植物日照控制培育车
By designing a plant sunlight control cultivation vehicle, and using a track trolley system and liquid level sensors to control the duration of light exposure, the problem of automated light regulation for rice in facility agriculture has been solved, achieving efficient and low-cost light control and irrigation management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUNAN HUAZHI INTELLIGENT MFG TECH CO LTD
- Filing Date
- 2025-08-07
- Publication Date
- 2026-07-17
AI Technical Summary
Existing technologies struggle to automate the control of plant light duration, especially in facility agriculture where the light requirements for rice cannot be flexibly adjusted, resulting in high labor costs and low efficiency.
Design a plant sunlight control cultivation vehicle that uses a track trolley system. Driven by active and driven wheels, the water tank assembly moves within a dark chamber to automatically control the duration of light exposure. Equipped with a liquid level sensor and an electric ball valve for precise irrigation, the vehicle uses Q235 steel and polyurethane buffer blocks to ensure stability and cushioning, and a cable guide structure to ensure smooth movement.
It enables automated control of plant light duration, reduces labor costs, improves the flexibility and efficiency of light regulation, and ensures stable movement of water tank components and precise irrigation.
Smart Images

Figure CN224504138U_ABST
Abstract
Claims
1. A plant solar control grow cart, characterized by: The system includes a track trolley (100), on which a water tank assembly (200) is connected. The bottom of the track trolley (100) is connected to a traveling wheel (140), which includes a driving wheel (141) and a driven wheel (142). The track trolley (100) includes several rectangular tubes (110) located at the top. Polyurethane buffer blocks (120) are connected to both sides of the rectangular tubes (110). The driving part (150) located at the bottom of the track trolley (100) drives the traveling wheel (140) to control the cultivation vehicle to enter and exit the dark chamber.
2. The plant solar control grow cart of claim 1, wherein: Several rectangular tubes (110) along the walking direction are connected by a connecting beam (130). The bottom of several rectangular tubes (110) is connected to the walking wheel (140). The walking wheel (140) is connected to the driving part (150). The cable guide structure (154) provided between several rectangular tubes (110) is connected at both ends to the darkroom and the front end of the track trolley (100).
3. The plant solar exposure control grow cart of claim 2, wherein: The rectangular tube (110) includes a rectangular tube body (111), and steel plates (112) are connected to both ends of the rectangular tube body (111).
4. The plant solar exposure control grow cart of claim 2, wherein: The drive unit (150) includes a drive shaft (152), with gears (151) connected to both ends of the drive shaft (152). The gears (151) are located on one side of the drive wheel (141) and mesh with the drive wheel (141). A bearing seat (157) is connected to the inner side of the drive shaft (152) near the drive wheel (141), and the bearing seat (157) is fixed to the bottom of the rectangular tube (110).
5. The plant solar control grow cart of claim 3, wherein: The water tank assembly (200) includes several water tanks (210) and a liquid level sensor (250). The detection end of the liquid level sensor (250) is located inside the water tank (210). The water tanks (210) are connected to each other through a stainless steel threaded connector (220). An ultrasonic liquid level device is connected to the top of the water tank (210). A stainless steel cover (240) is provided on the top of the water tank (210).
6. The plant solar exposure control grow cart of claim 5, wherein: The water tank (210) includes square tubes (211), and steel plates (112) are connected between the square tubes (211). One of the steel plates (112) has a water injection hole (213) and another of the steel plates (112) has a drain outlet (214). The axis of the drain outlet (214) coincides with the axis of the water injection hole (213).
7. The plant solarium of claim 6, wherein: The drain outlet (214) is provided with a clamp (215), and an electric ball valve (216) is provided on the side of the drain outlet (214) away from the clamp (215).