Nested anti-falling negative ion ceramic flowerpot

By introducing shock-absorbing and fall-proof mechanisms and limit mechanisms into negative ion ceramic flower pots, the problems of nesting installation and fall-proof are solved, efficient fall-proof and nested installation are achieved, and service life is extended.

CN223110602UActive Publication Date: 2025-07-18YIXING YIAN CERAMICS CO LTD
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Patent Information

Application Number
CN202421950251.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-07-18
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

The existing negative ion ceramic flower pots lack nesting and anti-fall functions, which leads to easy damage during use and shorten service life.

Method used

A nested anti-fall negative ion ceramic flower pot is designed, including shock-absorbing and fall-proof mechanism, limiting mechanism, anti-fall-proof shell and nesting groove. It can realize anti-fall-proof and nesting installation through components such as shock-absorbing blocks, buffer blocks, limit blocks and friction pads.

Benefits of technology

It improves the anti-fall performance and service life of negative ion ceramic flower pots, ensures convenient nesting and installation, and prevents damage during fall.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a nested anti-falling negative ion ceramic flowerpot which comprises a ceramic flowerpot mechanism, a damping anti-falling mechanism and a limiting mechanism, the damping anti-falling mechanism is fixedly connected to the interior of the ceramic flowerpot mechanism, the limiting mechanism is arranged on the surface of the ceramic flowerpot mechanism, and the ceramic flowerpot mechanism comprises a negative ion ceramic inner pot. An anti-falling shell is arranged on the surface of the negative ion ceramic inner pot, a nesting groove is formed in the anti-falling shell, a connecting plate is fixedly connected to the bottom of the negative ion ceramic inner pot, a damping block is fixedly connected to the bottom of the connecting plate, and a damping sleeve is clamped to the bottom of the damping block; the bottom of the damping sleeve makes contact with the top of the inner wall of the anti-falling shell. According to the anti-falling negative ion ceramic flowerpot, the functions of nesting installation and efficient anti-falling are added, so that the anti-falling negative ion ceramic flowerpot has the effect of carrying out anti-falling convenient nesting installation on the negative ion ceramic flowerpot, and the situation that nesting installation and anti-falling are not achieved is prevented.
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Description

Technical Field

[0001] The utility model relates to the technical field of negative ion ceramic flowerpots, and specifically relates to a nested anti-drop negative ion ceramic flowerpot. Background Technique

[0002] The negative ion ceramic flowerpot is a new type of flowerpot that combines negative ion functional ceramic technology. The following is a detailed introduction to the negative ion ceramic flowerpot: I. Overview The negative ion ceramic flowerpot is a new type of flowerpot made of various natural minerals through high-temperature firing. During the firing process, negative ions will be released on its surface, and these negative ions have multiple benefits for the growth environment of plants and human health. II. Characteristics Negative ion release: The negative ion ceramic flowerpot can continuously release high-concentration negative ions without attenuation. These negative ions can purify the air, eliminate harmful substances such as bacteria and molds in the air, and improve the plant growth environment. Activating water molecules: Under the light source condition, the negative ions generated by the negative ion ceramic flowerpot can adsorb heavy metal ions in water, adjust the pH value of water, and have the effect of activating water molecules, which is helpful for the healthy growth of plant roots. Health benefits: Negative ions are beneficial to human health, can improve human immunity, promote blood circulation, relieve fatigue, etc. Therefore, using a negative ion ceramic flowerpot is not only beneficial to the growth of plants, but also has a positive impact on human health.

[0003] According to the patent number disclosed on the Chinese Patent Network: CN212813017U, the utility model discloses a nested anti-drop ceramic flowerpot, which relates to the technical field of flowerpots, and specifically relates to a nested anti-drop ceramic flowerpot, including a ceramic flowerpot, a protective sleeve is nested outside the ceramic flowerpot, a buffer airbag is arranged between the ceramic flowerpot and the protective sleeve, a bottom airbag is arranged at the bottom of the ceramic flowerpot, and a stop block is fixedly connected inside the ceramic flowerpot. By setting a protective sleeve outside the ceramic flowerpot, the protective sleeve is used to protect the ceramic flowerpot, avoiding the ceramic flowerpot from being bumped during use, and improving the safety of the ceramic flowerpot during use. By arranging a buffer airbag and a bottom airbag between the ceramic flowerpot and the protective sleeve, when the ceramic flowerpot falls to the ground, the buffer airbag and the bottom airbag can play a good buffering role, reducing the impact force received by the ceramic flowerpot, avoiding the ceramic flowerpot from being broken during the collision, and improving the service life of the ceramic flowerpot.

[0004] When planting flowers, a negative ion ceramic flowerpot is needed, but most of the existing negative ion ceramic flowerpots on the market do not have the functions of nested installation and anti-drop, which makes the negative ion ceramic flowerpot prone to breakage during use, greatly reducing the service life of the negative ion ceramic flowerpot, thus affecting the normal use of the negative ion ceramic flowerpot.

[0005] Therefore, it is necessary to design and transform the negative ion ceramic flowerpot to effectively prevent the phenomenon that it does not have nested installation and anti-drop. Summary of the Invention

[0006] To solve the problems raised in the above-mentioned background art, the purpose of the present utility model is to provide a nested anti-drop negative ion ceramic flowerpot, which has the advantages of nested installation and high-efficiency anti-drop, and solves the problems of not having nested installation and anti-drop.

[0007] To achieve the above purpose, the present utility model provides the following technical solutions: A nested anti-drop negative ion ceramic flowerpot, comprising:

[0008] A ceramic flowerpot mechanism;

[0009] A shock-absorbing and anti-drop mechanism, which is fixedly connected inside the ceramic flowerpot mechanism;

[0010] A limiting mechanism, which is arranged on the surface of the ceramic flowerpot mechanism;

[0011] The ceramic flowerpot mechanism includes a negative ion ceramic inner pot, an anti-drop outer shell is arranged on the surface of the negative ion ceramic inner pot, and a nested groove is opened inside the anti-drop outer shell.

[0012] Preferably, a connecting plate is fixedly connected to the bottom of the negative ion ceramic inner pot, a shock-absorbing block is fixedly connected to the bottom of the connecting plate, a shock-absorbing sleeve is clamped to the bottom of the shock-absorbing block, and the bottom of the shock-absorbing sleeve contacts the top of the inner wall of the anti-drop outer shell. Buffer blocks are fixedly connected to both sides of the connecting plate.

[0013] Preferably, the limiting mechanism includes a limiting block, the limiting block is fixedly connected to the inner wall of the anti-drop outer shell, a screw is threadedly connected inside the limiting block, and a rotating block is fixedly connected to the outside of the screw.

[0014] Preferably, a soft pad is fixedly connected to the bottom of the buffer block, and the soft pad is used in cooperation with the buffer block.

[0015] Preferably, a friction pad is fixedly connected to the inner wall of the anti-drop outer shell, and the friction pad is used in cooperation with the negative ion ceramic inner pot.

[0016] Preferably, a protective pad is fixedly connected to the inner wall of the nested groove, and the protective pad is used in cooperation with the negative ion ceramic inner pot.

[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0018] 1. The utility model adds the functions of nested installation and high-efficiency anti-drop, enabling it to achieve the effect of convenient nested installation and anti-drop protection for the negative ion ceramic flowerpot, preventing the situation of lacking nested installation and anti-drop functions. First, the user installs the negative ion ceramic inner pot into the interior of the anti-drop outer shell, causing the connecting plate to drive the shock-absorbing block into the interior of the shock-absorbing sleeve for snap fixation. At the same time, the user rotates the rotating block, which drives the screw rod to be threadedly connected with the limiting block to fix the negative ion ceramic inner pot and the anti-drop outer shell. When the negative ion ceramic inner pot drops, the shock-absorbing block, shock-absorbing sleeve, buffer block, soft pad, and protective pad play a role in buffering and shock absorption, thereby achieving the effect of high-efficiency anti-drop.

[0019] 2. Through the setting of the shock-absorbing and anti-drop mechanism, the utility model can perform shock-absorbing and anti-drop protection on the negative ion ceramic inner pot, improving the anti-drop performance of the negative ion ceramic inner pot.

[0020] 3. Through the setting of the limiting mechanism, the utility model can limit the negative ion ceramic inner pot, restricting the movement range of the negative ion ceramic inner pot.

[0021] 4. Through the setting of the soft pad, the utility model can cooperate with the buffer block for buffering, improving the working efficiency of the buffer block.

[0022] 5. Through the setting of the friction pad, the utility model can effectively increase the friction between the negative ion ceramic inner pot and the anti-drop outer shell and has the effect of anti-drop and shock absorption.

[0023] 6. Through the setting of the protective pad, the utility model can protect the negative ion ceramic inner pot, improving the service life of the negative ion ceramic inner pot. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is a schematic structural diagram of the utility model;

[0025] Figure 2 is an exploded view of the negative ion ceramic inner pot of the utility model;

[0026] Figure 3 is a cross-sectional view of the anti-drop outer shell of the utility model;

[0027] Figure 4 is a front view of the limiting block of the utility model.

[0028] In the figure: 1. Ceramic flowerpot mechanism; 11. Negative ion ceramic inner pot; 12. Anti-drop outer shell; 13. Nested groove; 2. Shock-absorbing and anti-drop mechanism; 21. Connecting plate; 22. Shock-absorbing block; 23. Shock-absorbing sleeve; 24. Buffer block; 3. Limiting mechanism; 31. Limiting block; 32. Screw rod; 33. Rotating block; 4. Soft pad; 5. Friction pad; 6. Protective pad. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0030] As Figures 1 to 4 shown, a nested anti-drop negative ion ceramic flowerpot provided by the present invention includes:

[0031] A ceramic flowerpot mechanism 1;

[0032] A shock-absorbing and anti-drop mechanism 2, which is fixedly connected to the inside of the ceramic flowerpot mechanism 1;

[0033] A limiting mechanism 3, which is arranged on the surface of the ceramic flowerpot mechanism 1;

[0034] The ceramic flowerpot mechanism 1 includes a negative ion ceramic inner pot 11. An anti-drop outer shell 12 is arranged on the surface of the negative ion ceramic inner pot 11, and a nested groove 13 is opened inside the anti-drop outer shell 12.

[0035] Referring to Figure 3 , a connecting plate 21 is fixedly connected to the bottom of the negative ion ceramic inner pot 11. A shock-absorbing block 22 is fixedly connected to the bottom of the connecting plate 21. A shock-absorbing sleeve 23 is clamped to the bottom of the shock-absorbing block 22, and the bottom of the shock-absorbing sleeve 23 contacts the top of the inner wall of the anti-drop outer shell 12. Buffer blocks 24 are fixedly connected to both sides of the connecting plate 21.

[0036] As a technical optimization scheme of the present invention, through the setting of the shock-absorbing and anti-drop mechanism 2, the negative ion ceramic inner pot 11 can be protected from dropping and shock-absorbed, improving the anti-drop performance of the negative ion ceramic inner pot 11.

[0037] Referring to Figure 4 , the limiting mechanism 3 includes a limiting block 31, which is fixedly connected to the inner wall of the anti-drop outer shell 12. A screw rod 32 is threadedly connected to the inside of the limiting block 31, and a rotating block 33 is fixedly connected to the outside of the screw rod 32.

[0038] As a technical optimization scheme of the present invention, through the setting of the limiting mechanism 3, the negative ion ceramic inner pot 11 can be limited, restricting the movement range of the negative ion ceramic inner pot 11.

[0039] Referring to Figure 3 , a soft pad 4 is fixedly connected to the bottom of the buffer block 24, and the soft pad 4 is used in cooperation with the buffer block 24.

[0040] As a technical optimization solution of the present utility model, through the arrangement of the soft pad 4, it can cooperate with the buffer block 24 for buffering, improving the working efficiency of the buffer block 24.

[0041] Reference Figure 2 , a friction pad 5 is fixedly connected to the inner wall of the anti-drop shell 12, and the friction pad 5 is used in cooperation with the negative ion ceramic inner basin 11.

[0042] As a technical optimization solution of the present utility model, through the arrangement of the friction pad 5, it can effectively increase the friction between the negative ion ceramic inner basin 11 and the anti-drop shell 12, and has the effect of anti-drop and shock absorption.

[0043] Reference Figure 2 , a protective pad 6 is fixedly connected to the inner wall of the nested groove 13, and the protective pad 6 is used in cooperation with the negative ion ceramic inner basin 11.

[0044] As a technical optimization solution of the present utility model, through the arrangement of the protective pad 6, it can protect the negative ion ceramic inner basin 11, improving the service life of the negative ion ceramic inner basin 11.

[0045] The working principle and usage process of the present utility model: When in use, first, the user installs the negative ion ceramic inner basin 11 into the inside of the anti-drop shell 12, making the connecting plate 21 drive the shock-absorbing block 22 into the inside of the shock-absorbing sleeve 23 for snap connection and fixation. At the same time, the user rotates the rotating block 33, and the rotating block 33 drives the screw 32 to be threadedly connected with the limiting block 31 to fix the negative ion ceramic inner basin 11 and the anti-drop shell 12. When the negative ion ceramic inner basin 11 falls, it plays a role of buffering and shock absorption through the shock-absorbing block 22, the shock-absorbing sleeve 23, the buffer block 24, the soft pad 4 and the protective pad 6, thus achieving an efficient anti-drop effect.

[0046] In summary: This nested anti-drop negative ion ceramic flowerpot, by increasing the functions of nested installation and efficient anti-drop, enables it to have the effect of convenient nested installation and anti-drop protection for the negative ion ceramic flowerpot, preventing the occurrence of situations without nested installation and anti-drop, and solving the problems of lack of nested installation and anti-drop.

[0047] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.

[0048] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A nested anti-drop negative ion ceramic flower pot, characterized in that, Comprising: Ceramic flower pot mechanism (1); Shock-absorbing and anti-falling mechanism (2), the shock-absorbing and anti-falling mechanism (2) is fixedly connected inside the ceramic flower pot mechanism (1); Limiting mechanism (3), the limiting mechanism (3) is arranged on the surface of the ceramic flower pot mechanism (1); The ceramic flower pot mechanism (1) includes a negative ion ceramic inner pot (11), an anti-falling outer shell (12) is arranged on the surface of the negative ion ceramic inner pot (11), and a nesting groove (13) is opened inside the anti-falling outer shell (12).

2. The nested anti-fall negative ion ceramic flowerpot according to claim 1, characterized in that: A connecting plate (21) is fixedly connected to the bottom of the negative ion ceramic inner pot (11), a shock-absorbing block (22) is fixedly connected to the bottom of the connecting plate (21), a shock-absorbing sleeve (23) is clamped at the bottom of the shock-absorbing block (22), and the bottom of the shock-absorbing sleeve (23) contacts the top of the inner wall of the anti-falling outer shell (12). Buffer blocks (24) are fixedly connected to both sides of the connecting plate (21).

3. The nested anti-fall negative ion ceramic flower pot according to claim 2, wherein: The limiting mechanism (3) includes a limiting block (31), the limiting block (31) is fixedly connected to the inner wall of the anti-falling outer shell (12), a screw rod (32) is threadedly connected inside the limiting block (31), and a rotating block (33) is fixedly connected to the outer side of the screw rod (32).

4. The nested anti-fall negative ion ceramic flower pot according to claim 3, characterized in that: A soft pad (4) is fixedly connected to the bottom of the buffer block (24), and the soft pad (4) is used in cooperation with the buffer block (24).

5. A nested anti-fall negative ion ceramic flower pot according to claim 4, characterized in that: A friction pad (5) is fixedly connected to the inner wall of the anti-falling outer shell (12), and the friction pad (5) is used in cooperation with the negative ion ceramic inner pot (11).

6. The nested anti-fall negative ion ceramic flower pot according to claim 5, wherein: A protective pad (6) is fixedly connected to the inner wall of the nesting groove (13), and the protective pad (6) is used in cooperation with the negative ion ceramic inner pot (11).

Citation Information

Patent Citations

  • Nested anti-falling ceramic flowerpot

    CN212813017U