Ecological slope restoration planting device
By designing an ecological slope restoration planting device including shell, planting plate, water tank and water spray pipe, the combination of electric telescopic rod and pushing strips is used to realize automatic collection of rainwater and efficient watering of green plants, solving the problem of insufficient rainwater utilization in the existing technology, and enhancing the ecological protection capability of the slope.
Patent Information
- Application Number
- CN202510408156.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2045-04-02
AI Technical Summary
The existing technology cannot effectively utilize natural rainwater for green planting watering in slope ecological restoration, resulting in a single function and cannot meet the diverse ecological protection needs.
An ecological slope restoration planting device is designed, including components such as shell, planting plate, water tank, nail insertion, water spray pipe and sealing plate. Through the cooperation of the electric telescopic rod and the pushing strip, the sealing plate can be opened, allowing rainwater to enter the water tank and sprayed onto the planting plate through the water pipe, achieving effective utilization of rainwater and watering of green plants.
The device can automatically collect and utilize rainwater when it rains, and efficiently water the planted green plants, solving the problem of insufficient rainwater utilization in the existing technology and enhancing the ecological protection capability of the slope.
Smart Images

Figure CN120077873A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of slope ecological protection, and in particular to an ecological slope repair and planting device. Background Art
[0002] Slope ecological protection, ecological construction and environmental protection are the focus issues that the society has been working tirelessly to solve. The incoordination between the rapid development of infrastructure construction and the ecological environment has led to the ecological destruction of the environment on which human beings depend for survival. At the same time, it has also restricted the sustainable development of the social economy and posed a threat to human survival and social development. In the past ten years, people have developed a variety of new slope plant protection technologies that can not only play a good role in slope protection, but also improve the engineering environment and reflect the beauty of the natural environment. Together with traditional slope engineering protection measures, they have formed a slope engineering plant protection system.
[0003] The prior art can refer to the Chinese invention patent with publication number CN118727780A. The prior art is specifically a greening planting device for slope ecological restoration, including a fixed block, a first connecting block, a rotating shaft, a second connecting block, and a first supporting plate. A plurality of first connecting blocks are provided on one side of the fixed block, one side of the first connecting block is fixedly connected to the fixed block, one side of the first connecting block is provided with a second connecting block, the second connecting block is slidably connected to the first connecting block, the first connecting block and the second connecting block are provided with a rotating shaft, the rotating shaft passes through the first connecting block and the second connecting block and is rotatably connected to the first connecting block and the second connecting block, one side of the second connecting block is provided with a first supporting plate, and one side of the first supporting plate is fixedly connected to the second connecting block. The prior art is provided with a pin, which is inserted into the soil through the pin to firmly fix the fixed block on the top of the slope, and the first connecting block and the second connecting block are provided to realize the connection between the supporting plate and the fixed block. The first connecting block and the second connecting block are connected by an axis, so that the installation and use of the supporting plate are adapted to different slopes.
[0004] The above-mentioned prior art has the following shortcomings in actual implementation: the function is relatively single and it is unable to utilize rainwater in nature. Summary of the invention
[0005] In order to solve the above problems, the present invention proposes an ecological slope restoration and planting device to solve the above problems in the prior art.
[0006] To achieve the above object, the present invention provides an ecological slope restoration planting device comprising: a shell, a plurality of planting plates are arranged on the shell, two planting holes are arranged on the planting plates opposite to each other, and two pins are arranged at one end of the shell;
[0007] One end of the housing is provided with a water tank, which is internally communicated with one end of the housing. Installation cavities are arranged on both sides inside the housing, and a first water delivery pipe is arranged inside the installation cavity. A communication port is opened at one end inside the housing, and one end of the first water delivery pipe is communicated with the water tank through the communication port;
[0008] Four arc-shaped blocks are arranged inside the planting plate, and the four arc-shaped blocks are oppositely arranged at both ends inside the planting plate. A plurality of water spray pipes are arranged on one side of the arc-shaped block, and the arc-shaped block is communicated with the first water delivery pipe;
[0009] An inlet is opened at one end of the housing, and a blocking component is arranged inside the housing for closing the inlet.
[0010] Further, the blocking component includes a sealing plate rotatably installed inside the inlet, an L-shaped strip hinged to the sealing plate, and a first wedge block slidably arranged inside the housing. The L-shaped strip is rotatably installed inside the housing through a torsion spring, and the first wedge block contacts one end of the L-shaped strip;
[0011] Fixed boxes are arranged at the tops of both sides of the housing. One end inside the fixed box is provided with an electric telescopic rod. The output end of the electric telescopic rod is sleeved with a sleeve plate. A sleeve is sleeved on the sleeve plate. An activity cylinder is arranged inside the sleeve. A second moving plate is slidably arranged inside the fixed box. A pushing strip is arranged on the second moving plate. One end of the pushing strip is connected to the first wedge block, and the output end of the electric telescopic rod penetrates through the second moving plate.
[0012] Further, a second spring is arranged inside the sleeve, and the second spring is connected to the activity cylinder.
[0013] Further, a toothed plate is slidably arranged inside the housing. The bottom of the pushing strip is connected to the toothed plate. A chute is opened on the inner wall of the housing. A slider is slidably arranged inside the chute. A second gear is rotatably arranged on the slider. The second gear is meshed with the toothed plate. A spring is arranged at the inner bottom of the chute, and the top of the spring is connected to the bottom of the slider;
[0014] A lifting plate is slidably arranged inside the water tank;
[0015] A lifting frame is arranged on the top of the lifting plate. A plurality of gear teeth are arranged on the inner wall of the lifting frame, and the first gear is meshed with the gear teeth.
[0016] Further, a plurality of first springs are arranged at the inner bottom of the water tank, and the tops of the first springs are connected to the lifting plate.
[0017] Furthermore, switch boxes are arranged at both inner ends of the planting plate. The switch boxes are hollow inside. One side of the switch box communicates with a second water delivery pipe, and the second water delivery pipe communicates with the arc-shaped block. A plurality of water delivery branch pipes are arranged on the first water delivery pipe, and the water delivery branch pipes communicate with the switch box;
[0018] A switch assembly is arranged inside the fixed box. The switch assembly extends into the switch box and is connected to the electric telescopic rod.
[0019] Furthermore, the switch assembly includes a switch board slidably installed inside the switch box, a pressing strip installed on the top of the switch board, a first moving plate slidably arranged inside the fixed box, and a mounting plate installed on the first moving plate. A plurality of movable blocks are hinged to the top of the housing. A plurality of second wedge blocks are arranged at the bottom of the mounting plate. One end of the bottom of the pressing strip is hinged to the movable block, and the other end of the movable block is rotatably connected to the housing. A rectangular opening is formed at the top of the switch board. One end of the top of the switch board is provided with a switch board, and the switch board is connected to the inner wall of the planting plate.
[0020] Furthermore, a second shaft rod is rotatably arranged inside the housing. The L-shaped strip is arranged on the second shaft rod. A third shaft rod is rotatably arranged at one end of the housing close to the sealing plate. A cleaning plate is arranged on the third shaft rod. A first shaft rod is rotatably arranged at one end of the housing close to the sealing plate. A scraping strip is arranged on the first shaft rod;
[0021] A third gear is rotatably arranged inside the housing. A fifth shaft rod is arranged on the third gear. The fifth shaft rod and the second shaft rod are jointly connected by a first synchronous belt. A fourth gear is arranged on one side of the third gear. The fourth gear meshes with the third gear, and the fourth gear is connected to the first shaft rod. An incomplete gear is rotatably arranged inside the housing. A fifth gear is arranged on one side of the incomplete gear. The fifth gear is connected to the third shaft rod. The incomplete gear meshes with the fifth gear. The first shaft rod and the fourth shaft rod are jointly connected by a second synchronous belt.
[0022] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0023] 1. When it rains, the electric telescopic rod is activated to retract, driving the second moving plate and the pushing bar to move. The pushing bar drives the first wedge block to move, the first wedge block drives the L-shaped bar to move, and the other end of the L-shaped bar drives the sealing plate to move upward, thereby opening the water inlet so that rainwater can flow into the interior of the housing and then into the interior of the water tank for storage. The rainwater can be input into the arc-shaped block through the provided first water pipe and then sprayed out through the spray pipe to water the planted green plants.
[0024] 2. When the pushing bar drives the sealing plate to move upward, it will simultaneously drive the toothed plate to move. The toothed plate drives the second gear to rotate, the second gear drives the first gear to rotate, and the first gear drives the lifting frame and the lifting plate to move downward, thereby increasing the volume inside the water tank. When the pushing bar resets, the water pressure prevents the lower toothed plate from resetting and then drives the second gear to rotate. Under the pressure, the second gear will be pressed downward to reset the toothed plate, and then the second gear is reset by the spring. The first spring can squeeze the lifting plate upward, thereby facilitating the rainwater inside the water tank to enter the first water pipe for convenient watering.
[0025] 3. The switch box can be sealed by the provided switch plate to prevent water from entering the interior of the second water pipe and the arc-shaped block. When watering is required, the electric telescopic rod is activated to extend outward, then it drives the mounting plate to move. The second wedge block presses one end of the movable block to move downward, and the movable block drives the pressing bar and the switch plate to move downward, so that the rectangular opening enters the interior of the switch box, thereby facilitating water to enter the interior of the arc-shaped block.
[0026] For better understanding and implementation, the present invention will be described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 is the first three-dimensional structural schematic diagram of the present invention;
[0028] Figure 2 is the second three-dimensional structural schematic diagram of the present invention;
[0029] Figure 3 is the third three-dimensional structural schematic diagram of the present invention;
[0030] Figure 4 is the partial structural schematic diagram of the housing in the present invention;
[0031] Figure 5 is the appendix of the present invention Figure 4 magnified view of A;
[0032] Figure 6 is the internal structural schematic diagram of the water tank in the present invention;
[0033] Figure 7is an appendix of the present invention Figure 6 An enlarged view of B in the figure;
[0034] Figure 8 is a schematic structural view of the toothed plate in the present invention;
[0035] Figure 9 is a schematic structural view of the second gear in the present invention;
[0036] Figure 10 is a schematic structural view of the installation cavity in the present invention;
[0037] Figure 11 is a top cross-sectional view of the fixed box in the present invention;
[0038] Figure 12 is a side cross-sectional view of the fixed box in the present invention;
[0039] Figure 13 is an appendix of the present invention Figure 11 An enlarged view of C in the figure;
[0040] Figure 14 is a cross-sectional view of the planting plate in the present invention;
[0041] Figure 15 is a cross-sectional view of the switch box in the present invention;
[0042] Figure 16 is a partial structural view of the planting plate in the present invention;
[0043] Figure 17 is a cross-sectional view of the fertilizer delivery box in the present invention;
[0044] Figure 18 is a structural view of the scraping bar in the present invention;
[0045] Figure 19 is a structural view of the third gear in the present invention.
[0046] In the figure: 1. Housing; 2. Water tank; 3. Plug; 4. Planting plate; 5. Planting hole; 6. Fixed box; 7. Water inlet; 8. Sealing plate; 9. Lifting plate; 10. Pushing bar; 11. First wedge block; 12. L-shaped bar; 13. Lifting frame; 14. First gear; 15. First spring; 16. Connecting port; 17. Tooth plate; 18. Linking plate; 19. Second gear; 20. Installation cavity; 21. First water delivery pipe; 22. Water delivery branch pipe; 23. Electric telescopic rod; 24. First moving plate; 25. Second wedge block; 26. Movable block; 27. Second moving plate; 28. Sleeve plate; 29. Sleeve; 30. Movable cylinder; 31. Second spring; 32. Arc-shaped block; 33. Water spraying pipe; 34. Switch box; 35. Second water delivery pipe; 36. Switch plate; 37. Rectangular opening; 38. Third spring; 39. Pressing bar; 40. Installation plate; 41. Chute; 42. Feed pipe; 43. Fertilizer box; 44. Fertilizer delivery pipe; 45. First connecting pipe; 46. Second connecting pipe; 47. Fertilizer delivery box; 48. Rotating column; 49. Feeding plate; 50. Scraping bar; 51. First shaft rod; 52. Second shaft rod; 53. Third shaft rod; 54. Fourth spring; 55. First synchronous belt; 56. Third gear; 57. Fourth gear; 58. Second synchronous belt; 59. Incomplete gear; 60. Fifth gear; 61. Cleaning plate; 62. Fourth shaft rod; 63. Fifth shaft rod. Detailed implementation manners
[0047] For a clearer understanding of the technical features, objectives, and effects of the present invention, the specific implementation manners of the present invention are now described with reference to the accompanying drawings. However, the protection scope of the present invention is not limited to the following description.
[0048] Refer to Figure 1-19 As shown, an ecological slope restoration planting device includes: A plurality of planting plates 4 are arranged on a housing 1. Two planting holes 5 are oppositely formed on the planting plate 4. Two plugs 3 are arranged at one end of the housing 1;
[0049] A water tank 2 is arranged at one end of the housing 1. The water tank 2 is internally communicated with the inside of one end of the housing 1. Installation cavities 20 are arranged on both sides inside the housing 1. A first water delivery pipe 21 is arranged inside the installation cavity 20. A connecting port 16 is formed at one end inside the housing 1. One end of the first water delivery pipe 21 is communicated with the water tank 2 through the connecting port 16;
[0050] Four arc-shaped blocks 32 are arranged inside the planting plate 4. The four arc-shaped blocks 32 are oppositely arranged at both ends inside the planting plate 4. A plurality of water spraying pipes 33 are arranged on one side of the arc-shaped block 32. The arc-shaped block 32 is communicated with the first water delivery pipe 21;
[0051] A water inlet 7 is formed at one end of the housing 1. A plugging assembly is arranged inside the housing 1 for closing the water inlet 7;
[0052] The plugging assembly includes a sealing plate 8 rotatably installed inside the water inlet 7, an L-shaped strip 12 hinged to the sealing plate 8, and a first wedge block 11 slidably arranged inside the housing 1. The L-shaped strip 12 is rotatably installed inside the housing 1 through a torsion spring, and the first wedge block 11 contacts one end of the L-shaped strip 12;
[0053] On both sides of the top of the housing 1, there are fixed boxes 6. At one end inside the fixed box 6, there is an electric telescopic rod 23. The output end of the electric telescopic rod 23 is sleeved with a sleeve plate 28. A sleeve 29 is sleeved on the sleeve plate 28. Inside the sleeve 29, there is a movable cylinder 30. Inside the fixed box 6, a second moving plate 27 is slidably arranged. A pushing strip 10 is arranged on the second moving plate 27. One end of the pushing strip 10 is connected to the first wedge block 11. The output end of the electric telescopic rod 23 penetrates through the second moving plate 27. Inside the sleeve 29, there is a second spring 31, and the second spring 31 is connected to the movable cylinder 30.
[0054] In a technical solution provided by the present invention, when in use, the housing 1 is placed on a slope, and then a pit is dug at the position of the planting hole 5 to cover a film, drip irrigation is carried out, rooting powder is sprinkled, a water retaining agent is added, and a large pit is dug to plant a small tree. The position of the housing 1 can be fixed by the provided nails 3. When it rains, the electric telescopic rod 23 is started to retract, driving the second moving plate 27 and the pushing strip 10 to move. The first wedge block 11 is driven to move through the pushing strip 10. The L-shaped strip 12 is driven to move through the first wedge block 11. The other end of the L-shaped strip 12 drives the sealing plate 8 to move upward, thereby opening the water inlet 7, enabling rainwater to flow into the housing 1 and enter the water tank 2 for storage. The rainwater can be input into the arc-shaped block 32 through the provided first water pipe 21 and then sprayed out through the spray pipe 33 to water the planted green plants.
[0055] Preferably: A toothed plate 17 is slidably arranged inside the housing 1. The bottom of the pushing strip 10 is connected to the toothed plate 17. A chute 41 is provided on the inner wall of the housing 1. A slider is slidably arranged inside the chute 41. A second gear 19 is rotatably arranged on the slider. The second gear 19 is meshed and connected with the toothed plate 17. A spring is arranged at the inner bottom of the chute 41, and the top of the spring is connected to the bottom of the slider;
[0056] A lifting plate 9 is slidably arranged inside the water tank 2;
[0057] On the top of the lifting plate 9, there is a lifting frame 13. Multiple teeth are arranged on the inner wall of the lifting frame 13. The first gear 14 is meshed with the teeth. Multiple first springs 15 are arranged at the inner bottom of the water tank 2, and the top of the first springs 15 is connected to the lifting plate 9.
[0058] Specifically, when the push bar 10 pushes the sealing plate 8 upward, it will drive the toothed plate 17 to move simultaneously. The toothed plate 17 drives the second gear 19 to rotate, the second gear 19 drives the first gear 14 to rotate, and the first gear 14 drives the lifting frame 13 and the lifting plate 9 to move downward, thereby increasing the volume inside the water tank 2. When the push bar 10 resets, the water pressure prevents the lower toothed plate 17 from resetting and driving the second gear 19 to rotate again. Under pressure, the second gear 19 will be pressed downward, thereby resetting the toothed plate 17, and then the second gear 19 is reset by the spring. The first spring 15 can squeeze the lifting plate 9 upward, thereby facilitating the rainwater inside the water tank 2 to enter the first water delivery pipe 21 for watering.
[0059] Preferably, switch boxes 34 are arranged at both ends inside the planting plate 4. The switch boxes 34 are hollow inside. One side of the switch box 34 communicates with a second water delivery pipe 35. The second water delivery pipe 35 communicates with the arc-shaped block 32. A plurality of water delivery branch pipes 22 are arranged on the first water delivery pipe 21. The water delivery branch pipes 22 communicate with the switch boxes 34. A switch assembly is arranged inside the fixed box 6. The switch assembly extends into the switch box 34. The switch assembly is connected to the electric telescopic rod 23.
[0060] The switch assembly includes a switch board 36 slidably installed inside the switch box 34, a pressing bar 39 installed on the top of the switch board 36, a first moving plate 24 slidably arranged inside the fixed box 6, and a mounting plate 40 installed on the first moving plate 24. A plurality of movable blocks 26 are hingedly arranged on the top of the housing 1. A plurality of second wedges 25 are arranged at the bottom of the mounting plate 40. One end of the bottom of the pressing bar 39 is hingedly connected to the movable block 26. The other end of the movable block 26 is rotatably connected to the housing 1. A rectangular opening 37 is formed at the top of the switch board 36. One end of the top of the switch board 36 is provided with a switch board 36. The switch board 36 is connected to the inner wall of the planting plate 4.
[0061] Specifically, the switch box 34 can be sealed by the provided switch board 36 to prevent water from entering the second water delivery pipe 35 and the arc-shaped block 32. When watering is required, the electric telescopic rod is started to extend outward, and then the mounting plate 40 is driven to move. One end of the movable block 26 is pressed downward by the second wedge 25. The movable block 26 drives the pressing bar 39 and the switch board 36 to move downward, so that the rectangular opening 37 enters the switch box 34, thereby facilitating water to enter the arc-shaped block 32 for watering.
[0062] Preferably, a first communication pipe 45 and a second communication pipe 46 are arranged inside the planting plate 4. The two ends of the first communication pipe 45 and the second communication pipe 46 are respectively communicated with two arc-shaped blocks 32. The first communication pipe 45 and the second communication pipe 46 intersect. A fertilizer box 43 is arranged inside the planting plate 4. A feed pipe 42 is arranged at the top of the fertilizer box 43. Both ends of the bottom of the fertilizer box 43 are communicated with fertilizer conveying pipes 44. The two fertilizer conveying pipes 44 are respectively communicated with the first communication pipe 45 and the second communication pipe 46;
[0063] A fertilizer conveying box 47 is arranged at one end of each of the first communication pipe 45 and the second communication pipe 46. A rotating column 48 is rotatably arranged inside the fertilizer conveying box 47. A plurality of blanking plates 49 are arranged on the rotating column 48.
[0064] Specifically, when watering, the water can be conveyed into the interior of each arc-shaped block 32 through the arranged first communication pipe 45 and second communication pipe 46. When the water flows inside the first communication pipe 45 and the second communication pipe 46 and passes through the fertilizer conveying box 43, the blanking plate 49 is pushed by the water flow, so that the rotating column 48 rotates. The space formed between two adjacent blanking plates 49 is used for storing fertilizer. When the rotating column 48 rotates, the fertilizer falls off from the blanking plate 49, follows the water flow into the interior of the arc-shaped block 32, and then sprays outwards along with the water flow, realizing the effect of automatic fertilization for seedlings.
[0065] Preferably, a second shaft rod 52 is rotatably arranged inside the housing 1. The L-shaped strip 12 is arranged on the second shaft rod 52. A third shaft rod 53 is rotatably arranged at one end of the housing 1 close to the sealing plate 8. A cleaning plate 61 is arranged on the third shaft rod 53. A first shaft rod 51 is rotatably arranged at one end of the housing 1 close to the sealing plate 8. A scraping strip 50 is arranged on the first shaft rod 51;
[0066] A third gear 56 is rotatably arranged inside the housing 1. A fifth shaft rod 63 is arranged on the third gear 56. The fifth shaft rod 63 and the second shaft rod 52 are jointly connected with a first synchronous belt 55. A fourth gear 57 is arranged on one side of the third gear 56. The fourth gear 57 meshes with the third gear 56. The fourth gear 57 is connected with the first shaft rod 51. An incomplete gear 59 is rotatably arranged inside the housing 1. A fifth gear 60 is arranged on one side of the incomplete gear 59. The fifth gear 60 is connected with the third shaft rod 53. The incomplete gear 59 meshes with the fifth gear 60. The first shaft rod 51 and the fourth shaft rod 62 are jointly connected with a second synchronous belt 58.
[0067] Specifically, during use, when the L-shaped bar 12 moves, it will drive the second shaft 52 to rotate. Through the first synchronous belt 55 provided, the fifth shaft 63 and the third gear 56 will be synchronously driven to rotate. The third gear 56 drives the fourth gear 57 to rotate. The diameter of the third gear 56 is larger than that of the fourth gear 57. Therefore, the rotation angle of the fourth gear 57 is larger than that of the third gear 56. The fourth gear 57 drives the first shaft 51 to rotate, and the first shaft 51 drives the scraping strip 50 to rotate. The accumulated garbage on the sealing plate 8 can be scraped off by the rotating scraping strip 50 and brought onto the cleaning plate 61. Through the second synchronous belt 58 provided, the fourth gear 57 will drive the incomplete gear 59 to rotate when it rotates. After the scraping strip 50 brings the garbage onto the cleaning plate 61, the incomplete gear 59 rotates to mesh with the fifth gear 60, then drives the fifth gear 60 to rotate, and synchronously drives the cleaning plate 61 to move, causing the cleaning plate 61 to flip outwards to clean the garbage, preventing garbage accumulation and affecting the water inlet efficiency. When the incomplete gear 59 is disengaged from the fifth gear 60, the cleaning plate 61 is driven to reset by the fourth spring 54 provided. The fourth spring 54 is arranged inside the housing 1 and is connected to the cleaning plate 61 at one end.
[0068] The above-disclosed are only the preferred embodiments of the present invention. Of course, the scope of the rights of the present invention cannot be limited thereby. Therefore, equivalent changes made according to the claims of the present invention still fall within the scope covered by the present invention.
Claims
1. An ecological slope restoration and planting device, comprising a housing (1), characterized in that: A plurality of planting plates (4) are arranged on the shell (1), two planting holes (5) are provided on the planting plates (4) in opposite directions, and two insertion pins (3) are arranged at one end of the shell (1); A water tank (2) is provided at one end of the shell (1), the water tank (2) is connected to the interior of one end of the shell (1), installation cavities (20) are provided on both sides of the interior of the shell (1), a first water pipe (21) is provided inside the installation cavity (20), a communication port (16) is provided at one end of the interior of the shell (1), and one end of the first water pipe (21) is connected to the water tank (2) through the communication port (16); Four arc-shaped blocks (32) are arranged inside the planting board (4), and the four arc-shaped blocks (32) are arranged oppositely at two ends inside the planting board (4). A plurality of water spray pipes (33) are arranged on one side of the arc-shaped block (32), and the arc-shaped block (32) is connected to the first water delivery pipe (21); A water inlet (7) is provided at one end of the shell (1), and a blocking component is provided inside the shell (1) for closing the water inlet (7).
2. The ecological slope restoration planting device according to claim 1 is characterized by: The plugging assembly comprises a sealing plate (8) rotatably mounted inside the water inlet (7), an L-shaped strip (12) hinged to the sealing plate (8), and a first wedge (11) slidably arranged inside the housing (1); the L-shaped strip (12) is rotatably mounted inside the housing (1) via a torsion spring, and the first wedge (11) is in contact with one end of the L-shaped strip (12); A fixed box (6) is arranged at the top of both sides of the shell (1), an electric telescopic rod (23) is arranged at one end inside the fixed box (6), the output end of the electric telescopic rod (23) is sleeved on a sleeve (28), a sleeve (29) is sleeved on the sleeve (28), a movable cylinder (30) is arranged inside the sleeve (29), a second movable plate (27) is slidably arranged inside the fixed box (6), a pushing bar (10) is arranged on the second movable plate (27), one end of the pushing bar (10) is connected to the first wedge (11), and the output end of the electric telescopic rod (23) passes through the second movable plate (27).
3. The ecological slope restoration and planting device according to claim 2 is characterized by: A second spring (31) is arranged inside the sleeve (29), and the second spring (31) is connected to the movable cylinder (30).
4. The ecological slope restoration planting device according to claim 2 is characterized by: A toothed plate (17) is slidably arranged inside the housing (1), the bottom of the push bar (10) is connected to the toothed plate (17), a sliding groove (41) is provided on the inner wall of the housing (1), a slider is slidably arranged inside the sliding groove (41), a second gear (19) is rotatably arranged on the slider, the second gear (19) is meshedly connected to the toothed plate (17), a spring is arranged at the inner bottom of the sliding groove (41), and the top of the spring is connected to the bottom of the slider; A lifting plate (9) is slidably provided inside the water tank (2); A lifting frame (13) is arranged on the top of the lifting plate (9), a plurality of gear teeth are arranged on the inner wall of the lifting frame (13), a first gear (14) is arranged at one end of the second gear (19), and the first gear (14) is meshed with the gear teeth.
5. The ecological slope restoration and planting device according to claim 4 is characterized by: A plurality of first springs (15) are arranged at the inner bottom of the water tank (2), and the tops of the first springs (15) are connected to the lifting plate (9).
6. The ecological slope restoration planting device according to claim 2 is characterized by: A switch box (34) is arranged at both ends of the planting board (4); the switch box (34) is hollow inside; one side of the switch box (34) is connected to a second water pipe (35); the second water pipe (35) is connected to the arc block (32); a plurality of water branch pipes (22) are arranged on the first water pipe (21); the water branch pipes (22) are connected to the switch box (34); A switch assembly is arranged inside the fixing box (6), the switch assembly extends into the interior of the switch box (34), and the switch assembly is connected to the electric telescopic rod (23).
7. The ecological slope restoration and planting device according to claim 6 is characterized by: The switch assembly comprises a switch plate (36) slidably mounted inside the switch box (34), a pressing strip (39) mounted on the top of the switch plate (36), a first movable plate (24) slidably mounted inside the fixed box (6), and a mounting plate (40) mounted on the first movable plate (24); a plurality of movable blocks (26) are hingedly mounted on the top of the shell (1); a plurality of second wedge blocks (25) are mounted on the bottom of the mounting plate (40); the pressing strip (39) is hingedly mounted on one end of the bottom of the movable block (26); the other end of the movable block (26) is rotatably connected to the shell (1); a rectangular opening (37) is formed on the top of the switch plate (36); a switch plate (36) is mounted on one end of the top of the switch plate (36); and the switch plate (36) is connected to the inner wall of the planting plate (4).
8. The ecological slope restoration planting device according to claim 6 is characterized by: A first connecting pipe (45) and a second connecting pipe (46) are provided inside the planting plate (4), and both ends of the first connecting pipe (45) and the second connecting pipe (46) are respectively connected to the two arc-shaped blocks (32), and the first connecting pipe (45) and the second connecting pipe (46) are staggered; A fertilizer box (43) is provided inside the planting plate (4), a feed pipe (42) is provided on the top of the fertilizer box (43), and fertilizer delivery pipes (44) are provided at both ends of the bottom of the fertilizer box (43), and the two fertilizer delivery pipes (44) are respectively connected to the first connecting pipe (45) and the second connecting pipe (46).
9. The ecological slope restoration planting device according to claim 8, characterized in that: A fertilizer conveying box (47) is provided at one end of each of the first connecting pipe (45) and the second connecting pipe (46). A rotating column (48) is rotatably provided inside the fertilizer conveying box (47), and a plurality of unloading plates (49) are provided on the rotating column (48).
10. The ecological slope restoration planting device according to claim 2 is characterized by: A second shaft (52) is rotatably provided inside the shell (1), the L-shaped strip (12) is arranged on the second shaft (52), a third shaft (53) is rotatably provided at one end of the shell (1) close to the sealing plate (8), a cleaning plate (61) is arranged on the third shaft (53), and a first shaft (51) is rotatably provided at one end of the shell (1) close to the sealing plate (8), a scraping strip (50) is arranged on the first shaft (51); A third gear (56) is rotatably arranged inside the housing (1), a fifth shaft (63) is arranged on the third gear (56), the fifth shaft (63) and the second shaft (52) are connected to a first synchronous belt (55), a fourth gear (57) is arranged on one side of the third gear (56), the fourth gear (57) is meshed with the third gear (56), the fourth gear (57) is connected to the first shaft (51), an incomplete gear (59) is rotatably arranged inside the housing (1), a fifth gear (60) is arranged on one side of the incomplete gear (59), the fifth gear (60) is connected to the third shaft (53), the incomplete gear (59) is meshed with the fifth gear (60), the first shaft (51) and the fourth shaft (62) are connected to a second synchronous belt (58).
Citation Information
Patent Citations
Green planting device for ecological restoration of side slope
CN118727780A
Planting layer structure capable of collecting rainwater and used for ecological restoration of garden slope
CN113692875A
Hidden irrigation equipment for ecological slope protection
CN114287265A
Ecological restoration system and restoration method for side slope
CN116378070A
Expressway slope reinforcing device
CN116497849A