A rotary orchid irrigation device

By using a rotating connection design of the connecting rod and the magnetic suction clamping plate structure, the problem of simultaneous disassembly and assembly of multiple flowerpots in a rotary orchid irrigation device is solved, achieving efficient and convenient flowerpot operation and uniform irrigation.

CN224538922UActive Publication Date: 2026-07-24GUANGZHOU LEYOU AGRICULTURAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU LEYOU AGRICULTURAL TECHNOLOGY CO LTD
Filing Date
2025-09-09
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing rotary orchid irrigation devices lack the function of simultaneous disassembly and assembly when operating multiple flowerpots, resulting in cumbersome handling procedures.

Method used

The design employs a rotating connection between the connecting rod and the connecting rod. The magnetic attraction between the first and second clamping plates enables the simultaneous clamping and individual placement of multiple flower pots. Combined with the rotating mechanism and the irrigation mechanism, it achieves efficient operation of multiple flower pots.

Benefits of technology

It enables simultaneous disassembly and irrigation of multiple flowerpots, significantly improving ease of operation and efficiency, and ensuring the smoothness of the rotation process and uniform irrigation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rotary orchid irrigation device, specifically relates to orchid irrigation technical field, including rotary connecting frame, and the both ends symmetrical installation of rotary connecting frame have carousel, be provided with a plurality of first clamping plates between two carousels, and a plurality of connecting rods are installed to the side of carousel close to first clamping plate, and the top of first clamping plate is installed with two first link rods. The utility model discloses through handle outwardly pull, make first clamping plate and second clamping plate swing open around the rotary joint of first link rod, second link rod and connecting rod, first magnetic attraction piece and second magnetic attraction piece separate, and the fixed groove formed by first semicircular groove and second semicircular groove opens, put a plurality of orchid pots into the groove, and push handle inwardly, and clamping plate closes, and magnetic attraction piece and attract, and flowerpot is clamped in closed slot hole, realizes the synchronous installation of multiple flowerpot, and when taking out, reversely operating handle opens clamping plate and synchronously unloads all flowerpot, or only opens specific clamping plate group partial dismounting, realized the function of multiple flowerpot synchronous dismounting.
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Description

Technical Field

[0001] This utility model relates to the field of orchid irrigation technology, and more specifically, to a rotary orchid irrigation device. Background Technology

[0002] The rotary orchid irrigation device is an intelligent watering device designed specifically for orchid care. Its core features are divided into two types: one is to achieve 360-degree uniform and gentle water spraying through a rotating nozzle or watering arm; the other is to place orchid pots through a rotating frame, which can reduce the footprint and irrigate the orchids comprehensively by spraying water from top to bottom when the frame rotates, thus balancing water conservation and convenience.

[0003] Common rotating orchid irrigation devices can only prevent the orchid pots from rotating during irrigation, but they lack the function of simultaneous disassembly and assembly of multiple pots. In practical applications, multiple orchid pots need to be placed into individual limiting slots on the frame, and when removing the flowers, each orchid pot also needs to be removed from its individual limiting slot. This makes the process of removing and placing orchid pots very cumbersome, ultimately reducing the convenience of removing and placing multiple pots.

[0004] In summary, to facilitate the handling of multiple flower pots, it is necessary to solve the problem of the inability to disassemble and assemble multiple flower pots simultaneously, so that multiple orchid pots can be disassembled and assembled at the same time, or a single or a specified number of orchid pots can be disassembled and assembled individually. Utility Model Content

[0005] The present invention provides a rotary orchid irrigation device, which aims to solve the problem that multiple orchid pots need to be placed into or removed from a separate limiting groove on the frame, which makes the process of taking or removing orchid pots very cumbersome.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a rotary orchid irrigation device, comprising a rotary connecting frame, with turntables symmetrically installed at both ends of the rotary connecting frame, a plurality of first clamping plates disposed between the two turntables, a plurality of connecting rods installed on the side of the turntables near the first clamping plates, two first connecting rods installed on the top of the first clamping plates, the first connecting rods being rotatably connected to the connecting rods, two first magnetic blocks symmetrically installed at both ends of the first clamping plates, a plurality of first semi-circular grooves formed on the surface of the first clamping plates, and a plurality of second clamping plates disposed between the two turntables, with symmetrically installed... There are two second magnetic blocks, and the first and second magnetic blocks are magnetically attracted to each other. A second connecting rod is installed on the top of the second magnetic block, and the second connecting rod is rotatably connected to the connecting rod. Multiple second semi-circular grooves are opened on the surface of the second clamping plate. Handles are installed on the surfaces of the first and second clamping plates. A rotating mechanism is provided on the rotating connecting frame, and the output end of the rotating mechanism is connected to the rotating connecting frame. The rotating mechanism is used to control the rotation of the turntable. An irrigation mechanism is provided on the rotating mechanism, and the output end of the irrigation mechanism faces the first and second clamping plates. The irrigation mechanism is used to irrigate the orchids.

[0007] In a preferred embodiment, the rotating mechanism includes a drive component and a balancing component. The output end of the drive component is connected to the rotating connecting frame, and the drive component is used to control the rotational movement of the rotating connecting frame. The input end of the balancing component is connected to the rotating connecting frame driven by the drive component, and the balancing component is used to maintain the stability of the rotating connecting frame during rotation.

[0008] In a preferred embodiment, the drive assembly includes a base box disposed below the rotating connecting frame, a right side frame mounted on the right side of the base box, and a motor mounted on the right side of the right side frame. The output end of the motor is fixedly connected to the rotating connecting frame, and the motor is used to control the rotational movement of the rotating connecting frame.

[0009] In a preferred embodiment, the balancing assembly includes a left side frame mounted on the left side of the base box and a rotating shaft rotatably connected to the right side of the left side frame, the rotating shaft being fixedly connected to the rotating connecting frame.

[0010] In a preferred embodiment, the irrigation mechanism includes a water inlet component and a water spraying component. The output end of the water inlet component is connected to the water spraying component, and the water inlet component is used to access external irrigation water. The input end of the water spraying component is connected to the water inlet component, and the water spraying component is used to irrigate the orchids.

[0011] In a preferred embodiment, the water inlet assembly includes a support plate mounted on the top of the left side frame and a water pipe connector mounted on the left side of the support plate.

[0012] In a preferred embodiment, the water spray assembly includes a water distribution pipe mounted on the right side of the support plate and a plurality of irrigation nozzles mounted on the surface of the water distribution pipe.

[0013] The beneficial effects of this utility model are as follows:

[0014] This utility model uses a rotating connection design between the connecting rod and the connecting rod to allow the two clamping plates to open and close freely. When the two clamping plates are closed, the multiple semi-circular grooves can form multiple circular grooves to clamp multiple flower pots. This allows for the simultaneous disassembly and assembly of all flower pots, as well as the flexible handling of specific flower pots, greatly improving operational convenience and significantly increasing the efficiency of batch operations. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0016] Figure 2 This is a schematic diagram of the rotating mechanism of this utility model.

[0017] Figure 3 This is a schematic diagram of the irrigation mechanism of this utility model.

[0018] Figure 4 This is a schematic diagram of the rotating connecting frame structure of this utility model.

[0019] Figure 5 This is an exploded view of the multi-flowerpot synchronous disassembly and assembly component of this utility model.

[0020] The attached figures are labeled as follows: 1. Rotating connecting frame; 11. Turntable; 12. Connecting rod; 13. First clamping plate; 14. First connecting rod; 15. First magnetic block; 16. First semi-circular groove; 17. Second clamping plate; 18. Second magnetic block; 19. Second connecting rod; 20. Second semi-circular groove; 21. Handle; 311. Base box; 312. Right side frame; 313. Motor; 321. Left side frame; 322. Rotating shaft; 411. Support plate; 412. Water pipe connector; 421. Water distribution pipe; 422. Irrigation nozzle. Detailed Implementation

[0021] The present application will now be described in further detail with reference to the accompanying drawings. It should be noted that the following specific embodiments are only used to further illustrate the present application and should not be construed as limiting the scope of protection of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application based on the above application content.

[0022] Refer to the instruction manual appendix Figures 1 to 5A rotary orchid irrigation device includes a rotary connecting frame 1. Rotary discs 11 are symmetrically mounted at both ends of the rotary connecting frame 1. Multiple first clamping plates 13 are disposed between the two rotating discs 11. Multiple connecting rods 12 are mounted on the side of each rotating disc 11 near the first clamping plate 13. Two first connecting rods 14 are mounted on the top of each first clamping plate 13, and the first connecting rods 14 are rotatably connected to the connecting rods 12. Two first magnetic blocks 15 are symmetrically mounted at both ends of each first clamping plate 13. Multiple first semi-circular grooves 16 are formed on the surface of each first clamping plate 13. Multiple second clamping plates 17 are disposed between the two rotating discs 11, and two second magnetic blocks are symmetrically mounted at both ends of each second clamping plate 17. 18. The first magnetic block 15 and the second magnetic block 18 are magnetically attracted to each other. The top of the second magnetic block 18 is equipped with a second connecting rod 19, which is rotatably connected to the connecting rod 12. The surface of the second clamping plate 17 is provided with multiple second semi-circular grooves 20. The surfaces of the first clamping plate 13 and the second clamping plate 17 are both equipped with handles 21. A rotating mechanism is provided on the rotating connecting frame 1. The output end of the rotating mechanism is connected to the rotating connecting frame 1. The rotating mechanism is used to control the rotation of the turntable 11. An irrigation mechanism is provided on the rotating mechanism. The output end of the irrigation mechanism faces the first clamping plate 13 and the second clamping plate 17. The irrigation mechanism is used to irrigate the orchids.

[0023] It should be noted that the rotating connecting frame 1 constitutes the core framework of the device. The key is that the first clamping plate 13 and the second clamping plate 17 are not fixedly connected to the connecting rod 12, but are rotatably connected to the connecting rod 12 through the first connecting rod 14 and the second connecting rod 19, respectively. This design allows the first clamping plate 13 and the second clamping plate 17 to swing around their connection point with the connecting rod 12, thereby keeping the flowerpot in an upright position. The first clamping plate 13 has a first magnetic block 15 fixed at both ends, and the second clamping plate 17 has a second magnetic block 18 fixed at both ends. When the first clamping plate 13 and the second clamping plate 17 are in the closed state, the first magnetic block 15 and the second magnetic block 18 at the corresponding positions are magnetically attracted to each other, tightly fixing the two clamping plates together. At this time, the first semi-circular groove 16 on the first clamping plate 13 and the second semi-circular groove 20 on the second clamping plate 17 cooperate with each other to form a complete circular slot for clamping the orchid pot. Multiple such slots are arranged along the length of the clamping plate, which can fix multiple flowerpots at the same time.

[0024] It is worth noting that each of the first clamping plates 13 and the second clamping plate 17 is equipped with a handle 21. By gripping and pulling outward or pushing inward, the operator can simultaneously drive the first clamping plate 13 or the second clamping plate 17 to open and close around the rotational connection point between its first connecting rod 14 and the second connecting rod 19 and the connecting rod 12. When it is necessary to load or unload all flower pots on the same clamping plate group, simply operate the handle 21 of that clamping plate group to simultaneously open or close all the fixing slots on that clamping plate group, realizing the simultaneous loading and unloading of multiple flower pots at one time. It is also possible to remove or load a flower pot individually from multiple flower pots, which greatly simplifies the steps of operating multiple flower pots.

[0025] Refer to the instruction manual appendix Figures 1 to 2 The rotating mechanism includes a drive component and a balancing component. The output end of the drive component is connected to the rotating connecting frame 1. The drive component is used to control the rotational movement of the rotating connecting frame 1. The input end of the balancing component is connected to the rotating connecting frame 1 driven by the drive component. The balancing component is used to maintain the stability of the rotating connecting frame 1 during rotation.

[0026] It should be noted that the drive component is the core that provides rotational power. The motor 313 serves as the power source, and its output shaft is directly fixedly connected to the rotating connecting frame 1. When the motor 313 is started, its rotational torque is directly transmitted to the rotating connecting frame 1. The rotating connecting frame 1 drives the flowerpot held by the first clamping plate 13 and the second clamping plate 17 to rotate around the central axis through the turntable 11.

[0027] Refer to the instruction manual appendix Figure 2 The drive assembly includes a base box 311 located below the rotating connecting frame 1, a right side frame 312 mounted on the right side of the base box 311, and a motor 313 mounted on the right side of the right side frame 312. The output end of the motor 313 is fixedly connected to the rotating connecting frame 1, and the motor 313 is used to control the rotational movement of the rotating connecting frame 1.

[0028] It should be noted that the base box 311 serves as the foundation of the entire device, providing stable support. The right side frame 312 is fixed to the right side of the base box 311 and is used to install and support the motor 313. This layout places the power input point on the right side of the device.

[0029] Refer to the instruction manual appendix Figure 2 The balancing assembly includes a left side frame 321 mounted on the left side of the base box 311 and a rotating shaft 322 rotatably connected to the right side of the left side frame 321. The rotating shaft 322 is fixedly connected to the rotating connecting frame 1.

[0030] It should be noted that since the drive is input from the right side, the rotating connecting frame 1 may generate unbalanced torque or vibration during rotation. The role of the balancing component is to provide support and rotational freedom on the left side to ensure smooth rotation. The left side frame 321 is fixed to the left side of the base box 311. One end of the rotating shaft 322 is rotatably connected to the left side frame 321 through a bearing or other structure, and the other end is fixedly connected to the rotating connecting frame 1. In this way, the left side of the rotating connecting frame 1 can rotate freely on the left side frame 321 through the rotating shaft 322, forming a stable two-point support, which effectively counteracts the eccentric force of the single-sided drive and ensures the smoothness and low noise of the rotation process.

[0031] Refer to the instruction manual appendix Figures 1 to 3 The irrigation system includes a water inlet assembly and a water spray assembly. The output end of the water inlet assembly is connected to the water spray assembly. The water inlet assembly is used to access external irrigation water. The input end of the water spray assembly is connected to the water inlet assembly. The water spray assembly is used to irrigate the orchids.

[0032] It should be noted that the support plate 411 fixes the irrigation mechanism on the left side frame 321, ensuring that the relative position between the water spraying component and the rotating flower pot component is stable and unaffected by rotation, thus ensuring accurate water spraying position.

[0033] It is worth noting that the irrigation nozzle 422 preferably uses an atomizing nozzle or a drip nozzle to provide a gentle, uniform, and water-saving spraying effect, avoiding excessive water flow that could impact the orchid plant or potting soil.

[0034] Refer to the instruction manual appendix Figure 3 The water inlet assembly includes a support plate 411 mounted on the top of the left side frame 321 and a water pipe connector 412 mounted on the left side of the support plate 411.

[0035] It should be noted that the support plate 411 is fixedly installed on the top of the left side frame 321 of the balancing assembly, providing a stable installation platform. The water pipe connector 412 is installed on the left side of the support plate 411 for connecting an external water supply hose. The water pipe connector 412 is preferably a standard quick connector or a threaded interface, which is convenient for connecting with commonly used water pipes. Irrigation water is input into the water pipe connector 412 through an external water supply device, and then the irrigation water is input into the distribution pipe 421 through the water pipe connector 412.

[0036] Refer to the instruction manual appendix Figure 3 The water spray assembly includes a water distribution pipe 421 mounted on the right side of the support plate 411 and multiple irrigation nozzles 422 mounted on the surface of the water distribution pipe 421.

[0037] It should be noted that the water distribution pipe 421 is installed on the right side of the support plate 411, and its inlet is connected to the internal channel of the water pipe connector 412 or through the channel in the support plate 411. Multiple irrigation nozzles 422 are installed on the surface of the water distribution pipe 421 and distributed along the length of the water distribution pipe 421. The outlets of these irrigation nozzles 422 face the rotating connecting frame 1 and the flower pots on it. Irrigation water is sprayed out through the irrigation nozzles 422 to irrigate the orchids in the flower pots.

[0038] Working principle: First, pull the first clamping plate 13 and the second clamping plate 17 outward by using the handle 21, causing them to swing outward around the rotational connection point of the first connecting rod 14 and the second connecting rod 19 with the connecting rod 12. At this time, the first magnetic block 15 and the second magnetic block 18 separate, and the complete fixing groove formed by the first semicircular groove 16 and the second semicircular groove 20 is opened. Place multiple orchid pots into the opened grooves respectively. Then push the handle 21 inward to close the first clamping plate 13 and the second clamping plate 17. The first magnetic block 15 and the second magnetic block 18 magnetically attract each other, firmly clamping the flower pots in the circular groove formed by the closed first semicircular groove 16 and the second semicircular groove 20, realizing the synchronous installation of multiple flower pots. When it is necessary to remove the flower pots, reverse the operation of the handle 21 to open the clamping plate and remove all the flower pots at the same time. Alternatively, only specific clamping plate groups can be opened for individual disassembly and assembly of some flower pots. When irrigation is required, start the motor 313, whose output shaft is directly The rotating connecting frame 1 is driven to rotate. The rotating connecting frame 1 drives the connecting rod 12 and the clamped flower pot to rotate around the central axis through the turntables 11 at both ends. During the rotation, the left rotating shaft 322 rotates freely on the left frame 321, forming a two-point support with the motor 313 on the right to ensure stable rotation. At the same time, the external water source is connected through the water pipe connector 412. The irrigation water flows into the water distribution pipe 421 fixed on the support plate 411 and sprays out from the multiple irrigation nozzles 422 distributed on the surface of the water distribution pipe 421. The flower pot passes under the irrigation nozzles 422 in a fixed position during rotation. The sprayed water evenly covers the orchids in all the flower pots, achieving comprehensive irrigation. After the motor 313 is turned off, the rotation stops. The user can operate the handle 21 to remove the flower pots synchronously or individually as needed. The whole process achieves efficient synchronous disassembly and assembly of multiple flower pots through the openable linkage clamping plate structure. Combined with the rotating frame and the fixed sprinkler system, uniform and water-saving irrigation is completed.

[0039] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make several modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model.

Claims

1. A rotary orchid irrigation device, characterized in that: The system includes a rotating connecting frame (1), with turntables (11) symmetrically mounted at both ends. Multiple first clamping plates (13) are positioned between the two turntables (11). Multiple connecting rods (12) are mounted on the side of each turntable (11) near the first clamping plate (13). Two first connecting rods (14) are mounted on the top of each first clamping plate (13), and the first connecting rods (14) are rotatably connected to the connecting rods (12). Two first magnetic blocks (15) are symmetrically mounted at both ends of each first clamping plate (13). Multiple first semi-circular grooves (16) are formed on the surface of each first clamping plate (13). Multiple second clamping plates (17) are positioned between the two turntables (11), and two second magnetic blocks (18) are symmetrically mounted at both ends of each second clamping plate (17). The first magnetic block (15) and the second magnetic block (18) are magnetically attracted to each other. The top of the second magnetic block (18) is equipped with a second connecting rod (19). The second connecting rod (19) is rotatably connected to the connecting rod (12). The surface of the second clamping plate (17) is provided with multiple second semi-circular grooves (20). The surfaces of the first clamping plate (13) and the second clamping plate (17) are both equipped with handles (21). A rotating mechanism is provided on the rotating connecting frame (1). The output end of the rotating mechanism is connected to the rotating connecting frame (1). The rotating mechanism is used to control the rotation of the turntable (11). An irrigation mechanism is provided on the rotating mechanism. The output end of the irrigation mechanism faces the first clamping plate (13) and the second clamping plate (17). The irrigation mechanism is used to irrigate the orchids.

2. The rotary orchid irrigation device according to claim 1, characterized in that: The rotating mechanism includes a drive component and a balancing component. The output end of the drive component is connected to the rotating connecting frame (1). The drive component is used to control the rotational movement of the rotating connecting frame (1). The input end of the balancing component is connected to the rotating connecting frame (1) driven by the drive component. The balancing component is used to maintain the stability of the rotating connecting frame (1) during rotation.

3. A rotary orchid irrigation device according to claim 2, characterized in that: The drive assembly includes a base box (311) located below the rotating connecting frame (1), a right side frame (312) mounted on the right side of the base box (311), and a motor (313) mounted on the right side of the right side frame (312). The output end of the motor (313) is fixedly connected to the rotating connecting frame (1), and the motor (313) is used to control the rotation of the rotating connecting frame (1).

4. A rotary orchid irrigation device according to claim 3, characterized in that: The balancing assembly includes a left side frame (321) mounted on the left side of the base box (311) and a rotating shaft (322) rotatably connected to the right side of the left side frame (321). The rotating shaft (322) is fixedly connected to the rotating connecting frame (1).

5. A rotary orchid irrigation device according to claim 4, characterized in that: The irrigation system includes a water inlet assembly and a water spray assembly. The output end of the water inlet assembly is connected to the water spray assembly, which is used to access external irrigation water. The input end of the water spray assembly is connected to the water inlet assembly, which is used to irrigate the orchids.

6. A rotary orchid irrigation device according to claim 5, characterized in that: The water inlet assembly includes a support plate (411) mounted on the top of the left side frame (321) and a water pipe connector (412) mounted on the left side of the support plate (411).

7. A rotary orchid irrigation device according to claim 6, characterized in that: The water spray assembly includes a water distribution pipe (421) mounted on the right side of the support plate (411) and multiple irrigation nozzles (422) mounted on the surface of the water distribution pipe (421).