Slope protection net connecting structure
By adopting a multi-layer slope protection network connection structure on the slope, the connecting mechanism and the compression mechanism are used to fix the slope protection network one and slope protection network two together, the problem of limited protection capacity of the existing slope protection network is solved and more efficient slope protection is achieved.
Patent Information
- Application Number
- CN202421787793.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-07-25
AI Technical Summary
The existing slope protection nets have fixed specifications and bearing capacity during production, resulting in limited protection capacity of the first-layer slope protection net and inability to effectively protect some slopes.
The slope protection net connection structure is adopted. By setting up slope protection net two on slope protection net one, and connecting and fixing mechanisms are used to connect and fix the two layers of slope protection nets together to improve the protection effect.
Through the connection and fixation of the multi-layer slope protection net, the protection effect of the slope is significantly improved and the impact of factors such as strong wind and heavy rain on the slope is reduced.
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Figure CN222962083U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of slope protection, and in particular to a connection structure for a slope protection net. Background Art
[0002] A slope refers to a slope with a certain gradient made on both sides of a roadbed to ensure the stability of the roadbed. It can be classified into artificial slopes and natural slopes according to the cause, and into soil slopes and rock slopes according to the formation lithology. It can be divided into layered structure slopes, block structure slopes, and
[0004] network structure slopes according to the rock layer structure.
[0003] Generally, various protections are made on slopes. Mainly various flexible slope protection nets mainly composed of wire rope nets are covered and wrapped on the required protected slopes or rocks to limit the weathering and spalling or damage of the slope rock soil bodies and the collapse of dangerous rocks.
[0004] When the existing slope protection nets are in use, generally there is only one layer. When in use, the edge of the slope protection net is fixed to the edge of the slope. The specifications and load-bearing capacity of the slope protection net are fixed during production, which results in limited protection ability of a single-layer slope protection net and may not be sufficient for the protection of some slopes. Summary of the Utility Model
[0005] The purpose of the present application is to solve the problem that the specifications and load-bearing capacity of the slope protection net are fixed during production in the above-mentioned background art, which results in limited protection ability of a single-layer slope protection net and may not be sufficient for the protection of some slopes. The present application provides a connection structure for a slope protection net.
[0006] The present application specifically adopts the following technical solutions to achieve the above purpose:
[0007] A connection structure for a slope protection net, including a first slope protection net, a second slope protection net is arranged on the first slope protection net, a plurality of connection mechanisms are arranged between the first slope protection net and the second slope protection net, a plurality of pressing mechanisms are arranged between the first slope protection net and the second slope protection net, and the connection mechanisms correspond to the pressing mechanisms.
[0008] By adopting the above technical solutions, the first slope protection net is laid on the second slope protection net, and the first slope protection net and the second slope protection net are connected together by a plurality of connection mechanisms. At the same time, the connection mechanisms are inserted into the ground to fix the first slope protection net and the second slope protection net. Then, the pressing mechanisms on the connection mechanisms are used to squeeze the first slope protection net to make the first slope protection net closely adhere to the second slope protection net, so as to improve the effect of protecting the slope and further reduce the influence of factors such as strong winds and heavy rains on the slope.
[0009] Further, the connecting mechanism includes a fixing block arranged at the bottom of the second slope protection net. A connecting block is arranged on the first slope protection net. One end of the connecting block is fixed with a first inserting block. The first inserting block penetrates through the fixing block and is slidably connected with the fixing block. The other end of the connecting block away from the first inserting block is fixed with a second inserting block. The second inserting block penetrates through the fixing block, and a locking component is arranged between the second inserting block and the fixing block.
[0010] By adopting the above technical solution, the grid lines of the first slope protection net and the second slope protection net enter between the fixing block and the connecting block, and then are restricted by the first inserting block and the second inserting block, so that the first slope protection net and the second slope protection net are connected together, thereby enabling the first slope protection net and the second slope protection net to be fixed together, improving the slope protection effect, and making the connection between the first slope protection net and the second slope protection net more rapid and convenient.
[0011] Further, the locking component includes a locking block slidably connected to the fixing block. A first locking tooth is formed at one end of the locking block close to the second inserting block. A second locking tooth is formed on one side of the second inserting block close to the locking block. The first locking tooth and the second locking tooth face in opposite directions.
[0012] By adopting the above technical solution, the connecting block drives the second inserting block to insert into the fixing block, then passes through the fixing block and is inserted into the ground under the action of the inserting head. The first locking tooth on the locking block and the second locking tooth on the second inserting block can only slide unidirectionally, so that after the second inserting block is inserted into the fixing block, the possibility of the second inserting block disengaging from the fixing block is reduced.
[0013] Further, a locking spring is arranged between the fixing block and the locking block. Both ends of the locking spring are fixedly connected to the locking block and the fixing block respectively.
[0014] By adopting the above technical solution, when pushing the connecting block stops, the locking block moves close to the second inserting block under the push of the locking spring, so that the first locking tooth on the locking block and the second locking tooth on the second inserting block are locked together, thereby enabling the second inserting block not to be pulled out of the fixing block.
[0015] Further, inserting heads are fixed at the ends of the first inserting block and the second inserting block away from the connecting block. The inserting heads are triangular.
[0016] By adopting the above technical solution, directly pressing the connecting block, the connecting block drives the first inserting block and the second inserting block to slide on the fixing block and insert into the ground under the action of the inserting head, so that the first inserting block and the second inserting block can be inserted into the ground, improving the stability of the first slope protection net and the second slope protection net.
[0017] Further, a limiting block is fixed on the first inserting block. An inclined surface is formed on the limiting block, and the inclined surface faces the inserting head.
[0018] By adopting the above technical solution, when the first plug-in block slides on the fixed block, it will not break away from the fixed block, thereby reducing the possibility of the first plug-in block detaching from the fixed block and reducing the possibility of the first plug-in block and the second plug-in block being inserted in the wrong way.
[0019] Further, the pressing mechanism includes a pressing threaded rod arranged on the connecting block. The pressing threaded rod penetrates through the connecting block and is threadedly connected to the connecting block. A knob is fixed on the pressing threaded rod.
[0020] By adopting the above technical solution, rotate the knob to drive the pressing threaded rod to rotate, move the pressing threaded rod on the connecting block, and push the first slope protection net and the second slope protection net to abut against the fixed block, thereby improving the connection strength between the first slope protection net and the second slope protection net and reducing the possibility of movement between the first slope protection net and the second slope protection net.
[0021] Further, one end of the pressing threaded rod away from the knob is rotatably connected to a pressing head.
[0022] By adopting the above technical solution, when the pressing threaded rod moves, the pressing threaded rod drives the pressing head to move, and the pressing head remains non-rotating when abutting, thereby reducing the possibility of wear of the pressing threaded rod on the first slope protection net during rotation.
[0023] In summary, the present application includes at least one of the following beneficial effects;
[0024] 1. In the present application, by laying the second slope protection net on the slope, then laying the first slope protection net on the second slope protection net, then moving the fixed block below the grid line of the grid of the second slope protection net, and then passing the grid lines of the first slope protection net and the second slope protection net through between the second plug-in block and the fixed block, then making the fixed block abut against the slope, then directly pressing the connecting block, the connecting block drives the first plug-in block to slide on the fixed block and inserts into the ground under the action of the plug connector. At the same time, the connecting block drives the second plug-in block to insert into the fixed block, then passes through the fixed block and inserts into the ground under the action of the plug connector. At the same time, the locking teeth two on the second plug-in block slide on the locking teeth one on the locking block. When stopping pushing the connecting block, the locking block moves closer to the second plug-in block under the push of the locking spring, and the locking teeth one on the locking block are stuck with the locking teeth two on the second plug-in block, and the second plug-in block cannot be pulled out from the fixed block, completing the connection and fixation of the first slope protection net and the second slope protection net, achieving the purpose of being able to fix the first slope protection net and the second slope protection net together, improving the slope protection effect, and at the same time making the connection between the first slope protection net and the second slope protection net faster and more convenient.
[0025] 2. In this application, after the grid lines of the slope protection net 1 and the slope protection net 2 enter between the fixed block and the connecting block, the plug-in block 1 and the plug-in block 2 restrict the grid lines of the slope protection net 1 and the slope protection net 2. Then, turn the knob to drive the pressing threaded rod by the knob, and drive the pressing head by the pressing threaded rod to abut against the slope protection net 1, so that the slope protection net 1 and the slope protection net 2 are tightly abutted together, achieving the purpose of improving the connection strength between the slope protection net 1 and the slope protection net 2 and reducing the possibility of movement between the slope protection net 1 and the slope protection net 2. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 is the first three-dimensional structure schematic diagram of the slope net connection structure in this application;
[0027] Figure 2 is the second three-dimensional structure schematic diagram of the slope net connection structure in this application;
[0028] Figure 3 is this application Figure 1 the enlarged schematic diagram at A in;
[0029] Figure 4 is this application Figure 2 the enlarged schematic diagram at B in.
[0030] DESCRIPTION OF THE REFERENCE NUMERALS:
[0031] 1. Slope protection net 1; 2. Slope protection net 2; 3. Connection mechanism; 31. Fixed block; 32. Connecting block; 33. Plug-in block 1; 34. Plug-in block 2; 35. Locking assembly; 351. Locking block; 352. First locking tooth; 353. Second locking tooth; 354. Locking spring; 36. Plug joint; 37. Limiting block; 4. Pressing mechanism; 41. Pressing threaded rod; 42. Knob; 43. Pressing head. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0032] The following further describes this application in detail with reference to Figure 1 —4.
[0033] The embodiment of this application discloses a slope net connection structure.
[0034] Referring to Figure 1 , Figure 2 and Figure 3 , a slope net connection structure includes a slope protection net 1, a slope protection net 2 is arranged on the slope protection net 1, several connection mechanisms 3 are arranged between the slope protection net 1 and the slope protection net 2, several pressing mechanisms 4 are arranged between the slope protection net 1 and the slope protection net 2, and the connection mechanism 3 corresponds to the pressing mechanism 4.
[0035] When slope protection is required, first lay the second slope protection net 2 on the slope, and then lay the first slope protection net 1 on the second slope protection net 2. When laying the first slope protection net 1 on the second slope protection net 2, use a plurality of connecting mechanisms 3 to connect the first slope protection net 1 and the second slope protection net 2 together, and at the same time insert the connecting mechanism 3 into the ground to fix the first slope protection net 1 and the second slope protection net 2. Then use the pressing mechanism 4 on the connecting mechanism 3 to squeeze the first slope protection net 1 to make the first slope protection net 1 closely adhere to the second slope protection net 2. Then the first slope protection net 1 and the second slope protection net 2 jointly protect the slope. By laying the second slope protection net 2 on the slope, then laying the first slope protection net 1 on the second slope protection net 2, and then using the connecting mechanism 3 to connect the first slope protection net 1 and the second slope protection net 2 together, the first slope protection net 1 and the second slope protection net 2 jointly protect the slope, so as to improve the effect of slope protection and further reduce the impact of strong winds and heavy rains on the slope.
[0036] Refer to Figure 2 、 Figure 3 and Figure 4 Moreover, the connecting mechanism 3 includes a fixing block 31 arranged at the bottom of the second slope protection net 2. A connecting block 32 is arranged on the first slope protection net 1. One end of the connecting block 32 is fixed with a first inserting block 33. The first inserting block 33 penetrates through the fixing block 31 and is slidably connected with the fixing block 31. The end of the connecting block 32 far from the first inserting block 33 is fixed with a second inserting block 34. The second inserting block 34 penetrates through the fixing block 31. A locking assembly 35 is arranged between the second inserting block 34 and the fixing block 31.
[0037] In addition, the locking assembly 35 includes a locking block 351 slidably connected to the fixing block 31. A first locking tooth 352 is opened at one end of the locking block 351 close to the second inserting block 34. A second locking tooth 353 is opened on one side of the second inserting block 34 close to the locking block 351. The first locking tooth 352 and the second locking tooth 353 face in opposite directions.
[0038] Furthermore, a locking spring 354 is arranged between the fixing block 31 and the locking block 351. Both ends of the locking spring 354 are fixedly connected to the locking block 351 and the fixing block 31.
[0039] Also, plug connectors 36 are fixed to the ends of the first inserting block 33 and the second inserting block 34 far from the connecting block 32. The plug connectors 36 are triangular.
[0040] Lay slope protection net 2 on the slope, then lay slope protection net 1 on slope protection net 2, then move the fixed block 31 to the bottom of the grid line of the slope protection net 2, then let the grid lines of slope protection net 1 and slope protection net 2 pass between the plug-in block 2 34 and the fixed block 31, then let the fixed block 31 contact the slope, then directly press the connecting block 32, the connecting block 32 drives the plug-in block 1 33 to slide on the fixed block 31, and insert it into the ground under the action of the plug connector 36, at the same time, the connecting block 32 drives the plug-in block 2 34 to be inserted into the fixed block 31, then passes through the fixed block 31 and is inserted into the ground under the action of the plug connector 36, at the same time, the locking tooth 2 353 on the plug-in block 2 34 slides on the locking tooth 1 352 on the locking block 351, When the pushing of the connecting block 32 stops, the locking block 351 is pushed by the locking spring 354 to move toward the direction of the plug-in block 2 34, so that the locking tooth 1 352 on the locking block 351 is stuck with the locking tooth 2 353 on the plug-in block 2 34, and the plug-in block 2 34 cannot be pulled out from the fixing block 31, thereby completing the connection and fixation of the slope protection net 1 and the slope protection net 2. By laying the slope protection net 1 on the slope protection net 2, and then locating the grid lines of the slope protection net 1 and the slope protection net 2 between the connecting block 32 and the fixing block 31, and then restricting the plug-in block 1 33 and the plug-in block 2 34, the slope protection net 1 and the slope protection net 2 can be fixed together, thereby improving the slope protection effect and making the connection between the slope protection net 1 and the slope protection net 2 faster and more convenient.
[0041] Reference Figure 1 and Figure 3 A limit block 37 is fixed on the plug-in block 1 33, and a slope is provided on the limit block 37, which faces the plug connector 36. The upper limit block 37 is fixed on the plug-in block 1 33, so that the limit block 37 cannot pass through the fixed block 31, and the plug-in block 1 33 will not be separated from the fixed block 31 when sliding on the fixed block 31. By limiting the plug-in block 1 33 by the limit block 37, the possibility of the plug-in block 1 33 being separated from the fixed block 31 can be reduced, and the possibility of the plug-in block 1 33 and the plug-in block 2 34 being plugged in reverse can be reduced.
[0042] Reference Figure 2 and Figure 4 The clamping mechanism 4 includes a clamping threaded rod 41 arranged on the connecting block 32. The clamping threaded rod 41 passes through the connecting block 32 and is threadedly connected to the connecting block 32. A knob 42 is fixed on the clamping threaded rod.
[0043] In addition, one end of the clamping threaded rod 41 away from the knob 42 is rotatably connected to a clamping head 43 .
[0044] After the grid lines of the slope protection net 1 and the slope protection net 2 enter between the fixing block 31 and the connecting block 32, the plug-in block 1 33 and the plug-in block 2 34 restrict the grid lines of the slope protection net 1 and the slope protection net 2. Then, turn the knob 42 to drive the pressing threaded rod 41 by the knob 42, and drive the pressing head 43 by the pressing threaded rod 41 to abut against the slope protection net 1, so that the slope protection net 1 and the slope protection net 2 are tightly abutted together. By using the pressing threaded rod 41 to drive the pressing head 43, the slope protection net 1 and the slope protection net 2 are abutted together, thereby improving the connection strength between the slope protection net 1 and the slope protection net 2 and reducing the possibility of movement between the slope protection net 1 and the slope protection net 2.
[0045] Working principle: When slope protection is required, first lay the slope protection net 2 on the slope, then lay the slope protection net 1 on the slope protection net 2, then move the fixing block 31 below the grid line of the grid of the slope protection net 2, and then let the grid lines of the slope protection net 1 and the slope protection net 2 pass through between the plug-in block 2 34 and the fixing block 31. Then, let the fixing block 31 abut against the slope, and then directly press the connecting block 32. The connecting block 32 drives the plug-in block 1 33 to slide on the fixing block 31 and insert into the ground under the action of the plug joint 36. At the same time, the connecting block 32 drives the plug-in block 2 34 to insert into the fixing block 31, then pass through the fixing block 31 and insert into the ground under the action of the plug joint 36. At the same time, the locking tooth 2 353 on the plug-in block 2 34 slides on the locking tooth 1 352 on the locking block 351. When the connection block 32 stops being pushed, the locking block 351 moves closer to the plug-in block 2 34 under the push of the locking spring 354, so that the locking tooth 1 352 on the locking block 351 is stuck with the locking tooth 2 353 on the plug-in block 2 34, and the plug-in block 2 34 cannot be pulled out from the fixing block 31, completing the connection and fixation of the slope protection net 1 and the slope protection net 2. Then, turn the knob 42 to drive the pressing threaded rod 41 by the knob 42, and drive the pressing head 43 by the pressing threaded rod 41 to abut against the slope protection net 1, so that the slope protection net 1 and the slope protection net 2 are tightly abutted together.
Claims
1. A slope protection net connection structure, comprising a slope protection net 1 (1), characterized in that: The slope protection net 1 (1) is provided with a slope protection net 2 (2), a plurality of connecting mechanisms (3) are provided between the slope protection net 1 (1) and the slope protection net 2 (2), a plurality of clamping mechanisms (4) are provided between the slope protection net 1 (1) and the slope protection net 2 (2), and the connecting mechanisms (3) correspond to the clamping mechanisms (4).
2. A slope protection net connection structure according to claim 1, characterized in that: The connection mechanism (3) comprises a fixed block (31) arranged at the bottom of the second slope protection net (2); the first slope protection net (1) is provided with a connection block (32); one end of the connection block (32) is fixed with a plug-in block (33); the plug-in block (33) passes through the fixed block (31) and is slidably connected to the fixed block (31); the end of the connection block (32) away from the plug-in block (33) is fixed with a plug-in block (34); the plug-in block (34) passes through the fixed block (31); and a locking assembly (35) is provided between the plug-in block (34) and the fixed block (31).
3. A slope protection net connection structure according to claim 2, characterized in that: The locking assembly (35) comprises a locking block (351) slidably connected to the fixed block (31); a locking tooth 1 (352) is provided at one end of the locking block (351) close to the plug-in block 2 (34); a locking tooth 2 (353) is provided at one side of the plug-in block 2 (34) close to the locking block (351); the locking tooth 1 (352) and the locking tooth 2 (353) face in opposite directions.
4. A slope protection net connection structure according to claim 3, characterized in that: A locking spring (354) is provided between the fixing block (31) and the locking block (351), and both ends of the locking spring (354) are fixedly connected to the locking block (351) and the fixing block (31).
5. A slope protection net connection structure according to claim 2, characterized in that: A plug connector (36) is fixed to one end of the plug-in block 1 (33) and the plug-in block 2 (34) away from the connection block (32), and the plug connector (36) is in a triangular shape.
6. A slope protection net connection structure according to claim 5, characterized in that: A limit block (37) is fixed on the first plug-in block (33), and an inclined surface is formed on the limit block (37), the inclined surface facing the plug-in connector (36).
7. A slope protection net connection structure according to claim 2, characterized in that: The clamping mechanism (4) comprises a clamping threaded rod (41) arranged on the connecting block (32), the clamping threaded rod (41) passing through the connecting block (32) and being threadedly connected to the connecting block (32), and a knob (42) being fixed on the clamping threaded rod.
8. A slope protection net connection structure according to claim 7, characterized in that: One end of the clamping threaded rod (41) away from the knob (42) is rotatably connected to a clamping head (43).