Side slope anchoring device

By designing slope anchoring devices with adjustable reinforcement rods and anchor rods of multiple lengths, the problems of instability in fixing and poor versatility of existing devices are solved, and adaptive reinforcement of multiple slopes is achieved, reducing municipal engineering costs.

CN223176723UActive Publication Date: 2025-08-01JINHUA ZHUORUI CONSTRUCTION CO LTD
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Patent Information

Application Number
CN202422482493.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-08-01
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

The existing municipal road slope anchoring devices have insufficient fixing stability and poor versatility, which cannot adapt to slopes of different angles and extension states, resulting in the need to develop multiple models of anchoring structures, increasing costs.

Method used

A slope anchoring device is designed, which uses the method of connecting the two ends of the reinforcement rod to the articulated seat. Combined with a telescopic adjustable structure and anchor rods of multiple lengths to adapt to slopes of different inclination angles and extension sizes, and achieves stability through the adjustability of the articulated seats and anchor rods.

Benefits of technology

It improves the versatility of the anchoring device, reduces municipal investment costs, realizes a set of equipment to adapt to a variety of slope needs, and enhances the fixing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a slope anchoring device which comprises a first reinforcing plate, a second reinforcing plate and a plurality of reinforcing rods arranged in an array mode, one ends of the reinforcing rods are jointly hinged to the side portion of the first reinforcing plate through a first hinge seat, and the other ends of the reinforcing rods are jointly hinged to the side portion of the second reinforcing plate through a second hinge seat. The first reinforcing plate is used for being anchored to the top of a side slope, the second reinforcing plate is used for being anchored to the bottom of the side slope, the reinforcing rods are used for being reinforced to the broken face of the side slope, each reinforcing rod is composed of a sleeve and a telescopic rod, and the telescopic rods are inserted into the sleeves in a sliding mode. The two ends of the reinforcing rod are hinged to the first reinforcing plate and the second reinforcing plate respectively so as to adapt to side slopes with different inclination angles, the reinforcing rod is designed to be of a telescopic adjustable structure so as to adapt to side slopes with different extension sizes, universality is high, one set of equipment can meet the use requirements of different side slopes, and cost is low. Therefore, anchoring devices of different models do not need to be developed and designed, and municipal investment cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of municipal engineering equipment, in particular to a slope anchoring device. Background Art

[0002] Slopes have a huge impact on the service efficiency and service life of roads. In recent years, the needs of economic construction and people's livelihood have promoted the rapid development of road construction. The research on the protection treatment of road slopes has also been emphasized by the entire engineering community. Although compared with ordinary highways, there are few slopes in municipal roads, it is still inevitable in some places. In the existing slope protection of municipal road projects, it is necessary to anchor the slope through a reinforcement plate. However, the fixing stability between the existing slope anchoring device and the slope is insufficient, and direct insertion through the anchor rod is likely to cause detachment.

[0003] In addition, the angles and extension states of the existing municipal road slopes are not fixed, and the existing anchoring structures have poor versatility. Therefore, different anchoring structures need to be designed and developed for different slopes, increasing the investment cost of municipal roads. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a slope anchoring device, which effectively solves the problems raised in the above background art.

[0005] To achieve the above purpose, the utility model provides the following technical solutions.

[0006] A slope anchoring device includes a first reinforcement plate, a second reinforcement plate, and a number of reinforcement rods arranged in an array. One end of each reinforcement rod is jointly hinged to the side of the first reinforcement plate through a first hinge seat, and the other end of each reinforcement rod is jointly hinged to the side of the second reinforcement plate through a second hinge seat. The first reinforcement plate is used for anchoring at the top of the slope, the second reinforcement plate is used for anchoring at the bottom of the slope, and the reinforcement rods are used for reinforcement on the slope surface. Each reinforcement rod is composed of a sleeve and a telescopic rod. The telescopic rod is slidably inserted into the sleeve, and a pin is slidably inserted near the port of the sleeve. A number of card holes for the pin to be inserted and matched are arranged in an array on the outer wall of the telescopic rod.

[0007] It can be seen that this slope anchoring device is hinged at both ends of the reinforcement rod to the first reinforcement plate and the second reinforcement plate respectively to adapt to slopes with different inclination angles, and the reinforcement rod is designed as a telescopic adjustable structure to adapt to slopes with different extension dimensions, with high versatility, realizing that one set of equipment can meet the use needs of different slopes. Therefore, there is no need to develop and design different models of anchoring devices, reducing the municipal investment cost.

[0008] Furthermore, a number of threaded holes are arranged in an array on the sleeve, and third anchor rods with different lengths are detachably screwed into each threaded hole. The third anchor rods are of a detachable replacement structure.

[0009] The third anchor rod is fastened to the outer wall of the sleeve by means of screw threading, enabling the third anchor rod to be detachably replaced. Considering that the third anchor rod is available in various lengths, it is convenient to select a third anchor rod with an appropriate length according to the depth of the anchor point, ensuring high anchoring adaptability of the third anchor rod and further enhancing the versatility of this anchoring device.

[0010] Furthermore, first jacks are respectively provided at positions close to the four top corners of the first reinforcement plate, and first anchor rods are inserted into each of the first jacks.

[0011] Place the first reinforcement plate against the top of the slope, and insert the first anchor rods inserted into each of the first jacks into the slope from the top of the slope, then the first reinforcement plate can be reinforced at the top of the slope. In addition, the first anchor rods are available in different lengths and can be selected and replaced according to the actual depth of the anchor point.

[0012] Furthermore, second jacks are respectively provided at positions close to the four top corners of the second reinforcement plate, and second anchor rods are inserted into each of the second jacks.

[0013] Place the first reinforcement plate against the bottom of the slope, and then insert the second anchor rods inserted into each of the second jacks into the slope from the bottom of the slope, then the second reinforcement plate can be reinforced at the bottom of the slope. In addition, the second anchor rods are available in different lengths and can be selected and replaced according to the actual depth of the anchor point.

[0014] Furthermore, the first hinge seat includes a first U-shaped frame, a first shaft rod, and a first mounting frame. The first U-shaped frame is fixed on the first reinforcement plate, the first shaft rod is rotatably installed on the first U-shaped frame, and the first mounting frame is fixedly sleeved on the first shaft rod. The ends of the telescopic rods located outside the sleeve are all fixed on the first mounting frame.

[0015] By arranging the first hinge seat formed by the first U-shaped frame, the first shaft rod, and the first mounting frame on the first reinforcement plate, and utilizing the rotational ability of the first shaft rod, the hinge connection between the telescopic rod and the first reinforcement plate is realized, so as to facilitate the adaptive adjustment of the angle between the reinforcement rod and the first reinforcement plate.

[0016] Furthermore, the second hinge seat includes a second U-shaped frame, a second shaft rod, and a second mounting frame. The second U-shaped frame is fixed on the second reinforcement plate, the second shaft rod is rotatably installed on the second U-shaped frame, and the second mounting frame is fixedly sleeved on the second shaft rod. The ends of each sleeve are all fixed on the second mounting frame.

[0017] By arranging the second hinge seat formed by the second U-shaped frame, the second shaft rod, and the second mounting frame on the second reinforcement plate, and utilizing the rotational ability of the second shaft rod, the hinge connection between the sleeve and the second reinforcement plate is realized, so as to facilitate the adaptive adjustment of the angle between the reinforcement rod and the second reinforcement plate.

[0018] Compared with the prior art, the beneficial effects of the present utility model are as follows.

[0019] 1. By hinging both ends of the reinforcement rod to the first reinforcement plate and the second reinforcement plate respectively, the present utility model can adapt to slopes with different inclination angles. By designing the reinforcement rod as a telescopic and adjustable structure, it can adapt to slopes with different extension dimensions, with high versatility, enabling a set of equipment to meet the usage needs of different slopes. Furthermore, there is no need to develop and design different models of anchoring devices, reducing the municipal investment cost.

[0020] 2. The present utility model fastens the third anchor rod on the outer wall of the sleeve by means of threaded screwing, enabling the third anchor rod to have a detachable and replaceable effect. Combined with the third anchor rod being equipped with multiple models of different lengths, it is convenient to select a third anchor rod with an appropriate length according to the depth at the anchor point, ensuring high anchoring adaptability of the third anchor rod and further enhancing the versatility of this anchoring device. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a three-dimensional schematic diagram of the overall structure of the present utility model;

[0022] Figure 2 is a detailed structural schematic diagram of the reinforcement rod in the present utility model;

[0023] Figure 3 is a detailed structural schematic diagram of the first hinge seat in the present utility model;

[0024] Figure 4 is a detailed structural schematic diagram of the second hinge seat in the present utility model.

[0025] In the figure: 1, first reinforcement plate; 11, first jack; 12, first anchor rod; 2, second reinforcement plate; 21, second jack; 22, second anchor rod; 3, reinforcement rod; 31, sleeve; 32, telescopic rod; 33, pin; 34, clamping hole; 4, first hinge seat; 41, first U-shaped frame; 42, first shaft rod; 43, first mounting frame; 5, second hinge seat; 51, second U-shaped frame; 52, second shaft rod; 53, second mounting frame; 6, third anchor rod. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0026] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0027] Please refer to Figures 1-4, A slope anchoring device provided by the present utility model includes a first reinforcing plate 1, a second reinforcing plate 2, and a number of reinforcing rods 3 arranged in an array. One end of each reinforcing rod 3 is jointly hinged to the side of the first reinforcing plate 1 through a first hinge seat 4, and the other end of each reinforcing rod 3 is jointly hinged to the side of the second reinforcing plate 2 through a second hinge seat 5. The first reinforcing plate 1 is used for anchoring at the top of the slope, the second reinforcing plate 2 is used for anchoring at the bottom of the slope, and the reinforcing rods 3 are used for reinforcing on the slope surface. Each reinforcing rod 3 is composed of a sleeve 31 and a telescopic rod 32. The telescopic rod 32 is slidably inserted into the sleeve 31. A pin 33 is slidably inserted near the port of the sleeve 31, and a number of card holes 34 for the pin 33 to be inserted and matched are arranged in an array on the outer wall of the telescopic rod 32.

[0028] When using the slope anchoring device provided by the present utility model to anchor the slope of a municipal road, since one end of the reinforcing rod 3 is hinged to the first reinforcing plate 1 and the other end is hinged to the second reinforcing plate 2, it has the ability to adjust the angle, and thus it is convenient to adjust the angle according to the actual angle of the slope. Since the reinforcing rod 3 is composed of a sleeve 31 and a telescopic rod 32, the telescopic rod 32 is accordingly adjusted in length according to the actual extension dimension of the slope. After the telescopic adjustment is completed, the telescopic rod 32 is locked by inserting the pin 33 into the corresponding card hole 34. Subsequently, the first reinforcing plate 1 is anchored at the top of the slope, and the second reinforcing plate 2 is anchored at the bottom of the slope. By using each reinforcing rod 3 to obliquely pull on the outside of the slope surface, the top, slope surface, and bottom of the slope can be reinforced respectively.

[0029] This slope anchoring device is provided by hinging both ends of the reinforcing rod 3 to the first reinforcing plate 1 and the second reinforcing plate 2 respectively to adapt to slopes with different inclination angles. By designing the reinforcing rod 3 as a telescopic adjustable structure to adapt to slopes with different extension dimensions, it has high versatility, enabling a set of equipment to meet the usage needs of different slopes. Thus, there is no need to develop and design different models of anchoring devices, reducing the municipal investment cost.

[0030] Specifically, a number of threaded holes (not shown in the figure) are arranged in an array on the sleeve 31. A third anchor rod 6 is detachably screwed into each threaded hole. The third anchor rod 6 has models with different lengths and is a detachable and replaceable structure. The third anchor rod 6 is anchored into the slope surface from the slope surface and can be combined with the reinforcing rod 3 to reinforce the slope surface.

[0031] The third anchor rod 6 is fastened to the outer wall of the sleeve 31 by means of screwing, so that the third anchor rod 6 has a detachable and replaceable effect. Considering that the third anchor rod 6 is provided with a variety of models with different lengths, it is convenient to select a third anchor rod 6 with an appropriate length according to the depth of the anchor point, ensuring high anchoring adaptability of the third anchor rod 6 and further enhancing the versatility of this anchoring device.

[0032] Specifically, first jacks 11 are respectively provided near the four top corners of the first reinforcement plate 1. First anchor rods 12 are inserted into each of the first jacks 11. When the first reinforcement plate 1 is arranged in contact with the slope top and the first anchor rods 12 inserted into the first jacks 11 are anchored into the slope from the slope top, the first reinforcement plate 1 can be reinforced at the slope top. In addition, the first anchor rods 12 are available in different lengths and can be selected and replaced according to the actual depth of the anchor points.

[0033] Specifically, second jacks 21 are respectively provided near the four top corners of the second reinforcement plate 2. Second anchor rods 22 are inserted into each of the second jacks 21. When the first reinforcement plate 1 is arranged in contact with the slope bottom and then the second anchor rods 22 inserted into the second jacks 21 are anchored into the slope from the slope bottom, the second reinforcement plate 2 can be reinforced at the slope bottom. In addition, the second anchor rods 22 are available in different lengths and can be selected and replaced according to the actual depth of the anchor points.

[0034] Specifically, the first hinge seat 4 includes a first U-shaped frame 41, a first shaft rod 42 and a first mounting frame 43. The first U-shaped frame 41 is fixed on the first reinforcement plate 1. The first shaft rod 42 is rotatably installed on the first U-shaped frame 41. The first mounting frame 43 is fixedly sleeved on the first shaft rod 42. The ends of the telescopic rods 32 located outside the sleeves 31 are all fixed on the first mounting frame 43. By arranging the first hinge seat 4 formed by the first U-shaped frame 41, the first shaft rod 42 and the first mounting frame 43 on the first reinforcement plate 1 and using the rotational ability of the first shaft rod 42, the hinged connection between the telescopic rods 32 and the first reinforcement plate 1 is realized, so as to facilitate the adaptive adjustment of the angle between the reinforcement rod 3 and the first reinforcement plate 1.

[0035] Specifically, the second hinge seat 5 includes a second U-shaped frame 51, a second shaft rod 52 and a second mounting frame 53. The second U-shaped frame 51 is fixed on the second reinforcement plate 2. The second shaft rod 52 is rotatably installed on the second U-shaped frame 51. The second mounting frame 53 is fixedly sleeved on the second shaft rod 52. The ends of the sleeves 31 are all fixed on the second mounting frame 53. By arranging the second hinge seat 5 formed by the second U-shaped frame 51, the second shaft rod 52 and the second mounting frame 53 on the second reinforcement plate 2 and using the rotational ability of the second shaft rod 52, the hinged connection between the sleeves 31 and the second reinforcement plate 2 is realized, so as to facilitate the adaptive adjustment of the angle between the reinforcement rod 3 and the second reinforcement plate 2.

[0036] The above is a detailed description of the present utility model in combination with specific embodiments. It cannot be determined that the specific embodiments of the present invention are only limited to these descriptions. For those of ordinary skill in the technical field to which the present utility model belongs, without departing from the concept of the present invention, several equivalent substitutions or obvious modifications are made, and the performance or use is the same, and all should be regarded as belonging to the patent protection scope determined by the claims submitted by the present utility model.

Claims

1. A slope anchoring device, characterized in that: It includes a first reinforcement plate (1), a second reinforcement plate (2) and a number of reinforcement rods (3) arranged in an array; One ends of the reinforcement rods (3) are jointly hinged to the side of the first reinforcement plate (1) through a first hinge seat (4), and the other ends of the reinforcement rods (3) are jointly hinged to the side of the second reinforcement plate (2) through a second hinge seat (5); The first reinforcement plate (1) is used for anchoring at the top of the slope, the second reinforcement plate (2) is used for anchoring at the bottom of the slope, and the reinforcement rods (3) are used for reinforcement on the slope surface; Each of the reinforcement rods (3) is composed of a sleeve (31) and a telescopic rod (32), and the telescopic rod (32) is slidably inserted into the sleeve (31); A pin (33) is slidably inserted near the port of the sleeve (31), and a number of card holes (34) for the pin (33) to be inserted into are arranged in an array on the outer wall of the telescopic rod (32).

2. The slope anchoring device according to claim 1, characterized in that: A number of threaded holes are arranged in an array on the sleeve (31), and third anchor rods (6) are detachably screwed into each threaded hole; The third anchor rods (6) have models with different lengths and are of a detachable and replaceable structure.

3. The slope anchoring device according to claim 1, characterized in that: First jacks (11) are respectively provided near the four top corners of the first reinforcement plate (1), and first anchor rods (12) are inserted into each of the first jacks (11).

4. The slope anchoring device according to claim 1, characterized in that: Second jacks (21) are respectively provided near the four top corners of the second reinforcement plate (2), and second anchor rods (22) are inserted into each of the second jacks (21).

5. The slope anchoring device according to claim 1, characterized in that: The first hinge seat (4) includes a first U-shaped frame (41), a first shaft rod (42) and a first mounting frame (43); The first U-shaped frame (41) is fixed on the first reinforcement plate (1), the first shaft rod (42) is rotatably installed on the first U-shaped frame (41), and the first mounting frame (43) is fixedly sleeved on the first shaft rod (42); The ends of the telescopic rods (32) located outside the sleeves (31) are all fixed on the first mounting frame (43).

6. The slope anchoring device according to claim 1, characterized in that: The second hinge seat (5) includes a second U-shaped frame (51), a second shaft rod (52) and a second mounting frame (53); The second U-shaped frame (51) is fixed on the second reinforcement plate (2), the second shaft rod (52) is rotatably installed on the second U-shaped frame (51), and the second mounting frame (53) is fixedly sleeved on the second shaft rod (52); The ends of the sleeves (31) are all fixed on the second mounting frame (53).