Grouting device for geological disaster control

By designing a grouting device for geological disaster management that includes mixing components, adjustment components and reinforcement components, the shortcomings of existing devices in grouting angle adjustment and stability are solved, and work efficiency and equipment stability are improved.

CN222976831UActive Publication Date: 2025-06-13XIANGYANG GEOLOGICAL FOUNDATION ENG CO LTD
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Patent Information

Application Number
CN202422110100.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-06-13
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The existing grouting device for geological disaster management cannot adjust the grouting angle according to needs during the grouting process, and the base and wheels are not fixed, which leads to easy shaking in muddy sections and reduces work efficiency.

Method used

A grouting device including a base plate, a column, a transverse plate, a grouting tank, a mixing assembly, a regulating assembly and a reinforcement assembly is designed. The mixing assembly is used to stir and clean the inner wall of the grouting tank. The adjustment assembly can adjust the angle of the spray pipe. The reinforcement assembly fixes the bottom plate through a hydraulic telescopic rod and a connecting rod to improve stability.

Benefits of technology

Through flexible injection adjustment and stability enhancement mechanisms, adapting to different working environments, the construction efficiency and reliability of equipment use are improved, and the stability of the grouting tank during the grouting process is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a grouting device for geological disaster control, which relates to the field of disaster control instruments and comprises a bottom plate, a grouting tank is arranged in the middle of the top end of the bottom plate, a feed port is arranged on one side of the top end of the grouting tank, and a mixing component is arranged in the middle of the top end of the grouting tank in a penetrating manner; a slurry pipe is arranged at the bottom end of the grouting tank, a slurry outlet head is arranged at the end of the slurry pipe, and an adjusting assembly matched with the bottom plate is arranged in the middle of the slurry pipe. A plurality of threaded columns matched with the bottom plate are arranged at the two ends of the grouting tank, and the outer sides of the threaded columns are sleeved with reinforcing assemblies. Under the matching action of the material mixing assembly, the slurry pipe, the slurry outlet head, the adjusting assembly and the reinforcing assembly, the operation efficiency and safety are improved, and different working environments are adapted through a flexible injection adjusting and stability enhancing mechanism, so that the construction efficiency and the equipment use reliability are optimized.
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Description

Technical Field

[0001] The utility model relates to the field of disaster control instruments, and more specifically, to a grouting device for geological disaster control. Background Technique

[0002] The exploitation of mineral resources is one of the most serious forms of damage to the earth's surface landscape and surface ecosystem in human organized activities; after the mining operation is completed, usually a large area of abandoned tailings and exposed rocks are left, and it is difficult for vegetation to grow in these areas; if ecological restoration is not carried out in time, this situation may lead to a series of environmental problems, and in more serious cases, it may also trigger geological disasters, threatening the safety of surrounding residents and workers.

[0003] For example, Chinese Patent No. CN221218803U discloses a grouting device for geological disaster control construction. When filling concrete, the pressure pump makes the cement spray out from the discharge pipe, better filling the corners. After filling, the vibrating rod vibrates back and forth to make the concrete more compact and the corners more solid.

[0004] Although this device solves the problem of easy coagulation of the slurry, during the grouting process, the grouting angle cannot be adjusted according to requirements. At the same time, the base and the wheels lack fixation. In the wild, when encountering muddy roads, it is easy to shake during the grouting process, resulting in a decline in work efficiency.

[0005] Regarding the problems in the related technology, no effective solution has been proposed yet. Content of the Utility Model

[0006] Regarding the problems in the related technology, the utility model proposes a grouting device for geological disaster control to overcome the above-mentioned technical problems existing in the existing related technology.

[0007] Therefore, the specific technical solution adopted by the utility model is as follows:

[0008] A grouting device for geological disaster control includes a bottom plate. On one side of the top end of the bottom plate, two groups of columns are symmetrically arranged. Between the top ends of the two groups of columns, there is a cross plate connected. On one side of the cross plate, there is a cross bar one with both ends provided. At the end of the cross bar one, there is a handle, and on one side of the top end of the cross bar one, there is a controller; in the middle of the top end of the bottom plate, there is a grouting tank. On one side of the top end of the grouting tank, there is a feeding port. In the middle position of the top end of the grouting tank, there is a mixing component inserted; at the bottom end of the grouting tank, there is a slurry pipe. At the end of the slurry pipe, there is a slurry outlet head. In the middle of the slurry pipe, there is an adjusting component matched with the bottom plate; at both ends of the grouting tank, there are several threaded columns matched with the bottom plate, and an enhancing component is sleeved on the outer side of the threaded columns.

[0009] Further, in order to enable the mixing component to not only stir the cement inside the grouting tank, but also clean the inner wall of the grouting tank to avoid residue and blockage and ensure the quality of the mixture, the mixing component includes a first motor disposed at the top end of the grouting tank. A first rotating shaft is disposed at the output end of the first motor. A plurality of stirring blades are evenly sleeved on the outer side of the first rotating shaft. Cross bars are disposed at both ends of the first rotating shaft. Scrapers are disposed at both ends of the cross bars and are adapted to the inner wall of the grouting tank.

[0010] Further, in order to enable the rotating component to make the spraying range of the spraying pipe wider and to adjust the angle of the spraying pipe according to requirements, thereby improving the grouting efficiency, the adjusting component includes a fixing plate disposed at the top end of the bottom plate. A plurality of brackets are disposed on the outer side of the top end of the fixing plate. A square block is disposed between the top ends of the brackets; A second motor is disposed in the middle of the top end of the fixing plate. One end of the output shaft of the second motor is provided with a second rotating shaft. The top end of the second rotating shaft penetrates through the top end of the square block and is provided with a sleeve. A rotating member is sleeved inside the sleeve; Two symmetrically arranged electric push rods are disposed on the outer side of the top end of the fixing plate and between the two brackets. A circular ring is disposed at the output end of the electric push rod. The rotating member includes a circular shaft sleeved inside the sleeve. An L-shaped plate is disposed at one end of the circular shaft. A fixing column is disposed at one end of the top of the L-shaped plate. The top of the fixing column is adapted to the mud pipe; A connecting side rod is disposed on the side wall of the end of the other end of the circular shaft. An annular groove adapted to the connecting side rod is formed on the inner side wall of the circular ring.

[0011] Further, in order to fix the entire bottom plate at a designated working location through the reinforcement component and reduce the shaking degree of the entire bottom plate, so that the bottom plate can be applicable to various environments, thereby increasing the stability of the bottom plate and ensuring the stability of the grouting tank during grouting, the reinforcement component includes an installation ring sleeved on the circumferential outer side of the threaded column. A side plate is disposed at one end of the installation ring away from the threaded column. A set of symmetrically arranged connecting rods are disposed at the top and bottom of one side wall of the side plate. A stabilizing leg is disposed at one end of the connecting rod. A fixing plate is disposed at the bottom of the stabilizing leg; The two connecting rods at one end of the side plate and the top of the stabilizing leg and the set of connecting rods at one end of the side plate and the middle of the stabilizing leg are connected by pins; A hydraulic telescopic rod is disposed in the middle of the bottom of one side wall of the side plate. A plurality of protruding blocks are evenly disposed at the bottom end of the fixing plate.

[0012] The beneficial effects of the present utility model are as follows:

[0013] 1. With the combined action of the mixing component, the mud pipe, the slurry outlet head, the adjusting component and the reinforcement component, the present utility model not only improves the operation efficiency and safety, but also adapts to different working environments through a flexible spraying adjustment and stability enhancement mechanism, thereby optimizing the construction efficiency and the reliability of equipment use.

[0014] 2. Under the action of the mixing component, not only can the cement inside the grouting tank be stirred, but also the inner wall of the grouting tank can be cleaned to avoid residue and blockage, ensuring the quality of the mixture. Under the action of the rotating component, the spraying range of the spraying pipe is wider, and the angle of the spraying pipe can be adjusted according to requirements, thereby improving the grouting efficiency.

[0015] 3. The entire bottom plate is fixed at the designated working location through the reinforcement component, and the degree of shaking of the entire bottom plate is reduced, enabling the bottom plate to be applicable to various environments, thereby increasing the stability of the bottom plate and ensuring the stability of the grouting tank during the grouting process. Brief Description of the Drawings

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0017] Figure 1 is a schematic structural diagram of a grouting device for geological disaster control according to an embodiment of the present invention;

[0018] Figure 2 is a cross-sectional view of a grouting device for geological disaster control according to an embodiment of the present invention;

[0019] Figure 3 is Figure 2 a partial enlarged view of part A in

[0020] Figure 4 is a schematic structural diagram of an adjustment component in a grouting device for geological disaster control according to an embodiment of the present invention;

[0021] Figure 5 is a schematic structural diagram of a reinforcement component in a grouting device for geological disaster control according to an embodiment of the present invention.

[0022] In the figure:

[0023] 1. Bottom plate; 2. Column; 3. Cross plate; 4. First cross bar; 5. Handle; 6. Controller; 7. Grouting tank; 8. Feeding port; 9. Mixing component; 901. First motor; 902. First rotating shaft; 903. Stirring blade; 904. Second cross bar; 905. Scraper; 10. Mud pipe; 11. Grout outlet head; 12. Adjusting component; 1201. Fixed plate; 1202. Bracket; 1203. Square block; 1204. Second motor; 1205. Second rotating shaft; 1206. Sleeve; 1207. Rotating part; 12071. Round shaft; 12072. L-shaped plate; 12073. Fixed column; 12074. Connecting side bar; 1208. Electric push rod; 1209. Ring; 12091. Annular groove; 13. Threaded column; 14. Reinforcing component; 1401. Mounting ring; 1402. Side plate; 1403. Connecting rod; 1404. Stabilizing leg; 1405. Fixed disk; 1406. Pin shaft; 1407. Hydraulic telescopic rod; 1408. Protruding block. Detailed implementation manners

[0024] To further illustrate each embodiment, the present utility model provides accompanying drawings, which are a part of the disclosure of the present utility model. They are mainly used to illustrate the embodiments and can be combined with the relevant descriptions in the specification to explain the operating principle of the embodiments. With reference to these contents, those of ordinary skill in the art should be able to understand other possible implementation manners and the advantages of the present utility model. The components in the figures are not drawn to scale, and similar component symbols are usually used to represent similar components.

[0025] According to an embodiment of the present utility model, a grouting device for geological disaster control is provided.

[0026] Now, the present utility model will be further described in conjunction with the accompanying drawings and specific implementation manners. As Figures 1-5 shown, the grouting device for geological disaster control according to an embodiment of the present utility model includes a bottom plate 1. On one side of the top end of the bottom plate 1, two groups of columns 2 are symmetrically arranged. Between the top ends of the two groups of columns 2, they are connected by a cross plate 3. On one side of the cross plate 3, there is a first cross bar 4 with both ends provided. At the end of the first cross bar 4, there is a handle 5. On one side of the top end of the first cross bar 4, there is a controller 6; in the middle of the top end of the bottom plate 1, there is a grouting tank 7. On one side of the top end of the grouting tank 7, there is a feeding port 8. At the middle position of the top end of the grouting tank 7, a mixing component 9 is inserted; at the bottom end of the grouting tank 7, there is a mud pipe 10. At the end of the mud pipe 10, there is a grout outlet head 11. In the middle of the mud pipe 10, there is an adjusting component 12 that cooperates with the bottom plate 1; at both ends of the grouting tank 7, there are several threaded columns 13 that cooperate with the bottom plate 1. Outside the threaded columns 13, there is a reinforcing component 14 sleeved.

[0027] With the above technical solutions, under the combined action of the mixing component 9, the slurry pipe 10, the slurry outlet head 11, the adjustment component 12 and the reinforcement component 14, the utility model not only improves the operation efficiency and safety, but also adapts to different working environments through flexible jet adjustment and stability enhancement mechanisms, thus optimizing the construction efficiency and the reliability of equipment use; under the action of the mixing component 9, not only can the cement inside the grouting tank 7 be stirred, but also the inner wall of the grouting tank 7 can be cleaned to avoid residue and blockage, ensuring the quality of the mixture; under the action of the rotation component 12, the spraying range of the spraying pipe 10 is wider, and the angle of the spraying pipe 10 can be adjusted according to requirements, thereby improving the grouting efficiency; through the reinforcement component 14, the entire bottom plate 1 is fixed at the designated working location and the shaking degree of the entire bottom plate 1 is reduced, so that the bottom plate 1 can be applied to a variety of environments, thereby increasing the stability of the bottom plate and ensuring the stability of the grouting tank 7 during the grouting process.

[0028] In addition, it should be explained that the adjustment component 12 enables the sprayed slurry to accurately reach the target area through fine angle and direction adjustment. Especially in complex or inaccessible geological structures, it provides greater flexibility and application scope; the reinforcement component 14 ensures the stability of the device in various terrains and unstable environments, preventing movement or tilting during operation, which is crucial for working in unstable geological environments. Moreover, the grouting device design takes into account the need to use a variety of grouting materials, such as cement, lime milk and chemical grouting, and these materials can provide additional options and flexibility when dealing with different types of geological disasters.

[0029] In one embodiment, for the above mixing component 9, the mixing component 9 includes a first motor 901 arranged at the top end of the grouting tank 7. The output end of the first motor 901 is provided with a first rotating shaft 902. A number of stirring blades 903 are evenly sleeved on the outer side of the first rotating shaft 902. Cross bars 904 are arranged at both ends of the first rotating shaft 902. Scrapers 905 that cooperate with the inner wall of the grouting tank 7 are arranged at both ends of the cross bars 904. Thus, under the action of the mixing component 9, not only can the cement inside the grouting tank 7 be stirred, but also the inner wall of the grouting tank 7 can be cleaned to avoid residue and blockage, ensuring the quality of the mixture.

[0030] The working principle of the mixing component 9 is as follows: Under the control of the controller 6, the first motor 901 is controlled and started. Driven by the output shaft of the first motor 901, the first rotating shaft 902 rotates. During the rotation of the first rotating shaft 902, the stirring blades 903 are driven to rotate. At the same time, the cross bars 904 at both ends of the first rotating shaft 902 are driven to rotate, and the scrapers 905 are driven by the cross bars 904 to clean the inner wall of the grouting tank 7.

[0031] In one embodiment, for the above-mentioned adjusting assembly 12, the adjusting assembly 12 includes a fixing plate 1201 arranged at the top of the bottom plate 1. A number of brackets 1202 are arranged on the outer side of the top of the fixing plate 1201. A square block 1203 is arranged between the tops of the brackets 1202. In the middle of the top of the fixing plate 1201, there is a second motor 1204. One end of the output shaft of the second motor 1204 is provided with a second rotating shaft 1205. The top of the second rotating shaft 1205 penetrates through the top of the square block 1203 and is provided with a sleeve 1206. A rotating member 1207 is sleeved inside the sleeve 1206. On the outer side of the top of the fixing plate 1201 and between two brackets 1202, there are two symmetrically arranged electric push rods 1208. The output end of the electric push rod 1208 is provided with a ring 1209. The rotating member 1207 includes a circular shaft 12071 sleeved inside the sleeve 1206. One end of the circular shaft 12071 is provided with an L-shaped plate 12072. One end of the top of the L-shaped plate 12072 is provided with a fixing column 12073, and the top of the fixing column 12073 cooperates with the slurry pipe 10. On the end side wall of the other end of the circular shaft 12071, there is a connecting side rod 12074. An annular groove 12091 matching with the connecting side rod 12074 is formed on the inner side wall of the ring 1209. Thus, under the action of the rotating assembly 12, the spraying range of the slurry spraying pipe 10 is wider, and the angle of the slurry spraying pipe 10 can be adjusted according to requirements, thereby improving the grouting efficiency.

[0032] The working principle of the adjusting assembly 12 is as follows: Under the control of the controller 6, by starting the second motor 1204, the output shaft of the second motor 1204 drives the second rotating shaft 1205 to rotate, thereby driving the sleeve 1206 to rotate, thereby driving the rotating member 1207 to rotate, and further driving the slurry pipe 10 to rotate in the horizontal direction. Then, by starting the electric push rod 1208 through the control panel, the piston rod of the electric push rod 1208 is extended or shortened, thereby driving the ring 1209 to perform reciprocating up and down movement. Under the cooperation of the annular groove 12091 and the connecting side rod 12074, the rotating member 1207 is driven to rotate with the sleeve 1206 as the center, and thus the angle adjustment of the slurry pipe 10 is realized.

[0033] In one embodiment, for the above-mentioned reinforcement component 14, the reinforcement component 14 includes a mounting ring 1401 sleeved on the outer circumference of the threaded column 13. One end of the mounting ring 1401 away from the threaded column 13 is provided with a side plate 1402. A set of symmetrically arranged connecting rods 1403 are provided at the top and bottom of one side wall of the side plate 1402. One end of the connecting rod 1403 is provided with a stabilizing leg 1404, and a fixing plate 1405 is provided at the bottom of the stabilizing leg 1404; the two connecting rods 1403 at one end of the side plate 1402 are connected to the top of the stabilizing leg 1404, and a set of connecting rods 1403 at one end of the side plate 1402 are connected to the middle of the stabilizing leg 1404 through a pin shaft 1406; in the middle of the bottom of one side wall of the side plate 1402, a hydraulic telescopic rod 1407 is provided, and a number of raised blocks 1408 are evenly arranged at the bottom end of the fixing plate 1405. Thus, the entire bottom plate 1 is fixed at a designated working location through the reinforcement component 14, and the shaking degree of the entire bottom plate 1 is reduced, so that the bottom plate 1 can be applicable to various environments, thereby increasing the stability of the bottom plate and ensuring the stability of the grouting tank 7 during the grouting process.

[0034] The working principle of the reinforcement component 14 is as follows: Under the control of the controller 6, the hydraulic telescopic rod 1407 is controlled and started, so that the piston rod of the hydraulic telescopic rod 1407 shortens. Thus, under the cooperation of the connecting rod 1403, the pin shaft 1406 and the stabilizing leg 1404, the end of the connecting rod 1403 away from the side plate 1402 is lowered, so that the stabilizing leg 1404 descends. When the fixing plate 1405 contacts the ground, the raised blocks 14051 at the bottom end will insert into the ground and be fixed, thereby fixing both sides of the mounting bottom plate 1 and ensuring the stability of the bottom plate 1.

[0035] To facilitate the understanding of the above technical solution of the present invention, the working principle or operation method of the present invention in the actual process will be described in detail below.

[0036] In actual application, first, cement is poured into the grouting tank 7 through the feed port 8, and the cross bar one 4 is driven to move by the grip 5, and the entire bottom plate 1 is moved to a designated working location. The bottom plate 1 is fixed by the reinforcement component 14. At the same time, under the instruction of the controller 6, the inner wall of the grouting tank 7 is cleaned by the mixing component 9, and the stability of the cement is ensured. According to the preset requirements, the cement pipe 10 is adjusted to a designated angle by the adjusting component 12, and the cement is pumped out through the mud pipe 10 by a water pump and sprayed out through the slurry outlet head 11.

[0037] The working principles of the mixing component 9, the adjusting component 12 and the reinforcement component 14 are as shown above.

[0038] In summary, by means of the above technical solutions of the present utility model, the present utility model, under the combined action of the mixing assembly 9, the slurry pipe 10, the slurry outlet head 11, the adjustment assembly 12 and the reinforcement assembly 14, not only improves the operation efficiency and safety, but also adapts to different working environments through flexible spraying adjustment and stability enhancement mechanisms, thereby optimizing the construction efficiency and the reliability of equipment use; under the action of the mixing assembly 9, not only can the cement inside the grouting tank 7 be stirred, but also the inner wall of the grouting tank 7 can be cleaned to avoid residue and blockage and ensure the quality of the mixture; under the action of the rotating assembly 12, the spraying range of the spraying pipe 10 is wider, and the angle of the spraying pipe 10 can be adjusted according to requirements, thereby improving the grouting efficiency; through the reinforcement assembly 14, the entire bottom plate 1 is fixed at the designated working location and the shaking degree of the entire bottom plate 1 is reduced, so that the bottom plate 1 can be applied to various environments, thereby increasing the stability of the bottom plate and ensuring the stability of the grouting tank 7 during the grouting process.

[0039] In the present utility model, unless otherwise clearly specified and defined, terms such as "installation", "setting", "connection", "fixation", "swivel connection" and the like shall be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two components or the interaction relationship between two components. Unless otherwise clearly defined, for those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0040] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.

Claims

1. A grouting device for geological disaster management, comprising a base plate (1), characterized in that: Two groups of upright posts (2) are symmetrically arranged on one side of the top of the bottom plate (1), the tops of the two groups of upright posts (2) are connected by a horizontal plate (3), one side of the horizontal plate (3) is provided with a horizontal bar (4) at both ends, a handle (5) is arranged at the end of the horizontal bar (4), and a controller (6) is arranged on one side of the top of the horizontal bar (4); A grouting tank (7) is provided at the middle of the top of the bottom plate (1), a feed inlet (8) is provided at one side of the top of the grouting tank (7), and a mixing component (9) is interspersed at the middle of the top of the grouting tank (7); A mud pipe (10) is provided at the bottom end of the grouting tank (7), a mud outlet head (11) is provided at the end of the mud pipe (10), and an adjustment component (12) matched with the bottom plate (1) is provided in the middle of the mud pipe (10); A plurality of threaded columns (13) matching with the bottom plate (1) are arranged at both ends of the grouting tank (7), and a reinforcement component (14) is sleeved on the outer side of the threaded columns (13).

2. A grouting device for geological disaster management according to claim 1, characterized in that: The mixing assembly (9) comprises a motor 1 (901) arranged at the top of the grouting tank (7); a rotating shaft 1 (902) is arranged at the output end of the motor 1 (901); a plurality of stirring blades (903) are evenly sleeved on the outer side of the rotating shaft 1 (902); a cross bar 2 (904) is arranged at both ends of the rotating shaft 1 (902); and scrapers (905) that cooperate with the inner wall of the grouting tank (7) are arranged at both ends of the cross bar 2 (904).

3. A grouting device for geological disaster management according to claim 2, characterized in that: The adjustment component (12) comprises a fixing plate (1201) arranged at the top end of the bottom plate (1), a plurality of brackets (1202) are arranged outside the top end of the fixing plate (1201), and square blocks (1203) are arranged between the top ends of the brackets (1202); A second motor (1204) is disposed in the middle of the top of the fixed plate (1201); a second rotating shaft (1205) is disposed at one end of the output shaft of the second motor (1204); a sleeve (1206) is disposed at the top of the second rotating shaft (1205) passing through the top of the square block (1203); a rotating member (1207) is sleeved inside the sleeve (1206); Two symmetrical electric push rods (1208) are arranged outside the top end of the fixing plate (1201) and between the two brackets (1202), and a circular ring (1209) is arranged at the output end of the electric push rod (1208).

4. A grouting device for geological disaster management according to claim 3, characterized in that: The rotating member (1207) comprises a circular shaft (12071) sleeved inside the sleeve (1206), an L-shaped plate (12072) is arranged at one end of the circular shaft (12071), a fixing column (12073) is arranged at one end of the top end of the L-shaped plate (12072), and the top of the fixing column (12073) is matched with the mud pipe (10); A connecting side rod (12074) is provided on the end side wall of the other end of the circular shaft (12071).

5. A grouting device for geological disaster management according to claim 4, characterized in that: An inner side wall of the circular ring (1209) is provided with an annular groove (12091) that matches the connecting side rod (12074).

6. A grouting device for geological disaster management according to claim 1, characterized in that: The reinforcement component (14) comprises a mounting ring (1401) sleeved on the outer side of the circumference of the threaded column (13); a side plate (1402) is provided at one end of the mounting ring (1401) away from the threaded column (13); a group of symmetrical connecting rods (1403) are provided at the top and bottom of one side wall of the side plate (1402); a stabilizing leg (1404) is provided at one end of the connecting rod (1403); and a fixing plate (1405) is provided at the bottom of the stabilizing leg (1404); Two connecting rods (1403) at one end of the side plate (1402) and the top of the stabilizing leg (1404), as well as a group of connecting rods (1403) located at one end of the side plate (1402) and the middle of the stabilizing leg (1404) are all connected via a pin (1406); A hydraulic telescopic rod (1407) is provided in the middle of the bottom of one side wall of the side plate (1402).

7. A grouting device for geological disaster management according to claim 6, characterized in that: A plurality of protrusions (1408) are evenly arranged at the bottom end of the fixed plate (1405).

Citation Information

Patent Citations

  • Grouting device for geological disaster control construction

    CN221218803U