WO2013057846A1 - Structure d'évacuation d'air de récipient et distributeur d'eau l'utilisant - Google Patents

Structure d'évacuation d'air de récipient et distributeur d'eau l'utilisant Download PDF

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Publication number
WO2013057846A1
WO2013057846A1 PCT/JP2011/076232 JP2011076232W WO2013057846A1 WO 2013057846 A1 WO2013057846 A1 WO 2013057846A1 JP 2011076232 W JP2011076232 W JP 2011076232W WO 2013057846 A1 WO2013057846 A1 WO 2013057846A1
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WO
WIPO (PCT)
Prior art keywords
container
water tank
cold water
air
drinking water
Prior art date
Application number
PCT/JP2011/076232
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English (en)
Japanese (ja)
Inventor
世 権 呉
一哉 橋本
Original Assignee
橋本精工 株式会社
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
Application filed by 橋本精工 株式会社 filed Critical 橋本精工 株式会社
Publication of WO2013057846A1 publication Critical patent/WO2013057846A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D3/00Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes
    • B67D3/0009Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes provided with cooling arrangements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D3/00Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes
    • B67D3/0022Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes provided with heating arrangements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D3/00Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes
    • B67D3/0029Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes provided with holders for bottles or similar containers
    • B67D3/0032Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes provided with holders for bottles or similar containers the bottle or container being held upside down and provided with a closure, e.g. a cap, adapted to cooperate with a feed tube
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D3/00Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes
    • B67D3/0038Apparatus or devices for controlling flow of liquids under gravity from storage containers for dispensing purposes the liquid being stored in an intermediate container prior to dispensing

Definitions

  • the present invention relates to an air vent structure for a container and a water server using the same, and more specifically, from a first container containing a beverage liquid, the second container in which the beverage liquid is installed below the first container. And an air vent structure for a container configured to be sent to a third container installed further below the second container, and a water server using the same.
  • Patent Document 1 an exhaust valve that is manually operated as an exhaust means is provided in the upper part of the cold water tank, and when the air is discharged from the exhaust valve to the outside of the cold water tank, the discharged air is filled.
  • a configuration is disclosed in which the beverage liquid flows down to the cold water tank.
  • Patent Document 1 it is troublesome to manually operate the exhaust valve, and the operation may be forgotten. Further, when the exhaust valve of the cold water tank stops functioning due to a failure or the like, there is a risk that the liquid for beverage will continue to leak from the exhaust valve. Furthermore, since the exhaust valve has a movable part, there is a problem that regular maintenance is required so that the movable part functions reliably.
  • a cold water tank 5a to which drinking water W is supplied from a water bottle 4a via a needle 8a or the like is provided, and the cold water tank 5a is supplied from the inside of the cold water tank 5a.
  • the discharge pipe 51a enters the cold water tank 5a.
  • a main pipe part 51c having an opening 51b and a guide pipe part 53a that branches from the main pipe part 51c in the cold water tank 5 and faces the upper part in the tank 5a.
  • Patent Document 2 when air A is interposed in the upper part of the cold water tank 5a, if the internal drinking water W is discharged to the outside through the discharge pipe 51a, the inside of the main pipe portion 51c of the discharge pipe 51a is drinking water. A phenomenon occurs in which the air A intervening in the upper part of the cold water tank 5a is drawn to the main pipe part 51c side through the guide pipe part 53a due to the movement of the drinking water W in the main pipe part 51c. Thereby, the air A interposed in the upper part of the cold water tank 5a can be discharged
  • Patent Document 2 when the liquid level in the cold water tank 5a is low, the drinking water W becomes difficult to move in the main pipe portion 51c of the discharge pipe 51a, and the flow of the drinking water W in the main pipe portion 51c The phenomenon that the air A intervening in the upper part of the cold water tank 5a is drawn to the main pipe part 51c side through the guide pipe part 53a is less likely to occur. As a result, the air A accumulated in the cold water tank 5a is hardly exhausted to the outside.
  • the present invention was made in view of such circumstances, and an object of the present invention is to provide an air vent structure for a container and a water server using the same that can significantly reduce the time until the inside of the container becomes airless. To do.
  • the air bleeding structure of the container according to the first aspect of the present invention includes a second container in which the beverage liquid is placed below the first container, and a second container containing the beverage liquid.
  • An air vent structure for a container configured to sequentially supply a third container installed further below the second container, wherein the vicinity of the top of the second container and the inside of the third container communicate with each other.
  • the communication pipe communicates between the vicinity of the top of the second container and the third container.
  • a discharge pipe for discharging the liquid or beverage liquid discharged from the second container into the third container from the vicinity of the top of the third container.
  • a convex portion is formed near the top portion in the second container and the upper end of the communication pipe is opened in the convex portion.
  • the convex portion is formed near the top portion in the second container, and the upper end of the communication pipe is opened in the convex portion, so that the air in the second container is collected in the convex portion. And easily discharged from the communication pipe.
  • the liquid for drinking from the first container is supplied into the convex portion.
  • a notch is provided at a portion of the upper end of the communication pipe from which the beverage liquid supply side is removed.
  • the notch portion is provided in the portion of the upper end of the communication pipe from which the beverage liquid supply side is removed, the supply of the beverage liquid from the first container to the convex portion is not hindered. It becomes easier to discharge air from the second container into the third container through the communication pipe.
  • Patent Document 2 when the liquid level in the cold water tank 5a becomes high to some extent, the drinking water W moves in the main pipe portion 51c of the discharge pipe 51a, and the flow of the drinking water W in the main pipe portion 51c Although the phenomenon that the air A intervening in the upper part of the cold water tank 5a is drawn to the main pipe part 51c side through the guide pipe part 53a occurs, the phenomenon that the drinking water W is drawn from the guide pipe part 53a to the main pipe part 51c side eventually occurs. It becomes.
  • the relatively cold drinking water W near the bottom of the cold water tank 5a is heated while the relatively warm air A and the drinking water W thereabove are sucked by the guide pipe portion 53a in the cold water tank 5a.
  • the cooling efficiency is lowered, which is against the demand for energy saving.
  • a drain pipe for discharging the beverage liquid in the second container from the vicinity of the bottom of the second container.
  • the drainage pipe for discharging the beverage liquid in the second container from the vicinity of the bottom of the second container is provided at the lower end, particularly when the second container is a cold water tank, Since the relatively cold drinking water in the vicinity can be discharged out of the cold water tank without being mixed with the relatively warm drinking water in the vicinity of the top, the cooling efficiency can be improved.
  • the water server which concerns on the 2nd form of this invention is equipped with the air bleeding structure of the container which concerns on a said 1st aspect
  • a said 1st container is an elastic bag body
  • a said 2nd container is a liquid for drinks
  • a third container are a hot water tank for warming the drinking water as a liquid for drinking.
  • the container has an air vent structure for the container according to the first aspect
  • the first container is an elastic bag body
  • the second container is a cold water that cools drinking water as a beverage liquid. Since the tank and the third container are warm water tanks for warming drinking water as a beverage liquid, the operational effect as in the first aspect is achieved.
  • the communication pipe that communicates the vicinity of the top in the second container and the inside of the third container, and the second container to the second container
  • the container has the air vent structure for the container according to the first aspect, the first container is an elastic bag, and the second container is for beverages. Since the cold water tank which cools the drinking water as the liquid and the third container are the hot water tank which warms the drinking water as the liquid for drinking, the effects as in the first aspect are achieved.
  • FIG. 1 It is a side view of the water server which concerns on Embodiment 1 of this invention. It is a conceptual diagram of the air bleeding structure of the cold water tank and hot water tank which concerns on this Embodiment 1.
  • FIG. It is a perspective view around the convex part of the cold water tank which concerns on this Embodiment 1.
  • FIG. 2 It is a conceptual diagram of the air bleeding structure of the cold water tank and hot water tank which concerns on this Embodiment 2.
  • FIG. It is a perspective view around the convex part of the cold water tank which concerns on this Embodiment 2.
  • FIG. It is a conceptual diagram of the air vent structure of the cold water tank in a prior art example.
  • FIG. 1 is a side view schematically showing the overall configuration of a water server 1 according to Embodiment 1 of the present invention.
  • the left side shows the front and the right side shows the back.
  • synthetic resin, rubber, metal, etc. are mainly used in place.
  • the water server 1 includes a bottle holder 2 and a main body 3.
  • the bottle holder 2 has a main body 3 for setting a bag body (corresponding to a first container) 4 containing drinking water as a liquid for drinking inside or taking out the set bag body 4 to the outside. It is attached to be openable and closable (reference numeral 2 in FIG. 1 indicates a closed state, and reference numeral 2 ′ indicates an open state).
  • a cold water tank (corresponding to the second container) 5 for cooling the drinking water and a hot water tank (corresponding to the third container) 6 for warming the drinking water are arranged inside the main body 3 vertically. ing.
  • the bag body 4 is made of a material having a high elasticity such as a nylon film having a multi-layer structure, for example, and can be reduced and deformed as the drinking water filled therein decreases. And in the initial state filled with drinking water, it is roundish as a whole and has a slightly flat hexahedral shape. Here, the bag body 4 is supported by the support portion 7 in a substantially standing posture.
  • the shape of the bag body 4 in the initial state may be another shape such as a square or a cylindrical shape.
  • the support portion 7 is provided with a relatively large radius from the back to the front and a relatively small radius at the front so as not to disturb the shrinking deformation of the bag body 4 as much as possible.
  • the bag 4 can be set so as to be reduced and deformed without excessive twisting when the drinking water filled in the bag 4 is taken out between the two rounds. Although not shown in the figure, appropriate rounds are provided on both the left and right sides of the support portion 7 to achieve the same effect.
  • the bag body 4 supported by the support portion 7 can be pierced in the vicinity of the bottom surface on the front side thereof by piercing the needle 8 horizontally or slightly downward.
  • the needle 8 is attached to the support portion 7 on the front side and pierces the bag body 4.
  • the drinking water taken out from the bag body 4 through the flexible hose 9 made of, for example, silicon rubber connected to the base portion of the needle 8 and the line 10 further connected to the hose 9 is supplied to the cold water tank 5.
  • a part of the drinking water supplied to the cold water tank 5 is also supplied to the hot water tank 6 via the communication pipe 102.
  • the cold water tank 5 is provided with a cooling means 50 such as a refrigerator for cooling the drinking water, and the drinking water supplied from the bag body 4 is cooled by the cooling means 50, whereby the cold water tank 5.
  • the temperature is maintained at about 4 to 10 ° C.
  • the warm water tank 6 is provided with a heating means 60 such as a band heater or a sheathed heater for heating the drinking water, and the drinking water supplied from the bag body 4 is heated by the heating means 60.
  • the temperature is maintained at about 80 to 90 ° C. in the hot water tank 6.
  • the drinking water cooled in the cold water tank 5 and the drinking water warmed in the hot water tank 6 are poured into a cup or the like (not shown) by a predetermined amount by opening and closing the respective water supply ports 11 and 12. It has become.
  • FIG. 2 is a conceptual diagram of the air vent structure of the cold water tank 5 and the hot water tank 6 according to the first embodiment
  • FIG. 3 is a perspective view around the convex portion 101.
  • a convex portion 101 is provided near the top of the cold water tank 5, and a communication pipe 102 that communicates the inside of the convex portion 101 and the hot water tank 6 is provided.
  • the substantially cylindrical convex portion 101 is slightly protruded from the top of the cold water tank 5, and the upper end of the communication pipe 102 is inserted into the convex portion 101 and opened. It is a so-called double tubular structure.
  • the drinking water W supplied from the line 10 is prevented from flowing out directly from the communicating pipe 102, and, thereby, the cold water tank 5
  • the air A inside can easily flow out into the hot water tank 6.
  • a drain pipe 51 for discharging the drinking water W in the cold water tank 5 from the vicinity of the bottom of the cold water tank 5 is provided, and the drinking water W in the hot water tank 6 is discharged from the vicinity of the top of the hot water tank.
  • a discharge pipe 63 is provided.
  • step S1 the operation procedure (steps S1 to S3) of the air vent structure of the cold water tank 5 and the hot water tank 6 according to the first embodiment will be described.
  • step S1 the bottle holder 2 of the water server 1 is opened, and the bag body 4 is supported in a substantially standing posture on the support portion 7 in a state like the bottle holder 2 ′. Assume that the bag body 4 is set at a predetermined position.
  • step S1 supply of the drinking water W from the bag body 4 into the cold water tank 5 is started.
  • the needle 8 is set on the support portion 7. The user manually operates to push the needle 8 into the bag body 4. Then, the tip of the needle 8 breaks through the front lower side of the bag body 4 and reaches the inside thereof.
  • the drinking water W discharged to the hose 9 is further supplied to the cold water tank 5 through the line 10.
  • the bottle holder 2 ′ of the water server 1 is closed so that the bottle holder 2 is in the state.
  • the bottle holder 2 does not necessarily need to be openable and closable, and may be simply placed on the main body 3, for example.
  • step S2 when only the water supply port 12 of the hot water tank 6 is opened, the air A in the cold water tank 5 is collected in the convex portion 101, and then flows out into the hot water tank 6 through the communication pipe 102. The The air A flowing out into the hot water tank 6 is discharged to the outside from the water supply port 12 through the discharge pipe 63. For this reason, the drinking water W comes to be supplied from the line 10 into the cold water tank 5.
  • the drinking water W flows out from the communication pipe 102 to the hot water tank 6 this time.
  • the air A comes out from the water supply port 12, so that the water supply port 12 remains open until then.
  • the used amount from the respective tanks 5 and 6 after the hot water tank 6 is filled with the drinking water W is supplied to the respective tanks 5 and 6 individually.
  • the initial air in the cold water tank 5 is discharged to the hot water tank 6 through the communication pipe 102 by the supplied drinking water W.
  • the inside of the cold water tank 5 can be quickly brought into an airless state. After that, the water inlet 12 is closed.
  • step S3 the drinking water W cooled in the cold water tank 5 and the drinking water W warmed in the hot water tank 6 are placed in a cup or the like (not shown) by opening and closing the water supply ports 11 and 12, respectively. Only a fixed amount is poured.
  • the drinking water W when the drinking water W is supplied from the bag body 4 to the cold water tank 5 through the communication pipe 102 that connects the vicinity of the top of the cold water tank 5 and the hot water tank 6.
  • the air pipe A or the drinking water W discharged from the cold water tank 5 into the hot water tank 6 through the communication pipe 102 is provided from the vicinity of the top of the hot water tank 6, the bag body 4
  • the air A in the cold water tank 5 is compressed, and the compressed air A is discharged into the hot water tank 6 through the communication pipe 102.
  • the air A discharged into the air 6 is discharged from the hot water tank 6 to the outside through the discharge pipe 63.
  • the drain pipe 51 for discharging the drinking water W in the cold water tank 5 from the vicinity of the bottom of the cold water tank 5 is provided in the first downward direction, the comparison in the vicinity of the bottom of the cold water tank 5 is performed. Since the cold drinking water W can be discharged out of the cold water tank 5 without being mixed with the relatively warm drinking water W near the top, the cooling efficiency can be improved. (Embodiment 2)
  • FIG. 4 is a conceptual diagram of the air vent structure of the cold water tank 5 and the hot water tank 6 according to the second embodiment
  • FIG. 5 is a perspective view around the convex portion 101.
  • a notch 103 is formed by notching a part of the upper end of the communication pipe 102 in a U-shape at a part different from the part where the line 10 is connected in the convex part 101 (for example, the front side in FIG. 5).
  • the air A in the cold water tank 5 is easy to flow out into the hot water tank 6.
  • a drain pipe 51 is provided for discharging the drinking water W in the cold water tank 5 from the vicinity of the bottom of the cold water tank 5 downward, and the drinking water W in the hot water tank 6 is discharged from the vicinity of the top of the hot water tank.
  • a discharge pipe 63 is provided.
  • step S11 the operation procedure (steps S11 to S13) of the air vent structure of the cold water tank 5 and the hot water tank 6 according to the second embodiment will be described.
  • step S11 the bottle holder 2 of the water server 1 is opened, and the bag body 4 is supported in a substantially standing posture on the support portion 7 in a state like the bottle holder 2 ′. Assume that the bag body 4 is set at a predetermined position.
  • step S11 the supply of drinking water W from the bag 4 to the cold water tank 5 is started.
  • the needle 8 is set on the support portion 7. The user manually operates to push the needle 8 into the bag body 4. Then, the tip of the needle 8 breaks through the front lower side of the bag body 4 and reaches the inside thereof.
  • the drinking water W discharged to the hose 9 is further supplied to the convex portion 101 of the cold water tank 5 through the line 10.
  • the bottle holder 2 ′ of the water server 1 is closed so that the bottle holder 2 is in the state.
  • the bottle holder 2 does not necessarily need to be openable and closable, and may be simply placed on the main body 3, for example.
  • step S12 when only the water supply port 12 of the hot water tank 6 is opened, the air A in the cold water tank 5 is collected in the convex portion 101 and then flows out into the hot water tank 6 through the communication pipe 102. The The air A flowing out into the hot water tank 6 is discharged to the outside from the water supply port 12 through the discharge pipe 63. For this reason, the drinking water W comes to be supplied into the cold water tank 5 from the gap between the convex portion 101 and the communication pipe 102.
  • the drinking water W flows out from the communication pipe 102 to the hot water tank 6 this time.
  • the air A comes out from the water supply port 12, so that the water supply port 12 remains open until then.
  • the used amount from the respective tanks 5 and 6 after the hot water tank 6 is filled with the drinking water W is supplied to the respective tanks 5 and 6 individually.
  • the initial air in the cold water tank 5 is discharged to the hot water tank 6 through the communication pipe 102 by the supplied drinking water W.
  • the inside of the cold water tank 5 can be quickly brought into an airless state. After that, the water inlet 12 is closed.
  • step S13 the drinking water W cooled in the cold water tank 5 and the drinking water W warmed in the hot water tank 6 are placed in a cup or the like (not shown) by opening and closing the water supply ports 11 and 12, respectively. Only a fixed amount is poured.
  • the cold water tank 5 is further added to the effects of the first embodiment. There is an advantage that the nozzle arrangement near the top of the nozzle becomes easy.
  • the drinking water W is exemplified as the beverage liquid.
  • other beverage liquids such as juice and liquor may be used as the other beverage liquids.
  • an appropriate inclination or radius may be provided in each tank or each line.
  • the air venting structure of the container of the present invention and the water server using the same can greatly reduce the time until the second container and the third container are in an airless state, particularly when the initial air is discharged. , Industrially effective.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Devices For Dispensing Beverages (AREA)

Abstract

L'invention porte sur une structure d'évacuation d'air de récipient qui peut raccourcir de façon significative le temps jusqu'à ce que l'intérieur d'un récipient devienne sans air, et sur un distributeur d'eau l'utilisant. Le distributeur d'eau (1) comporte une structure d'évacuation d'air de récipient configurée de façon à fournir de l'eau potable en succession à partir d'un sac (4) contenant ladite eau potable jusqu'à un réservoir d'eau froide (5) disposé au-dessous du sac (4) et à un réservoir d'eau chaude (6) disposé au-dessous du réservoir d'eau chaude (5). La structure d'évacuation d'air comporte : un tube de communication (102) qui relie la zone au voisinage du sommet à l'intérieur du réservoir d'eau froide (5) avec l'intérieur du réservoir d'eau chaude (6) ; et un tube de sortie (63) pour décharger de l'air ou de l'eau potable, qui a été déchargée à partir du réservoir d'eau froide (5) dans le réservoir d'eau chaude (6) à travers le tube de communication (102) quand de l'eau potable est fournie à partir du sac (4) vers le réservoir d'eau froide (5), à partir du voisinage du sommet du réservoir d'eau chaude (6).
PCT/JP2011/076232 2011-10-17 2011-11-15 Structure d'évacuation d'air de récipient et distributeur d'eau l'utilisant WO2013057846A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2011228387A JP5059963B1 (ja) 2011-10-17 2011-10-17 容器のエア抜き構造及びそれを用いたウォーターサーバー
JP2011-228387 2011-10-17

Publications (1)

Publication Number Publication Date
WO2013057846A1 true WO2013057846A1 (fr) 2013-04-25

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WO (1) WO2013057846A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2017079344A (ja) 2015-10-19 2017-04-27 株式会社コスモライフ 水事業用通信システム
WO2018207980A1 (fr) * 2017-05-08 2018-11-15 이천림 Serveur d'eau

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005170432A (ja) * 2003-12-10 2005-06-30 Fuji Techno Kk 飲料サーバー
JP2005308297A (ja) * 2004-04-21 2005-11-04 Fuji Electric Retail Systems Co Ltd 飲料水のディスペンサ
EP1927573A1 (fr) * 2006-11-29 2008-06-04 Canaletas, S.A. Distributeur d'eau avec système d'assainissement
JP2009035322A (ja) * 2007-08-03 2009-02-19 Fujiyama Corp 飲料水用サーバー
JP2010132310A (ja) * 2008-12-04 2010-06-17 Fujiyama Corp サーバー用飲料水収容具
JP2011037479A (ja) * 2009-08-11 2011-02-24 Fujiyama Corp 液体貯留装置

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005170432A (ja) * 2003-12-10 2005-06-30 Fuji Techno Kk 飲料サーバー
JP2005308297A (ja) * 2004-04-21 2005-11-04 Fuji Electric Retail Systems Co Ltd 飲料水のディスペンサ
EP1927573A1 (fr) * 2006-11-29 2008-06-04 Canaletas, S.A. Distributeur d'eau avec système d'assainissement
JP2009035322A (ja) * 2007-08-03 2009-02-19 Fujiyama Corp 飲料水用サーバー
JP2010132310A (ja) * 2008-12-04 2010-06-17 Fujiyama Corp サーバー用飲料水収容具
JP2011037479A (ja) * 2009-08-11 2011-02-24 Fujiyama Corp 液体貯留装置

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JP5059963B1 (ja) 2012-10-31

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