Strawberry planting pot
By designing the hook and water collection box structure for strawberry planting pots, the problems of inconvenient operation and disease spread in strawberry hanging cultivation have been solved, achieving stable hanging and water and fertilizer collection, which is suitable for large-scale strawberry cultivation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XINFA GRP AGRI CO LTD
- Filing Date
- 2025-09-01
- Publication Date
- 2026-07-28
AI Technical Summary
Existing suspended strawberry containers are inconvenient to operate in large-scale cultivation, strawberry seedlings are prone to disease transmission, and it is difficult to collect excess water and fertilizer, resulting in resource waste and environmental pollution.
Design a strawberry planting pot, including a hook, a water collection box, and a seedling pot. The seedling pot is placed inside the water collection box and is equipped with a drain and a support platform. The water collection box and the seedling pot are suspended by the hook to achieve stable hanging of multiple seedling pots. The water collection box collects excess water and fertilizer, reducing the risk of disease transmission.
It achieves efficient operation in strawberry cultivation, reduces the risk of disease transmission, saves water and fertilizer resources, avoids environmental pollution, and is suitable for large-scale planting.
Smart Images

Figure CN224556457U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of strawberry cultivation technology, specifically to a strawberry planting pot. Background Technology
[0002] Strawberries are a popular fruit with high market demand. To increase strawberry yield per unit area and save ground space, hanging cultivation has become increasingly popular. Hanging cultivation involves suspending planting containers, filling them with substrate, and then planting strawberries. Watering and fertilization are done manually or through drip irrigation systems. However, currently, planting containers used in hanging cultivation are generally planting bags, pots, or troughs. Planting bags and pots are small and require individual hanging, making them cumbersome and unsuitable for large-scale strawberry cultivation. While planting troughs are relatively large and can accommodate more strawberry seedlings, sharing the same soil environment increases the likelihood of disease. Furthermore, if a seedling develops a disease that goes undetected, it can easily spread to other seedlings in the same trough. Additionally, when excessive water and fertilizer are applied, existing planting containers struggle to drain the excess, leading to root rot or wasted water and fertilizer and environmental pollution. Utility Model Content
[0003] To address the problems in the background technology, this utility model proposes a device suitable for large-scale strawberry cultivation, which can reduce the risk of disease transmission from strawberry seedlings and collect excess water and fertilizer. The technical solution is as follows: A strawberry planting pot includes a hook, a water collection box, and a seedling pot. The seedling pot is placed inside the water collection box. There are multiple seedling pots, which are arranged sequentially along the length of the water collection box. The water collection box is equipped with a water collection trough and a support platform. The bottom surface of the seedling pot is located above the water collection trough and the support platform. Part of the bottom surface of the seedling pot is in contact with the support platform. The bottom of the seedling pot is equipped with a drain outlet that penetrates the seedling pot and is connected to the water collection trough. The hook is U-shaped and includes a base rod and side rods at both ends of the base rod. The water collection box is located between the two side rods. The base rod of the hook abuts against the bottom surface of the water collection box. Lifting rings are provided at both ends of the base rod, and hooks are provided at the top of the side rods. Preferably, the bottom of the water collection box is provided with a snap-fit groove in the middle position, and the bottom rod is provided with an upwardly protruding snap-fit part in the middle position. The snap-fit part is located in the snap-fit groove and abuts against the top of the snap-fit groove.
[0004] Preferably, the top of the seedling pot is provided with a bending plate on one side in the first direction, and a slot is formed between the bending plate and the side of the seedling pot. The top of the seedling pot is provided with a plug-in part that matches the slot on the other side in the first direction. When the seedling tray is placed in the water collection box, the seedling tray insertion part is inserted into the slot of the adjacent seedling tray.
[0005] Preferably, the top of the bent plate is provided with a downwardly recessed placement groove.
[0006] Preferably, the top of the seedling tray is provided with gripping plates on both sides in the second direction.
[0007] Preferably, the water collection box is provided with two water collection troughs, which are symmetrically arranged along the width direction of the water collection box. The support platform and each water collection trough are arranged along the length direction of the water collection box, and the support platform is located between the two water collection troughs. The water collection box has box-shaped end caps with one side opening at both ends along its length. The end of the water collection box extends from the opening of the box-shaped end cap into the box-shaped end cap. There is a gap between the top surface of the support platform and the inner wall of the top of the box-shaped end cap.
[0008] Preferably, the bottom of the seedling pot has an upwardly convex concave surface in the middle, and the bottom of the seedling pot is in contact with the support platform at the positions on both sides of its concave surface, and there is a gap between the concave surface of the bottom of the seedling pot and the top of the support platform. The bottom concave surface of the seedling pot is provided with multiple first drainage outlets.
[0009] Preferably, a stop block is provided in the middle of the support platform, the stop block is arranged along the length direction of the water collection box, and the two sides of the stop block in the width direction of the water collection box are downward inclined surfaces; There are two sets of the first water outlet, and the two sets of first water outlets are respectively located on both sides of the block.
[0010] Preferably, the bottom of the seedling tray is provided with two upwardly protruding protrusions, the two protrusions are symmetrically distributed along the second direction, and each protrusion is arranged along the first direction, with the protrusions located near the side of the seedling tray; The protrusion is provided with a plurality of second drain outlets, which are arranged along the first direction and are located above the water collection tank.
[0011] Preferably, the bottom of the seedling pot is provided with a plurality of fourth drain outlets on both sides in the second direction, and the bottom of the seedling pot is provided with a plurality of third drain outlets at the position between the protrusion and the side of the seedling pot. The plurality of fourth drain outlets and the plurality of third drain outlets are arranged along the first direction, and the fourth drain outlets and the third drain outlets are located above the water collection trough.
[0012] The beneficial effects of this utility model are as follows: This invention features a water collection box and multiple seedling pots housed within it. The water collection box can be suspended using hooks, eliminating the need to lift each seedling pot individually, making operation convenient. Furthermore, the multiple seedling pots prevent strawberry seedlings on the same water collection box from sharing the same soil, reducing the possibility of disease transmission. The water collection box can be multi-layered; hooks on lower layers can be attached to rings on upper layers, allowing for multi-layered strawberry planting, suitable for large-scale cultivation. Simultaneously, the seedling pots have drainage outlets, allowing excess water and fertilizer to seep into the water collection box for collection and reuse, conserving resources and preventing root rot from soaking. It also prevents water and fertilizer from dripping onto the ground, thus preventing environmental pollution. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the seedling tray structure of this utility model; Figure 3 This is a top view of the seedling tray of this utility model; Figure 4 This is a side view of the seedling tray of this utility model; Figure 5 This is a schematic diagram of the water collection box structure of this utility model; Figure 6 This is a schematic diagram showing the connection relationship between the hook, seedling pot, and water collection box of this utility model; Figure 7 This is a schematic diagram of the hook structure of this utility model.
[0014] Numbered in the diagram: 1. Seedling pot; 2. Water collection box; 3. Hook; 31. Hanging ring; 32. Hanging hook; 33. Snap-fit part; 4. Snap-fit groove; 5. Water collection trough; 6. Support platform; 7. Bending plate; 8. Slot; 9. Insertion part; 10. Placement slot; 11. Holding plate; 12. Box-shaped end cap; 13. First drain outlet; 14. Stop block; 15. Protrusion; 16. Second drain outlet; 17. Third drain outlet; 18. Fourth drain outlet. Detailed Implementation
[0015] To make this utility model clearer and more understandable, the technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the given embodiments are only one of the implementation methods and do not represent all embodiments.
[0016] In this article, terms such as "inner," "outer," "upper," and "lower" are established based on the positional relationships shown in the attached drawings. Depending on the attached drawings, the corresponding positional relationships may also change. Therefore, they should not be interpreted as an absolute limitation on the scope of protection.
[0017] Combined with appendix Figure 1 - Appendix Figure 7 A strawberry planting pot includes a hook 3, a water collection box 2, and a seedling pot 1. The seedling pot 1 is placed inside the water collection box 2. There are multiple seedling pots 1, which are arranged sequentially along the length of the water collection box 2. The water collection box 2 is provided with a water collection trough 5 and a support platform 6. The bottom surface of the seedling pot 1 is located above the water collection trough 5 and the support platform 6. Part of the bottom surface of the seedling pot 1 is in contact with the support platform 6. The bottom of the seedling pot 1 is provided with a drain outlet that penetrates the seedling pot 1. The drain outlet is connected to the water collection trough 5, and excess water and fertilizer can enter the water collection trough 5 through the drain outlet. The hook 3 is U-shaped and includes a base rod and side rods located at both ends of the base rod. The water collection box 2 is located between the two side rods. The base rod of the hook 3 abuts against the bottom surface of the water collection box 2. The base rod is provided with lifting rings 31 at both ends and the top of the side rod is provided with hooks 32.
[0018] The support platform 6 is used to support the seedling pot 1, so that after the seedling pot 1 is placed in the water collection box 2, the seedling pot 1 can be located above the water collection trough 5, rather than inside the water collection trough 5, thus ensuring the independent and unobstructed flow of the water collection trough 5.
[0019] The hook 3 is used to suspend the water collection box 2 and the seedling pot 1. The hook 32 of the hook 3 is used to connect with the structure of the planting site, such as the roof of a greenhouse or greenhouse. The hook 32 can also be connected to the hanging ring 31 on another hook 3 to realize the multi-layer setting of strawberry planting pots and increase the planting density of strawberries.
[0020] Specifically, when multiple seedling pots 1 are placed in the water collection box 2, the adjacent sides of two adjacent seedling pots 1 are in contact, and the adjacent sides of multiple seedling pots 1 and the water collection box 2 are all in contact with the inner wall of the water collection box 2, so that the multiple seedling pots 1 are limited by the side wall of the water collection box 2 and form a whole that is not easy to move within the water collection box 2.
[0021] Specifically, each water collection box 2 is suspended by at least two hooks 3, which are symmetrically located at both ends of the length of the water collection box 2.
[0022] Specifically, the water collection box 2 has a locking groove 4 at the bottom center, and the bottom rod has an upwardly protruding locking part 33 at the center. The locking part 33 is located inside the locking groove 4 and abuts against the top of the locking groove 4. The locking part 33 being located inside the locking groove 4 can further improve the stability of the cooperation between the water collection box 2 and the hook 3, and prevent the hook 3 from detaching from the water collection box 2 during suspension.
[0023] Specifically, a bending plate 7 is provided on one side of the top of the seedling pot 1 in the first direction, and a slot 8 is formed between the bending plate 7 and the side of the seedling pot 1. A plug-in part 9 matching the slot 8 is provided on the other side of the top of the seedling pot 1 in the first direction. When the seedling tray 1 is placed in the water collection box 2, the insertion part 9 of the seedling tray 1 is inserted into the slot 8 of the adjacent seedling tray 1. Through the cooperation of the insertion part 9 and the slot 8, multiple seedling trays 1 in the same water collection box 2 are connected in sequence, which improves the integrity of multiple seedling trays 1 in the water collection box 2, thereby further improving the stability of multiple seedling trays 1 placed in the water collection box 2.
[0024] Specifically, the top of the bent plate 7 is provided with a downwardly recessed placement groove 10. The placement groove 10 is used to place the drip irrigation pipe. After the drip irrigation pipe is placed in the placement groove 10, it is not easy for it to move relative to the seedling pot 1, thus improving the stability of the placement of the drip irrigation pipe. More specifically, there are two placement grooves 10, which are arranged sequentially along the second direction, and the two placement grooves 10 are symmetrical in position.
[0025] Specifically, the top of the seedling tray 1 is provided with grip plates 11 on both sides in the second direction. The grip plates 11 make it easy for the user to hold the seedling tray 1.
[0026] Specifically, the water collection box 2 is provided with two water collection troughs 5, which are symmetrically arranged along the width direction of the water collection box 2. The support platform 6 and each water collection trough 5 are arranged along the length direction of the water collection box 2, and the support platform 6 is located between the two water collection troughs 5. The water collection box 2 has box-shaped end caps 12 with one side opening at both ends along its length. The end of the water collection box 2 extends from the opening of the box-shaped end cap 12 into the box-shaped end cap 12. There is a gap between the top surface of the support platform 6 and the top inner wall of the box-shaped end cap 12.
[0027] To facilitate drainage, one end of the water collection box 2 can be raised to give it a certain tilt angle. This tilt allows excess water and fertilizer solution to flow quickly down the box. Furthermore, due to the gap between the top surface of the support platform 6 and the inner wall of the top of the box-shaped end cover 12, the water and fertilizer solution on the support platform 6 can flow from inside the box-shaped end cover 12 into the water collection tanks 5 on both sides.
[0028] Specifically, the bottom of the seedling pot 1 has an upwardly convex concave surface in the middle, and the bottom of the seedling pot 1 is in contact with the support platform 6 on both sides of its concave surface. There is a gap between the concave surface of the bottom of the seedling pot 1 and the top of the support platform 6. The concave surface of the bottom of the seedling pot 1 is provided with multiple first drainage outlets 13.
[0029] More specifically, a stop block 14 is provided in the middle of the support platform 6. The stop block 14 is arranged along the length of the water collection box 2, and the two sides of the stop block 14 in the width direction of the water collection box 2 are downward inclined surfaces. There are two sets of the first drain outlet 13, and the two sets of first drain outlet 13 are respectively located on both sides of the baffle 14. The baffle 14 allows the water and fertilizer liquid falling from the first drain outlet 13 onto the support platform 6 to be located on both sides of the baffle 14, thereby facilitating the flow of water and fertilizer liquid from the support platform 6 to the water collection tanks 5 on both sides of the baffle 14 and preventing the water and fertilizer liquid from accumulating on the support platform 6.
[0030] Specifically, the bottom of the seedling pot 1 is provided with two upward protrusions 15, the two protrusions 15 are symmetrically distributed along the second direction, and each protrusion 15 is arranged along the first direction. The protrusions 15 are located near the side of the seedling pot 1. The protrusion 15 is provided with a plurality of second drain outlets 16, which are arranged along the first direction and are located above the water collection tank 5.
[0031] The seedling pot 1 has multiple fourth drain outlets 18 on both sides of the bottom in the second direction. The bottom of the seedling pot 1 has multiple third drain outlets 17 located between the protrusion 15 and the side of the seedling pot 1. The multiple fourth drain outlets 18 and the multiple third drain outlets 17 are arranged along the first direction. The fourth drain outlets 18 and the third drain outlets 17 are located above the water collection tank 5.
[0032] It should be noted that the first direction is the same as the length direction of the water collection box 2, and the second direction is the same as the width direction of the water collection box 2.
[0033] Although embodiments of the present invention have been shown and described, those skilled in the art will be able to make various changes, modifications, substitutions and alterations to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A strawberry growing pot, characterised in that: Includes a hook (3), a water collection box (2) and a seedling pot (1). The seedling pot (1) is set inside the water collection box (2). There are multiple seedling pots (1), which are arranged sequentially along the length of the water collection box (2). The water collection box (2) is provided with a water collection trough (5) and a support platform (6). The bottom surface of the seedling pot (1) is located above the water collection trough (5) and the support platform (6). Part of the bottom surface of the seedling pot (1) is in contact with the support platform (6). The bottom of the seedling pot (1) is provided with a drain outlet that penetrates the seedling pot (1). The drain outlet is connected to the water collection trough (5). The hook (3) is U-shaped and includes a bottom rod and side rods at both ends of the bottom rod. The water collection box (2) is located between the two side rods. The bottom rod of the hook (3) abuts against the bottom surface of the water collection box (2). The bottom rod is provided with a lifting ring (31) at both ends of the bottom rod and a lifting hook (32) at the top of the side rod.
2. The strawberry planting pot according to claim 1, characterized by: The water collection box (2) has a snap-fit groove (4) at the bottom center and a snap-fit part (33) protruding upward at the center of the bottom rod. The snap-fit part (33) is located in the snap-fit groove (4) and abuts against the top of the snap-fit groove (4).
3. The strawberry planting pot according to claim 1, characterized in that: The top of the seedling pot (1) is provided with a bending plate (7) on one side in the first direction, and a slot (8) is formed between the bending plate (7) and the side of the seedling pot (1). The top of the seedling pot (1) is provided with a plug-in part (9) that matches the slot (8) on the other side in the first direction. When the seedling tray (1) is placed in the water collection box (2), the insertion part (9) of the seedling tray (1) is inserted into the slot (8) of the adjacent seedling tray (1).
4. The strawberry planting pot according to claim 3, characterized in that: The top of the bent plate (7) is provided with a downwardly recessed placement groove (10).
5. The strawberry planting pot according to claim 1, characterized in that: The top of the seedling pot (1) is provided with gripping plates (11) on both sides in the second direction.
6. The strawberry planting pot according to claim 1, characterized in that: The water collection box (2) is provided with two water collection troughs (5), which are symmetrically arranged along the width direction of the water collection box (2). The support platform (6) and each water collection trough (5) are arranged along the length direction of the water collection box (2). The support platform (6) is located between the two water collection troughs (5). The water collection box (2) has box-shaped end caps (12) with one side opening at both ends along its length. The end of the water collection box (2) extends from the opening of the box-shaped end cap (12) into the box-shaped end cap (12). There is a gap between the top surface of the support platform (6) and the top inner wall of the box-shaped end cap (12).
7. The strawberry planting pot according to claim 6, characterized in that: The bottom of the seedling pot (1) has a concave surface that bulges upward in the middle. The bottom of the seedling pot (1) is in contact with the support platform (6) on both sides of its concave surface. There is a gap between the concave surface of the bottom of the seedling pot (1) and the top of the support platform (6). The seedling pot (1) has multiple first drainage outlets (13) at the concave bottom surface.
8. The strawberry planting pot according to claim 7, characterized in that: The support platform (6) is provided with a stop block (14) in the middle position. The stop block (14) is arranged along the length direction of the water collection box (2). The two sides of the stop block (14) in the width direction of the water collection box (2) are downward inclined surfaces. There are two sets of the first water outlet (13), and the two sets of first water outlet (13) are respectively located on both sides of the block (14).
9. The strawberry planting pot according to claim 8, characterized in that: The bottom of the seedling pot (1) is provided with two upward protrusions (15), the two protrusions (15) are symmetrically distributed along the second direction, and each protrusion (15) is arranged along the first direction. The protrusions (15) are located near the side of the seedling pot (1). The protrusion (15) is provided with a plurality of second drain ports (16), which are arranged along the first direction and are located above the water collection tank (5).
10. The strawberry planting pot according to claim 9, characterized in that: The seedling pot (1) is provided with multiple fourth drain outlets (18) on both sides of the bottom in the second direction. The bottom of the seedling pot (1) is provided with multiple third drain outlets (17) between the protrusion (15) and the side of the seedling pot (1). The multiple fourth drain outlets (18) and the multiple third drain outlets (17) are arranged along the first direction. The fourth drain outlets (18) and the third drain outlets (17) are located above the water collection trough (5).