Planting structure of coastal green building

By installing protective, stabilizing, and shielding devices in the green building planting structure along the coast, and utilizing motor-driven placement plates and squeezing, compacting, and shielding mechanisms, the problem of damage to green plants and soil caused by storms and rainstorms has been solved, thus achieving the protection and stabilization of the green plants.

CN120959069AActive Publication Date: 2025-11-18CHINA COMM OVERSEAS INVESTMENT URBAN DEV & CONSTR CO LTD +1
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Patent Information

Application Number
CN202511335265.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2025-11-18
Estimated Expiration
2045-09-18

AI Technical Summary

Technical Problem

Existing green building planting structures along the coast are prone to damage in stormy and rainy weather, as the plants and soil are easily washed away or blown away.

Method used

It employs protective, stabilizing, and shielding devices, and uses a motor-driven placement plate and a squeezing, compacting, and shielding mechanism to protect the plants and soil from damage by wind and rain.

Benefits of technology

It effectively prevents plants and soil from being damaged in storms and rain, maintains the integrity and stability of plants, and ensures the safety of the environment inside the potted planter.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a coastal green building planting structure, and relates to the technical field of coastal green building planting structures.The coastal green building planting structure comprises a roof panel, a greening pot is arranged in the roof panel, a through hole is formed in the top of the roof panel, and a protection device for protecting green plants in the greening pot is arranged on the roof panel; stabilizing devices for preventing green plants from being separated from soil are arranged on the greening pots; wherein the protection device comprises a motor, a threaded rod, a placing plate, an inclined surface block, an extrusion block, a bending block, a connecting spring, an extrusion column, an inclined groove, a control panel and a baffle plate; when the coastal green building planting structure is used in coastal areas and encounters rainstorm or storm wind, a motor is started to drive a placement plate to move downwards, so that a greening pot extends into a roof panel, green plants in the greening pot can be protected, and the problem that the green plants are damaged due to the influence of the rainstorm or the storm wind is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of coastal green building planting structure, in particular to a coastal green building planting structure. BACKGROUND

[0002] At present, green building is a kind of building which is harmless to the environment, can make full use of natural resources of the environment, and is built under the condition that the basic ecological balance of the environment is not destroyed. It is the sharing of interests between man and nature, present and future, and is a construction means of sustainable development. The coastal green building planting structure refers to the use of salt-tolerant and wind-resistant plants and supporting structural systems in coastal high-salt fog, strong wind, high humidity and other environments to form a composite planting system with ecological, energy-saving and landscape functions on building roofs, terraces, sky gardens or facades and other parts. The existing coastal green building planting structure is prone to damage to the green plants in the green pots due to the impact of strong winds and heavy rains on the green plants in the green pots, which can cause the green plants and soil to be directly washed away or blown away, and can cause a large amount of damage to the green plants. In view of this, a coastal green building planting structure is provided. SUMMARY

[0003] In view of the deficiencies of the prior art, the present application provides a coastal green building planting structure to solve the problems raised in the background.

[0004] To achieve the above purpose, the following technical scheme is adopted: a coastal green building planting structure, comprising a roof panel, a green pot is arranged in the interior of the roof panel, a through hole is formed in the top of the roof panel, a protection device is arranged on the roof panel to protect the green plants in the green pot, and a stabilizing device is arranged on the green pot to prevent the green plants from being separated from the soil. The protection device comprises a motor, a threaded rod, a placement plate, an inclined block, an extrusion block, a bent block, a connecting spring, an extrusion column, an inclined chute, a control panel and a baffle. The motor is fixed to the inner wall of the roof panel, the threaded rod is fixed to the top output end of the motor, the placement plate is threadedly connected to the outer wall of the threaded rod, the placement plate is slidingly installed on the inner wall of the roof panel, the green pot is detachably installed on the top of the placement plate, the inclined block penetrates through the side wall of the roof panel and is slidingly connected at the penetration position, and the extrusion block is fixed to the top of the placement plate. When the motor is started, the placement plate can be moved upward, so that the green pot can be moved out of the through hole in the top of the roof panel.

[0005] According to the above technical scheme, the bent block is fixed to the side wall of the inclined block, one side of the connecting spring is fixed to the side wall of the roof panel, and the other side of the connecting spring is fixed to the side wall of the bent block.

[0006] According to the technical scheme, the baffle is slidably installed on the top of the roof panel, the baffle is provided with an inclined chute, the extrusion column is fixed on the bottom outer wall of the bending block, the outer wall of the extrusion column is attached to the inner wall of the inclined chute, the control panel is fixed on the side wall of the roof panel, and the control panel is electrically connected with the motor.

[0007] According to the technical scheme, the stabilizing device comprises a transmission block, a compaction plate, a transmission spring, an L-shaped block, a fixed block, a push block, a long plate, an insertion block, a reset spring, a sliding groove and a sliding rod.

[0008] According to the technical scheme, the push block is fixed on the outer wall of the L-shaped block, the fixed block is fixed on the top of the compaction plate, the long plate is fixed on the bottom of the L-shaped block, the insertion block is penetrated in the side wall of the compaction plate and is slidably connected at the penetration position, and the sliding groove is formed in the push block.

[0009] According to the technical scheme, the top of the reset spring is fixed on the bottom of the long plate, the bottom of the reset spring is fixed on the inner wall of the compaction plate, the sliding rod is fixed on the bottom outer wall of the long plate, the sliding rod is penetrated in the sliding groove and is attached at the penetration position, when the compaction plate moves, the L-shaped block moves, the inclined surface of the push block contacts the fixed block, the push block moves upward under the extrusion force, the L-shaped block moves upward, the long plate drives the sliding rod to move in the sliding groove, the sliding groove is extruded, the insertion block moves out of the compaction plate and is inserted into the soil.

[0010] According to the technical scheme, the shielding device is arranged on the top of the greening pot, and the shielding device comprises a moving column, an auxiliary spring, a connecting block, a supporting block, a rotating rod, a rotating plate, a push rod, a rotating block, a compression spring, a transmission column, an auxiliary plate, a pressure sensor and a baffle; the moving column is slidingly installed on the inner wall of the top of the greening pot, the bottom of the auxiliary spring is fixed on the inner wall of the greening pot, the top of the auxiliary spring is fixed on the bottom of the moving column, the connecting block is fixed on the top of the moving column, the bottom of the connecting block is attached to the top of the L-shaped block, and the push rod is fixed on the bottom of the connecting block.

[0011] According to the technical scheme, the supporting block is fixed on the top of the greening pot, the rotating rod penetrates through the supporting block and is rotationally connected at the penetration position, the rotating plate is fixed on the outer wall of the rotating rod, the rotating block is fixed on the end point of the rotating rod, the side wall of the rotating block is fixed with a torsion spring, one side of the torsion spring away from the rotating block is fixed on the side wall of the supporting block, the transmission column penetrates through the rotating plate and is slidingly connected at the penetration position, the auxiliary plate is fixed on the end point of the transmission column, one side of the compression spring is fixed on the side wall of the auxiliary plate, the other side of the compression spring is fixed on the side wall of the rotating plate, the baffle is fixed on the end point of the transmission column, the pressure sensor is fixed on the side wall of the rotating plate, and the pressure sensor is electrically connected with the control panel.

[0012] The application provides a kind of planting structure of coastal green building. 1、The protection device is set up, when using in coastal area, when encountering heavy rain or gale, the placing plate can be moved down by starting motor, so that the greening pot is inserted into the roof panel, thereby the green plants in the greening pot can be protected, and the problem that the green plants are damaged by heavy rain or gale is solved; when the placing plate drives the greening pot to insert into the roof panel, the placing plate does not press the inclined block, and the connecting spring, the bending block, the extrusion column and the inclined chute cooperate to shield the through hole on the top of the roof panel, thereby preventing a large amount of rainwater from entering the roof panel, and solving the problem that the green plants are damaged by a large amount of rainwater.

[0013] 2. This invention, by setting up a stabilizing device, causes the inclined surface of the transmission block to contact the through hole when the placement plate moves the green pot upwards. Under force, the block moves, allowing the compaction plate to compact the soil in the green pot, thus solving the problem of loose soil in the green pot, which easily leads to the plants being moved out of the green pot. Furthermore, while the compaction plate is compacting the soil, the cooperation of the L-shaped block, push block, fixing block, long plate, and insert block allows the insert block to be inserted into the soil, thereby creating resistance to the soil and preventing external wind from blowing the soil and plants out of the green pot and damaging the plants.

[0014] 3. This invention, by setting up a shielding device, allows the L-shaped block to press against the connecting block when it moves upward, causing the push rod to move upward and press against the rotating block, which in turn rotates the rotating rod. This allows the rotating plate to move the blocking block to shield the top of the green pot, preventing the plants and soil from being moved out of the pot and damaged. Furthermore, when the soil moves upward and presses against the blocking block, if the pressure is too great, it can cause the blocking block to move closer to the rotating plate and press against the pressure sensor. The pressure sensor then sends an electrical signal to the control panel, which in turn starts the motor, causing the green pot to extend into the roof panel and protect the plants inside. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the internal structure of the present invention; Figure 3 For the present invention Figure 2 Enlarged schematic diagram of structure A; Figure 4 This is a partial structural diagram of the present invention; Figure 5 This is a schematic diagram of the structure of the greening pot of the present invention; Figure 6 This is a partial structural diagram of the greening pot of the present invention; Figure 7 This is a schematic diagram of the shielding device of the present invention; Figure 8 This is a schematic diagram of the structure of the greening pot part of the present invention; Figure 9 This is a schematic diagram of the internal structure of the compaction plate of the present invention; Figure 10 For the present invention Figure 9 Enlarged schematic diagram of structure B; Figure 11 For the present invention Figure 5 An enlarged schematic diagram of the C-structure.

[0016] In the figure: 1, roof panel; 2, green pot; 3, through hole; 41, placing plate; 42, motor; 43, threaded rod; 44, extrusion block; 45, inclined block; 46, bending block; 47, connecting spring; 48, baffle; 49, extrusion column; 410, inclined chute; 411, control panel; 51, transmission block; 52, compaction plate; 53, transmission spring; 54, L-shaped block; 55, push block; 56, fixed block; 57, long plate; 58, plug-in block; 59, reset spring; 510, sliding groove; 511, sliding rod; 61, moving column; 62, connecting block; 63, auxiliary spring; 64, push rod; 65, supporting block; 66, rotating rod; 67, rotating plate; 68, rotating block; 69, compression spring; 610, transmission column; 611, auxiliary plate; 612, blocking block; 613, pressure sensor. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0018] Please refer to Figures 1-11 An embodiment of the present application is a kind of planting structure of coastal green building, including roof panel 1, the inside of roof panel 1 is provided with green pot 2, the top of roof panel 1 is provided with through hole 3, and the protective device for protecting the green plants in green pot 2 is arranged on roof panel 1. Among them, the protective device includes motor 42, threaded rod 43, placing plate 41, inclined block 45, extrusion block 44, bending block 46, connecting spring 47, extrusion column 49, inclined chute 410, control panel 411 and baffle 48;The inner wall of the motor 42 is fixed on the roof panel 1, the threaded rod 43 is fixed on the top output end of the motor 42, the placing plate 41 is screw connected on the outer wall of the threaded rod 43, the placing plate 41 is slidingly installed on the inner wall of the roof panel 1, the green pot 2 is detachably installed on the top of the placing plate 41, the inclined block 45 penetrates the side wall of the roof panel 1, and the penetration is slidingly connected, the extrusion block 44 is fixed on the top of the placing plate 41, the bending block 46 is fixed on the side wall of the inclined block 45, one side of the connecting spring 47 is fixed on the side wall of the roof panel 1, the other side of the connecting spring 47 is fixed on the side wall of the bending block 46, the baffle 48 is slidingly installed on the top of the roof panel 1, the baffle 48 is provided with inclined chute 410, the extrusion column 49 is fixed on the bottom outer wall of the bending block 46, the outer wall of the extrusion column 49 is matched with the inner wall of the inclined chute 410, the control panel 411 is fixed on the side wall of the roof panel 1, and the control panel 411 is electrically connected with the motor 42.

[0019] When used in coastal areas, when it rains or blows, by starting the motor 42, the placing plate 41 can be driven to move down, so that the green pot 2 extends into the roof panel 1, so as to protect the green plants in the green pot 2, solve the problem of green plants damaged by storm or heavy rain; The baffle 48 is provided with two groups, and the two groups of baffles 48 are symmetrically arranged with the center line of the roof panel 1 in the vertical direction as the symmetry axis, and when the placing plate 41 drives the green pot 2 to extend into the roof panel 1, so as to make the placing plate 41 not to extrude the inclined block 45, through the cooperation of the connecting spring 47, the bending block 46, the extrusion column 49 and the inclined groove 410, the baffle 48 can shield the through hole 3 at the top of the roof panel 1, so as to prevent a large amount of rainwater from entering the roof panel 1, solve the problem that a large amount of rainwater contacts with the green plants, causing the green plants to be damaged.

[0020] When the green plants need to be displayed, the motor 42 is started, the threaded rod 43 is positively rotated, the green pot 2 on the placing plate 41 is driven to move up, the extrusion block 44 is driven to move up when the placing plate 41 moves up, the inclined block 45 is contacted when the extrusion block 44 moves up to the inclined surface of the inclined block 45, so as to make the inclined block 45 move out of the roof panel 1 under the extrusion force, so as to drive the bending block 46 to move, and the connecting spring 47 is stretched, the extrusion column 49 moves in the inclined groove 410 when the bending block 46 moves, the extrusion column 49 extrudes the inner wall of the inclined groove 410, so that the two groups of baffles 48 are away from each other under the extrusion force, the through hole 3 is exposed, so that the green pot 2 is moved out of the through hole 3 when the placing plate 41 continues to move up, the green plants are moved out of the roof panel 1, and when it rains and blows, the motor 42 is controlled, the threaded rod 43 is reversely rotated, the placing plate 41 on the threaded rod 43 moves down, the green pot 2 moves down into the roof panel 1, and when the placing plate 41 moves down to not contact the inclined block 45, the connecting spring 47 is in the stretched state, so as to drive the bending block 46 to reset, the extrusion column 49 resets in the inclined groove 410, so as to drive the two groups of baffles 48 to approach each other, shield and seal the through hole 3, prevent a large amount of rainwater from entering the roof panel 1, and cause the green plants to be damaged.

[0021] Please refer to Figures 1-11On the basis of the above-mentioned embodiment, in another embodiment of the present application, the greening pot 2 is provided with a stabilizing device for preventing the green plants from being separated from the soil, which comprises a transmission block 51, a compaction plate 52, a transmission spring 53, an L-shaped block 54, a fixed block 56, a push block 55, a long plate 57, an insertion block 58, a return spring 59, a sliding groove 510 and a sliding rod 511; the transmission block 51 penetrates through the side wall of the greening pot 2 and is slidingly connected at the penetration position; the compaction plate 52 is fixed to the side wall of the transmission block 51; one side of the transmission spring 53 is fixed to the side wall of the compaction plate 52, and the other side of the transmission spring 53 is fixed to the inner side of the greening pot 2; the L-shaped block 54 penetrates through the top of the compaction plate 52 and is slidingly connected at the penetration position; the push block 55 is fixed to the outer wall of the L-shaped block 54; the fixed block 56 is fixed to the top of the compaction plate 52; the long plate 57 is fixed to the bottom of the L-shaped block 54; the insertion block 58 penetrates through the side wall of the compaction plate 52 and is slidingly connected at the penetration position; the sliding groove 510 is formed in the insertion block 58; the top of the return spring 59 is fixed to the bottom of the long plate 57, and the bottom of the return spring 59 is fixed to the inner wall of the compaction plate 52; the sliding rod 511 is fixed to the outer wall of the bottom of the long plate 57 and penetrates through the sliding groove 510 and is in abutment at the penetration position.

[0022] When the placing plate 41 drives the greening pot 2 to move upward, the inclined surface of the transmission block 51 will contact the through hole 3, and the transmission block 51 will move under the force, so that the compaction plate 52 can compact the soil in the greening pot 2, thereby solving the problem of loose soil in the greening pot 2, which can easily cause the green plants to be removed from the greening pot 2. When the compaction plate 52 compacts the soil, the insertion block 58 can be inserted into the soil through the cooperation of the L-shaped block 54, the push block 55, the fixed block 56, the long plate 57 and the insertion block 58, so as to cause resistance to the soil, thereby preventing the soil and the green plants in the greening pot 2 from being blown away by the wind outside, which can cause damage to the green plants.

[0023] The shelter device is arranged on the top of the greening pot 2, and comprises a moving column 61, an auxiliary spring 63, a connecting block 62, a supporting block 65, a rotating rod 66, a rotating plate 67, a push rod 64, a rotating block 68, a compression spring 69, a transmission column 610, an auxiliary plate 611, a pressure sensor 613 and a blocking block 612; the moving column 61 is slidingly arranged in the inner wall of the top of the greening pot 2, the bottom of the auxiliary spring 63 is fixed to the inner wall of the greening pot 2, the top of the auxiliary spring 63 is fixed to the bottom of the moving column 61, the connecting block 62 is fixed to the top of the moving column 61, the bottom of the connecting block 62 is attached to the top of the L-shaped block 54, the push rod 64 is fixed to the bottom of the connecting block 62, the supporting block 65 is fixed to the top of the greening pot 2, the rotating rod 66 penetrates through the supporting block 65 and is rotationally connected at the penetration position, the rotating plate 67 is fixed to the outer wall of the rotating rod 66, the rotating block 68 is fixed to the end point of the rotating rod 66, the side wall of the rotating block 68 is fixed with a torsion spring, the side, away from the rotating block 68, of the torsion spring is fixed to the side wall of the supporting block 65, the transmission column 610 penetrates through the rotating plate 67 and is slidingly connected at the penetration position, the auxiliary plate 611 is fixed to the end point of the transmission column 610, one side of the compression spring 69 is fixed to the side wall of the auxiliary plate 611, the other side of the compression spring 69 is fixed to the side wall of the rotating plate 67, the blocking block 612 is fixed to the end point of the transmission column 610, and the pressure sensor 613 is fixed to the side wall of the rotating plate 67 and electrically connected with the control panel 411.

[0024] When the L-shaped block 54 moves upward, the L-shaped block 54 can extrude the connecting block 62, drive the push rod 64 to move upward, extrude the rotating block 68, and drive the rotating rod 66 to rotate, so that the rotating plate 67 can drive the blocking block 612 to shield the top of the greening pot 2, thereby preventing the soil from being removed from the greening pot 2 together with the green plants, and causing damage to the green plants. When the soil moves upward to extrude the blocking block 612, if the extrusion force is too large, the blocking block 612 can be driven to move close to the rotating plate 67 under the extrusion force, and extrude the pressure sensor 613, so that the pressure sensor 613 sends an electric signal under the extrusion force, transmits the electric signal to the control panel 411, and drives the control panel 411 to control the motor 42 to start, and drive the greening pot 2 to extend into the roof panel 1, so as to protect the green plants in the greening pot 2.

[0025] The working principle of the embodiment is as follows: when the placing plate 41 drives the greening pot 2 to move upward, when the greening pot 2 moves to the position where the inclined surface of the transmission block 51 contacts the through hole 3, when the greening pot 2 continues to move upward, the transmission block 51 is pressed to move into the greening pot 2, thereby driving the compaction plate 52 to move, and the compaction plate 52 can compact the soil in the greening pot 2, when the compaction plate 52 moves, the transmission spring 53 is stretched, when the compaction plate 52 moves, the L-shaped block 54 is driven to move, when the push block 55 on the L-shaped block 54 moves to the position where the inclined surface contacts the fixed block 56, the push block 55 is pressed to move upward, thereby driving the L-shaped block 54 to move upward, when the L-shaped block 54 moves upward, the long plate 57 is driven to move upward, when the long plate 57 moves upward, the reset spring 59 is stretched, the sliding rod 511 moves in the sliding groove 510 to press the inner wall of the sliding groove 510, the sliding groove 510 is pressed, the insertion block 58 is driven to move out of the compaction plate 52, and the insertion block 58 is inserted into the soil; when the placing plate 41 drives the greening pot 2 to move into the roof plate 1, the transmission block 51 is not pressed, the transmission spring 53 is in a stretched state, the transmission spring 53 drives the compaction plate 52 to reset, when the compaction plate 52 resets, the push block 55 does not contact the fixed block 56, the reset spring 59 is in a stretched state, thereby driving the L-shaped block 54 to reset, when the L-shaped block 54 resets, the long plate 57 drives the sliding rod 511 to move downward, the sliding rod 511 presses the sliding groove 510, and the insertion block 58 is reset into the compaction plate 52, thereby facilitating subsequent addition of soil; When the L-shaped block 54 moves upward, the L-shaped block 54 can extrude the connecting block 62, the connecting block 62 moves upward, the moving column 61 moves upward, the auxiliary spring 63 is stretched, when the connecting block 62 moves upward, the push rod 64 can be driven to move upward, when the push rod 64 moves upward, the push rod 64 can extrude the rotating block 68, the rotating block 68 can rotate upward, and when the rotating block 68 rotates upward, the torsional spring is compressed, and the rotating block 68 drives the rotating rod 66 to rotate, when the rotating rod 66 rotates, the rotating rod 66 drives the rotating plate 67 to rotate downward, through the transmission column 610, the blocking block 612 can be driven to rotate downward, so that the blocking block 612 shields the soil of the green pot 2; and when the L-shaped block 54 moves downward to reset, the connecting block 62 is not extruded, the auxiliary spring 63 is in a stretched state, so that the auxiliary spring 63 drives the moving column 61 to move downward, drives the connecting block 62 to move downward, when the connecting block 62 moves downward, the push rod 64 does not extrude the rotating block 68, the torsional spring is in a compressed state, so that the torsional spring drives the rotating block 68 to rotate downward, so that the rotating rod 66 drives the blocking block 612 to rotate to reset, so that the blocking block 612 does not shield the green pot 2, and the soil in the green pot 2 is convenient to replace and add; When the blocking block 612 shields the soil in the green pot 2, when the external wind is too large, the green plant can be dragged to drive the soil to move out of the green pot 2, so that the soil extrudes the bottom of the blocking block 612, the blocking block 612 can be extruded to approach the rotating plate 67, so that the blocking block 612 extrudes the pressure sensor 613, when the pressure sensor 613 is subjected to pressure, an electric signal can be sent, the electric signal is transmitted to the control panel 411, the control panel 411 can control the motor 42 to start, the threaded rod 43 is reversed, the placing plate 41 is driven to move downward, and the green pot 2 is inserted into the roof panel 1 for protection.

[0026] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A green building planting structure for coastal areas, comprising a roof panel (1), characterized in that: The roof panel (1) is provided with a green pot (2) inside. The roof panel (1) has a through hole (3) at the top. The roof panel (1) is provided with a protective device to protect the green plants in the green pot (2). The green pot (2) is provided with a stabilizing device to prevent the green plants from falling out of the soil. The protective device includes a motor (42), a threaded rod (43), a placement plate (41), an inclined block (45), an extrusion block (44), a bending block (46), a connecting spring (47), an extrusion column (49), an inclined groove (410), a control panel (411), and a baffle (48). The motor (42) is fixed to the inner wall of the roof panel (1), the threaded rod (43) is fixed to the top output end of the motor (42), the placement plate (41) is threaded to the outer wall of the threaded rod (43), the placement plate (41) is slidably installed on the inner wall of the roof panel (1), the green pot (2) is detachably installed on the top of the placement plate (41), the inclined block (45) penetrates the side wall of the roof panel (1) and is slidably connected at the penetration point, and the extrusion block (44) is fixed to the top of the placement plate (41).

2. The coastal green building planting structure according to claim 1, characterized in that: The bending block (46) is fixed to the side wall of the inclined block (45), one side of the connecting spring (47) is fixed to the side wall of the roof panel (1), and the other side of the connecting spring (47) is fixed to the side wall of the bending block (46).

3. The coastal green building planting structure according to claim 2, characterized in that: The baffle (48) is slidably installed on the top of the roof panel (1). The baffle (48) has a groove (410). The extrusion column (49) is fixed to the bottom outer wall of the bending block (46). The outer wall of the extrusion column (49) is in contact with the inner wall of the groove (410). The control panel (411) is fixed to the side wall of the roof panel (1). The control panel (411) is electrically connected to the motor (42).

4. The coastal green building planting structure according to claim 3, characterized in that: The stabilizing device includes a transmission block (51), a compaction plate (52), a transmission spring (53), an L-shaped block (54), a fixing block (56), a push block (55), a long plate (57), an insert block (58), a reset spring (59), a slide groove (510), and a slide rod (511). The transmission block (51) passes through the side wall of the greening pot (2) and is slidably connected at the penetration point. The compaction plate (52) is fixed to the side wall of the transmission block (51). One side of the transmission spring (53) is fixed to the side wall of the compaction plate (52), and the other side of the transmission spring (53) is fixed to the inner side of the greening pot (2). The L-shaped block (54) passes through the top of the compaction plate (52) and is slidably connected at the penetration point.

5. The coastal green building planting structure according to claim 4, characterized in that: The push block (55) is fixed to the outer wall of the L-shaped block (54), the fixing block (56) is fixed to the top of the compaction plate (52), the long plate (57) is fixed to the bottom of the L-shaped block (54), the insert block (58) passes through the side wall of the compaction plate (52) and is slidably connected at the through point, and the groove (510) is opened on the insert block (58).

6. The coastal green building planting structure according to claim 5, characterized in that: The top of the reset spring (59) is fixed to the bottom of the long plate (57), the bottom of the reset spring (59) is fixed to the inner wall of the compaction plate (52), the slide rod (511) is fixed to the bottom outer wall of the long plate (57), the slide rod (511) passes through the slide groove (510), and the passage is fitted.

7. A green building planting structure for coastal buildings according to claim 6, characterized in that: It also includes a shielding device, which is set on the top of the greening pot (2). The shielding device includes a moving column (61), an auxiliary spring (63), a connecting block (62), a support block (65), a rotating rod (66), a rotating plate (67), a push rod (64), a rotating block (68), a compression spring (69), a transmission column (610), an auxiliary plate (611), a pressure sensor (613), and a blocking block (612). The moving column (61) is slidably installed on the top inner wall of the greening pot (2). The bottom of the auxiliary spring (63) is fixed to the inner wall of the greening pot (2), and the top of the auxiliary spring (63) is fixed to the bottom of the moving column (61). The connecting block (62) is fixed to the top of the moving column (61), and the bottom of the connecting block (62) is in contact with the top of the L-shaped block (54). The push rod (64) is fixed to the bottom of the connecting block (62).

8. A green building planting structure for coastal buildings according to claim 7, characterized in that: The support block (65) is fixed to the top of the greening pot (2). The rotating rod (66) passes through the support block (65) and is rotatably connected at the point of penetration. The rotating plate (67) is fixed to the outer wall of the rotating rod (66). The rotating block (68) is fixed to the end point of the rotating rod (66). A torsion spring is fixed to the side wall of the rotating block (68). The side of the torsion spring away from the rotating block (68) is fixed to the side wall of the support block (65). The transmission column (610) passes through the rotating plate (67) and... The auxiliary plate (611) is fixed to the end of the transmission column (610), one side of the compression spring (69) is fixed to the side wall of the auxiliary plate (611), the other side of the compression spring (69) is fixed to the side wall of the rotating plate (67), the blocking block (612) is fixed to the end of the transmission column (610), the pressure sensor (613) is fixed to the side wall of the rotating plate (67), and the pressure sensor (613) is electrically connected to the control panel (411).

Citation Information

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