WO2015072641A1 - Équipement de stockage modulaire - Google Patents

Équipement de stockage modulaire Download PDF

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Publication number
WO2015072641A1
WO2015072641A1 PCT/KR2014/005361 KR2014005361W WO2015072641A1 WO 2015072641 A1 WO2015072641 A1 WO 2015072641A1 KR 2014005361 W KR2014005361 W KR 2014005361W WO 2015072641 A1 WO2015072641 A1 WO 2015072641A1
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WO
WIPO (PCT)
Prior art keywords
outer cylinder
inner cylinder
cylinder
groove
projection
Prior art date
Application number
PCT/KR2014/005361
Other languages
English (en)
Korean (ko)
Inventor
김영훈
Original Assignee
김영훈
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from KR1020140052715A external-priority patent/KR101527685B1/ko
Application filed by 김영훈 filed Critical 김영훈
Priority to CN201480062502.5A priority Critical patent/CN105744868B/zh
Publication of WO2015072641A1 publication Critical patent/WO2015072641A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J47/00Kitchen containers, stands or the like, not provided for in other groups of this subclass; Cutting-boards, e.g. for bread
    • A47J47/16Stands, or holders for kitchen articles
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J2201/00Devices having a modular construction

Definitions

  • the present invention relates to a modular storage device, and more particularly, to a modular storage device of a new structure that can be assembled in a desired shape and size by connecting the modular unit containers stacked horizontally or vertically.
  • various kinds of kitchen utensils such as a knife, scissors, a fork, a spatula, and a ladle are used, and various kinds of kitchen utensils storage devices capable of storing the kitchen utensils are known.
  • knife holders that are placed on the sink and have some types or types of knives plugged in and taken out when needed.
  • a kitchen utensil storage device used on a kitchen sink it is not easy to compactly and efficiently store many kinds of kitchen utensils on a sink having a limited area.
  • the existing kitchen utensil storage device is provided in a predetermined form and standard, it is difficult to variably accommodate the kitchen utensils of various types and specifications according to the user's unique taste. This problem applies equally to storage of household items or stationery other than kitchen utensils.
  • the present invention has been proposed in view of the problems of the conventional storage device as described above, the present invention is to provide a modular storage device of a new structure that can be assembled in a desired shape and size by stacking the modular unit container horizontally or vertically. It is. In addition, the present invention is to provide a modular storage device of a new structure that can accommodate kitchen utensils, daily necessities, stationery, etc. efficiently and compactly to suit the user's taste in a limited space such as a sink, a dressing table, a desk.
  • the outer cylinder 10 is formed in the form of a hollow cube and includes four adjacent peripheral walls 12 and opposing opening surfaces 13 surrounded by the peripheral walls 12; And a plurality of inner walls 22 formed in a hollow cube shape and opposing at least one pair of opening surfaces 23 and the remaining surfaces, and are fitted through the opening surfaces 13 of the outer cylinder 10.
  • the peripheral wall 12 of the outer cylinder 10 has a connecting portion 18 for connection with the outer cylinder 10 disposed adjacently It is formed, the inner wall 22 of the inner cylinder 20 is inserted through the insertion hole (25, 26, 27) of various shapes and specifications for the goods to be accommodated is inserted through, partially inserted into the outer cylinder (10)
  • the plurality of unit containers (1) are laminated or assembled horizontally or vertically
  • the modular storage apparatus as claimed is provided for.
  • the outer cylinder 10 and the inner cylinder 20 is composed of a cube, the groove 29 or the projection is formed in the opposing portion close to the edge of each surface of the inner cylinder 20
  • the upper end portion of the inner cylinder 20 inserted into the upper opening surface 13 in the state that the opening surface 13 of the outer cylinder 10 is arranged to be the upper and lower surfaces, the outer cylinder ( A stopper protrusion 14 is formed so that the lower end of the inner cylinder 20 abuts and stops in a fully engaged state at approximately the same height as the upper end of 10), and the stopper protrusion 14 of the inner circumferential surface of the outer cylinder 10 is formed.
  • the inner cylinder 20 inserted into the upper opening 13 is elastically engaged with and released from the groove 29 or the projection of the inner cylinder 20 in an upper partial engagement state where the inner cylinder 20 is inserted to partially protrude.
  • Modular storage characterized in that the first locking projection 15 or the locking groove is formed An apparatus is provided.
  • the groove 29 or the projection of the inner cylinder 20 and the inner circumferential surface portion of the outer cylinder 10 corresponding to the projection elastically engaged with the groove 29 or the projection and released The second locking projection 16 is formed, and the inner cylinder 20 is partially inserted into the lower opening surface 13 in a state where the opening surface 13 of the outer cylinder 10 is disposed to be upper and lower surfaces thereof, and the upper end thereof.
  • the third engaging projection 17 or engaging groove is formed to be elastically engaged with and released from the groove 29 or the projection of the inner cylinder 20 in the lower partial engagement state where the stopper projection 14 stops in contact with the stopper projection 14. Modular enclosures are provided.
  • the connecting portion 18 of the outer cylinder 10 is a through-hole penetrated through the central portion of the circumferential wall 12, the connecting portion 18 of the through-hole-type engaging portion 8 at both ends Modular housing is provided, characterized in that the formed connector 7 is inserted and coupled.
  • the insertion hole (25, 26, 27) is provided with a modular receiving device characterized in that it comprises at least one of the long hole 25, circular hole (26, 27), polygonal hole. .
  • a kitchen appliance or the like is formed in a cube-shaped outer cylinder 10 having an opening face 13 facing the storage mechanism and a pair of opening faces opposed to and at least opposed to the inside of the outer cylinder 10.
  • the unit container 1 is constituted by an inner cylinder 20 having a 23, and a circumferential wall 12 of the outer cylinder 10 forms a connecting portion 18 for connection with an adjacent outer cylinder 10.
  • the remaining inner wall 22 forms insertion holes 25, 26, and 27 of various shapes and specifications into which the articles to be stored are fitted, thereby considering the specifications of the articles to be accommodated.
  • the outer cylinder 10 and the inner cylinder 20 is constituted by a cube, and a groove 29 or a projection is formed at an opposite portion proximate to the corner of each surface of the inner cylinder 20, and the outer cylinder
  • the upper end portion of the inner cylinder 20 inserted into the upper opening surface 13 in the state where the opening surface of the outer cylinder 10 is arranged to be the upper and lower surfaces is the same height as the upper end of the outer cylinder 10.
  • the stopper protrusion 14 is formed so that the lower end of the inner cylinder 20 abuts and stops in a fully engaged state, and the upper opening surface 13 is located at a position higher than the stopper protrusion 14 of the inner circumferential surface of the outer cylinder 10.
  • the first locking projection 15 or the locking groove which is elastically engaged with and released from the groove 29 or the projection of the inner cylinder 20 in the upper partial coupling state in which the inner cylinder 20 inserted into the protrusion is partially protruded.
  • the modular housing mechanism is provided in the fully coupled state of the outer cylinder 10 and the inner cylinder 20.
  • the upper housing portion is formed, and in the upper partial coupling state, the outer cylinder 10 can be easily stacked in multiple stages through the partially inserted inner cylinder 20.
  • the outer cylinder in the fully engaged state in which the upper end of the inner cylinder 20 inserted into the upper opening surface 13 of the outer cylinder 10 becomes the same height as the upper end of the outer cylinder 10, the outer cylinder ( The second projection 16 of the 10 and the groove 29 of the inner cylinder 20 is elastically engaged or released, and the inner cylinder 20 is partially to the lower opening surface 13 of the outer cylinder 10 The third locking protrusion 17 of the outer cylinder 10 and the groove 29 of the inner cylinder 20 to be elastically engaged or released in the lower partial engagement state where the upper end portion is in contact with the stopper protrusion 14.
  • the inner cylinder 20 does not easily come out of the outer cylinder 10, so that a stable and robust assembly structure can be maintained.
  • the connecting portion 18 of the outer cylinder body 10 is formed by a through hole penetrated through the central portion of the circumferential wall 12, and the connector 7 having the elastic locking piece 8 formed thereon is inserted into and coupled to the end portion.
  • 1 is an external view of a unit container of an embodiment of the present invention
  • FIG. 2 is an exploded perspective view of a partial cut of the unit container
  • Figure 3 is a first coupling state of the outer cylinder and the inner cylinder
  • Figure 4 is a second coupling state of the outer cylinder and the inner cylinder
  • Figure 6 is a rough surface showing a two-stage lamination process of the present invention
  • Figure 8 is an exemplary view of an assembled state of the storage device of the present invention
  • FIG. 1 is an external view of a unit container according to an embodiment of the present invention
  • FIG. 2 is a partially cutaway exploded perspective view of the unit container
  • FIGS. 3 to 5 are views showing a state of coupling between an outer cylinder and an inner cylinder, respectively
  • FIGS. 6 and FIG. 7 is a two-stage stacking and a three-stage stacking state diagram, respectively
  • FIGS. 8 and 9 are exemplary assembling and using state diagrams.
  • the outer cylinder 10 in the form of a hollow rectangular box, that is, a hollow cube, and the inner cylinder in the form of a hollow cube inserted to fit inside the outer cylinder 10 A unit container 1 composed of 20 is provided.
  • these outer cylinders 10 and inner cylinders 20 are composed of a cube.
  • the outer cylinder body 10 includes four mutually adjacent peripheral walls 12 and a pair of opposing opening surfaces 13 surrounded by the peripheral walls 12. This opening surface 13 preferably takes the form of all the perforations except for the thickness of the circumferential wall 12.
  • the circumferential wall 12 of the outer cylinder body 10 is formed with a connection portion 18 for assembling the outer cylinder body 12 is disposed adjacent.
  • this connection portion 18 consists of a through-hole formed in the center of the circumferential wall 12.
  • the connector 7 fitted to the connecting portion 18 is provided with both ends of the elastic engaging piece 8 elastically coupled to the connecting portion 18, the outer cylinder body adjacently arranged to the connector 7 ( By elastically coupling to the corresponding connection portion 18 of 10), a plurality of outer cylinders 10 can be laminated and assembled by extending the desired number so that the circumferential wall 12 abuts each other with a simple structure.
  • the connecting portion for connecting the outer cylinder 10 is illustrated a through-hole formed in the center portion of the circumferential wall, various other forms and structures of the connecting means may be used even if the through-hole form.
  • the inner cylinder 20 inserted into the outer cylinder 10 includes a hollow cube having a plurality of inner walls 22 including at least two opening surfaces facing each other, the opening surface 23 is formed, the remaining peripheral surface Take form.
  • the inner cylinder 20 is inserted into the outer cylinder 10 through the opening surface 13 of the outer cylinder 10 and accommodated to fit snugly.
  • the groove 29 is formed in the opposing part near the edge of each surface of the inner cylinder 20.
  • the groove 29 is formed at the center of four corners or two opposite corners of the inner cylinder 20.
  • the opposing opening surface 23 of the inner cylinder 20 preferably has a structure in which most of the area is opened except for the wall thickness of the inner wall 22 of the inner cylinder 20.
  • the insertion holes 25, 26 and 27 of various shapes are formed in the plurality of inner walls 22 forming the remaining peripheral surfaces except for the opening surface 23 of the inner cylinder 20.
  • the insertion holes 25, 26, 27 are formed through the shape corresponding to the contour of the type of the article to be stored.
  • the insertion hole 25 is configured in the form of a long hole so that the kitchen knife 55 or the transition 56 having a long cross section can be inserted. do.
  • the insertion hole 26 is made of a small circular hole to insert a scissors or a peeling knife or tongs, such as potatoes, etc.
  • the insertion hole 27 is made of a large circular hole, relatively bulky Allow kitchen utensils to be inserted.
  • the shape or size of the insertion hole (25, 26, 27) may be appropriately determined in consideration of the size or size of the kitchen utensils to be stored.
  • the drawer 30 shown in FIG. 8 is slidably coupled to the opening surface 23 opened forward. Can be.
  • the stopper protrusion 14 is formed at a position corresponding to the lower end of the inner cylinder 20.
  • the stopper protrusion 14 has a size that the inner cylinder 20 cannot ride over.
  • such a stopper protrusion 14 is formed at the corner of the inner circumferential surface of the outer cylinder 10.
  • it may alternatively be formed in the planar portion of the inner circumferential surface.
  • the lower end of the inner cylinder 20 is regulated by the stopper protrusion 14 of the outer cylinder 10 and is positioned in FIG. 1. As shown, the upper surface of the outer cylinder 10 and the upper surface of the inner cylinder 20 are assembled in a fully engaged state with almost the same height.
  • the first locking protrusion 15 is formed at a position higher than the stopper protrusion 14 on one side of the stopper protrusion 14 on the inner circumferential surface of the outer cylinder 10.
  • the first locking protrusion 15 is formed at the center of the inner wall of the outer cylinder 10.
  • the first locking protrusion 15 has an inner cylinder in an upper partial coupling state in which the inner cylinder 10 is partially inserted into the upper opening surface 13 of the outer cylinder 10. It is formed at a position corresponding to the groove 29 of (10).
  • the size of the first catching protrusion 15 and the groove 29 is positioned when the inner cylinder 20 is elastically coupled with the groove over the catching protrusion when the inner cylinder 20 is pressed by hand, and the pressing block further presses the inner cylinder 20.
  • the groups are formed in such a size that they are released from the grooves. Since the inner cylinder 20 partially protrudes to the upper portion of the outer cylinder 10 in a state where the first locking protrusion 15 and the groove 29 are engaged as shown in FIG. 4, the outer cylinder is formed on the protruding portion of the inner cylinder 20. By further coupling the sieve 10, the outer sieve 10 can be laminated in the up and down direction via the inner sieve 20.
  • the inner peripheral surface of the outer cylinder 10 has a position higher than that of the stopper protrusion 14, and a lower portion of the first locking protrusion 15 has the same shape as that of the first locking protrusion 15.
  • a locking projection 16 is formed.
  • the second locking protrusion 16 is in a fully engaged state in which the upper end of the inner cylinder 20 inserted from the upper part of the outer cylinder 10 is flush with the upper end of the outer cylinder 10.
  • the inner cylinder 20 is firmly positioned by elastically engaging the groove 29 of the inner cylinder 20. Accordingly, even when the outer cylinder 10 is turned upside down, the inner cylinder 20 is engaged with the second locking projection 16 so as not to fall out.
  • the inner cylinder 20 may be separated from the outer cylinder 10 by riding over the second locking protrusion 16.
  • a third locking protrusion 17 is formed on the inner circumferential surface of the outer cylinder 10 at a lower position than the stopper protrusion 14 and below the second locking protrusion 16.
  • This third locking projection 17 is formed.
  • the third locking protrusion 17 partially inserts the inner cylinder 20 from the lower portion of the outer cylinder 10 so that the upper end of the inner cylinder 20 fits into the stopper protrusion 14.
  • the third locking projection 17 of the outer cylinder 10 is elastically engaged with or released from the groove 29 of the inner cylinder 20.
  • the inner cylinder 20 when the inner cylinder 20 is inserted through the lower opening surface 13 of the outer cylinder 10, the inner cylinder 20 is stopped by the stopper protrusion 14 and is no longer pushed upward. In addition, it is elastically engaged with the third locking projection 17 to maintain a relatively solid and stable coupling state does not fall down.
  • the outer cylinder 10 By inserting another outer cylinder 10 into the inner cylinder 20 exposed to the lower in the state of FIG. 5, the outer cylinder 10 can be laminated and assembled in multiple stages, and the inner cylinder 20 is a stopper protrusion ( Since it is not caught by 14), lamination
  • Figure 6 shows a two-stage lamination process of the receiving device of the present invention, first assembled through the upper opening 13 of the upper outer cylinder 10 to push the inner cylinder 20 so that the upper end is completely inserted into a fully coupled state. Then, insert another inner cylinder 10 through the lower opening 13 of the upper outer cylinder 10 to assemble in the lower partial coupling state in which the third locking projection 17 and the groove 29 is elastically coupled, Subsequently, another outer cylinder 10 is pushed into the inner cylinder 20 exposed to the bottom to insert the outer cylinder 10 in two stages.
  • the inner cylinder 20 coupled to the uppermost outer cylinder 10 has an upper surface of which an insertion hole of an appropriate shape corresponding to the shape of an article to be inserted, for example, a kitchen container, is inserted into the upper surface of the inner cylinder 20.
  • the insertion surface 23 of the inner cylinder 20 inserted into the lower portion of the inner tube 20 is assembled to be disposed on the upper and lower surfaces so that the kitchen utensils to be stored therein are passed through the multi-stage unit container without interference.
  • FIGS. 8 and 9 are exemplary views illustrating an assembled state and a used state in the case of storing kitchen utensils with the storage device according to the present invention, and are partially inserted in the direction of the adjacent opening surface 13 of the outer cylinder 10.
  • Multi-stage stacking via the inner cylinder 20, and the connector 8 is expanded to the connecting portion 18 in the direction of the adjacent peripheral wall 12 of the outer cylinder 10, thereby storing in the desired shape and standard Configure the instrument.
  • a fork 51, tongs 52, potato cutters 53, scissors 57, a transitional 56, and a relatively large knife 55 and 58 are inserted. Accordingly, kitchen appliances can be stored efficiently and compactly according to the user's taste in a limited space such as a sink.
  • the present invention can be used to accommodate various kinds of articles such as household items or stationery in addition to kitchen utensils.
  • the present invention is to assemble in the desired shape by connecting the unit container (1) consisting of the same standard cube up and down, left and right, in addition to the assembly consisting of the unit container (1), if necessary, the unit container ( Of course, by adding a container of the form or standard, it is possible to configure more various storage containers.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Stackable Containers (AREA)

Abstract

La présente invention concerne un équipement de stockage modulaire, qui peut être assemblé dans une forme et une dimension souhaitées en empilant et reliant des récipients unitaires modulaires horizontalement ou verticalement L'équipement de stockage modulaire de la présente invention est composé de récipients unitaires, chaque récipient unitaire comprenant : un corps cylindrique extérieur (10) qui est sous la forme d'un cube creux, le corps cylindrique extérieur (10) comprenant quatre parois périphériques (12) adjacentes l'une à l'autre, et une paire de surfaces d'ouverture opposées (13) entourées par les parois périphériques (12) ; et un corps cylindrique intérieur (20) qui est sous la forme d'un cube creux et est reçu en étant inséré à travers les surfaces d'ouverture (13) du corps cylindrique extérieur (10), le corps cylindrique intérieur (20) comprenant au moins une paire de surfaces d'ouverture opposées (23) et une pluralité de parois intérieures (22) formant les surfaces restantes. L'équipement de stockage modulaire est configuré pour être assemblé en empilant une pluralité de récipients unitaires (1) horizontalement ou verticalement au moyen du corps cylindrique intérieur (20), qui est partiellement inséré dans le corps cylindrique extérieur (10), et d'une unité de liaison (18).
PCT/KR2014/005361 2013-11-14 2014-06-18 Équipement de stockage modulaire WO2015072641A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201480062502.5A CN105744868B (zh) 2013-11-14 2014-06-18 模组化收纳器具

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
KR10-2013-0138278 2013-11-14
KR20130138278 2013-11-14
KR10-2014-0052715 2014-04-30
KR1020140052715A KR101527685B1 (ko) 2013-11-14 2014-04-30 모듈화 수납기구

Publications (1)

Publication Number Publication Date
WO2015072641A1 true WO2015072641A1 (fr) 2015-05-21

Family

ID=53057559

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2014/005361 WO2015072641A1 (fr) 2013-11-14 2014-06-18 Équipement de stockage modulaire

Country Status (1)

Country Link
WO (1) WO2015072641A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11064841B2 (en) * 2019-10-07 2021-07-20 Caraway Home, Inc. Cookware storage system
EP3884824A4 (fr) * 2020-01-29 2021-09-29 Kai R & D Center Co., Ltd. Ensemble porte-couteau

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001008839A (ja) * 1999-06-28 2001-01-16 Matsushita Electric Ind Co Ltd 包丁収納装置
KR200222087Y1 (ko) * 2000-11-20 2001-05-02 주식회사동성사 조립식 수납함
JP2001275761A (ja) * 2000-03-29 2001-10-09 Heisei Aluminum Kk ワインラック
JP3120198U (ja) * 2006-01-12 2006-03-23 株式会社ユタカ産業 商品陳列装置
JP3133301U (ja) * 2007-04-25 2007-07-05 フローラルリンク有限会社 化粧箱
KR20090011137U (ko) * 2009-10-11 2009-10-29 강희인 다단결합식 씨디.디브이디 보관함

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001008839A (ja) * 1999-06-28 2001-01-16 Matsushita Electric Ind Co Ltd 包丁収納装置
JP2001275761A (ja) * 2000-03-29 2001-10-09 Heisei Aluminum Kk ワインラック
KR200222087Y1 (ko) * 2000-11-20 2001-05-02 주식회사동성사 조립식 수납함
JP3120198U (ja) * 2006-01-12 2006-03-23 株式会社ユタカ産業 商品陳列装置
JP3133301U (ja) * 2007-04-25 2007-07-05 フローラルリンク有限会社 化粧箱
KR20090011137U (ko) * 2009-10-11 2009-10-29 강희인 다단결합식 씨디.디브이디 보관함

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11064841B2 (en) * 2019-10-07 2021-07-20 Caraway Home, Inc. Cookware storage system
EP3884824A4 (fr) * 2020-01-29 2021-09-29 Kai R & D Center Co., Ltd. Ensemble porte-couteau

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