Water-saving phalaenopsis planting device

By using a permeable tray and a motor-driven sprinkler system, the problem of water waste in Phalaenopsis orchid cultivation devices has been solved, and water recycling and reuse as well as air circulation regulation have been achieved, ensuring the healthy growth of Phalaenopsis orchids.

CN224192639UActive Publication Date: 2026-05-05ZHUOZHOU RIHE AGRI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHUOZHOU RIHE AGRI TECH CO LTD
Filing Date
2025-05-14
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing Phalaenopsis orchid growing devices have low water utilization efficiency during watering, resulting in water waste, and it is difficult to adjust the watering interval and air circulation according to the plant's growth height.

Method used

The sprinkler system, which uses a seepage tray and is driven by a motor, combines adjustable seepage tray spacing and a filter design to achieve water recycling and reuse. The water volume and air circulation are adjusted through a motor and gear transmission system.

Benefits of technology

It improves water resource utilization, ensures the healthy growth of Phalaenopsis orchids, reduces water waste, and provides a good gas exchange environment.

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Abstract

The utility model relates to the technical field of plant planting, and discloses a water-saving phalaenopsis planting device which comprises a water tank, a support is fixedly connected to the top of the water tank, and a water seepage tray is connected to the inner wall of the support in a sliding mode. The butterfly orchid planting pot is placed on the top of the water seepage tray, the water seepage tray slides on the inner wall of the support, the toothed plate is fixed to the top of the support, and when the motor drives the gear to rotate through the connecting rod, the motor is fixed to the fixing plate, so that the fixing plate slides on the top of the support through the sliding block; the water pump conveys water flow in the water tank into the flow dividing pipe through the water inlet hose, the flow dividing pipe is fixed to the fixing plate, and meanwhile the flow dividing pipe is communicated with the fan-shaped nozzle, so that the butterfly orchid is irrigated and watered, the water flow which is not watered into the planting pot flows back into the water tank again through the water seepage tray, and water resource waste is reduced; water resources are recycled and reused, the utilization rate of the water resources is increased, and therefore the purpose of saving water is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of plant cultivation technology, and in particular to a water-saving orchid cultivation device. Background Technology

[0002] Phalaenopsis orchids are perennial evergreen epiphytic herbaceous plants belonging to the genus Phalaenopsis in the family Orchidaceae. Also known as Taiwan Phalaenopsis or simply Phalaenopsis, they are native to tropical Asia, mainly distributed in the Philippines, Malaysia, Indonesia, and other regions. In China, they are primarily found in Taiwan, Yunnan, and Hainan provinces. They typically grow in low-altitude tropical and subtropical forests, preferring to grow epiphytically on tree trunks or rocks.

[0003] Existing Phalaenopsis orchid cultivation devices use a immersion irrigation method to water the orchids. After immersion, the water usually seeps directly into the bottom of the cultivation device or flows into the surrounding environment. This water is difficult to collect and reuse, resulting in low efficiency in water resource utilization and waste of water resources. Utility Model Content

[0004] To solve the above-mentioned technical problems, this utility model provides a water-saving Phalaenopsis orchid planting device.

[0005] This utility model is achieved using the following technical solution: a water-saving Phalaenopsis orchid planting device, comprising a water tank, a bracket fixedly connected to the top of the water tank, a water-permeable tray slidably connected to the inner wall of the bracket, a toothed plate fixedly connected to the top of the bracket, a gear meshing with the toothed plate, a connecting rod fixedly connected inside the gear, a motor fixedly connected to the end of the connecting rod away from the gear, a fixing plate fixedly connected to the bottom of the motor, a slider fixedly connected to the bottom of the fixing plate, a diversion pipe fixedly connected inside the fixing plate, a fan-shaped nozzle connected inside the diversion pipe, a water pump connected to the end of the diversion pipe away from the fan-shaped nozzle, and a water inlet hose connected to the end of the water pump away from the diversion pipe.

[0006] As a further improvement to the above solution, the slider is slidably connected to the inner wall of the bracket, the water pump is fixedly connected to the top of the fixed plate, and the end of the water inlet hose away from the water pump is connected to the inside of the water tank.

[0007] The above technical solution involves placing the Phalaenopsis orchid planting pot on top of a drainage tray, which slides against the inner wall of a support frame. A toothed plate is fixed at the top of the support frame. When the motor drives the gears to rotate via a connecting rod, the motor is simultaneously fixed to the fixed plate, which slides on top of the support frame via a slider. A water pump delivers water from the tank to the distribution pipe via an inlet hose. The distribution pipe is fixed to the fixed plate and connected to a fan-shaped nozzle, thus irrigating the Phalaenopsis orchid. Water that does not reach the planting pot flows back into the tank through the drainage tray, reducing water waste, achieving water recycling and reuse, improving water utilization efficiency, and ultimately saving water.

[0008] As a further improvement to the above solution, the outer wall of the bracket is provided with a slot, and a T-shaped block is slidably connected to the outer wall of the slot.

[0009] As a further improvement to the above solution, a fixing rod is fixedly connected inside the T-shaped block, the fixing rod is slidably connected inside the bracket, and a handle is fixedly connected to one end of the fixing rod near the T-shaped block.

[0010] As a further improvement to the above solution, a limit plate is fixedly connected to the end of the fixing rod away from the handle, and a spring is slidably connected to the outer wall of the fixing rod.

[0011] With the above technical solution, the user pulls the handle, causing the handle to slide the fixing rod inside the bracket. A T-shaped locking block and a limiting plate are fixed on the outer wall of the bracket. When the T-shaped locking block disengages from the slot, the spring is compressed by the limiting plate. At this time, the user can rotate the handle, causing the T-shaped locking block to rotate around the fixing rod, thereby adjusting the drainage trays. The user can adjust the spacing between the drainage trays according to the growth height of the Phalaenopsis orchid, ensuring that the Phalaenopsis orchid continues to grow healthily upwards, while also allowing for better air circulation, which helps the Phalaenopsis orchid to carry out gas exchange and provides a good environmental condition for its growth.

[0012] As a further improvement to the above solution, a filter screen is slidably connected to the top of the water tank, and a handle is fixedly connected to one end of the filter screen near the T-shaped block.

[0013] As a further improvement to the above solution, the bottom of the water tank is fixedly connected with four self-locking casters, which are arranged at the four corners of the water tank.

[0014] The above technical solution includes a filter screen that slides on the top of the water tank. The filter screen can prevent fallen leaves or debris from falling into the water tank and prevent blockage of the inlet hose.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0016] This invention places the Phalaenopsis orchid planting pot on top of a drainage tray, which slides against the inner wall of a support frame. A toothed plate is fixed at the top of the support frame. When a motor drives the gears to rotate via a connecting rod, the motor is simultaneously fixed to the fixed plate, which slides on top of the support frame via a slider. A water pump delivers water from the water tank to a distribution pipe via an inlet hose. The distribution pipe is fixed to the fixed plate and connected to a fan-shaped nozzle, thus irrigating the Phalaenopsis orchid. Water that does not reach the planting pot flows back into the water tank through the drainage tray, reducing water waste, achieving water recycling and reuse, improving water utilization efficiency, and ultimately achieving water conservation.

[0017] This invention allows the user to pull a handle, causing the handle to slide a fixing rod inside the bracket. A T-shaped locking block and a limiting plate are fixed to the outer wall of the bracket. When the T-shaped locking block disengages from its slot, the spring is compressed by the limiting plate. At this point, rotating the handle causes the T-shaped locking block to rotate around the fixing rod, thereby adjusting the drainage trays. The user can adjust the spacing between the drainage trays according to the growth height of the Phalaenopsis orchid, ensuring that the orchid continues to grow healthily upwards. This also allows for better air circulation, facilitating gas exchange and providing a favorable environment for the orchid's growth. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the structure of the water-permeable tray of this utility model;

[0020] Figure 3 This is a schematic diagram of the cross-sectional structure of the fixing plate of this utility model;

[0021] Figure 4 This is a schematic diagram of the card slot structure of this utility model;

[0022] Figure 5 This utility model Figure 4 Enlarged structural diagram of section A in the middle;

[0023] Figure 6 This is a schematic diagram of the filter structure of this utility model.

[0024] Explanation of key symbols:

[0025] 1. Water tank; 2. Bracket; 3. Leakage tray; 4. Toothed plate; 5. Gear; 6. Connecting rod; 7. Motor; 8. Fixing plate; 9. Slider; 10. Diverter pipe; 11. Fan-shaped nozzle; 12. Water pump; 13. Inlet hose; 14. Slot; 15. T-shaped locking block; 16. Fixing rod; 17. Handle; 18. Limiting plate; 19. Spring; 20. Filter screen; 21. Handle one; 22. Self-locking caster wheel. Detailed Implementation

[0026] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0027] Example:

[0028] Please combine Figure 1-6 This embodiment discloses a water-saving Phalaenopsis orchid cultivation device, including a water tank 1. A bracket 2 is fixedly connected to the top of the water tank 1. A water-permeable tray 3 is slidably connected to the inner wall of the bracket 2. A toothed plate 4 is fixedly connected to the top of the bracket 2. A gear 5 is meshed with the toothed plate 4. A connecting rod 6 is fixedly connected inside the gear 5. A motor 7 is fixedly connected to the end of the connecting rod 6 away from the gear 5. A fixing plate 8 is fixedly connected to the bottom of the motor 7. A slider 9 is fixedly connected to the bottom of the fixing plate 8. A diversion pipe 10 is fixedly connected inside the fixing plate 8. A fan-shaped nozzle 11 is connected inside the diversion pipe 10. A water pump 12 is connected to the end of the diversion pipe 10 away from the fan-shaped nozzle 11. A water inlet hose 13 is connected to the end of the water pump 12 away from the diversion pipe 10.

[0029] The slider 9 is slidably connected to the inner wall of the bracket 2, the water pump 12 is fixedly connected to the top of the fixed plate 8, and the end of the water inlet hose 13 away from the water pump 12 is connected to the inside of the water tank 1.

[0030] The bracket 2 has a slot 14 on its outer wall, and a T-shaped block 15 is slidably connected to the outer wall of the slot 14.

[0031] A fixing rod 16 is fixedly connected inside the T-shaped block 15. The fixing rod 16 is slidably connected inside the bracket 2. A handle 17 is fixedly connected to one end of the fixing rod 16 near the T-shaped block 15.

[0032] A limit plate 18 is fixedly connected to the end of the fixed rod 16 away from the handle 17, and a spring 19 is slidably connected to the outer wall of the fixed rod 16.

[0033] A filter screen 20 is slidably connected to the top of the water tank 1, and a handle 21 is fixedly connected to one end of the filter screen 20 near the T-shaped locking block 15.

[0034] The bottom of the water tank 1 is fixedly connected with four self-locking casters 22, which are located at the four corners of the water tank 1.

[0035] The implementation principle of a water-saving Phalaenopsis orchid planting device in this embodiment is as follows: The Phalaenopsis orchid planting pot is placed on top of the drainage tray 3, which slides against the inner wall of the support 2. A toothed plate 4 is fixed at the top of the support 2. When the motor 7 drives the gear 5 to rotate via the connecting rod 6, the motor 7 is simultaneously fixed to the fixed plate 8, causing the fixed plate 8 to slide against the top of the support 2 via the slider 9. The water pump 12 delivers water from the water tank 1 to the diversion pipe 10 via the inlet hose 13. The diversion pipe 10 is fixed to the fixed plate 8 and connected to the fan-shaped nozzle 11, thus irrigating the Phalaenopsis orchid. Water that does not reach the planting pot flows back into the water tank 1 through the drainage tray 3, reducing water waste, achieving water recycling and reuse, and improving water utilization efficiency, thereby achieving water conservation. The user pulls the handle 17, causing the handle 17 to slide the fixed rod 16 inside the support 2. A T-shaped locking block 15 and a limiting plate 18 are fixed to the outer wall of the support 2. When the T-shaped locking block 15 disengages... After the groove 14 is closed, the spring 19 is compressed by the limiting plate 18. At this time, the handle 17 is turned so that the T-shaped locking block 15 rotates around the fixed rod 16, thereby adjusting the drainage tray 3. The user can adjust the spacing between the drainage trays 3 according to the growth height of the Phalaenopsis orchid to ensure that the Phalaenopsis orchid continues to grow healthily upwards, while allowing better air circulation, which helps the Phalaenopsis orchid to carry out gas exchange and provides a good environment for its growth. When the T-shaped locking block 15 is re-locked onto the outer wall of the groove 14, the spring 19 returns to its elasticity and pushes the limiting plate 18, thereby preventing the drainage tray 3 from accidentally falling off the bracket 2. A filter screen 20 slides on the top of the water tank 1. The filter screen 20 can prevent fallen leaves or debris from falling into the water tank 1 and prevent blockage of the water inlet hose 13, ensuring that the water pump 12 can operate normally. Self-locking casters 22 are fixed at the bottom of the water tank 1. The self-locking casters 22 can be easily arranged by the user according to the site, improving space utilization and reducing the labor intensity of the user's equipment.

[0036] The above embodiments are merely preferred embodiments of this utility model and should not be construed as limiting the scope of protection of this utility model. Any non-substantial changes and substitutions made by those skilled in the art based on this utility model shall fall within the scope of protection claimed by this utility model.

Claims

1. A water-saving orchid cultivation device, characterized in that: The system includes a water tank (1), a bracket (2) fixedly connected to the top of the water tank (1), a seepage tray (3) slidably connected to the inner wall of the bracket (2), a toothed plate (4) fixedly connected to the top of the bracket (2), a gear (5) meshing with the toothed plate (4), a connecting rod (6) fixedly connected inside the gear (5), a motor (7) fixedly connected to the end of the connecting rod (6) away from the gear (5), a fixing plate (8) fixedly connected to the bottom of the motor (7), a slider (9) fixedly connected to the bottom of the fixing plate (8), a diversion pipe (10) fixedly connected inside the fixing plate (8), a fan-shaped nozzle (11) connected inside the diversion pipe (10), a water pump (12) connected to the end of the diversion pipe (10) away from the fan-shaped nozzle (11), and an inlet hose (13) connected to the end of the water pump (12) away from the diversion pipe (10).

2. The water-saving Phalaenopsis orchid cultivation device as described in claim 1, characterized in that, The slider (9) is slidably connected to the inner wall of the bracket (2), the water pump (12) is fixedly connected to the top of the fixing plate (8), and the end of the water inlet hose (13) away from the water pump (12) is connected to the inside of the water tank (1).

3. The water-saving Phalaenopsis orchid cultivation device as described in claim 1, characterized in that, The bracket (2) has a slot (14) on its outer wall, and a T-shaped block (15) is slidably connected to the outer wall of the slot (14).

4. The water-saving Phalaenopsis orchid cultivation device as described in claim 3, characterized in that, A fixing rod (16) is fixedly connected inside the T-shaped card block (15). The fixing rod (16) is slidably connected inside the bracket (2). A handle (17) is fixedly connected to one end of the fixing rod (16) near the T-shaped card block (15).

5. The water-saving Phalaenopsis orchid cultivation device as described in claim 4, characterized in that, The end of the fixed rod (16) away from the handle (17) is fixedly connected to a limiting plate (18), and a spring (19) is slidably connected to the outer wall of the fixed rod (16).

6. The water-saving Phalaenopsis orchid cultivation device as described in claim 1, characterized in that, A filter screen (20) is slidably connected to the top of the water tank (1), and a handle (21) is fixedly connected to one end of the filter screen (20) near the T-shaped card block (15).

7. The water-saving Phalaenopsis orchid cultivation device as described in claim 1, characterized in that, The bottom of the water tank (1) is fixedly connected with self-locking casters (22), and four self-locking casters (22) are provided, which are located at the four corners of the water tank (1).