Ardealite structure system for high slope protection
By combining a reinforced frame and fasteners, the problems of high construction difficulty and low efficiency on high slopes are solved, achieving efficient fixation in confined spaces and preventing landslides.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2026-03-06
AI Technical Summary
Existing slope protection technologies face challenges such as high construction difficulty, low efficiency, or unsuitability for confined spaces on high slopes. In particular, vegetation planting requires a long growth period, and anchoring methods are difficult to implement in confined spaces.
It adopts a combination structure of reinforced frame and fasteners, and achieves rapid fixation of high slopes through the installation position of the reinforced frame and the through fixation of the fasteners, which is suitable for confined spaces.
It enables efficient and convenient fixation of high slopes in confined spaces, avoids landslide problems, simplifies installation steps, and improves the fixing effect.
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Figure CN223974591U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of slope protection, and more particularly to a phosphogypsum structural system for high slope protection. Background Technology
[0002] High slopes are prone to landslides due to the soft soil and rock layers, high water content, or low shear strength of the soil and rock in the slope area.
[0003] In the event of a landslide, falling rocks may roll down from the high slope, which can easily cause road accidents and even casualties.
[0004] Therefore, high slopes are usually reinforced or protected by slope protection structures. There are several types of existing slope protection structures. One method is to plant vegetation, turf, etc., to increase the shear strength of the soil and prevent soil erosion. The roots of the plants also enhance the stability of the land. However, this method requires a very long period for the vegetation to grow to a certain age. In addition, there is a certain survival rate after the vegetation is transplanted. If the vegetation dies, it needs to be transplanted again, which is very inefficient.
[0005] Another method is to process high slopes by anchoring, which generally uses anchor rods, anchor cables, etc. to fix the soil and increase the slope's resistance to sliding. However, this method is very difficult to construct in confined spaces and requires specialized equipment to install anchor rods, which is very limiting and cannot be applied to high slopes in confined spaces or with large slope angles. Utility Model Content
[0006] In view of this, it is necessary to provide a phosphogypsum structural system for high slope protection to solve the above problems.
[0007] Embodiments of this application provide a phosphogypsum structural system for high slope protection, comprising:
[0008] A reinforced frame is provided with a first mounting position at the geometric center of the reinforced frame, and a mounting part is provided at any corner of the reinforced frame. The mounting parts between adjacent reinforced frames form a second mounting position.
[0009] The first fastener has one end abutting against the reinforced frame and the other end penetrating through the first mounting position and fixed into the soil of the high slope to fix the reinforced frame.
[0010] The second fastener has one end abutting against the mounting part and the other end penetrating through the second mounting position and fixed into the soil of the high slope to fix the adjacent reinforced frame.
[0011] In at least one embodiment of this application, the reinforced frame includes:
[0012] The border section encloses and forms an accommodating space;
[0013] The reinforcing part extends along the corner of the frame part toward the geometric center of the frame part and surrounds to form the first mounting position.
[0014] In at least one embodiment of this application, the reinforced frame further includes:
[0015] A reinforcing rib is provided on the reinforcing part.
[0016] In at least one embodiment of this application, there are four reinforcing parts, which are arranged along the diagonal of the corner of the frame portion.
[0017] In at least one embodiment of this application, the mounting portion is provided with a first concave arc-shaped portion, and the geometric center of the first concave arc-shaped portion between adjacent reinforcing frames forms the second mounting position.
[0018] In at least one embodiment of this application, the mounting portion is further provided with a second concave arc-shaped portion, the second concave arc-shaped portion having a limiting groove, the limiting groove being located between the first concave arc-shaped portion and the second concave arc-shaped portion, and the limiting groove communicating with the second mounting position;
[0019] The second fixing member is provided with a limiting part;
[0020] When the second fastener is installed in the second mounting position, the limiting part is received in the limiting groove so that the second concave arc-shaped part covers the limiting part.
[0021] In at least one embodiment of this application, the second concave arc-shaped portion is provided with a clearance groove communicating with the limiting groove, and the clearance groove between two adjacent reinforced frames forms a clearance space, and the limiting portion can be installed in the limiting groove through the limiting portion.
[0022] In at least one embodiment of this application, the limiting portion of the second fixing member is a plurality of such limiting portions, and the plurality of limiting portions are provided to protrude from the circumferential surface of the second fixing member at equal angles.
[0023] In at least one embodiment of this application, the first fastener includes:
[0024] The first spike is used to fix it in the soil of the high slope;
[0025] A first abutting part is provided at one end of the first spike part. A first fixing hole is provided on the first abutting part. The first abutting part abuts against the first mounting position to fix the geometric center of the reinforced frame.
[0026] In at least one embodiment of this application, the second fastener includes:
[0027] The second spike is used to fix it in the soil of the high slope;
[0028] The second abutment is provided at one end of the second spike. The second abutment has a second fixing hole and the limiting part protrudes from the circumferential surface of the second abutment. The second abutment abuts against the second mounting position to fix the second mounting position of the adjacent reinforced frame.
[0029] Implementing the phosphogypsum structural system for high slope protection according to this embodiment will have at least the following beneficial effects:
[0030] When using the phosphogypsum structure system for high slope protection provided above, the reinforcing frame is placed at the location where it needs to be fixed. Then, one end of the first fastener abuts against the reinforcing frame, and the other end passes through the first installation position and is fixed into the soil of the high slope, thus fixing the reinforcing frame into the soil.
[0031] Then, the second fastener is fixed at the corner of the adjacent reinforced frame, and the second fastener abuts against the corner of the adjacent reinforced frame. The second fastener passes through the second installation position and is inserted into the soil to further fix the reinforced frame and increase its stability. Because the reinforced frame is used for fixing, even in a narrow installation space, the phosphogypsum structure system for high slope protection can be used to reinforce high slopes and avoid landslides. Attached Figure Description
[0032] Figure 1 This is a structural diagram of the phosphogypsum structural system for high slope protection according to this utility model;
[0033] Figure 2 for Figure 1 An exploded view of the middle section structure;
[0034] Figure 3 for Figure 2 Structural diagram of the reinforced frame;
[0035] Figure 4 This is a reference diagram showing the assembly of four adjacent reinforced frames.
[0036] Explanation of main component symbols
[0037] 100. Used in phosphogypsum structural systems for high slope protection;
[0038] 110. Reinforced frame; 110a. First mounting position; 111. Mounting part; 1111. First concave arc-shaped part; 1112. Second concave arc-shaped part; 1112a. Limiting groove; 1112b. Clearance groove; 1112c. Clearance space; 111a. Second mounting position; 112. Frame part; 112a. Accommodating space; 113. Reinforcement part; 114. Reinforcement rib;
[0039] 120. First fastener; 121. First spike; 122. First abutment; 122a. First fixing hole;
[0040] 130. Second fixing member; 133. Limiting part; 131. First spike part; 132. Second abutting part; 132a. Second fixing hole. Detailed Implementation
[0041] The embodiments of this application will now be described with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments.
[0042] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or may also have an intervening component. When a component is considered to be "placed" on another component, it can be directly placed on the other component or may also have an intervening component. The terms "top," "bottom," "upper," "lower," "left," "right," "front," "back," and similar expressions used in this article are for illustrative purposes only.
[0043] The following detailed description of some embodiments of this application is provided in conjunction with the accompanying drawings. Unless otherwise specified, the following embodiments and features can be combined with each other.
[0044] Embodiments of this application provide a phosphogypsum structural system 100 for high slope protection, comprising:
[0045] A reinforced frame 110 is provided with a first mounting position 110a at its geometric center, and a mounting part 111 is provided at any corner of the reinforced frame 110. The mounting parts 111 between adjacent reinforced frames 110 form a second mounting position 111a.
[0046] The first fastener 120 has one end abutting against the reinforced frame 110 and the other end passing through the first mounting position 110a and fixed into the soil of the high slope to fix the reinforced frame 110.
[0047] The second fastener 130 has one end abutting against the mounting part 111, and the other end passing through the second mounting position 111a and fixed into the soil of the high slope to fix the adjacent reinforced frame 110.
[0048] Please refer to Figures 1-4 In this embodiment, when in use, the reinforcing frame 110 is placed at the place where it needs to be fixed, and then one end of the first fixing member 120 abuts against the reinforcing frame 110, and the other end passes through the first mounting position 110a and is fixed to the soil of the high slope, thereby fixing the reinforcing frame 110 in the soil.
[0049] Then, the second fastener 130 is fixed to the corner of the adjacent reinforced frame 110, and the second fastener 130 abuts against the corner of the adjacent reinforced frame 110. The second fastener 130 passes through the second installation position 111a and is inserted into the soil to further fix the reinforced frame 110 and increase the firmness of the reinforced frame 110. Because the reinforced frame 110 is used for fixing, even in a narrow installation space, it can be used to reinforce high slopes with the phosphogypsum structure system 100 to avoid landslide problems.
[0050] In at least one embodiment of this application, the first fastener 120 includes:
[0051] The first spike 131 is used to fix it in the soil of the high slope;
[0052] The first abutting part 122 is provided at one end of the first spike part 131. The first abutting part 122 has a first fixing hole 122a. The first abutting part 122 abuts against the first mounting position 110a to fix the geometric center of the reinforced frame 110.
[0053] In at least one embodiment of this application, the reinforced frame 110 includes:
[0054] The border portion 112 encloses and forms an accommodating space 112a;
[0055] The reinforcing part 113 extends along the corner of the frame part 112 toward the geometric center of the frame part 112 and surrounds to form the first mounting position 110a.
[0056] In at least one embodiment of this application, the reinforced frame 110 further includes:
[0057] A reinforcing rib 114 is provided on the reinforcing part 113.
[0058] In at least one embodiment of this application, there are four reinforcing parts 113, which are arranged along the diagonal of the corner of the frame part 112.
[0059] Please refer to Figures 1-4In this embodiment, each reinforced frame 110 is provided with four reinforced parts 113. The four reinforced parts 113 surround a first mounting position 110a. The first mounting position 110a is a circular through hole. When installing the reinforced frame 110, the reinforced frame 110 is placed on a high slope. The first spike 131 of the first fixing member 120 is inserted into the high slope through the first mounting position 110a. The first abutting part 122 is hammered with a hammer or other tools so that the first abutting part 122 abuts against the four reinforced parts 113, thereby fixing the geometric center of the reinforced frame 110 on the high slope.
[0060] No special tools are required to fix the phosphogypsum structure system 100 for high slope protection, making it easier to install and use the reinforced frame 110.
[0061] Secondly, since the installation can be completed simply by inserting the first fastener 120 into the high slope, the installation steps are simple and convenient for installation in narrow and restricted spaces.
[0062] When it is necessary to remove the first fixing member 120, an external circular device is inserted into the first fixing hole 122a, and then the first fixing member 120 is pried to remove it from the soil.
[0063] It should be noted that the first fixing member 120 is roughly nail-shaped, the first abutting part 122 is roughly frustum-shaped, one end of the first spike 131 is connected to the first abutting part 122, the other end is a pointed tip, and the first spike 131 is roughly rod-shaped.
[0064] The reinforcing rib 114 is roughly triangular and is used to increase the deformation resistance of the reinforcing part 113, so that the reinforcing frame 110 can better fix the high slope.
[0065] The reinforcement part 113 is a rectangular plate. The four reinforcement parts 113 are arranged along the diagonal of the corner of the frame part 112, so that each adjacent reinforcement part 113 and the frame part 112 form a triangle, thereby improving the deformation resistance of the reinforced frame. At the same time, it increases the contact area between the reinforced frame 110 and the high slope, thereby improving the fixing effect on the high slope.
[0066] The border portion 112 is roughly a rectangular frame, and the accommodating space 112a is an open space.
[0067] In at least one embodiment of this application, the second fastener 130 includes:
[0068] The second spike is used to fix it in the soil of the high slope;
[0069] The second abutment portion 132 is provided at one end of the second spike portion. The second abutment portion 132 has a second fixing hole 132a. The limiting portion 133 is provided on the peripheral surface of the second abutment portion 132. The second abutment portion 132 abuts against the second mounting position 111a to fix the second mounting position 111a of the adjacent reinforced frame 110.
[0070] In at least one embodiment of this application, the mounting portion 111 is provided with a first concave arc-shaped portion 1111, and the geometric center of the first concave arc-shaped portion 1111 between adjacent reinforcing frames 110 forms the second mounting position 111a.
[0071] In at least one embodiment of this application, the mounting portion 111 is further provided with a second concave arc-shaped portion 1112, the second concave arc-shaped portion 1112 having a limiting groove 1112a, the limiting groove 1112a being located between the first concave arc-shaped portion 1111 and the second concave arc-shaped portion 1112, and the limiting groove 1112a communicating with the second mounting position 111a;
[0072] The second fixing member 130 is provided with a limiting part 133;
[0073] When the second fixing member 130 is installed in the second mounting position 111a, the limiting part 133 is received in the limiting groove 1112a so that the second concave arc-shaped part 1112 covers the limiting part 133.
[0074] In at least one embodiment of this application, the second concave arc-shaped portion 1112 is provided with a clearance groove 1112b communicating with the limiting groove 1112a, and the clearance groove 1112b between two adjacent reinforced frames 110 forms a clearance space 1112c, and the limiting portion 133 can be installed in the limiting groove 1112a through the limiting portion 133.
[0075] In at least one embodiment of this application, the limiting portion 133 of the second fixing member 130 is a plurality of such limiting portions 133, and the plurality of limiting portions 133 are provided to protrude from the circumferential surface of the second fixing member 130 at equal angles.
[0076] Please refer to Figures 1-4In this embodiment, after multiple reinforced frames 110 are spliced and installed on the high slope, the corners of adjacent reinforced frames 110 are fixed by a second fastener 130. The second spike of the second fastener 130 penetrates the second mounting position 111a, which is a circular open space. Then, the limiting part 133 is aligned with the clearance groove 1112b, and the second fastener 130 is inserted into the soil of the high slope so that the limiting part 133 is received in the clearance groove 1112b. Then, a cylindrical device is inserted into the second fixing hole 132a. The cylindrical device is rotated, and the cylindrical device drives the second abutment part 132 to rotate so that the limiting part 133 is received in the limiting groove 1112a, thereby fixing the corners of adjacent reinforced frames 110 by the second fastener 130.
[0077] The first concave arc-shaped portion 1111 is an arc shape with its corners recessed inwards, the second concave arc-shaped portion 1112 is an arc shape with its corners recessed inwards, and the diameter of the second concave arc-shaped portion 1112 is larger than the diameter of the first concave arc-shaped portion 1111. The limiting groove 1112a is a groove, and the limiting groove 1112a is formed by recessing from the corner of the reinforced frame 110 towards its geometric center. The limiting portion 133 is approximately a semi-circular protrusion.
[0078] Because the second concave arc-shaped portion 1112 blocks the limiting portion 133, after the second fixing member 130 is installed in the second mounting position 111a, the second fixing member 130 and the adjacent reinforcing frame form a firm connection, which is almost an integral part, so as to enhance the firmness between the reinforcing frames, thereby better fixing the high slope and preventing the high slope from landslide.
[0079] The second fastener 130 is roughly nail-shaped, the second abutment 132 is roughly frustum-shaped, and a semi-circular limiting part 133 is provided on its circumference. One end of the second spike is fixed to the second abutment 132, and the other end is a pointed tip.
[0080] The above description is merely an embodiment of this application. It should be noted that those skilled in the art can make improvements without departing from the inventive concept of this application, but these improvements all fall within the protection scope of this application.
Claims
1. A structure system for high slope protection of phosphogypsum, characterized in that, The utility model relates to a reinforced frame, first fixing piece and second fixing piece for high slope soil reinforcement. The reinforced frame comprises: a frame part surrounding a receiving space; a reinforcing part extending from the corners of the frame part to the geometric center of the frame part and surrounding the first mounting position.
2. The high slope protection structure system of claim 1, wherein, The reinforced frame further comprises: a reinforcing rib plate provided on the reinforcing part. The reinforcing part is four, and the four reinforcing parts are arranged along the diagonal lines of the corners of the frame part.
3. The high slope protection structure system of claim 2, wherein, The mounting part is provided with a first concave arc-shaped part, and the geometric center of the first concave arc-shaped part between adjacent reinforced frames forms the second mounting position. The mounting part is further provided with a second concave arc-shaped part, and the second concave arc-shaped part is provided with a limiting groove between the first concave arc-shaped part and the second concave arc-shaped part, and the limiting groove is in communication with the second mounting position.
4. The high slope protection structure system of phosphogypsum according to claim 2, characterized in that, The second fixing piece is provided with a limiting part.
5. The high slope protection structure system of phosphogypsum according to claim 1, characterized in that, When the second fixing piece is installed in the second mounting position, the limiting part is accommodated in the limiting groove, so that the second concave arc-shaped part blocks the limiting part.
6. The high slope protection structure system of phosphogypsum according to claim 5, characterized in that, The second concave arc-shaped part is provided with an avoidance groove in communication with the limiting groove, and the avoidance groove between adjacent two reinforced frames forms an avoidance space, and the limiting part can be installed in the limiting groove through the limiting part. The limiting part of the second fixing piece is multiple, and the multiple limiting parts are arranged at equal angles on the circumferential surface of the second fixing piece. The first fixing piece comprises:
7. The high slope protection structure system of phosphogypsum according to claim 6, characterized in that, a first sharp part for fixing in the high slope soil; 8. The high slope protection structure system of phosphogypsum according to claim 6, characterized in that, a first abutting part provided at one end of the first sharp part, and a first fixing hole is formed in the first abutting part, and the first abutting part abuts against the first mounting position to fix the geometric center of the reinforced frame.
9. The high slope protection structure system of claim 1, wherein, The second fixing piece comprises: a second sharp part for fixing in the high slope soil; a second abutting part provided at one end of the second sharp part, and a second fixing hole is formed in the second abutting part, and the circumferential surface of the second abutting part is provided with the limiting part, and the second abutting part abuts against the second mounting position to fix the second mounting position of adjacent reinforced frames.
10. The high slope protection structure system of phosphogypsum according to claim 8, characterized in that,