Flowerpot for simulating green plants
By introducing a detachable adapter and screw-in support design into the flowerpot, and utilizing the step surface for limiting and positioning for support, the problems of flowerpot versatility and stability are solved. This enables the flowerpot to be adapted to and stably placed for different green plants, avoids damage from cement movement, and has a drainage function.
Patent Information
- Application Number
- CN202423317430.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing flower pots have poor versatility and insufficient stability, cannot adapt to the diameter differences of different simulated green plants, and are prone to damage to the plants due to the movement of the counterweight cement under external force.
A simulated green plant flower pot was designed, which uses a detachable adapter and a support screw connection. The adapter has an internal thread and a stepped surface. The stepped surface and the pot body are spaced apart to limit the counterweight cement. Combined with the positioning surface of the support and the drainage structure of the riser, it can achieve the adaptation and stable fixation of different green plants.
It achieves versatility and stability in the use of flower pots, can adapt to simulated green plants of different diameters, prevents the counterweight cement from shifting, ensures that the flower pot will not tip over under external force, and has a drainage function.
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Figure CN223503978U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of flower pot technology and relates to a flower pot that simulates green plants. Background Technology
[0002] As people's living standards continue to improve, their aesthetic appreciation becomes more prominent, and the placement of decorative items in daily life is becoming increasingly important. Various decorative items, such as artificial flowers and plants, not only beautify the room but also uplift the spirit and create a sense of tranquility. They are also easy to care for. Artificial plants, however, often require suitable flowerpots for proper placement.
[0003] Patent CN106171619A discloses a flowerpot with a sunshade, including a flowerpot body with a circular bottom. A vertical support tube is provided at the center of the inner surface of the bottom of the flowerpot body. A base is integrally provided at the lower end of the support tube, and the lower end of the base is fixedly connected to the inner surface of the bottom of the flowerpot body. A threaded hole is provided in the support tube, and a positioning screw is threadedly connected to the upper end of the support tube. A metal snakeskin tube is welded to the upper end of the positioning screw, and a connecting rod is welded to the upper end of the metal snakeskin tube. A sunshade mounting bracket is detachably provided at the upper end of the connecting rod. A sunshade is provided on the sunshade mounting bracket, and at least two hanging rings are symmetrically provided on the sunshade mounting bracket, with each hanging ring being integrally provided with the sunshade mounting bracket.
[0004] The aforementioned flowerpot allows the plant to be threaded onto the upper end of the support tube inside the flowerpot body, which is currently used for installing simulated green plants. However, there are still some shortcomings: there are various types of simulated green plants with different lower diameters, which means that different flowerpot bodies with different support tube sizes need to be designed for different simulated green plants. The flowerpot body has poor versatility. In addition, when the flowerpot is overturned by external force, the counterweight cement inside may move along the support tube and damage the plant branches and leaves, resulting in insufficient stability. Summary of the Invention
[0005] This utility model addresses the aforementioned problems in existing technologies by providing a simulated green plant flowerpot. The technical problem this utility model aims to solve is that existing flowerpots have poor versatility and insufficient stability in use.
[0006] The objective of this utility model can be achieved through the following technical solutions:
[0007] A simulated green plant flowerpot includes a pot body with an open top, and a cylindrical support portion facing upward inside the pot body. The flowerpot is characterized in that it further includes a cylindrical adapter portion facing vertically, the lower end of which is screwed to the upper end of the support portion. The upper end of the adapter portion has an internal thread on its inner edge. The radial dimension of the middle part of the adapter portion is larger than the radial dimension of the lower half of the adapter portion, forming a downward stepped surface. A gap is left between the stepped surface and the pot body below.
[0008] The inner cavity of the pot is used to hold the counterweight cement, and the support part can serve as an installation platform for artificial plants, facilitating their assembly. A cylindrical adapter is screwed to the upper end of the support part, with an internal thread on the inner edge of the upper end of the adapter. This allows the adapter to be freely separated from the support part via the thread. In other words, only pots of the same specifications need to be produced, and different adapters can be assembled to adapt to plants of different diameters, ensuring the compatibility of the flower pot at low cost. In addition, after the counterweight cement poured into the pot solidifies, part of it is embedded in the gap between the step surface and the pot body, thus forming a limit with the step surface upwards. This confines the counterweight cement inside the pot, preventing it from falling out along the support part and damaging the plant when the pot is overturned by external force. This balances the versatility of the flower pot with its structural stability during use.
[0009] In the aforementioned simulated green plant flowerpot, the lower end of the adapter has an external thread on its outer circumference. The lower end of the adapter is screwed into the support part, and part of the external thread is located between the stepped surface and the upper end surface of the support part. In this way, after the counterweight cement solidifies, it can wrap around the outer circumference of the external thread, further forming a limiting constraint, keeping the position of the counterweight cement stable and preventing it from shifting under force.
[0010] In the aforementioned simulated green plant pot, the cross-section of the support part is polygonal. This facilitates the positioning of the counterweight cement and the support part along the circumference, preventing the counterweight cement from rotating relative to the pot body in the circumference.
[0011] In the aforementioned simulated green plant pot, the radial dimension of the upper half of the adapter is larger than that of the lower half, forming the stepped surface in the middle. This design makes the upper part of the adapter larger than the support part, facilitating the fitting of green plants with larger radial dimensions of the trunk.
[0012] As an alternative, the adapter has a circumferentially arranged shoulder in the middle, with the lower side of the shoulder forming the stepped surface. This allows for a smaller radial dimension in the upper half of the adapter while ensuring the counterweight cement is positioned correctly, enabling the assembly of greenery with smaller radial dimensions for inserting tree trunks.
[0013] In the aforementioned simulated green plant pot, the upper half of the adapter has a polygonal cross-section. This makes it easier to apply force and rotate the adapter by holding the upper half, facilitating convenient assembly.
[0014] In the aforementioned simulated green plant pot, the inner edge of the support portion has an upward-facing positioning surface, and the lower end of the adapter abuts against this positioning surface. Thus, when the lower end of the adapter is tightened, it receives support and is limited by the positioning surface, indicating whether the assembly is in place. Furthermore, it provides support for the lower end of the adapter, ensuring the stability of the overall structure.
[0015] In the aforementioned artificial green plant pot, the support is located at the center of the pot. This ensures that the center of gravity of the artificial plant corresponds to the center of gravity of the pot, making the placement more stable.
[0016] In the aforementioned simulated green plant pot, the pot body also has a vertically arranged riser section that connects the inner cavity of the pot to the outside. The riser section is tubular and its upper end is lower than the stepped surface. In this way, the riser section connects the upper and lower sides of the bottom of the pot body. Before pouring cement, a drainage pipe can be inserted into the upper end of the riser section. After the cement solidifies, a drainage outlet connected to the bottom of the pot is formed on the upper surface of the counterweight cement, allowing rainwater and other pollutants to be discharged through the riser section and preventing them from accumulating inside the flower pot.
[0017] Compared with the prior art, the advantages of this utility model are as follows:
[0018] This simulated green plant pot can be adapted for assembly with different radial sizes of green plants simply by changing the corresponding adapter. The structure of the pot body can remain consistent and it is connected to the lower end of the adapter through a uniform thread, ensuring the pot's universality for assembling different green plants. In addition, the stepped surface on the outer periphery of the adapter can stably confine the counterweight cement inside the pot, ensuring the structural stability of the pot during use. Attached Figure Description
[0019] Figure 1 This is a three-dimensional structural diagram of Embodiment 1.
[0020] Figure 2 This is a schematic diagram of the three-dimensional exploded structure of Embodiment 1.
[0021] Figure 3 This is a top view of the structure of Embodiment 1.
[0022] Figure 4 yes Figure 3 A schematic diagram of the AA cross-sectional structure.
[0023] Figure 5 This is a schematic diagram of the cross-sectional structure after the counterweight cement is poured in this embodiment.
[0024] Figure 6This is a three-dimensional structural diagram of Embodiment 2.
[0025] Figure 7 This is a schematic diagram of the three-dimensional exploded structure of Embodiment 2.
[0026] Figure 8 This is a top view of the structure of Embodiment 2.
[0027] Figure 9 yes Figure 8 A schematic diagram of the BB cross-sectional structure.
[0028] Figure 10 This is a schematic diagram of the cross-sectional structure after the counterweight cement is poured in Example 2 of this embodiment.
[0029] In the diagram, 1 is the basin body; 11 is the support section; 111 is the positioning surface; and 12 is the riser section.
[0030] 2. Adapter; 21. Internal thread; 22. Stepped surface; 23. External thread; 24. Shoulder; 3. Counterweight cement. Detailed Implementation
[0031] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.
[0032] Example 1:
[0033] like Figure 1-4 As shown, the flowerpot for this simulated green plant includes a pot body 1 with an open top. The bottom center of the inner cavity of the pot body 1 has an upward-facing, cylindrical support portion 11. The flowerpot also includes a vertically positioned, cylindrical adapter 2. Both the pot body 1 and the adapter 2 are injection molded parts. The lower end of the adapter 2 is screwed to the upper end of the support portion 11. The inner edge of the upper end of the adapter 2 has an internal thread 21 for screwing into the lower end of the simulated green plant. Specifically, the outer periphery of the adapter 2 has a stepped surface 22 facing downwards and spaced vertically opposite to the upper end surface of the support portion 11. The lower outer periphery of the adapter 2 has an external thread 23. The lower end of the adapter 2 is screwed into the upper end of the support portion 11, with a portion of the external thread 23 located between the stepped surface 22 and the upper end surface of the support portion 11. The cross-section of the support portion 11 and the upper half of the adapter 2 are both hexagonal. The radial dimension of the upper half of the adapter 2 is larger than that of the lower half of the adapter 2, and an annular stepped surface 22 is formed in the middle. The inner edge of the support part 11 has an upwardly facing annular positioning surface 111, and the lower end of the adapter 2 abuts against the positioning surface 111. The basin 1 also has a vertically arranged riser part 12 that connects the inner cavity of the basin 1 to the outside. The riser part 12 is tubular and its upper end is lower than the stepped surface 22.
[0034] like Figure 5As shown, when using the flowerpot, select the appropriate adapter 2 and screw it onto the upper end of the support part 11. Then pour the cement fluid into the pot body 1. The cement fluid can flow into the space between the step surface 22 and the upper end surface of the support part 11. After the counterweight cement 3 solidifies, this part faces upward and forms a limit with the step surface 22. At the same time, the counterweight cement 3 is limited downward by the pot body 1, ensuring that the counterweight cement 3 will not fall out of the flowerpot.
[0035] Example 2:
[0036] like Figure 6-10 As shown, this embodiment is basically the same as Embodiment 1, except that: the middle part of the adapter 2 has a circumferentially arranged annular shoulder 24, and the lower side of the shoulder 24 forms a stepped surface 22. After the counterweight cement 3 solidifies, it faces upwards to be limited by the shoulder 24 to prevent it from falling out of the flowerpot.
[0037] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.
Claims
1. A flowerpot for simulated green plants, comprising a pot body (1) with an open top, wherein the pot body (1) has an upward-facing, cylindrical support portion (11), characterized in that, The flowerpot also includes a vertically arranged cylindrical adapter (2), the lower end of which is screwed to the upper end of the support (11). The inner edge of the upper end of the adapter (2) has an internal thread (21). The radial dimension of the middle part of the adapter (2) is larger than the radial dimension of the lower half of the adapter (2) to form a downward step surface (22). There is a gap between the step surface (22) and the pot body (1) below.
2. The flowerpot for simulated green plants according to claim 1, characterized in that, The lower end of the adapter (2) has an external thread (23) on its outer periphery. The lower end of the adapter (2) is screwed into the support (11). Part of the external thread (23) is located between the stepped surface (22) and the upper surface of the support (11).
3. The flowerpot for simulated green plants according to claim 1 or 2, characterized in that, The cross-section of the support (11) is polygonal.
4. The flowerpot for simulated green plants according to claim 1 or 2, characterized in that, The radial dimension of the upper half of the adapter (2) is greater than that of the lower half of the adapter (2) and the stepped surface (22) is formed in the middle.
5. The flowerpot for simulated green plants according to claim 1 or 2, characterized in that, The adapter (2) has a shoulder (24) arranged in a ring around the center, and the lower side of the shoulder (24) forms the stepped surface (22).
6. The flowerpot for simulated green plants according to claim 1 or 2, characterized in that, The upper half of the adapter (2) has a polygonal cross-section.
7. The flowerpot for simulated green plants according to claim 2, characterized in that, The inner edge of the support (11) has an upwardly facing positioning surface (111), and the lower end of the adapter (2) abuts against the positioning surface (111).
8. The flowerpot for simulated green plants according to claim 1 or 2, characterized in that, The support (11) is located at the center of the basin (1).
9. The flowerpot for simulated green plants according to claim 1 or 2, characterized in that, The basin (1) also has a vertically arranged riser section (12) that connects the inner cavity of the basin (1) to the outside. The riser section (12) is tubular and its upper end is lower than the step surface (22).
Citation Information
Patent Citations
Flowerpot with sun shade
CN106171619A