KR20160003898U - Variable multiple stage bed for raising insect - Google Patents

Variable multiple stage bed for raising insect Download PDF

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Publication number
KR20160003898U
KR20160003898U KR2020150002851U KR20150002851U KR20160003898U KR 20160003898 U KR20160003898 U KR 20160003898U KR 2020150002851 U KR2020150002851 U KR 2020150002851U KR 20150002851 U KR20150002851 U KR 20150002851U KR 20160003898 U KR20160003898 U KR 20160003898U
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KR
South Korea
Prior art keywords
bracket
column
coupling
breeding
fastening
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Application number
KR2020150002851U
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Korean (ko)
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KR200483551Y1 (en
Inventor
김남정
이영보
윤형주
이경용
김선영
Original Assignee
대한민국(농촌진흥청장)
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Priority to KR2020150002851U priority Critical patent/KR200483551Y1/en
Publication of KR20160003898U publication Critical patent/KR20160003898U/en
Application granted granted Critical
Publication of KR200483551Y1 publication Critical patent/KR200483551Y1/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
    • A01K67/00Rearing or breeding animals, not otherwise provided for; New or modified breeds of animals
    • A01K67/033Rearing or breeding invertebrates; New breeds of invertebrates
    • 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
    • A01K2227/00Animals characterised by species
    • A01K2227/70Invertebrates
    • A01K2227/706Insects, e.g. Drosophila melanogaster, medfly

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • Zoology (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Housing For Livestock And Birds (AREA)

Abstract

The present invention relates to a variable multi-tiered bed for insect rearing, comprising: a column portion having a lid portion passing through the center and having a hole formed at an upper end and a lower end thereof and having a plurality of coupling grooves arranged in a line on both sides thereof; A plurality of brackets fastened to the pillars are arranged in the brackets, and the brackets are fastened to the brackets. The brackets are fastened to the brackets, And a breeding container having an insect breeding environment at an upper end of the shelf.

Description

BACKGROUND OF THE INVENTION 1. Field of the Invention [0001] The present invention relates to a multi-

The present invention relates to a variable multistage bed for insect breeding.

Insect breeding involves insect breeding in different ways in poor facilities such as agricultural greenhouses, and there are not many farmers who systematically insect breeding.

In addition, it is not easy to store many breeding containers in a narrow space, although breeding vessels of various sizes are used to adjust the environment suitable for each insect.

Generally, as in the insect breeding device shown in the prior art, a container having a certain height is used as a container for breeding, but in this case, even if the height of the breeding container is low or high, There is a disadvantage that the space of the shelf is wasted and when the shelter container is high, the height of the shelf does not match and it is troublesome to store it in another place.

The relevant prior art is Korean public utility model 2012-0000770 (public date: February 02, 2012, name: insect breeding device).

This design is intended to provide a variable multistage bed for insect breeding to increase the breeding space per unit area in order to increase the productivity of the insect producing farmhouse.

The technical challenges to be solved by the present invention are not limited to the technical issues mentioned above.

In order to achieve the above object, the variable tiered bed for insect breeding according to the present invention is characterized in that the cage-feeding bed has a lid portion having a hole penetrating through the center thereof at its upper and lower ends, ; A height regulating unit for respectively fastening to the grooves formed at the upper and lower ends of the column portion; A bracket portion coupled to the coupling groove of the column portion to extend in the horizontal direction of the column portion; A plurality of brackets fastened to the pillars, a plurality of brackets connected to the pillars, and a plurality of brackets connected to the brackets; And a breeding container having an insect breeding environment at the top of the shelf.

In order to accomplish the above object, another variable cascade bed for insect breeding according to the present invention is characterized in that a cage-feeding bed is provided with a lid portion through which a center passes and which forms a hole at upper and lower ends, A columnar portion having a pair of coupling grooves; A height adjuster coupled to the grooves formed at the upper and lower ends of the column portion, respectively; A bracket portion coupled to the coupling groove of the column portion and extending in the horizontal direction of the column portion; And a breeding container having an engaging portion formed so as to be caught by the bracket portion arranged on both sides and having an insect breeding environment.

Specifically, the height adjusting portion includes a fixing portion formed with a fastening portion to be fastened to the groove and a screw hole that can be fixed to the ceiling or the floor.

Further, the fastening portion is characterized by a bar shape.

Further, the outer periphery of the fastening portion is in the form of a screw.

The length of the fastening portion of the height adjusting portion is longer than or equal to the groove length of the pillar portion.

Further, the height adjusting unit may further include a nut for fixing the position of the column after being fastened to the column.

Further, the inner circumference of the hole of the lid portion is characterized by a screw shape.

Further, the shelf is formed in a panel form or a bar form.

Further, the bracket portion is characterized by forming an insertion groove for fastening the shelf portion at the upper end.

Further, the present invention is characterized by further comprising a first vibration absorbing portion made of a cushion material on a lower surface of the coupling groove of the column portion or a coupling surface of a bracket portion engaged with the coupling groove.

Further, the present invention is characterized by further comprising a second vibration absorbing part made of a cushion material at a position abutting the upper surface shelf part of the insertion groove of the bracket part.

The bracket further includes a second vibration absorbing part made of a cushion material at a position where the upper surface of the bracket part abuts the breeding container.

In addition, the breeding receptacle has hooks formed on both sides thereof so as to be hooked to the bracket part, and the hooks have a cross-sectional shape in a cross-section or a diagonal shape.

As described above, according to the present invention, the height of the layer can be adjusted according to the height of the container for the cuckolds, thereby maximizing the cuckold per unit area.

In addition, the present invention has an effect that it is possible to accommodate the breeding container without space wasted at the height from the floor to the ceiling, thus facilitating the utilization of the space.

In addition, the present invention has a first vibration absorbing part and a second vibration absorbing part to absorb the impact generated when the breeding container is placed, thereby reducing the stress of the insects caused by the shaking and providing a stable environment .

1 is a perspective view showing a variable-type multistage bed for insect breeding according to a first embodiment of the present invention.
FIG. 2 is an exploded perspective view showing a variable tiered bed for insect breeding according to a first embodiment of the present invention.
3 is a perspective view showing a part of a column of a variable-type multistage bed for cuckold breeding according to the first and second embodiments of the present invention.
4 is an enlarged view of "A" of FIG. 2 enlarged.
5 is a perspective view showing a bracket part of a variable-type multistage bed for insect breeding according to a first embodiment of the present invention.
FIG. 6 is a perspective view showing a variable tiered bed for insect breeding according to the second embodiment of the present invention. FIG.
7 is an exploded perspective view showing a variable tiered bed for insect breeding according to a second embodiment of the present invention.
8 is an enlarged view of "B" of FIG. 5 enlarged.
FIG. 9 is a sectional view showing a breeding container of a variable multistage bed for insect breeding according to a second embodiment of the present invention.

Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. In the drawings, the same components are denoted by the same reference symbols whenever possible. Further, detailed descriptions of known functions and configurations that may unnecessarily obscure the gist of the present invention will be omitted.

FIGS. 1 to 4 are perspective views showing a variable tiered bed for insect breeding according to the first embodiment of the present invention. The variable tiered insect feeding bed 100 includes a column 110, a height adjusting portion 120, A portion 130, a shelf portion 140, and a breeding container 150.

The column portion 110 has a lid portion 111 which penetrates through the center and forms a hole 111a at the upper and lower ends and forms a plurality of coupling grooves 112 arranged in a row on both sides as shown in FIG. The defect groove 112 is formed through one side of the pillar 110 and further includes a first vibration absorbing part 112a made of a cushion material on the lower surface of the defect groove 112. [ Here, the first vibration absorbing portion 112 has the effect of alleviating the impact transmitted from the outside to the insects.

At this time, it is preferable that the first vibration absorbing part 112a is detachable and can be selectively used only at a necessary position.

In this embodiment, the inside of the column 110 is formed as a hollow rectangular column, but the shape of the column 110 is not limited.

In addition, the inner periphery of the hole 111a of the lid portion 111 is formed in the shape of a screw.

4, the height adjusting part 120 includes a fastening part 121 and a fastening part 122. The fastening part 121 is formed at the upper end and the lower end of the lid part 110, And a plurality of screw holes 122a are formed in the fixing portion 122 so as to be fixed to the floor or the ceiling by extending at one end of the fastening portion 121 .

It is preferable that the outer circumference of the coupling part 121 is formed in the shape of a screw corresponding to the hole 111a for fastening to the hole 111a of the lid part 111. [

Therefore, the height adjusting unit 120 can adjust the height of the column 110 by adjusting the length of the fastening part 121 inserted into the hole 111a of the lid 111. After adjusting the height of the column 110, a nut is provided between the height adjuster 120 and the lid 111 to fix the height so that the lid 111 is fixed so that it is no longer rotated do.

5, the bracket part 130 is formed in a shape similar to a right angle triangle and has a coupling part 132 having a locking protrusion shape on its shortest side, and is coupled to the coupling groove 112 of the column part 110, (Not shown in the drawing).

The overall shape of the bracket portion 130 is similar to a right triangle, but does not have three vertices as a right triangle. Also, the bracket part 130 can be easily used in the shape of a long base area, which is the contact surface of the shelf part.

At this time, the bracket portion 130 is fastened with the base side facing upward and the hypotenuse facing downward to support the load received from the base.

The bracket part 130 further includes a first vibration absorbing part 134 made of a cushion material on the coupling surface of the coupling part 132 to be coupled with the coupling groove 112 of the column part 110.

At this time, the first vibration absorbing part 134 may be selectively applied to the first vibration absorbing part 112a provided on the lower surface of the coupling groove 112 of the pillar 110. That is, any one of them may be provided.

The first vibration absorbing portion 134 and the first vibration absorbing portion 112a are preferably rubber-based or urethane-based ones for relieving the impact.

The first vibration absorbing part 134 constructed as described above is transmitted from the outside to the insects generated when the bracket is mounted on the pillar part 110 as in the case of the first vibration absorbing part 112a provided on the pillar part 110 There is an effect that the impact can be alleviated.

The shelf unit 140 includes a plurality of bracket units 130 coupled to the column unit 110 and a plurality of bracket units 130 disposed at the upper ends of the bracket units 130 and the bracket unit 130, do.

The shelf part 140 may be formed in the form of a panel or a bar when the bar shaped shelf part 140 is fastened to the bracket part 130, An insertion groove 131 is formed in which a bar-shaped shelf 140 can be inserted so that the bar-shaped shelf 140 does not protrude and the height of the base is aligned.

Further, a second vibration absorbing part 133 made of a cushion material is further provided at a position where it abuts the upper surface shelf part 140 of the insertion groove 131. At this time, it is preferable that the second vibration absorbing part 133 is rubber-based or urethane-based to mitigate the impact.

The second vibration absorbing portion 133 has the effect of absorbing impact applied through the shelf portion 140 and reducing the influence on the other rearing container 150. The second vibration absorbing portion 133 The slip prevention effect is reduced, and the phenomenon in which the shelf part 140 is slipped is reduced.

The inside of the breeding container (150) is provided with an insect breeding environment and positioned at the top of the shelf part (140). Here, since the environment varies depending on insects, the height of the breeding container 150 may not be constant.

The breeding container (150) has no restriction on the shape of the container.

Although the spacing of the shelves 140 or the spacing of the brackets 130 to be coupled to the coupling grooves 112 of the pillars 110 can be constant, And is preferably determined according to the height of the container 150.

Since the bracket 130 can be installed according to the height of the breeding container 150, it is possible to accommodate more breeding containers 150 by utilizing the distance between the breeding container 150 and the breeding container 150 .

6 to 9 are perspective views showing a variable tiered bed for insect breeding according to a second embodiment of the present invention. The variable tiered insect feeding bed 200 includes a pillar 210, a height adjuster 220, A portion 230, and a breeding container 250.

The columnar part 210 has a lid part 211 through which the center passes and forms a hole 211a at its upper and lower ends and forms a plurality of coupling grooves 212 arranged in a row or row on both sides.

The defect groove 212 is formed so as to penetrate through one surface of the column 210 and has a first vibration absorbing portion 112a (hereinafter referred to as 112a in the first embodiment) ).

The first vibration absorbing portion of the second embodiment is the same as the first vibration absorbing portion 112a of the first embodiment and is not shown in the drawing.

The columnar part 210 formed with the coupling grooves 212 in a row is disposed at the edge and the columnar part 210 formed with the coupling grooves 212 is formed between the columns 210 formed in a row .

In this embodiment, the inside of the column 210 is formed as a hollow rectangular column, but the shape of the column 210 is not limited.

In addition, the inner periphery of the hole 211a of the lid portion 211 is formed into a screw shape.

The height adjusting portion 220 includes a fastening portion 221 and a fastening portion 222. The fastening portion 221 is fastened to the hole 211a of the lid 211 located at the upper and lower ends of the pillar 210, And a plurality of screw holes 222a are formed in the fixing part 222 so as to be extended to one end of the fastening part 221 and fixed to the floor or the ceiling by screws.

It is preferable that the outer periphery of the coupling part 221 is formed in a screw shape corresponding to the hole 211a in order to engage with the hole 211a of the lid part 211. [

Therefore, the height adjuster 220 can adjust the height of the column 210 by adjusting the length of the fastening part 221 inserted into the hole 211a of the lid 211. After the height of the column 210 is adjusted, a nut is provided between the height adjuster 220 and the lid 211 to fix the height so that the lid 211 is fixed so that it is no longer rotated do.

The bracket part 230 is formed in a shape similar to a right triangle and is formed with a coupling part 232 having a locking jaw shape on the shortest side thereof and is fastened to the coupling groove 212 of the column part 210. The length of the column part 210 But extend in the horizontal direction.

The bracket part 230 further includes a first vibration absorbing part 234 made of a cushion material on a mating surface of a coupling part 232 to be coupled with the coupling groove 212 of the column part 210. At this time, the first vibration absorbing portion 234 is preferably rubber-based or urethane-based to mitigate the impact.

At this time, the first vibration absorbing portion 234 may be selectively applied to the first vibration absorbing portion 112a provided on the lower surface of the coupling groove 212 of the pillar 210. That is, any one of them may be provided.

The first vibration absorbing portion 234 configured as described above is configured to mount the bracket portion 230 on the pillar portion 210 in the same manner as the first vibration absorbing portion 112a provided on the pillar portion 210 described in the first embodiment It is possible to mitigate the impact transmitted from the outside to the insects.

7, when the following breeding container 250 is placed or separated by sandwiching the second vibration absorbing portion 233 with a material having a cushioning feel on the base of the bracket portion 230, There is an effect that it is possible to prevent injuries that occur accidentally.

Also, by absorbing the impact generated when the breeding container 250 is positioned, the impact applied to the other breeding container can be reduced, and the slurry of the breeding container 250 can be prevented.

The bracket portion 230 can be fastened to any one of the row or two rows of coupling grooves 212 formed on both sides of the column portion 210. This is determined by the spacing of the rearing container 250 to be described below, The height of the bracket portions 230 to be provided in the coupling grooves 212 formed on both side surfaces of the base plate 210 need not always be the same.

Here, the overall shape of the bracket part 230 is similar to a right triangle, but does not have three vertices like a right triangle. Also, the bracket part 230 can be easily used in the shape of a long base end.

It is preferable that the upper end of the bracket part 230 is formed to be equal to or larger than the length of any two sides of the four sides of the breeding container 250.

At this time, the bracket portion 230 is fastened with the base side facing upward and the hypotenuse facing downward to support the load received from the base.

The breeding container 250 is provided with a latching part 251 for catching the bracket part 230 arranged on both sides, and has an insect breeding environment.

As shown in FIG. 9, the breeding container 250 can be mounted on the second vibration absorbing part 233 of the bracket 230 by a lid 250 of the breeding container 250, The engaging portion 251 is formed.

8 (a) and 8 (b), the shape of the latching part 251 is not limited to the height of the second vibration absorbing part 233 of the bracket part 230 And may be provided in the form of a navigator (a) or a digger (c) so as to be caught.

In order to place the breeding container 250 thus formed in the bracket part 230, the rod part 210 and the rod part 210 are adjusted to fit the width of the breeding container 250.

In this case, when the breeding container 250 is positioned at the same height in the two pillars 210 having the two rows of coupling grooves 212, the brackets 250 connected to the right coupling grooves 212 of the left pillars 210, The two side fastening portions 250 can be engaged with the bracket portions 230 coupled to the coupling grooves 212 on the left side of the right and left pillar portions 230 and 210, respectively.

In order to install the pillars 110 and 210 of the first and second embodiments of the present invention in the insect holding room, the height adjusting portions 120 and 220 are provided at both ends of the pillars 110 and 110, The upper and lower ends of the pillar portions 110 and 210 are coupled to the fixing portions 110 and 210 of the pillar portions 110 and 210. When the pillar portions 110 and 210 are rotated, 121 and 221 are formed in different directions so that the height adjusting portions 120 and 220 and the pillars 110 and 210 are spaced apart from each other and are brought into close contact with the floor and the ceiling.

When the fixing portions 122 and 212 of the height adjusting portions 120 and 220 are closely attached to the floor and the ceiling, screws and screws 122a and 212a of the fixing portions 122 and 212 are fixed to the floor and ceiling.

In order to install the pillars 110 and 210 of the first and second embodiments of the present invention in the insect holding room, the upper ends of the pillars 110 and 210 having the lid portions 111 and 211 at both ends, And the upper ends of the pillars 110 and 210, that is, the fixing portions 122 and 212 of the upper side height adjusting portion 220, are coupled to the ceiling And the fixing portions 121 and 221 of the lower height adjusting portions 120 and 220 are rotated to adjust the length of the fixing portions 122 and 212 of the lower height adjusting portions 120 and 220, To the floor.

The brackets 130 and 230 are installed in the coupling grooves 112 and 212 of the pillars 110 and 210 after the pillars 110 and 210 are installed by any one of the two methods as described above, In one embodiment, the holding container 150 is positioned after the shelf 140 is provided. In the second embodiment, the holding container 250 having the latching portion 251 is positioned in the bracket portion 230.

Therefore, the present invention can adjust the height of the layer according to the height of the cuckold container, thereby maximizing the cuckold per unit area, and it is possible to accommodate the breeding container without space wasted from the floor to the ceiling, It is easy to use.

The variable-type multi-stage insect breeding bed as described above is not limited to the configuration and the manner of operation of the embodiments described above. The embodiments may be configured so that all or some of the embodiments may be selectively combined so that various modifications may be made.

100, 200: insect breeding bed 110, 210:
111, 211: lid portion 111a, 211a: hole
112, 212: coupling grooves 112a, 134, 234: first vibration absorbing portion
120, 220: height adjusting portion 121, 221:
122, 222: fixing portions 122a, 222a: screw holes
130, 230: Bracket part 131: Insert groove
132, 232: coupling portion 133, 233: second vibration absorbing portion
140: shelf part 150, 250: breeding container

Claims (14)

For a cuckold bed,
A column portion having a lid portion through which a center passes and having a hole formed at an upper end and a lower end thereof and having a plurality of coupling grooves arranged in a row on both sides thereof;
A height regulating unit for respectively fastening to the grooves formed at the upper and lower ends of the column portion;
A bracket portion coupled to the coupling groove of the column portion to extend in the horizontal direction of the column portion;
A plurality of brackets fastened to the pillars, a plurality of brackets connected to the pillars, and a plurality of brackets connected to the brackets; And
And a breeding container having an insect breeding environment at an upper end of the shelf.
For a cuckold bed,
A column portion having a lid portion passing through the center and forming a hole at an upper end and a lower end, and having a plurality of coupling grooves arranged in a row or a row on both sides;
A height adjuster coupled to the grooves formed at the upper and lower ends of the column portion, respectively;
A bracket portion coupled to the coupling groove of the column portion and extending in the horizontal direction of the column portion; And
And a breeding container having an insect breeding environment in which a latching portion is formed so as to be caught by the bracket portion on both sides of which are arranged.
The method according to claim 1 or 2,
Wherein the height adjusting portion includes a fixing portion formed with a fastening portion to be fastened to the groove and a screw hole capable of fastening to a ceiling or a bottom of the multi-step bed for insect rearing.
The method of claim 3,
Wherein the fastening portion is in the form of a bar.
The method of claim 4,
Wherein the outer periphery of the fastening portion is in the form of a screw.
The method of claim 3,
Wherein the length of the coupling portion of the height adjusting portion is longer than or equal to the groove length of the pillar portion.
The method according to claim 1 or 2,
Wherein the height adjusting portion further comprises a nut for fixing the position of the column portion after being fastened to the column portion.
The method according to claim 1 or 2,
And the inner circumference of the hole of the lid portion is in the form of a screw.
The method according to claim 1,
Wherein the shelf is formed in a panel shape or a bar shape.
The method according to claim 1,
Wherein the bracket part forms an insertion groove for fastening the shelf part to an upper end thereof.
The method according to claim 1 or 2,
Further comprising a first vibration absorbing portion made of a cushion material on a lower surface of the coupling groove of the column portion or a coupling surface of the bracket portion engaged with the coupling groove.
The method of claim 10,
Further comprising a second vibration absorbing part made of a cushion material at a position abutting the upper surface shelf part of the insertion groove of the bracket part.
Continuing from claim 2,
And a second vibration absorbing part made of a cushion material at a position where the upper surface of the bracket part abuts against the breeding container.
The method of claim 2,
Wherein the catching container is provided with catching portions on both sides thereof so that the catching container can be caught by the bracket portion, and the catching portion has a cross-sectional shape of a base or a diagonal shape,

KR2020150002851U 2015-05-04 2015-05-04 Variable multiple stage bed for raising insect KR200483551Y1 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102078152B1 (en) * 2019-08-12 2020-02-17 심상진 A larva breeding device

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102010990B1 (en) 2017-09-18 2019-08-14 (주)헬퍼로보텍 The supporter for arrangement-convertible insect breeding boxes by own weight
KR20190048709A (en) 2017-10-31 2019-05-09 주식회사 씨티정보통신 INSECT BREEDING SYSTEM BASED ON IoT
KR200491810Y1 (en) 2019-12-12 2020-06-08 현승민 Insect raising device

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR960009839Y1 (en) * 1993-06-03 1996-11-13 원대연 Assembling shelf
JP2004000348A (en) * 2002-05-31 2004-01-08 Tamatoshi Kogyosho:Kk Rim support member for display shelf material and display member for display shelf
KR200380827Y1 (en) * 2005-01-14 2005-04-07 주식회사 동성사 Device for supporting a shelf
KR20120000770U (en) * 2010-07-20 2012-02-02 주식회사 렙타일리아 House for breeding insects

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR960009839Y1 (en) * 1993-06-03 1996-11-13 원대연 Assembling shelf
JP2004000348A (en) * 2002-05-31 2004-01-08 Tamatoshi Kogyosho:Kk Rim support member for display shelf material and display member for display shelf
KR200380827Y1 (en) * 2005-01-14 2005-04-07 주식회사 동성사 Device for supporting a shelf
KR20120000770U (en) * 2010-07-20 2012-02-02 주식회사 렙타일리아 House for breeding insects

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102078152B1 (en) * 2019-08-12 2020-02-17 심상진 A larva breeding device

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