Tea tree autologous hydroponic root growing device
By designing a self-hydroponic root cultivation device for tea trees, the problems of inconvenience and non-reusability in existing technologies have been solved, achieving the effects of convenient operation and cost reduction.
Patent Information
- Application Number
- CN202520169833.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-24
AI Technical Summary
The existing methods for hydroponic tea cultivation are complex, involve numerous equipment and operational steps, and are costly. Furthermore, existing hydroponic tea cultivation devices are inconvenient to use and cannot be reused during the hydroponic tea cultivation process.
A device for self-propagating tea tree roots in hydroponics was designed, including a hydroponic bottle and a sealing plug. The sealing plug, made of a vertically broken structure and elastic material, is adaptable to different branch thicknesses and is further fixed by reinforcing adhesive tape, enabling convenient installation and reuse.
This technology enables convenient operation and reusability of the equipment in the hydroponic tea cultivation process, reducing operational complexity and costs.
Smart Images

Figure CN223745461U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of agricultural cultivation technology, and specifically relates to a tea tree self-water culture rooting device. BACKGROUND
[0002] As a kind of asexual reproduction method, water culture cutting propagation technology is a seedling raising method that uses water as substrate, utilizes the regeneration performance of isolated plant tissue organs, and develops into an independent plant under certain conditions through artificial cultivation.
[0003] Chinese patent application No.201310110582.4 discloses a water culture-soil culture cutting rapid seedling raising method for tea trees, and its process route is as follows: greenhouse and net room preparation, preparation of nutrient solution, bud collection and cutting, disinfection and sterilization of cutting mouth, hormone treatment, greenhouse cutting, greenhouse water culture, preparation of nutrient soil pots, transplanting and cutting, net room soil culture rooting, cutting into tea seedlings, and seedling raising to seedling. Chinese patent application No.201610154482.5 discloses a tea tree seedling raising method, and its process route is as follows: cutting, water culture container preparation, cutting water culture, preparation of red soil solution, transfer to nutrient pots and seedling raising, etc. Chinese patent application No.202210024453.2 discloses a water culture cutting rooting method for asexual reproduction of tea trees, which specifically comprises: performing water culture in steps, appropriately adjusting the nutrient solution at each stage, optimizing the preparation of excellent nutrient solution, adjusting the pH value suitable for tea tree rooting, and adjusting the influence of nutrient elements and plant growth regulators on tea cutting rooting, so as to improve the rooting rate of tea cutting.
[0004] Chinese patent application No.202311638362.9, filed on December 3, 2023, discloses a tea tree self-suspension water culture rooting method, in which the water culture device is a water culture bag, which includes a transparent bag body and a strap for sealing both ends of the bag body. The initial design of both ends of the bag body is open. The bag body is sleeved around the tea bud, and the initial upper end of the bag body is fixed to the lower end of the target rooting bud segment with the strap. Then the bag body is turned upward, and the initial lower end of the bag body becomes the fixed upper end, forming a cup-shaped cavity around the target rooting bud segment. The prepared rooting culture solution is injected into the cup-shaped cavity, and the fixed upper end of the bag body is fixed to the upper end of the target rooting bud segment with the strap. However, the water culture bag is inconvenient to use and cannot be reused. UTILITY MODEL CONTENTS
[0005] This invention provides a device for cultivating tea tree roots in water, which is easier to use.
[0006] The technical solution adopted by this utility model is as follows:
[0007] A device for autologous hydroponic root cultivation of tea trees includes a hydroponic bottle and a sealing plug. The hydroponic bottle is initially a vertically broken structure, which is then enclosed by a vertical bottle seal to form a cylindrical bottle with openings at both ends. The two ends of the cylindrical bottle gradually narrow into a funnel shape. A hole is provided on the top side of the hydroponic bottle for ventilation or liquid addition. The sealing plug is adapted to the openings at both ends of the hydroponic bottle. The sealing plug is hourglass-shaped, with a stopper hole in the middle that fits the tea tree branch. The sealing plug is also a vertically broken structure. After the hydroponic bottle is sealed and fixed, it exerts a squeezing effect on the sealing plug, causing the inner wall of the sealing plug to adhere tightly to the tea tree branch while the outer wall adheres tightly to both ends of the hydroponic bottle for a seal.
[0008] The sealing sleeve is made of elastic material, and the vertically broken structure of the sealing sleeve is fixed by a waterproof sealing sticker.
[0009] The sealing sleeve is configured with several sleeves of different inner diameters to accommodate tea tree branches of different thicknesses.
[0010] The bottle seal is a waterproof sealing sticker.
[0011] The bottle body seal includes a raised strip and a sealing groove adapted to the raised strip. The raised strip is disposed on one side of the outer wall of the hydroponic bottle body disconnected structure, and the sealing groove is disposed on the other side of the inner wall of the hydroponic bottle body disconnected structure.
[0012] The sealing groove is provided with a sealing gasket; the raised strip is provided with anti-slip texture.
[0013] The aforementioned autologous hydroponic rooting device for tea trees also includes several reinforcing adhesive strips, which are used to surround and fix the outside of the hydroponic bottle to further reinforce the hydroponic bottle; or to surround and fix the connection between the hydroponic bottle and the sealing plug to further reinforce or seal the connection between the hydroponic bottle and the sealing plug.
[0014] Compared with the prior art, the present invention can achieve the following effects:
[0015] (1) This utility model is easy to use. When using it, you only need to open the two sealing plugs and the disconnection of the hydroponic bottle to fit and quickly fix it on the tea tree branches.
[0016] (2) This utility model is reusable, has good adaptability, and is easy to add liquid. Each time the hydroponic nutrient solution is added, it can be easily matched with the bearing capacity of the branches. Attached Figure Description
[0017] Fig. 1 is a structural schematic view of the tea tree self-water cultivation root device.
[0018] Fig. 2 is a structural schematic view of the water culture bottle body.
[0019] Fig. 3 is a structural schematic view of the sealing sleeve plug.
[0020] The reference signs are: 1, sealing sleeve plug, 2, plug hole, 3, bottle body sealing element, 4, water culture bottle body. DETAILED DESCRIPTION
[0021] In order to make those skilled in the art better understand the technical problems to be solved by the present application, the technical solutions adopted and the technical effects achieved, the present application will be described clearly and completely below in conjunction with specific embodiments and drawings.
[0022] Embodiment 1
[0023] As shown in Figs. 1-3 A tea tree self-water cultivation root device, comprising a water culture bottle body 4, a sealing sleeve plug 1 and a plurality of reinforcing adhesive stickers.
[0024] The water culture bottle body 4 is initially in a vertical broken structure, and is enclosed into a columnar bottle body with both ends open by a vertical bottle body sealing element 3, both ends of the columnar bottle body are tapered into a funnel shape, and the water culture bottle body 4 is provided with a hole on the top side for ventilation or liquid addition; the bottle body sealing element 3 is a waterproof sealing sticker.
[0025] The sealing sleeve plug 1 is matched with the openings at both ends of the water culture bottle body 4, the sealing sleeve plug 1 is in a sandglass shape, a plug hole 2 adapted to the tea tree branches is longitudinally arranged in the middle part, the sealing sleeve plug 1 is also in a vertical broken structure, and after the water culture bottle body 4 is sealed and enclosed and fixed, the sealing sleeve plug 1 is subjected to extrusion, so that the inner wall of the sealing sleeve plug 1 tightly abuts against the tea tree branches, and the outer wall tightly abuts against and seals the two ends of the water culture bottle body 4. The sealing sleeve plug 1 is made of an elastic material, and the vertical broken structure of the sealing sleeve plug 1 is fixed by a waterproof sealing sticker. The sealing sleeve plug 1 is configured as a plurality of sleeve plugs with different inner diameters to adapt to tea tree branches with different diameters.
[0026] The reinforcing adhesive stickers are used to be enclosed and fixed on the outer side of the water culture bottle body 4 to further reinforce the water culture bottle body 4, or to be enclosed and fixed at the connection between the water culture bottle body 4 and the sealing sleeve plug 1 to further reinforce or seal the connection between the water culture bottle body 4 and the sealing sleeve plug 1.
[0027] Embodiment 2
[0028] Different from the embodiment 1, the bottle body sealing piece 3 comprises a convex strip and a sealing groove matched with the convex strip, the convex strip is arranged on the outer wall of one side of the disconnecting structure of the water culture bottle body 4, and the sealing groove is oppositely arranged on the inner wall of the other side of the disconnecting structure of the water culture bottle body 4. A sealing gasket is arranged in the sealing groove; and anti-skid lines are arranged on the convex strip, so that the bottle body sealing piece 3 is not easy to be scattered.
[0029] The use method of the utility model is that the disconnecting position of the upper and lower sealing sleeve plugs 1 and the water culture bottle body 4 is opened, and then the sealing sleeve plugs 1 are sleeved and quickly fixed on the tea tree branches. The reinforced adhesive can be used to further reinforce the water culture bottle body 4, or to further reinforce or seal the connecting position of the water culture bottle body 4 and the sealing sleeve plug 1. The sealing sleeve plug 1 is in the shape of a sandglass, so that the contact and matching of the sealing sleeve plug 1 and the water culture bottle body 4 are facilitated. When the inner wall of the water culture bottle body 4 and the outer wall of the sealing sleeve plug 1 are not close enough, the upper sealing sleeve plug 1 is pulled upwards or the lower sealing sleeve plug 1 is pulled downwards, so that the sealing sleeve plug 1 is matched and sealed with the water culture bottle body 4 at the position with a wider inner diameter. When liquid is added, the syringe is used to inject the liquid into the small hole on the top side of the water culture bottle body 4.
[0030] The specific embodiments described above are only exemplary examples of the utility model, and the utility model can not be realized only through the foregoing embodiments. Based on the embodiments listed in the utility model, all other embodiments obtained by the ordinary skilled in the art without creative labor belong to the protection scope of the utility model.
Claims
1. A self-contained hydroponic root growing apparatus for tea plants, characterised in that, The device comprises a hydroponic bottle and a sealing sleeve, the hydroponic bottle is initially in a vertical broken structure, and is enclosed by a vertical bottle sealing element into a cylindrical bottle with two open ends, the two ends of the cylindrical bottle are tapered into a funnel shape, the top side of the hydroponic bottle is provided with a hole for air permeation or liquid addition, the sealing sleeve is adapted to the two open ends of the hydroponic bottle, the sealing sleeve is in the shape of a sandglass, a plug hole adapted to the tea tree branch is longitudinally arranged in the middle part of the sealing sleeve, the sealing sleeve is also in a vertical broken structure, and the hydroponic bottle has a squeezing effect on the sealing sleeve after being enclosed and fixed, so that the inner wall of the sealing sleeve is tightly attached to the tea tree branch, and the outer wall is tightly attached to the two ends of the hydroponic bottle to achieve sealing.
2. The tea tree self-watering rooter device of claim 1, wherein, The sealing sleeve is made of elastic material, and the vertical broken structure of the sealing sleeve is fixed by a waterproof sealing sticker.
3. The tea tree self-watering rooter device of claim 1, wherein, The sealing sleeve is configured as a plurality of sleeve plugs with different inner diameters to adapt to tea tree branches with different diameters.
4. The tea tree self-watering rooter device of claim 1, wherein, The bottle sealing element is a waterproof sealing sticker.
5. The tea tree self-watering rooter device of claim 1, wherein, The bottle sealing element comprises a convex strip and a sealing groove adapted to the convex strip, the convex strip is arranged on the outer wall of one side of the broken structure of the hydroponic bottle, and the sealing groove is oppositely arranged on the inner wall of the other side of the broken structure of the hydroponic bottle.
6. The tea tree self-watering rooter device of claim 5, wherein, A sealing gasket is arranged in the sealing groove, and an anti-skid pattern is arranged on the convex strip.
7. A tea tree self-watering rooter device according to any one of claims 1 to 6, wherein, The tea tree self-hydroponic root cultivation device further comprises a plurality of reinforcing adhesive stickers for enclosing and fixing on the outer side of the hydroponic bottle to further reinforce the hydroponic bottle, or for enclosing and fixing at the connection between the hydroponic bottle and the sealing sleeve to further reinforce or seal the connection between the hydroponic bottle and the sealing sleeve.
Citation Information
Patent Citations
Rapid water-soil culturing cuttage seedling method of tea trees
CN103181289A
A kind of seedling raising method of tea tree
CN105613199B
Hydroponic cutting rooting method for asexual propagation of tea trees
CN114532198A
Tea tree autologous suspended hydroponic rooting method
CN117652395A