Nested anti-drop ceramic small flowerpot
Patent Information
- Application Number
- CN202522279135.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-28
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-10-28
AI Technical Summary
[0005]因此,本实用新型目的是提供一种嵌套式防摔陶瓷小花盆,解决了缺乏有效的防护机制的问题
1、本实用新型,通过内层陶瓷内盆与外层防护外筒的嵌套结构,构建了多重防摔保护机制,防护外筒采用高强度、高韧性工程塑料制成,可直接承受外部冲击,避免陶瓷内盆与地面直接碰撞,底部的缓冲凹槽与橡胶缓冲垫形成第一道缓冲防线,能有效吸收花盆掉落时底部接触地面产生的冲击力;防护外筒内侧壁的弹性缓冲凸起与陶瓷内盆外侧壁紧密接触,在花盆受到侧向冲击时可通过弹性形变分散冲击力,减少对陶瓷内盆的挤压损伤。
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Figure CN224734322U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of flower pot technology, specifically to a nested, drop-resistant ceramic flower pot. Background Technology
[0002] In modern home décor and gardening, small ceramic flower pots are highly favored for their beautiful and rustic characteristics. However, the ceramic material itself is fragile and faces many challenges in daily use.
[0003] Currently, when moving, placing, or cleaning small ceramic flower pots, they are easily dropped due to carelessness. Existing ceramic flower pots have significant shortcomings in their anti-drop design. Most ceramic flower pots on the market have a single structure and lack effective protection mechanisms. Once a flower pot falls and collides directly with the ground, the huge impact can easily cause the flower pot to break and be damaged, resulting not only in economic losses but also potential safety hazards from the flower pot fragments, such as cuts to the user. In addition, as people's quality of life improves, their functional needs for ceramic flower pots are becoming increasingly diversified. Traditional flower pots only have basic planting functions and cannot meet people's expectations for flower pots in terms of drop resistance and durability. For example, in environments with children or pets, ceramic flower pots are more likely to fall due to accidental collisions, and existing flower pot structures are unable to cope with such frequent and unpredictable collision risks. Utility Model Content
[0004] In view of the problems existing in the above-mentioned nested anti-drop ceramic flower pots, this utility model is proposed.
[0005] Therefore, the purpose of this utility model is to provide a nested, drop-proof ceramic flowerpot, which solves the problem of the lack of an effective protection mechanism.
[0006] To achieve the above objectives, this utility model provides the following technical solution: A nested, anti-fall ceramic flowerpot includes a ceramic inner pot and a protective outer cylinder. The bottom of the protective outer cylinder is fixedly provided with an upwardly recessed buffer groove. The bottom of the ceramic inner pot is fixedly provided with a placement groove. The inner side wall of the protective outer cylinder is fixedly provided with multiple elastic protrusions, which are in close contact with the outer side wall of the ceramic inner pot. The outer side wall of the protective outer cylinder is provided with multiple anti-slip ribs. The interior of the ceramic inner pot is provided with an inwardly protruding water-retaining ring near the rim.
[0007] Preferably, the top edge of the protective outer cylinder is provided with a protective flange that folds outward, and the upper surface of the protective flange is provided with a layer of silicone pad.
[0008] Preferably, the outer wall of the ceramic inner basin is provided with multiple locking blocks, and the inner wall of the protective outer cylinder is provided with multiple corresponding locking slots. The locking blocks and the locking slots are engaged and cooperated with each other, and the locking blocks are made of rubber blocks.
[0009] Preferably, the bottom of the ceramic inner basin has a plurality of drainage holes evenly distributed, and the bottom of the protective outer cylinder is provided with a drainage groove corresponding to the position of the drainage holes.
[0010] Furthermore, the outer wall of the protective outer cylinder is provided with a plurality of decorative grooves, the decorative grooves being circular in shape.
[0011] The technical effects and advantages provided by this utility model in the above technical solution are as follows: 1. This utility model constructs a multi-layer anti-drop protection mechanism through the nested structure of the inner ceramic inner pot and the outer protective outer cylinder. The protective outer cylinder is made of high-strength and high-toughness engineering plastic, which can directly withstand external impacts and prevent the ceramic inner pot from directly colliding with the ground. The buffer groove at the bottom and the rubber buffer pad form the first buffer line, which can effectively absorb the impact force generated when the flower pot falls and the bottom contacts the ground. The elastic buffer protrusion on the inner wall of the protective outer cylinder is in close contact with the outer wall of the ceramic inner pot. When the flower pot is subjected to lateral impact, it can disperse the impact force through elastic deformation and reduce the squeezing damage to the ceramic inner pot.
[0012] 2. In this utility model, the water-retaining ring inside the ceramic inner pot not only prevents water from overflowing and soiling the tabletop during watering, but also enhances the overall strength of the ceramic inner pot through structural reinforcement. The protective flange on the top of the protective outer cylinder, in conjunction with the silicone pad, prevents the ceramic inner pot from directly contacting the tabletop and causing collisions, while also reducing noise during placement. In terms of drainage, the drainage holes of the ceramic inner pot and the drainage grooves of the protective outer cylinder form an efficient drainage channel, ensuring that excess water is discharged in time. This effectively solves the problem of poor drainage in traditional ceramic flower pots that leads to root rot in plants, providing a more suitable environment for plant growth.
[0013] 3. The decorative groove design on the outer wall of the protective outer cylinder of this utility model adds decorative space to the flower pot. Users can embed decorative pieces of different materials and shapes according to their personal preferences or home style to achieve personalized customization of the flower pot's appearance. This design not only retains the beautiful texture of the ceramic inner pot, but also enhances the overall decorativeness of the flower pot through the decorative function of the protective outer cylinder, so that it can better integrate into the modern home decoration environment while having practical functions, and meet users' pursuit of life aesthetics. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.
[0015] Figure 1This is a three-dimensional structural diagram of the present invention; Figure 2 This is a three-dimensional structural diagram of the protective outer cylinder of this utility model; Figure 3 This is a schematic diagram of the internal structure of the ceramic inner basin of this utility model.
[0016] Explanation of reference numerals in the attached figures: 1. Ceramic inner basin; 2. Protective outer cylinder; 3. Buffer groove; 4. Placement slot; 5. Elastic protrusion; 6. Anti-slip ribs; 7. Water-blocking ring; 8. Protective flange; 9. Silicone pad; 10. Locking block; 11. Locking groove; 12. Drain hole; 13. Drain groove; 14. Decorative groove. Detailed Implementation
[0017] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.
[0018] This utility model discloses a nested, drop-resistant ceramic flowerpot.
[0019] This utility model provides, for example Figure 1-3The nested anti-fall ceramic flowerpot shown includes an inner ceramic pot 1 and a protective outer cylinder 2. The bottom of the protective outer cylinder 2 is fixedly provided with an upwardly recessed buffer groove 3. The bottom of the inner ceramic pot 1 is fixedly provided with a placement groove 4. Multiple elastic protrusions 5 are fixedly provided on the inner side wall of the protective outer cylinder 2, and the elastic protrusions 5 are in close contact with the outer side wall of the inner ceramic pot 1. Multiple anti-slip ribs 6 are provided on the outer side wall of the protective outer cylinder 2. A water-retaining ring 7 protruding inwards is provided inside the inner ceramic pot 1 near the rim. Anti-fall is the core function of this flowerpot, and its principle is based on a synergistic protection mechanism of "multiple buffers + structural fixation." The protective outer cylinder 2, as the first line of defense, is integrally injection molded from high-strength, high-toughness engineering plastic. Utilizing the impact-resistant properties of the plastic material itself, it can directly withstand... To prevent the ceramic inner pot 1 from directly contacting the ground or hard objects during the initial impact of an external collision or drop, the material selection ensures both the structural strength of the protective outer cylinder 2 and a certain degree of elastic deformation capability, allowing it to dissipate some impact energy through its own deformation. The bottom buffer structure forms a second layer of protection. The upward-recessed buffer groove 3 at the bottom of the protective outer cylinder 2 precisely matches the placement groove 4 at the bottom of the ceramic inner pot 1. The rubber buffer pad within the groove directly contacts the bottom of the ceramic inner pot 1. When the flowerpot accidentally falls and lands on its bottom, the buffer groove 3 first disperses the impact force through its spatial structure, while the rubber buffer pad absorbs most of the vertical impact force through elastic deformation. This transforms the hard impact that might have directly acted on the ceramic inner pot 1 into a flexible buffer, significantly reducing the risk of the inner pot breaking. For added protection against lateral impact, a third layer of protection is achieved through the inner elastic protrusions 5. These rubber protrusions, evenly distributed on the inner wall of the outer protective cylinder 2, form an elastic support in close contact with the outer wall of the ceramic inner pot 1. When the flowerpot is subjected to a lateral collision or tilted fall, the elastic protrusions 5 deform under pressure, converting the lateral impact force into elastic potential energy. Simultaneously, the even distribution of multiple protrusions disperses the concentrated impact force to multiple points on the outer wall of the inner pot, preventing excessive localized stress that could cause the inner pot to crack. The structural fixing mechanism further enhances the anti-drop effect. The rubber clips 10 on the outer wall of the ceramic inner pot 1 and the grooves 11 on the inner wall of the outer protective cylinder 2 form a stable connection, ensuring precise positioning of the inner pot and the outer cylinder while limiting the lateral displacement of the inner pot when impacted. The elasticity of the rubber block 10 further cushions the impact force between the inner pot and the outer cylinder during movement, preventing rigid friction or collision between the inner pot and the outer cylinder due to excessive shaking. This flowerpot is designed with daily operational needs in mind, optimizing its usability through detailed structural improvements. The anti-slip ribs 6 on the outer wall of the protective outer cylinder 2 are evenly distributed along the height direction, and their raised structure increases the friction between the hand and the outer cylinder surface. When moving the flowerpot, the user's hand contacts the anti-slip ribs 6, and even if the hand is wet or the flowerpot is heavy, the increased friction allows for a stable grip, reducing the risk of accidental slippage. This design is especially suitable for elderly people, children, and other users with weaker hand strength. The protective flange 8 at the top of the protective outer cylinder 2 and the silicone pad 9 form a cushioning structure.When the flowerpot is placed on a flat surface such as a table or windowsill, the flanged structure contacts the surface first, preventing the ceramic inner pot 1 from directly contacting the hard surface. The silicone pad 9 further cushions the impact during placement due to its softness, while reducing friction noise between the flowerpot and the surface, improving the user experience and protecting the table from scratches. The nesting assembly of the ceramic inner pot 1 and the protective outer cylinder 2 adopts a "click-fit" mode, which can be completed without complicated tools. During installation, simply align the bottom of the ceramic inner pot 1 with the buffer groove 3 of the protective outer cylinder 2, align the locking block 10 with the locking slot 11, and press lightly to achieve a secure connection. For disassembly and cleaning, the inner pot and outer cylinder can be separated with a little force, making it easy to thoroughly clean the inner wall of the ceramic inner pot 1 or the bottom of the protective outer cylinder 2. The operation is simple. In terms of efficient plant care optimization, the flowerpot's structural design creates a scientific growth environment. The water-retaining ring 7 inside the ceramic inner pot 1 is located on the inner side of the pot's rim. Its inward-protruding ring structure forms a watering buffer zone. When watering, the water flow first contacts the water-retaining ring 7 before flowing into the potting soil, preventing soil splashing caused by direct water impact. Simultaneously, the water-retaining ring 7 prevents excessive water from overflowing from the pot's rim, preventing contamination of the table or ground. Furthermore, the ring structure reinforces the edge of the ceramic inner pot 1, enhancing its impact resistance. The drainage system employs a "hole-groove correspondence" design for efficient drainage. The evenly distributed drainage holes 12 at the bottom of the ceramic inner pot 1 promptly drain excess water from the potting soil, preventing waterlogging and oxygen deficiency at the plant roots. The drainage groove 13 at the bottom of the protective outer cylinder 2, corresponding to the drainage hole 12, forms a water guiding channel. This allows water flowing from the drainage hole 12 to collect along the drainage groove 13 and drain out of the outer cylinder, preventing water accumulation inside the protective outer cylinder 2 and prolonged soaking of the inner pot. This drainage path design ensures smooth drainage while preventing water from dripping directly and soiling the environment through the shielding effect of the outer cylinder. The ceramic inner pot 1 is made of high-quality ceramic material with a smooth, delicate surface and good breathability. This provides a stable growing environment for plant roots and regulates soil moisture through the micro-permeability of ceramic, preventing the soil from becoming too wet or too dry. Together with the drainage system, this creates a suitable "water-air balance" environment for plant growth. The decorative adaptation principle of the flowerpot, based on its practical function, incorporates decorative elements... The design achieves style compatibility with the home environment. The circular decorative groove 14 on the outer wall of the protective outer cylinder 2 provides a medium for personalized decoration. Users can embed decorative pieces of different materials such as shell pieces, colored glass, and wood veneers into the decorative groove 14 according to home style, seasonal changes, or personal preferences. The evenly distributed design of the decorative groove 14 ensures a symmetrical and beautiful decorative effect, and the embedding of decorative pieces will not affect the structural strength and anti-slip performance of the protective outer cylinder 2, achieving a unity of decoration and practicality. The ceramic inner basin 1 retains the beautiful texture of the ceramic material itself, and its natural color and texture lay a simple and elegant foundation for the flower pot. The protective outer cylinder 2, through the plasticity of engineering plastics, can be made in versatile colors such as white, gray, and beige, which not only contrasts with the ceramic inner basin 1, but also...It adapts to various home styles, including modern minimalist, Nordic, and Japanese. The personalized decoration of the decorative slot 14 further enhances the flowerpot's suitability for the home environment, allowing it to both meet planting needs and become part of the home décor.
[0020] For easy reference, such as Figure 1-3 As shown, the top edge of the protective outer cylinder 2 is provided with a protective flange 8 that folds outward, and a layer of silicone pad 9 is provided on the upper surface of the protective flange 8.
[0021] To make the ceramic inner basin 1 more stable, such as Figure 1-3 As shown, multiple locking blocks 10 are provided on the outer side wall of the ceramic inner basin 1, and multiple locking grooves 11 are provided on the inner side wall of the protective outer cylinder 2. The locking blocks 10 and the locking grooves 11 are engaged and matched. The locking blocks 10 are made of rubber.
[0022] For the purpose of facilitating drainage, such as Figure 3 As shown, the bottom of the ceramic inner basin 1 has multiple drainage holes 12 evenly distributed, and the bottom of the protective outer cylinder 2 is provided with a drainage groove 13 corresponding to the position of the drainage holes 12.
[0023] Finally, for decoration, such as Figure 1-2 As shown, multiple decorative grooves 14 are provided on the outer wall of the protective outer cylinder 2, and the decorative grooves 14 are circular in shape.
[0024] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A nested, drop-resistant ceramic flowerpot, comprising an inner ceramic pot (1) and a protective outer cylinder (2), characterized in that, The bottom of the protective outer cylinder (2) is fixedly provided with an upwardly recessed buffer groove (3), the bottom of the ceramic inner basin (1) is fixedly provided with a placement groove (4), the inner side wall of the protective outer cylinder (2) is fixedly provided with multiple elastic protrusions (5), the elastic protrusions (5) are in close contact with the outer side wall of the ceramic inner basin (1), the outer side wall of the protective outer cylinder (2) is provided with multiple anti-slip ribs (6), and the inside of the ceramic inner basin (1) is provided with a ring of inwardly protruding water-blocking ring (7) near the mouth of the basin.
2. The nested anti-drop ceramic flowerpot according to claim 1, characterized in that, The top edge of the protective outer cylinder (2) is provided with a protective flange (8) that folds outward, and the upper surface of the protective flange (8) is provided with a layer of silicone pad (9).
3. The nested, drop-resistant ceramic flowerpot according to claim 1, characterized in that, Multiple locking blocks (10) are provided on the outer side wall of the ceramic inner basin (1), and multiple locking slots (11) are provided on the inner side wall of the protective outer cylinder (2). The locking blocks (10) and the locking slots (11) are engaged and cooperated. The locking blocks (10) are made of rubber blocks.
4. A nested, drop-resistant ceramic flowerpot according to claim 1, characterized in that, The bottom of the ceramic inner basin (1) has a plurality of drainage holes (12) evenly distributed, and the bottom of the protective outer cylinder (2) is provided with a drainage groove (13) corresponding to the position of the drainage holes (12).
5. A nested, drop-resistant ceramic flowerpot according to claim 1, characterized in that, The outer wall of the protective outer cylinder (2) is provided with a plurality of decorative grooves (14), and the decorative grooves (14) are circular in shape.