Agricultural irrigation water diversion device
By introducing manually operated linkages and cylinder assemblies into agricultural irrigation devices, combined with the design of water storage tanks, the problems of existing devices being unable to operate in areas without electricity and lacking water storage functions have been solved, enabling efficient and convenient water extraction in remote areas without electricity.
Patent Information
- Application Number
- CN202520217378.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-12
AI Technical Summary
Existing agricultural irrigation devices cannot operate normally in areas without electricity and do not have water storage functions, resulting in a cumbersome water collection process, increased costs, and poor convenience, failing to meet the water collection needs and expectations for efficient and convenient water collection in remote, electricity-free areas.
An agricultural irrigation water supply device was designed, comprising a hand pump well body and a movable water storage tank. Water can be drawn without electricity by manually operating the connecting rod and cylinder assembly. It can also be connected to the water storage tank through a connecting pipe to achieve a self-contained water storage function, ensuring normal operation and efficient and convenient water extraction even in areas without electricity.
It has made manual water collection feasible in areas without electricity, solved the problems of cumbersome water collection process and increased costs, met the water collection needs of remote areas without electricity, and improved the convenience and efficiency of water collection.
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Figure CN223723826U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to agricultural irrigation equipment technical field, concretely is a kind of agricultural irrigation water diversion device. BACKGROUND
[0002] In the field of agricultural irrigation, the effective acquisition and utilization of water resources are crucial. Traditional water well as a common water tool can guide underground water to the ground.
[0003] After a large amount of retrieval, the publication number CN220133003U discloses a water-saving water well device, which relates to the technical field of water well, comprising a triangular support seat, a fixed cylinder is fixed above the triangular support seat, a drive motor is arranged on one side of the fixed cylinder, a reciprocating screw rod is connected above the drive motor, a screw nut sliding block is connected to the outer wall of the reciprocating screw rod, a water outlet pipe is connected to the side surface of the fixed cylinder, a fixed rod is connected inside the screw nut sliding block, a connecting seat is fixedly installed at one end of the fixed rod, and a piston is fixed below the connecting seat.
[0004] The device in the prior art, by means of the coordinated operation of the drive motor, the piston and the water outlet pipe, the drive motor can drive the piston to move, and then the water in the fixed cylinder is pressed out through the water outlet pipe, and the purpose of automatic water taking is achieved. This design improves the convenience of water taking to some extent, and eliminates the traditional laborious water taking method.
[0005] However, the device has obvious limitations. On the one hand, it highly depends on the drive motor to realize its function, and once it is in an area without power supply, the device cannot operate normally, which greatly limits its application range and cannot meet the water taking needs in remote areas without electricity. On the other hand, the device itself does not have a water storage function, which means that the user must carry an additional water source for water diversion every time. This process is not only cumbersome, but also increases the use cost, resulting in a big discount in the convenience of the device in actual use, and it is difficult to meet people's expectations for efficient and convenient water taking. Therefore, a kind of agricultural irrigation water diversion device is proposed to solve the above problems. SUMMARY
[0006] The utility model aims at providing a kind of agricultural irrigation water diversion device, with the advantages of no need for external power supply and self-storage function, solve the problem that the device depends on drive motor and cannot operate normally in no electricity area, and the water taking process is complicated, cost increases, and the convenience is poor without water storage function, cannot meet the water taking needs in remote areas without electricity and people's expectations for efficient and convenient water taking.
[0007] To achieve the above object, the utility model provides the following technical scheme: an agricultural irrigation water diversion device, including the pressure water well body, the movable plug -in of the pressure water well body is equipped with the water storage tank, is equipped with the limit support in the hole of water storage tank top and is equipped with the limit support, the back surface of pressure water well body is equipped with the water taking component of welding installation, the pressure water well body includes the barrel, the first communicating pipe is installed in the middle hole of barrel front end and is connected, the second communicating pipe is installed in the hole of barrel one side top and is connected, the water outlet end of second communicating pipe and the installation position of limit support on water storage tank top match;
[0008] The water taking component includes a frame, a connecting rod is rotatably installed on the frame, a connecting rod is movably installed on the front end of the connecting rod, a cylinder body is movably installed on the rear end of the connecting rod, and the cylinder body is fixedly connected to the frame by mounting bolts;
[0009] The rear end of the connecting rod is welded with a screw rod, the rear end of the connecting rod is fixedly installed with a holding rod through the screw rod, and the holding rod is sleeved with an anti-skid sleeve.
[0010] Preferably, the bottom of the barrel is fixedly installed with a rubber one-way valve through a flange, the bottom of the rubber one-way valve is connected with a water taking pipe, and the bottom end of the water taking pipe extends into the ditch water body and is provided with a filter screen.
[0011] In the design, the rubber one-way valve is fixedly installed at the bottom of the barrel through a flange, and the water taking pipe with a filter screen is connected at the bottom of the rubber one-way valve, which realizes effective filtration of impurities in the ditch water, prevents impurities from entering the device and affecting normal operation, ensures stable installation of the rubber one-way valve, and guarantees one-way flow of water flow during water taking, and stably and reliably takes water from the ditch.
[0012] Preferably, a placing plate is welded on the barrel on the side opposite to the first communicating pipe at the top of the water storage tank, and the water storage tank is movably placed outside the barrel through the placing plate.
[0013] In the design, the placing plate is welded on the barrel on the side opposite to the first communicating pipe at the top of the water storage tank, and the water storage tank is movably placed outside the barrel through the placing plate, which realizes convenient installation of the water storage tank, facilitates disassembly and maintenance, reasonably utilizes space, and guarantees cooperative operation of water taking and water storage functions.
[0014] Preferably, the frame is welded and installed on the back of the barrel, and a rotating shaft passes through the slot of the frame.
[0015] In the design, the frame is welded and installed on the back of the barrel, and a rotating shaft passes through the slot of the frame, which realizes stable connection of the frame and the barrel, provides stable support for rotation of the connecting rod and other components, and ensures stable operation of the water taking component.
[0016] Preferably, the connecting rod front end is provided with a first reserved slot, the first reserved slot is provided with a bolt, the connecting rod top is slidably installed along the first reserved slot through the bolt, the connecting rod middle is provided with an installation hole, the rotating shaft passes through the installation hole, the connecting rod rear end is provided with a second reserved slot, the second reserved slot is provided with a bolt, and the cylinder body top is slidably installed along the second reserved slot through the bolt.
[0017] In the design, the first reserved slot is arranged at the connecting rod front end, the installation hole is arranged at the connecting rod middle, the second reserved slot is arranged at the connecting rod rear end, and the connecting rod, the rotating shaft and the cylinder body are connected through the bolts respectively, so that the connection between the components is flexible, the movement is coordinated, and smooth water taking action conversion can be realized according to different power sources.
[0018] Preferably, the connecting rod bottom is fixedly provided with a piston head, and the piston head is slidably installed in the cylinder body.
[0019] In the design, the piston head is fixedly arranged at the connecting rod bottom and slidably arranged in the cylinder body, so that the pressure in the cylinder body is changed through the up-down movement of the piston head, the ditch water is effectively extracted, and the smooth water taking process is ensured.
[0020] Compared with the prior art, the utility model has the advantages that:
[0021] 1、The utility model discloses a connecting rod rear end welded screw rod and installation holding rod are arranged in the water taking assembly, and the flexible connection mode of components makes the operator hold the antiskid sleeve on the holding rod, drives the connecting rod to rotate around the rotating shaft through the back and forth pulling of the holding rod, and then makes the connecting rod move up and down in the vertical direction, realizes manual water taking, solves the problem that the existing device cannot normally operate in the no electricity area due to the dependence of the driving motor, and meets the water taking demand of the remote no electricity area.
[0022] The utility model discloses a connecting rod rear end welded screw rod and installation holding rod are arranged in the water taking assembly, and the flexible connection mode of components makes the operator hold the antiskid sleeve on the holding rod, drives the connecting rod to rotate around the rotating shaft through the back and forth pulling of the holding rod, and then makes the connecting rod move up and down in the vertical direction, realizes manual water taking, solves the problem that the existing device cannot normally operate in the no electricity area due to the dependence of the driving motor, and meets the water taking demand of the remote no electricity area. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is main view structure schematic diagram of the utility model;
[0024] Figure 2The utility model discloses a water well body structure schematic diagram;
[0025] Figure 3 The utility model discloses a water taking assembly structure schematic diagram;
[0026] Figure 4 The utility model discloses a connecting rod structure schematic diagram.
[0027] In the drawing: 1, water well body, 11, barrel, 12, rubber one-way valve, 13, first communication pipe, 14, second communication pipe, 2, water taking assembly, 21, frame, 211, pivot, 22, connecting rod, 221, first reserved groove, 222, mounting hole, 223, second reserved groove, 224, screw rod, 23, connecting rod, 24, piston head, 25, holding rod, 251, antiskid sleeve, 26, cylinder body, 3, water storage tank, 31, limiting frame. DETAILED DESCRIPTION
[0028] The technical scheme in the embodiments of the utility model will be apparently and completely described below with the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative work belong to the range of the utility model protection.
[0029] Embodiment one
[0030] As Figure 1 , Figure 2 , Figure 3 and Figure 4 indicated, an embodiment provided by the utility model: a kind of agricultural irrigation water diversion device, including water well body 1, water well body 1 is movably inserted with water storage tank 3, hole is set in water storage tank 3 and hole is equipped with limiting frame 31, water well body 1 back is welded with water taking assembly 2, water well body 1 includes barrel 11, barrel 11 front end middle hole and be connected with first communication pipe 13, barrel 11 one side upper hole and be connected with second communication pipe 14, the water outlet end of second communication pipe 14 and the installation position of the limiting frame 31 on water storage tank 3 match;
[0031] Water taking assembly 2 includes frame 21, frame 21 is slotted and rotatably installed with connecting rod 22, connecting rod 22 front end movably installs with connecting rod 23, connecting rod 22 rear end movably installs with cylinder body 26, cylinder body 26 bottom and frame 21 are fixedly connected by mounting bolt;
[0032] Connecting rod 22 rear end is welded with screw rod 224, connecting rod 22 rear end is fixedly installed with holding rod 25 by screw rod 224, holding rod 25 is sleeved with antiskid sleeve 251.
[0033] Specifically, by welding the screw 224 at the rear end of the connecting rod 22 and installing the holding rod 25, and connecting the connecting rod 22 at the front end through the bolt in the first reserved slot 221 and the connecting rod 23, at the middle through the mounting hole 222 and the rotating shaft 211, and at the rear end through the bolt in the second reserved slot 223 and the cylinder body 26, the flexible connection mode enables the operator to hold the anti-skid sleeve 251 on the holding rod 25 to rotate the connecting rod 22 around the rotating shaft 211 by pulling the holding rod 25 back and forth, thereby making the connecting rod 23 move up and down in the vertical direction, realizing manual water taking, solving the problem that the existing device cannot normally operate in areas without electricity due to the dependence on the driving motor, and meeting the water taking demand in remote areas without electricity.
[0034] By movably inserting the water storage tank 3 on the water well body 1, and opening the hole in the front end of the cylinder 11 to communicate with the first communication pipe 13, and opening the hole on one side to communicate with the second communication pipe 14, and matching the installation position of the second communication pipe 14 with the limiting frame 31 on the water storage tank 3, during water taking, part of the squeezed water enters the water storage tank 3 through the first communication pipe 13, realizing the self-water storage function. It solves the problem that the existing device does not have the water storage function, which makes the water taking process complicated, increases the cost, and is poor in convenience, meets people's expectation of efficient and convenient water taking. Before the next water taking, the water in the water storage tank 3 can be directly poured into the cylinder 11 for water diversion, without the need to carry additional water source for water diversion, greatly improving the convenience of water taking.
[0035] Embodiment Two
[0036] In order to realize stable and reliable water taking and ensure water quality, as shown in Figure 2 , Figure 3 and Figure 4 , in this embodiment, the rubber check valve 12 is fixedly installed at the bottom of the cylinder 11 through the flange, the water taking pipe is installed at the bottom of the rubber check valve 12 in communication, the bottom end of the water taking pipe extends into the ditch water body and is provided with a filter screen.
[0037] In the design, the rubber check valve 12 is fixedly installed at the bottom of the cylinder 11 through the flange, and the water taking pipe with a filter screen is installed at the bottom in communication, which realizes effective filtration of impurities in the ditch water, prevents impurities from entering the device to affect normal operation, and at the same time ensures the stable installation of the rubber check valve 12, ensures the one-way flow of water flow during water taking, and stably and reliably takes water from the ditch.
[0038] Further, a placing plate is welded on the cylinder 11 on the side opposite to the first communication pipe 13 at the top of the water storage tank 3, and the water storage tank 3 is movably placed outside the cylinder 11 through the placing plate.
[0039] In the design, the water storage tank 3 is placed on the outside of the cylinder body 11 through the placement plate welded on the cylinder body 11 on the side opposite to the first communication pipe 13 at the top of the water storage tank 3, so that the water storage tank 3 is convenient to install, disassemble and maintain, space can be reasonably utilized, and the cooperation of the water taking and water storage functions is ensured.
[0040] Further, the bracket body 21 is welded and installed on the back of the cylinder body 11, and the rotating shaft 211 passes through the slotted portion of the bracket body 21.
[0041] In the design, the bracket body 21 is welded and installed on the back of the cylinder body 11, and the rotating shaft 211 passes through the slotted portion of the bracket body 21, so that the bracket body 21 is stably connected with the cylinder body 11, stable support is provided for the rotation of the connecting rod 22 and other components, and stable operation of the water taking assembly is ensured.
[0042] Further, the first reserved slot 221 is formed in the front end of the connecting rod 22, the bolt passes through the first reserved slot 221, the connecting rod 23 is slidably installed on the top of the connecting rod 22 through the bolt along the first reserved slot 221, the installation hole 222 is formed in the middle of the connecting rod 22, the rotating shaft 211 passes through the installation hole 222, the second reserved slot 223 is formed in the rear end of the connecting rod 22, the bolt passes through the second reserved slot 223, and the top of the cylinder body 26 is slidably installed along the second reserved slot 223 through the bolt.
[0043] In the design, the first reserved slot 221 is formed in the front end of the connecting rod 22, the installation hole 222 is formed in the middle of the connecting rod 22, the second reserved slot 223 is formed in the rear end of the connecting rod 22, and the connecting rod 23, the rotating shaft 211 and the cylinder body 26 are connected through the bolts respectively, so that the connection between the components is flexible, the movement is coordinated, and smooth water taking action conversion can be realized according to different power sources.
[0044] Further, the piston head 24 is fixedly installed on the bottom of the connecting rod 23 and slidably installed in the cylinder body 11.
[0045] In the design, the piston head 24 is fixedly installed on the bottom of the connecting rod 23 and slidably installed in the cylinder body 11, so that the pressure in the cylinder body 11 is changed through the up-down movement of the piston head 24, the ditch water is effectively extracted, and the water taking process is ensured to be carried out smoothly.
[0046] When the utility model is used, the bottom end of the water taking pipe is stretched into the ditch water body, the filter screen on the water taking pipe is completely immersed in water, the position is stable, water can be effectively taken, whether the water storage tank 3 is correctly placed on the placement plate outside the cylinder body 11 is checked, the position of the water storage tank 3 matches the water outlet end of the second communication pipe 14, and the limiting frame 31 is firmly installed.
[0047] When there is power, the water in the water storage tank 3 is poured into the cylinder body 11 for water diversion. The cylinder body 26 is started, and the telescopic cylinder body 26 drives the connecting rod 22 to rotate around the rotating shaft 211. Since the front end of the connecting rod 22 is connected with the connecting rod 23 through the plug in the first reserved slot 221, the rotation of the connecting rod 22 drives the connecting rod 23 to move up and down in the vertical direction. The piston head 24 at the bottom of the connecting rod 23 slides in the cylinder body 11 along with the up and down movement of the connecting rod 23. When the piston head 24 moves upward, the pressure in the cylinder body 11 decreases, the rubber one-way valve 12 opens, and the ditch water enters the cylinder body 11 under the action of atmospheric pressure through the water taking pipe; when the piston head 24 moves downward, the pressure in the cylinder body 11 increases, the rubber one-way valve 12 closes, and the water is squeezed. Part of the squeezed water enters the water storage tank 3 through the first communication pipe 13. During the water taking process, the water level in the water storage tank 3 is continuously observed, and when the water level in the water storage tank 3 is lower than a certain value, the water storage tank 3 is continuously replenished through the first communication pipe 13, so that the water storage tank 3 always has sufficient water, facilitating the next water taking operation. Another part of the water enters the water storage tank 3 through the second communication pipe 14.
[0048] When there is no power, the plug connecting the cylinder body 26 and the connecting rod 22 in the second reserved slot 223 is pulled out, so that the cylinder body 26 is separated from the connecting rod 22. The water in the water storage tank 3 is poured into the cylinder body 11 for water diversion. The operator holds the anti-skid sleeve 251 on the holding rod 25, and rotates the holding rod 25 back and forth to drive the connecting rod 22 to rotate around the rotating shaft 211, so that the connecting rod 23 moves up and down in the vertical direction, realizing manual water taking. During the subsequent piston water taking process, the water storage tank 3 is replenished through the second communication pipe 14, so that the water storage tank 3 has sufficient water reserve.
[0049] The operator can adjust the frequency and strength of pulling the holding rod 25 according to the actual situation. Before the next water taking, the water in the water storage tank 3 is still injected into the cylinder body 11 to realize water diversion operation.
[0050] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and can be realized in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. An agricultural irrigation water diversion device, comprising a water pressure well body (1), a water storage tank (3) movably installed on the water pressure well body (1), a hole is formed on the water storage tank (3) and a limiting frame (31) is arranged at the hole, and a water taking assembly (2) is welded and installed on the back of the water pressure well body (1), characterized in that: the water pressure well body (1) comprises a cylinder body (11), a first communicating pipe (13) is communicated and installed on the front end of the cylinder body (11), a second communicating pipe (14) is communicated and installed on the upper side of the cylinder body (11), and the water outlet end of the second communicating pipe (14) is matched with the installation position of the limiting frame (31) on the water storage tank (3); the water taking assembly (2) comprises a frame body (21), a connecting rod (22) is rotatably installed on the frame body (21), a connecting rod (23) is movably installed on the front end of the connecting rod (22), and a cylinder body (26) is movably installed on the rear end of the connecting rod (22); the bottom of the cylinder body (26) is fixedly connected with the frame body (21) through mounting bolts; a screw rod (224) is welded and installed on the rear end of the connecting rod (22), a holding rod (25) is fixedly installed on the rear end of the connecting rod (22) through the screw rod (224), and an antiskid sleeve (251) is sleeved on the holding rod (25).
2. A water diversion device for agricultural irrigation according to claim 1, wherein, a rubber one-way valve (12) is fixedly installed on the bottom of the cylinder body (11) through a flange, a water taking pipe is communicated and installed on the bottom of the rubber one-way valve (12), and the bottom end of the water taking pipe extends into the ditch water body and is provided with a filter screen.
3. A water diversion device for agricultural irrigation according to claim 1, wherein, a placing plate is welded on the cylinder body (11) on the side opposite to the first communicating pipe (13) and relative to the water storage tank (3), and the water storage tank (3) is movably placed outside the cylinder body (11) through the placing plate.
4. A water diversion device for agricultural irrigation according to claim 1, wherein, the frame body (21) is welded and installed on the back of the cylinder body (11), and a rotating shaft (211) penetrates through the slot of the frame body (21).
5. A water diversion device for agricultural irrigation according to claim 1, wherein, a first reserved slot (221) is formed on the front end of the connecting rod (22), a bolt penetrates through the first reserved slot (221), the connecting rod (23) is slidably installed on the top of the first reserved slot (221) through the bolt, an installation hole (222) is formed in the middle of the connecting rod (22), the rotating shaft (211) penetrates through the installation hole (222), a second reserved slot (223) is formed on the rear end of the connecting rod (22), a bolt penetrates through the second reserved slot (223), and the top of the cylinder body (26) slides along the second reserved slot (223) through the bolt.
6. A water diversion device for agricultural irrigation according to claim 1, wherein, a piston head (24) is fixedly installed on the bottom of the connecting rod (23), and the piston head (24) is slidably installed in the cylinder body (11).
Citation Information
Patent Citations
Labor-saving water taking device for pressurized-water well
CN220133003U