JP2007178110A - Umbrella dewatering device - Google Patents

Umbrella dewatering device Download PDF

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JP2007178110A
JP2007178110A JP2005380497A JP2005380497A JP2007178110A JP 2007178110 A JP2007178110 A JP 2007178110A JP 2005380497 A JP2005380497 A JP 2005380497A JP 2005380497 A JP2005380497 A JP 2005380497A JP 2007178110 A JP2007178110 A JP 2007178110A
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umbrella
water
chamber
housing
water absorbing
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JP2005380497A
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Tadashi Saito
正 斉藤
Takio Sugimoto
多喜生 杉本
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KABII KK
Samy KK
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KABII KK
Samy KK
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Priority to JP2005380497A priority Critical patent/JP2007178110A/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an umbrella dewatering device capable of improving water absorbing efficiency. <P>SOLUTION: This umbrella dewatering device comprises an umbrella receiving portion 90 receiving an umbrella 100 inserted from its tip, a water absorbing chamber 80 formed at an outer side of a water absorbing sheet 7 surrounding the umbrella receiving portion 90, and a sucking means 30 for sucking the water contained in the water absorbing sheet 70 by sucking the water absorbing chamber 80. The umbrella holding portion 90 is composed of an umbrella shank receiving hole portion 910, and a plurality of rib insertion chambers 900 of longitudinal rectangular shape, formed into the slit shape extending radially outward from the umbrella shank receiving portion 910 on its cross-sectional shape, and equally distributed around the umbrella shank receiving portion 910 for inserting the ribs 101 of the umbrella 100, and the ribs 101 are independently inserted into the ribs insertion chambers 900. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

この発明は、濡れた傘を脱水する傘脱水装置に関する。   The present invention relates to an umbrella dewatering device for dewatering a wet umbrella.

傘脱水装置として、従来より、吸水シートと吸気装置を組み合わせた構造のもの、すなわち、傘の生地部分である襞部に付着した水分を吸水シートで吸水しつつ、吸水シートの水分を吸引装置により吸い出して脱水する構造のものが知られている(例えば特許文献1〜3)。
実開平1−66588号公報 実開平2−131190号公報 特開平6−14885号公報
Conventionally, as an umbrella dewatering device, a structure in which a water absorbent sheet and an air intake device are combined, i.e., the water adhering to the heel part which is the fabric part of the umbrella is absorbed by the water absorbent sheet, and the moisture of the water absorbent sheet is absorbed by the suction device. The structure of sucking and dehydrating is known (for example, Patent Documents 1 to 3).
Japanese Utility Model Publication No. 1-66588 Japanese Utility Model Publication No. 2-131190 JP-A-6-14485

しかし、これら従来の傘脱水装置は、長さ方向の先端から差し込まれた傘を保持する傘収容部の周壁が円周方向へ連続するV形凹部で連続し、全体の横断面形状が略星形になっている。つまり、個々の凹部が内方向きに拡がっている態様であるから、前記傘を差し込んだ際に、傘の複数(8本)の親骨における隣り合うもの同志が一か所のV形凹部に一緒に入ってしまいやすい。   However, in these conventional umbrella dewatering devices, the circumferential wall of the umbrella housing portion holding the umbrella inserted from the tip in the length direction is continuous with the V-shaped recess that is continuous in the circumferential direction, and the overall cross-sectional shape is substantially a star. It is in shape. In other words, since the individual recesses are inwardly expanded, when the umbrella is inserted, adjacent ones of the plurality (eight) main bones of the umbrella are joined together in one V-shaped recess. Easy to get in.

その場合、隣り合う2つの親骨の襞部と襞部とが一か所のV形凹部内で折り重なった状態となり、それが吸水シートに対して密着不良の部分となってしまい、脱水効率の低下を招くことになる。   In that case, the heel part and the heel part of two adjacent main bones are folded in one V-shaped recess, which becomes a part of poor adhesion to the water-absorbent sheet, resulting in a decrease in dewatering efficiency. Will be invited.

この発明は、このような事情に鑑みてなされたものであって、脱水時の傘の襞部の重なり状態が回避されて、脱水効率を向上を図ることができる傘脱水装置を提供することを課題とする。   The present invention has been made in view of such circumstances, and provides an umbrella dewatering device that can avoid the overlapping state of the buttocks of the umbrella during dewatering and can improve dewatering efficiency. Let it be an issue.

上記課題は、以下の手段によって解決される。   The above problem is solved by the following means.

(1)長さ方向の先端から差し込まれる傘を収容する傘収容部と、前記傘収容部を取り囲んで配置された吸水シートと、前記吸水シートの外側に形成された吸水室と、前記吸水室に対する吸引動作により吸水シートの水分を吸い出す吸引手段と、を備え、前記傘収容部は、差し込まれた傘の傘軸を収容するための傘軸収容孔部と、横断面形状が前記傘軸収容孔部から径方向外方に延びるスリット状に形成され、かつ傘軸収容孔部周りに等配されて、傘の親骨を進入させる縦長矩形の複数の親骨進入室と、により構成されており、前記複数の親骨進入室は、傘が傘軸収容孔部に差し込まれた際に、複数の親骨がその両側の襞部と共にそれぞれ個別に進入されるように構成されていることを特徴とする傘脱水装置。   (1) An umbrella housing part for housing an umbrella inserted from the front end in the length direction, a water absorbing sheet disposed around the umbrella housing part, a water absorbing chamber formed outside the water absorbing sheet, and the water absorbing chamber A suction means for sucking out moisture from the water absorbent sheet by a suction operation with respect to the umbrella seat, the umbrella housing portion includes an umbrella shaft housing hole for housing the umbrella shaft of the inserted umbrella, and a transverse cross-sectional shape of the umbrella shaft housing It is formed in a slit shape extending radially outward from the hole portion, and is equally distributed around the umbrella shaft accommodation hole portion, and is configured by a plurality of vertically long rectangular bone access chambers that allow the umbrella bone of the umbrella to enter, The plurality of master bone entry chambers are configured such that when the umbrella is inserted into the umbrella shaft receiving hole, the plurality of master bones are individually entered together with the hooks on both sides thereof. Dehydration device.

(2)前記親骨進入室の奥行寸法が前記傘軸収容孔部の直径寸法よりも長寸に設定されている前項1に記載の傘脱水装置。   (2) The umbrella dewatering device according to item 1 above, wherein a depth dimension of the main bone entry chamber is set to be longer than a diameter dimension of the umbrella shaft housing hole.

(3)前記親骨進入室の入り口部位を幅狭にさせる張出部が該入り口部位の対向内面の少なくとも一方に形成されている前項1または2に記載の傘脱水装置。   (3) The umbrella dewatering device according to item 1 or 2, wherein an overhanging portion that narrows the entrance portion of the main bone entry chamber is formed on at least one of the opposing inner surfaces of the entrance portion.

(4)前記傘収容部の傘差し込み方向の中間部に、脱水後の傘の長さ方向の中間部を径方向外方から絞って縮径させる絞り手段が設置されている前項1ないしは3のいずれかに記載の傘脱水装置。   (4) The throttle means for reducing the diameter of the umbrella in the longitudinal direction of the umbrella after dehydration from the radially outer side is installed at the middle part of the umbrella housing part in the umbrella insertion direction. The umbrella dehydrator according to any one of the above.

(5)前記傘収容部を収容する装置ケースが、前記傘軸収容孔部に対応する案内開口部と、前記親骨進入室に対応する複数の案内スリット部を有する蓋体を備えており、前記蓋体の上面は、少なくとも案内開口部付近が下方へ凹入状に形成されている前項1ないしは4のいずれかに記載の傘脱水装置。   (5) A device case for housing the umbrella housing portion includes a lid having a guide opening corresponding to the umbrella shaft housing hole and a plurality of guide slit portions corresponding to the main bone entry chamber, 5. The umbrella dewatering device according to any one of the preceding items 1 to 4, wherein at least the vicinity of the guide opening is formed to be recessed downward on the upper surface of the lid.

前項(1)に記載の発明によれば、濡れた傘を傘収容部における傘軸部収容孔部に差し込めば、複数の親骨がその両側の襞部と共に、複数の親骨進入室にそれぞれ個別に進入する状態となる。   According to the invention described in (1) above, when a wet umbrella is inserted into the umbrella shaft accommodating hole in the umbrella accommodating portion, the plurality of master bones individually enter the plurality of master bone entry chambers together with the hooks on both sides thereof. Enters the state.

そして、その収容状態の傘は、前記傘収容部を囲んで配置された吸水シートに、傘の生地部分である襞部が接触して吸水される。同時に、吸水シートの外側に形成された横断面形状が環状の吸水室が吸引装置により吸引されるから、吸水シートで吸水された水分が吸引力により吸水シートから吸い出されて排出される。これにより、傘の襞部に付着した雨水などを簡単、かつ完全に脱水除去される。   The umbrella in the accommodated state is absorbed by the water-absorbing sheet disposed so as to surround the umbrella accommodating portion and the heel portion which is the fabric portion of the umbrella comes into contact with the umbrella. At the same time, the water absorbing chamber having an annular cross section formed outside the water absorbing sheet is sucked by the suction device, so that the water absorbed by the water absorbing sheet is sucked out and discharged from the water absorbing sheet by the suction force. As a result, rainwater and the like attached to the buttocks of the umbrella can be easily and completely dehydrated and removed.

とくに、傘収容部における親骨進入室の横断面形状が略U字形のスリット状になっているから、傘が傘軸収容孔部に差し込まれると、一つの親骨進入室に対して一つの親骨が進入するものの、複数の親骨が一緒には入りにくい。このため、一つの親骨進入室内で傘の複数の襞部が重なったりするのが回避され、襞部に付着した雨滴に対して効率の良い脱水作用が発揮される。   In particular, since the transverse cross-sectional shape of the main bone entry chamber in the umbrella housing portion is a substantially U-shaped slit shape, when the umbrella is inserted into the umbrella shaft housing hole, one master bone is associated with one main bone entry chamber. Although it enters, it is difficult for multiple parent bones to enter together. For this reason, it is avoided that a plurality of buttocks of an umbrella overlap in one main bone approach room, and an efficient dehydration action is exhibited for raindrops attached to the buttocks.

前項(2)に記載の発明によれば、親骨進入室の奥行寸法が前記傘軸収容孔部の直径寸法よりも長寸であるから、傘収容室の平面形状が従来のような星形のものと違って米字形となり、傘軸収容孔部に差し込んだ傘の隣合う親骨が一緒に一か所の親骨進入室に進入するのが確実に防止される。   According to the invention described in (2) above, since the depth dimension of the main bone entry chamber is longer than the diameter dimension of the umbrella shaft accommodating hole, the planar shape of the umbrella accommodating chamber is a star shape as in the prior art. Unlike a thing, it becomes a U-shaped, and it is surely prevented that the adjacent main bone of the umbrella inserted into the umbrella shaft housing hole part enters into one main bone entry chamber together.

前項(3)に記載の発明によれば、前記張出部によって親骨進入室の入り口側の幅寸法が小さくなり、親骨進入室の全長に渡って細幅にしなくても、傘の親骨を個別に親骨進入室に進入させることが可能となる。   According to the invention described in (3) above, the width of the entrance side of the main bone entry chamber is reduced by the overhanging portion, and the main bone of the umbrella can be individually separated without having to be made narrow over the entire length of the main bone entry chamber. It is possible to enter the main bone entry chamber.

また、親骨進入室を全長にわたって細幅にしなくて良いので、隣合う親骨進入室との間における入り口側のエッジを切り取らなくても、前記傘軸収容孔部の直径も一定の大きさに確保できる。つまり、隣合う親骨進入室との間における入り口側に鋭角的なエッジを形成しながら、一定の大きさの傘軸収容孔部を確保できるから、傘軸収容孔部への傘軸の挿入と各親骨進入室に対する各親骨の進入を円滑に行わせることができる。   In addition, since the main bone entry chamber does not have to be narrow over the entire length, the diameter of the umbrella shaft accommodation hole is secured to a constant size without cutting off the entrance-side edge between the adjacent main bone entry chambers. it can. That is, while forming an acute edge on the entrance side between the adjacent main bone entry chambers, it is possible to secure a certain size of the umbrella shaft accommodation hole, so that the insertion of the umbrella shaft into the umbrella shaft accommodation hole Each parent bone can enter smoothly into each parent bone entry chamber.

前項(4)に記載の発明によれば、脱水後の傘を抜くときに傘の長さ方向に略中央部が径方向外方から絞られるので、例えば開き方向にばね付勢されたジャンプ傘では、傘が閉じた状態となり、傘を抜き取った時に予期しない傘の拡開が防止される。   According to the invention described in the preceding item (4), when the umbrella after dehydration is pulled out, the substantially central portion is squeezed from the outside in the radial direction in the longitudinal direction of the umbrella, so that, for example, a jump umbrella spring-biased in the opening direction Then, the umbrella is in a closed state, and when the umbrella is pulled out, an unexpected expansion of the umbrella is prevented.

前項(5)に記載の発明によれば、蓋体の上面の少なくとも案内開口部付近が凹入されているから、この蓋体の上面に飛散した雨水が案内開口部から傘収容部内に流下し、蓋の上面に溜まることはない。   According to the invention described in (5) above, since at least the vicinity of the guide opening on the upper surface of the lid is recessed, rainwater scattered on the upper surface of the lid flows down into the umbrella housing from the guide opening. , Do not collect on the top of the lid.

以下、この発明の一実施形態を図面に基づいて説明する。   Hereinafter, an embodiment of the present invention will be described with reference to the drawings.

図1、図2および図3は、それぞれこの発明の一実施形態に係る傘脱水装置の概略構成図、外観斜視図および分解斜視図である。   1, 2, and 3 are a schematic configuration diagram, an external perspective view, and an exploded perspective view, respectively, of an umbrella dewatering device according to an embodiment of the present invention.

図1〜図3において、この傘脱水装置は、筒状容器形の装置ケース10を備えており、その内部には、脱水槽20、吸引装置30および排水装置50などが配備されている。   1 to 3, the umbrella dewatering device includes a cylindrical container-type device case 10, in which a dewatering tank 20, a suction device 30, a drainage device 50, and the like are arranged.

前記装置ケース10は、上面が開放されて、下方に至るに従って横断面積が縮小した略有底の円筒体11と、この円筒体11の上端開口11aを覆う天板を兼務した蓋体12とを備えている。   The device case 10 has a substantially bottomed cylindrical body 11 whose upper surface is opened and whose cross-sectional area is reduced as it goes downward, and a lid body 12 that also serves as a top plate that covers the upper end opening 11a of the cylindrical body 11. I have.

なお、蓋体12は、例えばねじ13により前記円筒体11の上端に固定されている。また、蓋体12は、前記脱水槽20の上端開口を覆うカバーも兼務している。   The lid body 12 is fixed to the upper end of the cylindrical body 11 with, for example, a screw 13. The lid 12 also serves as a cover that covers the upper end opening of the dehydration tank 20.

この蓋体12の中央には、傘100の差し込み操作を案内する案内開口部120が形成されており、さらにこの案内開口部120から径方向外方へ延びて、案内開口部120周りに等配された複数、例えば8個の案内スリット部121が形成されている。   A guide opening 120 that guides the insertion operation of the umbrella 100 is formed in the center of the lid 12, and further extends radially outward from the guide opening 120 so as to be equally distributed around the guide opening 120. A plurality of, for example, eight guide slit portions 121 are formed.

図2において、310は、後述するモータ38の起動用の電源スイッチ311などが設けられた操作パネルである。   In FIG. 2, reference numeral 310 denotes an operation panel provided with a power switch 311 for starting the motor 38, which will be described later.

前記脱水槽20は、図4にも示すように、上面が開放され、かつ下方に至るに従って横断面積が縮小したほぼ逆八角錐の中空体の最下部に、等径の有低筒体が連設された構成となされている。   As shown in FIG. 4, the dehydrating tank 20 is connected to a lower end of a hollow body having a substantially inverted octagonal pyramid whose upper surface is open and whose cross-sectional area is reduced as it goes downward. It is set as a set structure.

前記脱水槽20の内部には、例えば小判形の多数の透孔61が形成された支持体60が配設されている。この支持体60は、その内面に吸水シート70を支持するためのものであり、内部空間によって傘収容部90が構成されている。   Inside the dehydrating tank 20, a support body 60 in which a large number of, for example, oval through holes 61 are formed is disposed. This support body 60 is for supporting the water absorbing sheet 70 on its inner surface, and an umbrella housing portion 90 is constituted by the internal space.

傘収容部90は、図7に示すように、前記案内開口部120に対応する上端開口の傘軸収容孔部910と、この傘軸収容孔部910周りに等配された複数(8個)の親骨進入室900とを備えている。   As shown in FIG. 7, the umbrella housing portion 90 includes an umbrella shaft housing hole portion 910 having an upper end opening corresponding to the guide opening portion 120 and a plurality (eight) of the umbrella housing portions 90 arranged equally around the umbrella shaft housing hole portion 910. The main bone entry chamber 900 is provided.

各親骨進入室900は、前記傘軸収容孔部910から径方向外方へ延び、横断面形状が略U字形のスリット状に形成されて、縦長箱形になっている。この親骨進入室900の奥行き長さ(径方向の長さ)lは、例えば図6に示すように、前記傘軸収容孔部91の直径Rよりも長寸に設定されている。つまり、この複数の親骨進入室900と傘軸収容孔部910とからなる傘収容部90の平面形状は、略星形とは違って、略米字形となっている。   Each of the main bone entry chambers 900 extends radially outward from the umbrella shaft accommodation hole 910 and is formed in a slit shape having a substantially U-shaped cross section, and has a vertically long box shape. The depth length (the length in the radial direction) l of the main bone entering chamber 900 is set to be longer than the diameter R of the umbrella shaft accommodating hole portion 91, for example, as shown in FIG. That is, the planar shape of the umbrella housing part 90 composed of the plurality of main bone entering chambers 900 and the umbrella shaft housing hole part 910 is substantially American, unlike a substantially star shape.

なお、親骨進入室900の奥行き長さ(径方向の長さ)lや幅は、さらには隣り合う親骨進入室900との間隔は、全ての親骨進入室900において等しく設定されなければならないものではなく、例えば蓋体12を傾斜させて、傘を斜め上方から傘収容部90に進入させる形態とした場合などでは、傘骨の自重による開き具合に適合するように、適宜大小を設けても良い。   It should be noted that the depth length (the length in the radial direction) l and the width of the main bone entry chamber 900 and the interval between the adjacent main bone entry chambers 900 must be set equal in all the main bone entry chambers 900. For example, when the lid 12 is tilted and the umbrella is made to enter the umbrella housing part 90 obliquely from above, the size may be appropriately adjusted so as to suit the degree of opening due to the weight of the umbrella bone. .

前記支持体60は、図4および図7にも示すように、脱水槽20の内面から一定の距離を隔てて配設されており、これにより、脱水槽20の内面と支持体60との間には、脱水槽20の高さ方向にわたって、横断面形状が環状の吸水室80が形成されている。   As shown in FIGS. 4 and 7, the support body 60 is disposed at a certain distance from the inner surface of the dehydration tank 20, and thereby, the space between the inner surface of the dehydration tank 20 and the support body 60. A water absorption chamber 80 having a circular cross-sectional shape is formed across the height direction of the dehydration tank 20.

なお、支持体60における上端には、前記各親骨進入室900の幅方向の両側に位置して、取り付け片601,601が形成されている。前記蓋体12を貫通したねじ131,131(図3)を使って蓋体12を取り付け片601,601にねじ止めすることにより、前記支持体60が装置ケース10に固定されることになる。勿論、取り付け方法は、このねじ止めの方法に限らない。   In addition, attachment pieces 601 and 601 are formed at the upper end of the support 60 so as to be located on both sides in the width direction of each of the main bone entry chambers 900. The support body 60 is fixed to the device case 10 by screwing the cover body 12 to the attachment pieces 601 and 601 using screws 131 and 131 (FIG. 3) penetrating the cover body 12. Of course, the attachment method is not limited to this screwing method.

前記吸水シート70は、図4に示すように、前記傘収容部90を取り囲む態様で、前記支持体60の内面に密着状態に支持されている。   As shown in FIG. 4, the water absorbent sheet 70 is supported in close contact with the inner surface of the support body 60 in a form surrounding the umbrella housing portion 90.

この吸水シート70は、傘100の襞部102に付着した雨水を接触吸水するものであり、合成樹脂などの素材からシート状に成形された公知構成のものであり、多数の小径の貫通孔71が全域に形成されている。なお、貫通孔はなくても良い。   This water absorbing sheet 70 is a known structure in which rainwater adhering to the collar 102 of the umbrella 100 is contacted and absorbed, and is formed into a sheet shape from a material such as synthetic resin, and has a large number of small-diameter through holes 71. Is formed throughout. In addition, there may not be a through-hole.

なお、吸水シート70は支持体60の内面に部分的に接合されていてもよいが、取り替えが可能な態様で取り付けられるのが望ましい。   In addition, although the water absorption sheet 70 may be partially joined to the inner surface of the support body 60, it is desirable to attach in the aspect which can be replaced.

前記脱水槽20における周壁部20aには、その下端位置において、図1、図7及び図8に示すように、前記吸水室80に連通する状態で吸気管31の一端側が接続されるとともに、吸気管31の他端は吸引装置30に接続されており、吸引装置30の吸引動作により、吸気管31を介して前記吸水室80が吸引されて減圧(負圧)されるように設定されている。   As shown in FIGS. 1, 7 and 8, one end side of the intake pipe 31 is connected to the peripheral wall portion 20a of the dewatering tank 20 in a state communicating with the water absorption chamber 80 at the lower end position. The other end of the pipe 31 is connected to the suction device 30, and the suction chamber 30 is set so that the water suction chamber 80 is sucked and reduced in pressure (negative pressure) through the suction pipe 31. .

吸引装置30の動作によって吸水室80が吸引されると、支持体60の内面における吸水シート70が支持体60の透孔61を介して吸引される。これにより、吸水シート70の内側に存在する傘100の襞部102が吸引されて吸水シート70に密着される。   When the water absorbing chamber 80 is sucked by the operation of the suction device 30, the water absorbing sheet 70 on the inner surface of the support 60 is sucked through the through hole 61 of the support 60. Thereby, the collar part 102 of the umbrella 100 which exists inside the water absorption sheet 70 is attracted | sucked, and it closely_contact | adheres to the water absorption sheet 70. FIG.

前記吸引装置30は、図1に示すように、モータ38によりブロワを作動させる方式のものであり、吸引した前記吸水室80の空気は、排気管32を介して排気口33へと送られ、装置外へ排出されるように構成される一方、空気と共に吸引されてきた水分は、貯水部34に溜まるようになっている。   As shown in FIG. 1, the suction device 30 is of a type in which a blower is operated by a motor 38, and the sucked air in the water absorption chamber 80 is sent to the exhaust port 33 through the exhaust pipe 32, While configured to be discharged out of the apparatus, the water sucked together with the air is accumulated in the water reservoir 34.

前記貯水部34は、図5に示すように、その底部が水分落下口35として開口されている。この水分落下口35の近傍には、吸引動作中は吸引力により前記落下口35を閉塞する方向に変位し、吸引動作が解除されると、自重により下方変位して落下口35を開放する蓋体が36が水平軸36aを介して回動自在に枢支されている。図5において、37は、蓋体36の自重による最大回動位置を規制するストッパである。   As shown in FIG. 5, the bottom of the water storage section 34 is opened as a moisture drop opening 35. In the vicinity of the moisture dropping port 35, during the suction operation, the lid is displaced in a direction to close the dropping port 35 by a suction force, and when the suction operation is released, the lid is displaced downward by its own weight to open the dropping port 35. A body 36 is pivotally supported via a horizontal shaft 36a. In FIG. 5, reference numeral 37 denotes a stopper that regulates the maximum rotation position due to the weight of the lid 36.

なお、前記モータ38は、利用者が図示しないフットスイッチを操作することにより回転動作を開始し、図示しないタイマによりセットされた一定時間が経過すると停止するように設定されている。   The motor 38 is set to start rotating when a user operates a foot switch (not shown) and to stop when a predetermined time set by a timer (not shown) elapses.

勿論、モータ38の停止も利用者がスイッチ操作により行うようにしてもよく、また、モータ38の作動開始を、傘100が前記傘収容部90に収容されたことを検知するセンサを設けて、自動的に行う構成としてもよい。   Of course, the motor 38 may be stopped by a user's switch operation, and a sensor for detecting that the umbrella 100 is housed in the umbrella housing portion 90 is provided to start the operation of the motor 38. It is good also as a structure performed automatically.

前記水分落下口35の下方には、前記排水装置50が設置されている。   The drainage device 50 is installed below the moisture dropping port 35.

この排水装置50は、装置ケース10の周壁から出し入れ可能に設けられた排水トレイ51と、この排水トレイ51に接続された水分放出器52とを備えている。前記排水トレイ51は、貯水部34の落下口35から落下した水分を受けて溜めるものである。   The drainage device 50 includes a drainage tray 51 provided so as to be able to be taken in and out from the peripheral wall of the device case 10, and a moisture discharger 52 connected to the drainage tray 51. The drain tray 51 receives and accumulates water dropped from the drop port 35 of the water storage section 34.

また、前記水分放出器52は超音発振子(超音波振動子)53を備え、超音波により水分を霧状にしたのち、排気管54を介して排気口33から装置外に排出するように構成されている。   The moisture releaser 52 includes an ultrasonic oscillator (ultrasonic vibrator) 53 so that moisture is atomized by ultrasonic waves and then discharged from the exhaust port 33 through the exhaust pipe 54 to the outside of the apparatus. It is configured.

この実施形態では、図4に示すように、前記吸水シート70の全域に多数の貫通孔71を形成してあるが、この貫通孔71を形成したのは次の理由による。   In this embodiment, as shown in FIG. 4, a large number of through holes 71 are formed in the entire area of the water absorbent sheet 70. The reason why the through holes 71 are formed is as follows.

すなわち、吸引装置30による吸引時に、支持体60の透孔61と重なった部分の貫通孔71を空気が流通する。これにより貫通孔71の周縁部からの水分の離脱が促進されるとともに、離脱した水分に代わって吸水シート70内の水分が毛細管現象により貫通孔71の周縁部へと移動し、貫通孔71を流通する空気によりさらに離脱される。これが繰り返されることにより、吸水シート70からの水分の吸い出し効率が向上し、ひいては傘100に付着した水分に対して吸水シート70による吸水効率が向上するからである。   That is, when the suction device 30 performs suction, air flows through the through hole 71 in the portion overlapping the through hole 61 of the support 60. As a result, the detachment of moisture from the peripheral edge of the through hole 71 is promoted, and the water in the water absorbent sheet 70 moves to the peripheral edge of the through hole 71 by capillary action instead of the detached water. It is further separated by the circulating air. This is because by repeating this, the efficiency of sucking out water from the water absorbent sheet 70 is improved, and as a result, the water absorption efficiency of the water absorbent sheet 70 with respect to the water adhering to the umbrella 100 is improved.

次に、図1〜図8に示した傘脱水装置の動作を説明する。   Next, the operation of the umbrella dewatering device shown in FIGS. 1 to 8 will be described.

利用者は、濡れた傘(例えば、開き方向にばね付勢されたジャンプ傘)100を、その先端から前記案内開口部120に差し込めば、傘100が傘収容部90に収容される。   When the user inserts a wet umbrella (for example, a jump umbrella that is spring-biased in the opening direction) 100 into the guide opening 120 from the tip, the umbrella 100 is accommodated in the umbrella accommodating portion 90.

傘100の差し込み操作開始時に、もし、傘100の親骨101の部位が前記蓋体12の案内スリット部121に対応していなかった場合には、傘100を少し軸周りに回転変移させて、傘100の親骨101の部位が前記案内スリット部121に対応させておく。   At the start of the insertion operation of the umbrella 100, if the part of the main bone 101 of the umbrella 100 does not correspond to the guide slit portion 121 of the lid body 12, the umbrella 100 is slightly rotated around the axis, 100 parts of the main bone 101 are made to correspond to the guide slit 121.

傘100を差し込んでいくと、傘100は、その傘軸103の部位が傘収容部90における傘軸収容孔部910に収容される一方、8本の親骨101が8個の親骨進入室900に対してそれぞれ個別に進入する。特に前記ジャンプ傘の場合には、開き方向にばね付勢されているからさらにスムーズに進入する。   When the umbrella 100 is inserted, the portion of the umbrella shaft 103 is accommodated in the umbrella shaft accommodation hole 910 in the umbrella accommodation portion 90, while the eight main bones 101 enter the eight main bone entry chambers 900. In contrast, each of them enters individually. In particular, in the case of the jump umbrella, since the spring is biased in the opening direction, the jump umbrella enters more smoothly.

ここでの傘収容部90は、従来の平面形状が略星形の傘収容部とは違って、平面形状が米字形である。つまり、傘軸収容孔部910を中心にして放射状に延びる親骨進入室900の横断面が略U字形のスリット状であるから、図6に示すように、傘軸103が傘軸収容孔部910に差し込まれると、一つの親骨進入室91に対して一つの親骨101しかほぼ入らない。つまり、一つの親骨進入室910に対して、例えば二つの親骨101が一緒に進入するのが回避されるから、一つの親骨進入室900内で傘100の複数の襞部102が重なったりすることがなくなり、効率の良い脱水作用のために好都合になる。   The umbrella housing 90 here is different from a conventional star-shaped umbrella housing in which the planar shape is a U-shape. That is, since the transverse cross section of the main bone entry chamber 900 extending radially around the umbrella shaft accommodation hole 910 is a substantially U-shaped slit shape, the umbrella shaft 103 is arranged in the umbrella shaft accommodation hole 910 as shown in FIG. , Only one parent bone 101 enters almost one parent bone entry chamber 91. In other words, for example, it is avoided that two master bones 101 enter one master bone entry chamber 910 together, and therefore, a plurality of buttock portions 102 of the umbrella 100 overlap in one master bone entry chamber 900. This is advantageous for efficient dehydration.

傘100が傘収容部90に収容された状態では、傘100の襞部102の一部は、図8に示すように吸水シート70に接触して吸水される。   In a state where the umbrella 100 is accommodated in the umbrella accommodating portion 90, a part of the collar portion 102 of the umbrella 100 is brought into contact with the water absorbing sheet 70 and absorbed as shown in FIG.

この状態で、利用者がフットスイッチを操作し、吸引装置30のモータ38を駆動すると、ブロアが作動し、吸気管31を介して吸水室80吸引される。この吸引動作により、吸水シート70が支持体60の透孔61を介して吸引され、さらには吸水シート70の吸引部分の内側に存在している傘100の襞部102が吸引されて広がって、吸水シート70に密着し、襞部102に付着している水分が吸水シート70にさらに吸水される。   In this state, when the user operates the foot switch and drives the motor 38 of the suction device 30, the blower is activated and the water suction chamber 80 is sucked through the intake pipe 31. By this suction operation, the water absorbent sheet 70 is sucked through the through hole 61 of the support 60, and further, the collar portion 102 of the umbrella 100 existing inside the suction portion of the water absorbent sheet 70 is sucked and spread. The water adhering to the water absorbing sheet 70 and adhering to the flange 102 is further absorbed by the water absorbing sheet 70.

この吸水シート70による吸水動作と、前記吸水部80において吸水シート70に作用する吸引力による吸水動作により、傘100の襞部102に付着した水分は確実に脱水される。   By the water absorption operation by the water absorption sheet 70 and the water absorption operation by the suction force acting on the water absorption sheet 70 in the water absorption portion 80, the water adhering to the collar portion 102 of the umbrella 100 is surely dehydrated.

しかも、吸水シート70には多数の貫通孔71が形成されているから、吸引力によりこの貫通孔71を空気が流通する結果、貫通孔71の周縁部からの水分の離脱と吸水シート内の水分の貫通孔71への集合とが促進され、脱水効率がさらに高められる。   In addition, since a large number of through holes 71 are formed in the water absorbent sheet 70, the air flows through the through holes 71 by the suction force. As a result, the water is released from the peripheral edge of the through holes 71 and the water in the water absorbent sheet. To the through hole 71 is promoted, and the dewatering efficiency is further enhanced.

吸引開始後一定時間が経過すると、タイマが作動してモータ38が停止し、吸引力が解除される。   When a certain time has elapsed after the start of suction, the timer is activated to stop the motor 38 and the suction force is released.

モータ38の停止後、利用者は傘100を傘軸収容孔部910から引き抜けばよい。   After the motor 38 is stopped, the user may pull out the umbrella 100 from the umbrella shaft accommodating hole 910.

一方、吸引装置30で吸引された水分は、吸引装置30の作動中は貯水部34に溜められ、吸引装置30の作動が停止すると、蓋体36が開口して排水タンク51に落下する。排水タンク51に溜められた水と、排水管39により送られてきた傘先端嵌合部25の水は、水分放出器52の超音波発振器53により霧状化され、排気管54を介して排気口33から装置外に排出される。   On the other hand, the water sucked by the suction device 30 is stored in the water storage section 34 during the operation of the suction device 30, and when the operation of the suction device 30 stops, the lid body 36 opens and falls into the drain tank 51. The water stored in the drain tank 51 and the water in the umbrella tip fitting portion 25 sent by the drain pipe 39 are atomized by the ultrasonic oscillator 53 of the moisture releaser 52 and exhausted through the exhaust pipe 54. It is discharged out of the apparatus through the port 33.

なお、前記蓋体12の上面が平坦形状であると、傘100の差し込み操作時などに、傘100の襞部102の雨水が蓋体12の上面に溜まったりするから、図9に示すように、蓋体12を凹入状に形成すると、上面に飛散した雨水が案内開口部120やスリット部121から傘収容部90内に流出し、蓋体12の上面に雨水が溜まることはない。   If the top surface of the lid body 12 is flat, rainwater from the collar portion 102 of the umbrella 100 may accumulate on the top surface of the lid body 12 when the umbrella 100 is inserted, as shown in FIG. When the lid body 12 is formed in a recessed shape, rainwater scattered on the upper surface does not flow out from the guide opening 120 or the slit portion 121 into the umbrella housing portion 90 and the rainwater does not collect on the upper surface of the lid body 12.

勿論、蓋体12の上面全体を凹入しなくても、案内用開口部120付近だけを凹入状にしたものでもよい。   Of course, the entire upper surface of the lid 12 may be recessed, but only the vicinity of the guide opening 120 may be recessed.

ところで、傘100を前記傘軸収容孔部910に差し込んだ際に、前記8個の親骨進入室900に対して8個の親骨101をそれぞれ個別に確実に進入させるためには、親骨進入室900の幅寸法t(図11)が可及的に小さい方がよい。   By the way, when the umbrella 100 is inserted into the umbrella shaft accommodating hole 910, in order to allow the eight master bones 101 to enter the eight master bone entry chambers 900 individually, the master bone entry chamber 900 is individually inserted. The width dimension t (FIG. 11) should be as small as possible.

しかしながら、親骨進入室900の入り口側の幅寸法tが小さくなる程、8個の親骨進入室900の各内端で取り囲まれた傘軸収容孔部910の径Rが小さくなってしまう。そのため、この傘軸収容孔部910の径Rは、傘100の抜き差しに支障をきたさない程度の一定寸法を確保しておく必要がある。   However, as the width dimension t on the entrance side of the main bone entry chamber 900 becomes smaller, the diameter R of the umbrella shaft accommodation hole portion 910 surrounded by the inner ends of the eight main bone entry chambers 900 becomes smaller. Therefore, the diameter R of the umbrella shaft accommodating hole 910 needs to ensure a certain dimension that does not hinder the insertion and removal of the umbrella 100.

親骨収容室900の幅寸法tを大きくしないで、傘軸収容室910の径Rを一定に確保するために、隣合う前記親骨進入室900,900の入り口側で構成された鋭角的なエッジ900aを切り取ってしまうと、傘100の親骨101が親骨進入室900へ進入する際に、親骨101が切断部に当たって親骨進入室900へのスムーズな進入を妨げるおそれがある。   In order to ensure a constant diameter R of the umbrella shaft storage chamber 910 without increasing the width dimension t of the main bone storage chamber 900, an acute edge 900a formed on the entrance side of the adjacent main bone entrance chamber 900, 900 is provided. If the main bone 101 of the umbrella 100 enters the main bone entry chamber 900, the main bone 101 may hit the cutting portion and hinder smooth entry into the main bone entry chamber 900.

このような観点から、図10および図11に示すように、前記親骨進入室900の入り口側の対向内面のそれぞれに、入り口側を幅狭にさせる張出部901,901を形成するのが望ましい。   From this point of view, as shown in FIGS. 10 and 11, it is desirable to form overhang portions 901 and 901 that narrow the entrance side on each of the opposing inner surfaces on the entrance side of the main bone entry chamber 900. .

これにより、前記傘軸収容孔部910の径Rを小さくすることなく、親骨進入室900の入り口幅が実質的に狭くなるうえ、前記鋭角的なエッジ900aを失うこともなくなり、傘100の親骨101を個別的に親骨進入室900に円滑に進入させやすくなる。   Thereby, without reducing the diameter R of the umbrella shaft accommodating hole 910, the entrance width of the main bone entry chamber 900 is substantially narrowed, and the acute edge 900a is not lost. It becomes easy to smoothly enter 101 into the master bone entry chamber 900 individually.

次に、この発明の他の実施形態を図面に従って説明する。   Next, another embodiment of the present invention will be described with reference to the drawings.

図12は、この発明の他の実施形態における脱水槽20を示す概略構成図である。   FIG. 12 is a schematic configuration diagram showing a dewatering tank 20 according to another embodiment of the present invention.

図12において、前記脱水槽20は、傘差し込み方向(高さ方向)で2分構成となっており、一方の分割脱水槽20Aと他方の分割脱水槽20Bとの間には、前記脱水後の傘100の長さ方向の略中央部位を径方向外方から絞る絞り手段50が設けられている。   In FIG. 12, the dewatering tank 20 is configured in two minutes in the umbrella insertion direction (height direction), and between the one divided dewatering tank 20A and the other divided dewatering tank 20B, A throttle means 50 is provided to squeeze the substantially central portion of the umbrella 100 in the length direction from the outside in the radial direction.

この絞り手段50は、例えば図13〜図15に示すように、8個の親骨進入室900のうちの選択された対向関係にある4組の親骨進入室900,900の奥側(径方向外端側)に配置されて、径方向へ沿って変移可能な傘絞り用スライダ501と、このスライダ501の変移を案内する平行な一対のガイドール502,502と、前記スライダ501に対して常時径方向外方への復帰力を付勢する圧縮コイルばね503と、前記スイライダ501上に支柱504を介して支持された可動側滑車505と、前記親骨進入室900の入り口側の両側方にそれぞれ固定された支柱506,506を介して支持された一対の固定側滑車507,507と、隣の親骨進入室900の奥側に対応して配置された固定側滑車508と、前記スライダ501を変移させるためのワイヤ509とを備えている。   For example, as shown in FIG. 13 to FIG. 15, the throttling means 50 is provided on the far side (outside of the radial direction) An umbrella diaphragm slider 501 that is disposed on the end side and can be displaced along the radial direction, a pair of parallel guide rails 502 and 502 that guide the displacement of the slider 501, and the radial direction always with respect to the slider 501. A compression coil spring 503 for energizing an outward restoring force, a movable pulley 505 supported on the slider 501 via a column 504, and both sides of the entrance side of the main bone entry chamber 900 are fixed. A pair of fixed pulleys 507 and 507 supported via the supporting columns 506 and 506, a fixed pulley 508 disposed corresponding to the inner side of the adjacent main bone entry chamber 900, and the slider 501. And a wire 509 for causing the transition.

前記ワイヤ509の一端を固定しておき、そのワイヤ509を、図14に示すように、一方の固定側滑車507、可動側滑車505、他方の固定側滑車507、隣の固定側滑車508、さらに隣の一方の固定側滑車507、可動側滑車505、他方の固定側滑車507・・・の順で一巡させて、ワイヤ509の他端を引くと、前記スライダ501が径方向内方へ変移するように張設してあり、そのワイヤ509の他端がモータ510で駆動される巻取りスプール511に巻き取られるように設定されている。   One end of the wire 509 is fixed, and the wire 509 is connected to one fixed pulley 507, a movable pulley 505, the other fixed pulley 507, an adjacent fixed pulley 508, as shown in FIG. When the other fixed side pulley 507, the movable side pulley 505, the other fixed side pulley 507, etc. are cycled in order and the other end of the wire 509 is pulled, the slider 501 changes radially inward. The other end of the wire 509 is set to be wound around a winding spool 511 driven by a motor 510.

通常は、図14に示すように、圧縮コイルばね503のばね力により、前記スライダ501が径方向外方へ変移している。この状態で傘100の脱水が行われる。   Normally, as shown in FIG. 14, the slider 501 is displaced radially outward by the spring force of the compression coil spring 503. In this state, the umbrella 100 is dehydrated.

傘100の脱水後に、例えば吸引装置30のモータ38の停止に連動して、前記モータ510を駆動して巻取りスプール511にワイヤ509を巻き取らせると、図15に示すように、前記複数のスイライダ501・・・が圧縮コイルばね503のばね力に抗して径方向内方へ変移し、これにより、傘100の長さ方向の略中央部が径方向外方から絞られて傘100が縮径される。   After the umbrella 100 is dehydrated, for example, when the motor 510 is driven in conjunction with the stop of the motor 38 of the suction device 30 to wind the wire 509 on the take-up spool 511, as shown in FIG. The sliders 501... Move inward in the radial direction against the spring force of the compression coil spring 503, whereby the substantially central portion in the length direction of the umbrella 100 is squeezed from the outer side in the radial direction. The diameter is reduced.

このため、例えばジャンプ傘100の脱水後に、この傘100を開口部91から引き抜いた際に、該傘100が予期せぬままに自動的に拡がったりするのが防止され、傘を閉じた状態で抜き取ることができる。   For this reason, for example, when the umbrella 100 is pulled out from the opening 91 after the jump umbrella 100 is dehydrated, the umbrella 100 is prevented from automatically expanding unexpectedly, and the umbrella is closed. Can be extracted.

なお、しぼり手段50は、前記実施形態のものに限定されるものではなく、傘100を径方向外方から絞るものであれば、適宜、採用可能である。   The squeezing means 50 is not limited to that of the above-described embodiment, and can be appropriately employed as long as the umbrella 100 is squeezed from the outside in the radial direction.

また、しぼり手段50をモータにより駆動する構造のものに限定されることはなく、例えばユーザがレバーを駆動するとともに、このレバーに連動して絞り手段が絞り動作を行う手動式の構造のものとしても良い。   Further, it is not limited to a structure in which the squeezing means 50 is driven by a motor. For example, a user-driven structure in which a user drives a lever and the squeezing means performs a squeezing operation in conjunction with this lever Also good.

この発明の一実施形態に係る傘脱水装置を示す概略構成図である。It is a schematic structure figure showing an umbrella dehydrating device concerning one embodiment of this invention. 同じく傘脱水装置を示す外観斜視図である。It is an external appearance perspective view which similarly shows an umbrella dehydrating apparatus. 同じく傘脱水装置を示す分解斜視図である。It is a disassembled perspective view which similarly shows an umbrella dehydrating apparatus. 脱水槽の要部を示す斜視図である。It is a perspective view which shows the principal part of a dehydration tank. 吸引装置による吸引時の貯水部の下部構造を示す断面図である。It is sectional drawing which shows the lower structure of the water storage part at the time of attraction | suction by a suction device. 傘収容部における親骨進入室の奥行き寸法の説明図である。It is explanatory drawing of the depth dimension of the main bone approach room in an umbrella accommodating part. 傘脱水装置を示す縦断面図である。It is a longitudinal cross-sectional view which shows an umbrella dehydration apparatus. 傘脱水装置を脱水動作状態示す縦断面図である。It is a longitudinal cross-sectional view which shows the umbrella dehydrating apparatus in a dehydrating operation state. 傘脱水装置の蓋体の変形構造を示す断面図である。It is sectional drawing which shows the deformation | transformation structure of the cover body of an umbrella dehydration apparatus. 傘収容部における親骨進入室を示す斜視図である。It is a perspective view which shows the main bone entrance chamber in an umbrella accommodating part. 同じく親骨進入室の幅寸の説明図である。It is explanatory drawing of the width dimension of a parent bone approach chamber similarly. この発明の他の実施形態における脱水槽を示す概略図である。It is the schematic which shows the dehydration tank in other embodiment of this invention. 図2における絞り手段の具体的構成を示す部分斜視図である。It is a fragmentary perspective view which shows the specific structure of the diaphragm | throttle means in FIG. 同じく絞り手段の非動作時の平面図である。It is a top view at the time of non-operation of a diaphragm means similarly. 同じく絞り手段の動作時の平面図である。It is a top view at the time of operation | movement of an aperture means similarly.

符号の説明Explanation of symbols

10 装置ケース
12 蓋体
30 吸引手段
50 絞り手段
70 吸水シート
80 吸水室
90 傘収容部
100 傘
101 親骨
102 襞部
120 案内開口部
121 案内スリット部
900 親骨進入室
901 張出部
910 傘軸収容孔部
l 親骨進入室の奥行き寸法
t 親骨進入室の幅寸法
R 傘軸収容孔部の直径
DESCRIPTION OF SYMBOLS 10 Apparatus case 12 Cover body 30 Suction | inhalation means 50 Diaphragm | squeezing means 70 Water absorption sheet 80 Water absorption chamber 90 Umbrella accommodating part 100 Umbrella 101 Skeleton 102 Girdle part 120 Guide opening part 121 Guide slit part 900 Master bone entrance chamber 901 Overhang part 910 Umbrella axis accommodation hole Part l Depth dimension of main bone entry chamber t Width dimension of main bone entry chamber R Diameter of umbrella shaft accommodation hole

Claims (5)

長さ方向の先端から差し込まれる傘を収容する傘収容部と、
前記傘収容部を取り囲んで配置された吸水シートと、
前記吸水シートの外側に形成された吸水室と、
前記吸水室に対する吸引動作により吸水シートの水分を吸い出す吸引手段と、
を備え、
前記傘収容部は、差し込まれた傘の傘軸を収容するための傘軸収容孔部と、横断面形状が前記傘軸収容孔部から径方向外方に延びるスリット状に形成され、かつ傘軸収容孔部周りに等配されて、傘の親骨を進入させる縦長矩形の複数の親骨進入室と、により構成されており、
前記複数の親骨進入室は、傘が傘軸収容孔部に差し込まれた際に、複数の親骨がその両側の襞部と共にそれぞれ個別に進入されるように構成されていることを特徴とする傘脱水装置。
An umbrella accommodating portion for accommodating an umbrella inserted from the tip in the length direction;
A water absorbing sheet disposed around the umbrella housing portion;
A water absorbing chamber formed outside the water absorbing sheet;
A suction means for sucking out moisture from the water-absorbing sheet by a suction operation with respect to the water-absorbing chamber;
With
The umbrella housing part is formed into an umbrella shaft housing hole part for housing the umbrella shaft of the inserted umbrella, a slit having a transverse cross-sectional shape extending radially outward from the umbrella shaft housing hole part, and the umbrella A plurality of vertically long rectangular bone-advancing chambers that are equally distributed around the shaft accommodating hole and allow the umbrella bone of the umbrella to enter; and
The plurality of master bone entry chambers are configured such that, when the umbrella is inserted into the umbrella shaft housing hole, the master bones are individually entered together with the hooks on both sides thereof. Dehydration device.
前記親骨進入室の奥行寸法が前記傘軸収容孔部の直径寸法よりも長寸に設定されている請求項1に記載の傘脱水装置。 The umbrella dehydrating apparatus according to claim 1, wherein a depth dimension of the main bone entering chamber is set to be longer than a diameter dimension of the umbrella shaft accommodating hole. 前記親骨進入室の入り口部位を幅狭にさせる張出部が該入り口部位の対向内面の少なくとも一方に形成されている請求項1または2に記載の傘脱水装置。 The umbrella dewatering device according to claim 1 or 2, wherein an overhanging portion that narrows the entrance portion of the main bone entry chamber is formed on at least one of the opposing inner surfaces of the entrance portion. 前記傘収容部の傘差し込み方向の中間部に、脱水後の傘の長さ方向の中間部を径方向外方から絞って縮径させる絞り手段が設置されている請求項1ないしは3のいずれかに記載の傘脱水装置。 4. A throttle means for reducing the diameter of the umbrella in the longitudinal direction of the umbrella after dehydration by squeezing it from the outside in the radial direction is installed at an intermediate part in the umbrella insertion direction of the umbrella housing part. Umbrella dehydrator as described in 1. 前記傘収容部を収容する装置ケースが、前記傘軸収容孔部に対応する案内開口部と、前記親骨進入室に対応する複数の案内スリット部を有する蓋体を備えており、
前記蓋体の上面は、少なくとも案内開口部付近が下方へ凹入状に形成されている請求項1ないしは4のいずれかに記載の傘脱水装置。
The device case that accommodates the umbrella accommodating portion includes a guide opening corresponding to the umbrella shaft accommodating hole, and a lid having a plurality of guide slit portions corresponding to the main bone entry chamber,
The umbrella dewatering device according to any one of claims 1 to 4, wherein at least the vicinity of the guide opening is formed in a downwardly recessed shape on the upper surface of the lid.
JP2005380497A 2005-12-28 2005-12-28 Umbrella dewatering device Pending JP2007178110A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2005380497A JP2007178110A (en) 2005-12-28 2005-12-28 Umbrella dewatering device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2005380497A JP2007178110A (en) 2005-12-28 2005-12-28 Umbrella dewatering device

Publications (1)

Publication Number Publication Date
JP2007178110A true JP2007178110A (en) 2007-07-12

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
JP2005380497A Pending JP2007178110A (en) 2005-12-28 2005-12-28 Umbrella dewatering device

Country Status (1)

Country Link
JP (1) JP2007178110A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102187632B1 (en) * 2020-06-30 2020-12-07 최정길 A effective absorption and drainage umbrella dewatering apparatus

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0481579A (en) * 1990-07-24 1992-03-16 Toshiba Eng Co Ltd Scroll casing for water turbine
JPH08168431A (en) * 1994-12-19 1996-07-02 Takazo Ono Dehydrating device for umbrella
JP2004170029A (en) * 2002-11-21 2004-06-17 Nihon Kensui:Kk Umbrella water removing device

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0481579A (en) * 1990-07-24 1992-03-16 Toshiba Eng Co Ltd Scroll casing for water turbine
JPH08168431A (en) * 1994-12-19 1996-07-02 Takazo Ono Dehydrating device for umbrella
JP2004170029A (en) * 2002-11-21 2004-06-17 Nihon Kensui:Kk Umbrella water removing device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102187632B1 (en) * 2020-06-30 2020-12-07 최정길 A effective absorption and drainage umbrella dewatering apparatus

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