time, the connecting blocks on both sides of the sliding sheet are inclined and protrude inward, limiting the position of the water pipe to prevent the water pipe from deviating from the fixed position during winding.

[0011] Preferably, the pipe clamping assembly comprises an inner clamping block, a clamping plate fixedly connected to the surface of the inner clamping block, an inner seat fixedly connected to the inner surface of the clamping plate, the inner seat fixedly connected to the surface of the outer clamping piece, and a friction pad arranged on the lower surface of the clamping plate. The water pipe penetrates through the clamping plate from bottom to top and rubs against the friction pad below. The friction pad is made of flexible material and has a gap at the bottom of the clamping plate. When the water pipe penetrates, the friction pad is pressed against the bottom of the clamping plate, which can reduce the friction caused by the winding and pulling of the water pipe, reduce the wear on the surface of the water pipe, and improve the recycling rate of the water pipe.

[0012] Preferably, the outer clamping piece comprises a double-head clamping block fixedly connected to the surface of the inner seat, a lower extension plate fixedly connected to the lower surface of the double-head clamping block, and a limiting disc fixedly connected to the surface of the lower extension plate. When the water pipe penetrates through the clamping plate from below, the surface of the water pipe first rubs against the limiting disc. The limiting disc is a disc structure protruding outward, and the protrusions at both ends press the surface of the water pipe, causing the water pipe to deform, which facilitates the crushing of the mud attached to the surface of the water pipe and reduces the adhesion of the mud during winding.

[0013] Preferably, the upper surface of the double-head clamping block is fixedly connected to an upper extension plate, the surface of the upper extension plate is fixedly connected to a connecting seat, the surface of the connecting seat is fixedly connected to a side pressing block, and the surface of the side pressing block is slidingly connected to a pressure collecting rod. After the water pipe contacts the limiting disc, the surface of the water pipe is pressed by the side pressing blocks on both sides during the pulling process, causing the stored water in the water pipe to be squeezed out. According to the influence of the content of the stored water in the water pipe and the upward pulling force of the pressure collecting rod, the side pressing block of the pressure collecting rod slides, thereby more closely fitting the surface of the water pipe, facilitating the discharge of the stored water.

[0014] The method for using the wheat drought-resistant water pipe recycling device comprises the following steps:

[0015] S1, intercalation fixed, after the staff completes the drought resistance work, the port of the water pipe is inserted into the inside of the cleaning assembly, and is pulled up to the surface of the rotating slide rod, and then the water pipe is wound on the surface of the storage assembly for pre-fixing. The water pipe is pre-fixed, the rotating handle drives the rotating shaft to rotate, since the shaft rod is connected with the rotating shaft, the rotating shaft drives the rotating disc provided at both ends of the shaft rod to rotate, so that the water pipe is wound and recycled.

[0016] S2, mud cleaning, the water pipe wound on the surface of the storage assembly is rotated and wound by rotating the rotating handle, and the accumulated water in the water pipe is extruded when being wound, and the mud attached to the outer side of the water pipe is rubbed. After the water pipe contacts the limiting disc, the surface of the water pipe is extruded by the side pressing block on both sides in the process of pulling, so that the stored water in the water pipe is extruded. According to the influence of the content of the stored water in the water pipe and the force received by the compression rod when the water pipe is pulled upward, the side pressing block of the compression rod slides, so as to be more fitted to the surface of the water pipe, facilitating the discharge of the stored water.

[0017] S3, control water and remove silt, in the process of winding the water pipe, the accumulated water in the water pipe is controlled downward perpendicular to the ground by the rotating slide rod, and the accumulated water flows to the cleaning assembly and is discharged outward along the water pipe. The water pipe passes through the inside of the pipe clamping assembly and rubs against the outer cleaning clamps on both sides, and then is pulled to the surface of the rotating slide rod and is supported vertically to the ground by the rotating slide rod, so that a small amount of stored water in the water pipe that cannot be extruded is controlled and discharged downward along the vertical water pipe.

[0018] S4, anti-deviation winding, the water pipe is wound on the surface of the storage assembly and extruded between the storage assembly, the winding position is limited by the storage assembly, so that the water pipe maintains a stable amplitude during winding. When the extrusion received by the arc-shaped cavity gradually decreases, the arc-shaped plate extrudes the sliding block, so that the sliding block slides downward in the inside of the support frame with a small amplitude. At this time, the connecting blocks on both sides of the sliding block are inclined inward and protrude, limiting the position of the water pipe, preventing the water pipe from deviating from the fixed position during winding.

[0019] The beneficial effects of the present application are as follows:

[0020] Firstly, the water pipe passes through the inside of the clamping plate from bottom to top and rubs against the friction pad below. The friction pad is made of flexible material and has a gap with the bottom of the clamping plate. When the water pipe passes through, the friction pad is extruded to fit the bottom of the clamping plate, which can reduce the friction caused by the winding and pulling of the water pipe, reduce the wear of the surface of the water pipe, and improve the recycling rate of the water pipe.

[0021] Secondly, when the water pipe passes through the clamping plate from below, the surface of the water pipe first rubs against the limiting disc. The limiting disc is a disc structure protruding outward, and the protrusions at both ends press the surface of the water pipe, causing the water pipe to deform, which facilitates the crushing of the mud blocks attached to the surface of the water pipe and reduces the adhesion of the mud blocks during winding.

[0022] Thirdly, the water pipe is in contact with the limiting disc after the water pipe is in contact with the limiting disc, and the surface of the water pipe is extruded by the side pressing block on both sides in the process of pulling, so that the stored water in the water pipe is extruded out, and the side pressing block of the compression rod slides according to the content of the stored water in the water pipe and the influence of the upward pulling force of the water pipe on the compression rod, so that the surface of the water pipe is more fitted, and the stored water is easily discharged.

[0023] Fourthly, the water pipe passes through the inside of the pipe clamping assembly and rubs against the outer cleaning clamp on both sides, and then is pulled to the surface of the rotating slide rod, is supported by the rotating slide rod and is perpendicular to the ground, so that a small amount of stored water in the water pipe that cannot be extruded is controlled out and is discharged downward along the vertical water pipe.

[0024] Fifthly, the sliding piece penetrates the surface of the arc bending plate, and when the arc bending plate is extruded, the sliding piece slides on the surface of the arc bending plate. Since the sliding piece is also an arc bending structure and is oppositely arranged with the outer arc bending plate, an arc-shaped cavity is formed in the middle. When the arc bending plate is extruded due to winding of the water pipe, the protruding position of the arc bending plate is concave downward and slides on the surface of the sliding piece. When the extrusion on the arc-shaped cavity gradually decreases, the arc bending plate extrudes the sliding piece, so that the sliding piece slides downward in the inner side of the supporting frame. At this time, the connecting blocks on both sides of the sliding piece are inclined and protrude inward to limit the position of the water pipe, so that the water pipe is not easy to deviate from the fixed position during winding. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is an external structure schematic diagram of the wheat drought-resistant water pipe recycling device.

[0026] Figure 2 It is a structure storage assembly and side shaft plate connection schematic diagram of the invention.

[0027] Figure 3 It is an enlarged structure schematic diagram of the cleaning assembly.

[0028] Figure 4 It is a structure schematic diagram of the storage assembly.

[0029] Figure 5 It is a structure schematic diagram of the clamping piece.

[0030] Figure 6 It is a structure schematic diagram of the penetrating piece.

[0031] Figure 7 It is a structure schematic diagram of the cleaning assembly.

[0032] Figure 8 It is a structure schematic diagram of the outer cleaning clamp.

[0033] Figure 9 It is a schematic diagram of the use method of the wheat drought-resistant water pipe recycling device.

[0034] In the figure: 1, side shaft plate; 2, crank handle; 3, rotating slide rod; 4, cleaning assembly; 41, clamping plate; 42, pipe clamping assembly; 421, clamping plate; 422, inner clamping block; 423, friction pad; 424, inner seat; 43, outer cleaning clamp; 431, side pressing block; 432, connecting seat; 433, upper extension plate; 434, double-head clamping block; 435, lower extension plate; 436, limiting disc; 437, compression rod; 5, rotating shaft; 6, storage assembly; 61, rotating disc; 62, clamping piece; 621, curved plate; 622, support frame; 623, through piece; 6231, clamping block; 6232, connecting block; 6233, sliding piece; 6234, bottom plate; 624, abutting frame; 63, limiting rod; 64, shaft rod; 7, connecting plate; 8, upper connecting plate; 9, lower connecting plate. DETAILED DESCRIPTION

[0035] The application will be further described below in conjunction with the drawings and specific embodiments. The embodiments of the application are given for illustrative and descriptive purposes only, and are not exhaustive or limiting of the application disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.

[0036] The first embodiment, as shown in Figure 1 , Figure 2 , Figure 4 , Figure 5 and Figure 6 , the application provides a technical solution: a wheat drought-resistant water pipe recycling device, comprising two side shaft plates 1, the outer surface of the two side shaft plates 1 is rotatably connected with a rotating shaft 5 in the middle, the surface of the rotating shaft 5 is rotatably connected with a crank handle 2, the upper surface of the side shaft plate 1 is fixedly connected with an upper connecting plate 8, the opposite surfaces of the upper connecting plate 8 are rotatably connected with a rotating slide rod 3, the lower surface of the side shaft plate 1 is fixedly connected with a lower connecting plate 9 on both sides, the opposite surfaces of the lower connecting plate 9 are fixedly connected with a connecting plate 7, and the surface of the lower connecting plate 9 near the rotating slide rod 3 is fixedly connected with a cleaning assembly 4; the worker inserts the port of the water pipe into the cleaning assembly 4 along the position close to the cleaning assembly 4, the cleaning assembly 4 is extruded with the surface of the water pipe, then the water pipe is pulled through the rotating slide rod 3 and wound on the surface of the storage assembly 6 for pre-fixing, then the worker rotates the crank handle 2 to make the crank handle 2 drive the rotating shaft 5 and the storage assembly 6 to rotate for winding and recycling the water pipe.

[0037] The accommodation assembly 6 is rotationally connected between the opposite surfaces of the side shaft plate 1 and fixedly connected to the outer surface of the rotating shaft 5. The accommodation assembly 6 comprises a shaft rod 64, the outer surface of the shaft rod 64 is fixedly connected with a rotating disc 61 on both sides, the rotating disc 61 is penetrated by the shaft rod 64, and the shaft rod 64 extends to the surface of the rotating shaft 5 through the rotating disc 61. The rotating handle 2 drives the rotating shaft 5 to rotate, and since the shaft rod 64 is connected with the rotating shaft 5, the rotating shaft 5 rotates to drive the shaft rod 64 and the rotating disc 61 arranged at both ends of the shaft rod 64 to rotate, thereby winding and recycling the water pipe.

[0038] The opposite surfaces of the rotating disc 61 are provided with limiting rods 63, and six limiting rods 63 are circumferentially distributed on the outer side of the shaft rod 64. The limiting rods 63 are fixedly connected with a clamping piece 62 at intervals. The limiting rods 63 are arranged on both sides of the clamping piece 62, and since the clamping piece 62 is pressed during winding, the limiting rods 63 fix the position of the clamping piece 62 and support the clamping piece 62.

[0039] Preferably, the clamping piece 62 comprises a supporting frame 622 fixedly connected between the opposite surfaces of the limiting rod 63, supporting frames 622 are fixedly connected with abutting frames 624 on both sides of the outer surface of the supporting frame 622, the inner surface of the abutting frame 624 is fixedly connected with a penetrating piece 623, the outer surface of the penetrating piece 623 is fixedly connected with a curved plate 621, and the curved plate 621 is fixedly connected between the opposite surfaces of the supporting frame 622. The water pipe is wound on the surface of the clamping piece 62, and since the irrigation water pipe has various models and different pipe diameters, the diameter of the water pipe wound on the surface of the clamping piece 62 after being flattened during winding is different. Therefore, the water pipe is pressed by the curved plate 621 during winding, the curved plate 621 is pressed downward by the pressure generated by winding, and slides on the surface of the penetrating piece 623. Since the curved plate 621 and the penetrating piece 623 form an arc-shaped cavity, according to the position of the pipe diameter, the downward pressing of the curved plate 621 drives the penetrating piece 623 to press downward, and the connecting blocks 6232 on both sides protrude upward, so that the sliding piece 6233 is attached to the outer side of the water pipe.

[0040] Preferably, the through member 623 comprises a connecting block 6232 fixedly connected to the inner surface of the resisting frame 624, the surface of the connecting block 6232 is fixedly connected with a bottom plate 6234, the surface of the bottom plate 6234 is fixedly connected with a sliding sheet 6233, the sliding sheet 6233 penetrates through the curved arc plate 621 and extends to the outside of the curved arc plate 621, and the surface of the sliding sheet 6233 is fixedly connected with a clamping block 6231. The sliding sheet 6233 penetrates through the surface of the curved arc plate 621, and slides on the surface of the sliding sheet 6233 when the curved arc plate 621 is extruded. Since the sliding sheet 6233 also has a curved arc structure and is oppositely arranged with the curved arc plate 621 on the outside, an arc-shaped cavity is formed in the middle. When the curved arc plate 621 is extruded due to the winding of the water pipe, the protruding position of the curved arc plate 621 is concave downward and slides on the surface of the sliding sheet 6233. When the extrusion on the arc-shaped cavity gradually decreases, the curved arc plate 621 extrudes the sliding sheet 6233, causing the sliding sheet 6233 to slide downward on the inner side of the supporting frame 622. At this time, the connecting blocks 6232 on both sides of the sliding sheet 6233 are inclined and protrude inward, limiting the position of the water pipe, preventing the water pipe from deviating from the fixed position during winding.

[0041] The second embodiment is shown in Figure 3 , Figure 7 and Figure 8 , preferably, the cleaning assembly 4 comprises a clamping plate 41 fixedly connected to the outer surface of the lower connecting plate 9, the clamping plate 41 is provided with two, and the opposite surfaces of the two clamping plates 41 are fixedly connected with a pipe clamping assembly 42, the surface of the pipe clamping assembly 42 is fixedly connected with an outer cleaning clamp 43, the outer cleaning clamp 43 is provided with two, and the two outer cleaning clamps 43 are symmetrically arranged with the pipe clamping assembly 42 as the center. The water pipe passes through the inside of the pipe clamping assembly 42 and rubs against the two outer cleaning clamps 43, and then is pulled to the surface of the rotating slide rod 3, is supported by the rotating slide rod 3 and is perpendicular to the ground, controls the small amount of water in the water pipe that cannot be extruded, and slides downward along the vertical water pipe to be discharged.

[0042] Preferably, the pipe clamping assembly 42 comprises an inner connecting block 422, the surface of the inner connecting block 422 is fixedly connected with a clamping plate 421, the inner surface of the clamping plate 421 is fixedly connected with an inner seat 424, the inner seat 424 is fixedly connected to the surface of the outer cleaning clamp 43, and the lower surface of the clamping plate 421 is provided with a friction pad 423, and the friction pad 423 is extruded and matched with the clamping plate 421. The water pipe passes through the inside of the clamping plate 421 from bottom to top and rubs against the friction pad 423 below. The friction pad 423 is made of flexible material and is provided with a gap at the bottom of the clamping plate 421. When the water pipe passes through, the friction pad 423 is extruded and adheres to the bottom of the clamping plate 421, which can reduce the friction generated by the winding and pulling of the water pipe, reduce the wear on the surface of the water pipe, and improve the recycling rate of the water pipe.

[0043] Preferably, the outer cleaning clamp 43 comprises a double-headed connector block 434 fixedly connected to the surface of the inner seat 424, the lower surface of the double-headed connector block 434 is fixedly connected with a lower extension plate 435, and the surface of the lower extension plate 435 is fixedly connected with a limiting disc 436. When the water pipe passes through the clamp plate 421 from below, the surface of the water pipe first rubs against the limiting disc 436, the limiting disc 436 is a outwardly protruding disc structure, the protrusions at both ends press against the surface of the water pipe, so that the water pipe is deformed, which facilitates the crushing of the mud attached to the surface of the water pipe and reduces the adhesion of the mud during winding.

[0044] Preferably, the upper surface of the double-headed connector block 434 is fixedly connected with an upper extension plate 433, the surface of the upper extension plate 433 is fixedly connected with a connecting seat 432, the surface of the connecting seat 432 is fixedly connected with a side pressing block 431, and the surface of the side pressing block 431 is slidingly connected with a pressure collecting rod 437. After the water pipe contacts the limiting disc 436, the surface of the water pipe is extruded by the side pressing blocks 431 on both sides during pulling, so that the stored water in the water pipe is squeezed out. According to the influence of the content of the stored water in the water pipe and the force of the pressure collecting rod 437 pulled upward by the water pipe, the pressure collecting rod 437 slides at the side pressing block 431, so as to more closely fit the surface of the water pipe, facilitating the discharge of the stored water.

[0045] The third embodiment, as shown in Figures 1-9 The use method of the water pipe recycling device for drought-resistant wheat comprises the following steps:

[0046] S1, inserting and fixing, after the drought-resistant work is completed, the staff inserts the port of the water pipe into the inside of the cleaning assembly 4 and pulls it upward to the surface of the rotating slide rod 3, and then winds the water pipe around the surface of the storage assembly 6 for pre-fixing. The water pipe is pre-fixed, the rotating shaft 5 is rotated by rotating the handle 2, the rotating shaft 5 is rotated, the shaft rod 64 is connected with the rotating shaft 5, the rotating shaft 5 is rotated, the shaft rod 64 and the two end discs 61 provided at both ends thereof are rotated, so as to wind and recycle the water pipe.

[0047] S2, mud cleaning, the water pipe wound around the surface of the storage assembly 6 is rotated and wound by rotating the handle 2, and the accumulated water in the water pipe is extruded and rubs against the mud attached to the outer side of the water pipe. After the water pipe contacts the limiting disc 436, the surface of the water pipe is extruded by the side pressing blocks 431 on both sides during pulling, so that the stored water in the water pipe is squeezed out. According to the influence of the content of the stored water in the water pipe and the force of the pressure collecting rod 437 pulled upward by the water pipe, the pressure collecting rod 437 slides at the side pressing block 431, so as to more closely fit the surface of the water pipe, facilitating the discharge of the stored water.

[0048] S3, water control and dredging, through the water pipe in the process of winding, supported by the rotating slide bar 3 perpendicular to the ground, the accumulated water in the water pipe is controlled downward, and the accumulated water flows to the cleaning assembly 4 and is discharged outward along the water pipe. The water pipe passes through the inside of the pipe clamping assembly 42 and rubs against the outer cleaning clamps 43 on both sides, and then is pulled to the surface of the rotating slide bar 3, supported by the rotating slide bar 3 perpendicular to the ground, a small amount of water in the water pipe that cannot be squeezed out is controlled, and is discharged downward along the vertical water pipe.

[0049] S4, anti-deviation winding, the water pipe is wound around the surface of the storage assembly 6 and is squeezed between the water pipe and the storage assembly 6, the winding position is limited by the storage assembly 6, so that the water pipe remains stable during winding.

[0050] In use, first, the staff inserts the port of the water pipe into the cleaning assembly 4 along the position close to the cleaning assembly 4, the cleaning assembly 4 is squeezed against the surface of the water pipe, and then the water pipe is pulled to pass through the rotating slide bar 3 and is wound around the surface of the storage assembly 6 to pre-fix the water pipe. The rotating handle 2 drives the rotating shaft 5 to rotate, because the shaft rod 64 is connected with the rotating shaft 5, the rotating shaft 5 rotates to drive the rotating disc 61 provided at both ends of the shaft rod 64 to rotate, so as to wind and recycle the water pipe. When the squeezing of the arc-shaped cavity gradually decreases, the bending plate 621 squeezes the sliding piece 6233, so that the sliding piece 6233 slides downward in the inside of the support frame 622 by a small amplitude, at this time, the connecting blocks 6232 on both sides of the sliding piece 6233 are inclined inward and protrude to limit the position of the water pipe, so that the water pipe does not easily deviate from the fixed position during winding.

[0051] The water pipe passes through the inside of the pipe clamping assembly 42 and rubs against the outer cleaning clamps 43 on both sides, and then is pulled to the surface of the rotating slide bar 3, supported by the rotating slide bar 3 perpendicular to the ground, a small amount of water in the water pipe that cannot be squeezed out is controlled, and is discharged downward along the vertical water pipe.

[0052] The water pipe passes through the inside of the pipe clamping assembly 42 and rubs against the outer cleaning clamps 43 on both sides, and then is pulled to the surface of the rotating slide bar 3, supported by the rotating slide bar 3 perpendicular to the ground, a small amount of water in the water pipe that cannot be squeezed out is controlled, and is discharged downward along the vertical water pipe.

[0053] When the water pipe passes through the clamp plate 421 from below, the surface of the water pipe first rubs against the limiting disc 436, the limiting disc 436 is a disc structure protruding outward, the protrusions at both ends press the surface of the water pipe to deform the water pipe, so as to facilitate the crushing of the mud attached to the surface of the water pipe and reduce the attachment of the mud during winding.

[0054] When the water pipe contacts the limiting disc 436, the water pipe is extruded by the side pressing blocks 431 on both sides during the pulling process, so that the stored water in the water pipe is squeezed out. According to the content of the stored water in the water pipe and the force received by the compression rod 437 due to the upward pulling of the water pipe, the compression rod 437 slides at the side pressing blocks 431, so as to be more fitted to the surface of the water pipe, thereby facilitating the discharge of the stored water.

[0055] When the water pipe is wound and rolled up, the sliding piece 6233 penetrates the surface of the curved arc plate 621. When the curved arc plate 621 is extruded, the sliding piece 6233 slides on the surface of the curved arc plate 621. Since the sliding piece 6233 is also a curved arc structure and is oppositely arranged with the curved arc plate 621 outside, an arc-shaped cavity is formed in the middle. When the curved arc plate 621 is extruded due to the winding of the water pipe, the convex position of the curved arc plate 621 is concave downward and slides on the surface of the sliding piece 6233. When the extrusion on the arc-shaped cavity gradually decreases, the curved arc plate 621 extrudes the sliding piece 6233, so that the sliding piece 6233 slides downward in the support frame 622. At this time, the connecting blocks 6232 on both sides of the sliding piece 6233 are inclined and protrude inward, limiting the position of the water pipe, preventing the water pipe from deviating from the position during rolling.

[0056] Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art and related fields without creative labor should belong to the scope of protection of the present application. The structures, devices and operation methods not specifically described and explained in the present application are implemented according to the conventional means in the art, unless otherwise specified and limited.

Claims

1. A wheat drought-resistant water pipe recovery device, comprising side shaft plates (1), the outer surfaces of the two side shaft plates (1) are rotationally connected with a rotating shaft (5), the surface of the rotating shaft (5) is rotationally connected with a crank handle (2), the upper surface of the side shaft plate (1) is fixedly connected with an upper connecting plate (8), the opposite surfaces of the upper connecting plate (8) are rotationally connected with a rotating slide rod (3), the lower surface of the side shaft plate (1) is fixedly connected with a lower connecting plate (9) on both sides, the opposite surfaces of the lower connecting plate (9) are fixedly connected with a connecting plate (7), and the surface of the lower connecting plate (9) near the rotating slide rod (3) is fixedly connected with a cleaning assembly (4). The wheat drought-resistant water pipe recovery device further comprises: a storage assembly (6) rotationally connected between the opposite surfaces of the side shaft plate (1) and fixedly connected to the outer surface of the rotating shaft (5), the storage assembly (6) comprises a shaft rod (64), the outer surfaces of the shaft rod (64) are fixedly connected with a rotating disc (61), the surface of the rotating disc (61) penetrates the shaft rod (64), and the shaft rod (64) extends to the surface of the rotating shaft (5) through the rotating disc (61); limiting rods (63) are arranged between the opposite surfaces of the rotating disc (61), the six limiting rods (63) are circumferentially distributed on the outer side of the shaft rod (64), and the limiting rods (63) are fixedly connected with clamping pieces (62) at intervals; the clamping piece (62) comprises a support frame (622) fixedly connected between the opposite surfaces of the limiting rod (63), the outer surfaces of the support frame (622) are fixedly connected with abutment frames (624) on both sides, the inner surface of the abutment frame (624) is fixedly connected with a penetrating piece (623), the outer surface of the penetrating piece (623) is fixedly connected with a curved arc plate (621), and the curved arc plate (621) is fixedly connected between the opposite surfaces of the support frame (622); the penetrating piece (623) comprises a connecting block (6232) fixedly connected to the inner surface of the abutment frame (624), the surface of the connecting block (6232) is fixedly connected with a bottom plate (6234), the surface of the bottom plate (6234) is fixedly connected with a sliding piece (6233), the sliding piece (6233) penetrates the curved arc plate (621) and extends to the outer side of the curved arc plate (621), and the surface of the sliding piece (6233) is fixedly connected with a clamping block (6231).

2. A water pipe recovery device for drought resistance of wheat according to claim 1, characterized in that: the cleaning assembly (4) comprises clamping plates (41) fixedly connected to the outer surface of the lower connecting plate (9), the clamping plates (41) are arranged on both sides, the opposite surfaces of the clamping plates (41) are fixedly connected with pipe clamping assemblies (42), the surface of the pipe clamping assembly (42) is fixedly connected with outer cleaning clamping pieces (43), the outer cleaning clamping pieces (43) are arranged on both sides, and the two outer cleaning clamping pieces (43) are symmetrically centered on the pipe clamping assembly (42).

3. A water pipe recovery device for drought resistance of wheat according to claim 2, characterized in that: The pipe clamping assembly (42) comprises an inner joint block (422), the surface of the inner joint block (422) is fixedly connected with a clamping plate (421), the inner surface of the clamping plate (421) is fixedly connected with an inner seat (424), the inner seat (424) is fixedly connected with the surface of an outer cleaning clamp (43), the lower surface of the clamping plate (421) is provided with a friction pad (423), and the friction pad (423) is adapted to be extruded with the clamping plate (421).

4. A water pipe recovery device for drought resistance of wheat according to claim 3, characterized in that: The outer cleaning clamp (43) comprises a double-head joint block (434), the double-head joint block (434) is fixedly connected with the surface of the inner seat (424), the lower surface of the double-head joint block (434) is fixedly connected with a lower extension plate (435), and the surface of the lower extension plate (435) is fixedly connected with a limiting disc (436).

5. A water pipe recovery device for drought resistance of wheat according to claim 4, characterized in that: The upper surface of the double-head joint block (434) is fixedly connected with an upper extension plate (433), the surface of the upper extension plate (433) is fixedly connected with a connecting seat (432), the surface of the connecting seat (432) is fixedly connected with a side pressing block (431), and the surface of the side pressing block (431) is slidingly connected with a compression rod (437).

6. The method for using the water pipe recovery device for drought resistance of wheat, which is suitable for the water pipe recovery device for drought resistance of wheat according to any one of claims 1-5, characterized in that, The following steps are included: S1, inserting and fixing, after the drought resistance work is completed, the staff inserts the port of the water pipe into the inside of the cleaning assembly (4), pulls upward to the surface of the rotating slide rod (3), and then winds the water pipe on the surface of the storage assembly (6) for pre-fixing; S2, mud cleaning, by rotating the handle (2), the water pipe wound on the surface of the storage assembly (6) is rotated and rolled, and the stored water in the water pipe is extruded in cooperation with the cleaning assembly (4) during rolling, and the mud attached to the outside of the water pipe is rubbed; S3, water control and silt discharge, during the rolling of the water pipe, the stored water in the water pipe is controlled downward vertically to the ground supported by the rotating slide rod (3), and the stored water flows to the cleaning assembly (4) and is discharged outward along the water pipe; S4, anti-deviation rolling, the water pipe is wound on the surface of the storage assembly (6) and extruded with the storage assembly (6), the winding position is limited by the storage assembly (6), so that the water pipe remains stable during winding.

Citation Information

Patent Citations

  • Garden irrigation pipeline collecting frame

    CN114084749A

  • KR20230090479A