An automatic water storage and sprinkler irrigation device for landscape gardening

By designing a coordinated processing structure in the automatic water storage and sprinkler irrigation device in the landscape garden, including the flow detection unit and the cleaning unit, the problems of manual judgment error and sludge deposition are solved, efficient filtration and effective sludge cleaning are achieved, and the reliability and automation of the device are improved.

CN119422823BActive Publication Date: 2025-06-17JIANGSU SEIKO PUMP CO LTD
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Patent Information

Application Number
CN202411717192.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-06-17
Estimated Expiration
2044-11-27

AI Technical Summary

Technical Problem

When cleaning or replacing filter plates, existing landscape garden automatic water storage sprinkler devices rely on manual experience to make misjudgment, resulting in unnecessary cost increase or decrease in filtration efficiency, and it is difficult to effectively remove the silt board when it is solidified.

Method used

A processing structure including a filtration unit, a flow detection unit and a cleaning unit is designed to achieve efficient filtration, precise flow monitoring and effective sludge cleaning through collaborative work. The flow detection unit monitors the water flow in real time and judges the working status of the filter unit; the cleaning unit solves the problem of mud plate bonding through vibrator and rake teeth.

Benefits of technology

It realizes efficient filtration and precise flow monitoring of water sources, ensures the inside of the treatment box, improves the reliability and automation of the device, and enhances the irrigation effect of garden plants.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an automatic water storage and sprinkler irrigation device for landscape gardening, which is applied in the technical field of landscape gardening sprinkler irrigation equipment. Through the collaborative work of components such as a filtering unit, a flow rate detection unit, and a cleaning unit in the designed processing structure, the present invention realizes the functions of efficiently filtering the water source entering the processing tank, accurately monitoring the flow rate, and effectively cleaning the sludge at the bottom of the processing tank. The flow rate detection unit monitors the water flow situation in real time to monitor the flow rate of the water flow, and can further judge the working state of the filtering unit according to the signal, etc.; while the cleaning unit can solve the problem of sludge hardening, keep the inside of the processing tank clean, ensure the stable operation of the entire automatic water storage and sprinkler irrigation device, and improve the reliability, automation degree of the device and the irrigation effect on garden plants.
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Description

Technical Field

[0001] The present invention belongs to the technical field of landscape irrigation equipment, and particularly relates to an automatic water storage irrigation device for landscapes. Background Art

[0002] A landscape is created by applying engineering techniques and artistic means in a certain area. Through terrain transformation, or further construction of mountains, stacking of stones, water treatment, planting of trees and flowers, construction of buildings, and layout of garden paths, etc., a beautiful natural environment and outdoor recreation space are formed. Generally, a large number of plants are planted in landscapes, and automatic water storage irrigation devices are often used to water the plants regularly.

[0003] The existing patent (publication number: CN118614365A) is an automatic water storage irrigation device for landscapes. By setting a moving mechanism, when it is necessary to clean or replace the filter plate, the moving mechanism works and can drive the filter plate to move at this time. When the filter plate on the right is located below the connecting pipe, the filter plate on the left extends out of the filter box at this time, and the filter plate extending out of the filter box facilitates the workers to clean or replace the filter plate. At the same time, during the process of cleaning or replacing the filter plate, since there are two filter plates, when one filter plate extends out, the other filter plate is exactly located at the lower end of the connecting pipe, so that the filtering operation can be carried out while cleaning the filter plate, thereby improving the water storage efficiency;

[0004] Although the existing patent is convenient for cleaning or replacing the filter screen, when to trigger this operation completely depends on manual experience to judge. This manual judgment method is not only highly subjective but also prone to misjudgment. If the cleaning or replacement is carried out too early, it will increase unnecessary labor costs and equipment downtime; if it is carried out too late, it may lead to a serious decline in the filtering efficiency, affecting the normal operation of the entire water storage irrigation device, and then unable to provide sufficient and clean irrigation water for garden plants;

[0005] In addition, although the existing patent can clean the accumulated silt while replacing the filter screen, in actual application, there will be a situation where the silt is caked, so it is difficult to effectively scrape it off. Although a reset protection device is set, due to the large area of the caked silt, these stubborn silt often cannot be completely removed, resulting in a great reduction in the cleaning effect.

[0006] Combining the above two problem entry points, it will be found that when the existing device is in use, it is very difficult to avoid the above-mentioned problems at the same time, so it cannot achieve the desired effect. Therefore, we have proposed an automatic water storage irrigation device for landscapes that can accurately judge the cleaning and replacement timing of the filter plate and improve the cleaning effect when dealing with silt caking during use. Summary of the Invention

[0007] The purpose of the present invention is to target an existing automatic water storage and sprinkler irrigation device for landscape gardens. The invention has the advantages of realizing efficient filtration of water entering a treatment box, accurate flow monitoring, and effective cleaning of sludge at the bottom of the treatment box through the coordinated work of components such as a filtering unit, a flow detection unit, and a cleaning unit through a designed processing structure. The flow detection unit monitors the water flow in real time to monitor the flow of the water flow, and can further judge the working state of the filtering unit according to the signal; the cleaning unit can solve the problem of sludge compaction, keep the inside of the treatment box clean, ensure the stable operation of the entire automatic water storage and sprinkler irrigation device, and improve the reliability and automation of the device as well as the irrigation effect on garden plants.

[0008] The above technical objectives of the present invention are achieved through the following technical solutions: an automatic water storage sprinkler irrigation device for landscape gardening, comprising a treatment box and a water storage tank, the water storage tank is bolted to both sides of the treatment box and is connected to the treatment box through a pipeline, both sides of the water storage tank are connected to distribution pipes, and the front and rear sides of the distribution pipes are connected to a plurality of atomizing nozzles, a treatment structure is arranged inside the treatment box, a pumping structure is arranged inside the water storage tank, and the pumping structure is connected to the distribution pipe;

[0009] The processing structure includes a fixed frame, which is slidably arranged at the top of the processing box, and the top and bottom of both sides of the fixed frame are respectively bolted with a filter unit and a flow detection unit, the flow detection unit is used in conjunction with the filter unit, and a cleaning unit is slidably arranged at the bottom of the inner wall of the processing box, and a connecting rod is bolted to the top of the cleaning unit, and the connecting rod is bolted to the fixed frame;

[0010] The cleaning unit includes a connecting block, which is bolted between the bottoms of two connecting rods, a vibrating member is bolted to the bottom of the connecting block, vibration isolation blocks are bolted to both sides of the connecting block, and a scraper is bolted to the side of the vibration isolation block away from the connecting block, the bottom of the scraper is in sliding contact with the inner wall of the processing box, the front and rear sides of one side of the scraper are bolted to support plates, and a rotating shaft is rotatably connected between the opposite sides of the two support plates, the surface of the rotating shaft is annularly welded with a plurality of rake teeth, and the rotating shaft is drivingly connected to the vibrating member.

[0011] By adopting the above technical scheme, through the designed processing structure, the coordinated work of the filtering unit, the flow detection unit, the cleaning unit and other components can realize the functions of efficient filtration of the water source entering the treatment box, accurate flow monitoring and effective cleaning of the sludge at the bottom of the treatment box. The flow detection unit monitors the water flow in real time to monitor the flow of the water, and can further judge the working status of the filtering unit according to the signal; the cleaning unit can solve the problem of sludge compaction, keep the inside of the treatment box clean, ensure the stable operation of the entire automatic water storage sprinkler device, and improve the reliability and automation of the device as well as the irrigation effect on garden plants.

[0012] The present invention is further configured such that: the flow detection unit includes a mounting frame, the mounting frame is bolted to the bottoms of both sides inside the fixed frame, and flow guiding plates are bolted to the front side and the rear side of the inner wall of the mounting frame. A detection cavity is bolted between the opposite sides of the two flow guiding plates. A contact plate is slidably arranged inside the detection cavity. A plurality of fixing blocks are bolted to the front side and the rear side of the contact plate. A limit switch which is matched with the fixing blocks is arranged at the top of the fixing blocks, and one side of the limit switch close to the inner wall of the detection cavity is bolted thereto. A plurality of guide rods are bolted to the bottom of the contact plate, and a fixing plate is sleeved on the surface of the guide rods. The front side and the rear side of the fixing plate are bolted to the inner wall of the detection cavity. A first return spring is sleeved on the surface of the guide rods, and the two sides of the first return spring close to the fixing plate and the contact plate are respectively connected to the two.

[0013] With the above technical solution, by providing the flow detection unit, when the water flow purified by the filtration unit passes through the flow detection unit, it is first guided by the flow guiding plates into the detection cavity. During the flow of the water flow in the detection cavity, the contact plate will be pushed to move. The guide rods at the bottom of the contact plate slide under the guiding action of the fixing plate. At the same time, the first return spring sleeved on the guide rods will expand and contract according to the movement of the contact plate. The fixing blocks on the front side and the rear side of the contact plate move along with the contact plate, so that the fixing blocks are separated from the limit switches. When the filtration performance of the filtration unit deteriorates, the resistance to water inlet will increase, thereby reducing the water flow. At this time, the elasticity of the first return spring can be used to reset the contact plate. When the fixing blocks move to the positions corresponding to the limit switches, a set triggering condition will be reached, and the limit switches will send signals, thereby switching the filtration unit, so that the replacement time of the filtration unit can be accurately controlled.

[0014] The present invention is further configured such that: both the fixing plate and the fixing blocks are in plurality, and are arranged at equal intervals inside the detection cavity. Flow channels are formed between two adjacent fixing plates and fixing blocks.

[0015] With the above technical solution, by forming flow channels between two adjacent fixing plates and fixing blocks, the normal flow of the water flow can be ensured.

[0016] The present invention is further configured such that: the vibration member includes a rubber base, the rubber base is bolted to the bottom of the connecting block, and a main shaft is rotatably connected inside the rubber base. An eccentric block is sleeved on the surface of the main shaft, and the eccentric blocks are evenly distributed on the surface of the main shaft.

[0017] With the above technical solution, by providing the vibration member, the main shaft can be driven to rotate inside the rubber base by an external driving device. The eccentric blocks on its surface generate centrifugal force as the main shaft rotates, so that the entire vibration member generates vibration. When the scraper cleans the sludge at the bottom of the treatment tank, the vibration can loosen the compacted sludge, facilitating the scraper and the rake teeth to better scrape the sludge.

[0018] The present invention is further configured such that: a protective shell is bolted to the front side of the connecting block, the front sides of the rotating shaft and the main shaft both extend into the interior of the protective shell, a driving gear and a driven gear are respectively sleeved on the surfaces of the main shaft and the rotating shaft, and the driving gear meshes with the driven gear.

[0019] By adopting the above technical solution, by providing the protective shell, the effect of protecting the transmission part of the main shaft and the rotating shaft can be achieved, and by providing the driving gear and the driven gear, the power of the main shaft can be effectively transmitted to the rotating shaft, thereby driving the rake teeth to rotate for silt cleaning, improving the working efficiency of the entire cleaning unit.

[0020] The present invention is further configured such that: screw blocks are bolted to the front side and the rear side of the bottom of the fixed frame, a screw rod threadedly penetrates through the interior of the screw block, one side of the screw rod close to the inner wall of the treatment tank is bolted thereto, and the top of the connecting rod is bolted to the screw block.

[0021] By adopting the above technical solution, by providing the screw block and the screw rod, an accurate positioning and fixing method for the sliding of the fixed frame inside the treatment tank is provided, the position of the fixed frame can be adjusted according to actual needs, which is convenient for maintaining, replacing and other operations on the filtering unit and the flow detection unit, and improves the maintainability of the device.

[0022] The present invention is further configured such that: the pumping structure includes a baffle, the baffle is bolted to one side of the inner wall of the water storage tank, a floating plate is slidably arranged inside the baffle, a liquid pump is bolted inside the floating plate, a hose is connected to the top of the liquid pump, the other end of the hose is communicated with the distribution pipe, two guide posts penetrate through the front side and the rear side of the interior of the floating plate, and one side of the guide post close to the inner wall of the water storage tank is bolted thereto, trigger switches are bolted to the top of the inner wall of the baffle and one side of the inner wall of the water storage tank, and the trigger switches are used in cooperation with the floating plate.

[0023] By adopting the above technical solution, by providing the pumping structure, as the water level in the water storage tank rises or falls, the floating plate will slide along the guiding of the guide posts inside the baffle. When the water level rises to a certain height, the floating plate will touch the trigger switch at the top of the inner wall of the baffle, and at this time, a signal is triggered to stop the replenishment of the water source in the water storage tank. When the water level drops to a certain extent, the floating plate will touch the trigger switch on one side of the inner wall of the water storage tank, and at this time, the trigger switch sends a signal to replenish the water source in the water storage tank, thereby realizing the function of automatically replenishing according to the water level in the water storage tank. In addition, the setting of the floating plate can also prevent the water inlet of the liquid pump from always being located at the bottom of the water storage tank, preventing some sediment at the bottom of the water storage tank from blocking the liquid pump and ensuring the normal operation of the liquid pump.

[0024] The present invention is further configured as follows: The trigger switch includes a fixed housing, one side of the fixed housing close to the inner walls of the water storage tank and the baffle is bolted to the two respectively. A moving plate is slidably connected inside the fixed housing. Moving contacts and static contacts are bolted to the opposite sides of the moving plate and the fixed housing respectively, and the moving contact is used in cooperation with the static contact. Two push rods are bolted to the side of the moving plate away from the moving contact, and the other side of the push rod extends to the outside of the fixed housing and is bolted to a push plate. The push plate is used in cooperation with the floating plate. A second return spring is sleeved on the surface of the push rod, and the two sides of the second return spring close to the fixed housing and the push plate are connected to the two respectively.

[0025] With the above technical solution, by setting the trigger switch, when the floating plate moves with the change of the water level in the water storage tank, the floating plate will contact and push the push plate. The push plate pushes the moving plate to slide in the fixed housing through the push rod. When the moving plate moves to a certain position, the moving contact contacts or separates from the static contact, thereby sending a signal to start or stop the water source replenishment. After the triggering action is completed, the second return spring will pull the moving plate back to its original position, making the trigger switch return to its initial state and waiting for the next trigger.

[0026] The present invention is further configured as follows: Collection chambers are bolted to both sides of the bottom of the treatment tank, and a screw conveyor is rotatably connected inside the collection chamber. Drainage openings are provided on both sides of the bottom of the treatment tank, and the drainage openings are used in cooperation with the cleaning unit and the collection chamber respectively.

[0027] With the above technical solution, by setting the collection chamber and the screw conveyor, when the cleaning unit cleans the silt at the bottom of the treatment tank, the cleaned silt will enter the collection chamber through the drainage opening, and the screw conveyor in the collection chamber rotates under the drive of a power device such as a driving device, and conveys the silt entering the collection chamber outward along the spiral groove of the screw conveyor, and finally discharges the silt from the treatment tank to keep the bottom of the treatment tank clean.

[0028] The invention is further configured as follows: A collection grille is communicated with the top of the treatment tank, and guide frames are bolted to both sides of the inner wall top of the treatment tank. The guide frames are used in cooperation with the collection grille and the filtering unit respectively.

[0029] With the above technical solution, by setting the collection grille and the guide frames, when rainwater or other water sources enter the top of the treatment tank, they will first pass through the collection grille. The collection grille will intercept larger impurities. The water after preliminary filtration will flow accurately to the filtering unit under the guidance of the guide frames, achieving the effect of facilitating the treatment of the influent water.

[0030] In summary, the present invention has the following beneficial effects:

[0031] Through the collaborative work of components such as the designed treatment structure, filtration unit, flow detection unit, and cleaning unit, the functions of efficiently filtering the water source entering the treatment tank, accurately monitoring the flow rate, and effectively cleaning the sludge at the bottom of the treatment tank are achieved. The flow detection unit monitors the water flow situation in real time to monitor the flow rate of the water flow, and further judges the working state of the filtration unit according to the signal, etc.; while the cleaning unit can solve the problem of sludge caking, keep the inside of the treatment tank clean, ensure the stable operation of the entire automatic water storage and sprinkler irrigation device, and improve the reliability, automation degree of the device and the irrigation effect on garden plants.

[0032] By setting up a pumping structure, the function of automatically pumping water according to the water level in the water storage tank and transporting it to the distribution pipe for sprinkler irrigation is realized. Without manual intervention, the automation degree of the device and the timeliness and continuity of sprinkler irrigation are improved, thus effectively ensuring the smooth realization of the sprinkler irrigation function of the entire automatic water storage and sprinkler irrigation device. Brief Description of the Drawings

[0033] Figure 1 is the overall structure schematic diagram of the present invention;

[0034] Figure 2 is the connection schematic diagram of the treatment tank and the treatment structure of the present invention;

[0035] Figure 3 is the connection schematic diagram of the fixing frame and the filtration unit of the present invention;

[0036] Figure 4 is the structural schematic diagram of the flow detection unit of the present invention;

[0037] Figure 5 is the structural schematic diagram of the cleaning unit of the present invention;

[0038] Figure 6 is the structural schematic diagram of the vibrating part of the present invention;

[0039] Figure 7 is the connection schematic diagram of the rotating shaft and the main shaft of the present invention;

[0040] Figure 8 is the connection schematic diagram of the pumping structure and the water storage tank of the present invention;

[0041] Figure 9 is the structural schematic diagram of the trigger switch of the present invention.

[0042] Reference numerals: 1, treatment tank; 2, water storage tank; 3, distribution pipe; 4, atomizing nozzle; 5, treatment structure; 51, fixing frame; 52, filtering unit; 53, flow detection unit; 531, mounting frame; 532, guide plate; 533, detection chamber; 534, contact plate; 535, fixing block; 536, limit switch; 537, guide rod; 538, fixing plate; 539, first return spring; 54, cleaning unit; 541, connecting block; 542, vibrating member; 542a, rubber base; 542b, main shaft; 542c, eccentric block; 543, vibration isolation block; 544, scraper; 545, support plate; 546, rotating shaft; 547, rake teeth; 55, connecting rod; 6, pumping structure; 61, baffle; 62, floating plate; 63, liquid pump; 64, hose; 65, guide post; 66, trigger switch; 661, fixing shell; 662, moving plate; 663, moving contact; 664, static contact; 665, push rod; 666, push plate; 667, second return spring; 7, protective shell; 8, driving gear; 9, driven gear; 10, screw block; 11, screw; 12, collection chamber; 13, screw conveyor; 14, collection grille; 15, guiding frame. Detailed implementation manners

[0043] The present invention will be further described in detail below with reference to the accompanying drawings.

[0044] Embodiment 1:

[0045] Referring to Figures 1-7 , an automatic water storage and sprinkler irrigation device for a landscape garden, including a treatment tank 1 and a water storage tank 2. The water storage tank 2 is bolted to both sides of the treatment tank 1 and is communicated with the treatment tank 1 through a pipeline. Distribution pipes 3 are communicated with both sides of the water storage tank 2, and a plurality of atomizing nozzles 4 are communicated with the front side and the rear side of the distribution pipe 3. A treatment structure 5 is arranged inside the treatment tank 1, and a pumping structure 6 is arranged inside the water storage tank 2, and the pumping structure 6 is communicated with the distribution pipe 3;

[0046] The treatment structure 5 includes a fixing frame 51. The fixing frame 51 is slidably arranged at the top inside the treatment tank 1, and a filtering unit 52 and a flow detection unit 53 are respectively bolted to the top and the bottom of both sides inside the fixing frame 51. The flow detection unit 53 is used in cooperation with the filtering unit 52. A cleaning unit 54 is slidably arranged at the bottom of the inner wall of the treatment tank 1, and a connecting rod 55 is bolted to the top of the cleaning unit 54. The connecting rod 55 is bolted to the fixing frame 51;

[0047] The cleaning unit 54 includes a connecting block 541, which is bolted between the bottoms of two connecting rods 55. A vibrating member 542 is bolted to the bottom of the connecting block 541. Vibration isolation blocks 543 are bolted to both sides of the connecting block 541, and a scraping plate 544 is bolted to the side of the vibration isolation block 543 away from the connecting block 541. The bottom of the scraping plate 544 is in sliding contact with the inner wall of the treatment tank 1. Support plates 545 are bolted to the front and rear sides of one side of the scraping plate 544, and a rotating shaft 546 is rotatably connected between the opposite sides of the two support plates 545. A number of rake teeth 547 are welded annularly on the surface of the rotating shaft 546. The rotating shaft 546 is in transmission connection with the vibrating member 542. Through the coordinated work of components such as the filtering unit 52, the flow rate detection unit 53, and the cleaning unit 54 in the designed treatment structure 5, the functions of efficiently filtering the water source entering the treatment tank 1, accurately monitoring the flow rate, and effectively cleaning the sludge at the bottom of the treatment tank 1 are realized. The flow rate detection unit 53 monitors the water flow situation in real time to monitor the flow rate of the water flow, and can further judge the working state of the filtering unit 52 according to the signal, etc.; while the cleaning unit 54 can solve the problem of sludge caking, keep the inside of the treatment tank 1 clean, ensure the stable operation of the entire automatic water storage and sprinkler irrigation device, and improve the reliability, automation degree of the device and the irrigation effect on garden plants.

[0048] Such as Figure 4As shown in the figure, the flow detection unit 53 includes a mounting frame 531. The mounting frame 531 is bolted to the bottoms of both sides inside the fixed frame 51. On the front and rear sides of the inner wall of the mounting frame 531, flow guide plates 532 are bolted. Between the opposite sides of the two flow guide plates 532, a detection chamber 533 is bolted. Inside the detection chamber 533, a contact plate 534 is slidably arranged. On the front and rear sides of the contact plate 534, a number of fixing blocks 535 are bolted. On the top of the fixing block 535, a limit switch 536 which is used in cooperation with it is arranged, and the side of the limit switch 536 close to the inner wall of the detection chamber 533 is bolted to it. At the bottom of the contact plate 534, a number of guide rods 537 are bolted. On the surface of the guide rod 537, a fixing plate 538 is sleeved. On the front and rear sides of the fixing plate 538, it is bolted to the inner wall of the detection chamber 533. On the surface of the guide rod 537, a first return spring 539 is sleeved, and the sides of the first return spring 539 close to the fixing plate 538 and the contact plate 534 are connected to the two respectively. By setting the flow detection unit 53, when the water flow purified by the filtration unit 52 passes through the flow detection unit 53, it is first guided by the flow guide plate 532 into the detection chamber 533. During the flow of the water flow in the detection chamber 533, it will push the contact plate 534 to move. The guide rod 537 at the bottom of the contact plate 534 slides under the guiding action of the fixing plate 538. At the same time, the first return spring 539 sleeved on the guide rod 537 will expand and contract according to the movement of the contact plate 534. The fixing blocks 535 on the front and rear sides of the contact plate 534 move along with the contact plate 534, separating the fixing blocks 535 from the limit switch 536. When the filtration performance of the filtration unit 52 decreases, it will increase the resistance of the inlet water, thereby reducing the water flow. At this time, the elasticity of the first return spring 539 can be used to reset the contact plate 534. When the fixing block 535 moves to a position corresponding to the limit switch 536, a set trigger condition will be reached, and the limit switch 536 will send a signal, thereby switching the filtration unit 52, so that the replacement time of the filtration unit 52 can be accurately controlled.

[0049] As Figure 4 shown, both the fixing plate 538 and the fixing blocks 535 are in several numbers and are arranged at equal intervals inside the detection chamber 533. A flow channel is formed between two adjacent fixing plates 538 and fixing blocks 535. By forming a flow channel between two adjacent fixing plates 538 and fixing blocks 535, the normal flow of the water flow can be ensured.

[0050] As Figure 6As shown, the vibrating member 542 includes a rubber base 542a. The rubber base 542a is bolted to the bottom of the connecting block 541, and a main shaft 542b is rotatably connected inside the rubber base 542a. An eccentric block 542c is sleeved on the surface of the main shaft 542b, and the eccentric blocks 542c are evenly distributed on the surface of the main shaft 542b. By setting the vibrating member 542, the main shaft 542b can be driven to rotate in the rubber base 542a by an external driving device. The eccentric blocks 542c on its surface generate centrifugal force as the main shaft 542b rotates, thereby causing the entire vibrating member 542 to vibrate. When the scraper 544 cleans the silt at the bottom of the treatment tank 1, the vibration can loosen the compacted silt, facilitating the scraper 544 and the rake teeth 547 to better scrape off the silt.

[0051] As Figure 7 shown, a protective shell 7 is bolted to the front side of the connecting block 541. The front sides of the rotating shaft 546 and the main shaft 542b both extend into the protective shell 7. A driving gear 8 and a driven gear 9 are respectively sleeved on the surfaces of the main shaft 542b and the rotating shaft 546, and the driving gear 8 meshes with the driven gear 9. By setting the protective shell 7, the transmission part of the main shaft 542b and the rotating shaft 546 can be protected. By setting the driving gear 8 and the driven gear 9, the power of the main shaft 542b can be effectively transmitted to the rotating shaft 546, thereby driving the rake teeth 547 to rotate for silt cleaning, improving the working efficiency of the entire cleaning unit 54.

[0052] As Figure 3 shown, screws 10 are bolted to the front and rear sides of the bottom of the fixed frame 51, and a screw rod 11 is threaded through the inside of the screw 10. One side of the screw rod 11 close to the inner wall of the treatment tank 1 is bolted to it, and the top of the connecting rod 55 is bolted to the screw 10. By setting the screw 10 and the screw rod 11, an accurate positioning and fixing method is provided for the sliding of the fixed frame 51 inside the treatment tank 1. The position of the fixed frame 51 can be adjusted according to actual needs, facilitating operations such as maintenance and replacement of the filtering unit 52 and the flow detection unit 53, and improving the maintainability of the device.

[0053] As Figure 2 shown, collection chambers 12 are bolted to both sides of the bottom of the treatment tank 1, and a screw conveyor 13 is rotatably connected inside the collection chamber 12. Drain ports are opened on both sides of the bottom of the treatment tank 1, and the drain ports are respectively used in cooperation with the cleaning unit 54 and the collection chamber 12. By setting the collection chamber 12 and the screw conveyor 13, when the cleaning unit 54 cleans the silt at the bottom of the treatment tank 1, the cleaned silt will enter the collection chamber 12 through the drain port, and the screw conveyor 13 in the collection chamber 12 rotates driven by a power device such as a driving device, conveying the silt entering the collection chamber 12 outward along the spiral groove of the screw conveyor 13, and finally discharging the silt from the treatment tank 1 to keep the bottom of the treatment tank 1 clean.

[0054] As Figure 1 and Figure 2 shown, a collection grille 14 is connected to the top of the treatment tank 1, and guide frames 15 are bolted to both sides of the inner wall top of the treatment tank 1. The guide frames 15 are used in cooperation with the collection grille 14 and the filtration unit 52 respectively. By providing the collection grille 14 and the guide frames 15, when rainwater or other water sources enter the top of the treatment tank 1, they will first pass through the collection grille 14. The collection grille 14 will intercept larger impurities. The water after preliminary filtration will flow accurately to the filtration unit 52 under the guidance of the guide frames 15, achieving the effect of facilitating the treatment of the incoming water.

[0055] Brief description of the usage process: The rainwater or other water sources are collected by the collection grille 14 and guided to the filtration unit 52 for filtration through the guide frames 15. When the water purified by the filtration unit 52 flows through the flow detection unit 53, it is first guided into the detection chamber 533 by the guide plate 532. During the flow of the water in the detection chamber 533, it will push the contact plate 534 to move. The guide rod 537 at the bottom of the contact plate 534 slides under the guiding action of the fixed plate 538. At the same time, the first return spring 539 sleeved on the guide rod 537 will expand and contract according to the movement of the contact plate 534. The fixed blocks 535 on the front side and the rear side of the contact plate 534 move with the contact plate 534, separating the fixed blocks 535 from the limit switch 536. When the filtration performance of the filtration unit 52 deteriorates, it will increase the resistance of the incoming water, thereby reducing the water flow. At this time, the elasticity of the first return spring 539 can be used to reset the contact plate 534. When the fixed block 535 moves to a position corresponding to the limit switch 536, a set trigger condition will be reached, and the limit switch 536 will send a signal, thereby starting the equipment that drives the screw 11 to operate, moving the fixed frame 51 to the left, moving the left filtration unit 52 out of the treatment tank 1, while the right filtration unit 52 continues to perform filtration treatment under the guide frame 15. When the fixed frame 51 moves, it will drive the cleaning unit 54 to move through the connecting rod 55. At the same time, an external driving device is used to drive the main shaft 542b to rotate in the rubber base 542a, and the eccentric block 542c on its surface generates a centrifugal force as the main shaft 542b rotates, thereby causing the entire vibrating member 542 to vibrate. When the main shaft 542b rotates, it will drive the rotating shaft 546 and the rake teeth 547 to rotate through the meshing connection of the driving gear 8 and the driven gear 9. Therefore, when the scraper 544 cleans the sludge at the bottom of the treatment tank 1, the vibration can loosen the compacted sludge, facilitating the scraper 544 and the rake teeth 547 to better scrape the sludge into the collection chamber 12, and finally discharging the sludge through the screw conveyor 13.

[0056] Embodiment 2:

[0057] Refer to Figures 8-9, a treatment tank 1 and a water storage tank 2. The water storage tank 2 is bolted to both sides of the treatment tank 1 and is connected to the treatment tank 1 through a pipeline. Distribution pipes 3 are connected to both sides of the water storage tank 2, and a number of atomizing nozzles 4 are connected to the front and rear sides of the distribution pipes 3. A treatment structure 5 is arranged inside the treatment tank 1, and a pumping structure 6 is arranged inside the water storage tank 2. The pumping structure 6 is connected to the distribution pipes 3. By setting the pumping structure 6, the function of automatically pumping water according to the water level in the water storage tank 2 and transporting it to the distribution pipes 3 for sprinkler irrigation is realized, without manual intervention, improving the automation degree of the device and the timeliness and continuity of sprinkler irrigation, thus effectively ensuring the smooth realization of the sprinkler irrigation function of the entire automatic water storage and sprinkler irrigation device.

[0058] As Figure 8 shown, the pumping structure 6 includes a baffle 61 bolted to one side of the inner wall of the water storage tank 2. A floating plate 62 is slidably arranged inside the baffle 61. A liquid pump 63 is bolted inside the floating plate 62. A hose 64 is connected to the top of the liquid pump 63, and the other end of the hose 64 is connected to the distribution pipes 3. Two guide posts 65 penetrate through the front and rear sides of the inside of the floating plate 62, and the side of the guide posts 65 close to the inner wall of the water storage tank 2 is bolted to it. Trigger switches 66 are bolted to the top of the inner wall of the baffle 61 and one side of the inner wall of the water storage tank 2, and the trigger switches 66 are used in cooperation with the floating plate 62. By setting the pumping structure 6, as the water level in the water storage tank 2 rises or falls, the floating plate 62 will slide along the guidance of the guide posts 65 inside the baffle 61. When the water level rises to a certain height, the floating plate 62 will touch the trigger switch 66 at the top of the inner wall of the baffle 61, and at this time, a signal is triggered to stop the replenishment of the water source in the water storage tank 2. When the water level drops to a certain extent, the floating plate 62 will touch the trigger switch 66 on one side of the inner wall of the water storage tank 2, and at this time, the trigger switch 66 sends a signal to replenish the water source in the water storage tank 2, thus realizing the function of automatically replenishing according to the water level in the water storage tank 2. Moreover, the setting of the floating plate 62 can also prevent the water inlet of the liquid pump 63 from always being at the bottom of the water storage tank 2, preventing some sediment at the bottom of the water storage tank 2 from blocking the liquid pump 63 and ensuring the normal operation of the liquid pump 63.

[0059] As Figure 9As shown in the figure, the trigger switch 66 includes a fixed housing 661. One side of the fixed housing 661 close to the water storage tank 2 and the inner wall of the baffle 61 is bolted to the two respectively. A moving plate 662 is slidably connected inside the fixed housing 661. A moving contact 663 and a static contact 664 are respectively bolted to the opposite sides of the moving plate 662 and the fixed housing 661, and the moving contact 663 is used in cooperation with the static contact 664. Two push rods 665 are bolted to the side of the moving plate 662 away from the moving contact 663, and the other side of the push rod 665 extends to the outside of the fixed housing 661 and is bolted to a push plate 666. The push plate 666 is used in cooperation with the floating plate 62. A second return spring 667 is sleeved on the surface of the push rod 665, and the two sides of the second return spring 667 close to the fixed housing 661 and the push plate 666 are connected to the two respectively. By setting the trigger switch 66, when the floating plate 62 moves with the change of the water level in the water storage tank 2, the floating plate 62 will contact and push the push plate 666. The push plate 666 pushes the moving plate 662 to slide in the fixed housing 661 through the push rod 665. When the moving plate 662 moves to a certain position, the moving contact 663 contacts or separates from the static contact 664, thereby sending a signal to start or stop the water source replenishment. After the triggering action is completed, the second return spring 667 will pull the moving plate 662 back to its original position, so that the trigger switch 66 returns to its initial state and waits for the next trigger.

[0060] Brief description of the usage process: The water source processed by the processing structure 5 will remain in the processing tank 1 and be transported to the water storage tank 2 for storage through a pipeline. When sprinkler irrigation operation is required, the water source in the water storage tank 2 is pumped into the distribution pipe 3 through the liquid pump 63 by a hose 64 and sprayed onto the plants through a plurality of atomizing nozzles 4 to achieve the work of sprinkler irrigation of the plants. When the water level drops to a certain extent, the bottom of the floating plate 62 will touch the trigger switch 66 on one side of the inner wall of the water storage tank 2 and push the push plate 666. The push plate 666 pushes the moving plate 662 to slide in the fixed housing 661 through the push rod 665. When the moving plate 662 moves to a certain position, the moving contact 663 contacts the static contact 664, thereby sending a signal to start the water source replenishment. When the water level rises to a certain height, the floating plate 62 will touch the trigger switch 66 on the top of the inner wall of the baffle 61. At this time, the trigger sends a signal to stop the replenishment of the water source in the water storage tank 2, thereby realizing the function of automatically replenishing according to the water level in the water storage tank 2.

[0061] This specific embodiment is only an explanation of the present invention, and it is not a limitation of the present invention. Those skilled in the art can make modifications to this embodiment without creative contributions according to needs after reading this specification, but as long as they are within the scope of the claims of the present invention, they are protected by the patent law.

Claims

1. An automatic water storage sprinkler irrigation device for landscape gardening, comprising a processing tank (1) and a water storage tank (2), characterized in that: The water storage tank (2) is bolted to both sides of the treatment tank (1) and is connected to the treatment tank (1) through a pipeline. Both sides of the water storage tank (2) are connected to a distribution pipe (3), and the front and rear sides of the distribution pipe (3) are connected to a plurality of atomizing nozzles (4). A treatment structure (5) is provided inside the treatment tank (1). A pumping structure (6) is provided inside the water storage tank (2), and the pumping structure (6) is connected to the distribution pipe (3). The processing structure (5) comprises a fixed frame (51), the fixed frame (51) being slidably arranged at the top of the processing box (1), and the top and bottom of both sides of the fixed frame (51) are respectively bolted with a filter unit (52) and a flow detection unit (53), the flow detection unit (53) being used in conjunction with the filter unit (52), and a cleaning unit (54) being slidably arranged at the bottom of the inner wall of the processing box (1), and a connecting rod (55) being bolted to the top of the cleaning unit (54), and the connecting rod (55) being bolted to the fixed frame (51); The cleaning unit (54) comprises a connecting block (541), the connecting block (541) being bolted between the bottoms of two connecting rods (55), a vibrating member (542) being bolted to the bottom of the connecting block (541), vibration isolation blocks (543) being bolted to both sides of the connecting block (541), and a scraper (544) being bolted to the side of the vibration isolation block (543) away from the connecting block (541), the bottom of the scraper (544) being in sliding contact with the inner wall of the processing box (1), a support plate (545) being bolted to the front and rear sides of one side of the scraper (544), and a rotating shaft (546) being rotatably connected between opposite sides of the two support plates (545), a plurality of rake teeth (547) being welded to the surface of the rotating shaft (546) in an annular shape, and the rotating shaft (546) being drivingly connected to the vibrating member (542); The flow detection unit (53) comprises a mounting frame (531), the mounting frame (531) being bolted to the bottom of both sides of the interior of the fixed frame (51), and the front side and the rear side of the inner wall of the mounting frame (531) being bolted to flow guide plates (532), a detection cavity (533) being bolted between the two opposite sides of the flow guide plates (532), a contact plate (534) being slidably arranged inside the detection cavity (533), the front side and the rear side of the contact plate (534) being bolted to a plurality of fixing blocks (535), and the top of the fixing block (535) being provided with a A limit switch (536) is provided, and the side of the limit switch (536) close to the inner wall of the detection chamber (533) is bolted thereto, a plurality of guide rods (537) are bolted to the bottom of the contact plate (534), and a fixing plate (538) is sleeved on the surface of the guide rods (537), and the front and rear sides of the fixing plate (538) are both bolted to the inner wall of the detection chamber (533), a first return spring (539) is sleeved on the surface of the guide rods (537), and the side of the first return spring (539) close to the fixing plate (538) and the contact plate (534) is respectively connected to the two; The vibrating member (542) comprises a rubber base (542a), the rubber base (542a) is bolted to the bottom of the connecting block (541), and the inside of the rubber base (542a) is rotatably connected to a main shaft (542b), the surface of the main shaft (542b) is sleeved with eccentric blocks (542c), and the eccentric blocks (542c) are equidistantly distributed on the surface of the main shaft (542b); The pumping structure (6) comprises a baffle (61), the baffle (61) being bolted to one side of the inner wall of the water storage tank (2), and a floating plate (62) being slidably arranged inside the baffle (61), a liquid pump (63) being bolted inside the floating plate (62), and a hose (64) being connected to the top of the liquid pump (63), and the other end of the hose (64) being connected to the distribution pipe (3), two guide pillars (65) being passed through the front and rear sides of the inside of the floating plate (62), and the guide pillars (65) being bolted to the inner wall of the water storage tank (2) on one side thereof, and a trigger switch (66) being bolted to the top of the inner wall of the baffle (61) and one side of the inner wall of the water storage tank (2), and the trigger switch (66) being used in conjunction with the floating plate (62); The trigger switch (66) comprises a fixed shell (661), the fixed shell (661) being bolted to the water storage tank (2) and the inner wall of the baffle (61) at one side thereof, the fixed shell (661) being slidably connected to a movable plate (662) inside the fixed shell (661), the movable plate (662) being bolted to the opposite side of the movable plate (662) and the fixed shell (661), and the movable contact (663) and the static contact (664) being used in conjunction with each other. Two push rods (665) are bolted to one side of the movable plate (662) away from the movable contact (663), and the other side of the push rod (665) extends to the outside of the fixed shell (661) and is bolted to a push plate (666), the push plate (666) is used in conjunction with the floating plate (62), the surface of the push rod (665) is sleeved with a second return spring (667), and the second return spring (667) is connected to the fixed shell (661) and the push plate (666) at one side thereof.

2. The automatic water storage and sprinkler irrigation device for landscape gardening according to claim 1 is characterized in that: There are a plurality of fixed plates (538) and fixed blocks (535), which are arranged at equal distances inside the detection cavity (533), and a flow channel is formed between two adjacent fixed plates (538) and fixed blocks (535).

3. The automatic water storage and sprinkler irrigation device for landscape gardening according to claim 1 is characterized in that: The front side of the connecting block (541) is bolted with a protective shell (7), the front sides of the rotating shaft (546) and the main shaft (542b) both extend into the interior of the protective shell (7), the surfaces of the main shaft (542b) and the rotating shaft (546) are respectively sleeved with a driving gear (8) and a driven gear (9), and the driving gear (8) is meshed with the driven gear (9).

4. The automatic water storage and sprinkler irrigation device for landscape gardening according to claim 1 is characterized in that: The front and rear sides of the bottom of the fixing frame (51) are both bolted with screw blocks (10), and a screw rod (11) penetrates the internal thread of the screw block (10). The side of the screw rod (11) close to the inner wall of the processing box (1) is bolted thereto, and the top of the connecting rod (55) is bolted to the screw block (10).

5. The automatic water storage and sprinkler irrigation device for landscape gardening according to claim 1 is characterized in that: Both sides of the bottom of the processing box (1) are bolted with a collecting chamber (12), and the interior of the collecting chamber (12) is rotatably connected to a screw conveyor (13). Both sides of the bottom of the processing box (1) are provided with mud discharge ports, and the mud discharge ports are used in conjunction with the cleaning unit (54) and the collecting chamber (12), respectively.

6. The automatic water storage and sprinkler irrigation device for landscape gardening according to claim 1 is characterized in that: The top of the processing box (1) is connected to a collecting grille (14), and guide frames (15) are bolted to both sides of the top of the inner wall of the processing box (1), and the guide frames (15) are used in conjunction with the collecting grille (14) and the filtering unit (52) respectively.

Citation Information

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