Binding structure for mounting Reynolds protection pad
By using splicing to strengthen angle steel and fixed bundling structure at the splicing of Renault pads, the problems of low installation efficiency and poor aesthetics of Renault pads are solved, and efficient and high-strength splicing effect is achieved.
Patent Information
- Application Number
- CN202422616030.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-29
AI Technical Summary
During the installation process of Renault pads, each plate piece needs to be manually tied at multiple points, resulting in low on-site installation efficiency and easy to twist at the splicing, affecting the aesthetics and strength.
Spliced reinforced angle steel is used to support the splicing of the plate parts. The main bundling wire and auxiliary bundling structure are fixed to the splicing reinforced angle steel to simplify the bundling process and enhance the straightness and strength of the splicing.
It improves the straightness and aesthetics of the splicing of Renault pads, reduces the difficulty and time of on-site installation, enhances the strength of the splicing, and facilitates the recycling of the structure.
Smart Images

Figure CN223255941U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of Reynolds mattress bundling structures, in particular to a bundling structure for installing a Reynolds mattress. Background Art
[0002] A Reno mat, also known as a gabion mat or gabion mat, is a mat-shaped construction component composed of a machine-woven, double-twisted hexagonal metal mesh. Its thickness is significantly smaller than its length and width. It is primarily used for scour prevention in water conservancy embankments, bank slopes, and floodplains, and offers the advantages of flexibility and adaptability to the foundation. To use a Reno mat, the bulkheads and front and rear panels must be erected and secured with wire at the corners. After stone loading, the cover plate is wired together with the upper edges of the side panels, end panels, and bulkheads to ensure a secure and reliable cover.
[0003] The panels of a Reno mattress are usually manually tied together by workers using steel wire, and each panel connection usually requires multi-point tying. This results in workers frequently threading steel wire and twisting the ties during on-site installation, which makes on-site installation work less efficient. In addition, if steel wire tying is performed directly, the splicing lines at the joints of the panels may become crooked due to lack of support, thereby affecting the overall aesthetics. Therefore, to address the above problems, a tying structure for installing a Reno mattress is proposed. Utility Model Content
[0004] The technical problem to be solved by the present invention is to provide a bundling structure for installing a Reynolds pad. The bundling structure of the Reynolds pad can play a supporting role at the splicing point of the plate parts by splicing reinforcing angle steel, thereby ensuring the flatness of the splicing point to a certain extent, improving the overall aesthetics and enhancing the strength of the splicing point. At the same time, during bundling, since the main bundling wire and the auxiliary bundling structure are all fixed on the splicing reinforcing angle steel, it is only necessary to place the splicing reinforcing angle steel so that the main bundling wire and the auxiliary bundling structure thereon can pass through the plate mesh of the Reynolds pad, eliminating the step of threading the wire, shortening the time for on-site installation, and reducing the difficulty of on-site operations. It solves the technical problems in the prior art that multiple-point bundling is required between the various plates of the Reynolds pad, resulting in low on-site installation efficiency, and the lack of support at the plate splicing point makes it easy for the splicing lines to be crooked, affecting the overall aesthetics.
[0005] The technical solution adopted by the embodiment of the present application to solve the technical problem is:
[0006] A bundling structure for installing a Reynolds pad includes a spliced reinforcing angle steel, which is arranged at the splicing location where the plates of the Reynolds pad are installed; a main bundling wire, one end of which passes through the middle of the spliced reinforcing angle steel and extends outward, and the other end is connected to an anchor plate arranged in the spliced reinforcing angle steel. The main bundling wire is used to bundle the Reynolds pad and the spliced reinforcing angle steel into one, and an auxiliary bundling structure is arranged on both sides of the spliced reinforcing angle steel to achieve preliminary fixation of the spliced reinforcing angle steel and the Reynolds pad.
[0007] Through the above-mentioned structural form, the spliced reinforcing angle steel can play a supporting role at the splicing of the plates, thereby ensuring the flatness of the splicing joints to a certain extent, improving the overall aesthetics while also enhancing the strength of the splicing joints. At the same time, when bundling, since the main bundling wire and the auxiliary bundling structure are all fixed on the spliced reinforcing angle steel, it is only necessary to place the splicing reinforcing angle steel so that the main bundling wire and the auxiliary bundling structure on it can pass through the plate mesh of the Reno pad, which can shorten the on-site installation time and reduce the difficulty of on-site operations.
[0008] In a possible implementation, a support tube is fixedly provided inside the spliced reinforcement angle steel, through which a main tying wire is passed, and tying holes for the auxiliary tying structure to pass through are opened on both sides of the spliced reinforcement angle steel.
[0009] Through the above-mentioned structural form, the provided resistance tube and the bundling through-hole can provide the necessary structural foundation for the main bundling wire and the auxiliary bundling structure to pass through the spliced reinforcing angle steel to achieve bundling.
[0010] In a possible implementation, the anchor plate includes a base plate, on which anchor holes are formed for the main tying wires to pass through, and on which symmetrically arranged reinforcement plates are fixed.
[0011] With the above-mentioned structural form, the reinforcing plate can be used to improve the overall bending strength of the base plate, thereby preventing it from bending under the tension of the main binding wire and becoming unreusable.
[0012] In a possible implementation, the end of the main tying wire is fixedly connected to an anchor end block, and the diameter of the anchor end block is larger than the aperture of the anchor hole.
[0013] Through the above-mentioned structural form, the clamping effect between the anchor end block and the base plate can fix the end of the main tying wire when it is pulled. At the same time, this structural form can facilitate the separation of the main tying wire and the anchor plate, which is convenient for subsequent reuse.
[0014] In a possible implementation, the auxiliary bundling structure includes a connecting plate, to which two positioning bundling wires are fixedly connected, and the positioning bundling wires pass through bundling through holes.
[0015] Through the above-mentioned structural form, during the initial fixation, the spliced reinforcement angle steel can be tied to the mesh plate of the Reno mattress by winding and tightening the positioning binding wire. At the same time, since the auxiliary binding structure and the spliced reinforcement angle steel are detachably connected, the auxiliary binding structure can be easily replaced during subsequent use.
[0016] In a possible implementation, the end of the spliced reinforcing angle steel is clamped with a cover curved plate, wherein the end of the spliced reinforcing angle steel is fixedly provided with a clamping ridge, and the end of the cover curved plate is provided with a clamping groove matching the clamping ridge.
[0017] Through the above-mentioned structural form, the setting of the cover curved plate can prevent the anchor plate, main tying wire and auxiliary tying structure from being completely separated from the spliced reinforcing angle steel during installation, thereby improving the convenience during use. At the same time, it is detachably connected to the spliced reinforcing angle steel, so when replacing the above-mentioned structure, it is only necessary to remove the cover curved plate to complete the replacement.
[0018] In a possible implementation, a plug-in shaft is fixedly provided at one end of the spliced reinforcement angle steel, and a plug-in cylinder is fixedly provided at the other end thereof, and the size of the plug-in shaft matches the size of the opening of the plug-in cylinder.
[0019] Through the above-mentioned structural form, the splicing between adjacent spliced reinforcing angle steels can be achieved, thereby making the installation node of the Reno pad have higher integrity and thus higher strength.
[0020] In a possible implementation, both ends of the base plate are processed to form inclined surfaces, and when the inclined surfaces at both ends are in contact with the inner wall of the spliced reinforcement angle steel, the front end surface is in close contact with the abutment tube at the same time.
[0021] The above structure ensures that when the base plate is under tension, a larger force transmission area can be formed between the base plate and the spliced reinforcement angle steel, thereby preventing the base plate from being deformed due to local stress concentration.
[0022] In summary, the present invention has the following beneficial technical effects:
[0023] The splicing reinforcement angle steel can play a supporting role at the plate joints, thereby ensuring the flatness of the joints to a certain extent, improving the overall aesthetics while also enhancing the strength of the joints;
[0024] At the same time, when bundling, since the main bundling wire and the auxiliary bundling structure are fixed on the spliced reinforcing angle steel, it is only necessary to place the spliced reinforcing angle steel so that the main bundling wire and the auxiliary bundling structure on it can pass through the plate mesh of the Reno pad, eliminating the step of threading the wire. Moreover, when bundling, the auxiliary bundling structure can be used to preliminarily complete the preliminary connection between the plate body and the spliced reinforcing angle steel, which is convenient for workers to adjust the position, etc., and then only the main bundling wire needs to be wound and tightened in sequence to realize the installation of the Reno pad plate, which can shorten the on-site installation time and reduce the difficulty of on-site operations. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0026] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0027] Figure 2 This is a schematic diagram of the structure of the utility model;
[0028] Figure 3 It is a schematic diagram of the local structure of the utility model;
[0029] Figure 4 This is a schematic diagram of the splicing structure of the present utility model.
[0030] In the figure: 1. Splicing reinforcement angle steel; 11. Bundling through hole; 12. Abutment tube; 13. Snap-fit ridge; 14. Plug-in shaft; 15. Plug-in tube; 2. Anchor plate; 21. Base plate; 22. Reinforcement plate; 23. Anchor hole; 3. Main bundling wire; 31. Anchor end block; 4. Auxiliary bundling structure; 41. Connecting plate; 42. Positioning bundling wire; 5. Covering curved plate; 51. Snap-fit groove. DETAILED DESCRIPTION
[0031] The technical solution in the embodiments of the present application is to solve the problems of the above-mentioned background technology, and the overall idea is as follows:
[0032] like Figure 1As shown, the embodiment provides a tying structure for installing a Reynolds pad, including a spliced reinforcing angle steel 1, which is provided at the splicing of each plate of the Reynolds pad, a main tying wire 3, one end of which passes through the middle of the spliced reinforcing angle steel 1 and extends outward, and the other end is connected to an anchor plate 2 set in the spliced reinforcing angle steel 1, the main tying wire 3 is used to tie the Reynolds pad and the spliced reinforcing angle steel 1 into one, and an auxiliary tying structure 4 is provided on both sides of the spliced reinforcing angle steel 1 to achieve the initial fixation of the spliced reinforcing angle steel 1 and the Reynolds pad. The structural form can play a supporting role at the splicing point of the plate with the spliced reinforcing angle steel 1, thereby ensuring the flatness of the splicing point to a certain extent, improving the overall aesthetics while also enhancing the strength of the splicing point. At the same time, during bundling, since the main bundling wire 3 and the auxiliary bundling structure 4 are all fixed on the spliced reinforcing angle steel 1, it is only necessary to place the spliced reinforcing angle steel 1 so that the main bundling wire 3 and the auxiliary bundling structure 4 thereon can pass through the plate mesh of the Reno pad, which can shorten the on-site installation time and reduce the difficulty of on-site operations.
[0033] like Figure 2 As shown, a resist tube 12 is fixedly provided inside the spliced reinforcing angle steel 1, through which the main tying wire 3 is passed, and tying through holes 11 for the auxiliary tying structure 4 to pass through are opened on both sides of the spliced reinforcing angle steel 1. Through the above-mentioned structural form, the provided resist tube 12 and the tying through holes 11 can provide the necessary structural foundation for the main tying wire 3 and the auxiliary tying structure 4 to pass through the spliced reinforcing angle steel 1 to achieve tying.
[0034] like Figure 3 As shown, the anchor plate 2 includes a base plate 21, on which an anchor hole 23 is provided for the main tying wire 3 to pass through, and a symmetrically arranged reinforcement plate 22 is fixed thereon. Through the above-mentioned structural form, the reinforcement plate 22 can improve the overall bending strength of the base plate 21, thereby preventing it from bending under the tension of the main tying wire 3 and becoming unable to be reused.
[0035] In addition, the end of the main tying wire 3 is fixedly connected to the anchor end block 31, and the diameter of the anchor end block 31 is larger than the aperture of the anchor hole 23. Through the above-mentioned structural form, the clamping effect between the anchor end block 31 and the base plate 21 can fix the end of the main tying wire 3 when it is pulled. At the same time, this structural form can facilitate the separation of the main tying wire 3 from the anchor plate 2, which is convenient for subsequent reuse.
[0036] like Figure 2 As shown, the auxiliary bundling structure 4 includes a connecting plate 41, on which two positioning bundling wires 42 are fixedly connected. The positioning bundling wires 42 pass through the bundling through-holes 11. Through the above-mentioned structural form, during the initial fixation, the spliced reinforcing angle steel 1 can be bundled to the mesh plate of the Reno pad by winding and tightening the positioning bundling wires 42. At the same time, due to the detachable connection between the auxiliary bundling structure 4 and the spliced reinforcing angle steel 1, the auxiliary bundling structure 4 can be easily replaced during subsequent use.
[0037] like Figure 2 As shown, a covering curved plate 5 is clamped at the end of the spliced reinforcing angle steel 1, wherein a clamping ridge 13 is fixedly provided at the end of the spliced reinforcing angle steel 1, and a clamping groove 51 matching the clamping ridge 13 is provided at the end of the covering curved plate 5. Through the above-mentioned structural form, the setting of the covering curved plate 5 can prevent the anchor plate 2, the main binding wire 3 and the auxiliary binding structure 4 from being completely separated from the spliced reinforcing angle steel 1 during installation, thereby improving the convenience during use. At the same time, it is detachably connected to the spliced reinforcing angle steel 1, so when replacing the above-mentioned structure, it is only necessary to remove the covering curved plate 5 to complete the replacement.
[0038] like Figure 4 As shown, a plug-in shaft 14 is fixedly provided at one end of the spliced reinforcing angle steel 1, and a plug-in tube 15 is fixedly provided at the other end thereof, and the size of the plug-in shaft 14 is consistent with the opening size of the plug-in tube 15. Through the above-mentioned structural form, the splicing between adjacent spliced reinforcing angle steels 1 can be achieved, thereby making the installation node of the Reno pad have higher integrity and thus higher strength.
[0039] like Figure 1 As shown, both ends of the base plate 21 are processed to form inclined surfaces, and when the inclined surfaces at both ends are in contact with the inner wall of the spliced reinforcing angle steel 1, the front end surface is in close contact with the anti-tube 12 at the same time. Through the above-mentioned structural form, it can be ensured that when the base plate 21 is under tension, it can form a larger force transmission area between the spliced reinforcing angle steel 1, thereby avoiding deformation of the base plate 21 due to local stress concentration.
[0040] The use principle and use process of this utility model:
[0041] The spliced reinforcing angle steel 1 can play a supporting role at the splicing point of the plates, thereby ensuring the flatness of the splicing point to a certain extent, improving the overall aesthetics while also enhancing the strength of the splicing point; in addition, the spliced reinforcing angle steel 1 is fixed with a plug-in shaft 14 and a plug-in tube 15 at both ends. Through the above-mentioned structural form, the splicing between adjacent spliced reinforcing angle steels 1 can be achieved, thereby making the installation node of the Renault pad have higher integrity and thus higher strength.
[0042] During bundling, since the main bundling wire 3 and the auxiliary bundling structure 4 are fixed on the spliced reinforcing angle steel 1, it is only necessary to place the spliced reinforcing angle steel 1 so that the main bundling wire 3 and the auxiliary bundling structure 4 on it can pass through the plate mesh of the Reynolds pad, eliminating the step of threading the wire. During bundling, the auxiliary bundling structure 4 can be used to preliminarily complete the preliminary connection between the plate body and the spliced reinforcing angle steel 1, which is convenient for workers to adjust the position, etc., and then only the main bundling wire 3 needs to be wound and tightened in sequence to realize the installation of the Reynolds pad plate, which can shorten the on-site installation time and reduce the difficulty of on-site operations.
[0043] In addition, since the entire structure is made up of multiple parts, it can be easily recycled multiple times. During the recycling process, only the damaged parts need to be replaced separately, which can save the cost of use.
[0044] Finally, it should be noted that the above embodiments are merely examples for the purpose of illustrating the present invention and are not intended to limit the embodiments. Those skilled in the art will readily appreciate that other variations or modifications based on the above description are possible. It is not necessary and impossible to provide an exhaustive list of all possible embodiments. However, any obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.
Claims
1. A binding structure for installing a Renault mattress, characterized in that: include: Splicing reinforcement angle steel (1), which is provided at the splicing location where each plate of the Reno pad is installed; A main tying wire (3), one end of which passes through the middle of the spliced reinforcing angle steel (1) and extends outward, and the other end is connected to an anchor plate (2) arranged in the spliced reinforcing angle steel (1), and the main tying wire (3) is used to tie the Reno pad and the spliced reinforcing angle steel (1) into one; The auxiliary bundling structure (4) is arranged on both sides of the spliced reinforced angle steel (1) to achieve the initial fixation of the spliced reinforced angle steel (1) and the Reno pad.
2. The strapping structure for installing a Reno mattress according to claim 1, characterized in that: The spliced reinforced angle steel (1) is fixedly provided with an abutment tube (12) through which a main tying wire (3) is passed. Both sides of the spliced reinforced angle steel (1) are provided with tying holes (11) for the auxiliary tying structure (4) to pass through.
3. The tying structure for installing a Renault mattress according to claim 2, characterized in that: The anchor plate (2) comprises a base plate (21) on which anchor holes (23) for the main tying wires (3) to pass through are provided, and on which symmetrically arranged reinforcement plates (22) are fixed.
4. The strapping structure for installing a Reno mattress according to claim 3, characterized in that: The end of the main tying wire (3) is fixedly connected to an anchoring end block (31), and the diameter of the anchoring end block (31) is larger than the aperture of the anchor hole (23).
5. The tying structure for installing a Reno mattress according to claim 2, characterized in that: The auxiliary bundling structure (4) comprises a connecting plate (41) to which two positioning bundling wires (42) are fixedly connected, and the positioning bundling wires (42) pass through the bundling through holes (11).
6. The binding structure for installing a Reno mattress according to claim 1, characterized in that: The end of the spliced reinforcing angle steel (1) is clamped with a cover curved plate (5), wherein a clamping ridge (13) is fixedly provided at the end of the spliced reinforcing angle steel (1), and a clamping groove (51) matching the clamping ridge (13) is provided at the end of the cover curved plate (5).
7. The binding structure for installing a Reno mattress according to claim 1, characterized in that: A plug-in shaft (14) is fixedly provided at one end of the spliced reinforced angle steel (1), and a plug-in cylinder (15) is fixedly provided at the other end thereof, and the size of the plug-in shaft (14) matches the size of the opening of the plug-in cylinder (15).
8. The binding structure for installing a Reno mattress according to claim 3, characterized in that: Both ends of the base plate (21) are processed to form inclined surfaces, and when the inclined surfaces at both ends are in contact with the inner wall of the spliced reinforced angle steel (1), the front end surface is in close contact with the abutment cylinder (12) at the same time.