Water conservancy river channel slope protection device

By designing a water conservancy river slope protection device including pressing rods, fixing components and dustproof nets, the dust and soil erosion problems in the growth period of ecological slope protection are solved, and the stability of slope protection and the healthy growth of grass seeds are achieved.

CN222948918UActive Publication Date: 2025-06-06YANGGU COUNTY WATER CONSERVANCY BUREAU
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Patent Information

Application Number
CN202422024621.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-06-06
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

During the growth period of ecological slope protection, river embankments are prone to dust and soil erosion, which affects the growth of grass seeds and the protection of river channels.

Method used

A water conservancy river slope protection device is designed, including pressing rods, fixing components and dustproof nets. The press rod is set on the dustproof net, with four corners as inclined surfaces and a cavity is left in the center to fix the fixing parts. The fixing parts are plugged into the positioning rod and the positioning plate, and the fixing rod is secured in the soil using anchoring parts and inverted rods. The dustproof net is firmly pressed to reduce dust, and the press rod forms independent grids to block and buffer water flow and reduce soil erosion.

Benefits of technology

It effectively reduces the occurrence of dust, reduces the problem of soil erosion, protects slope protection, and promotes the growth of grass seeds.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a water conservancy riverway slope protection device, relates to the technical field of water conservancy riverway slope protection devices, and aims to provide a water conservancy riverway slope protection device capable of protecting a slope protection and reducing the problems of dust raising and water and soil loss in the ecological slope protection growing period. The pressing rods are in butt joint with the dust screen, four corners of each pressing rod are arranged to be inclined planes, and a cavity for the fixing part to penetrate through is reserved in the center of each pressing rod after the pressing rods are in butt joint with one another, so that the technical effects that the pressing rods and the dust screen are arranged, the pressing rods are in butt joint through the inclined planes at the ends and are pressed on the dust screen, and then the fixing part is inserted into the cavity formed by splicing the pressing rods; according to the dustproof net, the positioning rods and the positioning plates are connected in an inserted mode, the pressing rods are fixed to the slope protection through the fixing parts, the dustproof net is firmly pressed, the dust raising problem is relieved, meanwhile, the spliced pressing rods form independent grids, and when rainwater flows, the water and soil loss problem is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of water conservancy slope protection devices, in particular to a water conservancy river channel slope protection device. Background Art

[0002] A water conservancy river usually refers to a channel that is artificially built or naturally formed for water flow in order to achieve water conservancy purposes. A water conservancy river has multiple functions, including but not limited to flood control and drainage, irrigation and water supply, water transportation, water storage and water diversion, ecological maintenance, etc. Its form, scale and characteristics vary depending on geographical conditions, water conservancy needs and engineering design. In order to protect the river, it is necessary to build slope protection on both sides of the river for long-term protection. Commonly used slope protection varies in form according to the needs of the river. Among them, ecological slope protection is widely used because it can take into account both protection and beauty, and at the same time increase the diversity of environmental ecology. Most ecological slope protection is to sow grass seeds on the slope of the river bank, and use the stems of plants to solidify the soil;

[0003] However, the growth of plants requires a certain period of time. During this period, the river bank is exposed as a whole, which is prone to dust problems due to the blowing of air currents. It will also affect the growing grass seeds. In addition, when the plants have not completed their growth, excessive rain will also cause soil and water loss. Utility Model Content

[0004] 1. Technical issues to be solved

[0005] In view of the deficiencies in the prior art, the utility model provides a water conservancy river channel slope protection device which can protect the slope and reduce dust and soil erosion problems during the growth period of the ecological slope.

[0006] (II) Technical solution

[0007] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a water conservancy river slope protection device, comprising a pressure rod, a fixing component and a dustproof net, the pressure rod is on the dustproof net, the four corners of the pressure rod are all inclined, the pressure rod has a cavity in the center for the fixing component to pass through after docking, and the pressure rod is provided with a positioning rod near both ends, and the fixing component is plugged with the positioning rod on the adjacent pressure rod;

[0008] The fixing component includes a fixing rod and a positioning plate. The positioning plate is arranged on the side of the fixing rod and has a hole for plugging with the positioning rod. A cone head is arranged under the fixing rod. An anchoring component is arranged inside the fixing rod. A movable groove is arranged on the side of the fixing rod to provide sliding limitation for the anchoring component. First pull rings are arranged on both sides of the top of the fixing rod.

[0009] Preferably, the anchoring component includes a sliding rod passing through the top of the fixed rod, a support plate slidingly cooperated with the sliding rod is provided in the positioning rod, a connecting plate is provided at the bottom of the sliding rod, and inverted rods are hinged on both sides of the connecting plate, and the other end of the inverted rod extends to the outside of the fixed rod through a movable groove.

[0010] Preferably, a threaded tube is provided under the fixing rod, the cone head is connected to the fixing rod via the threaded tube, and a nut sleeve is provided on the outer side of the cone head.

[0011] Preferably, a spring is provided in the cone head, and the top end of the spring is in contact with the bottom end of the connecting plate.

[0012] Preferably, a second pull ring is provided on the top of the sliding rod, and the second pull ring is rotatably connected to the sliding rod.

[0013] Preferably, two rubber plates are provided in the movable groove, and the two rubber plates are engaged with each other.

[0014] Preferably, a pin is hinged under the pressure rod, a coil spring connected to the pressure rod is provided on the side of the pin, a hanging rod is provided at the center of the pin, and a clamp is provided under the pressure rod at a position corresponding to the rotation path of the hanging rod.

[0015] Preferably, the first magnet, the second magnet, the first iron block and the second iron block are respectively disposed in the inclined surfaces at both ends of the pressure rod, the first magnet and the second magnet are diagonally arranged, and the first iron block and the second iron block are diagonally arranged.

[0016] (III) Beneficial effects

[0017] Compared with the prior art, the utility model provides a water conservancy river slope protection device, which has the following

[0018] Beneficial effects:

[0019] 1. By setting pressure rods and dust-proof nets, when in use, first lay the dust-proof net on the slope protection, then use the inclined surface of the pressure rod at the end to connect and press it on the dust-proof net, then insert the fixing component into the cavity after the pressure rods are spliced, and make the positioning rod and the positioning plate plugged, and use the fixing component to fix the pressure rod on the slope protection, so that the dust-proof net is firmly pressed, reducing the occurrence of dust problems. At the same time, the spliced ​​pressure rods form independent squares, which will block and buffer the water flow when rainwater flows, reducing the problem of soil erosion.

[0020] 2. By setting the sliding rod and the inverted rod, when installing the fixed rod, press the sliding rod downward so that the sliding rod drives the inverted rod to move downward through the connecting plate, so that the inverted rod is stored in the movable groove. When the fixed rod is inserted, lift the sliding rod upward, and the sliding rod drives the inverted rod to move upward through the connecting plate. The inverted rod moves obliquely upward under the restriction of the movable groove, and then unfolds and inserts into the soil under tension, so that the fixed rod is fixed in the soil. When the fixed rod needs to be pulled out, press the sliding rod downward again. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a three-dimensional schematic diagram of the utility model;

[0022] Figure 2 It is a schematic diagram of the cross section of the fixing component of the utility model;

[0023] Figure 3 It is a three-dimensional schematic diagram of the pressure rod of the utility model;

[0024] Figure 4 For this utility model Figure 2 The enlarged schematic diagram at A in the middle;

[0025] Figure 5 For this utility model Figure 3 Schematic diagram of the enlarged view at B.

[0026] In the figure: 1. pressure rod; 2. fixing component; 201. fixing rod; 202. positioning plate; 203. first pull ring; 204. threaded tube; 205. cone head; 206. nut sleeve; 3. anchoring component; 301. sliding rod; 302. second pull ring; 303. supporting plate; 304. inverted rod; 305. spring; 306. connecting plate; 4. dustproof net; 5. positioning rod; 6. hanging rod; 7. first magnet; 8. first iron block; 9. second iron block; 10. second magnet; 11. movable groove; 12. rubber plate; 13. pin; 14. coil spring; 15. clamp. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0028] See also Figure 1-5A water conservancy river slope protection device comprises a pressure rod 1, a fixing component 2 and a dustproof net 4. The pressure rod 1 is on the dustproof net 4. The four corners of the pressure rod 1 are all inclined. After the pressure rod 1 is connected, a cavity for the fixing component 2 to pass through is left in the center. Positioning rods 5 are provided near both ends of the pressure rod 1. The fixing component 2 is plugged into the positioning rod 5 on the adjacent pressure rod 1.

[0029] The fixing component 2 includes a fixing rod 201 and a positioning plate 202. The positioning plate 202 is arranged on the side of the fixing rod 201 and has a hole for plugging with the positioning rod 5. A cone head 205 is arranged under the fixing rod 201. An anchoring component 3 is arranged inside the fixing rod 201. A movable groove 11 is arranged on the side of the fixing rod 201 to provide sliding limit for the anchoring component 3. First pull rings 203 are arranged on both sides of the top of the fixing rod 201.

[0030] In the utility model, a positioning plate 202 and a fixing rod 201 are provided, the fixing rod 201 can be inserted into the soil and fixed, and the positioning plate 202 is connected with the positioning rod 5 on the pressure rod 1, so that the pressure rod 1 is firmly fixed, and the pressure rod 1 is firmly pressed on the slope protection, so that the dustproof net 4 can be pressed and fixed, and the effect of regional division is achieved, the dustproof net 4 is used to reduce the generation of dust, and the pressure rod 1 is used to buffer the impact and flow of rainwater, thereby reducing soil and water loss caused by water flow impact.

[0031] The anchoring component 3 includes a slide bar 301 passing through the top of the fixing rod 201, a support plate 303 is provided in the positioning rod 5 to slide with the slide bar 301, a connecting plate 306 is provided at the bottom of the slide bar 301, and both sides of the connecting plate 306 are hinged with an inverted rod 304, and the other end of the inverted rod 304 extends to the outside of the fixing rod 201 through the movable groove 11;

[0032] By setting the sliding rod 301 and the inverted rod 304, after the fixed rod 201 is inserted into the soil, the sliding rod 301 is pulled upward, and the sliding rod 301 drives the inverted rod 304 upward through the connecting plate 306. The inverted rod 304 moves obliquely upward under the restriction of the movable groove 11, and then unfolds and is inserted into the soil. Then the inverted rod 304 uses the movable groove 11 to fix the fixed rod 201, so that the fixed rod 201 will not be pulled out accidentally.

[0033] A threaded tube 204 is provided under the fixing rod 201, and a cone head 205 is connected to the fixing rod 201 through the threaded tube 204, and a nut sleeve 206 is provided on the outer side of the cone head 205;

[0034] By setting the threaded tube 204 and the nut sleeve 206, the threaded tube 204 can detachably connect the fixing rod 201 and the cone head 205. On the one hand, it is convenient for recycling the fixing rod 201 to repair the worn cone head 205. On the other hand, the fixing rod 201 can be disassembled to facilitate the maintenance of the internal anchoring component 3 so that it can be recycled many times, and the nut sleeve 206 can facilitate the installation and removal of the cone head 205.

[0035] A spring 305 is provided in the cone head 205, and the top end of the spring 305 is in contact with the bottom end of the connecting plate 306;

[0036] By setting the spring 305, the spring 305 can apply an upward thrust to the connecting plate 306, so that the connecting plate 306 can drive the inverted rod 304 to be firmly inserted into the soil, preventing the connecting plate 306 and the inverted rod 304 from slipping due to vibration and other problems, thereby ensuring the firmness and stability of its anchoring work.

[0037] A second pull ring 302 is provided on the top of the slide bar 301, and the second pull ring 302 is rotatably connected to the slide bar 301;

[0038] By providing the second pull ring 302, the second pull ring 302 can be easily stretched toward the slide bar 301, which is convenient for the inverted anchoring work, and the pull ring utilizes the rotational connection between itself and the slide bar 301 so that it can be rotated to the side when not in use, which is convenient for affecting the work of pressing the slide bar 301 downward.

[0039] Two rubber plates 12 are provided in the movable groove 11, and the two rubber plates 12 are engaged with each other;

[0040] By setting the rubber plates 12, the two mutually interlocking rubber plates 12 can close the movable groove 11. At the same time, when the inverted rod 304 moves, the rubber plates 12 can be squeezed open, and the squeezed rubber plates 12 can automatically reset using their own elasticity. Using such a setting method, soil can be prevented from falling into the fixing rod 201, thereby preventing the supporting work of the sliding rod 301 and the connecting plate 306 from being affected.

[0041] A pin 13 is hinged under the pressure rod 1, a coil spring 14 connected to the pressure rod 1 is provided on the side of the pin 13, a hanging rod 6 is provided at the center of the pin 13, and a clamp 15 is provided under the pressure rod 1 at a position corresponding to the rotation path of the hanging rod 6;

[0042] By setting up the hanging rod 6, the hanging rod 6 can be inserted into the soil after being unfolded, so that it can hang the dustproof net 4 to prevent the dustproof net 4 from sliding and falling off, further ensuring the firmness of the protection. At the same time, the coil spring 14 can keep the hanging rod 6 vertical, and the clamp 15 can fix the hanging rod 6 horizontally under the pressure rod 1, which is convenient for the stacking and placement of the pressure rod 1.

[0043] The inclined surfaces at both ends of the pressure rod 1 are respectively provided with a first magnet 7, a second magnet 10, a first iron block 8 and a second iron block 9. The first magnet 7 and the second magnet 10 are arranged diagonally, and the first iron block 8 and the second iron block 9 are arranged diagonally.

[0044] By setting the first magnet 7 and the second magnet 10, the first magnet 7 and the second magnet 10 can adsorb the adjacent first iron block 8 and the second iron block 9 after the pressure rod 1 is spliced, so as to achieve a temporary fixing effect, which can improve the efficiency of installation, and the first magnet 7 and the second magnet 10 are set diagonally so that the first magnet 7 and the second magnet 10 can avoid each other after the direction is changed, avoiding the problem of being unable to adsorb or the magnetic poles repelling each other, so that there is no direction restriction when placing the pressure rod 1.

[0045] Working principle:

[0046] First, the dustproof net 4 is laid on the slope protection, and then the pressure rod 1 is connected at an equal distance, and the first magnet 7 and the second magnet 10 are used to adsorb the first iron block 8 and the second iron block 9, and then the fixing rod 201 is inserted into the gap after the pressure rod 1 is spliced, and the positioning plate 202 is plugged with the positioning rod 5. After the fixing rod 201 is inserted into the soil by the cone head 205, the sliding rod 301 is pulled upward through the second pull ring 302, and the sliding rod 301 drives the inverted rod 304 to move upward through the connecting plate 306. The inverted rod 304 moves obliquely upward under the restriction of the movable groove 11 and is anchored in the soil to achieve the anchoring work of the fixing rod 201;

[0047] When the pressure rod 1 needs to be removed, the slide rod 301 is pressed downward, and the slide rod 301 drives the inverted rod 304 to move downward through the connecting plate 306. The inverted rod 304 shrinks inward under the restriction of the movable groove 11, and then the fixed rod 201 is pulled upward through the first pull ring 203 to pull the fixed rod 201 out.

[0048] The above are only specific embodiments of the utility model, but the technical features of the utility model are not limited thereto. Any simple changes, equivalent replacements or modifications made based on the utility model to solve basically the same technical problems and achieve basically the same technical effects are all included in the protection scope of the utility model.

Claims

1. A water conservancy river slope protection device, characterized in that: It comprises a pressure rod (1), a fixing component (2) and a dustproof net (4), wherein the pressure rod (1) is on the dustproof net (4), the four corners of the pressure rod (1) are all arranged with inclined surfaces, a cavity is left in the center of the pressure rod (1) after docking for the fixing component (2) to pass through, and positioning rods (5) are arranged near both ends of the pressure rod (1), and the fixing component (2) is plugged into the positioning rod (5) on the adjacent pressure rod (1); The fixing component (2) comprises a fixing rod (201) and a positioning plate (202); the positioning plate (202) is arranged on the side of the fixing rod (201) and is provided with a hole for plugging with the positioning rod (5); a cone head (205) is provided under the fixing rod (201); an anchoring component (3) is provided inside the fixing rod (201); and a movable groove (11) is provided on the side of the fixing rod (201) for providing sliding limitation for the anchoring component (3); and first pull rings (203) are provided on both sides of the top of the fixing rod (201).

2. A water conservancy river slope protection device according to claim 1, characterized in that: The anchoring component (3) includes a sliding rod (301) passing through the top of the fixing rod (201), a supporting plate (303) slidably matched with the sliding rod (301) is provided inside the positioning rod (5), a connecting plate (306) is provided at the bottom of the sliding rod (301), and an inverted rod (304) is hinged on both sides of the connecting plate (306), and the other end of the inverted rod (304) extends to the outside of the fixing rod (201) through a movable groove (11).

3. A water conservancy river slope protection device according to claim 1, characterized in that: A threaded tube (204) is provided under the fixing rod (201), the cone head (205) is connected to the fixing rod (201) via the threaded tube (204), and a nut sleeve (206) is provided on the outer side of the cone head (205).

4. A water conservancy river slope protection device according to claim 2, characterized in that: A spring (305) is arranged inside the cone head (205), and the top end of the spring (305) is in contact with the bottom end of the connecting plate (306).

5. A water conservancy river slope protection device according to claim 2, characterized in that: A second pull ring (302) is provided on the top of the sliding rod (301), and the second pull ring (302) is rotatably connected to the sliding rod (301).

6. A water conservancy river slope protection device according to claim 1, characterized in that: Two rubber plates (12) are arranged in the movable groove (11), and the two rubber plates (12) are engaged with each other.

7. A water conservancy river slope protection device according to claim 1, characterized in that: A pin shaft (13) is hingedly connected below the pressure rod (1), a coil spring (14) connected to the pressure rod (1) is provided on the side of the pin shaft (13), a hanging rod (6) is provided at the center of the pin shaft (13), and a clamp (15) is provided below the pressure rod (1) at a position corresponding to the rotation path of the hanging rod (6).

8. A water conservancy river slope protection device according to claim 1, characterized in that: A first magnet (7), a second magnet (10), a first iron block (8) and a second iron block (9) are respectively arranged in the inclined surfaces at both ends of the pressure rod (1); the first magnet (7) and the second magnet (10) are arranged diagonally, and the first iron block (8) and the second iron block (9) are arranged diagonally.