Soil sand prevention slope protection device for geological disaster control

By designing a combination of protective frames, protective nets, insert rods, and stabilizing components, the problems of inconvenient splicing and poor stability of protective nets in sand-prevention slope protection devices were solved, achieving stable splicing of protective nets and improving the overall protection effect of slope protection.

CN223633954UActive Publication Date: 2025-12-05THE EIGHTH GEOLOGICAL BRIGADE OF HEBEI PROVINCIAL GEOLOGICAL & MINERAL EXPLORATION & DEV BUREAU (HEBEI PROVINCIAL MARINE GEOLOGICAL RESOURCES SURVEY CENT)
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Patent Information

Application Number
CN202423014110.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-07
Publication Date
2025-12-05
Estimated Expiration
2034-12-07

AI Technical Summary

Technical Problem

The existing sand-proof slope protection devices have independently installed protective nets, which makes splicing inconvenient and results in poor stability, thus affecting the slope protection effect.

Method used

A soil sand-prevention slope protection device was designed, which includes a protective frame, protective net, poles, clamps, and stabilizing components. The protective net is spliced ​​and stabilized by the cooperation of poles, clamps, and stabilizing components, and the fixation in the soil is enhanced by the use of nails and barbs.

Benefits of technology

This improved the overall stability of the protective netting and enhanced the protective effect of the slope.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a soil sand prevention and slope protection device for geological disaster control in the technical field of sand prevention and slope protection for geological disaster control, which comprises a protection frame, a protection net arranged on the inner wall of the protection frame, four groups of openings formed in the top of the protection frame, insertion rods arranged in the four groups of openings, and two groups of clamping grooves communicated with the openings formed in the right side of the bottom of the protection frame. The left side wall of the protection frame is provided with two sets of clamping plates matched with the clamping grooves, the tops of the two sets of clamping plates are provided with through holes matched with the openings, the insertion rods are internally provided with cavities, and the cavities are internally provided with stabilizing assemblies, the protection frame can be spliced under the action of the insertion rods, the clamping plates, the through holes, the openings, the clamping grooves and the stabilizing assemblies, and therefore the protection net can be spliced; the integrity of the protective net is improved, the protective net is more stably installed on the slope protection, and therefore the slope protection effect is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to geological disaster control sand prevention revetment technical field, concretely is a soil sand prevention revetment device for geological disaster control. BACKGROUND

[0002] Geological disaster control is the natural disaster with geological dynamic activity or geological environment abnormal change as the main cause, and common geological disaster control mainly refers to six kinds of disasters related to geological action such as collapse, landslide, debris flow, ground subsidence, ground fissure and ground subsidence endangering people's life and property safety, and most of present sand prevention revetments are stretched protection by multiple protection nets, then the protection net is fixed on sand slope by using wooden pile, because each protection net is independently arranged and fixed, it is inconvenient to splice and install multiple protection nets, and the stability is poor, thereby affecting the revetment effect, therefore, the soil sand prevention revetment device for geological disaster control is provided. UTILITY MODEL CONTENTS

[0003] The utility model is to provide a soil sand prevention revetment device for geological disaster control to solve the problems in the above background.

[0004] To achieve the above object, the utility model provides the following technical scheme: a soil sand prevention revetment device for geological disaster control, including the protection frame, the protection frame inner wall is equipped with the protection net, the protection frame top is equipped with four groups of openings, four groups of openings are equipped with the plug rod in, the protection frame bottom right side is equipped with two groups of clamping grooves that are connected with the opening, the protection frame left side wall is equipped with two groups of clamping plates that are matched with the clamping groove, two groups of clamping plates are equipped with the through -hole that is matched with the opening in the top, the plug rod is equipped with the cavity in, and the cavity is equipped with the stable assembly.

[0005] Further, the stable assembly includes two groups of sliding plates that are slidably connected in the cavity inner bottom, two groups of fixed plates are arranged on the side wall away from each other of the two groups of sliding plates, a plurality of inverted tooth gears are arranged on the side wall away from each other of the two groups of fixed plates, grooves are arranged on the left and right side walls of the plug rod, the grooves are matched with the fixed plates, a pressing block is slidably connected to the rear side wall in the cavity, a screw rod is arranged on the top of the pressing block, and one end of the screw rod is connected with an adjusting knob arranged outside and penetrating through the top of the cavity.

[0006] Further, a sliding groove is arranged on the rear side wall in the cavity, and a sliding block is arranged on the rear side wall of the pressing block and matched with the sliding groove.

[0007] Further, the pressing block is arranged in an isosceles trapezoidal shape, and the upper side walls of the opposite side walls of the two groups of sliding plates are arranged in an inclined shape.

[0008] Further, a sliding rod is movably arranged and penetrates through the right side wall of the two groups of sliding plates, and the two ends of the sliding rod are connected with the left and right side walls in the cavity.

[0009] Further, the two groups of the sliding plates away from the side walls are respectively provided with positioning inserting rods, the left and right side walls of the inserting rods are respectively provided with holes matched with the positioning inserting rods, the outer walls of the two groups of the positioning inserting rods are respectively sleeved with springs, one ends of the two groups of the springs are respectively connected with the side walls of the two groups of the sliding plates away from each other, and the other ends of the two groups of the springs are respectively connected with the left and right side walls in the cavities.

[0010] Further, the bottom of the guard frame is provided with a plurality of groups of inserting nails, and the outer side walls of the inserting nails are provided with a plurality of groups of barbs.

[0011] Compared with the prior art, the utility model has the advantages that the utility model can splice the guard frame under the action of the inserting rod, the clamping plate, the through hole, the opening, the clamping groove and the stable assembly, thereby the utility model can splice the protective net, improve the integrity of the protective net, and the protective net is more stable when being installed on the slope, thereby the slope effect is improved. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a structural schematic view of the utility model;

[0013] Figure 2 It is a structural bottom view of the utility model;

[0014] Figure 3 It is a structural schematic view of the cavity inside the utility model;

[0015] Figure 4 It is a structural schematic view of the utility model A.

[0016] In the drawing: 1, guard frame; 2, protective net; 3, inserting nail; 4, inserting rod; 5, stable assembly; 50, adjusting knob; 51, screw rod; 52, slot; 53, sliding plate; 54, fixed plate; 55, sliding rod; 56, barb tooth; 57, extrusion block; 58, hole; 59, sliding groove; 500, positioning inserting rod; 501, spring; 6, clamping plate; 7, through hole; 8, opening; 9, clamping groove; 10, cavity. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the utility model. EMBODIMENT

[0018] Please refer to Figures 1-3The utility model provides a technical scheme: a soil sand prevention slope protection device for geological disaster control, including the guard frame 1, the guard frame 1 inner wall is equipped with the protective net 2, the guard frame 1 bottom both sides are equipped with multiple groups of inserts 3, and the outer lateral wall of insert 3 is equipped with multiple groups of barbs, and the stability of the insert 3 inserted into the soil can be guaranteed under the action of barb, and the guard frame 1 that is spliced together is inserted into the sand slope under the action of insert 3, four groups of openings 8 are set up in the top of guard frame 1, and the plug rod 4 is equipped in four groups of openings 8, the right side of the bottom of guard frame 1 is equipped with two groups of clamping grooves 9 that are connected with opening 8, and the left lateral wall of guard frame 1 is equipped with two groups of clamping plates 6 that are matched with clamping groove 9, the top of two groups of clamping plates 6 is equipped with the through-hole 7 that is matched with opening 8, and the cavity 10 is set up in the plug rod 4, and the stable assembly 5 is equipped in the cavity 10.

[0019] Please refer to Figures 3-4 The stable assembly 5 includes two groups of sliding plates 53 that are slidably connected in the cavity 10, the right lateral wall of two groups of sliding plates 53 is movably penetrated with slide rod 55, and the left and right lateral walls of cavity 10 are connected with the two ends of slide rod 55, the sliding plate 53 moves more stably under the action of slide rod 55, the faraway lateral wall of two groups of sliding plates 53 is equipped with fixed plate 54, the faraway lateral wall of two groups of fixed plate 54 is equipped with multiple groups of inverted tooth 56, the left and right lateral walls of plug rod 4 are equipped with slot 52, the slot 52 is matched with fixed plate 54, the rear lateral wall of cavity 10 is slidably connected with extrusion block 57, the extrusion block 57 is arranged in the shape of isosceles trapezoid, the upper side of the opposite lateral wall of two groups of sliding plates 53 is arranged in the shape of inclination, the top of extrusion block 57 is equipped with screw rod 51, one end of screw rod 51 is penetrated with the top of cavity 10 and is connected with the adjusting knob 50 that is equipped with outside, the rear lateral wall of cavity 10 is equipped with sliding groove 59, and the sliding block that is matched with sliding groove 59 is arranged on the rear lateral wall of extrusion block 57, and the extrusion block 57 moves more stably up and down under the action of sliding groove 59 and sliding block.

[0020] Please refer to Figure 4 The faraway lateral wall of two groups of sliding plates 53 is equipped with positioning insert 500, the left and right lateral walls of plug rod 4 are equipped with the opening 58 that is matched with positioning insert 500, the outer wall of two groups of positioning inserts 500 is sleeved with spring 501, one end of two groups of springs 501 is connected with the faraway lateral wall of two groups of sliding plates 53, and the other end of two groups of springs 501 is connected with the left and right lateral walls of cavity 10.

[0021] Working principle: the card plate 6 on a group of guard frame 1 is clamped into the card slot 9 on another group of guard frame 1, under the action of the plug nail 3, the spliced guard frame 1 is inserted into the sand slope, then the plug rod 4 is inserted into the sand slope by the opening 8 and the guard frame 1 is fixed, the splicing and installation of the guard frame 1 is completed, the integrity of the protective net 2 is improved, the protective net 2 is installed on the slope more stably, then the staff rotates the adjusting knob 50 to drive the screw rod 51 to rotate, under the action of the sliding groove 59 and the sliding groove, the screw rod 51 drives the extrusion block 57 to move, the inclined surface of the extrusion block 57 can extrude the inclined surface of the sliding plate 53, the sliding plate 53 drives the fixed plate 54 and the inverted tooth 56 to move, the inverted tooth 56 is inserted into the soil, at the same time, the sliding plate 53 extrudes the spring 501, the sliding plate 53 drives the positioning plug rod 500 to be inserted into the soil, the stability of the plug rod 4 inserted into the soil is ensured, so that the stability of the guard frame 1 can be ensured, and the slope protection effect is further improved.

[0022] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A soil sand-prevention and slope protection device for geological disaster control, comprising a protective frame (1), wherein the inner wall of the protective frame (1) is provided with a protective net (2), characterized in that: The top of the protective frame (1) has four sets of openings (8), and each of the four sets of openings (8) is provided with a rod (4). The bottom right side of the protective frame (1) has two sets of slots (9) that are connected to the openings (8). The left side wall of the protective frame (1) has two sets of plates (6) that match the slots (9). The top of each set of plates (6) is provided with a through hole (7) that matches the opening (8). The rod (4) is provided with a cavity (10), and the cavity (10) is provided with a stabilizing component (5).

2. The soil sand-prevention and slope protection device for geological disaster control according to claim 1, characterized in that: The stabilizing component (5) includes two sets of sliding plates (53) slidably connected to the bottom of the cavity (10). Each of the two sets of sliding plates (53) is provided with a fixing plate (54) away from the side wall. Each of the two sets of fixing plates (54) is provided with multiple sets of reverse teeth (56) away from the side wall. The left and right side walls of the insertion rod (4) are provided with slots (52). The slots (52) match the fixing plates (54). The rear side wall of the cavity (10) is slidably connected to a pressing block (57). The top of the pressing block (57) is provided with a screw (51). One end of the screw (51) passes through the top of the cavity (10) and is connected to an external adjustment knob (50).

3. The soil sand-prevention and slope protection device for geological disaster control according to claim 2, characterized in that: The cavity (10) has a sliding groove (59) on its rear side wall, and the extrusion block (57) has a sliding block on its rear side wall that matches the sliding groove (59).

4. The soil sand-prevention and slope protection device for geological disaster control according to claim 2, characterized in that: The extrusion block (57) is arranged in the shape of an isosceles trapezoid, and the two sets of sliding plates (53) are arranged at an inclination on the upper side walls of opposite sides.

5. The soil sand-prevention and slope protection device for geological disaster control according to claim 2, characterized in that: The two sets of sliding plates (53) are movably connected to the right side wall of the sliding rod (55), and the two ends of the sliding rod (55) are respectively connected to the left and right side walls inside the cavity (10).

6. The soil sand-prevention and slope protection device for geological disaster control according to claim 2, characterized in that: Both sets of sliding plates (53) are provided with positioning rods (500) on the sidewalls away from each other. The left and right sidewalls of the rods (4) are provided with openings (58) that match the positioning rods (500). The outer walls of both sets of positioning rods (500) are fitted with springs (501). One end of each set of springs (501) is connected to the sidewalls away from each of the two sets of sliding plates (53), and the other end of each set of springs (501) is connected to the left and right sidewalls inside the cavity (10).

7. The soil sand-prevention and slope protection device for geological disaster control according to claim 1, characterized in that: The bottom front and rear sides of the protective frame (1) are provided with multiple sets of pins (3), and the outer side walls of the pins (3) are provided with multiple sets of barbs.