A wetland waterfront ecological slope protection structure
By designing a foldable wetland shoreline ecological slope protection structure and simplifying construction using fixed and frame mechanisms, the problem of time-consuming and labor-intensive construction in existing technologies has been solved, achieving rapid and effective slope protection and prevention of soil erosion.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- THE SECOND EXPLORATION TEAM OF SHANDONG COALFIELD GEOLOGY BUREAU
- Filing Date
- 2023-10-24
- Publication Date
- 2026-05-26
AI Technical Summary
Existing wetland shoreline ecological slope protection structures require a large amount of manpower and resources for slope construction, and the construction time is long and easily affected by the weather.
A wetland shoreline ecological slope protection structure is adopted, which includes a fixing mechanism, a control mechanism and a frame mechanism. The construction process is simplified by using a foldable design and counterweight blocks for fixing, and rapid installation and drainage functions are achieved through a connecting rod and plate structure.
It achieves rapid and simple slope protection, reduces the input of manpower and materials, avoids the prolongation of construction time and the impact of weather, and improves construction efficiency and the effect of preventing soil erosion.
Smart Images

Figure CN117418507B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of ecological slope protection technology, and in particular to a wetland waterfront ecological slope protection structure. Background Technology
[0002] Ecological slope protection is a slope protection technique that integrates basic knowledge from disciplines such as engineering mechanics, soil science, ecology, and botany to support slopes or side slopes, forming a comprehensive slope protection system composed of plants or a combination of engineering and plants. After the slope is excavated, vegetation is planted, and the interaction between the plants and the rock and soil (root anchoring effect) is used to protect and reinforce the surface of the slope. This method not only meets the requirements for the stability of the slope surface but also restores the damaged natural ecological environment, making it an effective means of slope protection and stabilization.
[0003] Chinese invention patent application number CN202211222638.0 discloses a wetland waterfront ecological slope protection structure and its construction method, which relates to the field of slope protection and restoration technology. It includes a soil layer set on the slope, and a plurality of drainage channels are laid on the soil layer, which are arranged along the length of the slope. A plurality of ecological bricks are arranged between two adjacent drainage channels. The ecological bricks are provided with connectors that are connected to adjacent ecological bricks. The ecological bricks are provided with planting holes for planting grass seeds. The planting holes are provided with through holes for rainwater drainage on the opposite side walls.
[0004] The above-mentioned equipment needs to be installed on a slope, laying eco-bricks, which requires a certain amount of manpower and materials. It is easy to waste manpower and resources, and the construction takes a certain amount of time and is easily affected by the weather, which can prolong the construction time. Summary of the Invention
[0005] To address the above problems, this invention provides a wetland waterfront ecological slope protection structure to solve the problem of needing to construct on the slope surface in order to protect it.
[0006] The technical solution used in this invention is: a wetland shoreline ecological slope protection structure, including a fixing mechanism, a control mechanism, a frame mechanism, and other mechanisms; the fixing mechanism and the frame mechanism are fixedly installed; the control mechanism and the frame mechanism are movably installed.
[0007] The frame mechanism includes: a rectangular sleeve, upper side rod A, upper side rod B, a center block, a side block, a connecting rod, a control plate A, a control plate B, lower side rod A, lower side rod B, and a connecting plate;
[0008] The upper side rod A is slidably installed on one side of the rectangular sleeve; a protrusion is provided on one side of the upper side rod A, and the protrusion is slidably installed in a groove of the side baffle of the rectangular sleeve; the upper side rod B is slidably installed on the other side of the rectangular sleeve; a protrusion is provided on one side of the upper side rod B, and the protrusion is slidably installed in another groove of the side baffle of the rectangular sleeve; the middle block is fixedly installed with the rectangular sleeve; one side of the connecting rod is rotatably installed on the shaft of the side block, and the other side is rotatably installed with the shaft in the groove of the middle block; the hole in the groove at one end of the control plate A is rotatably installed with the half shaft on one side of the middle block; The other end of control plate A is rotatably mounted to the shaft in the groove of the side block; the hole in the groove of one end of control plate B is rotatably mounted to the half shaft on the other side of the center block; the other end of control plate B is rotatably mounted to the shaft in the groove of another side block; the lower side rod A is fixedly mounted to one side block; the lower side rod B is fixedly mounted to another side block; the lower side rod A and the lower side rod B are slidably mounted; the connecting plate has multiple grooves arranged in a linear array, and the grooves are rotatably mounted on the convex shaft of the connecting rod; other mechanisms include: pad A, pad B, drain bucket, linkage plate and control bar.
[0009] Preferably, the fixing mechanism includes: a counterweight, a connector, and a fixing pin;
[0010] The counterweight and connector are rotatably installed; one side of the connector is fixedly installed with a rectangular sleeve; the fixing pins are slidably installed in the holes of the baffles on both sides of the counterweight.
[0011] Preferably, the control mechanism includes: a threaded rod and an internally threaded sleeve;
[0012] One end of the threaded rod is provided with a polygonal groove; the threaded rod is rotatably installed with the center block; the threaded rod is threadedly installed with the internal threaded sleeve; the internal threaded sleeve is slidably installed in the groove of the center block.
[0013] Preferably, the control mechanism further includes: gears and racks;
[0014] The sleeve mounted on the gear is rotatably installed with the center block; one rack is fixedly installed with the groove on the bottom side of the upper side rod A and slidably installed with the groove on the bottom side of the upper side rod B; the other rack is fixedly installed with the groove on the bottom side of the upper side rod B and slidably installed with the groove on the bottom side of the upper side rod A; the gear meshes with the two racks respectively.
[0015] Preferably, the other mechanisms include: a crank handle and a plunger;
[0016] The crank handle is placed outside the equipment; the plunger is placed outside the equipment.
[0017] Preferably, other mechanisms also include: a drain bucket, a linkage plate, and a control bar;
[0018] Two drain buckets are slidably installed in the rectangular holes of the upper side rod A and the upper side rod B, respectively; one end of the linkage plate is fixedly installed to the outer wall of the drain bucket; the two linkage plates are slidably installed in the sliding grooves inside the upper side rod A and the upper side rod B, respectively; the two control bars are slidably installed in the sliding grooves of the baffles on both sides of the inner wall of the rectangular sleeve; the control bars are in contact with the protruding plates on both sides of the other end of the linkage plate.
[0019] Preferably, the other mechanisms also include: pad A and pad B;
[0020] There are multiple pads A, which are fixedly installed on the bottom side of the center block and the bottom side of the side block respectively; there are multiple pads B, which are fixedly installed on the bottom side of the connecting rod, the bottom side of the control plate A, and the bottom side of the control plate B respectively.
[0021] The beneficial effects of this invention are:
[0022] 1. The side block moves, causing the connecting rod to rotate, so that the equipment can be opened and laid flat. The equipment can be folded and opened for easy transportation. During the opening process, you only need to turn the threaded rod with the crank handle. The operation is simple and quick.
[0023] 2. Secure the equipment by driving nails into the soil to prevent it from moving;
[0024] 3. Pad A and Pad B are in contact with the slope, so that the equipment can hold the soil on the slope and prevent the water flow from washing the soil down.
[0025] 4. The gaps between the connecting rods and connecting plates allow for planting vegetation, which can more effectively prevent water flow from washing the soil down the slope. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the overall structure of the present invention from a first angle.
[0027] Figure 2 This is a schematic diagram of the overall structure of the present invention from a second angle.
[0028] Figure 3 This is a schematic diagram showing the unfolded overall structure of the present invention.
[0029] Figure 4 This is a schematic diagram of the crank handle of the present invention.
[0030] Figure 5 This is a schematic diagram of the plunger structure of the present invention.
[0031] Figure 6 This is a schematic diagram of the fixing mechanism of the present invention.
[0032] Figure 7 This is a structural schematic diagram of the frame mechanism of the present invention from a first angle.
[0033] Figure 8 This is a structural schematic diagram of the frame mechanism of the present invention from a first angle.
[0034] Figure 9 This is a structural schematic diagram of the frame mechanism of the present invention from a second angle.
[0035] Figure 10 This is a structural schematic diagram of other mechanisms of the present invention from a first angle.
[0036] Figure 11 This is a structural schematic diagram of the control mechanism of the present invention from a first angle.
[0037] Figure 12 This is a structural schematic diagram of the frame mechanism of the present invention from a third angle.
[0038] Figure 13 This is a schematic diagram of the control mechanism of the present invention from a second angle.
[0039] Figure 14 This is a cross-sectional structural diagram of the control mechanism of the present invention.
[0040] Reference numerals: 1-Crank handle; 2-Plunger; 3-Counterweight; 4-Connector; 5-Fixing pin; 6-Rectangular sleeve; 7-Upper side rod A; 8-Upper side rod B; 9-Drainage bucket; 10-Linkage plate; 11-Control bar; 12-Gear; 13-Rack; 14-Center block; 15-Side block; 16-Plate A; 17-Plate B; 18-Connecting rod; 19-Control plate A; 20-Control plate B; 21-Lower side rod A; 22-Lower side rod B; 23-Threaded rod; 24-Internal threaded sleeve; 25-Connecting plate. Detailed Implementation
[0041] The technical solution of the present invention will be further described in detail below through embodiments and in conjunction with the accompanying drawings. Many specific details are set forth in the following description to provide a full understanding of the present invention. However, the present invention can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of the invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0042] In the description of this invention, it should be noted that the terms "upper," "lower," "front," "rear," "left," and "right," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product is in use. These terms are merely simplified descriptions for ease of description and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention. Furthermore, for ease of description, spatial relative terms such as "below," "below," "under," "above," and "above" may be used to describe the relationship of one element or feature relative to other elements or features as shown in the figures. Spatial relative terms are intended to encompass different orientations of the device in use or operation other than those shown in the accompanying drawings. The device may have other orientations (rotated 90 degrees or in other orientations), and the spatial relative descriptive terms used herein can be interpreted accordingly. It should be noted that in this document, some connection methods, such as "fixed connection" and "fixed installation," refer to, but are not limited to, fixing two components by means of welding, screw and nut fastening, adhesive, riveting, interference fit, etc. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0043] To facilitate understanding of the present invention, a more complete description will be given below with reference to the accompanying drawings. Preferred embodiments of the invention are shown in the drawings. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a thorough and complete understanding of the disclosure of the invention.
[0044] Implementation, for example Figures 1-14 As shown, a wetland shoreline ecological slope protection structure includes a fixing mechanism, a control mechanism, a frame mechanism, and other mechanisms; the fixing mechanism and the frame mechanism are fixedly installed; the control mechanism and the frame mechanism are movably installed.
[0045] In an optional embodiment of the present invention, in addition to the same parts as in the previous embodiment, the frame mechanism includes: a rectangular sleeve 6, an upper side rod A7, an upper side rod B8, a middle block 14, a side block 15, a connecting rod 18, a control plate A19, a control plate B20, a lower side rod A21, a lower side rod B22, and a connecting plate 25.
[0046] The rectangular sleeve 6 has sliding grooves on both sides of its inner wall baffles; multiple grooves on one side baffle of the rectangular sleeve 6; the upper side rod A7 is slidably mounted on one side of the rectangular sleeve 6; a protrusion is provided on one side of the upper side rod A7, and the protrusion is slidably mounted in a groove of the side baffle of the rectangular sleeve 6; a rectangular hole is provided at one end of the upper side rod A7; a sliding groove is provided inside the upper side rod A7; multiple grooves of different sizes are provided on the bottom side of the upper side rod A7; the upper side rod B8 is slidably mounted on the other side of the rectangular sleeve 6; a protrusion is provided on one side of the upper side rod B8, and the protrusion is slidably mounted in another groove of the side baffle of the rectangular sleeve 6; a rectangular hole is provided at one end of the upper side rod B8; a sliding groove is provided inside the upper side rod B8. The upper side rod B8 has multiple grooves of different sizes on its bottom side; there are two drainage buckets 9 arranged in a linear array; the middle block 14 has a sliding groove in the middle and grooves on both sides; multiple shafts arranged in a linear array are provided in the grooves on both sides of the middle block 14; a half-shaft is provided on the upper baffle at the bottom end of the groove on one side of the middle block 14, and a half-shaft is provided on the lower baffle at the bottom end of the groove on the other side; the middle block 14 is fixedly installed with the rectangular sleeve 6; there are two side blocks 15 arranged in a mirror symmetrical arrangement; one side of the side block 15 has a groove containing multiple shafts arranged in a linear array; the other side of the side block 15 has a drainage hole; one side of the groove of the side block 15 has a hole for easy drainage; there are multiple connecting rods 18 arranged in a linear array. The array is arranged symmetrically with mirror images; one side of the connecting rod 18 is rotatably mounted on the shaft of the side block 15, and the other side is rotatably mounted on the shaft in the groove on the side of the center block 14; a convex shaft is provided at the middle position of the bottom side of the connecting rod 18; a convex shaft is provided on the bottom side of the control plate A19 near the middle position; one end of the control plate A19 has a groove, and one side of the groove has a hole; the hole in the groove at one end of the control plate A19 is rotatably mounted on the half shaft on one side of the center block 14; the other end of the control plate A19 is rotatably mounted on the shaft in the groove of the side block 15; a convex shaft is provided on the bottom side of the control plate B20 near the middle position; one end of the control plate B20 has a groove, and one side of the groove has a hole; the hole in the groove at one end of the control plate B20 is rotatably mounted on the half shaft on one side of the center block 14. The half-shaft on the side is rotatably installed; the other end of the control plate B20 is rotatably installed with the shaft in the groove of another side block 15; the lower side rod A21 is fixedly installed with one side block 15; the lower side rod B22 is fixedly installed with another side block 15; both the lower side rod A21 and the lower side rod B22 have drainage holes at one end; the lower side rod A21 and the lower side rod B22 are slidably installed; both the lower side rod A21 and the lower side rod B22 have drainage grooves on their sides; the connecting plate 25 has multiple grooves arranged in a linear array, and the grooves are rotatably installed on the convex shaft of the connecting rod 18; the other mechanisms include: pad A16, pad B17, drainage bucket 9, linkage plate 10 and control bar 11.
[0047] In one optional embodiment of the present invention, in addition to the same parts as in the previous embodiment, the fixing mechanism includes: a counterweight 3, a connector 4, and a fixing nail 5;
[0048] There are multiple counterweights 3 arranged in a linear array; the counterweights 3 and the connectors 4 are rotatably installed; both sides of the counterweights 3 are provided with baffles, and the baffles are provided with multiple holes arranged in a linear array; there are multiple connectors 4 arranged in a linear array; one side of the connectors 4 is fixedly installed with a rectangular sleeve 6; there are multiple fixing nails 5 arranged in a linear array; the fixing nails 5 are slidably installed in the holes of the baffles on both sides of the counterweights 3; specifically, the counterweights 3 are placed on the soil at the top of the slope, the fixing nails 5 are driven into the soil, and then the counterweights 3 are fixed to the soil, thereby fixing the equipment and preventing the equipment from moving.
[0049] In an optional embodiment of the present invention, in addition to the same parts as in the previous embodiment, the control mechanism includes: a threaded rod 23 and an internally threaded sleeve 24;
[0050] One end of the threaded rod 23 is provided with a polygonal groove; the threaded rod 23 is rotatably installed with the intermediate block 14; the threaded rod 23 is threadedly installed with the internal threaded sleeve 24; the internal threaded sleeve 24 is slidably installed in the groove of the intermediate block 14; specifically, the rotation of the threaded rod 23 drives the internal threaded sleeve 24 to move.
[0051] In an optional embodiment of the present invention, in addition to the same parts as in the previous embodiment, the control mechanism further includes: gear 12 and rack 13;
[0052] A sleeve is installed in the middle of the gear 12, and the upper end of the sleeve has multiple grooves arranged in a circular array; the sleeve installed on the gear 12 is rotatably mounted with the middle block 14; there are two racks 13; one rack 13 is fixedly mounted with the groove on the bottom side of the upper side rod A7 and slidably mounted with the groove on the bottom side of the upper side rod B8; the other rack 13 is fixedly mounted with the groove on the bottom side of the upper side rod B8 and slidably mounted with the groove on the bottom side of the upper side rod A7; the gear 12 meshes with the two racks 13 respectively; specifically, the rotation of the gear 12 drives the racks 13 to move.
[0053] In one optional embodiment of the present invention, in addition to the same parts as in the previous embodiment, other mechanisms include: a crank handle 1 and a plunger 2;
[0054] The crank handle 1 is placed outside the equipment; one end of the crank handle 1 is provided with a polygonal protrusion, and multiple protrusions arranged in a circular array are provided at a certain position on the upper end of the polygonal protrusion; the plunger 2 is placed outside the equipment.
[0055] In one optional embodiment of the present invention, in addition to the same parts as in the previous embodiment, other mechanisms include: a drainage bucket 9, a linkage plate 10, and a control bar 11;
[0056] Two drain buckets 9 are slidably installed in the rectangular holes of the upper side rod A7 and the upper side rod B8, respectively; there are two linkage plates 10, arranged in a mirror-symmetrical manner; one end of the linkage plate 10 is fixedly installed to the outer wall of the drain bucket 9; both sides of the other end of the linkage plate 10 are provided with protruding plates; the two linkage plates 10 are slidably installed in the sliding grooves inside the upper side rod A7 and the upper side rod B8, respectively; the bottom end of the two linkage plates 10 is provided with springs, and the other end of the springs is fixedly installed to the upper side rod A7 or the upper side rod B8, respectively; there are two control bars 11, arranged in a mirror-symmetrical manner; the two control bars 11 are slidably installed in the sliding grooves of the baffles on both sides of the inner wall of the rectangular sleeve 6, respectively; the control bars 11 are in contact with the protruding plates on both sides of the other end of the linkage plate 10; specifically, when the control bars 11 move, they drive the linkage plates 10 to move, and then drive the drain buckets 9 to move; when they move in the opposite direction, the linkage plates 10 move under the action of the springs, and then drive the control bars 11 and the drain buckets 9 to move.
[0057] In one optional embodiment of the present invention, in addition to the same parts as in the previous embodiment, other mechanisms include: pad A16 and pad B17;
[0058] There are multiple pads A16, which are fixedly installed on the bottom side of the center block 14 and the bottom side of the side block 15 respectively; there are multiple pads B17, which are fixedly installed on the bottom side of the connecting rod 18, the bottom side of the control plate A19, and the bottom side of the control plate B20 respectively; pads A16 and pads B17 make the equipment more closely connected to the ground, which helps to prevent soil erosion.
[0059] Working principle: When it is necessary to protect the slopes on both sides of a wetland, this equipment can be used. First, transport the equipment to the designated location, then place the counterweight 3 on the soil at the top of the slope, drive the fixing nails 5 into the soil, and then fix the counterweight 3 to the soil, thereby fixing the equipment and preventing it from moving.
[0060] Then the lower part of the equipment is placed on the side of the slope, and the lower end of the equipment is made into perfect contact with the side of the slope by the rotation of the counterweight 3 and the connector 4.
[0061] Then, the plunger 2 is removed from the hole in the middle of the rectangular sleeve 6, and the crank handle 1 is inserted into the hole in the middle of the rectangular sleeve 6. When the crank handle 1 is moved to the designated position, the polygonal head at one end of the crank handle 1 is inserted into the groove at the upper end of the threaded rod 23. The protrusion installed on the polygonal head of the crank handle 1 meshes with the groove on the sleeve installed on the gear 12. Turning the crank handle 1 will drive the gear 12 and the threaded rod 23 to rotate.
[0062] The rotation of gear 12 drives rack 13 to move, which in turn drives upper side rod A7 and upper side rod B8 to move, thereby moving upper side rod A7 and upper side rod B8 to the designated position;
[0063] The rotation of the threaded rod 23 drives the internal threaded sleeve 24 to move, which in turn pushes the control plate A19 and control plate B20 to rotate, thereby driving the two side blocks 15 to move, which in turn drives the connecting rod 18 to rotate, thereby opening the equipment and laying it flat. The movement of the two side blocks 15 drives the lower side rod A21 and lower side rod B22 to move.
[0064] When the device is turned on, the upper ends of the two side blocks 15 contact the upper side rod A7 and the upper side rod B8 respectively; the lower end of the middle block 14 contacts the lower side rod A21.
[0065] Then, take out the crank handle 1 and insert the plunger 2 into the hole in the middle of the rectangular sleeve 6. After insertion, the plunger 2 contacts the control bar 11. The plunger 2 moves down and then drives the control bar 11 to move, thereby driving the linkage plate 10 to move and then driving the drain bucket 9 to move, so that the two drain buckets 9 are inserted into the rectangular holes of the upper side rod A7 and the upper side rod B8 respectively, which facilitates drainage operation.
[0066] When the device is no longer in use, after the plunger 2 is removed, the spring of the linkage plate 10 springs up and drives the linkage plate 10 to move in the opposite direction, which in turn drives the drain bucket 9 and the control bar 11 to move. The movement of the drain bucket 9 allows the two drain buckets 9 to be removed from the rectangular holes of the upper side rod A7 and the upper side rod B8.
[0067] Then, the crank handle 1 is inserted into the hole in the middle of the rectangular sleeve 6. After the crank handle 1 is moved to the designated position, the polygonal head at one end of the crank handle 1 is inserted into the groove at the upper end of the threaded rod 23. The protrusion installed on the polygonal head of the crank handle 1 meshes with the groove on the sleeve installed on the gear 12. Turning the crank handle 1 will drive the gear 12 and the threaded rod 23 to rotate.
[0068] Turn the crank handle 1 in the opposite direction to reset the device, allowing it to fold up for easy storage.
[0069] This allows for the rapid installation of equipment on the slope to prevent water flow from washing away the soil and seeds, thus preventing soil erosion.
Claims
1. A wetland waterfront ecological slope protection structure, characterized in that, Includes fixed mechanisms, control mechanisms, frame mechanisms, and other mechanisms; fixed mechanisms and frame mechanisms are fixedly installed; control mechanisms and frame mechanisms are movablely installed. The frame mechanism includes: a rectangular sleeve (6), an upper side rod A (7), an upper side rod B (8), a middle block (14), a side block (15), a connecting rod (18), a control plate A (19), a control plate B (20), a lower side rod A (21), a lower side rod B (22), and a connecting plate (25); The upper side rod A (7) is slidably installed on one side of the rectangular sleeve (6); a protrusion is provided on one side of the upper side rod A (7), and the protrusion is slidably installed in a groove of the side baffle of the rectangular sleeve (6); the upper side rod B (8) is slidably installed on the other side of the rectangular sleeve (6); a protrusion is provided on one side of the upper side rod B (8), and the protrusion is slidably installed in another groove of the side baffle of the rectangular sleeve (6); the middle block (14) is fixedly installed with the rectangular sleeve (6); one side of the connecting rod (18) is rotatably installed on the shaft of the side block (15), and the other side is rotatably installed with the shaft in the groove of the middle block (14); a half shaft is provided on the upper baffle at the bottom end of the groove on one side of the middle block (14), and a half shaft is provided on the lower baffle at the bottom end of the groove on the other side; control The hole in the groove at one end of the control plate A (19) is rotatably installed with the half shaft on one side of the middle block (14); the other end of the control plate A (19) is rotatably installed with the shaft in the groove of the side block (15); the hole in the groove at one end of the control plate B (20) is rotatably installed with the half shaft on the other side of the middle block (14); the other end of the control plate B (20) is rotatably installed with the shaft in the groove of another side block (15); the lower side rod A (21) is fixedly installed with one side block (15); the lower side rod B (22) is fixedly installed with another side block (15); the lower side rod A (21) and the lower side rod B (22) are slidably installed; the connecting plate (25) is provided with multiple grooves arranged in a linear array, and the grooves are rotatably installed on the convex shaft of the connecting rod (18); When the device is turned on, the upper ends of the two side blocks (15) contact the upper side rod A (7) and the upper side rod B (8) respectively; the lower end of the middle block (14) contacts the lower side rod A (21); The other mechanisms include: pad A (16), pad B (17), drain bucket (9), linkage plate (10), and control bar (11); Two drain buckets (9) are slidably installed in the rectangular holes of the upper side rod A (7) and the upper side rod B (8), respectively; there are two linkage plates (10), which are arranged in a mirror symmetrical manner; one end of the linkage plate (10) is fixedly installed to the outer wall of the drain bucket (9); both sides of the other end of the linkage plate (10) are provided with protruding plates; the two linkage plates (10) are slidably installed in the sliding groove inside the upper side rod A (7) and the sliding groove inside the upper side rod B (8), respectively; the two control bars (11) are slidably installed in the sliding grooves of the baffles on both sides of the inner wall of the rectangular sleeve (6); the control bars (11) are in contact with the protruding plates on both sides of the other end of the linkage plate (10); There are multiple pads A (16), which are fixedly installed on the bottom side of the center block (14) and the bottom side of the side block (15); there are multiple pads B (17), which are fixedly installed on the bottom side of the connecting rod (18), the bottom side of the control plate A (19), and the bottom side of the control plate B (20).
2. The wetland shoreline ecological slope protection structure according to claim 1, characterized in that, The fixing mechanism includes: counterweight (3), connector (4), and fixing nail (5); The counterweight (3) and connector (4) are rotatably installed; one side of connector (4) is fixedly installed with rectangular sleeve (6); fixing nail (5) is slidably installed in the holes of the baffles on both sides of the counterweight (3).
3. The wetland shoreline ecological slope protection structure according to claim 1, characterized in that, The control mechanism includes: a threaded rod (23) and an internally threaded sleeve (24); The threaded rod (23) has a polygonal groove at one end; the threaded rod (23) is rotatably installed with the middle block (14); the threaded rod (23) is threadedly installed with the internal threaded sleeve (24); the internal threaded sleeve (24) is slidably installed in the groove of the middle block (14); The rotation of the threaded rod (23) drives the internal threaded sleeve (24) to move, which in turn pushes the control plate A (19) and control plate B (20) to rotate, thereby driving the two side blocks (15) to move, which in turn drives the connecting rod (18) to rotate, thereby opening the equipment and laying it flat. The movement of the two side blocks (15) drives the lower side rod A (21) and lower side rod B (22) to move.
4. The wetland shoreline ecological slope protection structure according to claim 1, characterized in that, The control mechanism also includes: gear (12) and rack (13); The sleeve mounted on the gear (12) is rotatably mounted to the middle block (14); one rack (13) is fixedly mounted to the groove on the bottom side of the upper side rod A (7) and slidably mounted to the groove on the bottom side of the upper side rod B (8); another rack (13) is fixedly mounted to the groove on the bottom side of the upper side rod B (8) and slidably mounted to the groove on the bottom side of the upper side rod A (7); the gear (12) meshes with the two racks (13) respectively.
5. The wetland shoreline ecological slope protection structure according to claim 1, characterized in that, Other components include: crank (1) and plunger (2); The crank handle (1) is placed outside the equipment; the plunger (2) is placed outside the equipment; the plunger (2) is taken out from the hole in the middle of the rectangular sleeve (6), and the crank handle (1) is inserted into the hole in the middle of the rectangular sleeve (6).
6. The wetland shoreline ecological slope protection structure according to claim 1, characterized in that, Pad A (16) and Pad B (17) are made of rubber material.