KR20160145920A - Bottom frame of net fixation for cultivation of abalone - Google Patents

Bottom frame of net fixation for cultivation of abalone Download PDF

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Publication number
KR20160145920A
KR20160145920A KR1020150082176A KR20150082176A KR20160145920A KR 20160145920 A KR20160145920 A KR 20160145920A KR 1020150082176 A KR1020150082176 A KR 1020150082176A KR 20150082176 A KR20150082176 A KR 20150082176A KR 20160145920 A KR20160145920 A KR 20160145920A
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KR
South Korea
Prior art keywords
coupling
pipe
inlet
connecting pipe
storage
Prior art date
Application number
KR1020150082176A
Other languages
Korean (ko)
Inventor
김정민
Original Assignee
(주)동성포리머
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Publication date
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Priority to KR1020150082176A priority Critical patent/KR20160145920A/en
Publication of KR20160145920A publication Critical patent/KR20160145920A/en

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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K61/00Culture of aquatic animals
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K75/00Accessories for fishing nets; Details of fishing nets, e.g. structure
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/80Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in fisheries management
    • Y02A40/81Aquaculture, e.g. of fish

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Marine Sciences & Fisheries (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Zoology (AREA)
  • Farming Of Fish And Shellfish (AREA)

Abstract

The present invention is characterized in that an el arch is formed with first and second engaging holes formed in a direction perpendicular to a bottom edge region of a web of an abalone culturing apparatus so as to form a bottom edge region and a third engaging hole is formed in a central portion, A tie joint pipe in which fourth and fifth coupling holes are formed so as to be opened in mutually opposite directions in a direction perpendicular to the hole and a connection pipe inserted between the El storage and Tie type coupling pipes, And a reinforcing portion formed inside the connecting pipe to reinforce the connecting pipe.
Since the lower frame for fixing the abalone net according to the present invention is provided with the reinforcing portion inside the connecting pipe, it is advantageous in that the external shape can be firmly maintained even if an external force such as current is applied.

Description

BACKGROUND OF THE INVENTION Field of the Invention [0001] The present invention relates to a net frame for netting,

BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a lower frame for fixing an abalone netting, and more particularly, to a lower frame for fixing an abalone netting in which an external shape is firmly maintained even when an external force such as current is applied.

Recently, cage aquaculture facilities for raising fishes or abalones, which are aquatic creatures, have been widely used.

In the case of the overturning cage style, the upper edge of the net having the upper open space is coupled to the upper frame formed to float on the water, the lower part of the net can secure the bottom area, Lt; / RTI >

The overturning members to be coupled to the lower frame are widely used in a structure in which an overturning attachment plate, which is usually called a shelter, is coupled to a seat frame that can be seated and coupled to the lower frame.

 In addition, the mesh used for cultivation uses a rope connected to the lung track in a position corresponding to the contour area of the lower frame so as to enhance durability while facilitating binding with the lower frame.

In the meantime, as in Korean Patent No. 0944450, a conventional lower frame is formed in a rectangular frame shape by a straight connection pipe connected between a conventional EL storage, a tee type coupling pipe, .

However, since the conventional lower frame is provided with a hollow inside and uses an El storage formed of a synthetic resin material, an external force such as an ocean current is easily deformed when applied, so that the web can not be firmly supported.

It is an object of the present invention to provide a lower frame for fixing an abalone fishing net having a reinforcing portion provided inside a connecting pipe.

In order to achieve the above object, according to the present invention, a lower frame for fixing an abalone netting is provided with a first and a second engagement holes formed in a direction perpendicular to a bottom edge of the netting, A tie joint pipe having a third coupling hole formed at a central portion thereof and having fourth and fifth coupling holes which are opened in opposite directions at right angles to the third coupling hole; The lower frame for an overturning culture, which is formed by a pipe in the form of a square frame, further comprises a reinforcing portion formed inside the connecting pipe to reinforce the connecting pipe.

A reinforcing member having a polygonal cross-sectional area and extending in a longitudinal direction of the main pipe, the reinforcing member having a first inlet formed therein; and a reinforcing member having a first end and a second end, And the other end is fixed to the inner surface of the connecting pipe and has a plurality of supporting ribs extending in the longitudinal direction of the reinforcing member.

Meanwhile, the lower frame for fixing the abalone netting according to the present invention is formed in the El storage and T-type coupling pipes so as to be respectively located in the first to fifth coupling holes, A plurality of first coupling protrusions formed corresponding to the first inlet so as to be inserted into the first inlet when the first and second coupling holes are coupled to the first and second coupling holes, And a plurality of second couplings formed corresponding to the second inlet so that the connection pipe can be respectively inserted into the second inlet formed between the reinforcing ribs when the connection pipe is coupled to the El storage and T- It is preferable to further include a projection.

The first inlet is formed in a polygonal shape corresponding to the sectional area of the reinforcing member, and the first engaging projection is also formed in a polygonal shape corresponding to the first inlet.

The reinforcing portion has a plurality of vertical ribs and horizontal ribs extending in mutually intersecting directions and fixed in a lattice shape inside the connection pipe.

Meanwhile, the lower frame for fixing the abalone netting according to the present invention is formed in the El storage and T-type coupling pipes so as to be respectively located in the first to fifth coupling holes, And a plurality of third coupling protrusions corresponding to the third inlet so as to be respectively inserted into the third inlet formed in the coupling pipe by the vertical rib and the horizontal rib when coupled to the pipes.

The connecting pipe is formed to have a polygonal cross section, and a first insertion groove is formed at a predetermined depth inward to allow a knot of the net to be drawn in at an upper one side edge portion. The elastics are formed to have a polygonal cross- And a second insertion groove is formed at a predetermined depth inwardly to allow the knot of the net to be inserted into an upper corner portion.

Since the lower frame for fixing the abalone net according to the present invention is provided with the reinforcing portion inside the connecting pipe, it is advantageous in that the external shape can be firmly maintained even if an external force such as current is applied.

1 is a perspective view of a lower frame for fixing an abalone net according to the present invention,
FIG. 2 is a perspective view of a connection pipe of a lower frame for fixing an abalone net in FIG. 1,
FIG. 3 is a perspective view of the lower shelf for securing the abalone net in FIG. 1,
Fig. 4 is a perspective view of the lower joint of the abutment form net fixing apparatus shown in Fig. 1,
5 is a perspective view of a connection pipe of a lower frame for fixing an abalone net according to another embodiment of the present invention,
FIG. 6 is a perspective view of the lower shelf for securing the abalone net in FIG. 5,
FIG. 7 is a perspective view of a tie joint tube of a lower frame for fixing an abalone netting of FIG. 5; FIG.

DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Reference will now be made in detail to the preferred embodiments of the present invention, examples of which are illustrated in the accompanying drawings.

1 to 4 show a lower frame 100 for fixing an abalone net according to the present invention.

Referring to the drawings, a lower frame 100 for fixing an abalone netting is formed in a rectangular frame shape by coupling a connection pipe 200, an El storage 400 and a T-type joint pipe 500, And a reinforcing portion 300 is provided inside.

The connecting pipe 200 forms a rectangular rim of the lower frame 100 and is connected between the aligned El storage 400 and the T-joint pipes 500. The connection pipe 200 is formed of a synthetic resin material and is formed in a cylindrical shape having a hollow inside.

The connection pipe 200 is not shown in the drawing, but has a first insertion groove formed therein so that a knot (not shown) of the mesh 15 can be inserted. The first insertion groove is inserted into the outer surface of the connection pipe 200 to a predetermined depth and extends along the longitudinal direction of the connection pipe 200.

The reinforcing part 300 has a polygonal cross-sectional area and is extended in the longitudinal direction of the main pipe and has a first inlet 311 formed therein, And the other end is fixed to an inner surface of the connecting pipe 200 and a plurality of longitudinally extending members 310 extending in the longitudinal direction of the reinforcing member 310 are fixed to the respective corners of the reinforcing member 310, And a support rib 320 of the support rib 320.

The reinforcing member 310 is supported by the support ribs 320 so as to be located at a central portion inside the connection pipe 200. The reinforcing member 310 extends along the longitudinal direction of the connecting pipe 200 and is formed to have a hexagonal cross section. At this time, the reinforcing member 310 is not limited to a hexagonal section but may be formed to have a polygonal section such as a triangle or a quadrangle.

The first inlet 311 is formed to penetrate the reinforcing member 310 along the longitudinal direction of the connecting pipe 200 and is formed to have a hexagonal cross section corresponding to the cross section of the reinforcing member 310 . At this time, the first inlet 311 is not limited to a hexagonal section but may be formed to have a polygonal section such as a triangle or a quadrangle.

The support rib 320 extends along the longitudinal direction of the connection pipe 200 and divides a space between the outer surface of the reinforcing member 310 and the inner surface of the connection pipe 200 into a plurality of second inlets 321. The reinforcing member 310 and the supporting ribs 320 may be integrally formed with the connecting pipe 200.

The connecting pipe 200 is reinforced by the reinforcing part 300 constructed as described above and can be firmly maintained in shape even when an external force such as a current is applied.

Four storage units 400 are arranged at positions corresponding to the corner portions of the rectangular region in the size of the lower frame 100 to be formed. El storage 400 is formed with a first circular tube portion 410 with a first coupling hole 411 and a second coupling hole 421 formed in a direction perpendicular to the first circular tube portion 410, Formed into a curved 'L' shape having a curved connecting portion to interconnect the formed second circular tube portion 420 and the first circular tube portion 410 and the second circular tube portion 420 that are mutually orthogonal .

The first coupling hole 411 and the second coupling hole 421 are formed to have an inner diameter corresponding to the outer diameter of the coupling pipe 200 so that the coupling pipe 200 can be easily inserted, Is preferably formed of a synthetic resin material.

Although not shown in the drawings, the eloquent storage 400 may include a first circular tube portion 410 and a second circular tube portion 420 on the top surface of the first circular tube portion 410 and the second circular tube portion 420 so that a knot (not shown) Two insertion grooves are formed. The second insertion grooves are recessed inwardly to the outer sides of the first circular tube portion 410 and the second circular tube portion 420 and the first circular tube portion 410 and the second circular tube portion 420 Respectively.

The T-joint pipe 500 is disposed to be spaced apart from each other on two mutually opposing connection lines among connection lines interconnecting the four elastics 400. The T-type coupling pipe 500 includes a vertical pipe portion 510 having a third coupling hole 511 formed at a central portion thereof, a third coupling hole 511 extending orthogonally to both ends of the vertical pipe portion 510, And a horizontal tube portion 520 formed with fourth and fifth engagement holes 521 (not shown) so as to be opened in mutually opposite directions at right angles. At this time, the third through fifth engagement holes 511 and 521 are formed to have an inner diameter corresponding to the outer diameter of the connection pipe 200. It is preferable that the above-mentioned tie-type fitting pipe 500 is formed of a synthetic resin material in the same manner as the elastic storage 400.

The lower frame 100 for fixing the abalone style net according to the present invention may include a plurality of the plurality of members 310 inserted into the first inlet 311 when the connection pipe 200 is coupled to the El storage 400 and the T- 1 coupling protrusion 601 and a plurality of second coupling protrusions 602 inserted into the second inlet 321. [

The first coupling protrusions 601 are formed in the El storage 400 and the T-type coupling pipes 500 so as to be positioned inside the first through fifth coupling holes 411, 421, 511, and 521, And is formed so as to correspond to the first coupling hole so as to be inserted into the first coupling hole when coupling to the storage 400 and the T-joint pipe 500.

The first coupling protrusions 601 extend in the longitudinal direction of the first through fifth coupling holes 411, 421, 511, and 521. One end of the first coupling protrusions 601 may be fixed to the inner side of the El storage 400 and the T- And is formed to be bent toward the inner side of the storage 400 and the T-joint pipes 500. The first engaging projection 601 is formed to have a hexagonal cross section corresponding to the first inlet 311.

It is preferable that the first coupling protrusions 601 are formed at the center of the first through fifth coupling holes 411, 421, 511, 521 corresponding to the first inlet 311 of the reinforcing member 310. The first coupling protrusions 601 are installed in the El storage 400 and the T-type coupling pipes 500 so as to be positioned inside the first to fifth coupling holes 411, 421, 511 and 521, And is inserted into the first inlet 311 when inserted into the holes 411, 421, 511,

The second coupling protrusions 602 extend in the longitudinal direction of the first through fifth coupling holes 411, 421, 511, and 521. One end of the second coupling protrusions 602 may be fixed to the inner side of the el arch 400 and the tie- And is formed to be bent toward the inner side of the storage 400 and the T-joint pipes 500. The second engagement protrusions 602 have a cross-sectional area corresponding to the second inlet 321 and are arranged radially with respect to the first engagement protrusions 601.

The second coupling protrusions 602 are installed in the El storage 400 and the T-type coupling pipes 500 so as to be positioned inside the first through fifth coupling holes 411, 421, 511, and 521, Are inserted into the second inlet 321 when they are inserted into the holes 411, 421, 511, and 521, respectively.

The first coupling protrusion 601 and the second coupling protrusion 602 are inserted into the first inlet 311 and the second coupling protrusion 602 when the coupling pipe 200 is coupled to the El storage 400 and the T- The connection pipe 200 is prevented from being rotated or twisted relative to the elastic storage 400 and the tie-type fitting pipe 500 by an external force such as an air current, The appearance can be maintained.

5 to 7 show a reinforcing portion 710 according to another embodiment of the present invention.

Elements having the same functions as those in the previous drawings are denoted by the same reference numerals.

Referring to FIG. 7, the reinforcing portion 710 includes a plurality of vertical ribs 711 and horizontal ribs 712 extending in mutually intersecting directions and fixed in a grid shape inside the connecting pipe 720. The vertical ribs 711 and the horizontal ribs 712 extend along the longitudinal direction of the connecting pipe 720. At this time, the plurality of vertical ribs 711 and the horizontal ribs 712 divide the connecting pipe 720 into a plurality of third inlet ports 713. The vertical ribs 711 and the horizontal ribs 712 may be integrally formed with the connection pipe 720.

Meanwhile, the connection pipe 720 is formed to have a rectangular cross-section, and a first insertion groove 721 is formed at a predetermined depth on the inner side so that the knot of the net 15 can be drawn in at an upper corner portion . At this time, the first insertion groove 721 is formed to extend along the longitudinal direction of the connection pipe 720 at the upper edge of the connection pipe 720 adjacent to the center of the lower frame 100.

The eloquent storage 730 is also configured such that the first circular tube portion 410 and the second circular tube portion 420 have a rectangular cross section and the first circular tube portion 410 and the second circular tube portion 420 And a second insertion groove 731 is formed on the upper surface of the second insertion groove 731. The second insertion grooves 731 are formed at the upper edge of the first circular tube portion 410 and the second circular tube portion 420 adjacent to the center of the lower mold 100, And extends along the longitudinal direction of the second circular tube portion 420.

The coupling part 740 is formed in the El storage 730 and the T-type coupling pipes 750 so as to be positioned inside the first through fifth coupling holes 411, 421, 511, and 521, The first ribs 711 and the second ribs 712 may be inserted into the third coupling holes formed in the coupling pipe 720 by the vertical ribs 711 and the horizontal ribs 712, And a plurality of third engagement protrusions 741 corresponding to the third inlet 713.

The third coupling protrusions 741 extend in the longitudinal direction of the first to fifth coupling holes 411, 421, 511, and 521. One end of the third coupling protrusions 741 may be fixed to the inner side of the el arch 730 and the tie- And is formed to be bent toward the inner side of the storage 730 and the T-joint pipes 750.

It is preferable that the third coupling protrusions 741 are arranged in the first through fifth coupling holes 411, 421, 511, 521 corresponding to the third inlet ports 713 of the reinforcing portion 710. The third coupling protrusions 741 are installed in the El storage 730 and the T-type coupling pipes 750 so as to be positioned inside the first to fifth coupling holes 411, 421, 511, and 521, Are inserted into the third inlet 713 when inserted into the holes 411, 421, 511, and 521, respectively.

While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it is evident that many alternatives, modifications and variations will be apparent to those skilled in the art.

Accordingly, the true scope of protection of the present invention should be determined only by the appended claims.

100: Substructure netting fixture
200: connecting pipe
300:
310: reinforcing member
311: 1st inlet
320: Support rib
321: 2nd inlet
400: El keep
410: first circular tube portion
411: first engaging hole
420: second circular tube portion
421: second engaging hole
430: connecting portion
500: Tie-type fittings
510:
520: Horizontal tube portion
600:
601: first engaging projection
602: second engaging projection

Claims (7)

An el arch having first and second engaging holes formed in a perpendicular direction so as to form a bottom edge region by being joined to a lower portion of a web for an abalone culturing, and a third engaging hole formed at a central portion thereof, And a connecting pipe inserted between the El storing and the T-joint pipes, wherein the connecting pipe is inserted into the tie joint pipe,
And a reinforcing part formed inside the connection pipe to reinforce the connection pipe.
The method according to claim 1,
The reinforcing portion
A reinforcing member having a polygonal sectional area and extending in the longitudinal direction of the main pipe and having a first inlet formed therein,
And a plurality of support ribs extending in the longitudinal direction of the reinforcing member, wherein the support ribs are fixed to the respective corner portions of the reinforcing member at one end, and the other end is fixed to the inner surface of the connecting pipe. Lower frame.
3. The method of claim 2,
The first and second coupling holes are formed in the first and second coupling holes so that the coupling pipe can be inserted into the first inlet when the coupling pipe is coupled to the El storage and T- A plurality of first engaging projections formed corresponding to the first inlet;
Wherein the connecting pipe is formed on the El storage and T-type coupling pipes so as to be respectively located in the first through fifth coupling holes, wherein when the coupling pipe is coupled to the El storage and T- And a plurality of second coupling protrusions formed corresponding to the second inlet so as to be inserted into the inlets, respectively.
The method of claim 3,
Wherein the first inlet is formed in a polygonal shape corresponding to the cross-sectional area of the reinforcing member, and the first engaging projection is formed in a polygonal shape corresponding to the first inlet.
The method according to claim 1,
Wherein the reinforcing portion includes a plurality of vertical ribs and horizontal ribs extending in mutually intersecting directions and fixed in a lattice shape inside the connecting pipe.
6. The method of claim 5,
Wherein the connecting pipe is formed in the El-storing and T-type coupling pipes so as to be respectively located in the first to fifth coupling holes, And a plurality of third coupling protrusions corresponding to the third inlet so as to be inserted into third inlet ports formed inside the coupling pipe, respectively.
The method according to claim 6,
Wherein the connecting pipe is formed to have a polygonal cross section and has a first insertion groove formed at a predetermined depth inwardly to allow the knot of the net to be drawn in at an upper corner portion thereof,
Wherein the el enclosure is formed to have a polygonal cross-section, and a second inserting groove is formed at a predetermined depth inward to allow the knot of the net to be drawn in at an upper corner.
KR1020150082176A 2015-06-10 2015-06-10 Bottom frame of net fixation for cultivation of abalone KR20160145920A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020150082176A KR20160145920A (en) 2015-06-10 2015-06-10 Bottom frame of net fixation for cultivation of abalone

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020150082176A KR20160145920A (en) 2015-06-10 2015-06-10 Bottom frame of net fixation for cultivation of abalone

Publications (1)

Publication Number Publication Date
KR20160145920A true KR20160145920A (en) 2016-12-21

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Family Applications (1)

Application Number Title Priority Date Filing Date
KR1020150082176A KR20160145920A (en) 2015-06-10 2015-06-10 Bottom frame of net fixation for cultivation of abalone

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