Chrysanthemum cutting rooting device

By designing a permeable wall and watering pipe, combined with rotating components and humidity sensor control, the problem of uneven watering in the chrysanthemum cutting device was solved, achieving uniform watering and humidity control for chrysanthemum rooting and improving the appropriate humidity of the chrysanthemum growing environment.

CN223600415UActive Publication Date: 2025-11-28TANGSHAN INST OF LANDSCAPE SCI
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Patent Information

Application Number
CN202520208971.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-11-28
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

In existing chrysanthemum cutting rooting devices, water is easily sprayed from the nozzle but has difficulty penetrating the seepage wall, affecting the watering effect.

Method used

The design incorporates a permeable wall and a water pipe, with nozzles positioned along the length of the water pipe and facing the permeable wall. Combined with a rotating component and a humidity sensor, the opening and closing of the water pipe is controlled to achieve water jetting and guidance, ensuring uniform watering.

Benefits of technology

It improves watering efficiency, reduces the probability of chrysanthemums not being watered, avoids adverse watering effects, and ensures a suitable humidity environment for chrysanthemum growth.

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Abstract

The application relates to a chrysanthemum cutting rooting device, belonging to the technical field of gardening tools, which comprises a water-permeable wall in a cylindrical shape and a watering pipe arranged in the water-permeable wall and along the height direction of the water-permeable wall, a plurality of nozzles are arranged on the side wall of the watering pipe and communicate with the interior of the watering pipe along the length direction of the watering pipe, the nozzles are directed towards the water-permeable wall, a base is fixedly connected to the lower side of the water-permeable wall, the lower end of the watering pipe is inserted into the base, and a water supply pipe communicating with the interior of the watering pipe is arranged in the base. The application has the effect of reducing the adverse influence on the watering effect.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of horticultural tools, in particular to a chrysanthemum cutting rooting device. BACKGROUND

[0002] Chrysanthemum is one of the ten famous flowers in China and is deeply loved by the Chinese. The market demand for commodity chrysanthemums such as cut chrysanthemums, potted chrysanthemums and ground cover chrysanthemums is also increasing. Commodity chrysanthemums are mainly propagated through foot bud propagation, and the traditional foot bud propagation is mainly in the form of potting.

[0003] A chrysanthemum cutting rooting device is disclosed in Chinese Patent No. CN213784281U, which comprises two parts of a cutting barrel and a water spraying disc. The cutting barrel is composed of a cutting wall, a cutting hole, a substrate cavity, a water permeable wall and a handle. The cutting wall is made of plastic material. The cutting holes are uniformly arranged on the cutting wall. The substrate cavity is formed by the cutting wall and the water permeable wall. The water permeable wall is in the shape of a cylinder surrounded by a stainless steel mesh. The handle is in the shape of a semicircular ring. The water spraying disc is composed of a water inlet, a non-slip pad, a water permeable hole, a spray head, a bearing disc and a water outlet. The water inlet is a cylindrical stainless steel pipe. There are four non-slip pads. The water permeable hole is circular. The bearing disc is made of hard plastic material. The water outlets are uniformly arranged on the spray head. The device can perform three-dimensional cutting of commodity chrysanthemum foot buds and save space.

[0004] In the related art, water is sprayed from the water outlets on the sidewall of the cylindrical spray head to the substrate cavity through the water permeable wall, which may cause the water to be difficult to pass through the water permeable wall after being sprayed from the water outlets, thereby adversely affecting the watering effect. CONTENT OF THE UTILITY MODEL

[0005] In order to reduce the adverse effect on the watering effect, the application provides a chrysanthemum cutting rooting device.

[0006] The application provides a chrysanthemum cutting rooting device, which adopts the following technical scheme:

[0007] A chrysanthemum cutting rooting device comprises a cylindrical water permeable wall and a watering pipe arranged in the water permeable wall and along the height direction of the water permeable wall. A plurality of nozzles are arranged on the sidewall of the watering pipe and are in communication with the interior of the watering pipe along the length direction of the watering pipe. The nozzles are directed towards the water permeable wall. A base is fixedly connected to the lower side of the water permeable wall. The lower end of the watering pipe is inserted into the base, and a water supply pipe in communication with the interior of the watering pipe is arranged in the base.

[0008] By adopting the above technical scheme, the water supply pipe supplies water to the watering pipe and sprays the water towards the water permeable wall through the nozzles. At this time, the nozzles bundle and guide the water sprayed towards the water permeable wall, which facilitates the water to pass through the water permeable wall and further facilitates watering and reduces the adverse effect on the watering effect.

[0009] Optionally, the lower end of the watering pipe is rotationally connected with the water feeding pipe, the nozzle is located on one side of the length direction of the watering pipe, and the base is provided with a rotating assembly for driving the watering pipe to rotate.

[0010] By adopting the above technical scheme, the water feeding pipe feeds water to the watering pipe, and the rotating assembly drives the watering pipe to rotate at the same time, so that the water passes through the water permeable wall under the action of inertia after leaving the nozzle, thereby further reducing the adverse effect on the watering effect.

[0011] Optionally, the rotating assembly comprises a first gear sleeved on the lower end of the watering pipe and fixedly connected with the watering pipe, a second gear is engaged on one side of the first gear, the first gear and the second gear are located in the base, and the base is provided with a motor for driving the second gear to rotate.

[0012] By adopting the above technical scheme, the motor drives the second gear to rotate, and at this time, the first gear drives the watering pipe to rotate with the second gear, so that the nozzle rotates circumferentially along the watering pipe, thereby facilitating uniform watering of the chrysanthemums inserted in the circumferential direction of the watering pipe and reducing the adverse effect on the watering effect.

[0013] Optionally, the other side of the length direction of the watering pipe is also provided with a plurality of nozzles, and the nozzles on both sides of the watering pipe are staggered along the length direction of the watering pipe.

[0014] By adopting the above technical scheme, the staggered nozzles rotate with the watering pipe, thereby facilitating uniform watering of the water in the length direction of the watering pipe, reducing the possibility that part of the inserted chrysanthemums is not watered, and reducing the adverse effect on the watering effect.

[0015] Optionally, the width of the nozzle in the length direction of the watering pipe gradually increases towards the side close to the water permeable wall.

[0016] By adopting the above technical scheme, the shape of the nozzle makes the spraying range of the water after leaving the nozzle overlap each other, thereby further facilitating uniform watering in the length direction of the watering pipe, reducing the possibility that part of the inserted chrysanthemums is not watered, and reducing the adverse effect on the watering effect.

[0017] Optionally, a cylindrical insertion tube is sleeved on the outside of the water permeable wall and fixedly connected with the base at the lower end, a plurality of insertion holes are formed in the side wall of the insertion tube, a first humidity sensor is arranged at the lower end of the inner side wall of the insertion tube, a second humidity sensor is arranged at the upper end of the inner side wall of the insertion tube, the first humidity sensor and the second humidity sensor are wirelessly connected with the same control host, and the water feeding pipe is provided with a plugging assembly.

[0018] When the first humidity sensor and the second humidity sensor detect that the humidity of the soil is low, an electric signal is sent to the control host, the blocking assembly is driven to open the water delivery pipe, and watering is facilitated through the nozzle.

[0019] Optionally, the blocking assembly comprises a blocking plate located in the water delivery pipe and having a diameter equal to the inner diameter of the water delivery pipe, the blocking plate being rotationally connected to the water delivery pipe, and the water delivery pipe being provided with a driving member for driving the blocking plate to rotate.

[0020] Through the above technical scheme, when the driving member drives the blocking plate to rotate to be perpendicular to the length direction of the water delivery pipe, the water delivery pipe is blocked, and when the blocking plate rotates to be parallel to the length direction of the water delivery pipe, the water delivery pipe is opened, facilitating watering.

[0021] Optionally, the driving member comprises a driving rod perpendicular to the length direction of the water delivery pipe, one end of the driving rod being inserted into the water delivery pipe and fixedly connected to the blocking plate, the upper end of the driving rod being fixedly connected to a third gear, one side of the third gear being engaged with a rack, and the base being provided with a hydraulic cylinder for driving the rack to move and being wirelessly connected to the control host.

[0022] Through the above technical scheme, the hydraulic cylinder is extended or retracted to drive the third gear to rotate through the rack and the driving rod, and at this time, the blocking plate rotates with the driving rod, so as to facilitate the opening or closing of the water delivery pipe and watering.

[0023] In summary, the present application has at least one of the following beneficial technical effects:

[0024] 1. The water delivery pipe delivers water to the watering pipe and sprays the water to the water-permeable wall through the nozzle, at this time, the nozzle bundles and guides the water sprayed to the water-permeable wall, facilitating the water to pass through the water-permeable wall, and further facilitating watering, reducing the adverse effects on watering effect;

[0025] 2. The motor drives the second gear to rotate, at this time, the first gear drives the watering pipe to rotate with the second gear, so that the nozzle rotates along the circumference of the watering pipe, facilitating uniform watering of the chrysanthemums inserted in the circumference of the watering pipe, and reducing the adverse effects on watering effect;

[0026] 3. When the first humidity sensor and the second humidity sensor detect that the humidity of the soil is low, an electric signal is sent to the control host, the blocking assembly is driven to open the water delivery pipe, and watering is facilitated through the nozzle, when the first humidity sensor and the second humidity sensor detect that the humidity of the soil is high, an electric signal is sent to the control host, at this time, the blocking assembly is driven to block the water delivery pipe, reducing the adverse effects of continuous watering on the growth of chrysanthemums. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the overall structure of the chrysanthemum cutting rooting device in the embodiments of this application.

[0028] Figure 2 This is a structural schematic diagram illustrating the positional relationship between the rotating component and the sealing component in an embodiment of this application.

[0029] Explanation of reference numerals in the attached drawings: 1. Cutting tube; 11. Cutting hole; 12. Handle; 13. First humidity sensor; 14. Second humidity sensor; 2. Water seepage wall; 21. Substrate cavity; 3. Base; 31. Water seepage hole; 32. Water supply pipe; 4. Watering pipe; 41. Nozzle; 5. Rotating assembly; 51. First gear; 52. Second gear; 53. Motor; 6. Sealing assembly; 61. Sealing plate; 62. Drive component; 621. Drive rod; 622. Third gear; 623. Rack; 624. Hydraulic cylinder. Detailed Implementation

[0030] The present application will be further described in detail below with reference to the accompanying drawings.

[0031] This application discloses a chrysanthemum cutting rooting device. (Refer to...) Figure 1 A chrysanthemum cutting rooting device includes a vertical, cylindrical cutting tube 1. Multiple evenly distributed cutting holes 11 are formed on the side wall of the cutting tube 1, and a handle 12 is installed on the upper side of the cutting tube 1. A vertical, cylindrical permeable wall 2 is provided inside the cutting tube 1, forming a substrate cavity 21 between the permeable wall 2 and the cutting tube 1, allowing water to pass through the permeable wall 2 to reach the substrate cavity 21.

[0032] Reference Figure 1 and Figure 2 The lower end of the cutting tube 1 is fixedly connected to a horizontal base 3. The lower end of the seepage wall 2 is fixedly connected to the upper side of the base 3. A seepage hole 31 is provided on the base 3 along the edge of the base 3 and corresponding to the matrix cavity 21. Excess water in the matrix cavity 21 is discharged through the seepage hole 31.

[0033] The seepage wall 2 has a vertical, top-sealed water pipe 4 inside. The water pipe 4 is cylindrical, and four nozzles 41 are installed on one side of the water pipe 4, which are arranged vertically and communicate with the inside of the water pipe 4. The nozzles are all horizontally arranged, and the width of the nozzles 41 in the vertical direction gradually increases towards the side closer to the seepage wall 2. On the other side of the water pipe 4, there are three nozzles 41 with the same structure as the nozzles 41 and communicate with the inside of the water pipe 4. The nozzles 41 on both sides of the water pipe 4 are staggered in the vertical direction.

[0034] Reference Figure 2The bottom base 3 is connected with a water feeding pipe 32 on one side, which is horizontal and below the water pouring pipe 4, and one end of the water feeding pipe 32 is outside the bottom base 3, the lower end of the water pouring pipe 4 is inserted into the bottom base 3 and is rotatably connected with the upper side of the water feeding pipe 32, the water feeding pipe 32 is in communication with the water pouring pipe 4, and the bottom base 3 is provided with a rotating assembly 5 for driving the water pouring pipe 4 to rotate.

[0035] When the water feeding pipe 32 feeds water to the water pouring pipe 4, the rotating assembly 5 drives the water pouring pipe 4 to rotate, at this time, the staggered nozzles 41 rotate with the water pouring pipe 4, so that the water is uniformly sprayed in the length direction of the water pouring pipe 4, the nozzles 41 bundle and guide the water sprayed to the water permeable wall 2, and the water penetrates the water permeable wall 2 under the action of inertia after leaving the nozzles 41, which is convenient for watering.

[0036] The shape of the nozzles 41 makes the spraying range of the water after leaving the nozzles 41 overlap each other, which further facilitates uniform spraying in the length direction of the water pouring pipe 4 and reduces the possibility that part of the cut chrysanthemums is not watered.

[0037] Referring to Figure 2 The rotating assembly 5 includes a first gear 51 which is located inside the bottom base 3, is sleeved on the lower end of the water pouring pipe 4 and is fixedly connected with the water pouring pipe 4, one side of the first gear 51 is engaged with a second gear 52 which is rotatably connected with the bottom base 3, and the shaft center of the lower side of the second gear 52 is provided with a motor 53 which is fixedly connected with the bottom base 3.

[0038] The motor 53 drives the second gear 52 to rotate, at this time, the first gear 51 drives the water pouring pipe 4 to rotate with the second gear 52, so that the nozzles 41 rotate circumferentially along the water pouring pipe 4, which is convenient for uniformly watering the chrysanthemums inserted circumferentially around the water pouring pipe 4.

[0039] Referring to Figure 1 and Figure 2 The lower end of the inner wall of the cutting cylinder 1 is provided with a first humidity sensor 13, the upper end of the inner wall of the cutting cylinder 1 is provided with a second humidity sensor 14, the first humidity sensor 13 and the second humidity sensor 14 are wirelessly connected with the same control host (not shown in the figure), and the inside of one end of the water feeding pipe 32 which is outside the bottom base 3 is provided with a plugging assembly 6.

[0040] Referring to Figure 1 and Figure 2 The plugging assembly 6 includes a plugging plate 61 which is vertical and located in the water feeding pipe 32, the diameter of the plugging plate 61 is equal to the inner diameter of the water feeding pipe 32, the plugging plate 61 is rotatably connected with the water feeding pipe 32 in the vertical direction, and the water feeding pipe 32 is provided with a driving piece 62 for driving the plugging plate 61 to rotate. The driving piece 62 includes a driving rod 621 which is vertical and coincides with the rotation axis of the plugging plate 61, and the lower end of the driving rod 621 is inserted into the water feeding pipe 32 and is fixedly connected with the plugging plate 61.

[0041] The upper end of the driving rod 621 is fixedly connected with a horizontal third gear 622, one side of the third gear 622 is engaged with a horizontal rack 623 facing the base 3, and one end of the rack 623 close to the base 3 is provided with a hydraulic cylinder 624 fixedly connected with the base 3 and wirelessly connected with the control host.

[0042] When the first humidity sensor 13 and the second humidity sensor 14 detect that the humidity of the soil is low, an electric signal is sent to the control host, the control host drives the hydraulic cylinder 624 to drive the blocking plate 61 to rotate to be parallel to the length direction of the water supply pipe 32 through the rack 623 and the third gear 622, so as to open the water supply pipe 32, and facilitate watering through the nozzle 41.

[0043] When the first humidity sensor 13 and the second humidity sensor 14 detect that the humidity of the soil is moderate, an electric signal is sent to the control host, at this time the control host drives the hydraulic cylinder 624 to drive the blocking plate 61 to rotate to be perpendicular to the length direction of the water supply pipe 32 through the rack 623 and the third gear 622, so as to block the water supply pipe 32, and reduce the adverse effect of continuous watering on the growth of chrysanthemums.

[0044] The implementation principle of the chrysanthemum cutting rooting device in the embodiment of the application is that the water supply pipe 32 supplies water to the watering pipe 4 while driving the watering pipe 4 to rotate, at this time the staggered nozzles 41 rotate with the watering pipe 4, so as to facilitate uniform spraying of water in the length direction of the watering pipe 4, the nozzles 41 beam and guide the water sprayed to the water permeable wall 2, and the water penetrates the water permeable wall 2 under the action of inertia after leaving the nozzles 41, so as to facilitate watering.

[0045] The above are preferred embodiments of the application, and do not limit the protection scope of the application, so: any equivalent changes made on the basis of the structure, shape, principle of the application should be covered in the protection scope of the application.

Claims

1. A chrysanthemum cutting rooting device, characterized by: The invention discloses a water seepage wall (2) and a watering pipe (4) arranged in the water seepage wall (2) and along the height direction of the water seepage wall (2), a plurality of nozzles (41) are arranged on the side wall of the watering pipe (4) and communicate with the inside of the watering pipe (4), the nozzles (41) are arranged along the length direction of the watering pipe (4) and face the water seepage wall (2), the lower side of the water seepage wall (2) is fixedly connected with a base (3), the lower end of the watering pipe (4) is inserted into the base (3), and the base (3) is provided with a water supply pipe (32) which communicates with the inside of the watering pipe (4).

2. The chrysanthemum cutting rooting device according to claim 1, characterized in that: The lower end of the watering pipe (4) is rotationally connected with the water supply pipe (32), the nozzles (41) are arranged on one side of the length direction of the watering pipe (4), and the base (3) is provided with a rotating assembly (5) for driving the watering pipe (4) to rotate.

3. The chrysanthemum cutting rooting device according to claim 2, characterized in that: The rotating assembly (5) comprises a first gear (51) which is sleeved on the lower end of the watering pipe (4) and fixedly connected with the watering pipe (4), one side of the first gear (51) is engaged with a second gear (52), the first gear (51) and the second gear (52) are arranged in the base (3), and the base (3) is provided with a motor (53) for driving the second gear (52) to rotate.

4. The chrysanthemum cutting rooting device according to claim 3, characterized in that: The other side of the length direction of the watering pipe (4) is also provided with a plurality of nozzles (41), and the nozzles (41) on both sides of the watering pipe (4) are arranged staggered along the length direction of the watering pipe (4).

5. The device for rooting chrysanthemum cuttings according to claim 4, wherein: The width of the nozzles (41) in the length direction of the watering pipe (4) gradually increases towards the side close to the water seepage wall (2).

6. The chrysanthemum cutting rooting device according to claim 5, characterized in that: A cutting cylinder (1) is sleeved on the outside of the water seepage wall (2), the cutting cylinder (1) is cylindrical and the lower end thereof is fixedly connected with the base (3), a plurality of cutting holes (11) are formed in the side wall of the cutting cylinder (1), the lower end of the inner side wall of the cutting cylinder (1) is provided with a first humidity sensor (13), the upper end of the inner side wall of the cutting cylinder (1) is provided with a second humidity sensor (14), the first humidity sensor (13) and the second humidity sensor (14) are wirelessly connected with the same control host, and the water supply pipe (32) is provided with a blocking assembly (6).

7. The chrysanthemum cutting rooting device according to claim 6, characterized in that: The blocking assembly (6) comprises a blocking plate (61) which is arranged in the water supply pipe (32) and has a diameter equal to the inner diameter of the water supply pipe (32), the blocking plate (61) is rotationally connected with the water supply pipe (32), and the water supply pipe (32) is provided with a driving piece (62) for driving the blocking plate (61) to rotate.

8. The chrysanthemum cutting rooting device according to claim 7, characterized in that: The driving piece (62) comprises a driving rod (621) which is perpendicular to the length direction of the water supply pipe (32), one end of the driving rod (621) is inserted into the water supply pipe (32) and fixedly connected with the blocking plate (61), the upper end of the driving rod (621) is fixedly connected with a third gear (622), one side of the third gear (622) is engaged with a rack (623), and the base (3) is provided with a hydraulic cylinder (624) for driving the rack (623) to move and wirelessly connected with the control host.

Citation Information

Patent Citations

  • Chrysanthemum cutting rooting device

    CN213784281U