A new planting device
Patent Information
- Application Number
- CN202011364402.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-11-29
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2040-11-29
AI Technical Summary
[0004]但是可以看出现有种植箱均为上下连接并没有左右连接,因而种植箱连接后形成一条直线,当高度较高的时候,会出现左右摆动的情况
[0020] 1. The present invention achieves lateral connection between planting racks by having the inner walls of the snap-fit plates on both sides of the connector abut against the inner walls of two adjacent planting racks and cooperating with the slot structure.
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Figure CN112352591B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of planting device technology, and specifically refers to a new type of planting device. Background Technology
[0002] There are many types of planting devices, one of which is a planting wall made of planting boxes, thus serving a greening purpose. These planting boxes also contain planting pots for growing plants. For example, there is patent number 2018216362720, titled "Invention of a New Type of Planting Box".
[0003] Although this patent uses a water-absorbing component to draw water up and moisten the soil, it employs a simple snap-fit connection, utilizing snaps and mounting holes for connection, allowing for rapid formation of a green wall and thus reducing manpower and time.
[0004] However, it can be seen that existing planting boxes are all connected vertically and not horizontally. Therefore, when the planting boxes are connected, they form a straight line, which will cause them to sway from side to side when the height is high. Alternatively, the horizontal connection is the same as the vertical connection, which is a snap-fit connection, essentially a point connection. Therefore, it is easy to loosen when subjected to external forces, and the snaps are relatively small, making them more difficult to manufacture. Summary of the Invention
[0005] The purpose of this invention is to provide a novel planting device that achieves lateral support through left-right connection, thereby ensuring the stability of the planting wall. Furthermore, it employs a snap-fit plate that abuts against the side wall, resulting in a large contact area and thus ensuring connection stability. Simultaneously, it utilizes a slotted structure, where the plate and slot work together. Compared to snap-fit devices, the processing of this invention is simpler, thus solving the problems existing in the left-right connection of existing planting boxes.
[0006] The objective of this invention is achieved as follows:
[0007] A new type of planting device, including
[0008] Several planting racks, each with planting troughs for planting plants;
[0009] The connector is used to connect two adjacent planting racks, and the connector has snap-fit plates bent on both sides.
[0010] When several planting racks are spliced horizontally in sequence, the inner walls of the two snap-fit plates abut against the side walls of the planting troughs of the two adjacent planting racks, and a slot structure is provided between the snap-fit plates and the planting racks to prevent the connectors from sliding between the connectors and the planting racks.
[0011] Based on the above solutions, further improvements or preferred solutions include:
[0012] Preferably, the card slot structure includes a partition, which is built into the planting trough and divides the planting trough into several planting areas.
[0013] The snap-fit plate has several snap-fit slots. By snapping the two snap-fit slots on both sides onto the partition of two adjacent planting racks, the connection between the planting racks can be achieved.
[0014] Alternatively, / and, both sides of the partition are provided with snap-fit grooves II. By snapping the snap-fit plates on both sides into the snap-fit grooves II of two adjacent planting racks, the connection between the planting racks can be achieved.
[0015] Preferably, both sides of the planting rack are provided with connecting grooves that communicate with the planting trough, and both sides of the partition are provided with mounting plates, which are snapped into the connecting grooves;
[0016] The mounting plate passes through the connecting groove on one side and is provided with a limiting block, which abuts against the outer wall of the planting rack.
[0017] Preferably, the planting trough has a plurality of snap-fit components, and the snap-fit components have mounting grooves, and the sides and bottom of the partition are snapped into the mounting grooves.
[0018] Preferably, the planting rack is an open-top elongated planting rack, with planting grooves provided along its length, and the cross-section of the planting grooves is U-shaped.
[0019] The outstanding and beneficial technical effects of this invention compared to the prior art are:
[0020] 1. The present invention achieves lateral connection between planting racks by having the inner walls of the snap-fit plates on both sides of the connector abut against the inner walls of two adjacent planting racks and cooperating with the slot structure.
[0021] Therefore, side support is achieved through left and right connections, thereby ensuring the stability of the planting wall; and the snap-fit plate abuts against the side wall, i.e., surface contact, resulting in a large contact area and thus ensuring the stability of the connection; at the same time, the slot structure is adopted, i.e., the plate and slot cooperate, and compared with the slot and buckle, the processing of this invention is simpler.
[0022] 2. The planting rack of the present invention is a long planting rack with an open top, and the planting trough has a U-shaped cross-section and is opened along its length. Therefore, the upper part of the planting area is very spacious, thus allowing more sunlight to be received.
[0023] Furthermore, because it is long, a single planting rack can vertically plant multiple plants. Therefore, when forming a planting wall, it is only necessary to connect the left and right sides, instead of connecting the top and bottom to form a vertical strip as in existing technologies, and then connecting the left and right sides to form a planting wall. This saves time and effort.
[0024] 3. This invention utilizes the slot structure between the snap-fit plate and the partition plate to achieve multi-directional restriction through a single slot structure, thereby securing the connection between planting racks. Attached Figure Description
[0025] Figure 1 This is a simplified structural diagram of the present invention;
[0026] Figure 2 yes Figure 1 An enlarged simplified structural diagram of A in the diagram;
[0027] Figure 3 This is a simplified structural diagram of the planting frame and connectors;
[0028] Figure 4 This is a simplified structural diagram of the partition;
[0029] Figure 5 This is a simplified structural diagram of the snap-fit connector.
[0030] In the diagram: 1-Planting rack; 2-Partition; 3-Planting trough; 8-Snap-fit groove one; 12-Snap-fit plate; 14-Connecting groove; 17-Snap-fit groove two; 19-Mounting plate; 25-Connector; 26-Limiting block; 27-Snap-fit; 28-Mounting groove; 48-Hole. Detailed Implementation
[0031] The specific embodiments of the present invention will be further described in detail below with reference to the accompanying drawings.
[0032] Combination Figures 1-5 It can be seen that a new type of planting device includes several planting racks 1, and the planting racks 1 are provided with planting troughs 3 for planting plants.
[0033] The planting device also includes a connector 25, which is used for connecting the planting racks 1. The connector 25 has a snap-fit plate 12 bent on both sides. A slot structure is provided between the snap-fit plate 12 and the planting rack 1 to prevent the connector 25 from sliding with the planting rack 1.
[0034] Therefore, in actual use, when several planting racks 1 are horizontally connected, the inner walls of the snap-fit plates 12 on both sides of the connector 25 abut against the side walls of the planting grooves 3 of two adjacent planting racks 1, and cooperate with the snap-fit structure to achieve the connection between the planting racks 1. The connector 25 provides horizontal restriction, while the snap-fit structure provides vertical restriction, thus achieving bidirectional restriction.
[0035] Therefore, this invention achieves lateral support through left and right connections, thereby ensuring the stability of the planting wall; and it uses a snap-fit plate 12 that abuts against the side wall, i.e., surface contact, resulting in a large contact area and thus ensuring the stability of the connection; at the same time, it adopts a slot structure, i.e., the cooperation between the plate and the slot, and compared with the slot and the buckle, the processing of this invention is simpler.
[0036] Moreover, the present invention is no longer limited to being placed vertically in front of a wall to form a planting wall, but can be applied to various walls, floors or roofs. When the planting rack 1 is applied to a sloping plane, the soil is located between the partition 2 and the planting trough 17, so the support for the soil and plants is better.
[0037] When the planting rack 1 is placed vertically, it can be fixed to the wall using fasteners. These fasteners are standard parts such as bolts and screws.
[0038] Combination Figures 1-5 It can be seen that the card slot structure includes a partition 2, which is built into the planting trough 3 and divides the planting trough 3 into several planting areas. Therefore, in actual use, multiple plants can be planted in one planting rack 1.
[0039] Furthermore, the structure of the partition 2 is diverse. It can be a solid or have several holes 48 for ventilation and water passage. When the partition 2 is a solid, the holes for water passage should be set on the planting rack 1 to allow water to flow between the upper and lower parts.
[0040] Furthermore, there are various types of slot structures, and the cooperation between the slot structure and the snap-fit plate 12 allows for multi-directional restriction through a single slot structure, thereby securing the connection between planting racks. Details are as follows:
[0041] The first method: First, the snap-fit plate 12 has several snap-fit slots 8. By snapping the snap-fit slots 8 on both sides onto the partition plates 2 of two adjacent planting racks 1, the connection between the planting racks 1 is realized.
[0042] The second method: First, both sides of the partition 2 are provided with snap-fit grooves 17. By snapping the snap-fit plates 12 on both sides into the snap-fit grooves 17 of the two adjacent planting racks 1, the connection between the planting racks 1 is realized.
[0043] The third type combines the first two structures to achieve a double connection, ensuring the stability of the connection.
[0044] Alternatively, the slot structure can be such that the planting rack 1 has a slot directly cut out, and the connector 25 has a plate between the snap-fit plates 12, which snaps into the slot to prevent the connector 25 from sliding between the connector 25 and the planting rack 1. Moreover, this slot structure can be used in conjunction with the partition 2, or it can be used alone, with the latter being used when there is no partition 2.
[0045] Combination Figures 1-5 It can be seen that the connection structure between planting rack 1 and partition 2 is diverse, as detailed below:
[0046] The first type: First, both sides of the planting rack 1 are provided with connecting grooves 14 that communicate with the planting trough 3, and both sides of the partition 2 are provided with mounting plates 19. At the same time, one side of the mounting plate 19 passes through the connecting groove 14 and is provided with a limit block 26.
[0047] Therefore, during actual installation, when the partition 2 is placed in the planting trough 3, the mounting plate 19 is snapped into the connecting groove 14, and the limiting block 26 abuts against the outer wall of the planting rack 1, thereby realizing the connection between the planting rack 1 and the partition 2.
[0048] The second type has several snap-fit parts 27 built into the planting trough 3, and the inner wall of the snap-fit parts 27 has an installation groove 28. Therefore, in actual installation, the connection between the planting rack 1 and the partition 2 is achieved by snapping the two sides and the bottom of the partition 2 into the installation groove 28.
[0049] The snap-fit component 27 can be integrally formed with the planting frame 1, or connected by means of adhesive, bolts, buckles, etc.
[0050] The third type combines the first two structures to achieve a double connection, thus ensuring the stability of the connection.
[0051] Combination Figures 1-5 It can be seen that the planting rack 1 is a long planting rack with an open top. The planting rack 1 has a planting trough 3 along its length, and the cross section 3 of the planting trough 3 is U-shaped.
[0052] Therefore, the upper part of the planting area is very spacious, allowing for more sunlight. Also, because it is long, one planting rack can vertically plant multiple plants. Thus, when forming a planting wall, only the left and right sides need to be connected, instead of connecting vertically first to form a vertical strip and then connecting horizontally to form the planting wall, as is done in existing technologies. This saves time and effort.
[0053] The above embodiments are merely preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, all equivalent changes made in accordance with the structure, shape, and principle of the present invention should be covered within the scope of protection of the present invention.
Claims
1. A novel planting device, characterized in that: include Several planting racks (1), and the planting racks (1) are provided with planting troughs (3) for planting plants; A connector (25) is used to connect two adjacent planting racks (1), and the connector (25) has snap-fit plates (12) bent on both sides. The connector (25) is long and has a U-shaped cross section. When several planting racks (1) are spliced horizontally in sequence, the inner walls of the two snap-fit plates (12) abut against the side walls of the planting grooves (3) of the two adjacent planting racks (1), and a slot structure is provided between the snap-fit plates (12) and the planting racks (1) to prevent the connectors (25) from sliding between the planting racks (1); The card slot structure includes a partition (2), and the partition (2) is built into the planting trough (3), dividing the planting trough (3) into several planting areas; The snap-fit plate (12) has several snap-fit slots (8). By snapping two snap-fit slots (8) onto the partitions (2) of two adjacent planting racks (1), the connection between the planting racks (1) is realized. Or / and, both sides of the partition (2) are provided with snap-fit grooves (17). By snapping two snap-fit plates (12) into the snap-fit grooves (17) of two adjacent planting racks (1), the connection between the planting racks (1) is realized.
2. The novel planting device according to claim 1, characterized in that: The planting rack (1) has a connecting groove (14) on both sides that communicates with the planting trough (3), and the partition (2) has a mounting plate (19) on both sides, and the mounting plate (19) is snapped into the connecting groove (14); The mounting plate (19) passes through the connecting groove (14) on one side and is provided with a limiting block (26), and the limiting block (26) abuts against the outer wall of the planting rack (1).
3. A novel planting device according to claim 1 or 2, characterized in that: The planting trough (3) has several snap-fit parts (27) inside, and the snap-fit parts (27) have installation slots (28). The two sides and bottom of the partition (2) are snapped into the installation slots (28).
4. A novel planting device according to claim 1 or 2, characterized in that: The planting rack (1) is a long planting rack with an open top. The planting rack (1) has the planting groove (3) along its length, and the cross-section of the planting groove (3) is U-shaped.
Citation Information
Patent Citations
Novel planting device
CN214229036U
Water storage-type planter
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Plant cultivation vessel
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