Combined soil fixation and runoff prevention structure and use method thereof
By connecting multiple partition belts with clamping rods and movable rods, a honeycomb lattice chamber is quickly formed, which solves the problems of cumbersome installation and poor stability in the prior art, and achieves efficient and stable installation results.
Patent Information
- Application Number
- CN202510317457.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2025-05-13
AI Technical Summary
The existing honeycomb chamber is cumbersome and has poor stability during installation, resulting in low installation efficiency and inconvenient use.
Multiple partition belts are quickly connected to form a honeycomb chamber through the cooperation of clamping rods and movable rods, ensuring stability and convenient installation.
It realizes rapid installation and stable connection of the honeycomb chamber, improves installation efficiency and convenience of use, and avoids loosening problems.
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Figure CN119981096A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of civil engineering, and in particular to a combined soil-fixing and runoff-prevention structure and a use method thereof. Background Art
[0002] The honeycomb cell is designed to solve the problems of slope surface soil stability and protection, steep slope soil stabilization, hard revetment ecological restoration, etc. It is very suitable for planting slope roofs. While the honeycomb cell has a strong integrity, it can also show a certain flexibility, which can resist deformation and damage under the action of external forces, and effectively make up for the defects of the anti-slip pier-steel frame soil consolidation system in the case of loosening and local damage. At the same time, this measure is convenient to construct and the cost is relatively low. Through the reserved steel bars on the roof and the U-shaped bars welded on the steel frame, the honeycomb cell can be assisted in tensioning and fixing, and the advantages of the honeycomb cell can be maximized. In combination with the structural characteristics of the honeycomb geocell itself, it can slow down the flow rate, reduce the energy of the water flow, and disperse the water flow, thereby reducing the erosion effect of the water flow on the slope soil. The honeycomb geocell has an outstanding adhesion effect on the soil.
[0003] At present, a Chinese patent with an existing patent announcement number of CN112323760B discloses a three-dimensional honeycomb geocell with high lateral permeability, including a hexagonal cell, a hexagonal groove is provided in the hexagonal cell, a hexagonal bottom plate is provided at the bottom of the hexagonal groove, a plurality of first permeable holes are provided on the bottom plate, a plurality of fixed columns arranged in a ring shape with equal intervals are provided on the top of the bottom plate, and every two fixed columns are fixed by two connecting plates, and a plurality of circular holes are provided on the connecting plates; a rectangular groove connected to the hexagonal groove is provided on the six faces of the hexagonal cell, a fixed net is provided in the rectangular groove, and a plurality of second permeable holes are provided on the fixed net; through the coordination between the provided bottom plate, the first permeable holes, the fixed net and the second permeable holes, the problem of poor lateral permeability of the existing geocell is solved, and rainwater on the slope will only flow on the surface, causing easy loss of soil.
[0004] The Chinese patent with the existing patent announcement number CN215801534U discloses a honeycomb geocell, including a honeycomb geocell body, a plug plate, a slot and Velcro, wherein a first connection block is installed at one end of the honeycomb geocell body, a second connection block is installed at the other end of the honeycomb geocell body, a plug plate is welded at one end of the first connection block away from the honeycomb geocell body, a slot is provided in the second connection block, fixing grooves are provided on both sides of the honeycomb geocell body, Velcro is respectively fitted and fixed inside the two fixing grooves, and round holes are provided on both sides of the honeycomb geocell body. It has the advantages of simple structure, convenient operation, simple installation and disassembly, convenient replacement of damaged honeycomb geocells, and reduced use cost.
[0005] However, during the implementation of the above technical solution, it was found that there were at least the following technical problems:
[0006] The installation is cumbersome and the stability is poor: when the existing honeycomb cells are used, in order to ensure the stability of the honeycomb cells, different connection methods need to be selected according to different materials. For example, the honeycomb cells made of metal materials need to be welded; and the honeycomb cells made of flexible materials need to be processed by sewing or bonding, so as to connect the strip raw materials into Figure 1 The grid shape shown in the figure has to consider the difficulty of processing and the convenience of transportation;
[0007] If the finished product (honeycomb cells, as a whole) is made in advance, a large-scale transportation device will be needed for transportation, and for the metal honeycomb cells (after welding, the metal honeycomb cells will not fit together completely due to the influence of the weld), a lot of space will be taken up;
[0008] If processing (welding, stitching, bonding, etc.) is carried out after reaching the designated location, the processing equipment needs to be brought to the construction site, which seriously affects the timely use of the honeycomb cells;
[0009] The existing solution is to adopt a splicing method, which can be divided into two cases according to different materials. One is to use hard materials (such as CN112323760B). Since hard materials are not easy to deform and fold, they need to occupy a lot of space; the other is to use flexible materials (such as CN215801534U). Although this method can reduce the space during transportation, it has no specific shape, so it takes a lot of effort to fix the device. For this reason, we propose a combined soil-fixing and runoff prevention structure and its use method. Summary of the invention
[0010] 1. Technical issues to be resolved
[0011] In view of the deficiencies in the prior art, the present invention provides a combined soil-fixing and anti-runoff structure and a method of using the same, which solve the technical problems of the existing honeycomb cells being cumbersome to install and having poor stability when in use.
[0012] (II) Technical solution
[0013] To achieve the above objectives, the present invention is implemented through the following technical solutions:
[0014] A combined soil-fixing and anti-runoff structure includes a plurality of dividing strips for making honeycomb cells. When the dividing strips need to be made into honeycomb cells, two dividing strips are first combined together, and then a mounting seat is installed on the dividing strips. During installation, two clamping rods at the bottom of the mounting seat are respectively located outside the two dividing strips, so that the two dividing strips cannot move freely. Then, the movable rod at the bottom of the mounting seat is pressed to insert the movable rod into the gap between the two dividing strips. The movable rod is continued to be pressed to move outward, thereby squeezing the originally fitted dividing strips into a ring shape. Similarly, multiple dividing strips are installed together to form a honeycomb-shaped honeycomb cell:
[0015] A plurality of mutually fitting dividing strips are in the shape of strips, and the dividing strips for treatment are in the shape of rectangular strips;
[0016] A connecting portion is connected between two adjacent dividing strips, and can connect a plurality of the dividing strips together, so that the dividing strips are connected into a honeycomb shape, i.e., a honeycomb cell;
[0017] The connection part includes a mounting seat, and the bottom of the mounting seat is connected to two mutually opposed clamping rods, and the two adjacent dividing strips are clamped by the clamping rods, so that the tightness of the connection between the mounting seat and the dividing strip can be maintained, and it is also convenient for the subsequent movable rod to be inserted between the two dividing strips. Therefore, through this structure, the connection of the mounting seat and the positioning of the movable rod are completed at the same time;
[0018] Two movable rods are also provided at the bottom of the mounting seat, and the movable rods are located between the two clamping rods and can be inserted into the gap between two adjacent dividing strips. Under the squeezing action of the movable rods, the two dividing strips are separated from each other to form a shape.
[0019] The spacing between the clamping rods is greater than twice the thickness of the dividing strips, so that two dividing strips can be clamped at the same time, and the end of the clamping rod is arc-shaped, which is convenient for clamping the clamping rod onto the dividing strip; wherein, when the clamping rod is connected between two adjacent dividing strips, the movable rod on the mounting seat corresponds to the gap between the two dividing strips.
[0020] Preferably, an impact cover is provided above the two mounting seats, and the two side panels at the bottom of the impact cover are respectively located on both sides of the mounting seat, and the side panels correspond to the movable rods on the mounting seat, so when the impact cover is pressed or hammered, the side panels on both sides thereof can be driven to move downward. Since the side panels correspond to the movable rods at the bottom of the mounting seat, when the impact cover is pressed, the movable rods can be flipped downward, as shown in Figures , , and , so that the movable rods can enter between the two dividing strips.
[0021] Preferably, a roller is connected to the end of the side panel, and the side panel is fitted with the outer wall of the movable rod through the roller, thereby reducing the friction between the side panel and the movable rod, making it convenient for the side panel to stably squeeze the movable rod. The part where the movable rod and the roller fit together is arc-shaped, reducing the difficulty of rolling the roller, thereby transmitting the impact force received by the impact cover to the movable rod.
[0022] Preferably, a guide rod is installed at the bottom of the impact cover, and the impact cover is plugged into the guide groove at the top of the mounting seat through the guide rod, so that the moving direction of the impact cover can be guaranteed, thereby avoiding the movable rod from moving out of position; wherein, the guide groove extends from the top of the mounting seat to the inside of the clamping rod, thereby providing sufficient space for the guide groove, and at the same time avoiding the guide rod from moving back and forth to affect the movable rod.
[0023] Preferably, an embedding groove is provided on the outer wall of the movable rod, and when the mounting seat and the impact cover are in contact, the roller corresponds to the embedding groove, and the roller hooks the embedding groove, so that the movable rod cannot move further, thereby locking the movable rod.
[0024] Preferably, arc-shaped sliding grooves are provided on both sides of the movable rod, and the width of the sliding grooves increases continuously from the middle of the movable rod to the end away from the mounting seat. The two sliding grooves correspond to the two dividing strips respectively, so that when the movable rod squeezes the dividing strip, the dividing strip can be pushed outward, thereby separating the two dividing strips.
[0025] Preferably, a spring sheet is installed on the inner side of the movable rod, and one end of the spring sheet is fixedly connected to the movable rod, and the other end extends to a reserved groove on the surface of the movable rod; moreover, when the two movable rods are parallel, the spring sheets on the movable rods fit together, thereby limiting the two movable rods from getting closer, thereby allowing the movable rods to expand outward, thereby improving the stability of the engagement between the embedded groove and the roller.
[0026] Preferably, a rack is installed on the inner side of the movable rod, and a barb is provided on the outer side of the rack; thus, when the two movable rods are parallel, the two racks are staggered with each other, and the barbs on the racks are interlocked with each other, thereby locking the position of the movable rod and preventing it from moving and falling.
[0027] In addition, in order to ensure the stability of the soil in the honeycomb cells, a net can be installed in the space of the honeycomb cells, and then filled with soil. After the plants are planted, the roots of the plants can pass through the holes in the net, so that the roots of the plants can be entangled with the net, thus fixing the soil and the plants to the honeycomb cells.
[0028] (III) Beneficial effects
[0029] 1. Since two clamping rods are used to clamp the two dividing strips, and then the movable rod is inserted between the two dividing strips, the technical problems of the existing honeycomb cells being cumbersome to install and having poor stability during use are effectively solved, and the dividing strips are connected into honeycomb cells, which can not only quickly complete the installation of the honeycomb cells, but also maintain the stability of the honeycomb cells and prevent the honeycomb cells from loosening.
[0030] 2. Since an impact cover with a side panel is used and the rollers on the side panel squeeze the movable rod, the technical problems of the existing honeycomb cells being complicated to install and having poor stability during use are effectively solved, thereby achieving rapid installation of the connection part and reducing the difficulty of adjusting the movable rod.
[0031] 3. The movable rod with an embedded groove is connected to the roller on the side panel, thereby fixing the position of the movable rod, thereby ensuring the stability of the connection between the connecting part and the dividing strip and preventing the connecting part from loosening.
[0032] 4. The two movable rods are expanded outward by squeezing each other by the spring sheets, thereby achieving a stable fit between the embedding groove and the roller, thereby preventing the roller from slipping out of the embedding groove.
[0033] 5. Since the two movable rods are connected together by a rack with barbs, the position of the movable rod is fixed, thereby ensuring the stability of the connection between the connecting part and the dividing strip and preventing the connecting part from loosening. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] The above description is only an overview of the technical solution of the present invention. In order to more clearly understand the technical means of the present invention and implement it according to the contents of the specification, the following is a detailed description of the preferred embodiments of the present invention in conjunction with the accompanying drawings.
[0035] Figure 1 is an overall structural diagram of an embodiment of the present invention;
[0036] Figure 2 This is one of the structural diagrams of the connecting portion in an embodiment of the present invention;
[0037] Figure 3 This is the second structural diagram of the connecting portion in an embodiment of the present invention;
[0038] Figure 4 An exploded structural diagram of a connecting portion in an embodiment of the present invention;
[0039] Figure 5 A diagram showing the connection structure between the mounting seat and the clamping rod in an embodiment of the present invention;
[0040] Figure 6It is a schematic diagram of the structure of the mounting base and the impact cover in an embodiment of the present invention;
[0041] Figure 7 This is a bottom structural diagram of the connecting portion in an embodiment of the present invention;
[0042] Figure 8 A schematic diagram of the opening and closing of the movable rod in an embodiment of the present invention;
[0043] Fig. 9 A structural diagram of a movable rod in an embodiment of the present invention;
[0044] Fig.10 This is a schematic diagram of the installation of the connecting part in an embodiment of the present invention;
[0045] Fig.11 This is one of the structural diagrams of the connection portion in Example 5 of the present invention;
[0046] Fig.12 This is the second structural diagram of the connection part in Embodiment 5 of the present invention;
[0047] Fig.13 Schematic diagram of the opening and closing of the movable rod in Example 5 of the present invention.
[0048] Legend: 1. Dividing strip; 2. Connecting part; 21. Mounting seat; 22. Clamping rod; 23. Movable rod; 24. Impact cover; 25. Side plate; 26. Roller; 27. Guide rod; 28. Spring piece; 29. Rack. DETAILED DESCRIPTION
[0049] The embodiment of the present application provides a combined soil-fixing and anti-runoff structure and a method for using the same, so as to solve the technical problems of the existing honeycomb cells in the prior art that the installation is cumbersome and the stability is poor when in use. When the existing honeycomb cells are in use, two clamping rods are used to clamp the two dividing strips, and then a movable movable rod is inserted between the two dividing strips to connect the dividing strips into a honeycomb cell, which can not only quickly complete the installation of the honeycomb cells, but also maintain the stability of the honeycomb cells and prevent the honeycomb cells from loosening; an impact cover with a side plate is used, and the rollers on the side plate are used to squeeze the movable rod, so as to achieve a quick connection. Installation, at the same time, can also reduce the difficulty of adjusting the movable rod; because the movable rod with an embedded groove is correspondingly engaged with the roller on the side panel, the position of the movable rod is fixed, thereby ensuring the stability of the connection between the connecting part and the dividing strip, and avoiding loosening of the connecting part; because the two movable rods are expanded outward by the mutual squeezing of the spring pieces, the stable fit between the embedded groove and the roller is achieved, and the roller is avoided from slipping out of the embedded groove; because the two movable rods are connected together by a rack with a barb, the position of the movable rod is fixed, thereby ensuring the stability of the connection between the connecting part and the dividing strip, and avoiding loosening of the connecting part.
[0050] Example 1
[0051] The technical solution in the embodiment of the present application is to solve the technical problems of the existing honeycomb cells in the prior art that the installation is cumbersome and the stability is poor when in use. The overall idea is as follows:
[0052] In view of the problems existing in the prior art, the present invention provides a combined soil-fixing and anti-runoff structure, which includes a plurality of dividing strips 1 for making honeycomb cells. When the dividing strips 1 need to be made into honeycomb cells, two dividing strips 1 are first merged together, and then the mounting seat 21 is installed on the dividing strips 1. During installation, the two clamping rods 22 at the bottom of the mounting seat 21 are respectively located on the outsides of the two dividing strips 1. At this time, the two dividing strips 1 cannot move freely. Then, the movable rod 23 at the bottom of the mounting seat 21 is pressed to insert the movable rod 23 into the gap between the two dividing strips 1. The movable rod 23 is continued to be pressed to move the movable rod 23 outward, thereby squeezing the originally fitted dividing strips 1 into a ring shape. Similarly, multiple dividing strips 1 are installed together to form a honeycomb-shaped honeycomb cell:
[0053] A plurality of mutually attached dividing strips 1 are in a strip shape, and the dividing strips 1 to be processed are in a rectangular strip structure (they may be non-wavy, or wavy dividing strips 1 may be used directly);
[0054] The connecting portion 2 is connected between two adjacent dividing strips 1, and can connect multiple dividing strips 1 together, so that the dividing strips 1 are connected into a honeycomb shape, such as Figure 1 As shown, it is a honeycomb cell;
[0055] The connecting portion 2 includes a mounting seat 21, and the bottom of the mounting seat 21 is connected to two mutually opposed clamping rods 22 (the length of the clamping rod 22 can be adjusted as needed, such as making the length of the clamping rod 22 greater than the width of the dividing strip 1, so that the clamping rod 22 can be inserted into the ground, thereby pressing the dividing strip 1 to the ground), and the two adjacent dividing strips 1 are clamped by the clamping rod 22, so that the tightness of the connection between the mounting seat 21 and the dividing strip 1 can be maintained, and it is also convenient for the subsequent movable rod 23 to be inserted between the two dividing strips 1. Therefore, through this structure, the connection of the mounting seat 21 and the positioning of the movable rod 23 are completed at the same time;
[0056] Two movable rods 23 are also provided at the bottom of the mounting seat 21, and the movable rods 23 are located between the two clamping rods 22 and can be inserted into the gap between two adjacent dividing strips 1. Fig.10 As shown, the two separation strips 1 are separated from each other under the extrusion of the movable rod 23, forming a Fig.10 Shape shown.
[0057] The spacing between the clamping rods 22 is greater than twice the thickness of the dividing strip 1, so that two dividing strips 1 can be clamped at the same time, and the end of the clamping rod 22 is arc-shaped, which is convenient for clamping the clamping rod 22 onto the dividing strip 1; wherein, when the clamping rod 22 is connected between two adjacent dividing strips 1, the movable rod 23 on the mounting seat 21 corresponds to the gap between the two dividing strips 1, such as Fig.10 shown.
[0058] In the specific implementation process, when the dividing strip 1 needs to be made into a honeycomb cell, the two dividing strips 1 are first merged together, and then the mounting seat 21 is installed on the dividing strip 1. During installation, the two clamping rods 22 at the bottom of the mounting seat 21 are respectively located on the outside of the two dividing strips 1, such as Fig.10 As shown (rightmost), at this time, the two dividing strips 1 cannot move freely, and then the movable rod 23 at the bottom of the mounting seat 21 is pressed so that the movable rod 23 is inserted into the gap between the two dividing strips 1, as shown in FIG. Fig.10 As shown in the middle, the movable rod 23 is then pressed continuously to move the movable rod 23 outwards. At this time, the two movable rods 23 are parallel to each other. Fig.10 As shown (far left), the originally fitted dividing strips 1 are squeezed into a ring shape, and similarly, multiple dividing strips 1 are installed together to form a honeycomb-like honeycomb cell.
[0059] Example 2
[0060] Based on Example 1, the embodiment of the present application is to reduce the difficulty of moving the movable rod. The overall idea is as follows:
[0061] An impact cover 24 is provided above the two mounting seats 21, and two side plates 25 at the bottom of the impact cover 24 are respectively located on both sides of the mounting seat 21, and the side plates 25 correspond to the movable rods 23 on the mounting seat 21, so when the impact cover 24 is pressed or struck, the side plates 25 on both sides thereof can be driven to move downward, and since the side plates 25 correspond to the movable rods 23 at the bottom of the mounting seat 21, when the impact cover 24 is pressed, the movable rods 23 can be flipped downward, such as Figure 2 , Figure 3 as well as Figure 8 As shown, the movable rod 23 can enter between the two dividing strips 1.
[0062] In some examples, a roller 26 is connected to the end of the side panel 25, and the side panel 25 is fitted to the outer wall of the movable rod 23 through the roller 26, thereby reducing the friction between the side panel 25 and the movable rod 23, making it convenient for the side panel 25 to stably squeeze the movable rod 23. The fitting part between the movable rod 23 and the roller 26 is arc-shaped, which reduces the difficulty of rolling the roller 26, thereby transmitting the impact force received by the impact cover 24 to the movable rod 23.
[0063] In some examples, a guide rod 27 is installed at the bottom of the impact cover 24, and the impact cover 24 is plugged into the guide groove at the top of the mounting seat 21 through the guide rod 27, so that the movement direction of the impact cover 24 can be guaranteed, thereby preventing the movable rod 23 from moving out of position; wherein, the guide groove extends from the top of the mounting seat 21 to the inside of the clamping rod 22, thereby providing sufficient space for the guide groove, and at the same time preventing the guide rod 27 from moving back and forth and affecting the movable rod 23.
[0064] In the specific implementation process, when it is necessary to flip the movable rod 23 downward, the impact cover 24 is pressed or hammered to drive the side plates 25 on both sides thereof to move downward. Since the side plates 25 correspond to the movable rod 23 at the bottom of the mounting seat 21, the movable rod 23 can be flipped downward when the impact cover 24 is pressed. Figure 2 , Figure 3 as well as Figure 8 As shown, the movable rod 23 can enter between the two dividing strips 1, and the deformed dividing strip 1 is clamped between the movable rod 23 and the clamping rod 22, and the dividing strip 1 at this position is deformed, so that the dividing strip 1 cannot move.
[0065] Example 3
[0066] Based on any one of Embodiments 1-2, the embodiment of the present application is a technical solution for limiting the position of the movable rod, and the overall idea is as follows:
[0067] An embedding groove is provided on the outer wall of the movable rod 23 , and when the mounting seat 21 and the impact cover 24 are fitted together, the roller 26 corresponds to the embedding groove, and the roller 26 hooks the embedding groove, so that the movable rod 23 cannot move further, thereby locking the movable rod 23 .
[0068] In some examples, arc-shaped slide grooves are provided on both sides of the movable rod 23, and the width of the slide grooves increases from the middle of the movable rod 23 to the end away from the mounting seat 21, and the two slide grooves correspond to the two dividing strips 1 respectively. Fig. 9 As shown, when the movable rod 23 squeezes the dividing strip 1, the dividing strip 1 can be pushed outward, thereby separating the two dividing strips 1.
[0069] Example 4
[0070] Based on Example 3, the present application embodiment is a support structure that can be matched with an embedded groove, and the overall idea is as follows:
[0071] A spring sheet 28 is installed on the inner side of the movable rod 23, and one end of the spring sheet 28 is fixedly connected to the movable rod 23, and the other end extends to the reserved groove on the surface of the movable rod 23; moreover, when the two movable rods 23 are parallel, the spring sheets 28 on the movable rods 23 fit each other, which can limit the two movable rods 23 from getting closer, thereby allowing the movable rods 23 to expand outward, thereby improving the stability of the buckling between the embedded groove and the roller 26.
[0072] Example 5
[0073] Based on any one of Embodiments 1-2, the embodiment of the present application is a technical solution for limiting the position of the movable rod, and the overall idea is as follows:
[0074] A rack 29 is installed on the inner side of the movable rod 23, and a barb is provided on the outer side of the rack 29; so that when the two movable rods 23 are parallel, the two racks 29 are staggered with each other, and the barbs on the racks 29 are interlocked with each other, such as Figure 11-13 As shown, the position of the movable rod 23 is locked so that it cannot move or fall.
[0075] In addition, in order to ensure the stability of the soil in the honeycomb cells, a net can be installed in the space of the honeycomb cells, such as Fig.10 As shown, soil is then filled in, so that after the plants are planted, the roots of the plants can pass through the holes in the net, so that the roots of the plants are wrapped around the net, thus fixing the soil and the plants in the honeycomb cells.
[0076] Finally, it should be noted that: Obviously, the above embodiments are only examples for clearly explaining the present invention, and are not intended to limit the implementation methods. For ordinary technicians in the relevant field, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to list all the implementation methods here. The obvious changes or modifications derived from this are still within the scope of protection of the present invention.
Claims
1. A combined soil consolidation and runoff prevention structure, characterized in that: The soil consolidation and runoff prevention structure includes: A plurality of mutually fitting separation strips (1); A connecting portion (2) connected between two adjacent separation strips (1) and capable of connecting a plurality of the separation strips (1) together; The connecting portion (2) comprises a mounting seat (21), and the bottom of the mounting seat (21) is connected to two mutually opposed clamping rods (22), and two adjacent separation strips (1) are clamped by the clamping rods (22); Two movable rods (23) are also provided at the bottom of the mounting seat (21), and the movable rods (23) are located between the two clamping rods (22) and can be inserted into the gap between two adjacent separation strips (1).
2. A combined soil consolidation and runoff prevention structure according to claim 1, characterized in that: An impact cover (24) is provided above the two mounting seats (21), and two side plates (25) at the bottom of the impact cover (24) are respectively located on both sides of the mounting seats (21); The side plate (25) corresponds to the movable rod (23) on the mounting seat (21); and when the mounting seat (21) and the impact cover (24) are in contact with each other, the side plate (25) is located outside the movable rod (23).
3. A combined soil consolidation and runoff prevention structure according to claim 2, characterized in that: A guide rod (27) is installed at the bottom of the impact cover (24), and the impact cover (24) is plugged into the guide groove at the top of the mounting seat (21) through the guide rod (27); The guide groove extends from the top of the mounting seat (21) to the inside of the clamping rod (22).
4. The combined soil consolidation and runoff prevention structure according to claim 2, characterized in that: The end of the side plate (25) is connected to a roller (26), and the side plate (25) is in contact with the outer wall of the movable rod (23) through the roller (26); The contacting part between the movable rod (23) and the roller (26) is in an arc shape.
5. A combined soil consolidation and runoff prevention structure as claimed in claim 4, characterized in that: An embedding groove is provided on the outer wall of the movable rod (23), and when the mounting seat (21) and the impact cover (24) are fitted together, the roller (26) corresponds to the embedding groove.
6. The combined soil consolidation and runoff prevention structure according to claim 1, characterized in that: Both sides of the movable rod (23) are provided with arc-shaped sliding grooves, and the width of the sliding grooves increases gradually from the middle of the movable rod (23) to the end away from the mounting seat (21); Wherein, the two slide grooves correspond to the two dividing strips (1) respectively.
7. The combined soil consolidation and runoff prevention structure according to claim 1, characterized in that: The spacing between the clamping rods (22) is greater than twice the thickness of the dividing strip (1), and the ends of the clamping rods (22) are arc-shaped; Wherein, when the clamping rod (22) is connected between two adjacent dividing strips (1), the movable rod (23) on the mounting seat (21) corresponds to the gap between the two dividing strips (1).
8. A combined soil consolidation and runoff prevention structure according to any one of claim 4, characterized in that: A spring sheet (28) is installed on the inner side of the movable rod (23), and one end of the spring sheet (28) is fixedly connected to the movable rod (23), and the other end extends into a reserved groove on the surface of the movable rod (23); When the two movable rods (23) are parallel, the spring sheets (28) on the movable rods (23) fit each other.
9. A combined soil consolidation and runoff prevention structure according to any one of claims 1 to 7, characterized in that: A rack (29) is installed on the inner side of the movable rod (23), and a barb is provided on the outer side of the rack (29); When the two movable rods (23) are parallel, the two racks (29) are interlaced with each other, and the barbs on the racks (29) are interlocked with each other.
10. A method for using a combined soil consolidation and runoff prevention structure, using a combined soil consolidation and runoff prevention structure as claimed in any one of claims 1 to 9, characterized in that: The method of use includes the following steps: Installation: Place the mounting seat (21) above the dividing strip (1), and allow the dividing strip (1) to be clamped by two clamping rods (22); Pressing: Pressing the movable rod (23) at the bottom of the mounting seat (21) to insert the movable rod (23) into the gap between the two separation strips (1).
Citation Information
Patent Citations
A three-dimensional honeycomb geocell with high lateral permeability
CN112323760B
Honeycomb geocell
CN215801534U