An automatic watering and moisturizing device for flower planting
By installing a carrying container and a flexible connecting pipe on the main body of the automatic waterer, the problems of low water pumping efficiency and suspended pipes caused by the height of the water bucket are solved, achieving a highly efficient and stable watering and moisturizing effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YINCHUAN HUAMILI FLOWER CO LTD
- Filing Date
- 2025-07-21
- Publication Date
- 2026-07-31
AI Technical Summary
Existing automatic watering systems suffer from low pumping efficiency due to the height of the bucket, and the pipes are prone to deformation when suspended, affecting watering stability.
A carrying container and a flexible connecting pipe are installed on the main body of the automatic watering device. The tapered bucket is connected to the support legs to achieve efficient water pumping over short distances. The pipe is prevented from being suspended and deformed when the liquid level drops. A locking block and a threaded bottom pipe are used to ensure a stable water supply.
It improves the pumping efficiency of the automatic watering system, prevents pipe deformation due to drop in liquid level, and ensures the stability and continuity of the watering process.
Smart Images

Figure CN224571964U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of flower planting technology, and in particular to an automatic watering and moisturizing device for flower planting. Background Technology
[0002] Potted flower cultivation refers to planting flowering plants in various containers (such as flowerpots, flower boxes, hanging baskets, etc.) and artificially controlling environmental conditions such as soil, light, water, and nutrients to achieve the growth, flowering, and ornamental value of the flowers. It is one of the important forms of flower cultivation, especially suitable for homes, balconies, windowsills, and corners of courtyards with limited space. When planting potted flowers, an automatic watering device is installed in the soil near the flower using pipes and drip irrigation. The automatic watering device can be controlled to turn on at regular intervals, and then draws water from the container and drips it into the soil through the pipes and drip irrigation system to keep it moist.
[0003] Existing automatic watering devices, when plugged in, can periodically draw water from a container to assist drip irrigation for watering and moisturizing flowers. However, these devices often lack a matching container, forcing gardeners to simply use buckets as water storage when traveling for extended periods. The tall buckets require extended water pipes, resulting in lower pumping efficiency. Furthermore, as the water level drops, the pumping pipes can become suspended and deformed, further affecting pumping efficiency. Therefore, we propose an automatic watering and moisturizing device for flower cultivation. Utility Model Content
[0004] The main objective of this invention is to provide an automatic watering and moisturizing device for flower cultivation. By incorporating a carrying container and a matching flexible hose into the body of an existing automatic watering device, the conical bucket of the carrying container can be secured within a base above the support legs. Subsequently, the water inlet pipe of the automatic watering device body can be connected to a threaded pipe at the bottom of the conical bucket via the flexible hose. When the automatic watering device body is connected to a drip irrigation system for timed automatic watering, it can efficiently pump water over a short distance for automatic watering and moisturizing of flowers. This avoids the pipe lengthening and loss caused by the height of the water bucket, significantly improving its pumping efficiency. Furthermore, the conical bucket structure allows water to be supplied downwards to the flexible hose and the automatic watering device body during the natural drop in liquid level, preventing the pumping pipe of the automatic watering device body from becoming suspended and deformed due to the decrease in liquid level, ensuring a stable and continuous pumping process, and effectively solving the problems in the prior art.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0006] An automatic watering and moisturizing device for flower cultivation includes an automatic waterer body, a flexible connecting pipe, a central ring pipe, a locking pipe block, and a carrying container. The carrying container includes a threaded bottom pipe, a tapered bucket, and a U-shaped handle. A flexible connecting pipe is inserted into the water inlet pipe of the automatic waterer body, and a locking pipe block is press-fitted onto the other end of the flexible connecting pipe away from the automatic waterer body through the central ring pipe. A threaded bottom pipe is screwed into the body of the locking pipe block and press-fitted onto the outside of the central ring pipe. The threaded bottom pipe is interconnected and fixed at the bottom opening of the tapered bucket. A U-shaped handle is fitted onto the outer wall of the upper bucket of the tapered bucket, and a long bolt for screwing onto a flange nut extends through the U-shaped handle and the tapered bucket. A bucket base is fitted onto the outer side of the lower bucket of the tapered bucket. A three-pronged base plate is welded to the base of the bucket base through support legs, and a support plate for supporting the automatic waterer body is welded to one side of the three-pronged base plate.
[0007] Furthermore, the lower part of the middle ring tube passes through the bottom hole of the locking tube block and is inserted and bonded into the flexible tube, and the ring of the middle ring tube is pressed against the bottom wall of the inner cavity of the locking tube block. A gap is reserved between the upper part of the middle ring tube and the locking tube block for screwing in the threaded bottom tube.
[0008] By adopting the above technical solution, the middle ring pipe can be bonded and fixed inside the flexible tube after passing through the locking block, so that the locking block can rotate between the pipe body below the middle ring pipe and the flexible tube, and the locking block can be screwed onto the outside of the threaded bottom pipe.
[0009] Furthermore, a shaft hole for a long rod bolt is provided through the upper bucket of the tapered bucket and the U-shaped lifting handle, and a flange nut is screwed onto the threaded rod of the long rod bolt that passes through the U-shaped lifting handle.
[0010] By adopting the above technical solution, the shaft hole of the tapered bucket and the U-shaped lifting handle can be threaded through the long rod bolt and the flange nut for screwing, so that the U-shaped lifting handle can lift the tapered bucket upwards at the long rod bolt.
[0011] Furthermore, the support legs below the bucket base are vertically grooved, and flexible pipes protrude from the grooves of the support legs.
[0012] By adopting the above technical solution, the flexible connector can be inserted and connected to the water inlet pipe of the automatic watering device body by passing through the groove of the support leg outward.
[0013] Furthermore, a semi-circular support plate is welded between the vertical leg plate of the support leg and the outer end plate of the trident base plate.
[0014] By adopting the above technical solution, after the support leg is reinforced by welding a semi-circular support plate to the three-pronged base plate, an additional support structure is formed by the semi-circular support plate on the outside of the support leg and the three-pronged base plate.
[0015] Furthermore, the surface of the tray plate is provided with a tray, and the housing of the automatic watering device body is inserted into the tray.
[0016] By adopting the above technical solution, the support plate can be used to hold the housing of the automatic watering device body.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] This utility model incorporates a carrying container and a matching flexible hose into the body of an existing automatic watering device. The tapered bucket of the carrying container can be secured in a bucket seat above the support legs. Subsequently, the water inlet pipe of the automatic watering device body can be connected to the threaded pipe at the bottom of the tapered bucket via the flexible hose. When the automatic watering device body is connected to the drip irrigation pipeline for timed automatic watering, the automatic watering device body can efficiently pump water over a short distance for automatic watering and moisturizing of flowers. This avoids the pipeline extension and loss caused by the height of the water bucket, and significantly improves its pumping efficiency.
[0019] Furthermore, the conical bucket structure allows water to be supplied downwards to the flexible connector and the automatic watering device body during the natural drop in liquid level, preventing the water pumping pipe of the automatic watering device body from being suspended and deformed due to the drop in liquid level, thus ensuring a stable and continuous pumping process. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of an automatic watering and moisturizing device for flower planting according to the present invention.
[0021] Figure 2 This is a schematic diagram showing the disassembled cone-shaped bucket and bucket base of an automatic watering and moisturizing device for flower planting according to this utility model.
[0022] Figure 3 This is an exploded view of the carrying container of an automatic watering and moisturizing device for flower planting according to this utility model.
[0023] Figure 4 This is a schematic diagram showing the automatic waterer body, flexible connecting pipe, and support plate of an automatic watering and moisturizing device for flower planting according to this utility model.
[0024] Figure 5 This is a cross-sectional view of the locking pipe block of an automatic watering and moisturizing device for flower planting according to this utility model.
[0025] In the diagram: 1. Automatic watering device body; 2. Flexible connecting pipe; 3. Middle ring pipe; 4. Locking pipe block; 5. Lifting container; 6. Threaded bottom pipe; 7. Tapered bucket; 8. Shaft hole; 9. Long rod bolt; 10. U-shaped lifting handle; 11. Flange nut; 12. Bucket base; 13. Support leg; 14. Three-pronged base plate; 15. Slotted plate; 16. Semi-circular support plate. Detailed Implementation
[0026] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0027] like Figure 1-5 As shown, an automatic watering and moisturizing device for flower cultivation includes an automatic watering unit 1, a flexible connecting pipe 2, a central ring pipe 3, a locking block 4, and a carrying container 5. The carrying container 5 includes a threaded bottom pipe 6, a tapered bucket 7, and a U-shaped handle 10. The flexible connecting pipe 2 is inserted into the water inlet pipe of the automatic watering unit 1, and the other end of the flexible connecting pipe 2 away from the automatic watering unit 1 is press-fitted with the locking block 4 through the central ring pipe 3. A screw thread is screwed into the locking block 4 and pressed onto the outside of the central ring pipe 3. The bottom tube 6 is threaded and fixed to the bottom opening of the tapered bucket 7. The upper bucket wall of the tapered bucket 7 is fitted with a U-shaped lifting handle 10, and a long rod bolt 9 that is screwed to the flange nut 11 extends through the U-shaped lifting handle 10 and the tapered bucket 7. The lower bucket body of the tapered bucket 7 is covered with a bucket seat 12. The base of the bucket seat 12 is welded with a three-pronged base plate 14 through the support leg 13, and a support plate 15 for supporting the automatic watering device body 1 is welded to one side of the three-pronged base plate 14.
[0028] The lower part of the middle ring tube 3 passes through the bottom hole of the locking tube block 4 and is inserted and bonded into the flexible tube 2. The ring of the middle ring tube 3 is pressed against the bottom wall of the inner cavity of the locking tube block 4. A gap is reserved between the upper part of the middle ring tube 3 and the locking tube block 4 for screwing in the threaded bottom tube 6.
[0029] By adopting the above technical solution, the middle ring pipe 3 can be bonded and fixed inside the soft tube 2 after passing through the locking pipe block 4, so that the locking pipe block 4 can rotate between the pipe body below the middle ring pipe 3 and the soft tube 2, and the locking pipe block 4 can be screwed onto the outside of the threaded bottom pipe 6.
[0030] The tapered bucket 7 has a through hole 8 for a long rod bolt 9 to pass through between the upper bucket and the U-shaped handle 10, and the long rod bolt 9 is screwed with a flange nut 11 at the threaded rod of the U-shaped handle 10.
[0031] By adopting the above technical solution, the shaft hole 8 of the tapered bucket 7 and the U-shaped lifting handle 10 can be threaded through the long rod bolt 9 and the flange nut 11 for screwing, so that the U-shaped lifting handle 10 can lift the tapered bucket 7 upward at the long rod bolt 9.
[0032] Among them, the support leg 13 below the bucket 12 has vertical grooves on its surface, and a flexible pipe 2 extends out of the groove of the support leg 13.
[0033] By adopting the above technical solution, the flexible pipe 2 can be inserted and connected to the water inlet pipe of the automatic watering device body 1 by passing through the groove of the support leg 13.
[0034] A semi-circular support plate 16 is welded between the vertical leg plate of the support leg 13 and the outer end plate of the trident base plate 14.
[0035] By adopting the above technical solution, after the support leg 13 is reinforced by welding the semi-circular support plate 16 to the triangular base plate 14, the support leg 13 and the outer side of the triangular base plate 14 form an additional support structure with the semi-circular support plate 16.
[0036] The tray plate 15 has a tray groove on its surface, and the housing of the automatic watering device body 1 is inserted into the tray groove.
[0037] By adopting the above technical solution, the bracket plate 15 can hold the shell of the automatic watering device body 1 in place.
[0038] It should be noted that this utility model is an automatic watering and moisturizing device for flower planting. After setting a carrying container 5 at the automatic watering device body 1, the tapered bucket 7 of the carrying container 5 is equipped with a U-shaped lifting handle 10 by a long bolt 9 and a flange nut 11. Then, the bottom of the tapered bucket 7 is screwed to the locking block 4 by a threaded bottom tube 6, so that the threaded bottom tube 6 passes through the ring body of the middle ring tube 3 and its upper tube body, thereby connecting the threaded bottom tube 6 to the flexible connecting tube 2. Then, the tapered bucket 7 can be locked downwards into the bucket seat 12 above the support leg 13. Subsequently, the other end of the flexible connecting tube 2 can pass through the rib groove of the support leg 13 and pass outwards to the outside of the water inlet pipe of the automatic watering device body 1. Then, the automatic watering device body 1 can... The device is mounted on the tray plate 15. Flower growers can pour irrigation water into the conical hopper 7. Then, the water outlet pipe of the automatic waterer body 1 can be clamped onto the drip irrigation pipeline, so that the drip irrigation structure of the drip irrigation pipeline can be inserted into the flower planting soil. After the automatic waterer body 1 is set to the timed watering time, the automatic waterer body 1 can efficiently pump water from the threaded bottom pipe 6 below the conical hopper 7 through a short pipeline. After pumping water, the automatic waterer body 1 can supply water to the drip irrigation pipeline, thereby realizing automatic watering and moisturizing during flower planting. After the locking block 4 is screwed off from the threaded bottom pipe 6, the U-shaped lifting handle 10 can be held to lift the conical hopper 7 upward from the hopper base 12 and take it to the cleaning pool for cleaning.
[0039] It should be noted that this utility model is an automatic watering and moisturizing device for flower planting. All components in this utility model are known to those skilled in the art, and their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods.
[0040] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. An automatic watering and moisturizing device for flower planting, comprising an automatic waterer body (1), characterized in that: It also includes a flexible connector (2), a central ring pipe (3), a locking block (4), and a carrying container (5). The carrying container (5) includes a threaded bottom pipe (6), a tapered bucket (7), and a U-shaped handle (10). The flexible connector (2) is inserted into the water inlet pipe of the automatic watering device body (1), and the other end of the flexible connector (2) away from the automatic watering device body (1) is press-fitted with a locking block (4) through the central ring pipe (3). The threaded bottom pipe (6) is screwed into the body of the locking block (4) and press-fitted outside the central ring pipe (3). The threaded bottom pipe (6) is interlocked with the central ring pipe (3). The bottom opening of the tapered bucket (7) is fixed. A U-shaped handle (10) is fitted on the outer side of the upper bucket wall of the tapered bucket (7). A long rod bolt (9) that is screwed to the flange nut (11) extends between the U-shaped handle (10) and the tapered bucket (7). A bucket seat (12) is fitted on the outer side of the lower bucket body of the tapered bucket (7). A three-pronged base plate (14) is welded to the base body of the bucket seat (12) through the support leg (13). A support plate (15) for supporting the automatic watering device body (1) is welded to one side of the three-pronged base plate (14).
2. The automatic watering and moisturizing device for flower planting according to claim 1, characterized in that: The lower part of the ring body of the middle ring tube (3) is inserted and bonded into the soft tube (2) through the bottom hole of the locking tube block (4), and the ring body of the middle ring tube (3) is pressed against the bottom wall of the inner cavity of the locking tube block (4). A gap is reserved between the upper part of the ring body of the middle ring tube (3) and the locking tube block (4) for screwing in the threaded bottom tube (6).
3. The automatic watering and moisturizing device for flower planting according to claim 1, characterized in that: A shaft hole (8) for a long rod bolt (9) is provided between the upper bucket of the tapered bucket (7) and the U-shaped handle (10), and a flange nut (11) is screwed onto the threaded rod of the long rod bolt (9) that passes through the U-shaped handle (10).
4. The automatic watering and moisturizing device for flower planting according to claim 1, characterized in that: The support leg (13) below the base (12) has vertical grooves on its surface, and a flexible pipe (2) extends through the groove of the support leg (13).
5. The automatic watering and moisturizing device for flower planting according to claim 1, characterized in that: A semi-circular support plate (16) is welded between the vertical leg plate of the support leg (13) and the outer end plate of the trident base plate (14).
6. The automatic watering and moisturizing device for flower planting according to claim 1, characterized in that: The surface of the tray plate (15) is provided with a tray, and the shell of the automatic watering device body (1) is inserted into the tray.