CN210987477U - Auxiliary spraying system for planting tree seeds - Google Patents

Auxiliary spraying system for planting tree seeds Download PDF

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Publication number
CN210987477U
CN210987477U CN201921693657.5U CN201921693657U CN210987477U CN 210987477 U CN210987477 U CN 210987477U CN 201921693657 U CN201921693657 U CN 201921693657U CN 210987477 U CN210987477 U CN 210987477U
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China
Prior art keywords
water pipe
water
half ring
peripheral
stationary half
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CN201921693657.5U
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Chinese (zh)
Inventor
李志强
李健
王冰
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Tianjin Yuancheng Landscape Construction Development Co ltd
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Tianjin Yuancheng Landscape Construction Development Co ltd
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Abstract

The utility model discloses an auxiliary spraying system for planting tree species, belonging to the technical field of tree spraying equipment, its technical scheme main points are including setting up the fixing device on the trunk, fixing device is connected with the peripheral water pipe to the water spray of the peripheral branch and leaf of trees, peripheral water piping connection has the water tank, be connected with the water pump between peripheral water pipe and the water tank, fixing device includes first stationary half ring, second stationary half ring and fixing bolt, the synthetic ring form of first stationary half ring and second semi-ring enclosure is overlapped on the trunk, fixing bolt is with first stationary half ring and second stationary half ring fixed connection, can dismantle the inside water pipe that is connected with the inside water spray of branch and leaf of oriented trees on the first stationary half ring, inside water pipe and peripheral water pipe intercommunication, the top of inside water pipe is connected with the water smoke shower nozzle of the oriented water spray all around, reach the effect that can spray water on the branch and leaf of.

Description

Auxiliary spraying system for planting tree seeds
Technical Field
The utility model relates to a trees spray equipment field, in particular to tree species plant and use supplementary water-spraying system.
Background
With the rapid development of modern city construction and the continuous improvement of the requirement of city green ecological environment construction, in the garden greening engineering of China, the transplantation of trees is taken as an important means and technical measure for protecting natural resources and rapidly improving the quality of life of urban residents, and has become more and more widely valued and generally adopted by the unique greening and beautifying effect.
After the trees are planted, in order to improve the survival rate of the trees, water is often sprayed and supplemented to the secondary branches of the trees at regular time, so that the water is kept in a short time, and the survival rate of the trees is improved.
The current chinese patent that can refer to bulletin number for CN205567586U discloses a forest pesticide spraying system, including fixed block on the fixed mounting trees, around hose and the water storage box on trees, the fixed block outside is equipped with the spout around the fixed block round, and movable mounting has the slider in this spout, the one end of slider extends to external fixedly connected with water pipe, the water pipe is the arc structure setting, a side that the water pipe is close to trees is equipped with more than one shower nozzle, water pipe and hose connection, hose and water storage box are connected. A water pump is arranged between the hose and the water storage tank. The middle of the sliding block is provided with a rotating rod, two sides of the rotating rod are fixedly provided with a roller, the outer ring surface of the roller is abutted against the inner wall surface of the sliding groove, the rotating rod rotates through a driving mechanism, and the driving mechanism is a stepping motor. When spraying the pesticide to trees, add pesticide and water into the water storage box to stir evenly, then, start the water pump, get into the water pipe with the pesticide along the hose, and the shower nozzle on rethread water pipe sprays the pesticide on trees. In the spraying process, the stepping motor drives the water pipe to do circular motion, so that the pesticide can be sprayed on the trees in an all-around manner.
However, when the spraying system is used for spraying water to newly planted trees, the water pipe is arranged outside the trees and can only spray water to branches and leaves on the surface layers of the trees, and when the branches and leaves of the trees are flourishing, the water pipe cannot spray water to the branches and leaves inside the trees, so that the water in the branches and leaves inside the trees cannot be compensated in time after being dissipated, and the survival rate of the trees is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a not enough to prior art exists, the utility model aims at providing a tree species is planted and is used supplementary water-spraying system reaches the effect that can spray water on to the branch and leaf of trees inboard.
The above technical purpose of the present invention can be achieved by the following technical solutions:
the utility model provides a tree species is planted and is used supplementary water-spraying system, including setting up the fixing device on the trunk, fixing device is connected with the peripheral water pipe to the peripheral branch and leaf water spray of trees, peripheral water piping connection has the water tank, be connected with the water pump between peripheral water pipe and the water tank, fixing device includes first stationary semi-ring, second stationary semi-ring and fixing bolt, first stationary semi-ring and second semi-ring enclose into the circle form cover on the trunk, fixing bolt is with first stationary semi-ring and second stationary semi-ring fixed connection, can dismantle the inside water pipe that is connected with the inside water spray of branch and leaf of trees on the first stationary semi-ring, inside water pipe and peripheral water pipe intercommunication, the top of inside water pipe is connected with the water smoke shower nozzle of.
Through adopting above-mentioned technical scheme, splice into the ring form with first stationary half ring and second stationary half ring to enclose on the outer peripheral face of trunk, then through fixing bolt, fix first stationary half ring and second stationary half ring at the trunk from the 2/3 departments that make progress down. The first stationary half ring and the second stationary half ring are prevented from falling off the trunk. At the moment, the peripheral water pipe is positioned at the periphery of the branches and leaves of the trees. And then, the internal water pipe is fixedly connected with the first fixed semi-ring, and is inserted into the inner sides of the branches and leaves, so that water can be conveniently sprayed on the branches and leaves on the inner sides. And finally, the water in the water tank is input into a peripheral water pipe by a water pump to supplement water to the peripheral branches and leaves of the trees. And inside water pipe and peripheral water pipe intercommunication, the branch and leaf water spray to the inboard through the water smoke shower nozzle simultaneously, the water smoke shower nozzle increases spray area to spraying water all around, can supply moisture to more branches and leaves. The inner water pipe is matched with the peripheral water pipe, water can be sprayed to the inner side branches and leaves and the peripheral branches and leaves of the tree, the branches and leaves at different positions can be compensated by a water source, water on the branches and leaves of the tree is kept, the survival rate of the tree is improved, and economic benefits are improved.
The utility model discloses further set up to, the intercommunication has a plurality of spray tubes on the outer peripheral face of inside water pipe, and the axis of spray tube along inside water pipe distributes.
Through adopting above-mentioned technical scheme, distribute a plurality of spray tubes in inside water pipe axis direction, spray the water dispersion in the inside water pipe, increase and spray the area, improve the degree of consistency that sprays, make not the branch and leaf of co-altitude can both in time supply moisture, improve the survival rate of trees.
This utility further sets up to, the spray tube is the slope setting, keeps away from the one end tilt up of inside water pipe.
By adopting the technical scheme, the water outlet end of the spray pipe inclines upwards, the sprayed water mist is sprayed upwards in an inclined mode and then is settled downwards, the sprayed water mist is in contact with more branches and leaves, so that the water is supplemented to the branches and leaves, and the survival rate of trees is improved.
The utility model discloses further set up to, set up a plurality of storage tanks that link up from top to bottom on the outer peripheral face of first stationary semi-ring, the vertical card of inside water pipe is gone into in the storage tank, and is connected with the joint subassembly between the storage tank.
Through adopting above-mentioned technical scheme, the storage tank is equipped with a plurality ofly, and inside water pipe passes through the joint subassembly with the storage tank and is connected, is convenient for select the inside water pipe of suitable quantity according to the flourishing degree of trees branch and leaf, under the circumstances of guaranteeing to spray trees comprehensively, and furthest improves the utilization ratio of water resource, reduces the waste of water resource.
The utility model discloses further set up to, the joint subassembly includes fixture block and draw-in groove, and the draw-in groove is seted up at the top surface of first stationary semi-ring, and with the storage tank intercommunication, in the fixture block embedding draw-in groove, the fixture block is with the outer peripheral face fixed connection of inside water pipe.
Through adopting above-mentioned technical scheme, the inside water pipe of horizontal migration imbeds the storage tank with inside water pipe, then moves inside water pipe downwards, goes into the draw-in groove with the fixture block card to with inside water pipe and first stationary semi-ring fixed connection, simple structure, be convenient for realize simultaneously, take off inside water pipe when not using, be convenient for accomodate inside water pipe.
The utility model discloses further set up to, the top of draw-in groove is equipped with the rail that prevents that the fixture block from breaking away from in the draw-in groove, and the one end and the first fixed semi-ring of rail rotate to be connected.
Through adopting above-mentioned technical scheme, go into the draw-in groove with the fixture block card after, rotate the rail, make the rail block in the top of draw-in groove to make rail and fixture block butt, prevent that the fixture block from breaking away from in the draw-in groove, increase the stability nature of inside water pipe, improve and spray efficiency.
The utility model further sets up as, it has first rubber layer to bond on the inner wall of first stationary half ring, and it has the second rubber layer to bond on the inner wall of second stationary half ring.
Through adopting above-mentioned technical scheme, the rubber material is softer, and first rubber layer and second rubber layer and trunk contact can reduce the damage that first stationary semi-ring and second stationary semi-ring led to the fact the trunk to improve the ability of moisturizing of trunk, further improve the survival rate of trees.
The utility model further sets up as, the equal threaded connection in bottom surface of first stationary half ring and second stationary half ring has telescopic support leg, telescopic support leg's bottom and ground butt.
Through adopting above-mentioned technical scheme, telescopic support leg supports first stationary half ring and second stationary half ring, reduces the load that the trunk bore, further reduces the damage that causes the trunk, improves the ability of moisturizing of trunk to improve the survival rate of trees.
To sum up, the utility model discloses following beneficial effect has:
1. the inner water pipe is arranged and matched with the outer water pipe, water can be sprayed to inner branches and leaves and peripheral branches and leaves of the tree, the branches and leaves at different positions can be compensated by a water source, water on the branches and leaves of the tree is kept, the water spray nozzles spray water to the periphery to increase the spray area, water can be supplemented to more branches and leaves, the survival rate of the tree is improved, and economic benefits are improved;
2. the internal water pipes are connected with the first fixed semi-ring through the clamping assembly, so that the internal water pipes with proper quantity are fixed on the first fixed semi-ring according to the luxuriant degree of branches and leaves of the trees, the utilization rate of water resources is improved to the maximum extent under the condition of ensuring the comprehensive spraying of the trees, and the waste of the water resources is reduced;
3. set up first rubber layer, second rubber layer and telescopic support leg and reduce the damage that causes the trunk, improve the ability of moisturizing of trunk, and then improve the survival rate of trees.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic view intended to show the internal water pipes, water mist head, spray pipe and atomizer head;
FIG. 3 is a schematic view of a fixing device and a receiving groove;
FIG. 4 is a schematic diagram intended to show the construction of a telescopic support leg;
figure 5 is a partial schematic view intended to show the snap-in assembly and the balustrade.
Reference numerals: 1. a fixing device; 11. a first stationary half ring; 111. a containing groove; 112. a rail; 113. a first rubber layer; 114. a second rubber layer; 115. a fixing sheet; 12. a second stationary half ring; 13. fixing the bolt; 2. a peripheral water pipe; 21. a water pump; 22. opening and closing the valve; 23. an atomizing spray head; 24. a converging tube; 25. a hose; 3. a water tank; 4. an internal water tube; 41. a water mist spray head; 42. a nozzle; 5. a clamping assembly; 51. a clamping block; 52. a card slot; 6. a telescopic support leg; 61. a telescopic sleeve; 62. a telescopic leg; 7. a ground surface; 8. and (4) trees.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
An auxiliary spraying system for planting tree species is combined with a drawing 1 and a drawing 2, and comprises a fixing device 1 arranged on a trunk, wherein the fixing device 1 is connected with a peripheral water pipe 2, and the peripheral water pipe 2 is positioned on the outer side of branches and leaves. The peripheral water pipe 2 is connected with a water tank 3, and a water pump 21 is arranged between the water tank 3 and the peripheral water pipe 2. The peripheral water pipe 2 is fixedly connected with a switch valve 22. Fixing device 1 still is connected with inside water pipe 4, and the one end and the peripheral water pipe 2 intercommunication of inside water pipe 4, the other end stretch into the inboard of branch and leaf, sprays the water smoke to inside branch and leaf.
The water pump 21 inputs the water in the water tank 3 to the peripheral water pipe 2, sprays water mist to the branches and leaves through the peripheral water pipe 2, and simultaneously the inner water pipe 4 sprays water mist to the branches and leaves inside. So that the branches and leaves at different positions can supplement water in time.
As shown in fig. 3, the fixing assembly includes a first stationary half ring 11, a second stationary half ring 12 and a fixing bolt 13, the first stationary half ring 11 is in a semi-circular shape, and a first rubber layer 113 is adhered to an inner wall of the first stationary half ring 11 and is engaged with the first stationary half ring. The second stationary half ring 12 is in the shape of a semi-circular ring having the same diameter as the first stationary half ring 11, and a second rubber layer 114 is bonded to the inner wall of the second stationary half ring 12. The first stationary half ring 11 and the second stationary half ring 12 are spliced into a circular ring shape and are arranged around the outer peripheral surface of the trunk.
As shown in fig. 3, a horizontal fixing piece 115 is provided at the junction of the first stationary half ring 11 and the second stationary half ring 12, one end of the fixing piece 115 is fixedly connected to the top surface of the first stationary half ring 11, and the other end abuts against the top surface of the second stationary half ring 12. The fixing bolt 13 is threaded to the second stationary half ring 12 after passing through the fixing plate 115.
As shown in fig. 4, the bottom surface of the first stationary half ring 11 is threadedly coupled with the telescopic support legs 6. The telescopic support leg 6 comprises a telescopic sleeve 61 and a telescopic leg 62, the top end of the telescopic sleeve 61 is in threaded connection with the first fixed semi-ring 11, the telescopic leg 62 is located inside the telescopic sleeve 61 and in threaded connection with the telescopic sleeve 61, and the length of the telescopic support leg 6 is adjusted through the telescopic leg 62 and the telescopic leg 62 in threaded connection. The bottom surface of the second stationary half ring 12 is screwed with the telescopic support legs 6 identical to the above-mentioned telescopic support legs 6.
The first stationary half ring 11 and the second stationary half ring 12 are arranged around the surface of the trunk at a height 2/3 from bottom to top. Then, the fixing bolt 13 is vertically inserted through the fixing plate 115 and then threadedly coupled to the second stationary half ring 12, thereby fixing the first and second stationary half rings 11 and 12 to the trunk. Then, the telescopic legs 62 are rotated to bring the bottom ends of the telescopic legs 62 into contact with the ground 7, thereby supporting the first stationary half ring 11 and the second stationary half ring 12.
Referring back to fig. 2, the first stationary half ring 11 is connected with two peripheral water pipes 2 and arranged along the arc length direction of the first stationary half ring 11. The peripheral water pipe 2 is made of stainless steel and has an arc-shaped structure, one end of the peripheral water pipe 2 is fixedly connected with the circumferential surface of the first stationary half ring 11, and the other end of the peripheral water pipe is bent towards the direction close to the branches and leaves. The peripheral water pipe 2 is fixedly connected with a switch valve 22. The peripheral water pipe 2 is connected with an atomizing nozzle 23, and the atomizing nozzle 23 faces the direction of the branches and leaves. The plurality of atomizing spray heads 23 are arranged along the arc length direction of the peripheral water pipe 2.
As shown in fig. 2, two peripheral water pipes 2 identical to the peripheral water pipes 2 of the first stationary half ring 11 are connected to the second stationary half ring 12.
With reference to fig. 1 and 2, the bottom end of each peripheral water pipe 2 is communicated with a hose 25, the hose 25 is communicated with a gathering pipe 24, the gathering pipe 24 is communicated with the water tank 3, and the water pump 21 is fixedly connected with the gathering pipe 24. The converging tube 24 communicates with the water tank 3.
The water pump 21 pumps water in the water tank 3 into the gathering pipe 24, and then the water passes through the hose 25 and reaches the peripheral water pipe 2, and then water mist is sprayed to peripheral branches and leaves through the atomizing nozzle 23, so that the water retention capacity of the peripheral branches and leaves is improved.
As shown in fig. 5, a plurality of through-going receiving grooves 111 are formed in the circumferential surface of the first stationary half ring 11, and the receiving grooves 111 are uniformly arranged at intervals along the circumferential direction of the first stationary half ring 11. The second stationary half ring 12 is formed with an accommodating groove 111 identical to that of the first stationary half ring 11. The inner water pipe 4 is vertically embedded in the containing groove 111, and a clamping assembly 5 is arranged between the inner water pipe and the containing groove 111.
As shown in fig. 5, the clamping assembly 5 includes two clamping grooves 52 and two clamping grooves 51, 52 are formed on the top surface of the first stationary half ring 11, and are respectively located on two sides of the length direction of the receiving groove 111. The card slot 52 communicates with the receiving groove 111. Two clamping blocks 51 are arranged, the two clamping blocks 51 are respectively embedded in the two clamping grooves 52, and the clamping blocks 51 are fixedly connected with the outer peripheral surface of the inner water pipe 4. At this time, the inner water pipe 4 is inserted into the receiving groove 111.
As shown in fig. 5, a bar 112 for preventing the latch 51 from being separated from the latch groove 52 is disposed above the latch groove 52, the bar 112 is disposed right above the latch groove 52, and one end of the bar 112 is rotatably connected to the first stationary half ring 11, and the rotation axis is vertical. After the latch 51 is engaged with the engaging groove 52, one end of the rail 112 away from the rotation axis abuts against the latch 51.
Referring back to fig. 2, the inner water pipe 4 is made of stainless steel, and a switching valve 22 is fixedly connected to the inner water pipe 4. The bottom end of the inner water pipe 4 is communicated with a hose 25, and the hose 25 is communicated with the convergence pipe 24.
As shown in fig. 2, a water mist nozzle 41 is connected to the top end of the inner water pipe 4. The plurality of water mist nozzles 41 are arranged at regular intervals in the circumferential direction of the inner water pipe 4. The water spray direction of the water spray nozzle 41 is the horizontal direction, and the water is sprayed in the direction far away from the inner water pipe 4. A plurality of spray pipes 42 are communicated with the outer peripheral surface of the inner water pipe 4, and the spray pipes 42 are uniformly distributed along the axial direction of the inner water pipe 4 at intervals. The nozzle 42 is inclined and the end of the nozzle 42 remote from the inner water tube 4 is inclined upwardly.
The inner water tube 4 is held by hand and is inserted into the receiving groove 111. And then moves downward to click the click 51 into the click groove 52. Then, the rail 112 is rotated to bring the rail 112 into contact with the top surface of the latch 51, thereby preventing the latch 51 from being disengaged from the notch 52. Finally, the water pump 21 pumps the water in the water tank 3 into the converging pipe 24, the water passes through the hose 25 and then reaches the inner water pipe 4, and the water mist is sprayed to the inner branches and leaves through the spray pipe 42 and the water mist nozzle 41, so that the water retention capacity of the inner branches and leaves is improved.
The utility model discloses a use as follows:
when water is sprayed to the planted branches and leaves, first, the first stationary half ring 11 and the second stationary half ring 12 are fixed to the trunk by the fixing bolt 13, and the extendable legs 62 are rotated to bring the extendable legs 62 into contact with the ground 7. Then, the internal water pipe 4 is held by hand, the internal water pipe 4 is inserted into the receiving groove 111, and the latch 51 is engaged with the engaging groove 52, and then the rail 112 is rotated to make the rail 112 abut against the top surface of the latch 51. Then, open switch 22 on peripheral water pipe 2 and the inside water pipe 4, start water pump 21, spray the water in the water tank 3 on the branch and leaf through inside water pipe 4 and peripheral water pipe 2, make the branch and leaf homoenergetic of different positions in time supply moisture, provide the survival rate of trees 8.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment without inventive contribution as required after reading the present specification, but all of them are protected by patent laws within the scope of the claims of the present invention.

Claims (8)

1. The utility model provides a tree species is planted and is used supplementary water-spraying system, is including setting up fixing device (1) on the trunk, and fixing device (1) is connected with peripheral water pipe (2) to the peripheral branch and leaf water spray of tree (8), and peripheral water pipe (2) are connected with water tank (3), are connected with water pump (21), its characterized in that between peripheral water pipe (2) and water tank (3): the fixing device (1) comprises a first fixed half ring (11), a second fixed half ring (12) and a fixing bolt (13), the first fixed half ring (11) and the second half ring are encircled to form a ring and sleeved on a trunk, the first fixed half ring (11) and the second fixed half ring (12) are fixedly connected through the fixing bolt (13), an internal water pipe (4) which sprays water to the inside of branches and leaves of a tree (8) is detachably connected to the first fixed half ring (11), the internal water pipe (4) is communicated with a peripheral water pipe (2), and a water mist spray head (41) which sprays water to the periphery is connected to the top end of the internal water pipe (4).
2. The auxiliary spraying system for planting tree species of claim 1, wherein: the outer peripheral surface of the inner water pipe (4) is communicated with a plurality of spray pipes (42), and the spray pipes (42) are distributed along the axis of the inner water pipe (4).
3. The auxiliary spraying system for planting tree species as claimed in claim 2, wherein: the spray pipe (42) is arranged in an inclined way, and one end far away from the inner water pipe (4) is inclined upwards.
4. The auxiliary spraying system for planting tree species of claim 1, wherein: a plurality of vertically through accommodating grooves (111) are formed in the outer peripheral surface of the first fixed half ring (11), the inner water pipe (4) is vertically clamped into the accommodating grooves (111), and a clamping assembly (5) is connected between the inner water pipe and the accommodating grooves (111).
5. The auxiliary spraying system for planting tree species as claimed in claim 4, wherein: the clamping assembly (5) comprises a clamping block (51) and a clamping groove (52), the clamping groove (52) is formed in the top surface of the first fixed half ring (11) and communicated with the containing groove (111), the clamping block (51) is embedded into the clamping groove (52), and the clamping block (51) is fixedly connected with the outer peripheral surface of the inner water pipe (4).
6. The auxiliary spraying system for planting tree species of claim 5, wherein: a rail (112) for preventing the clamping block (51) from being separated from the clamping groove (52) is arranged above the clamping groove (52), and one end of the rail (112) is rotatably connected with the first stationary half ring (11).
7. The auxiliary spraying system for planting tree species of claim 1, wherein: a first rubber layer (113) is bonded on the inner wall of the first stationary half ring (11), and a second rubber layer (114) is bonded on the inner wall of the second stationary half ring (12).
8. The auxiliary spraying system for planting tree species of claim 1, wherein: the bottom surfaces of the first fixed half ring (11) and the second fixed half ring (12) are in threaded connection with telescopic supporting legs (6), and the bottom ends of the telescopic supporting legs (6) are abutted to the ground (7).
CN201921693657.5U 2019-10-10 2019-10-10 Auxiliary spraying system for planting tree seeds Active CN210987477U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921693657.5U CN210987477U (en) 2019-10-10 2019-10-10 Auxiliary spraying system for planting tree seeds

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921693657.5U CN210987477U (en) 2019-10-10 2019-10-10 Auxiliary spraying system for planting tree seeds

Publications (1)

Publication Number Publication Date
CN210987477U true CN210987477U (en) 2020-07-14

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Application Number Title Priority Date Filing Date
CN201921693657.5U Active CN210987477U (en) 2019-10-10 2019-10-10 Auxiliary spraying system for planting tree seeds

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112243838A (en) * 2020-10-14 2021-01-22 北京兴科绿源绿化工程有限公司 Mountain area nursery stock system of watering

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112243838A (en) * 2020-10-14 2021-01-22 北京兴科绿源绿化工程有限公司 Mountain area nursery stock system of watering

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