Stackable leakage-proof flowerpot

By designing stackable leak-proof flower pots and utilizing the combined structure of main pins and leak-proof rings, the problems of reduced stacking quantity and substrate leakage caused by the pins are solved, achieving higher space utilization and cost-effectiveness.

CN223452499UActive Publication Date: 2025-10-21宁波赫欣农业设备有限公司
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Patent Information

Application Number
CN202422969443.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-10-21
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

The pins on the pots result in reduced stacking capacity, increased storage and shipping costs, and the substrate is prone to leakage.

Method used

A stackable leak-proof flower pot is designed. The stacking height is reduced by inserting the main pin into the main socket, and the main socket is sealed with a leak-proof ring. The air permeable block and the support block are combined to improve stability and air permeability.

Benefits of technology

The stacking quantity can be increased without increasing the total height, thus reducing storage and transportation costs, preventing matrix leakage and improving space utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a stackable leakage-proof flowerpot which comprises a flowerpot body, an opening is formed in the top of the flowerpot body, a planting cavity communicated with the opening is formed in the flowerpot body, a plurality of main insertion pins are arranged at the bottom of the flowerpot body, main insertion holes communicated with the planting cavity are formed in the main insertion pins, a fixing ring is arranged on the side face of the planting cavity, and a plurality of limiting blocks are arranged at the bottom of the planting cavity. The anti-leakage ring is movably arranged at the bottom of the planting cavity, the outer side of the anti-leakage ring abuts against the fixing ring, and the inner side of the anti-leakage ring abuts against the limiting block and is used for sealing the main insertion hole; when the leakage-proof flowerpots are stacked, the flowerpot bodies are sequentially stacked, the leakage-proof rings are independently and sequentially stacked outside the planting cavity, and the main insertion pins of the upper flowerpot body are inserted into the main insertion holes of the lower flowerpot body. According to the stackable leakage-proof flowerpot, the stacking height is reduced by inserting the main insertion pins of the upper flowerpot into the main insertion holes of the lower flowerpot, the stacking number is increased under the condition that the total height is not changed, the space utilization rate is high, the storage and transportation cost is low, plugging of the main insertion holes is achieved through the leakage-proof rings, and matrix leakage is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a flowerpot, especially a stackable leakproof flowerpot. BACKGROUND

[0002] The volume of the flowerpot is large, in order to facilitate storage and transportation, the flowerpot is usually stored and transported after being stacked, which can greatly reduce the volume and reduce the cost of storage and transportation.

[0003] The flowerpot needs to be provided with a plug when being used, and the plug can improve the stability of the flowerpot.

[0004] The existence of the plug increases the height of the stack, thereby reducing the number of stacks and the space utilization, and increasing the cost of storage and transportation. TECHNICAL CONTENT

[0005] To solve the problem of high storage and transportation cost caused by the decrease in the number of stacks due to the plug, the utility model provides a stackable leakproof flowerpot, and the specific technical scheme is as follows:

[0006] A stackable leakproof flowerpot comprises a flowerpot body, an opening is arranged at the top of the flowerpot body, a planting cavity in communication with the opening is arranged in the flowerpot body, a plurality of main plugs are arranged at the bottom of the flowerpot body, a main plug hole in communication with the planting cavity is arranged on the main plug, a fixing ring is arranged on the side of the planting cavity, and a plurality of limiting blocks are arranged at the bottom of the planting cavity; a leakproof ring is movably arranged at the bottom of the planting cavity, the outer side of the leakproof ring is abutted against the fixing ring, the inner side of the leakproof ring is abutted against the limiting block, and the leakproof ring is used for closing the main plug hole; when the leakproof flowerpot is stacked, the plurality of flowerpot bodies are stacked in sequence, the leakproof rings are independently stacked in sequence outside the planting cavity, and the main plug of the upper flowerpot body is inserted into the main plug hole of the lower flowerpot body.

[0007] Preferably, a plurality of air permeable blocks are further arranged at the bottom of the planting cavity, the air permeable blocks are arranged on one side of the limiting blocks, and the leakproof ring is abutted against the air permeable blocks.

[0008] Preferably, a main supporting block is further arranged in the main plug hole, and the main supporting block is abutted against the bottom of the main plug when the flowerpot body is stacked.

[0009] Preferably, a plurality of slave plugs are further arranged at the bottom of the flowerpot body, the slave plugs are arranged between two adjacent main plugs, and a slave plug hole in communication with the planting cavity is arranged on the slave plug.

[0010] Further, a plurality of slave supporting blocks are arranged in the slave jack, and the slave supporting blocks abut against the bottom of the slave pin when the flowerpot bodies are stacked.

[0011] Preferably, the top of the flowerpot body is provided with a reinforcing flange, and the reinforcing flanges are sleeved together when the leakproof flowerpots are stacked.

[0012] Further, the inside of the reinforcing flange is provided with a plurality of upper supporting blocks, and the top of the lower reinforcing flange abuts against the upper supporting blocks of the upper flowerpot body when the leakproof flowerpots are stacked.

[0013] Further, a plurality of fixing grooves are arranged on the reinforcing flange, and the upper supporting blocks are located at the bottom of the fixing grooves.

[0014] Preferably, the bottom of the planting cavity is provided with a plurality of air holes.

[0015] Preferably, the leakproof ring is in the shape of a sphere.

[0016] Compared with the prior art, the stackable leakproof flowerpot has the following beneficial effects:

[0017] The stackable leakproof flowerpot reduces the height when stacked by inserting the main pin of the upper flowerpot into the main jack of the lower flowerpot, increases the number of stacks under the condition that the total height is unchanged, improves the space utilization, reduces the cost of storage and transportation, and realizes the plugging of the main jack through the leakproof ring, thereby reducing the leakage of the substrate in the planting cavity. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a structural schematic view of the present application;

[0019] Figure 2 is a top view of the present application;

[0020] Figure 3 is a sectional view of the present application;

[0021] Figure 4 is Figure 3 is an enlarged view of I in FIG. 1;

[0022] Figure 5 is a first perspective view of the flowerpot body;

[0023] Figure 6 is a second perspective view of the flowerpot body;

[0024] Figure 7 is a structural schematic view of the leakproof ring;

[0025] Figure 8 is a front view of the leakproof ring;

[0026] Figure 9 is a structure diagram of the flowerpot body stack;

[0027] Figure 10 is Figure 9 the front view of the flowerpot body 1;

[0028] Figure 11 is Figure 10 the partial enlarged view of II in the flowerpot body 1. DETAILED DESCRIPTION

[0029] The utility model will be further described in connection with the drawings.

[0030] As Figures 1 to 11 shown, a stackable leakproof flowerpot comprises a flowerpot body 1 and a leakproof ring 5, the top of the flowerpot body 1 is provided with an opening 11, the inside of the flowerpot body 1 is provided with a planting cavity 12 communicated with the opening 11, the bottom of the flowerpot body 1 is provided with a plurality of main insertion feet 13, the main insertion feet 13 are provided with main insertion holes 14 communicated with the planting cavity 12, the side of the planting cavity 12 is provided with a fixing ring 31, the fixing ring 31 is located above the bottom of the planting cavity 12, the bottom of the planting cavity 12 is provided with a plurality of limiting blocks 32; the leakproof ring 5 is movably inserted into the bottom of the planting cavity 12, the outer side of the leakproof ring 5 abuts against the fixing ring 31, the inner side of the leakproof ring 5 abuts against the limiting block 32, the limiting block 32 can effectively prevent the leakproof ring 5 from sliding due to the gravity of the substrate, so that the position of the leakproof ring 5 is kept unchanged. The fixing ring 31 and the limiting block 32 realize the fixing of the leakproof ring 5, and the leakproof ring 5 is used for closing the main insertion hole 14. When the flowerpots are stacked, a plurality of flowerpot bodies 1 are stacked in sequence, and the leakproof rings 5 are independently stacked in sequence outside the planting cavities 12, the main insertion feet 13 of the upper flowerpot body 1 are inserted into the main insertion holes 14 of the lower flowerpot body 1. Since the main insertion feet 13 are not abutted against the bottom of the planting cavity 12, but the inside of the main insertion feet 13, the stacking height is smaller than the height of the main insertion feet 13. Under the condition of the same stacking height, the number of the flowerpot stack can be increased, and the space utilization is improved, and the cost of storage and transportation is reduced. Since the main insertion hole 14 is communicated with the planting cavity 12, the substrate for planting in the planting cavity 12 can leak through the main insertion hole 14, and the leakproof ring 5 abuts against the top of the main insertion hole 14. When the flowerpot is used, the leakproof ring 5 is placed at the bottom of the planting cavity 12, so that the top of the main insertion hole 14 is closed, and the substrate is not easy to be lost. When the flowerpots are stacked, the leakproof ring 5 is taken out from the planting cavity 12, and is independently stacked, and can be placed into the uppermost planting cavity 12, without occupying additional space, so that the space utilization is greatly improved.

[0031] In order to improve the air permeability and drainage performance, the bottom of the planting cavity 12 is provided with a plurality of air permeable blocks 33, the air permeable blocks 33 are also provided on one side of the limiting block 32, and form an integral structure, the leakage prevention ring 5 abuts against the air permeable blocks 33, thereby forming a gap between the leakage prevention ring 5 and the air permeable blocks 33, which can be air-permeable and water-permeable, and communicates with the main insertion hole 14 through the gap, thereby realizing the communication between the planting cavity 12 and the outside.

[0032] The flowerpot body 1 can be a trapezoidal body, and is a trapezoidal body with a large top and a small bottom. The flowerpot body 1 can also be other shapes. When the flowerpot body 1 is a trapezoidal body, the main insertion legs 13 are provided with four, and are respectively located on the four corners of the trapezoidal body.

[0033] In order to prevent the main insertion legs 13 from being inserted too tightly in the main insertion hole 14, causing the flowerpot body 1 to be difficult to take out, the main insertion hole 14 is also provided with a main support block 15, which abuts against the bottom of the main insertion leg 13 when the flowerpot body 1 is stacked, and the main support block 15 makes the main insertion leg 13 not tightly attached to the surface of the main insertion hole 14 in the main insertion hole 14, so that there is a gap between the main insertion leg 13 and the main insertion hole 14, thereby facilitating the taking out of the stacked flowerpot body 1.

[0034] In order to increase the stability and strength of the flowerpot, the bottom of the flowerpot body 1 is also provided with a plurality of from insertion legs 16, which are arranged between adjacent two main insertion legs 13, and the from insertion hole 17 communicating with the planting cavity 12 is arranged on the from insertion leg 16. When the flowerpot body 1 is a trapezoidal body, the from insertion leg 16 is arranged at the middle position of the four bottom edges.

[0035] In order to prevent the from insertion leg 16 from being inserted too tightly in the from insertion hole 17, causing the flowerpot body 1 to be difficult to take out, a plurality of from support blocks 18 are arranged in the from insertion hole 17, and the from support block 18 abuts against the bottom of the from insertion leg 16 when the flowerpot body 1 is stacked. The from support block 18 makes the from insertion leg 16 not tightly attached to the surface of the from insertion hole 17 in the from insertion hole 17, so that there is a gap between the from insertion leg 16 and the from insertion hole 17, thereby facilitating the taking out of the stacked flowerpot body 1.

[0036] In order to improve the strength of the top of the flowerpot body 1 and prevent the flowerpot body 1 from shaking when stacked, the top of the flowerpot body 1 is provided with a reinforcing flange 41, and the reinforcing flanges 41 are sleeved together when the leakage prevention flowerpots are stacked. The sleeved reinforcing flanges 41 limit the top of the flowerpot body 1, thereby effectively preventing the flowerpot body 1 from shaking.

[0037] In order to realize reliable support, and prevent the case that the flowerpot body 1 is not easy to be taken out from the stack caused by the over-tight fitting of the reinforcing flange 41, the inside of the reinforcing flange 41 is provided with a plurality of upper supporting blocks 43, and the top of the lower reinforcing flange 41 is prevented from being stacked on the upper supporting block 43 of the upper flowerpot body 1. The upper supporting block 43 controls the spacing of the reinforcing flange 41, avoids the mutual locking of the reinforcing flanges 41, and leaves a gap between the mutually sleeved reinforcing flanges 41, so as to facilitate the taking out of the stacked flowerpot body 1.

[0038] In order to facilitate the fixing of the irrigation pipe, the top of the reinforcing flange 41 is also provided with a plurality of fixing grooves 42 for fixing the pipe. The upper supporting block 43 is located at the bottom of the fixing groove 42, which can increase the strength of the fixing groove 42.

[0039] In order to ensure reliable drainage and ventilation performance, the bottom of the planting cavity 12 is provided with a plurality of ventilation holes 10.

[0040] In order to improve the sealing and strength, the leak-proof ring 5 is in the shape of a spherical segment, and the curved surface can more effectively prevent deformation relative to the flat surface, thereby maintaining the state unchanged, and avoiding the collapse of the leak-proof ring 5.

[0041] The technical principles of the present application are described above in combination with specific embodiments. These descriptions are only for the purpose of explaining the principles of the present application, and cannot be interpreted in any way as limiting the scope of protection of the present application. Based on the explanations herein, those skilled in the art can conceive other specific embodiments of the present application without creative labor, and these embodiments will fall within the scope of protection of the claims of the present application.

Claims

1. A stackable leak-proof planter, characterized by, The utility model relates to a kind of leakproof flowerpot, including: Flowerpot body (1), top is equipped with opening (11), inside is equipped with planting cavity (12) with the opening (11) is communicated, the bottom of the flowerpot body (1) is equipped with several main insertion foot (13), the main insertion foot (13) is equipped with main insertion hole (14) with the planting cavity (12) is communicated, the side of the planting cavity (12) is equipped with fixed ring (31), the bottom of the planting cavity (12) is equipped with several limit block (32);And Leakproof ring (5), it is movably arranged in the bottom of the planting cavity (12), the outside of the leakproof ring (5) is pressed on the fixed ring (31), the inside of the leakproof ring (5) is pressed on the limit block (32), the leakproof ring (5) is used to close the main insertion hole (14); Wherein, the leakproof flowerpot is stacked, several flowerpot body (1) is sequentially stacked, the leakproof ring (5) is independently sequentially stacked outside the planting cavity (12), the main insertion foot (13) of upper flowerpot body (1) is inserted in the main insertion hole (14) of lower flowerpot body (1).

2. The stackable leak-proof planter of claim 1, wherein, The bottom of the planting cavity (12) is also equipped with several air-permeable blocks (33), the air-permeable blocks (33) are also arranged on one side of the limit block (32), and the leakproof ring (5) is pressed on the air-permeable blocks (33).

3. The stackable leak-proof planter of claim 1, wherein, The main insertion hole (14) is also provided with a main support block (15), and the main support block (15) is pressed on the bottom of the main insertion foot (13) when the flowerpot body (1) is stacked.

4. The stackable leakproof planter of claim 1, wherein, The bottom of the flowerpot body (1) is also provided with a plurality of slave insertion feet (16), the slave insertion feet (16) are arranged between two adjacent main insertion feet (13), and the slave insertion feet (16) are provided with slave insertion holes (17) communicated with the planting cavity (12).

5. A stackable leak-proof planter according to claim 4, wherein, The slave insertion hole (17) is provided with a plurality of slave support blocks (18), and the slave support blocks (18) are pressed on the bottom of the slave insertion foot (16) when the flowerpot body (1) is stacked.

6. The stackable leakproof planter pot of claim 1, wherein, The top of the flowerpot body (1) is provided with a reinforcing flange (41), and the reinforcing flanges (41) are sleeved together when the leakproof flowerpot is stacked.

7. A stackable leak-proof planter according to claim 6, wherein, The inside of the reinforcing flange (41) is provided with a plurality of upper support blocks (43), and the top of the lower reinforcing flange (41) is pressed on the upper support blocks (43) of the upper flowerpot body (1) when the leakproof flowerpot is stacked.

8. A stackable leak-proof planter according to claim 7, wherein, The reinforcing flange (41) is also provided with a plurality of fixing grooves (42), and the upper support blocks (43) are located at the bottom of the fixing grooves (42).

9. The stackable leakproof planter pot of claim 1, wherein, The bottom of the planting cavity (12) is provided with a plurality of air holes (10).

10. The stackable leakproof planter pot of claim 1, wherein, The leakproof ring (5) is in the shape of a spherical segment.