Reinforcing structure for preventing landslides of side slopes
By setting fixed-point devices, horizontal and vertical connection mechanisms, and auxiliary connection mechanisms on the slope, a stable overall reinforcement structure is formed, which solves the problem of poor reinforcement effect in the existing technology, effectively prevents landslides and debris flows, and ensures slope safety.
Patent Information
- Application Number
- CN202311022983.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-15
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-08-15
AI Technical Summary
Existing slope treatment methods cannot provide varying degrees of fixation based on actual conditions, resulting in poor reinforcement effects and an inability to effectively prevent disasters such as landslides and debris flows.
The reinforcement structure adopts a combination of fixed-point devices, horizontal connection mechanisms, and vertical connection mechanisms. Through fixed-point fixing, horizontal and vertical connection, and auxiliary connection mechanisms for buffering and connection, an overall stable slope structure is formed.
It enables fixed-point fixation according to actual needs, reduces the possibility of landslides and debris flows, enhances the overall stability of the slope, reduces the impact of rainwater and falling rocks, and ensures the safety of the area below.
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Figure CN117071600B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of slope protection, in particular to a slope landslide prevention reinforcing structure. BACKGROUND
[0002] The slope is a slope surface with a certain slope, especially in engineering, there are often slopes, but the open slope may cause landslides or mudslides due to wind erosion or rain erosion, affecting the safety of the downhill building or personnel, and causing certain economic losses.
[0003] The existing slope treatment mostly uses a net to cover, and then uses a conical nail to fix at some points. This method is simple in a certain way, but it cannot be fixed in different degrees according to the actual situation, and the reinforcing effect is discounted to a certain extent. SUMMARY
[0004] In order to solve the technical problem of poor protection, the present application provides a slope landslide prevention reinforcing structure.
[0005] The present application adopts the following technical scheme: a slope landslide prevention reinforcing structure, comprising:
[0006] The fixed-point device is provided with a plurality of fixed-point devices, which are inserted into the surface, and are used for fixed-point fixing;
[0007] The transverse connecting mechanism is transversely arranged between two fixed-point devices, and the fixed-point devices are mutually clamped;
[0008] The vertical connecting mechanism is vertically arranged between two fixed-point devices, and the fixed-point devices are mutually clamped;
[0009] The auxiliary connecting mechanism is transversely arranged between two vertical connecting mechanisms, and is used for buffering and connecting.
[0010] As a further improvement of the above scheme, the fixed-point device comprises:
[0011] The contact plate is provided with a connecting plate on both sides, and the connecting plate is provided with a connecting groove for connecting the vertical connecting mechanism;
[0012] The guide sleeve is fixedly connected to the contact plate, and the lower side is provided with an impact groove;
[0013] The impact block is slidably sleeved in the guide sleeve, one side of the impact block is fixedly connected with a sealing block, and one side of the sealing block is fixedly connected with an elastic assembly one fixedly connected with the guide sleeve;
[0014] The limiting assembly is arranged in the guide sleeve, and is used for fixing the sealing block;
[0015] The follow-up box is fixedly connected between the two impact blocks, a plurality of connecting rods are slidingly sleeved on the follow-up box, gear one and gear two located on the two sides of the follow-up box are fixedly connected to the two ends of the connecting rods respectively, and a gear ring matched with gear one is connected to the follow-up box;
[0016] The limiting tube one is fixedly connected to the bottom side of the follow-up box, is slidingly sleeved with the contact plate, is matched with gear two, and is provided with a stabilizing assembly in the limiting tube one.
[0017] The limiting tube two is provided in plurality, is fixedly connected to the bottom side of the follow-up box, is slidingly sleeved with the contact plate, and is staggered with the limiting tube one.
[0018] As a further improvement of the above-mentioned scheme, the stabilizing assembly comprises:
[0019] The guide block is slidingly sleeved in the limiting tube one, and the middle part is fixedly sleeved with the outer tube;
[0020] The inner tube is slidingly sleeved in the outer tube, the inner tube and one side of the outer tube are fixedly connected with the melting plate, and one side of the inner tube is provided with a plurality of overflow holes.
[0021] The sensor one is provided in plurality and is fixedly connected to the outer side of the inner tube.
[0022] As a further improvement of the above-mentioned scheme, the limiting assembly comprises:
[0023] The pulling plate is fixedly connected with the inlay block slidingly sleeved with the guide sleeve on one side, and one end of the inlay block is located in the sealing block;
[0024] The equalizing cavity is provided in the guide sleeve, the inner part is provided with the pushing plate fixedly connected with the inlay block, and one side of the equalizing cavity is communicated with the guide channel communicated with the inner part of the guide sleeve;
[0025] The pull rope is fixedly connected between the two pulling plates.
[0026] As a further improvement of the above-mentioned scheme, the contact plate is slidingly sleeved with the limiting pin matched with the impact block, the contact plate is provided with the control mechanism in the contact plate, and the contact plate is provided with the through slot for the gear two to pass through.
[0027] As a further improvement of the above-mentioned scheme, the guide sleeve is provided with the impact cavity, the sealing block is located in the impact cavity, the impact cavity is filled with high-pressure gas, one side of the impact block is connected with the impact sheet, and the top of the follow-up box is connected with the auxiliary tube.
[0028] As a further improvement of the above-mentioned scheme, one side of the pointing device is also provided with the driving mechanism for driving.
[0029] The driving mechanism comprises an outermost follow-up box matched with a guide sleeve, a motor fixedly connected in the follow-up box, a gearbox connected with the output end of the motor, a transmission assembly connected with the output end of the gearbox, a vertical rod transmissionally connected at one end of the transmission assembly, a mounting sleeve jacked at one end of the vertical rod, a driving ring fixedly connected at the bottom of the mounting sleeve, a reverse sleeve rotationally connected with the outer wall of the driving ring and threadedly sleeved with the follow-up box, a support pressing frame fixedly connected at one side of the follow-up box, and rolling balls embedded at the bottom end of the support pressing frame.
[0030] As a further improvement of the above-mentioned scheme, the vertical connecting mechanism and the horizontal connecting mechanism both comprise:
[0031] A fixed strip, the bottom of which is fixedly connected with a limiting cone in contact with the slope;
[0032] A mounting sleeve rotationally connected in the fixed strip;
[0033] A buffer arc fixedly connected at both sides of the fixed strip, which is provided with a plurality of overflow holes, and the fixed strip is provided with a through hole in communication with the overflow holes;
[0034] The vertical connecting mechanism further comprises a tension meter fixedly connected with the buffer arc, and the execution end of the tension meter is connected with a moving strip, and the moving strip is fixedly connected with a fixed frame matched with the auxiliary connecting mechanism.
[0035] As a further improvement of the above-mentioned scheme, the fixed strip is connected with a wire, and the bottom of the buffer arc is fixedly connected with an inlay strip matched with a connecting groove.
[0036] As a further improvement of the above-mentioned scheme, the auxiliary connecting mechanism comprises a fixed strip matched with the fixed frame, the fixed strip is provided with a filling cavity, the filling cavity is in communication with a placing hole located on the fixed strip, and the lower side of the filling cavity is in communication with a degradation cylinder fixedly connected with the fixed strip.
[0037] Compared with the prior art, the present application has the following advantages:
[0038] 1. The fixed point limiting of the fixed point device and the work of the horizontal connecting mechanism and the vertical connecting mechanism make the whole slope form a unified whole, which can reduce the possibility of landslide, and the horizontal connecting mechanism and the vertical connecting mechanism can block rainwater or falling rocks, reduce the possible sandstone flow, and further ensure the safety below.
[0039] 2. The fixed point device can be fixed conveniently and stably, different fixing needs can be realized according to needs, the actual fixing needs can be met, and the carrying of tools can be reduced, which is convenient for the whole. Attached Figure Description
[0040] Figure 1 This is a connection diagram of the present invention;
[0041] Figure 2 This is a schematic diagram of the front sectional view of the positioning device;
[0042] Figure 3 This is a top-view sectional view of the fixed-point device at SS.
[0043] Figure 4 A top-view sectional view of the fixed-point device LL is provided;
[0044] Figure 5 for Figure 2 Enlarged structural diagram at point A;
[0045] Figure 6 This is a partial front sectional view of the tube.
[0046] Figure 7 This is a schematic diagram of the main sectional view of the external pipe;
[0047] Figure 8 This is a schematic diagram of the front sectional view of the drive mechanism;
[0048] Figure 9 This is a schematic front sectional view of the vertical connection mechanism;
[0049] Figure 10 This is a front sectional view of the auxiliary connection mechanism.
[0050] Explanation of key symbols:
[0051] 01, fixed point device; 02, transverse connecting mechanism; 03, vertical connecting mechanism; 04, auxiliary connecting mechanism; 10, contact plate; 11, connecting groove; 12, connecting plate; 13, through groove; 14, threaded sleeve; 15, sealing block; 16, auxiliary pipe; 17, gear one; 18, follow-up box; 19, pull rope; 20, connecting rod; 21, gear ring; 22, elastic assembly one; 23, guide sleeve; 24, impact block; 25, impact groove; 26, limiting pin; 27, control mechanism; 28, limiting pipe one; 29, gear two; 30, limiting pipe two; 31, inlay block; 32, push plate; 33, guide way; 34, equalizing cavity; 35, pull plate; 36, inner pipe; 37, guide block; 38, outer pipe; 39, overflow hole; 40, sensor one; 41, melting plate; 42, fixed bar; 43, overflow hole; 44, buffer arc; 45, fixed frame; 46, moving bar; 47, tensiometer; 48, inlay bar; 49, mounting sleeve; 50, limiting cone; 51, fixed bar; 52, placement hole; 53, filling cavity; 54, degradation cylinder; 55, follow-up box; 56, motor; 57, mounting sleeve; 58, drive ring; 59, reverse sleeve; 60, pressing frame; 61, vertical rod; 62, transmission assembly. DETAILED DESCRIPTION
[0052] The application will be further described below in conjunction with the drawings and specific embodiments. It should be noted that the embodiments described below or the technical features thereof can be combined with each other to form new embodiments without conflict.
[0053] Embodiment:
[0054] Please combine Figures 1-10 ,
[0055] A reinforcing structure for preventing landslides of a slope, comprising: a plurality of fixed point devices 01, which are inserted into the surface and used for fixed-point fixing, the fixed point devices 01 perform necessary limiting to realize multi-point fixing, a transverse connecting mechanism 02, which is transversely arranged between two fixed point devices 01 and is clamped between the fixed point devices 01, the transverse connecting mechanism 02 performs connection and stabilization, a vertical connecting mechanism 03, which is vertically arranged between two fixed point devices 01 and is clamped between the fixed point devices 01, the vertical connecting mechanism 03 also performs connection and stabilization, and an auxiliary connecting mechanism 04, which is transversely arranged between two vertical connecting mechanisms 03 and is used for buffering and connecting.
[0056] The pointing device 01 comprises a contact plate 10, both sides of which are provided with connecting plates 12, connecting grooves 11 for connecting vertical connecting mechanisms 03 are arranged on the connecting plates 12, the contact plate 10 is defined, and the horizontal connecting mechanisms 02 and the vertical connecting mechanisms 03 are conveniently connected through the connecting plates 12, a guide sleeve 23 fixedly connected to the contact plate 10, a lower side of the guide sleeve 23 is provided with an impact groove 25, the guide sleeve 23 is supported, the impact groove 25 guides an impact block 24, the impact block 24 is slidingly sleeved in the guide sleeve 23, one side of the impact block 24 is fixedly connected with a sealing block 15, one side of the sealing block 15 is fixedly connected with an elastic assembly one 22 fixedly connected with the guide sleeve 23, the elastic assembly one 22 provides elastic potential energy, so that the sealing block 15 has a downward movement trend, a limiting assembly arranged on the guide sleeve 23 is used for fixing the sealing block 15, a follow-up box 18 fixedly connected between the two impact blocks 24, a plurality of connecting rods 20 slidingly sleeved on the follow-up box 18, both ends of the connecting rods 20 are fixedly connected with a gear one 17 and a gear two 29 located on both sides of the follow-up box 18, the follow-up box 18 is connected with a gear ring 21 matched with the gear one 17, the follow-up box 18 is connected, so that the gear one 17, the gear two 29 and the like are located in corresponding positions, a limiting pipe one 28 fixedly connected to the bottom side of the follow-up box 18 and slidingly sleeved with the contact plate 10, and matched with the gear two 29, a plurality of limiting pipes two 30 fixedly connected to the bottom side of the follow-up box 18 and slidingly sleeved with the contact plate 10, and staggered with the limiting pipe one 28, the limiting pipe one 28 and the limiting pipe two 30 can enter the slope to realize limitation and stability.
[0057] The stabilizing assembly comprises a guide block 37 slidingly sleeved in the limiting pipe one 28, an outer pipe 38 fixedly sleeved in the middle of the guide block 37, the guide block 37 is stable and guided, and drives the outer pipe 38 to move in the movement process of the control mechanism 27, an inner pipe 36 slidingly sleeved in the outer pipe 38, the one side of the inner pipe 36 and the one side of the outer pipe 38 are fixedly connected with a melting plate 41, a plurality of overflow holes 39 are arranged on one side of the inner pipe 36, the inner pipe 36 can move in the outer pipe 38, move out of the limiting pipe one 28 to realize limitation, the melting plate 41 is a hot melt material, which melts at a certain temperature to realize conduction and ensure the flow of fluid, a plurality of sensors one 40 fixedly connected to the outer side of the inner pipe 36, the sensors one 40 detect the inside to realize data collection, and transmit the data through wires.
[0058] The limiting assembly comprises a pulling plate 35, one side of which is fixedly connected with an inlay block 31 that is slidably sleeved with the guide sleeve 23, one end of the inlay block 31 is located in the sealing block 15, the pulling plate 35 is limited, wherein the pulling plate 35 is connected with a safety bolt connected with the guide sleeve 23, the inlay block 31 is limited, so that the sealing block 15 is limited in the specified position, the initial state is ensured, the equalizing cavity 34 is arranged in the guide sleeve 23, the inside of the equalizing cavity 34 is provided with a pushing plate 32 fixedly connected with the inlay block 31, one side of the equalizing cavity 34 is communicated with a guide channel 33 communicated with the inside of the guide sleeve 23, the equalizing cavity 34 is communicated with gas, and the inside and outside pressures are the same, so that the subsequent pulling is facilitated, and the pull rope 19 is fixedly connected between the two pulling plates 35, through the pulling of the pull rope 19, the impact groove 25 and the inlay block 31 can be moved, and then the sealing block 15 loses the limitation, and the impact is realized.
[0059] The limiting pin 26 that cooperates with the impact block 24 is slidably sleeved on the contact plate 10, the control mechanism 27 is arranged in the contact plate 10, the through groove 13 for the gear two 29 to pass through is arranged on the contact plate 10, the limiting pin 26 assists in fixing the contact plate 10, the control mechanism 27 is used for power supply and data processing, the through groove 13 ensures the passing of the gear two 29, the impact cavity is arranged in the guide sleeve 23, the sealing block 15 is located in the impact cavity, the impact cavity is filled with high-pressure gas, one side of the impact block 24 is connected with an impact sheet, the top of the follow-up box 18 is connected with the auxiliary pipe 16, through the action of the high-pressure gas and the spring, the impact is realized, and the fixing is realized.
[0060] One side of the pointing device 01 is also provided with a driving mechanism for driving; the driving mechanism comprises an outermost follow-up box 55, the follow-up box 55 cooperates with the guide sleeve 23, the follow-up box 55 is fixedly connected with a motor 56, the output end of the motor 56 is connected with a gearbox, the output end of the gearbox is connected with a transmission assembly 62, one end of the transmission assembly 62 is drivingly connected with a vertical rod 61, one end of the vertical rod 61 is clamped with a mounting sleeve 57, the bottom of the mounting sleeve 57 is fixedly connected with a driving ring 58, the outer wall of the driving ring 58 is rotatably connected with a reverse sleeve 59 that is threadedly sleeved with the follow-up box 55, one side of the follow-up box 55 is fixedly connected with a support frame pressing frame 60, the bottom end of the support frame pressing frame 60 is rollingly inlaid with a ball, through the action of the motor 56, torque is generated, then through the transmission of the transmission assembly 62, the vertical rod 61, the mounting sleeve 57 and the driving ring 58 are rotated, and are acted on the gear ring 21, so that the gear ring 21 is rotated, through the work of the reverse sleeve 59, the driving ring 58 is convenient to replace, and different works are adapted.
[0061] The vertical connecting mechanism 03 and the horizontal connecting mechanism 02 both comprise a fixed strip 42, the bottom of which is fixedly connected with a slope contact limiting cone 50, the fixed strip 42 is limited, the limiting cone 50 further assists the fixing, a mounting sleeve 49 is rotationally connected in the fixed strip 42, a buffer arc 44 is fixedly connected on both sides of the fixed strip 42, a plurality of overflow holes 43 are arranged on the buffer arc 44, the fixed strip 42 is provided with a lead-through hole in communication with the overflow holes 43, the mounting sleeve 49 can be further limited by an anchor rod, and the arc-shaped structure of the buffer arc 44 can buffer the water flow, part of the water flow enters the fixed strip 42 through the overflow holes 43, the water flow is further slowed down, and possible water and soil loss is reduced, wherein the vertical connecting mechanism 03 further comprises a tension meter 47 fixedly connected with the buffer arc 44, a moving strip 46 is connected to an execution end of the tension meter 47, a fixed frame 45 matched with the auxiliary connecting mechanism 04 is fixedly connected on the moving strip 46, a wire is connected on the fixed strip 42, the bottom of the buffer arc 44 is fixedly connected with an inlaid strip 48 matched with the connecting groove 11, the tension on the fixed frame 45 and the moving strip 46 can be monitored through the detection of the tension meter 47, and the data of whether the landslide occurs can be obtained through data comparison.
[0062] The auxiliary connecting mechanism 04 comprises a fixed strip 51 matched with the fixed frame 45, the fixed strip 51 is provided with a filling cavity 53, the filling cavity 53 is in communication with a placing hole 52 located on the fixed strip 51, the lower side of the filling cavity 53 is in communication with a degradation cylinder 54 fixedly connected with the fixed strip 51, the connection of the fixed strip 51 ensures the connection between the vertical connecting mechanisms 03, and the plants can be planted through the action of the placing hole 52, the filling cavity 53 and the degradation cylinder 54, so that the initial growth conditions are provided and the slope greening is assisted.
[0063] The implementation principle of the embodiment of the application is as follows.
[0064] In the work, the selected position, and then install the pointing device 01, while needed, install the horizontal connection mechanism 02 and vertical connection mechanism 03, further according to the needs of the installation of auxiliary connection mechanism 04, the overall assembly, in the installation of pointing device 01, select the position, and then pull the rope 19, so that the inlay block 31 moves out of the sealing block 15, and then through the elastic component 22 and the action of air pressure, so that the sealing block 15 and the impact block 24 produce kinetic energy, and then drive the following box 18, limit tube 28 and limit tube 30 down, so that the limit tube 28 and limit tube 30 into the ground, realize fixed, and when necessary, can be inserted into the screw rod in the limit tube 28, make it with the threaded sleeve 14 each other, and then through the drive ring 58 driven, so that the gear ring 21 rotation, further make a plurality of gear ring 21 rotation, drive gear 29 rotation, in turn east threaded sleeve 14 rotation, so that the screw rod down, realize the role of similar anchor rod, and according to the needs of the anchor rod can also be inserted into the limit tube 28, realize fixed, according to the needs of the auxiliary pipe 16 to the following box 18 filled with gas, while sealing other position hole, in turn under the action of air pressure, so that the outer tube 38 and overflow hole 39 move, realize further fixed, similarly, can be filled in the following box 18 of high temperature concrete or other coagulant, high temperature makes the melting plate 41 melt, and then through the limit tube 28, limit tube 28, inner tube 36 and overflow hole 39 into the slope, filling the internal gap, at the same time, reinforce, ensure the overall fixed, then connect the horizontal connection mechanism 02 or vertical connection mechanism 03 on the connecting plate 12, realize the connection of the whole system, and according to the needs of the installation of the inner sleeve 49 anchor rod, further fixed, in the rain or bare body flow, impact buffer arc 44, according to the action of the buffer arc 44, buffer, reduce the loss, and its through the action of tension meter 47, provide data, monitoring, auxiliary connection mechanism 04 further block and plant solidification, ensure the stability of the whole system.
[0065] The above embodiments are only preferred embodiments of the present application, which cannot be used to limit the scope of protection of the present application, and any non substantial changes and substitutions made by those skilled in the art on the basis of the present application shall fall within the scope of protection of the present application.
Claims
1. A slope reinforcement structure for preventing landslides, characterized in that, The utility model relates to a kind of fixed-point device, including: Fixed-point device is provided with multiple, it is plugged in surface slope, for fixed-point fixed; Transverse connecting mechanism is transversely arranged between two fixed-point devices, and it is mutually clamped between fixed-point device; Vertical connecting mechanism is vertically arranged between two fixed-point devices, and it is mutually clamped between fixed-point device; Auxiliary connecting mechanism is transversely arranged between two vertical connecting mechanisms, for buffering and connection; The fixed-point device includes: Contact plate is provided with connecting plate on both sides, connecting groove for connecting vertical connecting mechanism is arranged on the connecting plate; Guide sleeve is fixedly connected on contact plate, and impact groove is arranged on the lower side of guide sleeve; Impact block is slidably sleeved in guide sleeve, one side of which is fixedly connected with sealing block, one side of the sealing block is fixedly connected with elastic component one fixedly connected with guide sleeve; Limiting assembly is arranged in guide sleeve, for fixing sealing block; Follow-up box is fixedly connected between two impact blocks, a plurality of connecting rods are slidably sleeved on the follow-up box, both ends of the connecting rod are fixedly connected with gear one and gear two located on both sides of the follow-up box, and the follow-up box is connected with gear ring matched with gear one; Limiting pipe one is fixedly connected to the bottom side of follow-up box, and is slidably sleeved with contact plate, and is matched with gear two, and the limiting pipe one is provided with stabilizing assembly in, and threaded sleeve is rotatably connected to the upper side of the limiting pipe one; Limiting pipe two is provided with multiple, and is fixedly connected to the bottom side of follow-up box, and is slidably sleeved with contact plate, and is staggered with limiting pipe one.
2. The slope landslide-prevention reinforcing structure according to claim 1, wherein The stabilizing assembly includes: Guide block is slidably sleeved in limiting pipe one, and external pipe is fixedly sleeved in the middle of guide block; Internal pipe is slidably sleeved in external pipe, and thawing plate is fixedly connected to one side of the internal pipe and external pipe, and a plurality of overflow holes are arranged on one side of the internal pipe; Sensor one is provided with multiple, and is fixedly connected to the outside of internal pipe.
3. The slope landslide-prevention reinforcing structure according to claim 1, wherein The limiting assembly includes: Pulling plate is fixedly connected with inlay block slidably sleeved with guide sleeve on one side, and one end of the inlay block is located in sealing block; Balancing cavity is arranged in guide sleeve, and pushing plate is fixedly connected with inlay block in the internal of balancing cavity, and guide channel is communicated with the internal of guide sleeve on one side of balancing cavity; Pulling rope is fixedly connected between two pulling plates.
4. The slope landslide-prevention reinforcing structure according to claim 1, wherein Limiting pin matched with impact block is slidably sleeved on contact plate, and control mechanism is arranged in contact plate, and passing slot for gear two is arranged on contact plate.
5. The slope landslide-prevention reinforcing structure according to claim 1, wherein Impact cavity is arranged in guide sleeve, sealing block is located in impact cavity, impact cavity is filled with high-pressure gas, impact piece is connected to one side of impact block, and auxiliary pipe is connected to the top of follow-up box.
6. The slope landslide-prevention reinforcing structure according to claim 1, wherein One side of the fixed-point device is also provided with driving mechanism for driving. The driving mechanism comprises an outermost follow-up box matched with a guide sleeve, a motor fixedly connected in the follow-up box, a gearbox connected with the output end of the motor, a transmission assembly connected with the output end of the gearbox, a vertical rod transmissionally connected at one end of the transmission assembly, a mounting sleeve jacked at one end of the vertical rod, a driving ring fixedly connected at the bottom of the mounting sleeve, a reverse sleeve rotationally connected with the driving ring and threadedly sleeved with the follow-up box, a support pressing frame fixedly connected at one side of the follow-up box, and rolling balls embedded at the bottom end of the support pressing frame.
7. The slope landslide-prevention reinforcing structure according to claim 1, wherein The vertical connecting mechanism and the horizontal connecting mechanism both comprise: a first fixed strip, the bottom of which is fixedly connected with a limiting cone in contact with a slope; a mounting sleeve rotationally connected in the first fixed strip; a buffer arc fixedly connected at both sides of the first fixed strip, which is provided with a plurality of overflow holes, and the first fixed strip is provided with a through hole in communication with the overflow holes; wherein the vertical connecting mechanism further comprises a tension meter fixedly connected with the buffer arc, and the execution end of the tension meter is connected with a moving strip, and the moving strip is fixedly connected with a fixed frame matched with the auxiliary connecting mechanism.
8. The slope landslide-prevention reinforcing structure according to claim 7, wherein The first fixed strip is connected with a wire, and the bottom of the buffer arc is fixedly connected with an inlay strip matched with a connecting groove.
9. The slope landslide-prevention reinforcing structure according to claim 7, wherein The auxiliary connecting mechanism comprises a second fixed strip matched with the fixed frame, the second fixed strip is provided with a filling cavity, the filling cavity is communicated with a placing hole located on the second fixed strip, and the lower side of the filling cavity is communicated with a degradation cylinder fixedly connected with the second fixed strip.
Citation Information
Patent Citations
Lattice beam structure for geotechnical engineering slope
CN217998104U