Slope protection structure for geological disaster control

By combining T-shaped cylinders, inclined arc plates, studs, frame plates, nut bodies, and grating plates, the problem of positioning pins slipping out under strong winds is solved, enhancing the stability of the slope protection structure and ensuring the protective effect of the slope.

CN223853349UActive Publication Date: 2026-01-30HUNAN NEW CONTINENT ECOLOGICAL CONSTR CO LTD
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Patent Information

Application Number
CN202520089430.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-01-30
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

In the case of strong winds, the positioning nails of the existing slope protection structure used for geological disaster control are prone to slipping out, which leads to instability of the protective net and affects the stability of the slope protection structure.

Method used

The design employs a T-shaped cylinder, inclined arc plate, stud, frame plate, nut body, and grid plate. The T-shaped cylinder is inserted into the soil and connected to the stud and nut body. Combined with the fixing of the screw, swivel seat, and concrete layer, the stability of the frame plate and grid plate is improved.

Benefits of technology

It improves the stability of the slope protection structure, prevents the positioning nails from slipping out, enhances the installation stability of the frame plate and the grating plate, and ensures the protection effect of the slope.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of geological disaster slope protection structures, in particular to a slope protection structure for geological disaster control, which comprises a disc seat, a T-shaped cylinder for limiting is inserted in the disc seat, a plurality of groups of inclined arc sheets positioned at the bottom of the disc seat are integrally constructed on the periphery of the T-shaped cylinder, a stud is integrally constructed on the surface of the top end of the disc seat, and the stud is connected with the T-shaped cylinder. A plurality of groups of studs are arranged, frame plates which are connected with the studs in an inserted manner are assembled among the plurality of groups of disc seats, and nut bodies which abut against the frame plates are mounted on the peripheries of the studs in a screwed manner; in the process of using the slope protection structure for address disaster control, the disc seat can be conveniently arranged at a proper position on a ramp, then the T-shaped cylinder is inserted into the disc seat, meanwhile, due to the multiple sets of inclined arc pieces on the periphery of the T-shaped cylinder, the T-shaped cylinder can be screwed into soil, and the disc seat is limited and fixed; and then the frame plate of the slope protection and the studs on the surface of the disc seat can be mutually inserted and limited through the nut bodies, slope protection is facilitated, and the stability is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to geological disaster protection slope structure technical field, specifically related to a geological disaster control is with protection slope structure. BACKGROUND

[0002] With the reduction of plants on the hillside, soil or sand loss on the slope will be caused under the condition of wind or rain washing, that is, the side slope is unstable and collapses under some extreme conditions, causing the problem of side slope protection being damaged, therefore, in order to avoid the influence of geological disasters on the slope, the protection slope structure is usually used to protect the slope; Patent No. CN202320125224. X discloses a protection slope structure for geological disaster control, which can not affect the normal growth of grass plants on the slope during the protection process, and the first protection net is set as a detachable structure, which can be replaced individually when the first protection net is damaged, thereby improving the overall service life of the device; However, during the use of the protection slope structure for geological disaster control, the positioning nails are directly used to limit the protection net by being inserted into the soil, and if the wind is strong, the protection net can be directly blown and the positioning nails can be pulled, which can cause the positioning nails to slide out of the soil directly, and the stability is poor. Therefore, we propose a protection slope structure for geological disaster control. CONTENT OF THE UTILITY MODEL

[0003] In view of the problems in the prior art, the utility model provides a protection slope structure for geological disaster control.

[0004] The utility model solves the technical problems and adopts the technical scheme of a protection slope structure for geological disaster control, which comprises a disc seat, a T-shaped cylinder for limiting is inserted into the disc seat, and a plurality of inclined arc pieces are integrally arranged on the outer periphery of the T-shaped cylinder at the bottom of the disc seat, a plurality of threaded studs are integrally arranged on the top surface of the disc seat, a plurality of frame plates are assembled between the disc seats and are inserted into the threaded studs, a plurality of nut bodies are screw-mounted on the outer periphery of the threaded studs and abut against the frame plates, a plurality of grid plates for slope protection are assembled in the frame plates, and a plurality of concrete layers are arranged on the outer periphery of the bifurcated rods.

[0005] A screw rod for supporting is inserted into the T-shaped cylinder, and a bifurcated rod is integrally arranged at one end of the screw rod at the bottom of the T-shaped cylinder and located in the soil, a plurality of rotating seats are screw-mounted on the top surface of the screw rod and abut against the T-shaped cylinder, and a plurality of concrete layers are arranged on the outer periphery of the bifurcated rods.

[0006] Through adoption of the technical scheme, in the process of using the slope protection structure for address disaster treatment, the disc seat can be conveniently arranged on the slope at a proper position, then the T-shaped cylinder is inserted into the disc seat, and the T-shaped cylinder is rotated into the soil and positioned and fixed to the disc seat due to the plurality of groups of inclined arc pieces on the outer periphery of the T-shaped cylinder, then the frame plate of the slope protection structure is inserted with the stud on the surface of the disc seat, and the nut body is used for limiting, so that the slope protection is facilitated and the stability is high.

[0007] When the T-shaped cylinder and the disc seat are inserted and connected with the soil, the T-shaped cylinder is inserted with the screw rod extended into the soil, and the rotation seat is screwed with the screw rod to provide tension to the T-shaped cylinder, and the bifurcated rod at the bottom of the screw rod is pre-set in the soil of the slope, and the bifurcated rod is fixed by the concrete layer, so that the bifurcated rod can provide more stable tension to the screw rod, thereby improving the stability of the frame plate and the grid plate after installation.

[0008] Specifically, the frame plate top end surface is equipped with a frame strip abutting against the grid plate.

[0009] Through adoption of the technical scheme, the frame strip is installed on the surface of the frame plate and abuts against the grid plate, so as to assist in limiting the grid plate in the frame plate, thereby improving the stability of the grid plate after installation.

[0010] Specifically, two groups of the frame plates are equipped with end covers for protection.

[0011] Through adoption of the technical scheme, the end cover is installed between the two groups of frame plates, so as to protect the disc seat between the two groups of frame plates, and the disc seat can more stably limit and fix the frame plate.

[0012] Specifically, the nut body outer periphery is screwed with a screw body for auxiliary limiting.

[0013] Through adoption of the technical scheme, the screw body is screwed on the outer periphery of the nut body and abuts against the stud, so as to assist in limiting the nut body screwed on the outer periphery of the stud, and the nut body can more stably limit the frame plate.

[0014] Specifically, the disc seat bottom end surface is integrally structured with a plurality of vertical rods.

[0015] Through adoption of the technical scheme, the vertical rods at the bottom of the disc seat can be inserted with the soil, so as to reduce the self-rotation of the disc seat when abutting against the soil, and the disc seat can stably support the frame plate.

[0016] Compared with the prior art, the utility model has the following beneficial effects:

[0017] 1. The technical scheme of the present application, through the design of T-shaped cylinder, inclined arc piece, stud, frame plate, nut body and grating plate, can conveniently place the disc seat on the appropriate position of the slope during the use of the slope protection structure for addressing disasters, then insert the T-shaped cylinder into the disc seat, and due to the multiple groups of inclined arc pieces on the outer periphery of the T-shaped cylinder, the T-shaped cylinder can be rotated into the soil and positioned and fixed to the disc seat, then the frame plate of the slope protection and the stud on the surface of the disc seat can be inserted and connected with each other and limited by the nut body, facilitating the slope protection and having strong stability.

[0018] 2. The technical scheme of the present application, through the design of bifurcated rod, concrete layer, screw rod and rotating seat, when the T-shaped cylinder and the disc seat are inserted and connected with each other and the soil, the screw rod extending into the soil is inserted into the T-shaped cylinder, and the rotating seat and the screw rod are screwed with each other to provide tension to the T-shaped cylinder, and due to the bifurcated rod at the bottom of the screw rod being pre-set in the soil of the slope and being fixed by the concrete layer, the bifurcated rod can more stably provide tension to the screw rod, so that the stability of the frame plate and the grating plate after installation is improved, and the frame plate can more stably protect the slope with the grating plate. BRIEF DESCRIPTION OF DRAWINGS

[0019] The present application will be further described below in combination with the drawings and embodiments.

[0020] Figure 1 is the isometric view of the present application;

[0021] Figure 2 is the plan view of the connecting structure between the frame plate and the disc seat of the present application;

[0022] Figure 3 is the structure view of the structure between the frame plate and the disc seat of the present application at local part A;

[0023] In the drawings: 1, disc seat; 2, T-shaped cylinder; 3, inclined arc piece; 4, stud; 5, frame plate; 6, nut body; 7, grating plate; 8, frame strip; 9, bifurcated rod; 10, concrete layer; 11, screw rod; 12, rotating seat; 13, end cover; 14, vertical rod; 15, screw body. DETAILED DESCRIPTION

[0024] In order to make the technical means, creative features, purposes and effects realized by the present application easy to understand, the present application will be further described below in combination with specific embodiments.

[0025] Please refer to Figures 1-3The utility model discloses an embodiment provides a technical scheme: a slope protection structure for geological disaster control, including disc seat 1, the disc seat 1 is inserted for the T type cylinder 2 of limiting, and the T type cylinder 2 outer periphery integral configuration has the inclined arc piece 3 of being located disc seat 1 bottom, and the inclined arc piece 3 has multiple groups, the disc seat 1 top end surface integral configuration has the stud 4, and the stud 4 has multiple groups, multiple groups disc seat 1 between assembly with the frame plate 5 of stud 4 intercalation, and the stud 4 outer periphery screw installs with frame plate 5 and abuts the nut body 6, and the nut body 6 has multiple groups, frame plate 5 inside assembly is used for the grid plate 7 of slope protection, and the grid plate 7 has multiple groups, the T type cylinder 2 inside insertion is used for the screw rod 11 of support, and the screw rod 11 is located T type cylinder 2 bottom one end integral configuration has the bifurcated rod 9 in the soil inside, the screw rod 11 top end surface screw installs with T type cylinder 2 and abuts the rotary seat 12, and the rotary seat 12 has multiple groups, the bifurcated rod 9 outer periphery is provided with concrete layer 10.

[0026] In use, in the process of using the slope protection structure for geological disaster control, the disc seat 1 can be conveniently placed on the slope at a suitable position, then the T type cylinder 2 is inserted into the disc seat 1, and the T type cylinder 2 is rotated into the soil and is limited and fixed to the disc seat 1 due to the multiple inclined arc pieces 3 on the outer periphery of the T type cylinder 2, then the frame plate 5 for slope protection and the stud 4 on the surface of the disc seat 1 are inserted into each other and are limited by the nut body 6, so that the slope protection is convenient and has high stability.

[0027] When the T type cylinder 2 and the disc seat 1 are inserted into each other and are connected with the soil by screwing, the T type cylinder 2 and the screw rod 11 extending into the soil are inserted into each other, and the rotary seat 12 and the screw rod 11 are screwed into each other to provide tension to the T type cylinder 2, and the bifurcated rod 9 at the bottom of the screw rod 11 is pre-set in the soil of the slope, and the bifurcated rod 9 is fixed by the concrete layer 10, so that the bifurcated rod 9 can more stably provide tension to the screw rod 11, thereby improving the stability of the frame plate 5 and the grid plate 7 after installation, and the frame plate 5 and the grid plate 7 can more stably protect the slope.

[0028] As shown in Figure 1 , Figure 2 and Figure 3 , the frame plate 5 top end surface assembly has the frame strip 8 of abutting with the grid plate 7.

[0029] In use, the frame strip 8 is installed on the surface of the frame plate 5 and abuts with the grid plate 7, so as to assist in limiting the grid plate 7 in the frame plate 5, thereby improving the stability of the grid plate 7 after installation.

[0030] As shown in Figure 2 and Figure 3 , two groups of frame plates 5 are assembled with end covers 13 for protection.

[0031] In use, the end cover 13 is installed between the two groups of frame plates 5, which is convenient for protecting the disc seat 1 between the two groups of frame plates 5, so that the disc seat 1 can more stably limit and fix the frame plate 5.

[0032] As shown in Figure 2 and Figure 3 , the nut body 6 is externally screwed with a screw body 15 for auxiliary limiting.

[0033] In use, the screw body 15 is externally screwed with the nut body 6 and abuts with the stud 4, which is convenient for auxiliary limiting the nut body 6 externally screwed with the stud 4, so that the nut body 6 can more stably limit and fix the frame plate 5.

[0034] As shown in Figure 2 and Figure 3 Figure 2 Figure 3 , the disc seat 1 is integrally formed with a vertical rod 14 at the bottom end surface, and the vertical rod 14 has multiple groups.

[0035] In use, the vertical rod 14 at the bottom of the disc seat 1 can be inserted into the soil, which is convenient for reducing the self-rotation of the disc seat 1 when abutting with the soil, so that the disc seat 1 can stably support the frame plate 5.

[0036] The working principle and use process of the utility model are as follows: in use, first, the corresponding structure parts are installed in the appropriate position, and in the process of using the slope protection structure for address disaster control, the disc seat 1 can be conveniently placed on the appropriate position of the slope, then the T-shaped cylinder 2 is inserted into the disc seat 1, and at the same time, the multiple groups of inclined arc pieces 3 on the outer periphery of the T-shaped cylinder 2 can make the T-shaped cylinder 2 rotate into the soil and limit and fix the disc seat 1, then the frame plate 5 of the slope protection and the stud 4 on the surface of the disc seat 1 are inserted into each other and limited by the nut body 6, so that the frame plate 5 drives the multiple groups of grating plates 7 to conveniently protect the slope and have high stability, when the T-shaped cylinder 2 and the disc seat 1 are inserted into each other and connected with the soil, the T-shaped cylinder 2 is inserted into the screw rod 11 protruding from the soil, and the rotation seat 12 and the screw rod 11 are screwed into each other and provide tension to the T-shaped cylinder 2, and the bifurcated rod 9 at the bottom of the screw rod 11 is pre-set in the soil of the slope, and the concrete layer 10 fixes the bifurcated rod 9, so that the bifurcated rod 9 can more stably provide tension to the screw rod 11, thereby improving the stability of the frame plate 5 and the grating plate 7 after installation, so that the frame plate 5 drives the grating plate 7 to more stably protect the slope.

[0037] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A slope protection structure for geological disaster management, characterized by, The utility model provides a disc seat (1) is inserted with T type cylinder (2) for limiting in the disc seat (1), and the outer periphery of T type cylinder (2) is integrally formed with the inclined arc piece (3) at the bottom of disc seat (1), and the inclined arc piece (3) has multiple groups, the top surface of disc seat (1) is integrally formed with stud (4), and stud (4) has multiple groups, and multiple groups of frame plate (5) are assembled between disc seat (1) and are inserted with stud (4), and the outer periphery of stud (4) is screw mounted with nut body (6) and is abutted with frame plate (5), and nut body (6) has multiple groups, and the inner assembly of frame plate (5) has grating plate (7) for revetment, and grating plate (7) has multiple groups; The utility model discloses a disc seat (1) is inserted with T type cylinder (2) for limiting in the disc seat (1), and the outer periphery of T type cylinder (2) is integrally formed with the inclined arc piece (3) at the bottom of disc seat (1), and the inclined arc piece (3) has multiple groups, the top surface of disc seat (1) is integrally formed with stud (4), and stud (4) has multiple groups, and multiple groups of frame plate (5) are assembled between disc seat (1) and are inserted with stud (4), and the outer periphery of stud (4) is screw mounted with nut body (6) and is abutted with frame plate (5), and nut body (6) has multiple groups, and the inner assembly of frame plate (5) has grating plate (7) for revetment, and grating plate (7) has multiple groups; 2.The slope protection structure for geological disaster treatment according to claim 1, characterized in that, The top surface of frame plate (5) is assembled with frame strip (8) and is abutted with grating plate (7).

3. The slope protection structure for geological disaster control according to claim 1, characterized in that, Two groups of frame plate (5) are assembled with end cover (13) for protection between them.

4. The slope protection structure for geological disaster control according to claim 1, characterized in that, The outer periphery of nut body (6) is screw mounted with screw body (15) for auxiliary limiting.

5. The slope protection structure for geological disaster control according to claim 1, characterized in that, The bottom end surface of disc seat (1) is integrally formed with vertical rod (14), and vertical rod (14) has multiple groups.

Citation Information

Patent Citations

  • Slope protection structure for geological disaster control

    CN219118193U