A placing partition frame structure based on interior design
Patent Information
- Application Number
- CN202522207461.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-20
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-10-20
AI Technical Summary
这种结构在面对外力,例如家庭中宠物(如猫、狗)的碰撞或人的意外触碰时,绿植盆极易从架子上倾倒、滑落,不仅可能导致盆体摔碎、植物损坏,更存在高空坠物的安全隐患
[0020] 1. Through the linkage structure of the bearing cylinder, connecting frame and sleeve, the automatic initial positioning of the green pot is realized when it is placed; when the bearing cylinder sinks due to the load, it will drive the connecting frame and sleeve to move down synchronously, so that the sleeve will automatically fit onto the green pot on the connecting plate below, effectively preventing it from tipping over, especially resisting the shaking caused by pet collisions.
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Figure CN224734938U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of partition frame structure technology, specifically a partition frame structure for interior design. Background Technology
[0002] As people's living standards improve, indoor plant decoration is becoming increasingly popular, and using partition shelves to display plants has become a common home furnishing method. However, existing partition shelves often have limited functionality when supporting plant pots, which is often limited to simple support.
[0003] First, traditional plant shelves lack effective active restraint structures. Once plant pots are placed on the shelf, they are usually in an unrestrained, stationary state. When faced with external forces, such as collisions from pets (cats, dogs) or accidental touches from people, the plant pots are very likely to tip over and slip off the shelf, which may not only cause the pots to break and damage the plants, but also pose a safety hazard of falling objects from a height. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a partition frame structure for interior design.
[0005] To achieve the above objectives, the technical solution of this utility model is as follows:
[0006] An interior design-based partition shelf structure includes:
[0007] frame;
[0008] The frame is placed in the middle of the inner side of the frame;
[0009] Multiple connecting plates, each connecting plate having one end connected to the circumference of the central placement frame and the other end connected to the frame, and the connecting plates include vertically arranged and horizontally arranged connecting plates;
[0010] The support cylinder is placed on the inner bottom wall of the middle placement frame;
[0011] A pair of connecting brackets are fixed to the top two sides of the bearing cylinder, with the top of each connecting bracket extending out of the top wall of the middle placement frame and located above the connecting plate.
[0012] A sleeve is fixed to one end of each connecting bracket, and the opening of the sleeve is arranged vertically.
[0013] The connecting frame is configured to move up and down on the top wall of the middle placement frame. When a green pot is placed inside the bearing cylinder, the bearing cylinder sinks and drives the connecting frame to move down, so that the sleeve is engaged with the green pot placed on the connecting plate below it. Thus, the middle placement frame limits the green pot inside the bearing cylinder, and the connecting frame and sleeve press and limit the green pot on the connecting plate.
[0014] Preferably, the sleeve is made of a rigid elastic material, and a notch is provided on one side of the sleeve. A snap-fit ear is installed on the notch, and a fastening screw is screwed onto the snap-fit ear. The relative position of the snap-fit ear is adjusted by adjusting the fastening screw, and the snap-fit ear causes the sleeve to expand or contract.
[0015] Preferably, the connecting frame includes a thick tube body and a thin tube body that moves up and down within the thick tube body. One end of the thin tube body is fixedly connected to the sleeve. The thick tube body has multiple vertically arranged threaded holes. Bolts are screwed onto the thin tube body to fix the position of the thin tube body within the thick tube body. The height of the connecting frame can be adjusted by adjusting the position of the bolts in different threaded holes.
[0016] Preferably, the top wall of the placement frame is provided with a guide hole for the connecting frame to pass through, and the inner wall of the guide hole is smooth or has a smooth bushing embedded therein.
[0017] Preferably, an elastic element is provided between the bottom of the bearing cylinder and the inner bottom wall of the middle placement frame, and the elastic element is a spring or rubber.
[0018] Preferably, the sleeve is flared from top to bottom.
[0019] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0020] 1. Through the linkage structure of the bearing cylinder, connecting frame and sleeve, the automatic initial positioning of the green pot is realized when it is placed; when the bearing cylinder sinks due to the load, it will drive the connecting frame and sleeve to move down synchronously, so that the sleeve will automatically fit onto the green pot on the connecting plate below, effectively preventing it from tipping over, especially resisting the shaking caused by pet collisions.
[0021] 2. By using a sleeve structure made of rigid elastic material and equipped with snap-fit ears and fastening screws, it is possible to fasten and protect green plant pots of different diameters; rotating the fastening screw can drive the sleeve to narrow or widen, so that its inner wall can not only fit tightly to fix small diameter pots, but also easily fit large diameter pots. The elasticity of the material ensures the limiting effect while avoiding compression damage. Attached Figure Description
[0022] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts. Wherein:
[0023] Figure 1 This is a three-dimensional structural diagram of the partition frame structure for interior design based on this utility model;
[0024] Figure 2This is a second-view three-dimensional structural diagram of the partition frame structure for interior design based on the present utility model.
[0025] Figure 3 This is a third-person three-dimensional structural diagram of the partition frame structure for interior design based on the present utility model.
[0026] Figure 4 This is a schematic diagram of the snap-fit ear structure of the partition frame for interior design based on this utility model.
[0027] The diagram shows the following labels: 1. Frame; 2. Middle placement frame; 3. Connecting plate; 4. Bearing cylinder; 5. Connecting bracket; 6. Sleeve; 7. Snap-fit ear; 8. Fastening screw. Detailed Implementation
[0028] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.
[0029] Example
[0030] like Figure 1-4 As shown, a partition shelf structure for interior design includes:
[0031] Frame 1: Frame 1 is the basic support component of the entire partition frame. It is made of high-strength materials and has excellent load-bearing capacity and stability. It can withstand the weight of each component and the items placed on it, ensuring that the partition frame is not easily deformed or tipped over during use, and providing reliable support for the entire structure.
[0032] Central Placement Frame 2: The central placement frame 2 is located in the middle of the inner side of the frame 1, mainly used to support the bearing cylinder 4 and provide a connection point for the connecting plate 3. Its top wall has a guide hole for the connecting frame 5 to pass through. The inner wall of the guide hole is smooth or fitted with a smooth bushing. This design reduces the frictional resistance of the connecting frame 5 during its up-and-down movement, ensuring smooth movement of the connecting frame 5. It also provides good guidance for the direction of movement of the connecting frame 5, preventing it from deviating during movement.
[0033] Connecting Plate 3: Multiple connecting plates 3 are provided. One end of each connecting plate 3 is connected to the circumference of the central placement frame 2, and the other end is connected to the frame 1. The connecting plates 3 include two types: vertical and horizontal. The vertically set connecting plates mainly serve to strengthen the connection stability between the frame 1 and the central placement frame 2, further improving the structural strength of the entire partition frame. The horizontally set connecting plates can serve as a placement platform for placing items such as plant pots, increasing the storage and placement space of the partition frame and realizing multi-level utilization of space.
[0034] Support cylinder 4: The support cylinder 4 is placed on the inner bottom wall of the middle placement frame 2 and is mainly used to hold the plant pots. An elastic element, which is a spring or rubber, is provided between the bottom of the support cylinder 4 and the inner bottom wall of the middle placement frame 2. When a plant pot is placed in the support cylinder 4, the weight of the plant pot will cause the support cylinder 4 to sink, at which time the elastic element will be compressed; when the plant pot is removed, the elastic element will return to its original shape, pushing the support cylinder 4 to rise and reset, thereby realizing the automatic lifting and lowering of the support cylinder 4, providing power support for the subsequent limiting operation of the plant pot by the connecting frame 5 and the sleeve 6.
[0035] Connecting Frame 5: A pair of connecting frames 5 are fixed to the top sides of the bearing cylinder 4. The top of each connecting frame 5 extends out of the top wall of the central placement frame 2 and is located above the connecting plate 3. The connecting frame 5 includes a thick tube body and a thin tube body that moves up and down within the thick tube body. One end of the thin tube body is fixedly connected to the sleeve 6. The thick tube body has multiple vertically arranged threaded holes, and bolts are screwed onto the thin tube body to fix its position within the thick tube body. By adjusting the position of the bolts in different threaded holes, the length of the thin tube body extending out of the thick tube body can be changed, thereby adjusting the height of the connecting frame 5. This adjustable height design allows the connecting frame 5 to adapt to plant pots of different heights, improving the versatility and practicality of the partition frame.
[0036] In addition, the connecting frame 5 is configured to move up and down on the top wall of the middle placement frame 2. When a plant pot is placed inside the support cylinder 4, the sinking of the support cylinder 4 will drive the connecting frame 5 to move down, so that the sleeve 6 can be engaged with the plant pot placed on the connecting plate 3 below it. This limits the position of the plant pot inside the support cylinder 4 through the middle placement frame 2, and presses and limits the position of the plant pot on the connecting plate 3 through the connecting frame 5 and the sleeve 6, effectively preventing the plant pot from shaking or tipping over on the partition frame, especially for families with small animals.
[0037] Sleeve 6: Sleeve 6 is fixed to one end of each connecting bracket 5. The opening of sleeve 6 is vertically arranged and flared from top to bottom. This flared design makes it easy to fit sleeve 6 onto the plant pot placed on the connecting plate 3, reducing the difficulty of operation. Sleeve 6 is made of a rigid elastic material, which has a certain degree of elasticity and rigidity. It can ensure the pressing and limiting effect on the plant pot, and avoid damage to the plant pot due to excessive hardness of the material.
[0038] Meanwhile, a notch is provided on one side of the sleeve 6, and a snap-fit lug 7 is installed on the notch. A fastening screw 8 is screwed onto the snap-fit lug 7. By adjusting the fastening screw 8, the relative position of the snap-fit lug 7 can be changed, which in turn causes the sleeve 6 to expand or contract. When it is necessary to put the sleeve 6 on the plant pot, the fastening screw 8 can be adjusted to expand the sleeve 6, making it easy to put the sleeve 6 on smoothly; after it is put on, the fastening screw 8 can be adjusted to contract the sleeve 6, thereby firmly fixing the plant pot, further enhancing the limiting effect on the plant pot, and it can be used for plant pots of different diameters.
[0039] I. Initial State: Before the plant pots are placed, frame 1 serves as the basic support component of the entire partition frame. Utilizing the high-strength material properties, it provides a stable installation foundation and load-bearing guarantee for all components, including the middle placement frame 2 and connecting plate 3, ensuring the entire structure is in a stable and ready state. At this time, the load-bearing cylinder 4, not being compressed by the weight of the plant pots, has its bottom elastic element (spring or rubber) in a naturally extended state, supporting the load-bearing cylinder 4 at its initial height within the middle placement frame 2. The connecting frame 5 is positioned higher along with the load-bearing cylinder 4, and its top sleeve 6 is not in a limiting relationship with the lower connecting plate 3. Simultaneously, the thick and thin tubes of the connecting frame 5 are fixed at the initial height by bolts, while the sleeve 6 remains in its initial flared state. The fastening screws 8 on the locking lugs 7 are not tightened, awaiting the subsequent placement of the plant pots.
[0040] II. Placement of Green Plant Pots: When placing green plant pots, the process is divided into two areas: the inner support cylinder 4 of the central placement frame 2 and the horizontal connecting plate 3. The actions of each area are interconnected to achieve initial positioning.
[0041] Action of the support cylinder area within the middle placement frame: After the plant pot is placed into the support cylinder 4, the weight of the plant pot will exert downward pressure on the support cylinder 4, causing the support cylinder 4 to overcome the supporting force of the bottom elastic element and sink along the inner wall of the middle placement frame 2. During this process, the middle placement frame 2 provides a stable vertical movement guide for the support cylinder 4, preventing it from deviating. At the same time, the connecting brackets 5 fixed on both sides of the top of the support cylinder 4 move down synchronously with the support cylinder 4. Due to the smooth design of the guide holes on the top wall of the middle placement frame 2 (or the installation of smooth bushings), the frictional resistance of the connecting brackets 5 is greatly reduced when moving up and down, ensuring smooth movement at all times.
[0042] As the connecting frame 5 moves downward, the sleeve 6 fixed at one end moves downward simultaneously. Because the sleeve 6 has an flared design from top to bottom, it easily aligns with the plant pot placed on the horizontal connecting plate 3 below during the downward movement and smoothly fits over the outside of the plant pot. At this time, the middle placement frame 2, through its own structure, forms a lateral limit on the plant pot inside the internal bearing cylinder 4, preventing it from swaying left and right; and after the connecting frame 5 moves the sleeve 6 onto the plant pot on the connecting plate 3, it initially achieves pressing and limiting of the plant pot, avoiding the risk of the plant pot tipping over on the partition frame. This is especially suitable for families with small animals, effectively resisting the shaking caused by animal collisions.
[0043] III. Height Adjustment: The connecting frame 5 can be adjusted to accommodate plant pots of different heights. The connecting frame 5 consists of a thicker tube and a thinner tube that can be raised and lowered within it. Multiple vertically arranged threaded holes are located on the thicker tube, and the thinner tube is fixed to the thicker tube with bolts. To accommodate taller plant pots, loosen the bolts on the thinner tube and pull it upwards along the thicker tube to the appropriate length, raising the overall height of the connecting frame 5. Then, screw the bolts into the corresponding threaded holes to fix the position of the thinner tube. To accommodate shorter plant pots, reverse the process, reducing the extension length of the thinner tube and shortening the height of the connecting frame 5. Through this adjustment method, the connecting frame 5 can drive the sleeve 6 to adapt to plant pots of different heights, ensuring that the sleeve 6 always fits precisely onto the plant pot for positioning, significantly improving the versatility of the partition frame.
[0044] IV. Reinforcement and Limitation: To further enhance the limiting effect on the plant pot and accommodate plant pots of different diameters, the sleeve 6 is reinforced through the cooperation of the snap-fit ear 7 and the fastening screw 8: The snap-fit ear 7 is installed at the notch on one side of the sleeve 6, and the snap-fit ear 7 is screwed into the fastening screw 8. After the sleeve 6 is initially placed on the plant pot, if the diameter of the plant pot is small, the fastening screw 8 can be rotated clockwise to bring the snap-fit ear 7 closer together, thereby causing the sleeve 6 to narrow, so that the inner wall of the sleeve 6 fits tightly against the outer side of the plant pot, and it is firmly fixed; if the diameter of the plant pot is large, the fastening screw 8 can be rotated counterclockwise to move the snap-fit ear 7 away from each other, causing the sleeve 6 to widen, ensuring that the sleeve 6 can be smoothly put into the plant pot. After it is put into place, the fastening screw 8 is tightened clockwise to achieve narrowing and fixation. In addition, the sleeve 6 is made of rigid elastic material. When the sleeve is tightened and fixed, it can ensure the pressing and limiting effect with rigidity, and avoid squeezing and damaging the plant pot with elasticity. In the end, it can achieve stable limiting of plant pots of different diameters. The whole process is convenient and further improves the practicality of the partition frame.
[0045] The automatic initial positioning of the plant pot is achieved through the linkage structure of the bearing cylinder 4, elastic element, connecting frame 5 and sleeve 6. When the bearing cylinder 4 sinks due to the load, it will drive the connecting frame 5 and sleeve 6 to move down synchronously, so that the sleeve 6 automatically fits onto the plant pot on the connecting plate 3 below, effectively preventing it from tipping over, and especially resisting the shaking caused by pet collisions.
[0046] The adjustable-height connecting frame 5, composed of a thick tube, a thin tube, and bolts, enables wide compatibility with plant pots of different heights. By changing the extension length of the thin tube within the thick tube and fixing it with bolts, the overall height of the connecting frame 5 can be adjusted, ensuring that the sleeve 6 at its top can accurately fit the pot, thus improving the versatility of the divider frame.
[0047] By employing a sleeve 6 structure made of rigid yet elastic material and equipped with snap-fit ears 7 and fastening screws 8, the system achieves both fastening and protection for plant pots of different diameters. Rotating the fastening screws 8 drives the sleeve 6 to narrow or widen, allowing its inner wall to fit tightly against small-diameter pots while easily fitting into large-diameter pots. The elasticity of the material ensures the limiting effect while preventing damage from compression.
[0048] The placement frame 2 and its smooth top wall guide hole structure provide stable vertical guidance and support for the movement of the bearing cylinder 4 and the connecting frame 5. This structure ensures that the bearing cylinder 4 will not shift during the sinking process and significantly reduces the frictional resistance when the connecting frame 5 moves, making the entire linkage process smooth and stable.
[0049] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.
Claims
1. A partition frame structure for placement based on interior design, characterized by, include: Framework (1); The frame (2) is placed in the middle of the inner side of the frame (1); Multiple connecting plates (3), one end of each connecting plate (3) is connected to the circumference of the central placement frame (2), and the other end is connected to the frame (1), and the connecting plate (3) includes vertically set and horizontally set connecting plates; The support cylinder (4) is placed on the inner bottom wall of the middle placement frame (2); A pair of connecting frames (5) are fixed to the top sides of the bearing cylinder (4), and the top of each connecting frame (5) extends out of the top wall of the middle placement frame (2) and is located above the connecting plate (3); Sleeve (6) is fixed to one end of each connecting bracket (5), and the opening of sleeve (6) is arranged vertically; The connecting frame (5) is configured to move up and down on the top wall of the middle placement frame (2). When a green pot is placed in the bearing cylinder (4), the bearing cylinder (4) sinks down and drives the connecting frame (5) to move down, so that the sleeve (6) is engaged with the green pot placed on the connecting plate (3) below it. Thus, the green pot in the bearing cylinder (4) is limited by the middle placement frame (2), and the green pot on the connecting plate (3) is pressed and limited by the connecting frame (5) and the sleeve (6).
2. The partition frame structure for placement based on interior design according to claim 1, characterized in that: The sleeve (6) is made of a hard elastic material. A notch is provided on one side of the sleeve (6). A snap-fit ear (7) is installed on the notch. A fastening screw (8) is screwed onto the snap-fit ear (7). The relative position of the snap-fit ear (7) is adjusted by adjusting the fastening screw (8). The snap-fit ear (7) drives the sleeve (6) to expand or shrink.
3. The partition frame structure for placement based on interior design according to claim 2, characterized in that: The connecting frame (5) includes a thick tube body and a thin tube body that moves up and down within the thick tube body. One end of the thin tube body is fixedly connected to the sleeve (6). The thick tube body has multiple vertically arranged threaded holes. The thin tube body is screwed with bolts to fix the position of the thin tube body within the thick tube body. The height of the connecting frame (5) can be adjusted by adjusting the position of the bolts in different threaded holes.
4. The partition frame structure for placement based on interior design according to claim 3, characterized in that: The top wall of the middle placement frame (2) is provided with a guide hole for the connecting frame (5) to pass through, and the inner wall of the guide hole is smooth or has a smooth bushing.
5. The partition frame structure for placement based on interior design according to claim 4, characterized in that: An elastic element is provided between the bottom of the bearing cylinder (4) and the inner bottom wall of the middle placement frame (2), and the elastic element is a spring or rubber.
6. The partition frame structure for placement based on interior design according to claim 5, wherein: The sleeve (6) is flared from top to bottom.