Degradable assembled flowerpot

By using flower pots designed with degradable materials and clamped structures, the problems of insufficient hydrophobic performance and inconvenient transportation are solved, the survival rate and convenience of plants are improved, and environmentally friendly and convenient plant planting solutions are achieved.

CN223125407UActive Publication Date: 2025-07-22JIANGNAN UNIV
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Patent Information

Application Number
CN202421746901.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-07-22
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

The existing degradable flower pots have insufficient hydrophobic properties, resulting in water accumulation, affecting the life of the flower pot and plant survival rate, and are not designed to be suitable for transportation and novices' planting needs.

Method used

The main body of the flower pot is made of biodegradable materials, combined with the clamping structure design of the water filter tray and the water storage basin, including rotary snaps and fixed snaps, transparent water storage basin and side drains, ensuring drainage and convenient disassembly.

Benefits of technology

It has improved the survival rate of plant transplantation, reduced the risk of transportation damage, improved the convenience of use and environmental protection, and achieved sustainable utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The degradable assembled flowerpot comprises a flowerpot main body, the flowerpot main body is made of degradable materials and is of a cylindrical structure with an upper opening and a lower opening, and a closing-up structure is arranged at the lower end of the side wall of the flowerpot main body; the water filtering disc is detachably connected to the lower end of the flowerpot body, and a plurality of drainage holes are formed in the water filtering disc; and the water storage pot covers the whole water filtering disc and is detachably connected to the lower end of the flowerpot main body. An upper-layer clamping structure and a lower-layer clamping structure are arranged on the closing-up structure and are respectively used for clamping the water storage basin and the water filtering disc. Aiming at the defects in the existing production technology, the degradable assembled flowerpot is provided by the applicant, the flowerpot main body is made of a degradable material, and the flowerpot is formed by assembling, so that the use of plastic is reduced, nutrients are provided for plants in the degradation process, and the transplanting survival rate is increased.
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Description

Technical Field

[0001] The utility model relates to the technical field of flowerpots, in particular to a degradable assembled flowerpot. Background Art

[0002] With the accelerating pace of modern urban life, people's yearning for nature and greenery has been increasing day by day, and home green plant maintenance has become a choice for many people to relieve stress and beautify the environment. However, many problems exposed by traditional flowerpots during the growth of plants, especially the cumbersome process of transplanting bonsai and the low survival rate after the plants grow up, have become a major obstacle restricting the popularization of home gardening. In view of this situation, the concept of degradable flowerpots emerged as the times require, aiming to provide a more environmentally friendly and convenient plant cultivation solution.

[0003] Although the degradable flowerpots on the current market have alleviated the problems of environmental protection and resource recycling to a certain extent, their application scope is mainly limited to small bonsai, greening projects and seedling cultivation stages, and there is less involvement in plant products that pursue commercialization, are convenient for transportation and suitable for novice planting, such as canned plants. Canned plants, with their unique packaging form, are not only convenient for long-distance transportation, reducing losses during transportation, but also can stimulate consumers' desire to buy, and are especially suitable for the fast-paced modern lifestyle. However, the flowerpot design in this field still needs to be improved.

[0004] In addition, the existing degradable flowerpots often have deficiencies in hydrophobic performance. Due to the limitations of material properties, water is likely to accumulate at the bottom of the flowerpot, which not only increases the degradation speed of the bottom of the flowerpot, affecting the overall service life of the flowerpot, but also may cause the roots of the plants to rot due to the long-term humid environment, reducing the survival rate of the plants.

[0005] Therefore, we propose a degradable assembled flowerpot. Content of the Utility Model

[0006] The applicant of the present utility model aims at the above-mentioned shortcomings in the existing production technology and provides a degradable assembled flowerpot. By using degradable materials as the main body of the flowerpot and forming the flowerpot through assembly, it not only reduces the use of plastics, but also provides nutrients for plants during the degradation process, improving the transplant survival rate.

[0007] The technical solution adopted by the present utility model is as follows:

[0008] Including:

[0009] A flowerpot main body, which is made of degradable material and has a cylindrical structure with openings at both the top and the bottom, and a closing structure is provided at the lower end of the side wall of the flowerpot main body;

[0010] A water filtering tray, which is detachably connected to the lower end of the flowerpot main body, and a plurality of drainage holes are provided on the water filtering tray;

[0011] A water storage basin that wraps around the entire water filtering tray and is detachably connected to the lower end of the flowerpot body.

[0012] It is further characterized in that:

[0013] The necking structure is provided with two layers of clamping structures, which are respectively used for clamping the water storage basin and the water filtering tray.

[0014] The clamping structure located in the upper layer includes a plurality of rotation buckles two distributed annularly, and a plurality of rotation buckles one corresponding to the rotation buckles two are arranged on the inner side of the water storage basin, and they are clamped and fixed by means of docking rotation.

[0015] The clamping structure located in the lower layer includes a plurality of fixed buckle holes distributed annularly, and a plurality of fixed buckles corresponding to the fixed buckle holes are arranged on the water filtering tray, and they are clamped and fixed by means of docking rotation.

[0016] A plurality of connecting columns capable of lifting the water filtering tray are arranged in the water storage basin, and the water filtering tray is attached to the bottom wall of the flowerpot body under the action of the connecting columns.

[0017] A clamping hoop is provided at the upper end of the flowerpot body, and a detachable cover is arranged inside the clamping hoop, and a handle is arranged on the cover.

[0018] Both the water storage basin and the water filtering tray are made of non-degradable materials.

[0019] The water storage basin is made of a transparent material, and a drain port extending outward is provided at the upper end of the water storage basin.

[0020] The inner diameter of the water storage basin is between the flowerpot body and the necking structure, and the height of the necking structure is less than the height of the water storage basin.

[0021] The beneficial effects of the present utility model are as follows:

[0022] The structure of the present utility model is compact, reasonable and easy to operate. By using a degradable material as the flowerpot body and forming the flowerpot through assembly, it not only reduces the use of plastics, but also provides nutrients for plants during the degradation process, improving the transplantation survival rate. Its unique clamping structure design, such as rotation buckles and fixed buckles, ensures the firm connection and convenient disassembly of each component. At the same time, the transparent material and side drain port design of the water storage basin facilitate users to observe the water level and quickly handle excess water, improving the use efficiency. In addition, the overall appearance of the can shape is not only beautiful, but also enhances the safety during transportation and reduces the risk of logistics damage.

[0023] At the same time, the present utility model also has the following advantages:

[0024] Environmental protection and sustainable use: The main body of the flowerpot is made of degradable materials, while the water storage basin and the water filtering tray are made of non-degradable but reusable materials. When the user replaces the new main body of the flowerpot after the plant grows up, the old water storage basin and water filtering tray can still be used, further reducing resource waste and achieving the sustainable use of the product.

[0025] Convenience and efficiency: The unique snap-fit structure design (such as rotating snap and fixed snap) makes the connection between the components of the flowerpot firm and easy to disassemble. When the user replaces the flowerpot or disposes of excess water, the operation is simple, greatly improving the convenience of use. At the same time, the connection is stable, improving the safety of transportation and reducing the risks of package damage and vegetation inactivation.

[0026] The transparent material and the side drain outlet design of the water storage basin allow the user to directly observe the water level and pour out excess water without disassembling the water storage basin, saving time and avoiding the problem of soiling the environment. Description of the Drawings

[0027] Figure 1 It is a schematic structural diagram of the present utility model.

[0028] Figure 2 It is an exploded view of the present utility model.

[0029] Figure 3 It is Figure 2 A partial structural schematic diagram in

[0030] Wherein: 100, water storage basin; 200, water filtering tray; 300, main body of the flowerpot; 400, clamp; 500, cover; 600, handle;

[0031] 101, drain outlet; 102, rotating snap one;

[0032] 201, water filtering hole; 202, fixed snap;

[0033] 301, necking structure; 302, fixed snap hole; 303, rotating snap two. Detailed Description of the Invention

[0034] The following will describe the detailed implementation manners of the present utility model with reference to the drawings.

[0035] As Figures 1-3 shown, this embodiment discloses a degradable assembled flowerpot, the structure of which includes a main body of the flowerpot 300, a water filtering tray 200, a water storage basin 100 and a cover 500. The overall appearance of the flowerpot is designed in the shape of a can, which is convenient for subsequent logistics transportation. In order to ensure the safety of logistics during transportation and reduce the external influence during transportation, the package is sealed with a cover, reducing the possibilities of package damage, soil pollution and vegetation inactivation.

[0036] The following will illustrate the description in combination with the specific structure:

[0037] As Figure 2 and Figure 3 shown, the flowerpot main body 300 in this embodiment is made of degradable material and is a cylindrical structure with openings at both the top and bottom. And a necking structure 301 is provided at the lower end of the side wall of the flowerpot main body 300; in this embodiment, the flowerpot main body 300 is a cylindrical structure with openings at both the top and bottom, which is prepared from degradable materials, and the main raw material is straw, and it is prepared by a pressing method.

[0038] The necking structure 301 is provided with two upper and lower layers of clamping structures, which are respectively used for clamping the water storage basin 100 and the water filtering tray 200.

[0039] The clamping structure located in the upper layer includes a plurality of rotation buckles two 303 distributed in a ring shape, and a plurality of rotation buckles one 102 corresponding to the rotation buckles two 303 are arranged on the inner side of the water storage basin 100, and they are clamped and fixed by means of docking rotation, improving the connection effect and not being easily detached during transportation.

[0040] The clamping structure located in the lower layer includes a plurality of fixed buckle holes 302 distributed in a ring shape, and a plurality of fixed buckles 202 corresponding to the fixed buckle holes 302 are provided on the water filtering tray 200, and they are clamped and fixed by means of docking rotation.

[0041] In another embodiment, a plurality of connecting columns capable of lifting the water filtering tray 200 are arranged in the water storage basin 100, and the water filtering tray 200 is attached to the bottom wall of the flowerpot main body 300 under the action of the connecting columns, thereby avoiding the clamping structure between the water filtering tray 200 and the flowerpot main body 300 and being more stable.

[0042] A clamp 400 is provided at the upper end of the flowerpot main body 300, and a detachable cover 500 is arranged inside the clamp 400. A handle 600 is arranged on the cover 500. In order to improve the preservation time, the cover 500 and the clamp 400 can be made of metal material.

[0043] The cover 500 is located at the upper part of the flowerpot main body 300, is installed at the upper end of the flowerpot main body 300, and is in tight fit with the outer wall and the inner wall of the flowerpot main body 300, avoiding the nutrient soil and seeds stored in the flowerpot main body 300 from spilling during transportation.

[0044] In order to ensure the consistency of the overall size of the flowerpot and the installation with the water storage basin 100, a necking structure 301 is provided at the lower end of the side wall of the flowerpot main body 300. The diameter of the necking structure 301 is smaller than the diameter of the flowerpot main body 300. At the same time, two upper and lower layers of clamping structures are provided on the side wall of the necking structure 301. The upper clamping structure includes a plurality of rotation buckles two 303 distributed in a ring shape, and the lower clamping structure includes a plurality of fixed buckle holes 302 arranged in a ring shape.

[0045] As Figure 2 and Figure 3 shown, in this embodiment, the water filtering tray 200 is detachably connected to the lower end of the flower pot main body 300, and a plurality of drain holes 201 are formed in the water filtering tray 200;

[0046] In this embodiment, as Figure 2 and Figure 3 shown, the water filtering tray 200 is designed with a certain number of water filtering holes 201 for the drain outlet to drain the excess water for watering the flowers, so as to avoid the rotting of the plant roots. A plurality of fixing buckles 202 are arranged on the outer edge of the water filtering tray 200 and are docked with the fixing buckle holes 302. By docking the fixing buckle holes 302 with the fixing buckles 202, the water filtering tray 200 and the flower pot main body 300 are combined together to form an integral structure. The fixing buckles 202 on the water filtering tray 200 match the fixing buckle holes 302 of the closing structure 301 of the flower pot main body 300. The flower pot main body 300 and the flower pot bottom 3 are connected by an interference fit of the group of fixing buckles 202 and the fixing buckle holes 302.

[0047] As Figure 2 and Figure 3 shown, in this embodiment, the water storage basin 100 wraps the entire water filtering tray 200 and is detachably connected to the lower end of the flower pot main body 300.

[0048] In this embodiment, the water storage basin 100 is the lowermost part of this design and is a tray with a certain depth, which is used to collect the water that is difficult to retain in the soil of the upper flower pot to prevent the plant roots from being soaked; at the same time, it can provide water for the soil to a certain extent to avoid the dryness at the bottom of the soil;

[0049] The inner diameter of the water storage basin 100 is between the flower pot main body 300 and the closing structure 301, and the height of the closing structure 301 is less than the height of the water storage basin 100.

[0050] Four rotating buckles 102 are designed near the upper end wall of the inner wall of the water storage basin 100. The rotating buckles 102 are used in combination with the rotating buckles 303 on the outer wall of the flower pot main body. The group of rotating buckles 102 and the rotating buckles 303 connect the water storage basin and the flower pot together by rotating and screwing.

[0051] In this embodiment, the water storage basin 100 is made of a transparent material, and a drain outlet 101 is arranged on one side of the water storage basin 100, so that the excess water in the water storage basin can be poured out without the need to disassemble the water storage basin.

[0052] Both the water storage basin 100 and the water filtering tray 200 are made of non-degradable materials and can be reused. When the plants in the flowerpot main body 300 grow to a certain size and need to be transplanted into the soil, a new flowerpot main body 300 can be purchased and connected to the water storage basin 100 and the water filtering tray 200 for continued use, which is more environmentally friendly.

[0053] The flowerpot main body 300 uses straw as the main raw material, has good air permeability, can absorb infrared rays, and most importantly, can save the subsequent flowerpot-changing process. Just rotate and unscrew the fixed buckle 202 and the rotating buckle two 303, remove the water filtering tray 200 and the water storage basin 100, and the whole plant can be moved to a new flowerpot without affecting the plant roots. During the degradation process of the straw material flowerpot, it can provide nutrients for the plants, greatly improving the survival rate of plant transplantation. The lower transparent water storage basin 100 is connected by a rotating locking device. With the help of the water leakage holes, the excess water in the upper part can flow into the room for storage, and then the water can be appropriately supplemented upward through the water absorption strips, effectively avoiding problems such as plant root rot caused by excessive water. By using the transparent material, the water storage volume can be monitored in real time, and the water level of the water storage basin 100 can be adjusted.

[0054] The present utility model aims to solve the problems of poor air permeability, easy water accumulation at the bottom, and easy root rot of plants caused by the lack of drainage holes in traditional integrated flowerpots, as well as the problems that flowerpots with drainage holes need to be used in conjunction with water trays, but the water trays are easy to fill up and inconvenient to pour, and the excess water is easy to dirty the bottom of the flowerpot and pollute the surrounding environment when discharged through the drainage holes. At the same time, the application of the design materials with the characteristics of convenient storage and transportation can meet the increasingly expanding online consumer market and reduce the possibility of product damage during transportation. Secondly, the design uses degradable flowerpot materials and is provided with a water filtering tray 200, which is convenient for subsequent flowerpot-changing operations. In the new soil environment, this design allows the flowerpot main body 300 to provide a temporary space similar to the original soil for the plants, giving the plants a transition time to adapt to the new environment and improving their survival effect.

[0055] The above description is an explanation of the present utility model, not a limitation thereof. The scope defined by the present utility model can be seen in the claims, and any form of modification can be made within the protection scope of the present utility model.

Claims

1. Degradable assembled flowerpot, characterized in that, Including: A flowerpot main body (300), which is made of degradable material, has a cylindrical structure with openings at both the top and bottom, and a necking structure (301) is provided at the lower end of the side wall of the flowerpot main body (300); A water filter tray (200), which is detachably connected to the lower end of the flowerpot main body (300), and a plurality of drain holes (201) are provided on the water filter tray (200); A water storage basin (100), which covers the entire water filter tray (200) and is detachably connected to the lower end of the flowerpot main body (300); Two layers of clamping structures are provided on the necking structure (301) for clamping the water storage basin (100) and the water filter tray (200) respectively; The inner diameter of the water storage basin (100) is between the flowerpot main body (300) and the necking structure (301), and the height of the necking structure (301) is less than the height of the water storage basin (100).

2. The degradable assembled flowerpot according to claim 1, wherein: The clamping structure located in the upper layer includes a plurality of rotation buckles two (303) distributed in a ring, and a plurality of rotation buckles one (102) corresponding to the rotation buckles two (303) are provided on the inner side of the water storage basin (100), and they are clamped and fixed by means of docking rotation.

3. The degradable assembled flowerpot according to claim 1, characterized in that: The clamping structure located in the lower layer includes a plurality of fixed buckle holes (302) distributed in a ring, and a plurality of fixed buckles (202) corresponding to the fixed buckle holes (302) are provided on the water filter tray (200), and they are clamped and fixed by means of docking rotation.

4. The degradable assembled flowerpot according to claim 1, wherein: A plurality of connecting columns capable of lifting the water filter tray (200) are provided in the water storage basin (100), and the water filter tray (200) is attached to the bottom wall of the flowerpot main body (300) under the action of the connecting columns.

5. The degradable assembled flowerpot according to claim 1, wherein: A clamp (400) is provided at the upper end of the flowerpot main body (300), and a detachable cover (500) is provided inside the clamp (400), and a handle (600) is provided on the cover (500).

6. The degradable assembled flowerpot according to claim 1, wherein: Both the water storage basin (100) and the water filter tray (200) are made of non-degradable materials.

7. The degradable assembled flowerpot according to claim 1, wherein: The water storage basin (100) is made of transparent material, and a drain port (101) extending outward is provided at the upper end of the water storage basin (100).