Auxiliary device for gabion filling construction and gabion

By designing auxiliary devices to buffer the impact of stones, the problems of deformation and damage during the mechanical filling process of gabion cages were solved, achieving efficient and low-cost stone filling.

CN223706411UActive Publication Date: 2025-12-23GUANGXI ROAD & BRIDGE ENG GRP CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520230960.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-12-23
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

During the mechanical filling process of gabion cages, the filling stones cause significant impact on the components, leading to deformation or damage.

Method used

Design an auxiliary device, including an auxiliary plate, lifting lugs, connecting devices, and reinforcing ribs, which are connected end to end to form a columnar structure. This structure is then hoisted into the gabion for stone filling, buffering the impact of the stones and preventing deformation and damage.

Benefits of technology

It effectively prevents gabion cages from wavy deformation or damage caused by the impact of filling stones, improves filling efficiency, reduces construction costs, and the device can be reused.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223706411U_ABST
    Figure CN223706411U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of gabion gabions, in particular to an auxiliary device for gabion gabion filling construction and a gabion gabion, the auxiliary device for gabion gabion filling construction comprises a plurality of auxiliary plates, and the auxiliary plates are connected end to end to define a cylindrical structure with two open ends; the at least two lifting lugs are connected with the auxiliary plate; the connecting devices are fixedly connected with the two adjacent auxiliary plates; the reinforcing rib plates are fixedly connected with the auxiliary plate, and the reinforcing rib plates are sequentially connected end to end. According to the auxiliary device, the gabion is protected by arranging the auxiliary plates which are connected end to end, the columnar structure defined by the auxiliary plates is filled with stone, and the auxiliary plates can well prevent the gabion from generating wavy deformation or damage caused by stone filling impact.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to gabion technology field, especially relate to a kind of auxiliary device for gabion filling construction, gabion. BACKGROUND

[0002] Gabion is a kind of engineering structure for water conservancy, slope protection and slope reinforcement. For example, the Chinese utility model patent with publication number CN220977889U discloses a gabion for river regulation, which is made of metal wire mesh, filled with stones inside during use, and forms a cage structure through the weaving of metal wires. The structure has characteristics such as flexibility, water permeability and integrity. This structure can effectively protect the soil from being washed away by water flow and is commonly used in revetment engineering at rivers, lakes, dams, etc.

[0003] Currently, in the river construction with gabion as the bottom protection structure, artificial filling of stones is generally used in cooperation with machinery. After the initial filling of machinery is completed, manual filling of pores and flattening and closing are carried out. However, during the mechanical filling process, due to the use of large-diameter filling stones, the mechanical filling process will cause great impact on the gabion components, resulting in deformation or even damage of the gabion components, and causing the longitudinal and transverse lines of the gabion to produce wavy deformation. SUMMARY

[0004] The utility model aims to overcome the problem that filling stones will cause great impact on gabion components during mechanical filling of gabion, resulting in deformation or damage of gabion components, and provides an auxiliary device for gabion filling construction.

[0005] In the first aspect, the utility model provides an auxiliary device for gabion filling construction, which comprises a plurality of auxiliary plates, the auxiliary plates are connected at the head and tail to form a cylindrical structure with open ends, at least two lifting lugs, the lifting lugs are connected with the auxiliary plates, a connecting device, the connecting device is fixedly connected with two adjacent auxiliary plates, a plurality of reinforcing rib plates, the reinforcing rib plates are fixedly connected with the auxiliary plates, and the reinforcing rib plates are sequentially connected at the head and tail.

[0006] The auxiliary device for gabion filling construction provided by the utility model is used for protecting gabions by setting the auxiliary plates connected at the head and tail, and the auxiliary device can be hoisted by the excavator bucket hook and the hook when in use, and the auxiliary device is installed in the gabion net, and the stone filling can be carried out after the installation is completed; the stones are filled in the cylindrical structure surrounded by the auxiliary plates, and the auxiliary plates can prevent the gabions from being deformed in a wave shape or damaged due to the impact of the stones; the connecting device fixedly connects the adjacent two auxiliary plates, further reinforces the connection between the auxiliary plates, and prevents the auxiliary plates from being deformed due to the impact of the stones during the stone filling; the reinforcing rib plates are fixedly connected with the auxiliary plates, and the reinforcing rib plates are also sequentially connected at the head and tail to form a similar frame structure, which plays a role in stabilizing the auxiliary plates and buffering the impact of the stones on the auxiliary plates during the stone filling, and further protects the auxiliary device.

[0007] The cylindrical structure surrounded by the auxiliary plates is open at both ends, for example, open at the top and the bottom, and the auxiliary device can be hoisted away from the gabion net by the bucket hook and the hook after the stone filling is completed, and then the manual flattening and closing are carried out, so that the filling efficiency is improved. After the entire gabion is filled, the auxiliary device can be reused, and the construction cost is saved.

[0008] The auxiliary device for gabion filling construction provided by the utility model has the advantages of simple structure, easy production, convenient operation, no need of additional mechanical equipment, accelerated stone filling efficiency, reduced damage probability of the gabion net and reduced construction cost loss under the condition of almost no increase in construction cost.

[0009] Preferably, the number of the auxiliary plates is four, and the four auxiliary plates are connected at the head and tail to surround a four-prism structure open at both ends.

[0010] The auxiliary plates are connected at the head and tail to surround a four-prism structure open at both ends, which can better match most gabions, the size of the auxiliary device can be determined according to the design drawing of the gabion according to the equal volume method before construction, the length and width of the auxiliary device can be set to be slightly smaller than the gabion net, and the height can be set to be slightly higher than the gabion net, so that the auxiliary plates can more evenly disperse the impact force of the stones, further reduce the wave-shaped deformation or damage of the gabion caused by the mechanical stone filling, and improve the construction quality; on the other hand, the four-prism structure is simple and easy to process and manufacture, and is easier to produce and assemble than other complex protective structures, thereby reducing the manufacturing cost.

[0011] Preferably, the number of the lifting lugs is even, and the lifting lugs are oppositely arranged in pairs.

[0012] With the structure, the even number of lifting lugs are arranged oppositely, so that the auxiliary device is more uniform in stress during hoisting, and tilting or shaking caused by unbalanced lifting points is avoided, and hoisting construction safety is improved; through the relative distribution of the lifting lugs, the stress during hoisting is more uniform, and the risk of fracture or deformation of the lifting lug is reduced, and the service life of the device is prolonged.

[0013] Preferably, the connecting device is an angle steel structure, and the connecting device is fixedly connected at the joint of two adjacent auxiliary plates.

[0014] With the structure, the angle steel has high strength and rigidity, can provide additional support at the joint of two adjacent auxiliary plates, and more effectively enhances the impact resistance of the joint to prevent displacement or fracture between the auxiliary plates.

[0015] Preferably, each auxiliary plate is fixedly connected with at least one reinforcing rib plate.

[0016] With the structure, the reinforcing rib plate is fixed to each auxiliary plate, which is equivalent to adding a skeleton support to the auxiliary plate, effectively improving the rigidity and carrying capacity of a single auxiliary plate, so that it is not easy to bend or deform when the rock is impacted. When the rock falls into the auxiliary device, the reinforcing rib plate can disperse the impact force and reduce the pressure of the rock directly acting on the auxiliary plate, thereby reducing the risk of deformation or damage and improving the durability of the device.

[0017] Preferably, each auxiliary plate is fixedly connected with one reinforcing rib plate, and the reinforcing rib plates are sequentially connected end to end.

[0018] With the structure, the reinforcing rib plates are sequentially connected end to end, which is equivalent to forming a continuous support structure in the auxiliary device, making the entire device more stable and being able to more effectively resist the impact force generated during the filling of the rock. Since each auxiliary plate is fixedly connected with one reinforcing rib plate, each auxiliary plate can evenly share the impact force, avoiding deformation or damage caused by excessive local stress, and improving the durability of the auxiliary device.

[0019] Preferably, the reinforcing rib plate is fixedly connected to the inner wall of the auxiliary plate.

[0020] The reinforcing rib plate is arranged on the inner wall of the auxiliary plate, avoiding the reinforcing rib plate protruding from the outside of the auxiliary plate, not affecting the fit of the auxiliary device and the gabion, so that it can be better embedded in the gabion, improving the convenience of installation. At the same time, when filling the stone, since the reinforcing rib plate is arranged on the inner wall of the auxiliary plate, it can better buffer the impact of the stone on the auxiliary plate, improve the service life of the overall structure, ensure that the auxiliary device can be repeatedly used, and save construction cost.

[0021] Preferably, the reinforcing rib plate is fixedly connected to the top and bottom of the auxiliary plate.

[0022] The reinforcing rib plate is arranged on the top and bottom of the auxiliary plate, so that the upper and lower auxiliary plates are uniformly stressed when filling the stones, the structural fatigue caused by excessive local stress is reduced, the durability and reusability of the auxiliary device are improved, and meanwhile, the top reinforcing rib plate can enhance the impact resistance of the auxiliary plate, better protect the auxiliary device, the bottom reinforcing rib plate can disperse and transmit the filling pressure, protect the bottom of the gabion net, and also prevent long-term extrusion deformation of the bottom auxiliary plate after the stones are accumulated, so as to ensure the stability of the auxiliary device during long-term use.

[0023] Preferably, the dihedral angle formed by the reinforcing rib plate and the auxiliary plate is 45°±5°.

[0024] The dihedral angle formed by the reinforcing rib plate and the auxiliary plate is set to 45°±5°, which can provide good rigid support for the auxiliary plate and also retain a certain elastic buffer, so as to ensure buffering of the stones during the filling construction process, thereby improving the overall service life of the auxiliary device.

[0025] In a second aspect, the utility model provides a gabion, including gabion main part, still include above -mentioned for gabion filling construction's auxiliary device, for gabion filling construction's auxiliary device is located in the gabion main part.

[0026] The auxiliary plate of the gabion provided by the utility model can protect the gabion main part when filling the stones, and can well prevent the gabion from being deformed in a wave shape or damaged due to stone impact. The connecting device fixedly connects two adjacent auxiliary plates, further reinforces the connection between the auxiliary plates, and prevents the auxiliary plates from being deformed due to stone impact during filling of the stones. The reinforcing rib plate is not only fixedly connected with the auxiliary plate, but also sequentially connected end to end to form a frame structure, and plays a role in stabilizing the auxiliary plate and buffering the impact of the stones on the auxiliary plate during filling of the stones, thereby further protecting the auxiliary device.

[0027] Since the cylindrical structure surrounded by the auxiliary plates is open at both ends, for example, the top and bottom are open, the auxiliary device can be lifted away from the gabion net by a bucket hook and a hook after filling of the stones is completed, and then manual closing is performed, thereby improving the filling efficiency. After the entire gabion is filled, the auxiliary device can be reused, thereby saving construction cost.

[0028] Compared with the prior art, the utility model has the beneficial effects that:

[0029] 1.The auxiliary device for gabion filling construction provided by the utility model, which is used for protecting the gabion through the auxiliary plates connected at the head and tail, can be hooked by the excavator bucket hook and the hook when in use, and can be hoisted and installed in the gabion net, and the stone filling can be carried out after the installation is completed; the stone is filled in the cylindrical structure surrounded by the auxiliary plates, and the auxiliary plates can prevent the gabion from being deformed in a wave shape or damaged due to the impact of the stone; the connecting device is used for fixedly connecting the adjacent two auxiliary plates, further reinforcing the connection between the auxiliary plates, and preventing the auxiliary plates from being deformed due to the impact of the stone during the stone filling; the reinforcing rib plates are fixedly connected with the auxiliary plates, and are sequentially connected at the head and tail to form a frame structure, which can stabilize the auxiliary plates and buffer the impact of the stone on the auxiliary plates during the stone filling, and further protect the auxiliary device.

[0030] 2.The auxiliary device for gabion filling construction provided by the utility model, since the cylindrical structure surrounded by the auxiliary plates is open at both ends, such as the top and bottom, the auxiliary device can be hoisted away from the gabion net by the bucket hook and the hook after the stone filling is completed, and then the manual leveling and closing are carried out, so that the filling efficiency is improved. The auxiliary device can be reused after the entire gabion is filled, which saves the construction cost, and the auxiliary device has the advantages of simple structure, easy production, convenient operation, no need for additional mechanical equipment, accelerated stone filling efficiency, reduced damage probability of the gabion net, and reduced construction cost loss.

[0031] 3.The gabion provided by the utility model, which can protect the main body of the gabion through the auxiliary plates during the stone filling, and prevent the gabion from being deformed in a wave shape or damaged due to the impact of the stone. The connecting device is used for fixedly connecting the adjacent two auxiliary plates, further reinforcing the connection between the auxiliary plates, and preventing the auxiliary plates from being deformed due to the impact of the stone during the stone filling; the reinforcing rib plates are fixedly connected with the auxiliary plates, and are sequentially connected at the head and tail to form a frame structure, which can stabilize the auxiliary plates, buffer the impact of the stone on the auxiliary plates, and further protect the auxiliary device and the gabion. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 It is a structural schematic view of the auxiliary device for gabion filling construction.

[0033] Figure 2 It is Figure 1 the enlarged view of the A part in the figure.

[0034] Figure 3 It is a state diagram of the auxiliary device for gabion filling construction placed in the main body of the gabion.

[0035] Markings in the figure:

[0036] 1 - auxiliary plate, 2 - lifting lug, 3 - connecting device, 4 - reinforcing rib, 100 - gabion body. DETAILED DESCRIPTION

[0037] The utility model will be described in further detail below in combination with specific embodiments. However, this should not be understood as limiting the scope of the above-mentioned subject matter of the utility model to the following embodiments only, and any technology realized based on the content of the utility model falls within the scope of the utility model.

[0038] In the description of the embodiments of the utility model, the orientation or positional relationship terms such as "up", "down", "left", "right", "center", "inner", "outer", etc. are expressed based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product / equipment / device of the utility model is usually placed. These orientation or positional relationship terms are only used to facilitate the description of the utility model scheme or simplify the description in the embodiments, so as to facilitate the quick understanding of the scheme by the technicians, and therefore cannot be understood as indicating or implying that a specific device / component / element must have a specific orientation or be constructed and operated in a specific positional relationship, and thus cannot be understood as limiting the utility model.

[0039] In addition, if the terms "horizontal", "vertical", "overhanging", "parallel", etc. appear, it does not mean that the corresponding device / component / element must be absolutely horizontal or vertical or overhanging or parallel, but can be slightly inclined or deviated. For example, "horizontal" only means that its direction is more horizontal relative to "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined. Alternatively, it can be simplified to mean that the corresponding device / component / element is arranged in the "horizontal", "vertical", "overhanging", "parallel" direction, and can have an error / deviation of ±10% relative to the corresponding direction, more preferably an error / deviation of ±8% or less, more preferably an error / deviation of ±6% or less, more preferably an error / deviation of ±5% or less, and more preferably an error / deviation of ±4% or less. As long as the corresponding device / component / element is within the error / deviation range, it can still achieve its role in the scheme of the utility model.

[0040] In addition, the terms "first", "second", "third", etc. appearing in the terms are only used to distinguish the description of the same or similar parts, and should not be understood as emphasizing or implying the relative importance of the specific parts.

[0041] In addition, in the description of the embodiments of the utility model, "several", "a plurality of", "several" represent at least 2. It can be 2, 3, 4, 5, 6, 7, 8, 9, etc. in any case, or even more than 9.

[0042] Furthermore, in the description of the technical solution of this utility model, unless otherwise explicitly specified / limited / restricted, the terms "set up," "install," "connect," "link," "equipped with," "laid out," and "arranged" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to common connection methods in the art, such as welding, riveting, bolting, and threaded connections. Such connections can be mechanical, electrical, or communication connections; they can be direct connections or indirect connections through an intermediate medium; and they can refer to the internal communication between two components.

[0043] Example 1

[0044] This embodiment provides an auxiliary device for gabion filling construction, including several auxiliary plates 1, which are connected end to end to form a columnar structure with open ends.

[0045] Specifically, such as Figure 1 As shown, the auxiliary plate 1 can be a rectangular hot-rolled steel plate, and the number of auxiliary plates 1 can be four. The four auxiliary plates 1 are welded end to end in sequence to form a quadrangular prism structure with open top and bottom ends.

[0046] Setting up an auxiliary plate 1 to form a quadrangular prism structure with open ends allows for better compatibility with most gabion cages. Before construction, the size of the auxiliary device can be determined using the equal volume method based on the gabion cage design drawings. The auxiliary device can be set to be slightly smaller (5-10 cm) in length and width than the gabion cage mesh, and slightly higher (10-20 cm) in height than the gabion cage mesh. This auxiliary plate 1 can more evenly distribute the impact force of the filling stones, further reducing the wavy deformation or damage to the gabion cage caused by mechanical filling, and improving construction quality. On the other hand, the quadrangular prism structure is simple and easy to process and manufacture. Compared with other complex protective structures, it is easier to produce and assemble, reducing manufacturing costs.

[0047] It can be foreseen that the number of auxiliary plates 1 can also be three (forming a triangular prism structure with openings at both ends), five (forming a pentagonal prism structure with openings at both ends), six (forming a hexagonal prism structure with openings at both ends), etc.

[0048] The auxiliary device for gabion filling construction also includes at least two lifting lugs 2, which are connected to the auxiliary plate 1. Preferably, the number of lifting lugs 2 can be even, and the lifting lugs 2 are arranged in pairs facing each other.

[0049] With the structure, the even number of lifting lugs 2 are arranged oppositely, so that the auxiliary device is more uniform in stress during hoisting, and tilting or shaking caused by unbalanced lifting points is avoided, and hoisting construction safety is improved; through the distribution of the opposite lifting lugs 2, the stress during hoisting is more uniform, and the risk of fracture or deformation of the lifting lug 2 is reduced, and the service life of the device is prolonged.

[0050] Specifically, for example Figure 1 as shown, Figure 1 two lifting lugs 2 are arranged in each auxiliary plate 1, and the lifting lug 2 can be selected from round steel, and the two lifting lugs 2 are welded on the two oppositely arranged auxiliary plates 1. It can be predicted that the number of lifting lugs 2 can also be four, six, eight, etc., and one lifting lug 2 can be arranged on the same auxiliary plate 1, or two, three, or four lifting lugs 2 can be arranged.

[0051] The auxiliary device for gabion filling construction also comprises a connecting device 3, and the connecting device 3 is fixedly connected with the adjacent two auxiliary plates 1.

[0052] Specifically, the connecting device 3 can be selected from an angle steel structural member, for example, an equal angle steel, and the connecting device 3 is fixedly connected at the joint of the adjacent two auxiliary plates 1. For example Figure 1 as shown, four equal angle steels can be connected by welding at the four opposite corners of the quadrangular prism surrounded by the auxiliary plate 1. With this structure, the angle steel has high strength and rigidity, and can provide additional support at the joint of the adjacent two auxiliary plates 1, more effectively enhancing the impact resistance of the joint, preventing displacement or fracture between the auxiliary plates 1.

[0053] The auxiliary device for gabion filling construction also comprises a plurality of reinforcing rib plates 4, and the reinforcing rib plates 4 are fixedly connected with the auxiliary plates 1 and sequentially connected end to end. In this embodiment, the reinforcing rib plates 4 can be selected from flat steel, and the reinforcing rib plates 4 can be welded with the auxiliary plates 1, and the reinforcing rib plates 4 can be welded.

[0054] Further, each auxiliary plate 1 is fixedly connected with at least one reinforcing rib plate 4. With this structure, the reinforcing rib plate 4 is fixed on each auxiliary plate 1, which is equivalent to adding a skeleton support to the auxiliary plate 1, effectively improving the rigidity and carrying capacity of the single auxiliary plate 1, so that it is not easy to bend or deform when the stone is filled. When the stone falls into the auxiliary device, the reinforcing rib plate 4 can disperse the impact force and reduce the pressure of the stone directly acting on the auxiliary plate 1, thereby reducing the risk of deformation or damage and improving the durability of the device.

[0055] The auxiliary device for gabion filling construction provided by the embodiment is used for protecting the gabion through the auxiliary plates 1 connected at the head and tail. During construction, the prepared gabion can be placed at the designated bottom protection and bank protection, and the auxiliary device can be hoisted by the excavator bucket hook and hook to be installed in the gabion net, and the stone filling can be performed after the installation is completed; the stone is filled in the columnar structure surrounded by the auxiliary plates 1. The auxiliary plates 1 can well prevent the gabion from being deformed in a wave shape or damaged due to the impact of the stone filling; the connecting device 3 is fixedly connected between the adjacent two auxiliary plates 1 to further reinforce the connection between the auxiliary plates 1 and prevent the auxiliary plates 1 from being deformed due to the impact of the stone during the stone filling; the reinforcing rib plates 4 are not only fixedly connected with the auxiliary plates 1, but also sequentially connected at the head and tail to form a similar frame structure, which plays a role in stabilizing the auxiliary plates 1 and buffering the impact of the stone on the auxiliary plates 1 during the stone filling, and further protects the auxiliary device.

[0056] Since the columnar structure surrounded by the auxiliary plates 1 is open at both ends, for example, open at the top and bottom, the auxiliary device can be hoisted away from the gabion net by the bucket hook and hook after the stone filling is completed, and then manually closed to improve the filling efficiency. After the entire gabion is filled, the auxiliary device can be reused, saving the construction cost.

[0057] The auxiliary device for gabion filling construction provided by the embodiment has a simple structure and is easy to produce, convenient to operate during use, and does not need to additionally increase mechanical equipment, which accelerates the stone filling efficiency, reduces the damage probability of the gabion net, and reduces the construction cost loss under the condition of almost no increase in construction cost.

[0058] Embodiment 2

[0059] On the basis of embodiment 1, one reinforcing rib plate 4 is fixedly connected to each auxiliary plate 1 in the embodiment, and the reinforcing rib plates 4 are sequentially connected at the head and tail. Specifically, for example, four auxiliary plates 1 are provided, and four reinforcing rib plates 4 are correspondingly provided, the four reinforcing rib plates 4 are connected at the head and tail to form a similar rectangular frame structure, and the frame structure surrounded by the reinforcing rib plates 4 can be arranged at the top, the middle, or the bottom of the columnar structure surrounded by the auxiliary plates 1. By adopting this structure, the reinforcing rib plates 4 are sequentially connected at the head and tail, which is equivalent to forming a continuous support structure in the auxiliary device, so that the entire device is more stable and can more effectively resist the impact force generated during the stone filling. Since each auxiliary plate 1 is fixedly connected to one reinforcing rib plate 4, each auxiliary plate 1 can uniformly share the impact force, avoiding deformation or damage caused by excessive local stress, and improving the durability of the auxiliary device.

[0060] Embodiment 3

[0061] On the basis of embodiment 1, the reinforcing rib plate 4 is fixedly connected (for example, welded) to the inner wall of the auxiliary plate 1 in this embodiment. The reinforcing rib plate 4 is arranged on the inner wall of the auxiliary plate 1, avoiding the reinforcing rib plate 4 from protruding outside the auxiliary plate 1, not affecting the fitting of the auxiliary device and the gabion, and enabling the auxiliary device to be better embedded inside the gabion, improving the installation convenience. Meanwhile, when filling the stone, since the reinforcing rib plate 4 is arranged on the inner wall of the auxiliary plate 1, the reinforcing rib plate 4 can better play a role in buffering the impact of the stone on the auxiliary plate 1, improving the service life of the overall structure, ensuring that the auxiliary device can be repeatedly used, and saving the construction cost.

[0062] Embodiment 4

[0063] On the basis of embodiment 1, the reinforcing rib plate 4 is fixedly connected to the top and bottom of the auxiliary plate 1 in this embodiment. Specifically, as shown in Figure 1 , Figure 1 two reinforcing rib plates 4 are connected to one auxiliary plate 1, one reinforcing rib plate 4 is located at the top of the auxiliary plate 1, and the other reinforcing rib plate 4 is located at the bottom of the auxiliary plate 1. Figure 1 In the case of four auxiliary plates 1 connected end to end to form a quadrangular prism structure, correspondingly, four reinforcing rib plates 4 form a rectangular frame structure at the top of the quadrangular prism structure, and another four reinforcing rib plates 4 form another rectangular frame structure at the bottom of the quadrangular prism structure, and the stone can be filled to the lower edge of the top reinforcing rib plate 4.

[0064] The reinforcing rib plate 4 is arranged on the top and bottom of the auxiliary plate 1, so that the upper and lower parts of the auxiliary plate 1 are uniformly stressed when filling the stone, reducing the structural fatigue caused by excessive local stress, and improving the durability and reusability of the auxiliary device; meanwhile, since the stone falls from the top of the auxiliary device to the bottom of the gabion net during filling, the top reinforcing rib plate 4 can enhance the impact resistance of the auxiliary plate 1, better protect the auxiliary device, the bottom reinforcing rib plate 4 can disperse and transfer the filling pressure, protect the bottom of the gabion net, and also prevent long-term extrusion deformation of the bottom auxiliary plate 1 after the stone is accumulated, ensuring the stability of the auxiliary device during long-term use.

[0065] Embodiment 5

[0066] On the basis of embodiment 4, the dihedral angle formed by the reinforcing rib plate 4 and the auxiliary plate 1 is 45°±5° in this embodiment. Specifically, as shown in Figure 1 , Figure 2 the dihedral angle formed by the reinforcing rib plate 4 and the auxiliary plate 1 is an angle α, Figure 2 the welding state of the reinforcing rib plate 4 located at the bottom of the auxiliary plate 1 and the auxiliary plate 1 is shown. Preferably, the dihedral angle formed by the reinforcing rib plate 4 and the auxiliary plate 1 is 45°; preferably, as shown in Figure 1As shown, the reinforcing rib 4 at the top of the auxiliary plate 1 is inclined downwards to facilitate better entry of the stone into the auxiliary device when filling it with stone; the reinforcing rib 4 at the bottom of the auxiliary plate 1 is inclined upwards to better buffer the impact of the stone on the bottom of the auxiliary plate 1 and the bottom of the gabion mesh.

[0067] The angle of the dihedral formed by the reinforcing rib plate 4 and the auxiliary plate 1 is set at 45°±5°. This angle setting can provide good rigid support for the auxiliary plate 1 while retaining a certain degree of elastic buffer, ensuring that the stone is buffered during the stone filling construction process, thereby improving the overall service life of the auxiliary device.

[0068] Example 6

[0069] like Figure 3 As shown, this embodiment provides a gabion, including a gabion body 100 for holding stones, and an auxiliary device for gabion filling construction provided in any of embodiments 1-5. The auxiliary device for gabion filling construction is located inside the gabion body 100. After the stones are filled, the auxiliary device for gabion filling construction can be lifted out from the gabion body 100.

[0070] The gabion provided in this embodiment provides auxiliary plates 1 that protect the gabion body 100 during stone filling, effectively preventing wavy deformation or damage caused by the impact of the stones. Connecting devices 3 securely connect adjacent auxiliary plates 1, further reinforcing the connection between them and preventing deformation of the auxiliary plates 1 due to stone impact during filling. Reinforcing ribs 4 are not only fixedly connected to the auxiliary plates 1, but are also sequentially connected end-to-end to form a frame-like structure, stabilizing the auxiliary plates 1 and buffering the impact of the stones during filling, further protecting the auxiliary device.

[0071] Because the columnar structure formed by the auxiliary plate 1 is open at both ends, such as the top and bottom, the auxiliary device can be lifted off the gabion mesh using a bucket hook and a hoist after the stones are filled. Then, it can be manually leveled and closed, improving filling efficiency. After the entire gabion is filled, the auxiliary device can be reused, saving construction costs.

[0072] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An auxiliary device for gabion fill construction, characterised in that, The auxiliary device for gabion filling construction comprises several auxiliary plates (1), which are connected in a head-to-tail mode to form a cylindrical structure with both ends open. At least two lifting lugs (2) are connected with the auxiliary plates (1). A connecting device (3) is fixedly connected with two adjacent auxiliary plates (1). Several reinforcing rib plates (4) are fixedly connected with the auxiliary plates (1), and the reinforcing rib plates (4) are connected in a head-to-tail mode.

2. A device for assisting the filling of gabion baskets according to claim 1, characterised in that, The number of the auxiliary plates (1) is four, and the four auxiliary plates (1) are connected in a head-to-tail mode to form a quadrangular prism structure with both ends open.

3. A device for assisting the filling of gabion baskets according to claim 1, characterised in that, The number of the lifting lugs (2) is even, and the lifting lugs (2) are arranged in pairs.

4. The auxiliary device for gabion filling construction according to claim 1, characterized in that, The connecting device (3) is an angle steel structure, and is fixedly connected with the joint between two adjacent auxiliary plates (1).

5. The auxiliary device for gabion filling construction according to claim 1, characterized in that, Each of the auxiliary plates (1) is fixedly connected with at least one reinforcing rib plate (4).

6. A device for assisting the filling of gabion baskets according to claim 1, characterized in that, Each of the auxiliary plates (1) is fixedly connected with one reinforcing rib plate (4), and the reinforcing rib plates (4) are connected in a head-to-tail mode.

7. A device for assisting the filling of gabion baskets according to claim 1, characterized in that, The reinforcing rib plates (4) are fixedly connected with the inner walls of the auxiliary plates (1).

8. The auxiliary device for gabion filling construction according to claim 1, characterized in that, The reinforcing rib plates (4) are fixedly connected with the top and bottom of the auxiliary plates (1).

9. An auxiliary device for gabion filling construction according to any one of claims 1-8, characterized in that, The dihedral angle formed by the reinforcing rib plates (4) and the auxiliary plates (1) is 45°±5°.

10. A gabion comprising a gabion body (100), characterised in that, The auxiliary device for gabion filling construction comprises several auxiliary plates (1), which are connected in a head-to-tail mode to form a cylindrical structure with both ends open. At least two lifting lugs (2) are connected with the auxiliary plates (1). A connecting device (3) is fixedly connected with two adjacent auxiliary plates (1). Several reinforcing rib plates (4) are fixedly connected with the auxiliary plates (1), and the reinforcing rib plates (4) are connected in a head-to-tail mode. The number of the auxiliary plates (1) is four, and the four auxiliary plates (1) are connected in a head-to-tail mode to form a quadrangular prism structure with both ends open. The number of the lifting lugs (2) is even, and the lifting lugs (2) are arranged in pairs. The connecting device (3) is an angle steel structure, and is fixedly connected with the joint between two adjacent auxiliary plates (1). Each of the auxiliary plates (1) is fixedly connected with at least one reinforcing rib plate (4). Each of the auxiliary plates (1) is fixedly connected with one reinforcing rib plate (4), and the reinforcing rib plates (4) are connected in a head-to-tail mode. The reinforcing rib plates (4) are fixedly connected with the inner walls of the auxiliary plates (1). The reinforcing rib plates (4) are fixedly connected with the top and bottom of the auxiliary plates (1). The dihedral angle formed by the reinforcing rib plates (4) and the auxiliary plates (1) is 45°±5°. The auxiliary device for gabion filling construction comprises several auxiliary plates (1), which are connected in a head-to-tail mode to form a cylindrical structure with both ends open. At least two lifting lugs (2) are connected with the auxiliary plates (1). A connecting device (3) is fixedly connected with two adjacent auxiliary plates (1). Several reinforcing rib plates (4) are fixedly connected with the auxiliary plates (1), and the reinforcing rib plates (4) are connected in a head-to-tail mode. The number of the auxiliary plates (1) is four, and the four auxiliary plates (1) are connected in a head-to-tail mode to form a quadrangular prism structure with both ends open. The number of the lifting lugs (2) is even, and the lifting lugs (2) are arranged in pairs. The connecting device (3) is an angle steel structure, and is fixedly connected with the joint between two adjacent auxiliary plates (1). Each of the auxiliary plates (1) is fixedly connected with at least one reinforcing rib plate (4). Each of the auxiliary plates (1) is fixedly connected with one reinforcing rib

Citation Information

Patent Citations

  • A gabion stone cage for river management

    CN220977889U