Greening box convenient to use
The detachable main frame structure and enclosure design solve the problems of inconvenient transportation and high maintenance costs of traditional greening boxes, achieving flexible use and low-cost maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUNAN LVLI STEREO GREENING CO LTD
- Filing Date
- 2025-05-22
- Publication Date
- 2026-04-28
AI Technical Summary
Traditional greening boxes are integral in structure, which makes them inconvenient to transport, has high maintenance costs, and is complicated to disassemble and assemble, making them difficult to use flexibly.
It adopts a detachable main frame structure, including a first support frame, a second support frame, a first connector and a second connector. Assembly and storage are achieved through detachable snap-fit and rotational connection. Combined with the detachable design of the fence, the disassembly and assembly process is simplified.
It improves the flexibility of use and transportation of greening boxes, reduces space occupation and maintenance costs, facilitates the individual replacement of damaged parts, and enhances the reliability and maintainability of the structure.
Smart Images

Figure CN224165281U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of planting technology, and in particular to a greening box that is easy to use. Background Technology
[0002] Planting boxes are used in residential areas or other places where it is inconvenient to grow plants. People put soil in the planting box to fix the plant roots and place the planting box in a place that can provide light for the plants inside.
[0003] Traditional greening boxes are typically made of wood or plastic for aesthetic purposes. While these structures offer advantages such as corrosion resistance and long service life, they also have drawbacks: firstly, because they are all single-piece designs and are placed in the same way, they are not easy to stack during storage, handling, and transportation; secondly, if any part of the box is damaged, the entire box needs to be replaced, resulting in high maintenance costs.
[0004] Currently, some detachable structures have been designed for traditional integrated greening boxes. For example, Chinese patent CN218570957U discloses a convenient planting box, which includes a planting bag, a cover, and a bottom plate. The bottom plate has first connecting plates on two opposite sides of its top outer wall, and second connecting plates on the remaining two sides of its top outer wall. A second surrounding plate is hinged to the top of the first connecting plate, and a first surrounding plate is hinged to the top outer wall of the second connecting plate. The bottom plate, the two first connecting plates, and the two second connecting plates form a storage groove. The upper surface of the first connecting plate is higher than the upper surface of the second connecting plate, and the upper surfaces of the first and second surrounding plates are flush. A slot is provided on the bottom outer wall of the cover. This utility model discloses a convenient planting box that allows the first and second surrounding plates to be laid flat during storage, and the planting bag to be placed in the storage groove, preventing the planting bag from being lost. It has the technical advantages of convenient installation during planting and a small storage volume. However, this solution has the drawbacks of complex parts that are difficult to store. In addition, its disassembly and assembly methods are relatively fragmented, making it difficult to move, especially when there is internal filling. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide a greening box that is easy to use.
[0006] To achieve the above-mentioned utility model objectives, this utility model provides a user-friendly greening box, comprising: a main frame, a base plate, and a fence;
[0007] The main frame includes: a first support frame, a second support frame, a first connector, and a second connector;
[0008] The first connector and the second connector are respectively U-shaped or ring-shaped with regular cross-sections;
[0009] Along the first direction of the first support frame, the first connector and the second connector are arranged at intervals and are rotatably connected to the first support frame respectively.
[0010] Along the first direction of the first support frame, the opposite ends of the second support frame are detachably snapped into the first connector and the second connector, respectively.
[0011] The base plate is detachably installed inside the first support frame;
[0012] The upper and lower ends of the fence are detachably connected to the first support frame and the second support frame, respectively.
[0013] According to one aspect of the present invention, the upper side of the first support frame is provided with a first connecting ear for connecting the first connecting member and a second connecting ear for connecting the second connecting member;
[0014] Along the second direction of the first support frame, there are two symmetrically arranged first connectors and two symmetrically arranged second connecting ears;
[0015] The interval between the two first connecting ears is greater than the interval between the two second connecting ears.
[0016] According to one aspect of the present invention, the height of the connection position between the first connector and the first connecting ear and the height of the connection position between the second connector and the second connecting ear are different.
[0017] According to one aspect of the present invention, the second support frame is provided with a first slot for engaging with the first connector and a second slot for connecting the second connector.
[0018] Along the second direction of the first support frame, there are two symmetrically arranged first card slots and two symmetrically arranged second card slots; wherein, a first limiting protrusion is provided on the inner side of the first card slot and a second limiting protrusion is provided on the inner side of the second card slot;
[0019] Along the first direction of the first support frame, the opening orientation of the first slot is opposite to that of the opening orientation of the second slot.
[0020] According to one aspect of the present invention, along the second direction of the first support frame, receiving grooves are respectively provided on the lower sides of the sidewalls at opposite ends of the second support frame;
[0021] The cavity shape of the receiving groove matches the shape of the first connector and the second connector when they are horizontally stacked.
[0022] According to one aspect of the present invention, the enclosure includes: a first side plate disposed opposite to each other, a second side plate disposed opposite to each other, and a hinge shaft;
[0023] The first side plate and the second side plate are sequentially hinged together by the hinge shaft to form a ring structure;
[0024] The first side plate is provided with a lug on the side opposite to the second side plate, wherein the lug extends horizontally in a direction away from the first side plate;
[0025] The ear is provided with a through-hole;
[0026] Along the vertical direction, the upper and lower ends of the first side plate are respectively provided with the insert ears.
[0027] According to one aspect of the present invention, the second side plate includes: a plurality of side plate portions;
[0028] The multiple side plate sections are sequentially hinged together.
[0029] According to one aspect of the present invention, along a first direction of the first support frame, the first support frame is provided with first insertion holes for inserting the ear on opposite sides of the sidewalls, and the second support frame is provided with second insertion holes for inserting the ear on opposite sides of the sidewalls.
[0030] Along the first direction of the first support frame, the first support frame is provided with a first buckle hole that penetrates its body in a vertical direction on the side edges of the opposite sides, and the second support frame is provided with a second buckle hole that penetrates its body in a vertical direction on the side edges of the opposite sides.
[0031] The first snap-fit hole and the second snap-fit hole are respectively aligned with the corresponding holes.
[0032] According to one aspect of this utility model, it also includes: a snap fastener;
[0033] The buckle includes: an annular body, a first limiting protrusion, and a second limiting protrusion;
[0034] The ring-shaped main body has an overall axially symmetrical structure with a length greater than its width;
[0035] Along the width direction of the annular body, the first limiting protrusion is symmetrically arranged on opposite sides of the annular body, and the second limiting protrusion is symmetrically arranged on opposite sides of the annular body.
[0036] Along the length direction of the annular body, the first limiting protrusion and the second limiting protrusion are spaced apart;
[0037] Along the length of the annular body, the first limiting protrusion is provided with an inclined guide surface on the side opposite to the second limiting protrusion, and the second limiting protrusion is provided with an inclined guide surface on the side opposite to the first limiting protrusion.
[0038] According to one aspect of the present invention, the annular body includes: two parallel and spaced rod-shaped portions, a first connecting portion, and a second connecting portion;
[0039] Along the length of the annular body, the first connecting portion and the second connecting portion are respectively provided at opposite ends of the rod-shaped portion;
[0040] The first connecting part is an arc-shaped structural component or a bent structural component;
[0041] The second connecting part is a linear structural component, an arc-shaped structural component, or a bent structural component;
[0042] The second limiting protrusion is aligned with the end of the second connecting portion.
[0043] According to one aspect of this utility model, the greening box of this utility model has a simple structure and reliable use. It can be easily assembled and stored, which greatly improves its flexibility of use and convenience of transportation.
[0044] According to one aspect of this utility model, the greening box can be assembled between its structures during storage, greatly reducing its space occupation and making it more efficient in saving space during transportation.
[0045] According to one aspect of this utility model, the present utility model can specifically optimize some structures on the main frame (first support frame, first connector and second connector), so that the whole can be reliably transported based on its excellent structural strength, even when there is already filling inside.
[0046] According to one aspect of this utility model, the present utility model can easily achieve flexible disassembly and resizing of each structure. Even if some of the structures are damaged, they can be maintained by individual replacement, which more effectively improves the maintainability of the present utility model and reduces the corresponding maintenance costs. Attached Figure Description
[0047] Figure 1 This is an unfolded structural diagram of a greening box according to one embodiment of the present utility model;
[0048] Figure 2This is a cross-sectional view of a greening box according to one embodiment of the present invention;
[0049] Figure 3 This is a structural diagram of the main frame of one embodiment of the present utility model;
[0050] Figure 4 This is a structural diagram of the first support frame according to one embodiment of the present invention;
[0051] Figure 5 This is a structural diagram of the second support frame according to one embodiment of the present invention;
[0052] Figure 6 This is a diagram showing the storage structure of the main frame in one embodiment of the present invention;
[0053] Figure 7 This is a structural diagram of the first side plate according to one embodiment of the present invention;
[0054] Figure 8 This is a snap-fit structure diagram of the main frame of one embodiment of the present utility model. Detailed Implementation
[0055] To more clearly illustrate the embodiments of this utility model or the technical solutions in the prior art, the drawings used in the embodiments will be briefly described below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without any creative effort.
[0056] In describing embodiments of this utility model, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer" express orientations or positional relationships based on the orientations or positional relationships shown in the relevant drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on this utility model.
[0057] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments. The embodiments cannot be described in detail here, but the embodiments of the present invention are not limited to the following embodiments.
[0058] Combination Figure 1 , Figure 2 and Figure 3As shown, according to one embodiment of the present invention, a user-friendly greening box includes: a main frame 1, a base plate 2, and a surrounding enclosure 3; wherein, the main frame 1 is the main structure of the entire greening box, and the base plate 2 and the surrounding enclosure 3 are installed on the main frame 1 to form a regular space for planting green plants under the support of the main frame 1. In this embodiment, the greening box is generally square, and its overall shape is formed by the main frame 1. Furthermore, the main frame 1 includes: a first support frame 11, a second support frame 12, a first connector 13, and a second connector 14; wherein, the first support frame 11 and the second support frame 12 are arranged parallel to each other, while the first connector 13 and the second connector 14 are arranged opposite each other to achieve reliable installation of the first support frame 11 and the second support frame 12.
[0059] In this embodiment, the first connector 13 and the second connector 14 are U-shaped or ring-shaped parts with regular cross-sections, respectively. Both the first connector 13 and the second connector 14 are made of metal to ensure their structural strength and achieve structural reliability of the entire main frame 1. Moreover, the first connector 13 and the second connector 14 can be used as a gripping structure for moving the entire green box, which can effectively facilitate the movement of the entire green box and greatly improve the ease of use of this solution.
[0060] In this embodiment, the first connector 13 and the second connector 14 are arranged at intervals along the first direction of the first support frame 11 and are rotatably connected to the first support frame 11 respectively. By rotatably connecting the first connector 13 and the second connector 14 to the first support frame 11, the first connector 13 and the second connector 14 can be easily erected and stacked horizontally. In the erected state, they can be detachably installed with the second support frame 12. In the horizontally stacked state, the entire main frame 1 can be easily stored, greatly reducing the overall volume and making transportation more convenient.
[0061] In this embodiment, along the first direction of the first support frame 11, the two opposite ends of the second support frame 12 are detachably snapped into the first connector 13 and the second connector 14 respectively; thus, the second support frame 12 and the first connector 13 and the second connector 14 are installed in an upright state by means of detachable snap-fit, so as to realize the installation and formation of the entire main frame 1 structure. When it is necessary to stack the first connector 13 and the second connector 14 horizontally, the entire main frame 1 can be stored by disassembling the second support frame 12 from the first connector 13 and the second connector 14.
[0062] In this embodiment, the base plate 2 is detachably installed inside the first support frame 11. An inwardly protruding support protrusion is provided on the inner side of the first support frame 11, allowing the base plate 2 to be supported on the support protrusion. Furthermore, to facilitate reliable fixing of the base plate 2 to the first support frame 11, snap-fit or interference fit methods can be used to achieve reliable fixation. In this embodiment, to ensure reliable support for the base plate 2, reinforcing ribs or other structures can be further provided on the base plate 2 to ensure its structural strength and reliability. In this embodiment, the upper and lower ends of the enclosure 3 are detachably connected to the first support frame 11 and the second support frame 12, respectively. The bottom of the enclosure 3 can press against the base plate 2. After the upper and lower ends of the enclosure 3 are connected to the first support frame 11 and the second support frame 12, the base plate 2 is fixed inside the first support frame 11, and there is tight contact between the enclosure 3 and the base plate 2 to eliminate gaps at the connection point and ensure the sealing around the bottom.
[0063] The above setup effectively encloses the planting space within the main frame 1, ensuring the stability and reliability of the structure.
[0064] Combination Figure 1 , Figure 2 and Figure 3 As shown, according to one embodiment of the present invention, the upper side of the first support frame 11 is provided with a first connecting ear 111 for connecting the first connecting member 13 and a second connecting ear 112 for connecting the second connecting member 14; wherein, along the second direction of the first support frame 11, there are two symmetrically arranged first connecting members 13 and two symmetrically arranged second connecting ears 112.
[0065] Furthermore, the first connecting ear 111 is provided with a through hole penetrating its body, and the second connecting ear 112 is provided with a through hole penetrating its body, thereby facilitating the rotatable connection of the first connecting member 13 and the second connecting member 14. To ensure smooth rotation, the cross-sections of the rotatable positions of both the first connecting member 13 and the second connecting member 14 are circular, and their dimensions match the inner diameters of the through holes on the first connecting ear 111 and the second connecting ear 112, thus achieving stable and reliable rotation.
[0066] In this embodiment, the interval between the two first connecting ears 111 is greater than the interval between the two second connecting ears 112. This allows the widths of the first connecting member 13 and the second connecting member 14 to be set differently, facilitating the horizontal stacking of the first connecting member 13 and the second connecting member 14 for convenient storage of the main frame 1, and avoiding the drawback of overlapping between the first connecting member 13 and the second connecting member 14, which would prevent complete storage.
[0067] like Figure 4As shown, according to one embodiment of this utility model, both the first connecting ear 111 and the second connecting ear 112 are configured as rectangular plate / block structures, thereby fixing their bottom ends to the first support frame 11, and through holes for connecting the first connecting member 13 and the second connecting member 14 can be provided at positions adjacent to their upper ends. The height of the connection position between the first connecting member 13 and the first connecting ear 111 is different from the height of the connection position between the second connecting member 14 and the second connecting ear 112; that is, the height of the through hole on the first connecting member 13 from the first support frame 11 is different from the height of the through hole on the second connecting ear 112 from the first support frame 11. The difference in height can be set as the cross-sectional dimension of the first connecting member 13 or the second connecting member 14. This allows for convenient horizontal stacking of the first connecting member 13 and the second connecting member 14, and the first connecting member 13 and the second connecting member 14 can abut against each other to achieve a stable and reliable stacked state.
[0068] Combination Figure 1 , Figure 2 and Figure 3 As shown, according to one embodiment of the present invention, the first connecting member 13 and the second connecting member 14 are respectively configured as U-shaped members. The first connecting member 13 includes a first upper rod portion 131, a first vertical rod portion 132, and a first rotating portion 133. Further, along the length direction of the first upper rod portion 131, two first vertical rod portions 132 are provided at opposite ends of the first upper rod portion 131 and are connected by an end-fixing method. The first rotating portion 133 is provided at the other end of the first vertical rod portion 132, and the first upper rod portion 131 and the first rotating portion 133 are distributed on opposite sides of the first vertical rod portion 132. Thus, the first connecting member 13 formed by the above arrangement can be installed between two first connecting ears 111.
[0069] Furthermore, the second connector 14 includes: a second upper rod portion 141, a second vertical rod portion 142, and a second rotating portion 143; furthermore, along the length direction of the second upper rod portion 141, two second vertical rod portions 142 are provided at opposite ends of the second upper rod portion 141 and are connected by an end-fixing method, while the second rotating portion 143 is provided at the other end of the second vertical rod portion 142, and the second upper rod portion 141 and the second rotating portion 143 are distributed on the same side of the second vertical rod portion 142. Thus, the two second connecting ears 112 can be installed between the two second vertical rod portions 142 through the second connector 14 formed by the above arrangement, thereby making the second connector 14 and the first connector 13 different in size, so as to achieve the effect of staggered stacking.
[0070] In this embodiment, since the heights of the first connecting ear 111 and the second connecting ear 112 differ, the lengths of the first vertical rod 132 and the second vertical rod 142 can also be set differently. This ensures that the heights of the first upper rod 131 and the second upper rod 141 are consistent when erected, allowing for easy gripping and transport of the entire greening box. Furthermore, this design also facilitates hoisting the first upper rod 131 and the second upper rod 141 to their respective installation positions / structures, thus enabling more flexible installation and improving the overall usability of the solution.
[0071] In this embodiment, the first upper rod portion 131, the first vertical rod portion 132, and the first rotating portion 133 can be integrally formed, and the two opposing first vertical rod portions 132 can be configured to exhibit a certain expansion angle in the direction of mutual distance. This allows the first connector 13 to have a certain elasticity, thus ensuring stable installation with the first connector 13 when it is installed between the two first connecting ears 111 due to its own elasticity. Furthermore, the second upper rod portion 141, the second vertical rod portion 142, and the second rotating portion 143 can be integrally formed, and the two opposing second vertical rod portions 142 can be configured to exhibit a certain contraction angle in the direction of mutual approach. This allows the second connector 14 to have a certain elasticity, thus ensuring stable installation with the second connector 14 when it is installed outside the two second connecting ears 112 due to its own elasticity.
[0072] Combination Figure 1 , Figure 2 , Figure 3 and Figure 5As shown, according to one embodiment of the present invention, the second support frame 12 is provided with a first slot 121 for engaging with the first connector 13 and a second slot 122 for connecting the second connector 14; wherein, along the second direction of the first support frame 11, two first slots 121 and two second slots 122 are symmetrically arranged; wherein, a first limiting protrusion 121a is provided on the inner side of the first slot 121 and a second limiting protrusion 122a is provided on the inner side of the second slot 122; in this embodiment, by providing the first limiting protrusion 121a on the inner side of the first slot 121, the interval between the inner sides of the first slot 121 can be reduced, thereby achieving the locking effect on the first vertical rod portion 132 of the first connector 13; correspondingly, by providing the second limiting protrusion 122a on the inner side of the second slot 122, the interval between the inner sides of the second slot 122 can be reduced, thereby achieving the locking effect on the second vertical rod portion 142 of the second connector 14. In this embodiment, the first limiting protrusion 121a and the second limiting protrusion 122a can be respectively configured as elongated protrusions with regular cross-sections such as triangles, semicircles, and rectangles, and the extension direction of the protrusion length is along the vertical direction, thereby achieving the corresponding limiting and blocking effect. In another embodiment, the first limiting protrusion 121a and the second limiting protrusion 122a can also be configured to be movable, that is, mounting holes can be provided on the inner surfaces of the first slot 121 and the second slot 122, and compression springs are arranged in the mounting holes. The first limiting protrusion 121a and the second limiting protrusion 122a are installed in the mounting holes by sliding installation, thereby realizing the elastic expansion and contraction of the first limiting protrusion 121a and the second limiting protrusion 122a, and thus more conveniently realizing the detachable snap-fit connection between the second support frame 12 and the first connecting member 13 and the second connecting member 14.
[0073] In this embodiment, along the first direction of the first support frame 11, the opening orientation of the first slot 121 is opposite to that of the second slot 122. This arrangement effectively ensures that the opening orientations of the first slot 121 and the second slot 122 are consistent with the swing directions of the first connector 13 and the second connector 14. Therefore, it is easier to achieve detachable engagement between the first connector 13 and the second connector 14 and the second support frame 12. Specifically, when it is necessary to install the first connector 13 and the second connector 14 with the second support frame 12, the first connector 13 and the second connector 14 are raised and rotated into the first slot 121 and the second slot 122. Within the opening of the slot 122, pressure is applied to the first connector 13 and the second connector 14 in opposite directions to overcome the resistance of the first limiting protrusion 121a and the second limiting protrusion 122a, thus enabling the first connector 13 and the second connector 14 to engage and be installed with the second support frame 12. To ensure stable installation, after the first connector 13 and the second connector 14 are inserted, the vertical rods of the first connector 13 and the second connector 14 are brought into contact between the limiting protrusions and the wall of the slot to achieve a corresponding clamping effect. Conversely, if it is necessary to separate the first connector 13 and the second connector 14 from the second support frame 12, force is applied to the first connector 13 and the second connector 14 in opposite directions, which can easily remove the first connector 13 and the second connector 14 from the first slot 121 and the second slot 122, greatly improving the ease of disassembly.
[0074] Furthermore, the second support frame 12 can slide along the vertical rod portion of the first connector 13 and the second connector 14 based on the first slot 121 and the second slot 122. Thus, in order to save the force applied during disassembly and assembly, the position of the second support frame 12 can be made closer to the rotational position of the first connector 13 and the second connector 14, which can effectively save the force applied during disassembly and assembly and reduce the difficulty of disassembly and assembly. For example, the second support frame 12 can be placed on the first support frame 11, so that the first connector 13 and the second connector 14 can be more easily inserted into or removed from the corresponding first slot 121 and second slot 122 through the above installation method.
[0075] Combination Figure 5 and Figure 6As shown, according to one embodiment of the present invention, along the second direction of the first support frame 11, the lower sides of the frames at opposite ends of the second support frame 12 are respectively provided with receiving grooves 12a; the concave shape of the receiving grooves 12a matches the shape of the first connector 13 and the second connector 14 when they are in a horizontally stacked state. In this embodiment, since the upper rods of the first connector 13 and the second connector 14 are perpendicular to the receiving grooves 12a, a clearance notch can be provided on the inner sidewall of the second support frame 12 to connect the receiving grooves 12a, so as to avoid interference between the upper rods of the first connector 13 and the second connector 14. This allows the second support frame 12 to be fastened to the upper side of the first support frame 11 when the first connector 13 and the second connector 14 are in a horizontally stacked state, realizing the storage of the main frame 1 and greatly facilitating the volume compression of the main frame 1 during transportation.
[0076] Combination Figure 1 , Figure 2 and Figure 3 As shown, in this embodiment, to maintain reliable stability of the first support frame 11 and the second support frame 12 during fastening, fastening protrusions a can be further provided on the sidewalls of the first connecting ear 111 and the second connecting ear 112. Correspondingly, fastening grooves b are provided on the second support frame 12. Thus, after the first support frame 11 and the second support frame 12 are fastened, reliable and stable interconnection can be achieved based on the matching effect of the fastening protrusions a and the fastening grooves b. Of course, to ensure tight fastening of the first support frame 11 and the second support frame 12, corresponding clearance groove structures corresponding to the first connecting ear 111 and the second connecting ear 112 are provided on the second support frame 12. The fastening protrusions a and the fastening grooves b can then be conveniently arranged in matching positions to achieve a tight structural fit.
[0077] Combination Figure 1 and Figure 2 As shown, according to one embodiment of the present invention, the enclosure 3 includes: a first side plate 31 arranged opposite to each other, a second side plate 32 arranged opposite to each other, and a hinge shaft 33; wherein, the first side plate 31 and the second side plate 32 are hinged together by the hinge shaft 33 to form a ring structure; in this embodiment, a first hinge seat 31a for mounting the hinge shaft 33 is provided on the inner edge of the first side plate 31, and a second hinge seat 32a for mounting the hinge shaft 33 is provided on the edge of the second side plate 32, wherein the first hinge seat 31a and the second hinge seat 32a are staggered and coaxially connected for the hinge shaft 33 to be inserted to achieve a rotational connection between them.
[0078] like Figure 7As shown, in this embodiment, a lug 311 is provided on the side of the first side plate 31 opposite to the second side plate 32. The lug 311 extends horizontally in a direction away from the first side plate 31. The lug 311 is provided with a hole 311a penetrating its body. Furthermore, lugs 311 are provided at the upper and lower ends of the first side plate 31 in the vertical direction. The lugs 311 facilitate the installation with the first support frame 11 and the second support frame 12, thereby ensuring reliable fixation between the main frame 1 and the enclosure 3.
[0079] Combination Figure 1 and Figure 2 As shown, according to one embodiment of the present invention, the second side plate 32 includes: a plurality of side plate portions 321; wherein, the plurality of side plate portions 321 are sequentially hinged together. In this embodiment, a second hinge seat 32a is provided on the edge of each of the plurality of side plate portions 321, and the second hinge seats 32a between the connected side plate portions 321 are staggered to achieve the insertion of the hinge shaft 33, thereby facilitating the folding between adjacent side plate portions 321. Therefore, based on the above-mentioned configuration, the second side plate 32 can easily bring the two opposing first side plates 31 closer together, thereby enabling the second side plate 32 to fold between the two first side plates 31. This allows for convenient and flexible compression and folding of the enclosure 3, facilitating its storage. When installing the enclosure 3 with the main frame 1, the folded enclosure 3 is placed into the main frame 1, and the entire enclosure 3 can be unfolded by moving the two first side plates 31 in opposite directions. Furthermore, after the enclosure 3 is fully unfolded, the inserts 311 on the outer side of the first side plate 31 can be accurately inserted into the corresponding positions of the first support frame 11 and the second support frame 12, greatly facilitating the installation of the enclosure 3 with the main frame 1.
[0080] Furthermore, a first hinge seat 31a is provided on one side of the first side plate 31, and a second hinge seat 32a is provided on the edge of the side plate portion 321. This arrangement makes the enclosure 3 easier to fold, fully realizing the compact storage of the enclosure 3. It should be noted that, in order to facilitate the enclosure 3 to be folded to its maximum size during compression, the hinge shafts 33 between adjacent side plate portions 321 can be removed to separate them, thereby effectively eliminating interference at the folding position.
[0081] Combination Figure 2 , Figure 4 and Figure 5As shown, according to one embodiment of the present invention, along the first direction of the first support frame 11, the side frames of the first support frame 11 on both sides are provided with first insertion holes 11a for inserting ears 311, and the side frames of the second support frame 12 on both sides are provided with second insertion holes 12b for inserting ears 311; along the first direction of the first support frame 11, the side frames of the first support frame 11 on both sides are provided with first snap-fit insertion holes 11b penetrating its body in the vertical direction, and the side frames of the second support frame 12 on both sides are provided with second snap-fit insertion holes 12c penetrating its body in the vertical direction; furthermore, when the ears 311 are inserted into the first insertion holes 11a and the second insertion holes 12b, the first snap-fit insertion holes 11b and the second snap-fit insertion holes 12c can be aligned with the corresponding insertion holes 311a respectively.
[0082] Combination Figure 1 , Figure 2 and Figure 8 As shown, according to one embodiment of the present invention, the user-friendly greening box of the present invention further includes: a buckle 4; wherein, the buckle 4 includes: an annular body 41, a first limiting protrusion 42 and a second limiting protrusion 43; in this embodiment, the annular body 41 has an overall axially symmetrical structure with a length greater than its width; along the width direction of the annular body 41, the first limiting protrusion 42 is symmetrically arranged on opposite sides of the annular body 41, and the second limiting protrusion 43 is symmetrically arranged on opposite sides of the annular body 41; along the length direction of the annular body 41, the first limiting protrusion 42 and the second limiting protrusion 43 are spaced apart; furthermore, along the length direction of the annular body 41, the first limiting protrusion 42 has an inclined guide surface on the side opposite to the second limiting protrusion 43, and the second limiting protrusion 43 has an inclined guide surface on the side opposite to the first limiting protrusion 42.
[0083] In this embodiment, the cross-sectional dimensions of the annular body 41 are matched with the opening dimensions of the first snap-fit hole 11b and the second snap-fit hole 12c, thereby allowing the annular body 41 to be accurately inserted into the corresponding first snap-fit hole 11b and second snap-fit hole 12c. Correspondingly, along the length direction of the annular body 41, the interval between the first limiting protrusion 42 and the second limiting protrusion 43 matches the thickness of the installation position. That is, if installed on the first support frame 11, the interval is consistent with the thickness of the first support frame 11 in the vertical direction; if installed on the second support frame 12, the interval is consistent with the thickness of the second support frame 12 in the vertical direction, thereby achieving a reliable snap-fit effect.
[0084] Through the above-described design, the buckle 4 adopts a ring-shaped body 41, which allows it to have a certain degree of elasticity in the width direction. Furthermore, the compression of the ring-shaped body 41 along the width direction facilitates the adjustment of the positions between the relative limiting protrusions, thereby simplifying the assembly and disassembly of the buckle 4 with the corresponding holes and effectively ensuring the ease of use of this solution. Moreover, the buckle 4 has a simple structure and low manufacturing cost, greatly reducing its replacement cost and making the reusability cost of this invention even lower.
[0085] like Figure 8 As shown, according to one embodiment of the present invention, the annular body 41 includes: two parallel and spaced rod-shaped portions 411, a first connecting portion 412, and a second connecting portion 413; wherein, along the length direction of the annular body 41, the first connecting portion 412 and the second connecting portion 413 are respectively provided at opposite ends of the rod-shaped portions 411; in this embodiment, the first connecting portion 412 is an arc-shaped structural component or a bent structural component; the second connecting portion 413 is a linear structural component, an arc-shaped structural component, or a bent structural component; correspondingly, the second limiting protrusion 43 is arranged aligned with the end of the second connecting portion 413. In this embodiment, the first connecting portion 412 is preferably an arc-shaped structure, and the second connecting portion 413 is preferably a bent structural component (such as a V-shaped structural component), thereby giving the first connecting portion 412 and the second connecting portion 413 a certain degree of elasticity, which makes it easier to compress the annular body 41, thus making it easier to assemble and disassemble the annular body 41. In this embodiment, when the second connecting part 413 is configured as an arc-shaped or bent structural component, the opening orientation of the second connecting part 413 is consistent with the opening orientation of the first connecting part 412. This effectively ensures the consistency of compressibility, provides sufficient elastic space for the entire annular body 41, and facilitates easy assembly and disassembly. Furthermore, this arrangement effectively prevents the second connecting part 413 from protruding, which is more beneficial for ensuring the flatness of the installation position.
[0086] According to one embodiment of the present invention, a stepped groove can be further provided at the ends of the first snap-fit hole 11b and the second snap-fit hole 12c for installing the snap-fit 4, so that the first limiting protrusion 42 and the second limiting protrusion 43 can be further accommodated in the stepped groove, which can further eliminate the protrusion of the snap-fit 4 and is more beneficial to ensuring the flatness of the appearance of the present solution.
[0087] According to one embodiment of this utility model, the shape of the first side plate 31 can be matched with the shape of the hollow part of the second support frame 12. Therefore, the folded enclosure 3 can be directly placed in the second support frame 12, further increasing the integration of the greening box in its folded state and improving its transportation convenience. Furthermore, the insert ear 311 provided on the outer side of the first side plate 31 can be aligned with the second insert hole 12b on the second support frame 12. A buckle 4 or a similar buckle structure can then be inserted to secure the enclosure 3 and the second support frame 12, ensuring reliability during transportation. When unfolded, the corresponding buckle structure can be removed.
[0088] According to one embodiment of the present invention, decorative patterns or hollow patterns can be optionally provided on the side wall of the enclosure 3 to make its appearance more beautiful.
[0089] According to one embodiment of the present invention, drainage holes may be optionally provided on the bottom plate 2 to ensure its drainage performance.
[0090] To further illustrate this solution, we will provide further examples of its disassembly and assembly methods.
[0091] Disassembly method
[0092] See Figure 1 As shown, firstly, the buckles 4 installed on the first support frame 11 and the second support frame 12 are removed. A force is applied to the rod-shaped portion 411 of the annular body 41 to cause it to elastically deform. The buckle 4 is pushed out when the end edge of the first connecting portion 412 aligns with the edge of the corresponding buckle hole, until the buckle 4 disengages. Next, the two opposing first side plates 31 are folded in a direction approaching each other and removed from the main frame 1. Next, forces are applied to the first connecting member 13 and the second connecting member 14 in opposite directions to disengage them from the second support frame 12, and the second support frame 12 is removed. Next, the first connecting member 13 and the second connecting member 14 are folded horizontally together, and then the second support frame 12 is fastened to the first support frame 11 to achieve storage of the main frame 1. See [link to documentation]. Figure 6 Furthermore, the folded enclosure 3 is placed into the hollow part of the second support frame 12, and then the enclosure 3 is fixed in the second support frame 12 by means of buckles 4 or straps, so that the green box can be stored as a whole.
[0093] Assembly method
[0094] The assembly can be achieved by reversing the aforementioned disassembly method, which will not be elaborated further here.
[0095] The above content is merely an example of a specific solution of this utility model. For the equipment and structures not described in detail, it should be understood that they are implemented using common equipment and methods already available in the field.
[0096] The above description is merely one solution of this utility model and is not intended to limit it. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A user-friendly greening box, characterized in that, include: Main frame (1), base plate (2) and enclosure (3); The main frame (1) includes: a first support frame (11), a second support frame (12), a first connector (13), and a second connector (14); The first connector (13) and the second connector (14) are respectively U-shaped or ring-shaped parts with regular cross-sections; Along the first direction of the first support frame (11), the first connector (13) and the second connector (14) are arranged at intervals and are rotatably connected to the first support frame (11). Along the first direction of the first support frame (11), the two opposite ends of the second support frame (12) are detachably engaged with the first connector (13) and the second connector (14) respectively. The base plate (2) is detachably installed inside the first support frame (11); The upper and lower ends of the enclosure (3) are detachably connected to the first support frame (11) and the second support frame (12), respectively.
2. The user-friendly greening box according to claim 1, characterized in that, The upper side of the first support frame (11) is provided with a first connecting ear (111) for connecting the first connector (13) and a second connecting ear (112) for connecting the second connector (14). Along the second direction of the first support frame (11), there are two symmetrically arranged first connectors (13) and two symmetrically arranged second connecting ears (112); The interval between the two first connecting ears (111) is greater than the interval between the two second connecting ears (112).
3. The user-friendly greening box according to claim 2, characterized in that, The height of the connection position between the first connector (13) and the first connecting ear (111) is different from the height of the connection position between the second connector (14) and the second connecting ear (112).
4. The user-friendly greening box according to claim 3, characterized in that, The second support frame (12) is provided with a first slot (121) for engaging with the first connector (13) and a second slot (122) for connecting the second connector (14). Along the second direction of the first support frame (11), there are two symmetrically arranged first slots (121) and two symmetrically arranged second slots (122); wherein, a first limiting protrusion (121a) is provided on the inner side of the first slot (121) and a second limiting protrusion (122a) is provided on the inner side of the second slot (122). Along the first direction of the first support frame (11), the opening orientation of the first slot (121) is opposite to the opening orientation of the second slot (122).
5. The user-friendly greening box according to claim 4, characterized in that, Along the second direction of the first support frame (11), the lower sides of the frame at opposite ends of the second support frame (12) are respectively provided with receiving grooves (12a). The cavity shape of the receiving groove (12a) matches the shape of the first connector (13) and the second connector (14) when they are in a horizontally stacked state.
6. The user-friendly greening box according to claim 5, characterized in that, The enclosure (3) includes: a first side plate (31) arranged opposite to each other, a second side plate (32) arranged opposite to each other, and a hinge shaft (33). The first side plate (31) and the second side plate (32) are sequentially hinged together by the hinge shaft (33) to form a ring structure; The first side plate (31) is provided with a lug (311) on the side opposite to the second side plate (32), wherein the lug (311) extends horizontally in a direction away from the first side plate (31); The ear (311) is provided with an insertion hole (311a) that penetrates its body. Along the vertical direction, the upper and lower ends of the first side plate (31) are respectively provided with the insert (311).
7. The user-friendly greening box according to claim 6, characterized in that, The second side panel (32) includes: a plurality of side panel portions (321); The multiple side plate portions (321) are hinged together in sequence.
8. The user-friendly greening box according to claim 7, characterized in that, Along the first direction of the first support frame (11), the first support frame (11) is provided with first sockets (11a) for inserting the ear (311) on the side edges of opposite sides, and the second support frame (12) is provided with second sockets (12b) for inserting the ear (311) on the side edges of opposite sides. Along the first direction of the first support frame (11), the first support frame (11) is provided with a first buckle hole (11b) that penetrates its body in the vertical direction on the side edges of the opposite sides, and the second support frame (12) is provided with a second buckle hole (12c) that penetrates its body in the vertical direction on the side edges of the opposite sides. The first snap-fit hole (11b) and the second snap-fit hole (12c) are respectively aligned with the corresponding hole (311a).
9. The user-friendly greening box according to claim 8, characterized in that, Also includes: Buckle (4); The buckle (4) includes: an annular body (41), a first limiting protrusion (42), and a second limiting protrusion (43); The ring-shaped main body (41) has an overall axially symmetrical structure with a length greater than its width; Along the width direction of the annular body (41), the first limiting protrusion (42) is symmetrically arranged on opposite sides of the annular body (41), and the second limiting protrusion (43) is symmetrically arranged on opposite sides of the annular body (41). Along the length direction of the annular body (41), the first limiting protrusion (42) and the second limiting protrusion (43) are spaced apart; Along the length direction of the annular body (41), the first limiting protrusion (42) is provided with an inclined guide surface on the side away from the second limiting protrusion (43), and the second limiting protrusion (43) is provided with an inclined guide surface on the side away from the first limiting protrusion (42).
10. The easy-to-use greening box according to claim 9, characterized in that, The annular body (41) includes: two parallel and spaced rod-shaped parts (411), a first connecting part (412), and a second connecting part (413). Along the length of the annular body (41), the first connecting part (412) and the second connecting part (413) are respectively provided at opposite ends of the rod-shaped part (411); The first connecting part (412) is an arc-shaped structural component or a bent structural component; The second connecting part (413) is a linear structural component, an arc-shaped structural component, or a bent structural component; The second limiting protrusion (43) is aligned with the end of the second connecting portion (413).
Citation Information
Patent Citations
Planting box convenient to use
CN218570957U