An assembled landscape wall adaptive to plant growth

CN116138069BActive Publication Date: 2026-08-21NANTONG MUNICIPAL ENG DESIGN INST CO LTD
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Patent Information

Application Number
CN202211402233.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-10
Publication Date
2026-08-21
Estimated Expiration
2042-11-10

AI Technical Summary

Technical Problem

[0003]景观墙上安放盆栽时,如果密集放置,前期观赏效果好,但一段时间生长后,植物的顶冠部分会互相挤压,抢夺生长空间,不利植物的健康生长,但如果稀疏放置,前期留白处面积则太大,观赏性大打折扣,而且可能会有一些大型动物(啮齿类、鸟类)进入模块板内,破坏植物根系,影响植物生长,因此我们提出了一种适应植物生长的装配式景观墙来解决问题

Benefits of technology

[0028]相比于现有技术,本发明的优点在于:

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Abstract

The application relates to the field of plant landscape walls, and discloses an assembled landscape wall suitable for plant growth. The landscape wall is characterized in that a placing mechanism is used to control the inserted pots, so that the inserted pots cannot be easily taken out through the limiting block and the clamping groove, thereby achieving the effects of theft prevention and reinforcement, avoiding being taken away by passers-by, avoiding being knocked off by wind or some animals, improving safety, being more conducive to the healthy growth of plants, reducing the possibility of being accidentally damaged in the middle, and enabling plants planted in the inserted pots to grow luxuriantly. When the plants grow to the top and are pressed by each other, the inserted pots can be pushed out through the starting of the turning plates, the turning plates are used to close the installation opening when the inserted pots are taken out, some large animals can be prevented from entering the module frame and damaging the roots of the plants.
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Description

Technical Field

[0001] This invention relates to the field of plant landscape walls, and in particular to a prefabricated landscape wall adapted to plant growth. Background Technology

[0002] Prefabricated landscape walls are modular wall structures that are artistically decorated to create a certain aesthetic appeal. These walls are often attached to the outside of building walls and serve a decorative purpose. In cities, in order to purify the air and add more greenery to life, landscape walls often use plant decorations. Thus, the growth status of the plants determines the decorative effect of the landscape wall.

[0003] When placing potted plants on a landscape wall, if they are placed densely, the initial visual effect is good, but after a period of growth, the top parts of the plants will crowd each other, competing for growing space, which is not conducive to the healthy growth of the plants. However, if they are placed sparsely, the blank area in the early stage will be too large, greatly reducing the visual appeal. Moreover, some large animals (rodents, birds) may enter the modular panels, damaging the plant roots and affecting plant growth. Therefore, we have proposed a prefabricated landscape wall that adapts to plant growth to solve this problem. Summary of the Invention

[0004] 1. Technical problems to be solved

[0005] To address the problems existing in the prior art, the purpose of this invention is to provide a prefabricated landscape wall adapted to plant growth. This solution uses a placement mechanism to control the placement of pots. Once the pot is inserted into the installation opening, the limiting block and the slot engage, preventing the pot from being easily removed. This provides a certain degree of anti-theft and reinforcement, preventing passersby from taking it away, and also preventing it from being knocked down by wind or animals, thus improving safety and promoting healthy plant growth. It also reduces the possibility of accidental damage during installation. Furthermore, when the plants planted in the pots grow vigorously and their crowns crowd each other, a set of connecting rods can be activated to move a flap, pushing some pots out of the installation opening. This facilitates the removal of pots and allows for quick transplanting or replacement of sparsely growing plants, giving plants more room to grow and preventing growth inhibition. Simultaneously, when removing the pots, the flap closes the installation opening, preventing large animals from entering the module frame through the installation opening and damaging the plant roots. This, to a certain extent, protects the safety of plant growth.

[0006] 2. Technical Solution

[0007] To solve the above problems, the present invention adopts the following technical solution.

[0008] A prefabricated landscape wall adapted to plant growth includes a wall frame. The surface of the wall frame has linearly arrayed modular slots. Module frames are snapped into the slots. The front of each module frame has linearly arrayed mounting openings. Pots are inserted into the mounting openings. A placement mechanism is provided inside each module frame. The placement mechanism includes a rotating opening and an extension opening located outside the mounting openings. The extension openings are connected. A flap is rotatably connected inside the rotating opening, covering the inner opening of the mounting opening. A limiting block extending to the outside of the extension opening is fixedly connected to the portion of the flap located at the rotating opening. A control slide frame is fixedly connected to the back of the flap. A slide rail is fixedly connected to the inner wall of the module frame. A connecting rod is slidably connected inside the slide rail. The connecting rod is divided into two groups. A control slide rod extending into the control slide frame is fixedly connected to the front of each connecting rod. The control slide rod is slidably connected to the control slide frame. A linkage rod is fixedly connected to the top of each group of connecting rods. A control mechanism is provided above the linkage rod. The outer side of the pot has a slot corresponding to the limiting block. The placement mechanism controls the insertion of the pot. Once the pot is inserted into the installation opening, the limiting block and the slot engage, preventing the pot from being easily removed. This provides a degree of anti-theft and reinforcement, preventing passersby from taking it and preventing it from being knocked off by wind or animals, thus improving safety and promoting healthy plant growth. It also reduces the possibility of accidental damage during transport. Furthermore, if the plants in the pots grow vigorously and their crowns crowd each other, a connecting rod can be activated to move a flap, pushing some pots out of the installation opening. This facilitates the retrieval of pots and allows for quick transplanting or replacement of sparsely growing plants, providing more growing space and preventing growth inhibition. Simultaneously, when removing the pots, the flap closes the installation opening, preventing large animals from entering the module frame and damaging the plant roots. This, to a certain extent, protects the plant's growth safety.

[0009] Furthermore, the front of the module frame is designed as a stepped panel, with the installation openings vertically opened on the surface of the stepped panel. This allows the pots to be distributed in a stepped manner, creating layers at the top of the plant's crown. This provides the plants with more growing space, allowing them to receive more sunlight and improving ventilation, which is more conducive to plant growth.

[0010] Furthermore, ventilation holes are provided at the top and bottom of the module frame, so that the air inside the module frame can circulate and allow the plant roots to have good ventilation, thus preventing root rot during periods of heavy rain.

[0011] Furthermore: adjacent flaps on the top, bottom, left, and right are not connected to the same set of connecting rods. When using a set of connecting rods to control the flaps, the activated flaps are all spaced out at intervals. This maximizes the use of space between the inserted basins after they are removed.

[0012] Furthermore, the number of connecting rods is one more than the number of columns of mounting ports, and the connecting rods in the same group are not adjacent to each other. In this way, each end of each column of mounting ports is equipped with different groups of connecting rods, which can be connected nearby to achieve interval control.

[0013] Furthermore, the portion of the insert that is exposed outside the mounting opening should not exceed one-tenth of its own length. This reduces the volume of the insert that is exposed, further increasing the difficulty of removing the insert when it is locked, thus improving safety.

[0014] Furthermore, the control mechanism includes two insertion holes on the front of the module frame. A threaded sleeve is slidably connected to the inner opening of the insertion hole, and a bolt is rotatably connected to the outer opening of the insertion hole. The bolt is inserted into the threaded sleeve and threadedly connected to the threaded sleeve. A sealing ring is provided at the connection between the threaded sleeve and the bolt. The two bolts are conveniently hinged to the two linkage rods and push rods respectively. The placement mechanism is controlled by the movement of the threaded sleeve and the bolt. It is convenient and quick to use. At the same time, since the bolt is always wrapped by the threaded sleeve, it is less affected by the environment, has higher stability, and reduces the possibility of jamming.

[0015] Furthermore, the front end of the bolt is a smooth circle, and the front of the bolt has an irregular groove, which increases the difficulty for passersby to steal the inserted basin, increases the cost of theft, and reduces the possibility of the inserted basin being lost.

[0016] Furthermore: A spring clip is installed between the bolt and the inner opening of the socket. When the bolt is moved to a certain position by the sleeve (the flap is half open), the spring clip is triggered and a "click" sound is made. The staff can operate the device appropriately.

[0017] Furthermore: a water supply mechanism is provided between the wall frame and the module frame. The water supply mechanism includes an external interface on the front and an internal interface on the top. The external interface extends above the internal interface. A water collection chamber and a water distribution chamber are provided inside the rear wall. A water filling hole is provided between the water collection chamber and the internal interface. A sealing plate is rotatably connected inside the water filling hole. A torsion spring is installed between the sealing plate and the water filling hole. A diversion pipe is inserted between the water collection chamber and each layer of water distribution chamber. The water distribution chamber corresponds to the position of the flip plate. The diversion pipe extends to the inner rear wall of the module frame. A sliding plate is slidably connected inside the sliding groove. A balance spring is fixedly connected to the bottom of the sliding plate. A water supply channel is fixedly connected to the surface of the sliding plate. The water supply channel is located in the middle area of ​​the sliding plate. A flow outlet is provided between the water supply channel and the water distribution chamber. The bottom opening of the diversion pipe is lower than the top opening of the water supply channel.

[0018] Furthermore, the water replenishment mechanism also includes a water guide rod extending from the front to the back of the flap. A water guide pad is laid on the front of the flap, and the water guide rod is connected to the water guide pad. Both the water guide rod and the water guide pad are made of absorbent cotton. An internal water supply channel is installed so that when it rains or water is poured (aimed at the external interface), water flows from the external interface into the internal interface, then pushes open the sealing plate and flows into the water collection chamber through the water inlet hole. This water is then stored in the water inlet hole. After the water supply stops, the sealing plate closes the water inlet hole, and the water in the water collection chamber is guided by the diversion pipe into the water distribution chambers of each layer. As the water level in the water distribution chamber rises, the diversion pipe... When the bottom opening is submerged in water, the water collection chamber cannot receive air replenishment, thus stabilizing the internal and external pressures and preventing water from flowing out. When installing the planter, the flip plate reverses to insert the water guide rod into the water supply channel and presses the water supply channel downwards. The water supply channel and the sliding plate compression balance spring move down, and the two flow outlets connect, allowing water in the water distribution chamber to flow into the water supply channel. During this process, the diversion pipe also replenishes water into the water distribution chamber, while the water guide rod and water guide pad direct the water in the water supply channel to the planter. After the water level in the water distribution chamber and the water supply channel decreases, the diversion pipe continues to replenish water, thus providing water to the planter for a long time and allowing it to grow healthily.

[0019] Furthermore: the lower opening of the water inlet is widened, and the diameter of the sealing plate is larger than the upper opening of the water inlet. A placement opening is provided at the top of the sealing plate, and a through hole extending into the placement opening is provided on the side of the sealing plate. A latch is provided inside the lower opening of the water inlet, and a latching rod extending into the latch is slidably connected inside the through hole. Guide curved surfaces are provided above both ends of the latching rod. A float is placed inside the placement opening, and a pull rope is fixedly connected between the float and the latching rod. The sealing plate is opened by adjusting the... Under these conditions, when there is water in the inner interface, the float rises in the water and pulls the lever to disengage from the latch by pulling the rope. Thus, the sealing plate is pushed open by the water without restraint. During this process, the diversion pipe also continuously supplies water to the water distribution chamber. After the water in the inner interface flows out, the sealing plate resets, and the lever is pushed into the latch by the float, locking the sealing plate. This prevents the pressure change in the water collection chamber after the opening below the diversion pipe is submerged from water, which would cause the sealing plate to be sucked open to replenish the opening, resulting in continuous water loss from the water collection chamber and affecting the continuity and stability of the water supply.

[0020] A method for using a prefabricated landscape wall adapted to plant growth, comprising the following steps:

[0021] S1. Insertion: Control the two sets of connecting rods through the control mechanism to adjust all the flaps to the half-open state, and then insert the insertion trays into the installation holes in sequence;

[0022] S2. Adjustment: Continue to adjust the opening angle of the flap using the control mechanism until the inserted tray is perpendicular to the surface of the stepped panel and the limit block is engaged in the slot.

[0023] S3. Removal: After a period of growth, once the tops of the plants in the pot affect each other, the control mechanism controls a set of connecting rods to push part of the flap to a half-open state, the limit block disengages from the slot, and most of the pot body extends out of the installation opening.

[0024] S4. Select to replace: ① Remove the thriving pots and transplant them to other empty module frames;

[0025] ② Remove the pots that are growing vigorously and swap them with the pots that are growing slowly in other places;

[0026] S5. Closure: If the insert basin is removed, the control mechanism will control the flap to completely close the installation port; if the insert basin is replaced, the control mechanism will control the flap to open and fix the insert basin.

[0027] 3. Beneficial effects

[0028] Compared with the prior art, the advantages of this invention are:

[0029] 1. This solution uses a placement mechanism to control the placement of the pots. Once the pot is inserted into the installation opening, the limiting block and the slot engage, preventing the pot from being easily removed. This provides a certain degree of anti-theft and reinforcement, preventing passersby from taking it away and preventing it from being knocked off by the wind or animals, thus improving safety and promoting the healthy growth of the plants. It also reduces the possibility of accidental damage during transport. Furthermore, if the plants planted in the pots grow vigorously and their crowns crowd each other, a set of connecting rods can be activated to move a flap, pushing some pots out of the installation opening. This facilitates the retrieval of the pots and allows for quick transplanting or replacement of sparsely growing plants, giving the plants more room to grow and preventing growth inhibition. At the same time, when removing the pots, the flap closes the installation opening, preventing large animals from entering the module frame through the installation opening and damaging the plant roots. Thus, to a certain extent, it protects the safety of plant growth.

[0030] 2. The front of the module frame is set as a stepped panel, and the installation port is vertically opened on the surface of the stepped panel. This allows the pots to be distributed in a stepped manner, creating layers at the top of the plant in the pots. This gives the plants more room to grow, allows them to receive more sunlight, improves ventilation, and is more conducive to plant growth.

[0031] 3. Ventilation holes are provided at the top and bottom of the module frame, so that the air inside the module frame can circulate and the roots of the plants can be well ventilated, thus preventing root rot during periods of heavy rain.

[0032] 4. The flaps that are adjacent to each other on the top, bottom, left, and right are not connected to the same set of connecting rods. When using a set of connecting rods to control the flaps, the flaps that are activated are all spaced out at intervals. This maximizes the use of the space between the inserts after the corresponding inserts are removed.

[0033] 5. The placement mechanism is controlled by the movement of the sleeving and bolt, making it convenient and quick to use. At the same time, since the bolt is always wrapped by the sleeving, it is less affected by the environment, has higher stability, and reduces the possibility of jamming.

[0034] 6. A spring clip is installed between the bolt and the inner opening of the socket. When the bolt is moved to a certain position by the sleeve (the flap is half open), the spring clip is triggered and a "click" sound is made. The staff should operate the machine properly.

[0035] 7. By installing a water supply channel internally, when it rains or waters are applied (towards the external interface), water flows from the external interface into the internal interface, then pushes open the sealing plate and flows into the water collection chamber through the water inlet. This water is then stored in the water inlet. When the water supply stops, the sealing plate closes the water inlet, and the water in the collection chamber is guided by the diversion pipe into the water distribution chambers of each layer. As the water level in the water distribution chamber rises, when the bottom opening of the diversion pipe is submerged, the collection chamber cannot receive air replenishment, thus stabilizing the internal and external pressure and allowing water to collect. The water in the cavity no longer flows out. When installing the pot, the flip plate reverses to insert the water guide rod into the water supply channel and presses the water supply channel downward. The water supply channel and the sliding plate compression balance spring move down, and the two flow ports connect. The water in the water distribution cavity flows into the water supply channel. During this process, the diversion pipe also replenishes water into the water distribution cavity. The water guide rod and water guide pad guide the water in the water supply channel to the pot. After the water level in the water distribution cavity and the water supply channel drops, the diversion pipe continues to replenish water. In this way, the pot can be watered for a long time, allowing the pot to grow healthily.

[0036] 8. By setting conditions for the opening of the sealing plate, when there is water in the inner interface, the float will rise in the water. By pulling the rope, the locking rod will be pulled away from the locking position. Thus, the sealing plate, which is no longer restricted, will be pushed open by the water. During this process, the diversion pipe will also continuously supply water to the water distribution chamber. After the water in the inner interface has drained, the sealing plate will reset, and the locking rod will be pushed into the locking position by the float, locking the sealing plate. This will prevent the pressure change in the water collection chamber after the opening below the diversion pipe is submerged from water, which would suck the sealing plate open to replenish the opening and cause water to continuously leak out of the water collection chamber, affecting the continuity and stability of the water supply. Attached Figure Description

[0037] Figure 1 This is a diagram illustrating the wall frame of the present invention;

[0038] Figure 2 This is a diagram showing the empty state of the module frame of the present invention;

[0039] Figure 3This is a diagram showing the state of inserting and placing the pot into the module frame of the present invention;

[0040] Figure 4 This is a diagram showing the interior of the module frame of the present invention;

[0041] Figure 5 This is a diagram illustrating the placement mechanism of the present invention;

[0042] Figure 6 This is a diagram showing the closed state of the flap of the present invention;

[0043] Figure 7 This is a diagram showing the flap of the present invention in its open state;

[0044] Figure 8 This is a diagram showing the connection between the connecting rod and the flap control of the present invention;

[0045] Figure 9 This is a diagram illustrating the fixed state of the inserted basin according to the present invention;

[0046] Figure 10 This is a diagram illustrating the control mechanism of the present invention;

[0047] Figure 11 This is a diagram illustrating the water replenishment mechanism of the present invention;

[0048] Figure 12 This is a diagram showing the relationship between the water supply channel and the water distribution chamber of the present invention;

[0049] Figure 13 This is an enlarged view of the sealing plate of the present invention.

[0050] Explanation of the labels in the diagram:

[0051] 1. Wall frame; 2. Module slot; 3. Module frame; 4. Stepped panel; 5. Mounting port; 6. Placement mechanism; 61. Rotating port; 62. Extension port; 63. Flip plate; 64. Limiting block; 65. Control slide frame; 66. Slide rail; 67. Connecting rod; 68. Control slide rod; 69. Linkage rod; 7. Control mechanism; 71. Insertion hole; 72. Screw sleeve; 73. Bolt; 74. Push rod; 8. Placement basin; 81. Slot; 9. Water replenishment machine Structure; 91. External interface; 92. Internal interface; 93. Water collection chamber; 94. Water filling hole; 95. Sealing plate; 951. Placement port; 952. Through hole; 953. Bayonet; 954. Locking rod; 955. Float; 956. Pull rope; 96. Water distribution chamber; 97. Diversion pipe; 98. Slide groove; 99. Slide plate; 910. Balance spring; 911. Water supply channel; 912. Flow port; 913. Water guide rod; 914. Water guide pad. Detailed Implementation

[0052] This embodiment will be described clearly and completely with reference to the accompanying drawings, making the purpose, technical solution, and beneficial effects of the embodiments of this disclosure clearer. Obviously, the described embodiments are only some, not all, of the embodiments of this disclosure. All other embodiments obtained by those skilled in the art based on the described embodiments of this disclosure without creative effort are within the scope of protection of this disclosure.

[0053] Unless otherwise defined, the technical or scientific terms used in this disclosure shall have the conventional meaning as understood by those skilled in the art. The terms "first," "second," and similar terms used in this disclosure do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Terms such as "including" mean that the element or object preceding the word encompasses the elements or objects listed following the word and their equivalents, without excluding other elements or objects. Terms such as "above," "below," "inner," and "outer" are used only to indicate relative positional relationships; when the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0054] Example:

[0055] Please see Figures 1 to 9 A prefabricated landscape wall adapted to plant growth includes a wall frame 1. The surface of the wall frame 1 has linearly arrayed module slots 2. Module frames 3 are snapped into the interior of the module slots 2. The front of the module frames 3 has linearly arrayed mounting openings 5. Pots 8 are inserted into the mounting openings 5. A placement mechanism 6 is provided inside the module frames 3. The placement mechanism 6 includes a rotating opening 61 and an extension opening 62 located outside the openings inside and outside the mounting openings 5, respectively. The extension openings 62 are connected to each other. A flap 63 is rotatably connected inside the rotating opening 61, covering the inner opening of the mounting opening 5. A limiting block 64 extending to the outside of the extension opening 62 is fixedly connected to the portion of the flap 63 located at the rotating opening 61. The back of the flap 63 is fixed... A control slide frame 65 is connected to the inner wall of the module frame 3, and a slide rail 66 is fixedly connected to the inner wall of the slide rail 66. A connecting rod 67 is slidably connected inside the slide rail 66. The connecting rod 67 is divided into two groups. A control slide rod 68 extending into the control slide frame 65 is fixedly connected to the front of the connecting rod 67. The control slide rod 68 is slidably connected to the control slide frame 65. A linkage rod 69 is fixedly connected to the top of the connecting rod 67 in the same group. A control mechanism 7 is provided above the linkage rod 69. A slot 81 corresponding to the limit block 64 is opened on the outer side of the insertion tray 8. During installation, the two sets of linkage rods 69 are pressed down by the control mechanism 7. The linkage rods 69 drive the control slide rod 68 to move downward through the connecting rod 67. The control slide rod 68 slides inside the control slide frame 65, pulling the flip plate 63 down halfway. Figure 7As shown, the insertion trays 8 are then inserted into the mounting openings 5 ​​one by one, with their bottom ends resting on the flip plate 63. The opening angle of the flip plate 63 is then adjusted using the control mechanism 7 until the insertion trays 8 are perpendicular to the surface of the stepped panel 4, and the limiting block 64 is engaged in the slot 81. Figure 9 As shown, once the insert basin 8 is installed and fully secured, when it is to be replaced, the control mechanism 7 controls a set of connecting rods 67 to push part of the flap 63 to a half-open state, the limit block 64 disengages from the slot 81, and most of the insert basin 8 extends out of the installation opening 5. If the insert basin 8 is removed, the control mechanism 7 controls the flap 63 to completely close the installation opening 5; if the insert basin 8 is to be replaced, the control mechanism 7 controls the flap 63 to open and secure the insert basin 8. In this way, when the insert basin 8 is removed, the flap 63 is in a semi-closed state, and even if it is forgotten to be fully closed, the impact is limited.

[0056] The front of module frame 3 is designed as a stepped panel 4, with mounting openings 5 ​​vertically formed on the surface of the stepped panel 4. This allows the pots 8 to be arranged in a stepped manner, creating tiered tops of the plants within each pot. This provides the plants with more growing space, allowing them to receive more sunlight and improving ventilation, which is more conducive to plant growth. Ventilation holes are provided at the top and bottom of module frame 3, enabling air circulation within the module frame 3 and ensuring good aeration of the plant roots, preventing root rot during periods of heavy rain. Adjacent flaps 63 on all sides are not connected to the same set of connecting rods 67. Figure 8 As shown, by using a set of connecting rods 67 to control the flaps 63, the activated flaps 63 are all distributed at time intervals, so that the space between the inserts 8 can be maximized after the corresponding inserts 8 are taken out.

[0057] The number of connecting rods 67 is one more than the number of columns of mounting ports 5. The connecting rods 67 in the same group are not adjacent to each other. In this way, each end of each column of mounting ports 5 is provided with different groups of connecting rods 67, which can be connected nearby to achieve interval control. The part of the insert basin 8 exposed outside the mounting port 5 does not exceed one-tenth of its own length. This reduces the volume of the insert basin 8 exposed outside, further increasing the difficulty of removing the insert basin 8 in the locked state and improving safety.

[0058] Please see Figures 4 to 10The control mechanism 7 includes two insertion holes 71 on the front of the module frame 3. A threaded sleeve 72 is slidably connected to the inner opening of each insertion hole 71, and a bolt 73 is rotatably connected to the outer opening of each insertion hole 71. The bolt 73 is inserted into the threaded sleeve 72 and threadedly connected to it. A sealing ring is provided at the connection between the threaded sleeve 72 and the bolt 73. The two bolts 73 are respectively hinged to two linkage rods 69 with push rods 74. Rotating the bolt 73 (the bolt 73 only performs circular motion) causes the threaded sleeve 72 to extend outward from the insertion hole 71 via the thread. The threaded sleeve 72 pushes the push rod 74 downward, pressing down the linkage rod 69. Reversing the bolt 73 causes the push rod 74 to lift the linkage rod 69. Figure 5 As shown.

[0059] The front end of the bolt 73 is a smooth circle, and the front of the bolt 73 has an irregular groove. This increases the difficulty for passersby to steal the inserted basin 8, increases the cost of theft, and reduces the possibility of the inserted basin 8 being lost.

[0060] A spring clip is installed between the bolt 73 and the inner opening of the socket 71. When the bolt 73 is moved to a certain position by the screw sleeve 72 (the flip plate 63 is in a half-open state), the spring clip is triggered and a "click" sound is made. The staff can operate it properly.

[0061] Please see Figures 11 to 13 A water replenishment mechanism 9 is provided between the wall frame 1 and the module frame 3. The water replenishment mechanism 9 includes an external interface 91 on the front of the wall frame 1 and an internal interface 92 on the top of the module frame 3. The external interface 91 extends above the internal interface 92. A water collection cavity 93 and a water distribution cavity 96 are provided inside the rear wall of the module frame 3. A water inlet hole 94 is provided between the water collection cavity 93 and the internal interface 92. A sealing plate 95 is rotatably connected inside the water inlet hole 94. A torsion spring is installed between the sealing plate 95 and the water inlet hole 94. A diversion pipe 97 is inserted between the water collection cavity 93 and each layer of water distribution cavity 96. The water distribution cavity 96 corresponds to the position of the flap 63. The diversion pipe 97 extends to the module frame. The inner rear wall of the 3 is provided with a sliding groove 98, and a sliding plate 99 is slidably connected inside the sliding groove 98. A balance spring 910 is fixedly connected to the bottom of the sliding plate 99. A water supply channel 911 is fixedly connected to the surface of the sliding plate 99. The water supply channel 911 is located in the middle area of ​​the sliding plate 99. A flow port 912 is provided between the water supply channel 911 and the water distribution chamber 96. The bottom opening of the diversion pipe 97 is lower than the upper opening of the water supply channel 911. The water replenishment mechanism 9 also includes a water guide rod 913 that runs from the front to the back of the flip plate 63. A water guide pad 914 is laid on the front of the flip plate 63. The water guide rod 913 is connected to the water guide pad 914. Both the water guide rod 913 and the water guide pad 914 are made of absorbent cotton.

[0062] The wall frame 1 has a water supply channel inside the module frame 3. When it rains or waters (aligned with the outer interface 91), water flows from the outer interface 91 into the inner interface 92, then pushes open the sealing plate 95 and flows into the water collection chamber 93 through the water inlet hole 94. This water is then stored in the water inlet hole 94. After the water supply stops, the sealing plate 95 closes the water inlet hole 94, and the water in the water collection chamber 93 is guided by the diversion pipe 97 into the water distribution chambers 96 of each layer. As the water level in the water distribution chamber 96 rises, when the bottom opening of the diversion pipe 97 is submerged, the water collection chamber 93 cannot receive air replenishment, stabilizing the internal and external pressure, and the water in the water collection chamber 93 stops flowing. When installing the insertion pot 8, the flip plate 63 reverses to insert the water guide rod 913 into the water supply channel 911 and presses the water supply channel 911 downward. The water supply channel 911 and the sliding plate 99 compress the balance spring 910 and move downward. The two flow ports 912 connect, and the water in the water distribution chamber 96 flows into the water supply channel 911. During this process, the diversion pipe 97 also replenishes water into the water distribution chamber 96. The water guide rod 913 and the water guide pad 914 guide the water in the water supply channel 911 to the insertion pot 8. After the water level in the water distribution chamber 96 and the water supply channel 911 decreases, the diversion pipe 97 continues to replenish water. In this way, the insertion pot 8 can be supplied with water for a long time, allowing the insertion pot 8 to grow healthily.

[0063] The lower opening of the water inlet hole 94 is widened, and the diameter of the sealing plate 95 is larger than the upper opening of the water inlet hole 94. A placement opening 951 is provided at the top of the sealing plate 95, and a through hole 952 extending into the placement opening 951 is provided on the side of the sealing plate 95. A latch 953 is provided inside the lower opening of the water inlet hole 94. A latching rod 954 extending into the latching opening 953 is slidably connected inside the through hole 952. Guide curved surfaces are provided above both ends of the latching rod 954. A float 955 is placed inside the placement opening 951, and a pull rope 956 is fixedly connected between the float 955 and the latching rod 954. The opening of the sealing plate 95 is adjusted accordingly. When the set conditions are met, if there is water in the inner interface 92, the float 955 will float in the water and pull the lever 954 away from the bayonet 953 by the pull rope 956. Thus, the unrestrained sealing plate 95 will be pushed open by the water. During this process, the diversion pipe 97 will also continuously supply water to the water distribution chamber 96. After the water in the inner interface 92 has drained, the sealing plate 95 will reset, and the lever 954 will be pushed into the bayonet 953 by the float 955, locking the sealing plate 95. This prevents the pressure change in the water collection chamber 93 after the opening below the diversion pipe 97 is submerged by water, which would cause the sealing plate 95 to be sucked open to replenish the opening, resulting in continuous water loss in the water collection chamber 93 and affecting the continuity and stability of the water supply.

[0064] A method for using a prefabricated landscape wall adapted to plant growth, comprising the following steps:

[0065] S1. Insertion: Control the two sets of connecting rods 67 through the control mechanism 7 to adjust all the flaps 63 to the half-open state, and then insert the insertion trays 8 into the installation ports 5 in sequence.

[0066] S2. Adjustment: Continue to adjust the opening angle of the flip plate 63 through the control mechanism 7 until the insertion basin 8 is perpendicular to the surface of the stepped panel 4 and the limiting block 64 is inserted into the slot 81.

[0067] S3. Removal: After a period of growth, the tops of the plants planted in the insertion pot 8 will affect each other. The control mechanism 7 controls a set of connecting rods 67 to push part of the flip plate 63 to a half-open state. The limit block 64 is disengaged from the slot 81, and most of the body of the insertion pot 8 extends out of the installation port 5.

[0068] S4. Select to replace: ① Remove the lushly growing pots 8 and transplant them into other empty module frames 3;

[0069] ② Remove the lushly growing pot 8 and swap it with the slow-growing pot 8 in other places;

[0070] S5. Closure: If the insertion basin 8 is removed, the control mechanism 7 controls the flap 63 to completely close the installation port 5; if the insertion basin 8 is replaced, the control mechanism 7 controls the flap 63 to open and fix the insertion basin 8.

[0071] The above description is merely a preferred embodiment of the present invention; however, the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and its improved concepts, should be covered within the scope of protection of the present invention.

Claims

1. A prefabricated landscape wall adapted to plant growth, comprising a wall frame (1), wherein the surface of the wall frame (1) is provided with linearly arrayed modular slots (2), a modular frame (3) is snapped into the interior of the modular slots (2), and the front of the modular frame (3) is provided with linearly arrayed mounting openings (5), into which a pot (8) is inserted, characterized in that: The front of the module frame (3) is set as a stepped panel (4), and the mounting opening (5) is vertically opened on the surface of the stepped panel (4); the module frame (3) is provided with a placement mechanism (6), which includes a rotating opening (61) and an extension opening (62) opened inside the mounting opening (5) and outside the outer opening, respectively. The extension opening (62) and the extension opening (62) are connected. A flap (63) is rotatably connected inside the rotating opening (61), and the flap (63) covers the... At the inner opening of the mounting port (5), the portion of the flap (63) located at the rotating port (61) is fixedly connected to a limiting block (64) extending to the outside of the extension port (62). A control slide frame (65) is fixedly connected to the back of the flap (63). A slide rail (66) is fixedly connected to the inner wall of the module frame (3). A connecting rod (67) is slidably connected inside the slide rail (66). The connecting rod (67) is divided into two groups, and the number of connecting rods (67) is one more than the number of columns in the mounting port (5). The connecting rods (67) in a group are not adjacent to each other, and the flaps (63) that are adjacent to each other on the top, bottom, left, and right are not connected to the same group of connecting rods (67); a control slide rod (68) extending into the control slide frame (65) is fixedly connected to the front of the connecting rod (67), and the control slide rod (68) is slidably connected to the control slide frame (65); a linkage rod (69) is fixedly connected to the top of the connecting rods (67) in the same group, and a control mechanism (7) is provided above the linkage rod (69). It includes two insertion holes (71) on the front of the module frame (3). A screw sleeve (72) is slidably connected to the inner opening of the insertion hole (71), and a bolt (73) is rotatably connected to the outer opening of the insertion hole (71). The bolt (73) is inserted into the screw sleeve (72) and threadedly connected to the screw sleeve (72). The two bolts (73) are respectively hinged to the two linkage rods (69) with a push rod (74). The outer side of the insertion tray (8) is provided with a slot (81) corresponding to the limiting block (64).

2. The prefabricated landscape wall adapted to plant growth according to claim 1, characterized in that: Ventilation holes are provided above and below the module frame (3).

3. The prefabricated landscape wall adapted to plant growth according to claim 2, characterized in that: The portion of the insert basin (8) exposed outside the mounting opening (5) shall not exceed one-tenth of its own length.

4. A prefabricated landscape wall adapted to plant growth according to claim 3, characterized in that: The front end of the bolt (73) is a smooth circle, and a groove is provided on the front side of the bolt (73). A spring clip is provided between the bolt (73) and the inner opening of the insertion hole (71).

5. A prefabricated landscape wall adapted to plant growth according to claim 4, characterized in that: A water replenishment mechanism (9) is provided between (1) and (3). The water replenishment mechanism (9) includes an outer interface (91) on the front of (1) and an inner interface (92) on the top of (3). The outer interface (91) extends above the inner interface (92). A water collection chamber (93) and a water distribution chamber (96) are provided inside the rear wall of (3). A water filling hole (94) is provided between the water collection chamber (93) and the inner interface (92). A sealing plate (95) is rotatably connected inside the water filling hole (94). A torsion spring is installed between the sealing plate (95) and the water filling hole (94). The water collection chamber (93) and each layer of water distribution chamber (96) are connected. Diverter pipes (97) are interspersed between each other. The water distribution chamber (96) corresponds to the position of the flap (63). The diverter pipe (97) extends to the inner rear wall of the module frame (3) and a sliding groove (98) is provided. A sliding plate (99) is slidably connected inside the sliding groove (98). A balance spring (910) is fixedly connected to the bottom of the sliding plate (99). A water supply channel (911) is fixedly connected to the surface of the sliding plate (99). The water supply channel (911) is located in the middle area of ​​the sliding plate (99). A flow port (912) is provided between the water supply channel (911) and the water distribution chamber (96). The bottom opening of the diverter pipe (97) is lower than the upper opening of the water supply channel (911). The water replenishment mechanism (9) also includes a water guide rod (913) extending from the front to the back of the flap (63). A water guide pad (914) is laid on the front of the flap (63). The water guide rod (913) is connected to the water guide pad (914). Both the water guide rod (913) and the water guide pad (914) are made of absorbent cotton.

6. A prefabricated landscape wall adapted to plant growth according to claim 5, characterized in that: The lower opening of the water inlet (94) is widened. The diameter of the sealing plate (95) is larger than the upper opening of the water inlet (94). The top of the sealing plate (95) has a placement opening (951). The side of the sealing plate (95) has a through hole (952) extending into the placement opening (951). The lower opening of the water inlet (94) has a latch (953) inside. The through hole (952) is slidably connected to a latch (954) extending into the latch (953). Guide curved surfaces are provided above both ends of the latch (954). A float (955) is placed inside the placement opening (951). A pull rope (956) is fixedly connected between the float (955) and the latch (954).

Citation Information

Patent Citations

  • Shipping control device and method

    CN109887166A

  • Adjustable flower stand for landscape architecture

    CN114009242A