CN212534158U - Side slope protection device - Google Patents
Side slope protection device Download PDFInfo
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- CN212534158U CN212534158U CN202021137511.5U CN202021137511U CN212534158U CN 212534158 U CN212534158 U CN 212534158U CN 202021137511 U CN202021137511 U CN 202021137511U CN 212534158 U CN212534158 U CN 212534158U
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Abstract
The utility model discloses a side slope protection device, which comprises a plurality of building blocks which can be spliced mutually all around and have rectangular shapes; an L-shaped clamping groove is formed in the upper end of one side of the building block, and an L-shaped shoulder is fixed at the upper end of one side of the building block, which corresponds to the clamping groove in parallel; one side of the building block, which is close to the clamping groove, is provided with a positioning groove communicated with the clamping groove; the positioning groove is perpendicular to the clamping groove; a positioning block is fixed at the lower end of the shoulder corresponding to the positioning groove; the shoulder and the positioning block are respectively embedded into the clamping groove and the positioning groove from top to bottom, and adjacent building blocks are lapped together; a dovetail groove is formed in the upper end of one side, vertically adjacent to the clamping groove, of the building block, and a dovetail is fixed to one side, parallel to and corresponding to the dovetail groove, of the building block; the dovetail joint is embedded into the dovetail grooves of the adjacent building blocks from top to bottom, and the adjacent building blocks are connected together; a planting opening is arranged in the middle of the building block in a penetrating manner; planting soil is laid in the planting hole, and greening protection is carried out by planting vegetation on the planting soil.
Description
Technical Field
The utility model relates to a side slope protection technical field, specific side slope protector that says so.
Background
Various side slope landforms are formed due to human activities, natural factors and the like, and human activities such as artificial excavation, filling and the like are common human activities for forming the side slope landforms. In order to prevent the side slope from being washed by rainwater, people often perform various paving and planting on the slope surface to strengthen the protection of the side slope. Although some building blocks of the existing side slope protection device can also form a relatively effective interlocking structure, the interlocking structure is relatively complex, so that the paving speed of the building blocks is relatively low, the on-site construction efficiency is relatively low, and the construction cost of engineering is improved.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a side slope protector, each building block among this side slope protector can lay on the side slope earth's surface fast, accurately, and can form stable interlocking structure between each adjacent building block, not only can effectively improve on-the-spot efficiency of construction, reduces construction cost, still can improve the connection stability between each building block, and the side slope protecting effect is good.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a side slope protection device comprises a plurality of building blocks which can be spliced mutually at the periphery and are rectangular in shape; an L-shaped clamping groove is formed in the upper end of one side of the building block, and an L-shaped shoulder is fixed at the upper end of one side of the building block, which corresponds to the clamping groove in parallel; one side of the building block, which is close to the clamping groove, is provided with a positioning groove communicated with the clamping groove; the positioning groove is perpendicular to the clamping groove; a positioning block is fixed at the lower end of the shoulder corresponding to the positioning groove; the shoulder and the positioning block are respectively and tightly embedded into the clamping groove and the positioning groove from top to bottom, and adjacent building blocks are lapped together; a dovetail groove is formed in the upper end of one side, vertically adjacent to the clamping groove, of the building block, and a dovetail is fixed to one side, parallel to and corresponding to the dovetail groove, of the building block; the dovetail joint is tightly embedded into the dovetail grooves of the adjacent building blocks from top to bottom, and the adjacent building blocks are connected together; a planting opening is arranged in the middle of the building block in a penetrating manner; planting soil is laid in the planting hole, and greening protection is carried out by planting vegetation on the planting soil.
Furthermore, the left side and the right side of the bottom of the building block are respectively and oppositely provided with a transverse water trough communicated with the planting port; and the transverse water passing grooves on the adjacent building blocks are communicated with each other.
Furthermore, the upper side and the lower side of the bottom of the building block are respectively and oppositely provided with a longitudinal water trough communicated with the planting port; and the longitudinal water passing grooves on the adjacent building blocks are communicated with each other.
Furthermore, a stable frame for improving the connection stability of the building blocks is cast on the periphery of the spliced building blocks in a cast-in-place mode.
Furthermore, broken stones for improving the rainwater erosion resistance are laid on the surface of the planting soil.
Furthermore, the opening of the planting opening is gradually increased from top to bottom, and the building blocks are hooped on the ground surface after the planting soil is connected with the bottom soil.
After the technical scheme is adopted, the utility model discloses following beneficial effect has:
1. the utility model relates to a side slope protector through taking shoulder, locating piece and draw-in groove, constant head tank coordination, each building block can lay on the side slope earth's surface fast, accurately, and can form stable interlocking structure between each adjacent building block, not only can effectively improve on-the-spot efficiency of construction, reduces construction cost, still can improve the connection stability between each building block, and the side slope protecting effect is good.
2. The utility model relates to a side slope protector, horizontal water trough can be in the same place from horizontal intercommunication with planting mouthful on the adjacent building block, vertical water trough can be in the same place from vertical intercommunication with planting mouthful on the adjacent building block, can form and indulge horizontal water network, when the planting of local building block is sucked the water yield and is more, moisture can be fast to adjacent planting mouthful infiltration, and when planting soil or earth's surface soil and filling when horizontal water trough and vertical water trough, can make building block bottom and soil layer zonulae occludens together, can effectively improve the resistance to plucking ability and the ability of shearing of building block.
3. The utility model relates to a side slope protector, building block splice the back mutually, at cast-in-place firm frame all around, can be in the same place from the building block locking after will splicing all around.
4. The utility model relates to a side slope protector plants the opening from the top down crescent of mouth, and not only reducible planting soil is walked by the rainwash from planting the mouth, still can make planting soil and bottom soil be connected the back and cramp the building block on the earth's surface.
Drawings
Fig. 1 is a schematic perspective view of a block of the present invention;
FIG. 2 is a front view of the block of the present invention;
FIG. 3 is a schematic view of the three-dimensional structure of a single block after vegetation is planted;
FIG. 4 is a schematic view of the three-dimensional structure of the spliced four blocks after vegetation is planted;
fig. 5 is the utility model discloses a building block concatenation and pour the spatial structure schematic diagram behind the firm frame.
The reference numbers in the figures denote:
1. building blocks; 10. a card slot; 11. shoulder lapping; 12. positioning a groove; 13. positioning blocks; 14. a dovetail groove; 15. dovetail joints; 16. planting the opening; 17. a transverse water trough; 18. a longitudinal water trough; 2. planting soil; 3. vegetation; 4. stabilizing the frame; 5. and (4) breaking the stone.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1 to 5, a slope protection device includes a plurality of rectangular blocks 1 which can be spliced with each other at the periphery; an L-shaped clamping groove 10 is formed in the upper end of one side of the building block 1, and an L-shaped shoulder 11 is fixed to the upper end of one side, parallel to and corresponding to the clamping groove 10, of the building block 1; one side of the building block 1 close to the clamping groove 10 is provided with a positioning groove 12 communicated with the clamping groove 10; the positioning groove 12 is perpendicular to the clamping groove 10; a positioning block 13 is fixed at the lower end of the shoulder 11 and at the position corresponding to the positioning groove 12; the shoulder 11 and the positioning block 13 are respectively and tightly embedded into the clamping groove 10 and the positioning groove 12 from top to bottom, and the adjacent building blocks 1 are lapped together; a dovetail groove 14 is formed in the upper end of one side, vertically adjacent to the clamping groove 10, of the block 1, and a dovetail 15 is fixed on one side, parallel to and corresponding to the dovetail groove 14, of the block 1; the dovetail 15 is tightly embedded into the dovetail grooves 14 of the adjacent building blocks 1 from top to bottom to connect the adjacent building blocks 1 together; a planting opening 16 is arranged in the middle of the building block 1 in a penetrating manner; planting soil 2 is laid in the planting opening 16, and greening protection is carried out by planting vegetation 3 on the planting soil 2.
As shown in fig. 1, 3 and 4, the left side and the right side of the bottom of the building block 1 are respectively and oppositely provided with a transverse water trough 17 communicated with the planting port 16; the transverse water through grooves 17 on the adjacent building blocks 1 are communicated with each other.
As shown in fig. 1 to 4, the upper side and the lower side of the bottom of the building block 1 are respectively and oppositely provided with a longitudinal water trough 18 communicated with the planting port 16; the longitudinal water through grooves 18 on the adjacent building blocks 1 are communicated with each other.
As shown in fig. 5, a stable frame 4 for improving the connection stability of the building blocks 1 is cast around the spliced building blocks 1.
As shown in fig. 3 and 4, the surface of the planting soil 2 is paved with the broken stone blocks 5 for improving the rain wash resistance.
As shown in fig. 1 and 3, the opening of the planting hole 16 is gradually enlarged from top to bottom, and the building block 1 is tightly clamped on the ground after the planting soil 2 is connected with the bottom soil.
The utility model discloses a work progress as follows:
when the side slope protection device is used, firstly, because the whole structure of the building block 1 is simpler, the building block 1 can be prepared by pouring concrete in a mould; then, laying the building blocks 1 on the side slope according to a laying principle from bottom to top, so that the shoulder 11 and the positioning block 13 of the transversely adjacent building blocks 1 are respectively and tightly embedded into the clamping groove 10 and the positioning groove 12 from top to bottom, and the dovetail 15 of the longitudinally adjacent building blocks 1 is tightly embedded into the dovetail groove 14 of the adjacent building blocks 1 from top to bottom until the building blocks 1 are mutually spliced together; then, concrete is cast in situ around the spliced building blocks 1 to form stable frames 4, and planting soil 2 is laid in each planting port 16; finally, planting vegetation 3 on the planting soil 2, and paving broken stones 5 on the surface layer of the planting soil 2 around the vegetation 3; therefore, each building block 1 in the side slope protection device can be quickly and accurately laid on the surface of the side slope, and a stable interlocking structure can be formed between every two adjacent building blocks 1, so that the field construction efficiency can be effectively improved, the construction cost is reduced, the connection stability among the building blocks 1 can be improved, and the side slope protection effect is good.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered by the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.
Claims (6)
1. A side slope protection device is characterized in that: comprises a plurality of building blocks (1) which can be spliced with each other all around and have rectangular shapes; an L-shaped clamping groove (10) is formed in the upper end of one side of the building block (1), and an L-shaped shoulder (11) is fixed to the upper end of one side, parallel to and corresponding to the clamping groove (10), of the building block (1); one side of the building block (1) close to the clamping groove (10) is provided with a positioning groove (12) communicated with the clamping groove (10); the positioning groove (12) is perpendicular to the clamping groove (10); a positioning block (13) is fixed at the lower end of the shoulder (11) corresponding to the positioning groove (12); the shoulder (11) and the positioning block (13) are respectively and tightly embedded into the clamping groove (10) and the positioning groove (12) from top to bottom, and the adjacent building blocks (1) are lapped together; the upper end of one side, which is vertically adjacent to the clamping groove (10), of the building block (1) is provided with a dovetail groove (14), and a dovetail joint (15) is fixed on one side, which corresponds to the dovetail groove (14) in parallel, of the building block (1); the dovetail tenon (15) is tightly embedded into the dovetail groove (14) of the adjacent building block (1) from top to bottom, and the adjacent building blocks (1) are connected together; a planting opening (16) penetrates through the middle of the building block (1); planting soil (2) is laid in the planting opening (16), and greening protection is carried out by planting vegetation (3) on the planting soil (2).
2. A slope protection device according to claim 1, wherein: the left side and the right side of the bottom of the building block (1) are respectively and oppositely provided with a transverse water trough (17) communicated with the planting port (16); the transverse water passing grooves (17) on the adjacent building blocks (1) are communicated with each other.
3. A slope protection device according to claim 1, wherein: the upper side and the lower side of the bottom of the building block (1) are respectively and oppositely provided with a longitudinal water trough (18) communicated with the planting port (16); the longitudinal water through grooves (18) on the adjacent building blocks (1) are communicated with each other.
4. A slope protection device according to claim 1, wherein: and a stable frame (4) for improving the connection stability of the building blocks (1) is cast around the spliced building blocks (1) in a cast-in-place manner.
5. A slope protection device according to claim 1, wherein: and the surface of the planting soil (2) is paved with broken stones (5) for improving the rainwater erosion resistance.
6. A slope protection device according to claim 1, wherein: the opening of the planting opening (16) is gradually enlarged from top to bottom, and the building block (1) is tightly hooped on the ground surface after the planting soil (2) is connected with the bottom soil.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021137511.5U CN212534158U (en) | 2020-06-18 | 2020-06-18 | Side slope protection device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021137511.5U CN212534158U (en) | 2020-06-18 | 2020-06-18 | Side slope protection device |
Publications (1)
Publication Number | Publication Date |
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CN212534158U true CN212534158U (en) | 2021-02-12 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202021137511.5U Active CN212534158U (en) | 2020-06-18 | 2020-06-18 | Side slope protection device |
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CN (1) | CN212534158U (en) |
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2020
- 2020-06-18 CN CN202021137511.5U patent/CN212534158U/en active Active
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