A mist forest landscaping humidification and dust removal equipment for landscaping

The double-sided water supply equipment and backwash design automatically clean the nozzles and filters in the Wusen system, solving the nozzle blockage problem, reducing maintenance costs and improving the atomization effect.

CN119318849BActive Publication Date: 2025-09-30JIANGSU QILIN ECOLOGICAL ENVIRONMENT CONSTR CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202411659766.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-09-30
Estimated Expiration
2044-11-20

AI Technical Summary

Technical Problem

The nozzle clogging problem in the Mist Forest system leads to high maintenance costs, affects the humidification and dust removal effects, and the maintenance process is cumbersome.

Method used

It adopts double-sided water supply equipment, through backwashing and cleaning structure design, including automatic cleaning mechanism of atomizing nozzle and filter, and uses high-pressure water flow to control the direction of water flow to achieve automatic cleaning of spray holes and filter to avoid blockage.

Benefits of technology

It effectively avoids nozzle blockage, reduces maintenance difficulty and cost, improves atomization effect, and simplifies maintenance process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119318849B_ABST
    Figure CN119318849B_ABST
Patent Text Reader

Abstract

The present invention relates to the technical field of mist forest equipment, and specifically to a mist forest landscaping humidification and dust removal equipment for garden greening, comprising a double-sided water flow supply device, wherein the double-sided water flow supply device is provided with a left water outlet and a right water outlet, and the left water outlet and the right water outlet are respectively connected to an atomizing pipe and a backwashing pipe, and an atomizing nozzle is detachably mounted on the top of the working pipe, and a sliding adjustment block that can slide back and forth following the flow direction of the water body is provided inside the working pipe, and a thimble that can slide longitudinally is provided inside the atomizing nozzle. The present invention realizes the purpose of controlling the direction of water flow, pushing the bottom push block, and driving the thimble to clean the spray hole through the setting of the working pipe, effectively avoiding the problem of clogging the spray hole of the atomizing nozzle and reducing the atomization effect. The present invention can also realize the purpose of driving the bottom push block to reset by resetting the reset slider by controlling the direction of water flow, so that the thimble is automatically separated from the spray hole, reducing the difficulty of operation.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of fog forest equipment, and in particular to a fog forest landscaping humidification and dust removal equipment for garden greening. Background Art

[0002] Fog not only provides essential moisture for plants, promoting photosynthesis and growth, but also provides water and habitat for smaller creatures like birds and insects, thereby increasing biodiversity. In gardens located in arid or semi-arid regions, fog forest systems are crucial for maintaining ecological balance. Furthermore, the moist environment created by fog forests helps suppress fires, providing an additional layer of security for gardens.

[0003] Nozzle clogging is a common problem in the Mist Sen system. Impurities, sediment, or scale in the water easily accumulate inside the nozzles, causing blockage. Poor water quality increases the likelihood of clogging. To ensure effective atomization, the nozzle orifices are typically designed to be smaller, making it more susceptible to clogging caused by tiny impurities in the water. When the nozzles of a Mist Sen system become clogged, it typically manifests as reduced spray volume, uneven spray, or even no spray at all. These symptoms directly impact the humidification, dust removal, and landscaping effects of the Mist Sen system. Therefore, regular maintenance and cleaning of the nozzles, filters, and other structures in the Mist Sen system are necessary. The large number of nozzles and filters in a Mist Sen system requires significant effort during maintenance, increasing maintenance costs.

[0004] Therefore, it is necessary to invent a kind of garden greening mist forest landscaping humidification and dust removal equipment to solve the above problems. Summary of the Invention

[0005] The purpose of the present invention is to provide a fog forest landscaping humidification and dust removal equipment for gardening, which can avoid the problem of fog forest system clogging by cleaning and backwashing the nozzle and filter screen, thereby reducing maintenance costs.

[0006] To achieve this object, the present invention adopts the following technical solutions:

[0007] Provided is a mist forest landscaping humidifying and dust removal device for garden greening, comprising a double-sided water flow supply device, wherein the double-sided water flow supply device is provided with a left water outlet and a right water outlet, the left water outlet and the right water outlet are respectively connected to an atomizing pipe and a backwashing pipe, a plurality of working pipes are provided in the middle of the atomizing pipe and the backwashing pipe, each working pipe is connected to the atomizing pipe and the backwashing pipe, an atomizing nozzle is detachably mounted on the top of the working pipe, the atomizing nozzle is connected to the inside of the working pipe, a sliding adjustment block that can slide back and forth following the flow direction of the water body is provided inside the working pipe, a thimble that can slide in a vertical direction is provided inside the atomizing nozzle, the atomizing nozzle includes a spray hole located at the axis center, the thimble and the spray hole are in the same axial position, a partition is provided at the center position of the atomizing nozzle, a lifting block that can slide vertically is provided on the right side of the partition, the outer edge of the lifting block is in contact with the inner wall of the partition and the atomizing nozzle, and the thimble is fixedly mounted on the lifting block;

[0008] When the water flow pushes the sliding regulating block to move to the left and its end face is flush with the partition plate, the water flow pushes the lifting block upward, and the top end of the ejector pin can pass through the spray hole.

[0009] As a preferred solution for mist landscaping humidification and dust removal equipment for landscaping, the atomizing nozzle also includes an atomizing chamber located on the left side of the partition and a debris removal chamber located on the right side of the partition. The lifting block can be vertically slidably installed inside the debris removal chamber, and a slide groove 2 for preventing the ejector from sliding is opened in the middle of the partition.

[0010] As a preferred solution for a mist forest landscaping humidification and dust removal equipment for landscaping, the working pipe includes filter mounting blocks located on both sides thereof and a filter body that can be detachably installed inside the filter mounting blocks. A slide groove 1 is provided inside the working pipe for the sliding adjustment block to slide horizontally. A sliding strip that can slide along the slide groove 1 is provided on the outer edge of the sliding adjustment block. A conical surface is provided on the left side of the sliding adjustment block, and a vertical end surface is provided on the right side of the sliding adjustment block.

[0011] As a preferred solution of a mist forest landscaping humidification and dust removal device for landscaping, the double-sided water flow supply device is internally provided with a pump body 1, the output end of the pump body 1 is connected to an atomization pipe, and the atomization pipe is located on the side where the conical surface of the sliding adjustment block is located. The double-sided water flow supply device also includes a pump body 2, the output end of the pump body 2 is connected to a backwash pipe, and the backwash pipe is located on the side of the vertical end surface of the sliding adjustment block;

[0012] When the pump body 1 is outputting, the high-pressure liquid flows into the multiple working pipes through the atomization pipe. The high-pressure liquid pushes the sliding adjustment block to slide. The sliding adjustment block moves to the right side of the chute 1, and the atomization pipe is connected to the atomization chamber.

[0013] When the pump body 2 is outputting, the high-pressure liquid flows into multiple working pipes through the backwash pipe. The high-pressure liquid pushes the sliding adjustment block to move to the left side of the chute 1. When the sliding adjustment block moves to the left side of the chute 1, the impurity removal chamber is connected with the backwash pipe. The high-pressure liquid pushes the lifting block to rise in the vertical direction, and the top of the ejector pin penetrates and extends to the outside of the spray hole.

[0014] As a preferred solution of a mist forest landscaping humidification and dust removal device for landscaping, a connecting pipe is provided at the outer edge of the working pipe, an electromagnetic valve is provided at the center of the connecting pipe, and a water inlet and a water outlet are provided on both sides of the connecting pipe inside the working pipe;

[0015] When it is necessary to clean the filter body close to the conical surface, open the electromagnetic valve and simultaneously open pump body one and pump body two. Pump body one pumps water and pump body two supplies water. High-pressure liquid flows from the water inlet to the water outlet. The high-pressure water flow impacts and cleans the filter body. When the sliding adjustment block slides to the left end of the slide groove one, the sliding adjustment block will not block the water outlet.

[0016] As a preferred solution of a mist forest landscaping humidification and dust removal equipment for landscaping, the atomizing nozzle also includes a spherical inner concave surface at the bottom end of the spray hole, the lifting block includes a bottom push block located inside the impurity removal cavity, the bottom push block can slide in the longitudinal direction, the ejector pin is fixedly installed on one side of the bottom push block, the lifting block also includes a guide column located on the upper surface of the bottom push block and a sealing plate located at the top of the partition and fitting the contour of the impurity removal cavity, the guide column penetrates the sealing plate and extends to the outside, and the top end of the guide column is fixedly connected to a reset slider;

[0017] When the spray hole is cleaned, the high-pressure water flows into the atomizing cavity and impacts the spherical inner concave surface. At the same time, the high-pressure water impacts the upper end surface of the reset slider, driving the guide column to slide vertically downward, so that the bottom push block drives the ejector pin to separate from the spray hole.

[0018] As a preferred solution for a mist forest landscaping humidification and dust removal equipment for landscaping, the top of the working pipe is provided with a mounting ring for inserting and installing an atomizing nozzle, the outer side surface of the mounting ring is provided with an external thread, and the interior of the mounting ring is provided with a plurality of guide grooves, and the outer side wall of the atomizing nozzle is provided with a plurality of guide blocks for inserting into the guide grooves, and the top of the mounting ring is provided with a sealing ring for fixing the atomizing nozzle, and the sealing ring is threadedly connected to the external thread.

[0019] As a preferred solution for a mist forest landscaping humidification and dust removal device for landscaping, the outer side surface of the reset slider can fit with the spherical inner concave surface, and a groove is provided on the top of the reset slider.

[0020] As an optimal solution for a mist landscaping humidification and dust removal device for gardening, the bottom end of the atomizing nozzle is provided with an arc-shaped end face. When the guide block and the guide groove are fitted together, the arc-shaped end face is flush with the inner diameter end face of the working pipe.

[0021] The beneficial effects of the present invention are as follows: through the setting of the working pipeline, the purpose of controlling the direction of water flow, pushing the bottom push block, and driving the top pin to clean the spray hole is achieved, effectively avoiding the problem of clogging of the spray hole of the atomizing nozzle and reducing the atomization effect. The purpose of the reset slider driving the bottom push block to reset can be achieved by controlling the direction of water flow, so that the top pin and the spray hole are automatically separated, reducing the difficulty of operation. By controlling the opening of the electromagnetic valve and the reversal of the pump body, the water flows through the backwash pipe and flows into the inside of the working pipe, and the filter body is backwashed through the connecting pipe. The filtered water flow is then recovered through the pump body to achieve the purpose of cleaning the filter body, thereby solving the problem of spending a lot of time and energy in the process of cleaning multiple nozzles and filters, and reducing maintenance costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] To more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments of the present invention. Obviously, the drawings described below are only some embodiments of the present invention. Those skilled in the art can also derive other drawings based on these drawings without inventive effort.

[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0024] Figure 2 It is a schematic diagram of the working pipeline of the present invention.

[0025] Figure 3 It is a schematic diagram of the working pipeline assembly structure of the present invention.

[0026] Figure 4 It is a schematic diagram of the internal structure of the working pipe of the present invention without the sliding adjustment block.

[0027] Figure 5 It is a schematic diagram of the local structure of the mounting ring of the present invention.

[0028] Figure 6 It is a schematic diagram of the overall structure of the atomizing nozzle of the present invention.

[0029] Figure 7 It is a schematic diagram of the top view of the atomizing nozzle of the present invention.

[0030] Figure 8 It is a schematic diagram of the internal structure of the atomizing nozzle of the present invention.

[0031] Figure 9It is a schematic diagram of the communication structure between the atomizing chamber and the working pipeline of the present invention.

[0032] Figure 10 It is a schematic diagram of the communication structure between the impurity removal chamber and the working pipeline of the present invention.

[0033] Figure 11 It is a schematic diagram of the main cross-sectional structure of the impurity removal chamber and the working pipeline connected to each other in the present invention.

[0034] In the picture:

[0035] 1. Double-sided water supply equipment; 101. Pump body 1; 102. Pump body 2; 201. Atomization pipe; 202. Backwash pipe;

[0036] 4. Working pipe; 401. Filter body; 402. Filter mounting block; 403. Slideway 1; 5. Connecting pipe; 501. Water inlet; 502. Water outlet; 6. Solenoid valve; 7. Sliding adjustment block; 701. Sliding bar; 702. Conical surface; 704. Vertical end surface; 8. Mounting ring; 801. External thread; 802. Guide groove; 9. Sealing ring;

[0037] 10. Atomizing nozzle; 1001. Guide block; 1002. Spherical inner concave surface; 1003. Spray hole; 1004. Partition; 1005. Ejector pin; 1006. Reset slider; 1007. Guide column; 1008. Bottom push block; 1009. Second slideway; 1010. Sealing plate; 1011. Atomizing chamber; 1012. De-dusting chamber; 1013. Arc-shaped end face. DETAILED DESCRIPTION

[0038] The technical solution of the present invention will be further described below with reference to the accompanying drawings and through specific implementation methods.

[0039] Among them, the drawings are only used for illustrative purposes and represent only schematic diagrams rather than actual pictures, and should not be understood as limiting this patent; in order to better illustrate the embodiments of the present invention, some parts of the drawings may be omitted, enlarged or reduced, and do not represent the size of the actual product; for those skilled in the art, it is understandable that some well-known structures and their descriptions in the drawings may be omitted.

[0040] The same or similar numbers in the drawings of the embodiments of the present invention correspond to the same or similar parts; in the description of the present invention, it should be understood that if the terms "upper", "lower", "left", "right", "inside", "outside" and the like indicate an orientation or position relationship based on the orientation or position relationship shown in the drawings, it is only for the convenience of describing the present invention and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, the terms describing the position relationship in the drawings are only used for illustrative purposes and cannot be understood as limiting this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.

[0041] In the description of the present invention, unless otherwise expressly specified or limited, when the term "connection" or the like appears to indicate a connection relationship between components, such term should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be internal communication between two components or an interaction between two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood in specific circumstances.

[0042] refer to Figures 1 to 11 The present invention provides a mist forest landscaping humidification and dust removal device for garden greening, including a double-sided water flow supply device 1, the double-sided water flow supply device 1 is provided with a left water outlet and a right water outlet, the left water outlet and the right water outlet are respectively connected to an atomizing pipe 201 and a backwashing pipe 202, a plurality of working pipes 4 are provided in the middle of the atomizing pipe 201 and the backwashing pipe 202, each working pipe 4 is connected to the atomizing pipe 201 and the backwashing pipe 202, and an atomizing nozzle 10 is detachably installed at the top of the working pipe 4, and the atomizing nozzle 10 is connected to the inside of the working pipe 4 The interior of the working pipe 4 is provided with a sliding adjustment block 7 that can slide back and forth following the flow direction of the water body. The interior of the atomizing nozzle 10 is provided with a thimble 1005 that can slide in the vertical direction. The atomizing nozzle 10 includes a spray hole 1003 located at the axis center. The thimble 1005 and the spray hole 1003 are at the same axial position. A partition 1004 is provided at the center position of the atomizing nozzle 10. A lifting block that can slide vertically is provided on the right side of the partition 1004. The outer edge of the lifting block is in contact with the partition 1004 and the inner wall of the atomizing nozzle 10, and the thimble 1005 is fixedly installed on the lifting block.

[0043] When the water flow pushes the sliding adjustment block 7 to move to the left and its end face is flush with the partition 1004, the water flow pushes the lifting block upward, and the top of the ejector pin 1005 can pass through the spray hole 1003. The ends of the atomization pipe 201 and the backwash pipe 202 are in a sealed state. The outer contour of the sliding adjustment block 7 is adapted to the inner diameter of the working pipe 4. During the atomization process, the pump body 102 is in a closed state. The setting of the partition 1004 can reduce the flow area of ​​the water flow, thereby increasing the impact speed of the water flow, increasing the pressure, and thus enhancing the atomization effect.

[0044] The atomizing nozzle 10 also includes an atomizing chamber 1011 located on the left side of the partition 1004 and a debris removal chamber 1012 located on the right side of the partition 1004. The lifting block can be vertically slidably installed inside the debris removal chamber 1012. A sliding groove 1009 is provided in the middle of the partition 1004 to prevent the ejector pin 1005 from sliding. It is necessary to ensure that the bottom push block 1008 in the lifting block is in a horizontal state during the upward sliding process to avoid the ejector pin 1005 from bending, which makes it impossible to accurately insert the ejector pin 1005 into the spray hole 1003, resulting in the failure of the debris removal effect.

[0045] The working pipe 4 includes filter mounting blocks 402 on both sides thereof and a filter body 401 detachably mounted inside the filter mounting block 402. A slide groove 403 is provided inside the working pipe 4 for the sliding adjustment block 7 to slide horizontally. A slide bar 701 is provided on the outer edge of the sliding adjustment block 7 and can slide along the slide groove 403. A conical surface 702 is provided on the left side of the sliding adjustment block 7, and a vertical end surface 704 is provided on the right side of the sliding adjustment block 7. The filter body 401 can reduce the probability of impurities clogging the spray hole 1003, thereby ensuring the atomization effect. The filter body 401 is detachable and can be replaced when backwashing fails. There is no need to purchase a new working pipe 4, thereby reducing subsequent maintenance costs.

[0046] The double-sided water flow supply device 1 is internally provided with a pump body 101, the output end of the pump body 101 is connected to the atomization pipe 201, and the atomization pipe 201 is located on the side where the conical surface 702 of the sliding adjustment block 7 is located. The double-sided water flow supply device 1 also includes a pump body 202, the output end of the pump body 202 is connected to the backwash pipe 202, and the backwash pipe 202 is located on the side of the vertical end surface 704 of the sliding adjustment block 7;

[0047] When the pump body 101 is outputting, the high-pressure liquid flows into the multiple working pipes 4 through the atomizing pipe 201. The high-pressure liquid pushes the sliding adjustment block 7 to slide. The sliding adjustment block 7 moves to the right side of the chute 1 403, and the atomizing pipe 201 is connected to the atomizing chamber 1011.

[0048] When the pump body 202 is outputting, the high-pressure liquid flows into the multiple working pipes 4 respectively through the backwash pipe 202, and the high-pressure liquid pushes the sliding adjustment block 7 to move to the left side of the slide groove 1 403. When the sliding adjustment block 7 moves to the left side of the slide groove 1 403, the impurity removal chamber 1012 is connected with the backwash pipe 202, and the high-pressure liquid pushes the lifting block to rise in the vertical direction. The top of the ejector pin 1005 penetrates and extends to the outside of the spray hole 1003. The water flow hits the conical surface 702 to drive the sliding adjustment block 7 to move to the right. After reaching the designated position, the water flow can flow into the interior of the atomization chamber 1011 through the conical surface 702. The conical surface 702 of the sliding adjustment block 7 plays a guiding role. When the sliding adjustment block 7 moves to the left, the vertical end face 704 fits with the partition 1004 to ensure that the water flow cannot flow into the interior of the atomization chamber 1011, thereby ensuring the push-out of the bottom push block 1008.

[0049] A communication pipe 5 is provided on the outer edge of the working pipe 4, an electromagnetic valve 6 is provided at the center of the communication pipe 5, and a water inlet 501 and a water outlet 502 are provided on both sides of the communication pipe 5 located inside the working pipe 4;

[0050] When it is necessary to clean the filter body 401 on the side close to the conical surface 702, open the electromagnetic valve 6, and at the same time open the pump body 101 and the pump body 2 102. The pump body 101 pumps water and the pump body 2 102 supplies water. The high-pressure liquid flows through the water inlet 501 to the water outlet 502. The high-pressure water flow impacts and cleans the filter body 401. When the sliding adjustment block 7 slides to the left end of the slide groove 1 403, the sliding adjustment block 7 will not block the water outlet 502. By controlling the orderly opening of the electromagnetic valve 6, the flushing of the filter body 401 can be controlled to ensure the water pressure of the flushing, ensure the cleaning effect, and thus ensure the filtering effect of the filter body 401.

[0051] The atomizing nozzle 10 also includes a spherical concave surface 1002 located at the bottom end of the spray hole 1003, the lifting block includes a bottom push block 1008 located inside the impurity removal cavity 1012, the bottom push block 1008 can slide longitudinally, the ejector pin 1005 is fixedly installed on one side of the bottom push block 1008, the lifting block also includes a guide column 1007 located on the upper surface of the bottom push block 1008 and a sealing plate 1010 located at the top of the partition 1004 and conforming to the contour of the impurity removal cavity 1012, the guide column 1007 penetrates the sealing plate 1010 and extends to the outside, and the top of the guide column 1007 is fixedly connected to a reset slider 1006;

[0052] When the spray hole 1003 is cleaned, the high-pressure water flow flows into the atomizing chamber 1011 and impacts the spherical inner concave surface 1002. At the same time, the high-pressure water flow impacts the upper end surface of the reset slider 1006, driving the guide column 1007 to slide vertically downward, so that the bottom push block 1008 drives the ejector pin 1005 to separate from the spray hole 1003. The setting of the spherical inner concave surface 1002 enables the water flow to push the reset slider 1006 along the contour to reset when it cannot flow out through the spray hole 1003, thereby driving the ejector pin 1005 to separate from the spray hole 1003, ensuring that the working pipe 4 can continue to atomize.

[0053] The top of the working pipe 4 is provided with a mounting ring 8 for inserting and installing the atomizing nozzle 10. The outer side surface of the mounting ring 8 is provided with an external thread 801. The interior of the mounting ring 8 is provided with a plurality of guide grooves 802. The outer wall of the atomizing nozzle 10 is provided with a plurality of guide blocks 1001 for being inserted into the guide grooves 802. The top of the mounting ring 8 is provided with a sealing ring 9 for fixing the atomizing nozzle 10. The sealing ring 9 is threadedly connected with the external thread 801. The atomizing nozzle 10 is inserted into the interior of the mounting ring 8, and the inserted atomizing nozzle 10 is fixed and sealed by the sealing ring 9. The sealing ring 9 is used to fix the atomizing nozzle 10 while preventing water leakage.

[0054] The outer side surface of the reset slider 1006 can fit with the spherical inner concave surface 1002, and a groove is provided at the top of the reset slider 1006. The setting that the outer side surface of the reset slider 1006 can fit with the spherical inner concave surface 1002 can ensure that the bottom push block 1008 has sufficient stroke to ensure that the ejector pin 1005 can pass through the spray hole 1003. The setting of the groove can increase the contact area with the water flow, thereby improving the reset speed and realizing the rapid separation of the ejector pin 1005 from the spray hole 1003.

[0055] The bottom end of the atomizing nozzle 10 is provided with an arc-shaped end surface 1013. When the guide block 1001 and the guide groove 802 are in contact with each other, the arc-shaped end surface 1013 is flush with the inner diameter end surface of the working pipe 4. The insertion of the atomizing nozzle 10 can accurately distinguish the front and back during the installation process to ensure the accuracy of the installation, and at the same time ensure that the sliding adjustment block 7 can smoothly pass through the arc-shaped end surface 1013 without interference.

[0056] The present invention, through the setting of the working pipe 4, realizes the purpose of controlling the direction of water flow, pushing the bottom push block 1008 to drive the top pin 1005 to clean the spray hole 1003, effectively avoiding the problem of clogging of the spray hole 1003 of the atomizing nozzle 10, which causes the atomization effect to be reduced. It can also realize the purpose of resetting the bottom push block 1008 driven by the reset slider 1006 by controlling the direction of water flow, so that the top pin 1005 is automatically separated from the spray hole 1003, reducing the difficulty of operation. By controlling the opening of the electromagnetic valve 6 and the reversal of the pump body 101, the water flows through the backwash pipe 202 to the inside of the working pipe 4, backwashes the filter body 401 through the connecting pipe 5, and then recovers the filtered water through the pump body 101, thereby achieving the purpose of cleaning the filter body 401, thereby solving the problem of spending a lot of time and energy in the process of cleaning multiple nozzles and filters, and reducing maintenance costs.

[0057] It should be noted that the above-described specific embodiments are merely preferred embodiments of the present invention and the technical principles employed. Those skilled in the art will appreciate that various modifications, equivalent substitutions, and variations may be made to the present invention. However, as long as these modifications do not depart from the spirit of the present invention, they are intended to be within the scope of protection of the present invention. Furthermore, certain terms used in the specification and claims of this application are not intended to be limiting and are provided solely for ease of description.

Claims

1. A mist-based landscaping humidification and dust removal device for landscaping, characterized by: The invention comprises a double-sided water flow supply device (1), wherein the double-sided water flow supply device (1) is provided with a left water outlet and a right water outlet, wherein the left water outlet and the right water outlet are respectively connected to an atomizing pipe (201) and a backwashing pipe (202), wherein a plurality of working pipes (4) are provided in the middle of the atomizing pipe (201) and the backwashing pipe (202), wherein each working pipe (4) is connected to the atomizing pipe (201) and the backwashing pipe (202), wherein an atomizing nozzle (10) is detachably mounted on the top end of the working pipe (4), wherein the atomizing nozzle (10) is connected to the inside of the working pipe (4), and wherein the inside of the working pipe (4) is provided with a plurality of working pipes (4). A sliding adjustment block (7) capable of sliding back and forth following the flow of water is provided, a thimble (1005) capable of sliding in a vertical direction is provided inside the atomizing nozzle (10), the atomizing nozzle (10) comprises a spray hole (1003) located at the axis, the thimble (1005) and the spray hole (1003) are located at the same axial position, a partition (1004) is provided at the center of the atomizing nozzle (10), a lifting block capable of sliding vertically is provided on the right side of the partition (1004), the outer edge of the lifting block is in contact with the partition (1004) and the inner wall of the atomizing nozzle (10), and the thimble (1005) is fixedly mounted on the lifting block; When the water flow pushes the sliding regulating block (7) to move to the left and its end face is flush with the partition (1004), the water flow pushes the lifting block upward, and the top end of the ejector pin (1005) can pass through the spray hole (1003).

2. A mist-based landscaping humidification and dust removal device for landscaping according to claim 1, characterized in that: The atomizing nozzle (10) further comprises an atomizing chamber (1011) located on the left side of the partition (1004) and a debris removal chamber (1012) located on the right side of the partition (1004); the lifting block is vertically slidably installed inside the debris removal chamber (1012); and a second slide groove (1009) for preventing the ejector pin (1005) from sliding is provided in the middle of the partition (1004).

3. The mist-based humidification and dust removal equipment for landscaping according to claim 2 is characterized in that: The working pipe (4) comprises filter screen mounting blocks (402) located on both sides thereof and a filter screen body (401) detachably mounted inside the filter screen mounting blocks (402). A sliding groove (403) for the sliding adjustment block (7) to slide in a horizontal direction is provided inside the working pipe (4). A sliding bar (701) capable of sliding along the sliding groove (403) is provided on the outer edge of the sliding adjustment block (7). A conical surface (702) is provided on the left side of the sliding adjustment block (7), and a vertical end surface (704) is provided on the right side of the sliding adjustment block (7).

4. The mist-based landscaping humidification and dust removal equipment for landscaping according to claim 3 is characterized by: The double-sided water flow supply device (1) is provided with a pump body (101) inside, the output end of the pump body (101) is connected to the atomizing pipe (201), and the atomizing pipe (201) is located on the side where the conical surface (702) of the sliding adjustment block (7) is located. The double-sided water flow supply device (1) also includes a pump body (102), the output end of the pump body (102) is connected to the backwashing pipe (202), and the backwashing pipe (202) is located on the side of the vertical end surface (704) of the sliding adjustment block (7); When the pump body 1 (101) is outputting, the high-pressure liquid flows into the multiple working pipes (4) through the atomizing pipe (201), and the high-pressure liquid pushes the sliding adjustment block (7) to slide. The sliding adjustment block (7) moves to the right side of the chute 1 (403), and the atomizing pipe (201) is connected to the atomizing cavity (1011); When the pump body 2 (102) is outputting, the high-pressure liquid flows into the multiple working pipes (4) respectively through the backwash pipe (202), and the high-pressure liquid pushes the sliding adjustment block (7) to move to the left side of the slide groove 1 (403). The sliding adjustment block (7) moves to the left side of the slide groove 1 (403), and the impurity removal chamber (1012) is connected to the backwash pipe (202). The high-pressure liquid pushes the lifting block to rise in the vertical direction, and the top of the ejector pin (1005) penetrates and extends to the outside of the spray hole (1003).

5. The mist-based landscaping humidification and dust removal equipment for landscaping according to claim 4 is characterized by: A communication pipe (5) is provided at the outer edge of the working pipe (4), an electromagnetic valve (6) is provided at the center of the communication pipe (5), and a water inlet (501) and a water outlet (502) are provided on both sides of the communication pipe (5) located inside the working pipe (4); When it is necessary to clean the filter body (401) on the side close to the conical surface (702), the electromagnetic valve (6) is opened, and the pump body 1 (101) and the pump body 2 (102) are opened at the same time. The pump body 1 (101) pumps water, and the pump body 2 (102) supplies water. The high-pressure liquid flows through the water inlet (501) to the water outlet (502). The high-pressure water flow impacts and cleans the filter body (401). When the sliding adjustment block (7) slides to the left end of the slide groove 1 (403), the sliding adjustment block (7) will not block the water outlet (502).

6. The mist-based humidification and dust removal equipment for landscaping according to claim 5, characterized in that: The atomizing nozzle (10) further comprises a spherical inner concave surface (1002) located at the bottom end of the spray hole (1003); the lifting block comprises a bottom push block (1008) located inside the impurity removal cavity (1012); the bottom push block (1008) is slidable in the longitudinal direction; the ejector pin (1005) is fixedly mounted on one side of the bottom push block (1008); the lifting block further comprises a guide column (1007) located on the upper surface of the bottom push block (1008) and a sealing plate (1010) located at the top end of the partition (1004) and conforming to the contour of the impurity removal cavity (1012); the guide column (1007) penetrates the sealing plate (1010) and extends to the outside; the top end of the guide column (1007) is fixedly connected to a reset slider (1006); When the spray hole (1003) is cleaned, the high-pressure water flows into the atomizing cavity (1011) and impacts the spherical inner concave surface (1002). At the same time, the high-pressure water impacts the upper end surface of the reset slider (1006), driving the guide column (1007) to slide vertically downward, so that the bottom push block (1008) drives the ejector pin (1005) to separate from the spray hole (1003).

7. The mist-based landscaping humidification and dust removal equipment for landscaping according to claim 2, characterized in that: The top end of the working pipe (4) is provided with a mounting ring (8) for inserting and installing the atomizing nozzle (10), the outer side surface of the mounting ring (8) is provided with an external thread (801), the interior of the mounting ring (8) is provided with a plurality of guide grooves (802), the outer side wall of the atomizing nozzle (10) is provided with a plurality of guide blocks (1001) for inserting into the guide grooves (802), the top end of the mounting ring (8) is provided with a sealing ring (9) for fixing the atomizing nozzle (10), and the sealing ring (9) is threadedly connected to the external thread (801).

8. The mist-based landscaping humidification and dust removal equipment for landscaping according to claim 6, characterized in that: The outer side surface of the reset slider (1006) can fit with the spherical inner concave surface (1002), and a groove is provided at the top of the reset slider (1006).

9. The mist-based landscaping humidification and dust removal equipment for landscaping according to claim 2, characterized in that: The bottom end of the atomizing nozzle (10) is provided with an arc-shaped end surface (1013). When the guide block (1001) and the guide groove (802) are fitted together, the arc-shaped end surface (1013) is flush with the inner diameter end surface of the working pipe (4).

Citation Information

Patent Citations

  • Design method for anti-blocking sprayer

    CN101428255A

  • Anti-blocking liquid filtering equipment

    CN218686788U