Oat grass drip irrigation tape recovery device
By designing the oat grass drip irrigation belt recycling device, the traction structure and rolling guide components are used to realize the recycling and rearrangement of the drip irrigation belt, which solves the problem of difficulty in recycling the drip irrigation after the drip irrigation is completed and improves agricultural production efficiency.
Patent Information
- Application Number
- CN202420386257.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-29
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2034-02-28
AI Technical Summary
In the oat grass planting area, drip irrigation belts need to be recycled after drip irrigation are completed for next use, and it is difficult for the prior art to achieve efficient recycling and rearrangement.
An oat grass drip irrigation belt recycling device is designed, including a drip irrigation belt recycling trough, a traction structure and a rolling guide component. The drip irrigation belt is moved into the recovery trough through the traction structure. The rolling guide component folds the flexible water delivery branch pipe to realize the recycling and rearrangement of the drip irrigation belt.
The efficient recycling and rearrangement of drip irrigation belts is achieved, the efficiency of agricultural production is improved, manpower operation is reduced, and the effective utilization of drip irrigation belts is ensured.
Smart Images

Figure CN222821054U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of drip irrigation belt recovery, in particular to an oat straw drip irrigation belt recovery device. Background Art
[0002] Drip irrigation is a common irrigation method in modern agriculture and has now become the mainstream. Therefore, oat grass also needs to be irrigated with drip tapes during its growth process. In the drip irrigation method, water is transported by drip tapes.
[0003] Therefore, after the drip irrigation is completed, the drip irrigation tape needs to be recovered and collected for next use.
[0004] Furthermore, after the harvester has finished harvesting the oat grass in the planting area, the drip irrigation belt left in the original planting area needs to be recovered so as to be rearranged in the next oat grass planting area.
[0005] Based on this, a kind of oat straw drip irrigation belt recovery device is needed now. Utility Model Content
[0006] 1. Technical issues to be resolved
[0007] In view of the shortcomings of the prior art, the utility model provides an oat straw drip tape recovery device to solve the problem raised in the background technology: after the harvester completes harvesting the oat straw in the planting area, the drip tape left in the original planting area needs to be recovered so that it can be rearranged in the next oat straw planting area.
[0008] (II) Technical solution
[0009] In order to achieve the above purpose, the utility model provides the following technical solutions:
[0010] An oat straw drip irrigation belt recovery device comprises a drip irrigation belt arranged in an oat straw planting area, and further comprises:
[0011] A main recovery component capable of accommodating the drip irrigation tape, which is composed of a drip irrigation tape recovery groove, wherein the cross section of the drip irrigation tape recovery groove is U-shaped, and through holes are opened on the opposite side walls at one end thereof;
[0012] A traction structure capable of recovering the drip irrigation tape, which is located in the inner cavity of the drip irrigation tape recovery groove, one end of which is installed on the water inlet end of the flexible water delivery main pipe, and the other end of which passes outward from the through hole; and
[0013] The rolling guide components are provided in two groups, and the two groups of rolling guide components are symmetrically installed on the end portion facing the drip irrigation belt;
[0014] When the traction structure is pulled, the drip irrigation belt can move into the inner cavity of the drip irrigation belt recovery groove, and the two groups of flexible water delivery branches on the flexible water delivery main pipe can be folded by the two groups of rolling guide components.
[0015] Preferably, the traction structure comprises two steel wire ropes arranged in the inner cavity of the drip irrigation belt recovery groove, both ends of the steel wire ropes are free ends, and the two steel wire ropes are equipped with clamps at the free ends facing the drip irrigation belt. When the drip irrigation belt is recovered, the clamps can be sleeved and installed at the water inlet end of the flexible water delivery main pipe;
[0016] The free ends of the two steel wires away from the drip irrigation belt both pass outwards from the corresponding through holes.
[0017] Preferably, fixing ears are symmetrically fixedly installed on the circumferential side wall of the clamp, and the two steel wire ropes can be plugged into the corresponding fixing ears at their free ends facing the clamp, and after plugging, the free ends of the steel wire ropes are welded and fixed to the fixing ears.
[0018] Preferably, the two groups of rolling guide components each include a C-shaped bracket, and the two C-shaped brackets are symmetrically fixedly mounted on the end of the drip irrigation belt recovery trough facing the drip irrigation belt;
[0019] A roller is installed on each of the C-shaped brackets, and an axle rod A is movably installed between the roller and the C-shaped bracket, and the roller can be rotated through the axle rod A.
[0020] Preferably, the drip irrigation belt recovery trough is provided with a holding handle fixedly mounted on opposite side walls located at the through hole;
[0021] A walking structure capable of moving the drip irrigation belt recovery trough in the planting area is installed at the bottom of the drip irrigation belt recovery trough.
[0022] Preferably, the walking structure includes two inverted U-shaped bases, which are symmetrically fixedly installed at the two ends of the bottom of the drip irrigation belt recovery groove, each of the inverted U-shaped bases is equipped with a walking wheel, and a shaft B is movably installed between each group of the inverted U-shaped bases and the walking wheel, and the walking wheel can be rotated through the shaft B;
[0023] A walking belt is sleeved and installed between the two walking wheels.
[0024] Preferably, an embedding groove is provided on the circumferential side wall of each of the traveling wheels, and both ends of the traveling belt can be snap-fitted and installed in the corresponding embedding groove.
[0025] Preferably, detachable supporting structures are installed at both ends of the opposite side walls of the drip irrigation belt recovery trough.
[0026] Preferably, the four groups of detachable support structures all include plug-in sockets, and the four plug-in sockets are grouped in two, and each group of the plug-in sockets is respectively fixedly mounted on both sides of the side wall of one side of the drip irrigation belt recovery tank;
[0027] A supporting frame is plugged and installed in each of the plug sockets.
[0028] Preferably, the cross section of the socket is rectangular and hollow inside;
[0029] The support frame is L-shaped, with a plug-in portion at one end and a support portion at the other end, wherein:
[0030] In a stationary state, the plug-in portion of the support frame is plugged into the plug-in seat, the support portion is arranged downward, and the end of the support portion can contact the ground of the planting area;
[0031] When in the mobile state, the plug-in portion of the support frame is plugged and installed in the plug-in seat, the support portion is arranged upward, and the end of the support portion does not contact the ground of the planting area.
[0032] Beneficial Effects
[0033] The utility model provides an oat straw drip irrigation belt recovery device, which has the following beneficial effects:
[0034] 1. In the utility model, when it is necessary to recycle the drip irrigation belt arranged in the oat grass planting area, one end of the traction component is installed on the drip irrigation belt, and the farmer in the planting area pulls the other end of the traction component to move the drip irrigation belt toward the drip irrigation belt recovery groove until the flexible water delivery pipe is in the inner cavity of the drip irrigation belt recovery groove. When the water inlet end of the flexible water delivery pipe moves into the inner cavity of the drip irrigation belt recovery groove, the two sets of rolling guide components can fold the two sets of flexible water delivery branches and make the two sets of flexible water delivery branches in the inner cavity of the drip irrigation belt recovery groove at the same time;
[0035] Through the above operations, farmers can easily recycle the drip irrigation tapes arranged in the oat grass planting area.
[0036] Second, in the utility model, under the action of the circular rotation of the roller, the flexible water delivery branch pipe can be folded inward without scratching the flexible water delivery branch pipe, thereby realizing the recovery of the drip irrigation belt.
[0037] 3. In the utility model, after the farmer has recovered the drip irrigation tape, he can hold the two holding handles and, under the action of the walking structure, the recovery main body can be freely moved in the oat grass planting area to rearrange the recovered drip irrigation tape.
[0038] Fourth, in the utility model, the recovery main body component can be moved in the planting area by the walking belt, and under the action of the walking belt, the recovery main body component will not sink into the soil in the planting area during the movement.
[0039] 5. In the utility model, the two ends of the walking belt are connected in the corresponding embedding grooves by clamping, so that the walking belt will not fall off during the movement, thereby improving the stability of the recovery device.
[0040] 6. In the utility model, the detachable supporting structure can make the recovery main structure always keep a stable state when recovering the drip irrigation tape.
[0041] 7. In the present invention, the detachable supporting structure can change the working state according to the actual situation, such as: the state of being recovered and the moving state after recovery.
[0042] 8. In the present invention, the support frame can be installed in the socket by plugging it into the socket, and the installation state of the support frame and the socket is plug-in installation, so it also has the function of convenient disassembly and assembly, wherein:
[0043] In a stationary state, the plug-in portion of the support frame is plugged into the plug-in seat, the support portion is arranged downward, and the end of the support portion can contact the ground of the planting area;
[0044] This is the static state of the recovery device. In the static state, the recovery device can support the recovery component through the contact between the support part and the ground, so that the recovery device can keep the body stable when recovering the drip irrigation tape;
[0045] In the mobile state, the plug-in portion of the support frame is plugged into the plug-in seat, the support portion is arranged upward, and the end of the support portion does not contact the ground of the planting area;
[0046] This is the moving state of the recovery device. In the moving state, the support part is arranged upward and does not contact the ground, thereby facilitating the overall movement of the recovery device.
[0047] 9. In the utility model, in order to enable the walking structure to move more smoothly in the soil of the planting area, arc-shaped scraper plates are fixedly installed at both ends of the bottom of the drip irrigation belt recovery trough. The two arc-shaped scraper plates are symmetrically arranged, and the scraping heads at the bottom ends of the arc-shaped scraper plates face the walking belt. There is a gap between the scraping heads at the bottom ends of the arc-shaped scraper plates and the walking belt. Under the action of the gap, the arc-shaped scraper plates can scrape off the soil adhering to the walking belt while avoiding the problem of wear of the walking belt caused by direct contact between the scraping heads and the walking belt.
[0048] 10. In the utility model, when the drip irrigation belt is pulled to the recovery disk assembly, the connection between the traction component and the drip irrigation belt is released, one end of the drip irrigation belt is clipped onto the recovery disk assembly, and the drip irrigation belt is rolled up through the recovery disk assembly.
[0049] 11. In the utility model, in the walking structure, no walking belt is used, so that the walking structure only includes an inverted U-shaped base fixedly installed at both ends of the bottom of the drip irrigation belt recovery groove, and a walking wheel installed on the corresponding inverted U-shaped base;
[0050] Wherein, an arc-shaped scraper blade is correspondingly installed on the outer side of each traveling wheel, the scraper head at the bottom end of each arc-shaped scraper blade faces the traveling wheel, and a gap is formed between the scraper head at the bottom end of each arc-shaped scraper blade and the traveling wheel, through which the wear problem of the traveling wheel caused by long-term friction between the scraper head of the arc-shaped scraper blade and the traveling wheel can be avoided;
[0051] The two walking wheels can also enable the recovery device to move freely in the oat grass planting area. At the same time, without using a walking belt, the use cost of the equipment can be reduced.
[0052] Therefore, the walking structure has two different usage modes, one mode is walking through the walking belt, and the other mode is walking only through two walking wheels. BRIEF DESCRIPTION OF THE DRAWINGS
[0053] Figure 1 It is a three-dimensional schematic diagram of the utility model cooperating with the drip irrigation belt;
[0054] Figure 2 It is a three-dimensional schematic diagram of the utility model;
[0055] Figure 3 For the utility model Figure 2 The enlarged three-dimensional schematic diagram of part A in the middle;
[0056] Figure 4 It is a three-dimensional schematic diagram of the utility model with four support frames disassembled;
[0057] Figure 5 A three-dimensional schematic diagram of the utility model in a moving state when viewed from above;
[0058] Figure 6 For the utility model Figure 5 The enlarged three-dimensional schematic diagram of the middle B part;
[0059] Figure 7 It is a three-dimensional schematic diagram of the drip irrigation belt recovery tank of the utility model;
[0060] Figure 8 It is an exploded schematic diagram of the detachable supporting structure of the utility model;
[0061] Fig. 9 It is a three-dimensional schematic diagram of the seventh embodiment of the utility model;
[0062] Fig.10 It is a three-dimensional schematic diagram of a self-locking clamp in the prior art;
[0063] Fig.11 It is a three-dimensional schematic diagram of the eighth embodiment of the utility model;
[0064] Fig.12 A three-dimensional schematic diagram of one viewing angle of the recovery tray assembly in the eighth embodiment of the present utility model;
[0065] Fig.13 It is a three-dimensional schematic diagram of the second viewing angle of the recovery tray assembly in the eighth embodiment of the present utility model;
[0066] Fig.14 It is a three-dimensional schematic diagram of the tenth embodiment of the utility model.
[0067] In the figure: 1. drip irrigation belt recovery groove; 101. through hole; 2. C-shaped bracket; 3. roller; 4. shaft A; 5. wire rope; 6. clamp; 7. fixing ear; 8. drip irrigation belt; 801. flexible water supply main pipe; 802. flexible water supply branch pipe; 9. inverted U-shaped base; 10. walking wheel; 1001. embedded groove; 11. walking belt; 12. shaft B; 13. socket; 14. support frame; 1401. socket; 1402. support part; 15. gripping handle; 16. arc-shaped scraper; 17. recovery plate assembly; 1701. recovery plate; 1702. shaft C; 1703. shaft seat; 1704. arc-shaped clamping plate; 1705. rotating plate; 1706. handle. DETAILED DESCRIPTION
[0068] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0069] Embodiment 1
[0070] Drip irrigation is a common irrigation method in modern agriculture and has now become the mainstream. Therefore, oat grass also needs to be irrigated with drip tapes during its growth process. In the drip irrigation method, water is transported by drip tapes.
[0071] Therefore, after the drip irrigation is completed, the drip irrigation tape needs to be recovered and collected for next use.
[0072] Furthermore, after the harvester has finished harvesting the oat grass in the planting area, the drip irrigation belt left in the original planting area needs to be recovered so as to be rearranged in the next oat grass planting area.
[0073] In order to solve the technical problem of drip irrigation belt recycling, the inventor has adopted the following technical solution, which is as follows:
[0074] like Figure 1-8 As shown, the utility model provides a technical solution:
[0075] An oat straw drip irrigation belt recovery device comprises a drip irrigation belt 8 arranged in an oat straw planting area, which is composed of a flexible water delivery main pipe 801 and two groups of flexible water delivery branch pipes 802 arranged on the flexible water delivery main pipe 801;
[0076] Each group of flexible water delivery branch pipes 802 is provided with a plurality of flexible water delivery branch pipes 802, and each group of flexible water delivery branch pipes 802 is evenly distributed in the length direction of the flexible water delivery main pipe 801;
[0077] Each flexible water delivery branch pipe 802 is connected to the inner cavity of the flexible water delivery main pipe 801;
[0078] Among them, one end of the flexible water delivery pipe 801 is the water inlet end, and the other end is the water outlet end; and it also includes:
[0079] A main recovery component capable of accommodating the drip irrigation tape 8, which is composed of a drip irrigation tape recovery tank 1, the cross section of the drip irrigation tape recovery tank 1 is U-shaped, and through holes 101 are opened on the opposite side walls at one end;
[0080] A traction structure capable of recovering the drip irrigation tape 8 is located in the inner cavity of the drip irrigation tape recovery tank 1, one end of which is mounted on the water inlet end of the flexible water delivery main pipe 801, and the other end of which passes outward from the through hole 101;
[0081] and rolling guide components, which are provided in two groups, and the two groups of rolling guide components are symmetrically installed on the end portion facing the drip irrigation belt 8;
[0082] When the traction structure is pulled, the drip irrigation belt 8 can move into the inner cavity of the drip irrigation belt recovery tank 1, and the two groups of flexible water delivery branches 802 on the flexible water delivery main pipe 801 can be folded by the two groups of rolling guide components.
[0083] In this embodiment, when it is necessary to recycle the drip irrigation belt 8 arranged in the oat grass planting area, one end of the traction component is installed on the drip irrigation belt 8, and the farmer in the planting area pulls the other end of the traction component to make the drip irrigation belt 8 move toward the direction of the drip irrigation belt recovery groove 1 until the flexible water supply main pipe 801 is in the inner cavity of the drip irrigation belt recovery groove 1. When the water inlet end of the flexible water supply main pipe 801 moves into the inner cavity of the drip irrigation belt recovery groove 1, the two sets of rolling guide components can fold the two sets of flexible water supply branch pipes 802 and make the two sets of flexible water supply branch pipes 802 in the inner cavity of the drip irrigation belt recovery groove 1 at the same time.
[0084] In this embodiment, the farmer can conveniently recycle the drip irrigation tape 8 arranged in the oat grass planting area through the above-mentioned operations.
[0085] Embodiment 2
[0086] like Figure 1-8 As shown, based on the first embodiment, the following improvements are made:
[0087] In order to optimize the traction component so that the traction component can pull the drip irrigation belt 8, in this embodiment, further, the traction structure includes two steel wire ropes 5 arranged in the inner cavity of the drip irrigation belt recovery groove 1, both ends of the steel wire rope 5 are free ends, and the two steel wire ropes 5 are installed with clamps 6 at the free ends facing the drip irrigation belt 8. When the drip irrigation belt 8 is recovered, the clamp 6 can be sleeved and installed at the water inlet end of the flexible water delivery main pipe 801;
[0088] The free ends of the two steel wires 5 away from the drip irrigation belt 8 are passed outward from the corresponding through holes 101 .
[0089] In this embodiment, a person is arranged at a free end of each steel wire rope 5 away from the drip irrigation belt 8, and two persons pull the steel wire rope 5 outward at the same time, and each steel wire rope 5 can slide in the corresponding through hole 101;
[0090] When the two steel wire ropes 5 are pulled outward at the same time, the clamp 6 can move toward the inner cavity of the drip irrigation belt recovery groove 1. During the movement, the clamp 6 can pull the drip irrigation belt 8, so that the drip irrigation belt 8 can move toward the inner cavity of the drip irrigation belt recovery groove 1.
[0091] In order to enable the clamp 6 to be firmly connected to the free ends of the two steel wire ropes 5, in the present embodiment, further, fixing ears 7 are symmetrically fixedly installed on the circumferential side wall of the clamp 6, and the free ends of the two steel wire ropes 5 facing the clamp 6 can be inserted and installed in the corresponding fixing ears 7, and after insertion, the free ends of the steel wire ropes 5 are welded and fixed to the fixing ears 7.
[0092] Among them, Fig.10 As shown, the clamp 6 is a self-locking clamp that can be purchased from the market.
[0093] Embodiment 3
[0094] like Figure 1-8 As shown, based on the first embodiment, the following improvements are made:
[0095] In order to optimize the two sets of rolling guide components, in this embodiment, further, the two sets of rolling guide components include a C-shaped bracket 2, and the two C-shaped brackets 2 are symmetrically fixedly installed on the end of the drip irrigation belt recovery groove 1 facing the drip irrigation belt 8;
[0096] A roller 3 is installed on each C-shaped bracket 2, and an axle rod A4 is movably installed between the roller 3 and the C-shaped bracket 2. The roller 3 can rotate through the axle rod A4. Under the action of the circular rotation of the roller 3, the flexible water branch pipe 802 can be folded inward without scratching the flexible water branch pipe 802, thereby realizing the recovery of the drip irrigation belt 8.
[0097] Embodiment 4
[0098] like Figure 1-8 As shown, based on the first embodiment, the following improvements are made:
[0099] In order to enable the recycling main body to move freely in the oat grass planting area so that the recycled drip irrigation belt 8 can be rearranged in the next planting area, in this embodiment, further, the drip irrigation belt recycling tank 1 is fixedly installed with a gripping handle 15 on the opposite side walls located at the through hole 101;
[0100] A walking structure is installed at the bottom of the drip irrigation belt recovery trough 1, which enables the drip irrigation belt recovery trough 1 to move in the planting area.
[0101] In this embodiment, after the farmer has recovered the drip irrigation tape 8, he or she can hold the two gripping handles 15 and, under the action of the walking structure, the recovered main body can be freely moved in the oat grass planting area to rearrange the recovered drip irrigation tape 8.
[0102] In order to optimize the walking structure, in this embodiment, further, the walking structure includes two inverted U-shaped bases 9, and the two inverted U-shaped bases 9 are symmetrically fixedly installed at both ends of the bottom of the drip irrigation belt recovery groove 1. A walking wheel 10 is installed in each inverted U-shaped base 9, and an axle rod B12 is movably installed between each set of inverted U-shaped bases 9 and the walking wheel 10, and the walking wheel 10 can be rotated through the axle rod B12;
[0103] A walking belt 11 is sleeved and installed between the two walking wheels 10 .
[0104] In this embodiment, the recovery main body component can be moved in the planting area through the walking belt 11, and under the action of the walking belt 11, the recovery main body component will not sink into the soil in the planting area during the movement.
[0105] In order to prevent the walking belt 11 from falling off, in the present embodiment, further, an embedding groove 1001 is provided on the circumferential side wall of each walking wheel 10 , and both ends of the walking belt 11 can be snap-fitted and installed in the corresponding embedding groove 1001 .
[0106] In this embodiment, the two ends of the walking belt 11 are snap-fitted into the corresponding embedding grooves 1001 , so that the walking belt 11 will not fall off during the movement, thereby improving the stability of the recovery device.
[0107] Embodiment 5
[0108] like Figure 1-8 As shown, it is improved on the basis of the fourth embodiment:
[0109] In order to prevent the recovery main structure from tipping over when the drip irrigation tape 8 is recovered, in the present embodiment, further, both ends of the opposite side walls of the drip irrigation tape recovery trough 1 are provided with detachable support structures.
[0110] In this embodiment, the detachable support structure can keep the recovery main structure in a stable state when the drip irrigation tape 8 is recovered.
[0111] In addition, the detachable support structure can change its working state according to actual conditions, such as the state when it is being recycled and the moving state after being recycled.
[0112] Embodiment 6
[0113] like Figure 1-8 As shown, it is improved on the basis of Example 5:
[0114] In order to optimize the detachable support structure, in this embodiment, further, the four groups of detachable support structures all include a plug-in socket 13, and the four plug-in sockets 13 are grouped in two, and each group of plug-in sockets 13 is respectively fixedly installed on both sides of the side wall of one side of the drip irrigation belt recovery tank 1;
[0115] A support frame 14 is inserted and installed in each socket 13 .
[0116] In this embodiment, the support frame 14 is plugged into the socket 13 to achieve a supporting function. Furthermore, the support frame 14 and the socket 13 are installed in a plug-in manner, so they are easy to assemble and disassemble.
[0117] In order to realize two use states of the detachable support component, in this embodiment, further, the cross section of the plug socket 13 is rectangular and hollow inside;
[0118] The support frame 14 is L-shaped, with a plug-in portion 1401 at one end and a support portion 1402 at the other end, wherein:
[0119] In a stationary state, the plug-in portion 1401 of the support frame 14 is plugged into the plug-in seat 13, the support portion 1402 is arranged downward, and the end of the support portion 1402 can contact the ground of the planting area;
[0120] In the present embodiment, this is the static state of the recovery device. In the static state, the recovery device can support the recovery component through the contact between the support part and the ground, so that the recovery device can keep the body stable when recovering the drip irrigation tape.
[0121] When in the mobile state, the plug-in portion 1401 of the support frame 14 is plugged and installed in the plug-in seat 13, the support portion 1402 is arranged upward, and the end of the support portion 1402 does not contact the ground of the planting area.
[0122] In the present embodiment, this is the moving state of the recovery device. In the moving state, the support part is arranged upward and does not contact the ground, thereby facilitating the overall movement of the recovery device.
[0123] Embodiment 7
[0124] like Fig. 9 As shown, it is improved on the basis of the fourth embodiment:
[0125] In order to enable the walking structure to move more smoothly in the soil of the planting area, in the present embodiment, arc-shaped scraper plates 16 are fixedly installed at both ends of the bottom of the drip irrigation belt recovery trough 1, and the two arc-shaped scraper plates 16 are symmetrically arranged, and the bottom scraping heads of the arc-shaped scraper plates 16 face the walking belt 11, and there is a gap between the bottom scraping heads of the arc-shaped scraper plates 16 and the walking belt 11. Under the action of the gap, the arc-shaped scraper plates 16 can scrape off the soil adhered to the walking belt 11 while avoiding the problem of wear of the walking belt 11 caused by direct contact between the scraper heads and the walking belt 11.
[0126] Embodiment 8
[0127] like Figure 11-13 As shown, based on the second embodiment, the following improvements are made:
[0128] In this embodiment, further, a recovery disk assembly 17 capable of rolling up the drip irrigation tape 8 is installed on the upper part of the drip irrigation tape recovery trough 1 on the side away from the drip irrigation tape 8 .
[0129] When the drip irrigation belt 8 is pulled to the recovery disk assembly 17, the connection between the traction component and the drip irrigation belt 8 is released, and one end of the drip irrigation belt 8 is clipped onto the recovery disk assembly 17, and the drip irrigation belt 8 is rolled up through the recovery disk assembly 17.
[0130] Embodiment 9
[0131] like Figure 11-13 As shown, based on the eighth embodiment, the following improvements are made:
[0132] In this embodiment, further, the recovery plate assembly 17 includes a recovery plate 1701, which is arranged on the upper part of the drip irrigation belt recovery groove 1 and away from the drip irrigation belt 8. The central part of the side walls on both sides of the recovery plate 1701 is integrally formed with a shaft C1702, and each shaft C1702 is movably mounted with a shaft seat 1703, and each shaft seat 1703 is respectively fixedly mounted on the top two ends of the drip irrigation belt recovery groove 1;
[0133] The recovery tray 1701 has a groove capable of accommodating the drip irrigation belt 8, and an arc-shaped clamping plate 1704 capable of clamping the drip irrigation belt 8 is fixedly installed in the groove;
[0134] A rotating disk 1705 is fixedly mounted on one of the shafts C1702 , and a handle 1706 is fixedly mounted on the edge of the outer wall of the rotating disk 1705 .
[0135] When the drip irrigation belt 8 is pulled to the recovery disk assembly 17 by the traction component, the farmer releases the locking relationship between the traction component and the drip irrigation belt 8. At this time, one end of the flexible water supply pipe 801 is clamped into the arc-shaped clamping plate 1704, and the handle 1706 is rotated to drive the rotation of the rotating disk 1705. While the rotating disk 1705 is rotating, it can drive the rotation of the recovery disk 1701. Under the rotation of the recovery disk 1701, the drip irrigation belt 8 can be rolled up into the groove of the recovery disk 1701.
[0136] Embodiment 10
[0137] like Fig.14 As shown, the difference from the seventh embodiment is that:
[0138] In this embodiment, further, in the walking structure, the walking belt 11 is not used, so that the walking structure only includes an inverted U-shaped base 9 fixedly installed at both ends of the bottom of the drip irrigation belt recovery trough 1, and a walking wheel 10 installed on the corresponding inverted U-shaped base 9.
[0139] Each running wheel 10 is in the shape of a roller.
[0140] Among them, an arc-shaped scraper blade 16 is correspondingly installed on the outer side of each traveling wheel 10, and the bottom scraper head of each arc-shaped scraper blade 16 faces the traveling wheel 10, and a gap is formed between the bottom scraper head of each arc-shaped scraper blade 16 and the traveling wheel 10. Through the gap, the wear problem of the traveling wheel 10 caused by long-term friction between the scraper head of the arc-shaped scraper blade 16 and the traveling wheel 10 can be avoided.
[0141] The two traveling wheels 10 can also enable the recovery device to move freely in the oat grass planting area. At the same time, without using the traveling belt 11, the use cost of the equipment can be reduced.
[0142] Therefore, the walking structure has two different usage modes, one mode is walking through the walking belt 11 , and the other mode is walking only through the two walking wheels 10 .
[0143] In summary, the working process of the utility model is as follows: when the drip irrigation belt 8 arranged in the oat grass planting area needs to be recovered, one end of the traction component is installed on the drip irrigation belt 8, and the farmer in the planting area pulls the other end of the traction component to make the drip irrigation belt 8 move toward the direction of the drip irrigation belt recovery groove 1 until the flexible water supply main pipe 801 is in the inner cavity of the drip irrigation belt recovery groove 1. When the water inlet end of the flexible water supply main pipe 801 moves into the inner cavity of the drip irrigation belt recovery groove 1, the two sets of rolling guide components can fold the two sets of flexible water supply branch pipes 802 and make the two sets of flexible water supply branch pipes 802 in the inner cavity of the drip irrigation belt recovery groove 1 at the same time.
[0144] Through the above operations, farmers can conveniently recycle the drip irrigation belt 8 arranged in the oat grass planting area.
[0145] A person is arranged at a free end of each steel wire rope 5 away from the drip irrigation belt 8, and two persons pull the steel wire rope 5 outward at the same time, and each steel wire rope 5 can slide in the corresponding through hole 101.
[0146] When the two steel wires 5 are pulled outward at the same time, the clamp 6 can move toward the inner cavity of the drip irrigation belt recovery groove 1, and the clamp 6 can pull the drip irrigation belt 8 during the movement, so that the drip irrigation belt 8 can move toward the inner cavity of the drip irrigation belt recovery groove 1;
[0147] Under the action of the circular rotation of the roller 3, the flexible water delivery branch pipe 802 can be folded inward without scratching the flexible water delivery branch pipe 802, thereby realizing the recovery of the drip irrigation belt 8;
[0148] After the farmer has finished recycling the drip irrigation tape 8, by holding the two gripping handles 15, the farmer can freely move the recycling main body in the oat grass planting area under the action of the walking structure, so as to rearrange the recycled drip irrigation tape 8;
[0149] The recovery main body can be moved in the planting area through the walking belt 11, and under the action of the walking belt 11, the recovery main body will not sink into the soil in the planting area during the movement;
[0150] The two ends of the walking belt 11 are clamped in the corresponding embedding grooves 1001, so that the walking belt 11 will not fall off during the movement, thereby improving the stability of the recovery device;
[0151] The detachable support structure enables the main recovery structure to always maintain a stable state when recovering the drip irrigation tape 8;
[0152] The detachable support structure can change its working state according to the actual situation, such as the state when it is being recycled and the moving state after being recycled;
[0153] By plugging the support frame 14 into the socket 13, the support frame 14 can achieve the supporting function, and the installation state of the support frame 14 and the socket 13 is plug-in installation, so it also has the function of convenient disassembly and assembly;
[0154] In a stationary state, the plug-in portion 1401 of the support frame 14 is plugged into the plug-in seat 13, the support portion 1402 is arranged downward, and the end of the support portion 1402 can contact the ground of the planting area;
[0155] This is the static state of the recovery device. In the static state, the recovery device can support the recovery component through the contact between the support part and the ground, so that the recovery device can keep the body stable when recovering the drip irrigation tape;
[0156] When in the mobile state, the plug-in portion 1401 of the support frame 14 is plugged into the plug-in seat 13, the support portion 1402 is arranged upward, and the end of the support portion 1402 does not contact the ground of the planting area;
[0157] This is the moving state of the recovery device. In the moving state, the support part is arranged upward and does not contact the ground, thereby facilitating the overall movement of the recovery device.
[0158] In order to enable the walking structure to move more smoothly in the soil of the planting area, in the present embodiment, arc-shaped scraper plates 16 are fixedly installed at both ends of the bottom of the drip irrigation belt recovery trough 1, and the two arc-shaped scraper plates 16 are symmetrically arranged, and the bottom scraping heads of the arc-shaped scraper plates 16 face the walking belt 11, and there is a gap between the bottom scraping heads of the arc-shaped scraper plates 16 and the walking belt 11. Under the action of the gap, the arc-shaped scraper plates 16 can scrape off the soil adhered to the walking belt 11 while avoiding the problem of wear of the walking belt 11 caused by direct contact between the scraper heads and the walking belt 11.
[0159] When the drip irrigation belt 8 is pulled to the recovery disk assembly 17, the connection between the traction component and the drip irrigation belt 8 is released, and one end of the drip irrigation belt 8 is clipped onto the recovery disk assembly 17, and the drip irrigation belt 8 is rolled up through the recovery disk assembly 17.
[0160] Specifically, when the drip irrigation belt 8 is pulled to the recovery disk assembly 17 by the traction component, the farmer releases the locking relationship between the traction component and the drip irrigation belt 8. At this time, one end of the flexible water supply pipe 801 is clamped into the arc-shaped clamping plate 1704, and the handle 1706 is rotated to drive the rotation of the rotating disk 1705. While the rotating disk 1705 is rotating, it can drive the rotation of the recovery disk 1701. Under the rotation of the recovery disk 1701, the drip irrigation belt 8 can be rolled up into the groove of the recovery disk 1701.
[0161] In the walking structure, the walking belt 11 is not used, so that the walking structure only includes the inverted U-shaped bases 9 fixedly installed at both ends of the bottom of the drip irrigation belt recovery trough 1, and the walking wheels 10 installed on the corresponding inverted U-shaped bases 9.
[0162] The two traveling wheels 10 can also enable the recovery device to move freely in the oat grass planting area. At the same time, without using the traveling belt 11, the use cost of the equipment can be reduced.
[0163] Therefore, the walking structure has two different usage modes, one mode is walking through the walking belt 11 , and the other mode is walking only through the two walking wheels 10 .
[0164] The above different embodiments can be combined, replaced and used in conjunction with each other.
[0165] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0166] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An oat straw drip irrigation belt recovery device, comprising a drip irrigation belt (8) arranged in an oat straw planting area, characterized in that: Also includes: A recovery main body component capable of accommodating a drip irrigation tape (8), which is composed of a drip irrigation tape recovery trough (1), wherein the cross section of the drip irrigation tape recovery trough (1) is U-shaped, and through holes (101) are provided on opposite side walls at one end thereof; A traction structure capable of recovering the drip irrigation tape (8), which is located in the inner cavity of the drip irrigation tape recovery tank (1), one end of which is mounted on the water inlet end of the flexible water delivery main pipe (801), and the other end of which passes outward from the through hole (101); and Rolling guide components, which are provided in two groups, and the two groups of rolling guide components are symmetrically mounted on the end portion of the drip irrigation belt (8) on the side facing the drip irrigation belt (8); When the traction structure is pulled, the drip irrigation belt (8) can move into the inner cavity of the drip irrigation belt recovery tank (1), and the two groups of flexible water delivery branch pipes (802) on the flexible water delivery main pipe (801) can be folded by the two groups of rolling guide components.
2. The oat straw drip irrigation belt recovery device according to claim 1, characterized in that: The traction structure comprises two steel wires (5) arranged in the inner cavity of the drip irrigation tape recovery groove (1), both ends of the steel wires (5) are free ends, and the two steel wires (5) are both installed with clamps (6) at the free ends facing the drip irrigation tape (8), and when the drip irrigation tape (8) is recovered, the clamps (6) can be sleeved and installed at the water inlet end of the flexible water supply main pipe (801); The free ends of the two steel wires (5) away from the drip irrigation belt (8) are passed outwards through corresponding through holes (101).
3. The oat straw drip irrigation belt recovery device according to claim 2, characterized in that: The circumferential side wall of the clamp (6) is symmetrically fixed with fixing ears (7), and the free ends of the two steel wires (5) facing the clamp (6) can be plugged into the corresponding fixing ears (7), and after plugging, the free ends of the steel wires (5) are fixed to the fixing ears (7) by welding.
4. The oat straw drip irrigation belt recovery device according to claim 1, characterized in that: The two groups of rolling guide components each comprise a C-shaped bracket (2), and the two C-shaped brackets (2) are symmetrically fixedly mounted on the end of the drip irrigation belt recovery trough (1) on the side facing the drip irrigation belt (8); A roller (3) is mounted on each of the C-shaped brackets (2), and an axle rod A (4) is movably mounted between the roller (3) and the C-shaped bracket (2), and the roller (3) can be rotated via the axle rod A (4).
5. The oat straw drip irrigation belt recovery device according to claim 1, characterized in that: The drip irrigation tape recovery trough (1) is provided with holding handles (15) fixedly mounted on opposite side walls located at the through hole (101); A walking structure capable of enabling the drip irrigation belt recovery trough (1) to move within the planting area is installed at the bottom of the drip irrigation belt recovery trough (1).
6. The oat straw drip irrigation belt recovery device according to claim 5, characterized in that: The walking structure comprises two inverted U-shaped bases (9), the two inverted U-shaped bases (9) are symmetrically fixedly mounted at the two ends of the bottom of the drip irrigation belt recovery trough (1), each of the inverted U-shaped bases (9) is equipped with a walking wheel (10), and a shaft rod B (12) is movably mounted between each set of the inverted U-shaped bases (9) and the walking wheels (10), and the walking wheels (10) can be rotated via the shaft rod B (12); A walking belt (11) is sleeved and installed between the two walking wheels (10).
7. The oat straw drip irrigation belt recovery device according to claim 6, characterized in that: An embedding groove (1001) is provided on the circumferential side wall of each of the traveling wheels (10), and both ends of the traveling belt (11) can be snap-fitted and installed in the corresponding embedding groove (1001).
8. The oat straw drip irrigation belt recovery device according to claim 5, characterized in that: Both ends of the opposite side walls of the drip irrigation tape recovery trough (1) are equipped with detachable support structures.
9. The oat straw drip irrigation belt recovery device according to claim 8, characterized in that: The four groups of detachable support structures all include a plug-in seat (13), the four plug-in seats (13) are grouped in two, and each group of the plug-in seats (13) is respectively fixedly mounted on both sides of the side wall of one side of the drip irrigation belt recovery tank (1); A support frame (14) is plugged and installed in each of the plug sockets (13).
10. The oat straw drip irrigation belt recovery device according to claim 9, characterized in that: The plug socket (13) has a rectangular cross-section and is hollow inside; The support frame (14) is L-shaped, with one end having a plug-in portion (1401) and the other end having a support portion (1402), wherein: In a stationary state, the plug-in portion (1401) of the support frame (14) is plugged into the plug-in seat (13), the support portion (1402) is arranged downward, and the end of the support portion (1402) is able to contact the ground in the planting area; When in the mobile state, the plug-in portion (1401) of the support frame (14) is plugged and installed in the plug-in seat (13), the support portion (1402) is arranged upward, and the end of the support portion (1402) does not contact the ground of the planting area.