KR20100119853A - The environment affinity type modular gabion - Google Patents

The environment affinity type modular gabion Download PDF

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Publication number
KR20100119853A
KR20100119853A KR1020100103762A KR20100103762A KR20100119853A KR 20100119853 A KR20100119853 A KR 20100119853A KR 1020100103762 A KR1020100103762 A KR 1020100103762A KR 20100103762 A KR20100103762 A KR 20100103762A KR 20100119853 A KR20100119853 A KR 20100119853A
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KR
South Korea
Prior art keywords
mesh
frame
gabion
friendly prefabricated
environment
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KR1020100103762A
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Korean (ko)
Inventor
장진찬
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장진찬
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Application filed by 장진찬 filed Critical 장진찬
Priority to KR1020100103762A priority Critical patent/KR20100119853A/en
Publication of KR20100119853A publication Critical patent/KR20100119853A/en

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Abstract

The present invention can fill the stone of various sizes, can install the vegetation sac between the stones to facilitate the sticking of plants, overcoming the phenomena caused by the filling of the stone to maintain the original shape and even after construction The purpose of the present invention is to provide environmentally friendly prefabricated gabion and its manufacturing and construction method to harmonize with the surrounding environment through the growth of.
Environmental friendly prefabricated gabion according to the present invention for achieving the above object is an outer mesh consisting of a frame made of a rectangular parallelepiped shape, and a wire mesh that is bound to five surfaces except one side of the frame; Inserted through one side of the outer mesh, characterized in that composed of a frame made of a rectangular parallelepiped shape and the inner mesh consisting of a wire mesh to be bonded to the remaining portion except the upper surface of the frame.

Description

The environment affinity type modular gabion

The present invention relates to an environment-friendly prefabricated gabion, and more particularly to an environment-friendly prefabricated gabion having a double structure in which the inner mesh is inserted into the outer mesh.

In general, dikes or embankments are installed in rivers, lakes, incisions, parks, coasts, etc. to prevent flooding of water or seawater, or to maintain waterways. Constructed from the material of

Here, in order to build a bank or embankment using blocks and stones as described above, a gabion that can hold a plurality of stones or concrete blocks in a predetermined form is required.

The most common type of gabion of this type is the gabion using a wire mesh, that is, the gabion is usually composed of a body consisting of a cylindrical or other cube by using a fixing piece by weaving a wire, the open of the body Both openings are closed by a lid or cover formed of coarse wire, filled with stone or concrete therein, and built on a weir or bank.

By the way, the gabions made of the above-described configuration is not actually a standardized product of a certain form of gabions, by making and constructing gabions whenever necessary, not only excessive time, cost and work required to produce the gabions, There is a problem that the appearance is not beautiful after construction.

 Thus, in order to solve the problems described above, a hexagonal gabion (gabion) manufactured in the form of a rectangular cube has been proposed.

Such a hexagonal gabion is provided with a reinforcement line forming the appearance of the gabion forming a hexagonal shape as a whole, the wire mesh is a structure in which a wire mesh formed by twisting a relatively thin wire is fixed by a plurality of binding lines.

Conventional hexagonal gabion made of a structure as described above is constructed by building on the embankment or embankment by filling the stone or concrete, wherein the original hexagonal gabion by a number of stones or concrete filled in the hexagonal gabion in the form of a cube It can not be maintained, the side of the gabion becomes full shape, not only the overall shape is deformed, but also there is a problem that the side is extremely exploded, the installation work of the gabion is not only difficult, but the installation is not orderly, it does not fit well with the surrounding environment, In particular, there is a risk of collapse after construction.

Thus, the present invention has been devised to solve the problems as described above, it is possible to fill the stone of various sizes, by installing a vegetation bag between the stones to facilitate the plant's swelling, generated by filling the stone The purpose of the present invention is to provide an environment-friendly prefabricated gabion and its manufacturing and construction method which overcomes the hungry phenomenon and maintains the original shape even after construction and harmonizes with the surrounding environment through the growth of vegetation.

Environmental friendly prefabricated gabion according to the present invention for achieving the above object is an outer mesh consisting of a frame made of a rectangular parallelepiped shape, and a wire mesh that is bound to five surfaces except one side of the frame; Inserted through one side of the outer mesh, characterized in that composed of a frame made of a rectangular parallelepiped shape and the inner mesh consisting of a wire mesh to be bonded to the remaining portion except the upper surface of the frame.

As described above, the environment-friendly prefabricated gabion according to the present invention can be planted by installing stones and vegetation sacs of various sizes, and adopts the dual structure of the inner and outer meshes to fill the stone. Since it is possible to overcome the hungry phenomenon caused by, the gabion is maintained in its original shape after construction and at the same time has the advantage of creating an environment-friendly landscape in harmony with the surrounding environment through the growth of plants.

1 is a perspective view showing an environment-friendly prefabricated gabion according to the present invention,
Figure 2 is an exploded perspective view showing an environmentally friendly prefabricated gabion according to the present invention,
Figure 3 is a perspective view showing a state filled with stone and vegetation bag in the environment-friendly prefabricated gabion according to the present invention,
Figure 4 is an exemplary view showing a state in which the environment-friendly prefabricated gabion installed in the ground,
5a to 5f is a process chart showing the construction sequence of the environment-friendly prefabricated gabion according to the present invention.

Hereinafter, with reference to the accompanying drawings, the present invention will be described in detail.

1 is a perspective view showing an environmentally friendly prefabricated gabion according to the present invention, Figure 2 is an exploded perspective view showing an environmentally friendly prefabricated gabion according to the present invention, Figure 3 is an environmentally friendly prefabricated gabion according to the present invention A perspective view showing a state in which stones and vegetation sacs are filled.

As shown in these figures, the environmentally friendly prefabricated gabion according to the present invention is composed of a frame 12 having a rectangular parallelepiped shape and a wire mesh 14 bound to five surfaces except for one side of the frame 12. An outer mesh 10; The inner mesh 20 is inserted through one side of the outer mesh 10 and consists of a frame 22 having a rectangular parallelepiped shape and a wire mesh 24 that is bound to the remaining portions except the upper surface of the frame 22. It consists of.

That is, the environment-friendly prefabricated gabion (G) according to the present invention has a structure in which the inner mesh 20 is inserted into the outer mesh 10 and fixed with an iron wire 60 as shown in FIGS. 1 to 3.

Here, the outer mesh 10 is composed of a frame 12 made of a rectangular parallelepiped shape and a wire mesh 14 bound to five surfaces except for one side of the frame 12.

That is, the outer mesh 10 forms a frame 12 having a rectangular parallelepiped shape as a whole, and binds a predetermined portion of the outer surface of the frame 12 with a wire mesh 14, but one side of the frame 12. Since the inner mesh 20 is a space into which the inner mesh 20 is inserted, it is maintained without opening the wire mesh 14 and the wire mesh 14 is not installed in a predetermined portion of the upper surface of the outer mesh 10. In order to insert the stone 50 and the vegetation bag 40 into the inner mesh 20 in a predetermined portion of the upper surface of the frame 12, an opening 16 having a predetermined size is formed, and the opening 16 is hinged. Cover net 30 is coupled to the medium (18) is installed to prevent the outflow of the stone 50 and the vegetation bag 40 filled in the inner mesh 20.

Here, the frame (12, 22) is composed of a cross-sectional shape of any one of a rectangle, a triangle, a circle, the formulation, which can be configured in various ways depending on the installation location and installation type environment-friendly prefabricated gabion (S). Note that it is not limited to any particular shape.

On the other hand, the inner mesh 20 is composed of a frame 22 made of a rectangular parallelepiped shape and a wire mesh 24 that is bound to the remaining portion except the upper surface of the frame 22, the inner side of the outer mesh 10 Is inserted.

Here, the inner mesh 20 is formed in a shape that the upper surface is opened, the opening portion is a space filled with stone 50 or vegetation sac 40, except for the upper surface of the inner mesh 20 The remaining part is bound with the wire mesh 24.

In particular, the vegetation sac 40 is composed of a mesh 42 made of palm fibers, the soil sand 44, the organic fertilizer 46 and the seeds 48 filled in the mesh 42.

That is, the vegetation sac 40 is filled with a certain amount of earth and sand 44, fertilizer 46 and seeds 48 in the mesh 42 made of palm fibers to create an environment in which the seeds 48 can germinate and grow. will be.

In addition, the stone 50 is composed of natural stone, artificial stone, crushed stone, concrete blocks and the like.

Hereinafter, the production of the environment-friendly prefabricated gabion made of the above configuration will be described.

As shown in Figure 2, the environment-friendly prefabricated gabion fabrication according to the present invention, first, forming the frame 12, 22 of the outer mesh 10 and the inner mesh 20 of the rectangular parallelepiped shape with a steel bar, and the The wire meshes 14 and 24 are bonded to the frames 12 and 22 of the outer mesh 10 and the inner mesh 20 to produce outer and inner meshes 10 and 20.

Here, the outer, inner meshes 10, 20 during the fabrication of the inner mesh 20 is produced with the upper surface is opened, the remaining portion except the upper surface is produced by binding the wire mesh 24, the outer The net body 10 is manufactured in a state where one side is opened, and the wire mesh 14 is tied in a state where a predetermined portion of the upper surface is also opened.

That is, the outer mesh 10 forms a frame 12 in a rectangular parallelepiped shape as a whole, and binds a predetermined portion of the outer surface of the frame 12 with a wire mesh 14, but one side surface of the frame 12. Since the inner mesh 20 is a space to be inserted is manufactured without the wire mesh 14 is installed.

In addition, the wire mesh 14 may be manufactured on the upper surface of the outer mesh 10 without the wire mesh 14 installed on the upper surface of the outer mesh 10, and the stone 50 and the vegetation bag 40 may be formed on the upper surface of the frame 12 by the inner mesh 20. The opening 16 of a predetermined size is formed to insert a), the cover 16 is coupled to the opening 16 via the hinge 18, the stone 50 is filled in the inner mesh 20 ) And to prevent the outflow of the vegetation sac 40.

Hereinafter, the construction of the environment-friendly prefabricated gabion according to the present invention having the configuration as described above will be described.

5a to 5f is a process chart showing the construction sequence of the environment-friendly prefabricated gabion according to the present invention.

As shown in these drawings, the environment-friendly prefabricated gabion construction method according to the present invention comprises the steps of arranging the target ground (G); Laying a nonwoven fabric (F) on the target ground (G); An outer mesh (10) comprising a frame (12) having a rectangular parallelepiped shape on the nonwoven fabric (F), and a wire mesh (14) which is bound to five surfaces except for one side of the frame (12); Inserted into one side of the outer mesh 10, the inner mesh 20 consisting of a frame 22 made of a rectangular parallelepiped shape and a wire mesh 24 that is bound to the remaining portion except the upper surface of the frame 22. Is formed, the opening 16 is formed in a predetermined portion of the upper surface of the outer mesh 10, the opening 16 is arranged to arrange the environmentally friendly prefabricated gabion (S) made of a fixed installation step; Fixing the environment-friendly prefabricated gabion (S) to the ground (G) by the support (P); Vegetation sac (42) made of palm fibers in the environment-friendly prefabricated gabion (S), and the soil bag 44, organic fertilizer (46) and seeds (48) filled in the mesh 42 ( 40) and the step of filling the stone 50 is carried out sequentially to construct an environmentally friendly prefabricated gabion.

Environment-friendly prefabricated gabion and its construction method according to the present invention made of the construction as described above, after arranging the target ground (G), the non-woven fabric (F) is installed on the target ground (G), the nonwoven fabric (F After arranging the environment-friendly prefabricated gabion (S) on the), and fixedly installed to the ground (G) with the prop (P), the environment-friendly prefabricated gabion (S) After filling the vegetation sac 40 and the stone 50 in the interior, by fixing the cover net 30 of the outer mesh 10 with the wire 60, the growth of the plant by germination of seeds 48 Through this, there is an effect that can create an environment-friendly landscape in harmony with the surrounding environment.

10: outer mesh 12: frame
14: wire mesh 16: opening
18: hinge 20: inner mesh
22: frame 24: wire mesh
26: opening 30: cover net
40: vegetation sac 42: network
44: Tosa 46: fertilizer
48: Seed 50: Stone
60: wire F: nonwoven fabric
G: Ground P: Shoring
S: Eco-Friendly Prefabricated Gabion

Claims (4)

An outer mesh 10 formed of a frame 12 having a rectangular parallelepiped shape and a wire mesh 14 bound to five surfaces except for one side of the frame 12;
The inner mesh 20 is inserted through one side of the outer mesh 10 and consists of a frame 22 having a rectangular parallelepiped shape and a wire mesh 24 that is bound to the remaining portions except the upper surface of the frame 22. Eco-friendly prefabricated gabion, characterized in that consisting of.
The method of claim 1,
An opening 16 is formed in a predetermined portion of the upper surface of the outer mesh 10, the opening 16 is an environmentally friendly prefabricated gabion, characterized in that the cover net 30 is fixedly installed.
The method of claim 1,
The inner mesh 20 is filled with vegetation sac 40 and stone 50, the vegetation sac 40 is a mesh 42 made of palm fibers, and the soil sand 44 is filled in the mesh 42 , Environmentally friendly prefabricated gabion, characterized in that consisting of organic fertilizer (46) and seeds (48).
Arranging the target ground (G);
Laying a nonwoven fabric (F) on the target ground (G);
An outer mesh (10) comprising a frame (12) having a rectangular parallelepiped shape on the nonwoven fabric (F), and a wire mesh (14) bound to the frame (12); It is inserted into the side of the outer mesh 10, consisting of a frame 22 made of a rectangular parallelepiped shape and the inner mesh 20 made of a wire mesh 24 that is bound to the remaining portion except the upper surface of the frame 22. And an opening 16 is formed at a predetermined portion of the upper surface of the outer mesh 10, and the opening 16 is provided with an environmentally friendly prefabricated gabion S formed by fixing the cover net 30. ;
Fixing the environment-friendly prefabricated gabion (S) to the ground (G) by the support (P);
Vegetation sac (42) made of palm fibers in the environment-friendly prefabricated gabion (S), and the soil bag 44, organic fertilizer (46) and seeds (48) filled in the mesh 42 ( 40) and the environment-friendly prefabricated gabion construction method comprising the steps of filling the stone (50).
KR1020100103762A 2010-10-24 2010-10-24 The environment affinity type modular gabion KR20100119853A (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101244415B1 (en) * 2012-08-02 2013-03-18 석송희 A stone-net type vegetation mat
KR101246268B1 (en) * 2013-01-09 2013-03-22 주식회사 이지브록 Structure of gabion wall with vegetation steel frame and constructing method thereof
CN103995095A (en) * 2014-04-22 2014-08-20 中国热带农业科学院橡胶研究所 Method for measuring utilization rate of forest wood phosphate fertilizers
ITUB20160483A1 (en) * 2016-01-26 2017-07-26 Landlab Srl DEVICE AND METHOD FOR CONTROLLED RELEASE NUTRITION OF PLANTS AND PLANT ELEMENTS IN GENERAL
KR101963362B1 (en) * 2018-09-13 2019-03-28 (주)삼일이엔씨 Reinforced gabion retaining wall capable of completely drainage and construction method thereof
CN109644748A (en) * 2018-12-25 2019-04-19 北京林业大学 A kind of assembly type vertical planting protective slope structure and its application method

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101244415B1 (en) * 2012-08-02 2013-03-18 석송희 A stone-net type vegetation mat
KR101246268B1 (en) * 2013-01-09 2013-03-22 주식회사 이지브록 Structure of gabion wall with vegetation steel frame and constructing method thereof
CN103995095A (en) * 2014-04-22 2014-08-20 中国热带农业科学院橡胶研究所 Method for measuring utilization rate of forest wood phosphate fertilizers
ITUB20160483A1 (en) * 2016-01-26 2017-07-26 Landlab Srl DEVICE AND METHOD FOR CONTROLLED RELEASE NUTRITION OF PLANTS AND PLANT ELEMENTS IN GENERAL
KR101963362B1 (en) * 2018-09-13 2019-03-28 (주)삼일이엔씨 Reinforced gabion retaining wall capable of completely drainage and construction method thereof
WO2020055174A1 (en) * 2018-09-13 2020-03-19 (주)삼일이엔씨 Complete drainage gabion-reinforced soil retaining wall and construction method thereof
CN109644748A (en) * 2018-12-25 2019-04-19 北京林业大学 A kind of assembly type vertical planting protective slope structure and its application method

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