JP4922827B2 - Liquid container - Google Patents

Liquid container Download PDF

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JP4922827B2
JP4922827B2 JP2007132568A JP2007132568A JP4922827B2 JP 4922827 B2 JP4922827 B2 JP 4922827B2 JP 2007132568 A JP2007132568 A JP 2007132568A JP 2007132568 A JP2007132568 A JP 2007132568A JP 4922827 B2 JP4922827 B2 JP 4922827B2
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main body
lid
steam chamber
steam
opened
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JP2008286483A (en
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義治 佐藤
昌幸 橋本
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Zojirushi Corp
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Zojirushi Corp
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本発明は加湿器、電気ポット、貯湯容器等の液体容器に関する。   The present invention relates to a liquid container such as a humidifier, an electric pot, and a hot water storage container.

従来、例えば特許文献1乃至3に示すような加湿器では、本体内で加熱された液体から発生する蒸気は蓋体内に設けた蒸気通路を通って外部に放出される。蓋体の蒸気通路を通る蒸気は一部結露して溜まり、蒸気通路に形成した貫通孔を介して本体に環流される。
特開2000−065402号公報
Conventionally, in a humidifier as shown in Patent Documents 1 to 3, for example, vapor generated from a liquid heated in the main body is discharged to the outside through a vapor passage provided in the lid. A part of the vapor passing through the vapor passage of the lid body is condensed and accumulated, and is circulated to the main body through a through hole formed in the vapor passage.
JP 2000-065452 A

しかしながら、前記従来の液体容器では、結露した水が十分に溜まった状態で蓋体を開けると、蓋体の蒸気放出口等から結露水が外部へ流出する虞があった。   However, in the conventional liquid container, if the lid is opened in a state where the condensed water is sufficiently accumulated, the condensed water may flow out from the vapor discharge port of the lid.

そこで、本発明は、蓋体を開放時に結露水が外部に流出するのを抑えることができる液体容器を提供することを目的とする。   Then, an object of this invention is to provide the liquid container which can suppress that dew condensation water flows out outside when a cover body is open | released.

前記課題を解決するために、本発明は、
加熱された液体を収容する本体と、前記本体にヒンジ軸を介して開閉自在に取り付られ、前記本体から発生する蒸気が流通する蒸気室および該蒸気室の蒸気が流出する蒸気排出孔を備えた蓋体とからなる液体容器において、前記蓋体に突設され前記ヒンジ軸が配置されるヒンジ部に形成され、前記蒸気室の上方の壁部を貫通し該蒸気室内の結露水が流入する流入口と、前記本体と連通し該本体に結露水が流出する流出口とを有し、前記蓋体の開放時に前記蒸気室に貯溜する結露水を受け入れて前記本体に環流する還流通路と、前記蒸気室の内壁に、前記蓋体の開放時に結露水が前記環流通路に向かって流動するように形成された流入路と、前記流入口を介して前記流入路と対峙する堰板とを備えるものである。
In order to solve the above problems, the present invention provides:
A main body for containing heated liquid, a steam chamber attached to the main body through a hinge shaft so as to be opened and closed, a steam chamber through which steam generated from the main body flows, and a steam discharge hole through which the steam in the steam chamber flows out In the liquid container comprising the lid body, the liquid container is formed in a hinge portion projecting from the lid body where the hinge shaft is disposed, and the condensed water in the steam chamber flows through the upper wall portion of the steam chamber. An inlet, an outlet through which the condensed water flows out to the main body, and the main body, a reflux passage for receiving the condensed water stored in the steam chamber when the lid is opened and circulating to the main body ; Provided on the inner wall of the steam chamber is an inflow passage formed such that condensed water flows toward the circulation passage when the lid is opened, and a weir plate facing the inflow passage through the inflow port. Is.

前記構成からなる液体容器では、蒸気室に貯溜した結露水は蓋体の開放時に環流通路に流入し、本体に環流されるので、外部に流出する虞がない。堰板により、蓋体の開放時に流動する結露水が流入口を超えて外部に流出するのが防止される。 In the liquid container having the above-described configuration, the dew condensation water stored in the vapor chamber flows into the circulation passage when the lid is opened and is circulated to the main body, so that there is no possibility of flowing out. The dam plate prevents the condensed water that flows when the lid is opened from flowing out of the inlet beyond the inlet.

本発明によれば、蒸気室の内壁に蓋体の開放時に結露水が環流通路に向かって流動するように形成された流入路と、流入口を介して流入路と対峙する堰板とを備えるので、蓋体の開放時に流動する結露水が流入口を超えて外部に流出することを防止できる。蓋体の開放時に蒸気室に貯溜する結露水を受け入れて本体に環流する環流通路を蓋体のヒンジ軸の近傍に形成したので、蒸気室に貯溜した結露水は蓋体の開放時に環流通路に流入し、本体に環流されるので、外部に流出する虞がなく、安全である。 According to the present invention, the inner wall of the steam chamber is provided with an inflow path formed so that the condensed water flows toward the circulation path when the lid is opened, and a weir plate facing the inflow path through the inflow port. Therefore, it is possible to prevent the condensed water flowing when the lid is opened from flowing out beyond the inlet. A circulation passage is formed in the vicinity of the hinge shaft of the lid that accepts the condensation water stored in the steam chamber when the lid is opened and circulates to the main body, so that the condensation water stored in the steam chamber is transferred to the circulation passage when the lid is opened. Since it flows in and circulates to the main body, there is no risk of flowing out and it is safe.

以下、本発明の実施の形態を添付図面に従って説明する。図1、図2は本発明に係る液体容器としての加湿器1を示す。加湿器1は、本体2と蓋体3からなっている。   Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings. 1 and 2 show a humidifier 1 as a liquid container according to the present invention. The humidifier 1 includes a main body 2 and a lid 3.

本体2は、水平断面が略正方形の胴部4の下端に底部5を固着し、上端に肩部6を設けて、内部に内容器7を収容固定したものである。内容器7の底には図6に示すように加熱手段としてヒータ8が取り付けられている。   The main body 2 has a bottom section 5 fixed to the lower end of a body section 4 having a substantially square horizontal section, a shoulder section 6 provided on the upper end, and an inner container 7 accommodated and fixed therein. As shown in FIG. 6, a heater 8 is attached to the bottom of the inner container 7 as a heating means.

胴部4の正面には操作パネル9が取り付けられている。操作パネル9には、正面から見て右側に上から順に「運転入/切」、「選択」、「切タイマ」の各スイッチボタン10が配設され、左側に上から順に強、弱、給水、切タイマを示す各LED11が配設されている。   An operation panel 9 is attached to the front surface of the trunk portion 4. The operation panel 9 is provided with “operation on / off”, “selection”, and “off timer” switch buttons 10 in order from the top on the right side when viewed from the front, and strong, weak, water supply on the left side in order from the top. Each LED 11 indicating a turn-off timer is provided.

胴部4の両側面のハンドル取付部12には、ハンドル13の両端が回動可能に取り付けられている。正面からみて左側の側面下部には、ハンドル取付部12の下方の位置にマグネットプラグ受け14が設けられている。また、正面からみて右側の側面上部には、ハンドル取付部12の上方の位置に空気導入孔15が形成されている。   Both ends of the handle 13 are rotatably attached to the handle attachment portions 12 on both side surfaces of the body portion 4. A magnet plug receiver 14 is provided at a position below the handle mounting portion 12 at the lower part of the left side as viewed from the front. Further, an air introduction hole 15 is formed at a position above the handle mounting portion 12 in the upper part of the right side as viewed from the front.

肩体6の正面から見て右側の後方の角部には、後述する蓋体3の2つのヒンジアーム23が入る2つの凹部16が形成され、該凹部16にはヒンジ軸17が設けられている。これらの凹部16の底は、後述する蓋体3の環流通路35から本体2への結露水Wの流出路18を構成している。   Two concave portions 16 into which two hinge arms 23 of the lid body 3 to be described later are inserted are formed at the right rear corner portion of the shoulder body 6 as viewed from the front, and a hinge shaft 17 is provided in the concave portion 16. Yes. The bottoms of these recesses 16 constitute an outflow path 18 for the condensed water W from the circulation passage 35 of the lid 3 described later to the main body 2.

蓋体3は、蓋下板19と、蓋上板20と、カバー21と、遮熱板22とからなっている。   The lid 3 includes a lid lower plate 19, a lid upper plate 20, a cover 21, and a heat shield plate 22.

蓋下板19と蓋上板20は、上方から見て角の丸い略正方形を有している。蓋下板19は、図4に示すように有底筒形状で、その上端に蓋上板20が固着されている。図5に示すように、蓋上板20の4つの角部のうち1つの角部には2つのヒンジアーム23が突設されている。ヒンジアーム23の先端には前記本体2のヒンジ軸17に係合するU字形の係合凹部24が形成されている。図2に示すように、蓋上板20には、前記ヒンジ軸17に平行な対角線に対してヒンジ軸17側に上方からみて略半円形状の部分が蓋下板19に向かって凹んで蒸気室25が形成されている。   The lid lower plate 19 and the lid upper plate 20 have a substantially square shape with rounded corners when viewed from above. The lid lower plate 19 has a bottomed cylindrical shape as shown in FIG. 4, and the lid upper plate 20 is fixed to the upper end thereof. As shown in FIG. 5, two hinge arms 23 project from one corner of the four corners of the lid upper plate 20. A U-shaped engaging recess 24 that engages with the hinge shaft 17 of the main body 2 is formed at the tip of the hinge arm 23. As shown in FIG. 2, the lid upper plate 20 has a substantially semicircular portion recessed toward the lid lower plate 19 with respect to a diagonal parallel to the hinge shaft 17 as viewed from the upper side. A chamber 25 is formed.

蓋下板19には、図4に示すように、逆円錐台形状で通気孔26を有する2つの支持凹部27が形成され、これらの支持凹部27に同じく逆円錐台形状の栓体28がそれぞれ収容されている。支持凹部27は蒸気の流入口29を有するキャップ30により閉鎖されている。栓体28は、通常時には流入口29を開放して蒸気が流動する通路として機能し、転倒時には流入口29を閉鎖して本体2内の湯が流入口29を介して外部に漏出するのを防止する機能を有する。蓋上板20の下面には、前記キャップ30の外周に当接する環状壁31で囲まれた蒸気通路32が形成され、上面には、前記蒸気通路32と連通し蒸気を前記蒸気室25に向かって斜め下向きに噴出する蒸気噴出ノズル33が取り付けられている。   As shown in FIG. 4, the support lower plate 19 is formed with two support recesses 27 having an inverted frustoconical shape and a vent hole 26. Contained. The support recess 27 is closed by a cap 30 having a steam inlet 29. The plug 28 normally functions as a passage through which the inlet 29 is opened and the steam flows. When the cap 28 falls down, the inlet 29 is closed and hot water in the main body 2 leaks to the outside through the inlet 29. It has a function to prevent. A vapor passage 32 surrounded by an annular wall 31 abutting on the outer periphery of the cap 30 is formed on the lower surface of the lid upper plate 20, and the vapor communicates with the vapor passage 32 on the upper surface toward the vapor chamber 25. A steam ejection nozzle 33 that is ejected obliquely downward is attached.

蓋上板20の蒸気室25の側壁には、前記本体2の空気導入孔15と対向する位置に空気流入孔34が形成されている。   An air inflow hole 34 is formed in a side wall of the steam chamber 25 of the lid upper plate 20 at a position facing the air introduction hole 15 of the main body 2.

前記ヒンジアーム23には、前記蒸気室25と連通する流入口35aと、前記本体2の内部と連通する流出口35bを備えた環流通路35が形成されている。蒸気室25の側壁には、図5に示すように、蒸気室25の底部から環流通路35の流入口35aに至る溝状の流入路36が形成されている。流入路36と流入口35aを挟んで対向する位置には堰板37が設けられている。   The hinge arm 23 is formed with a circulation passage 35 having an inlet 35 a communicating with the steam chamber 25 and an outlet 35 b communicating with the inside of the main body 2. As shown in FIG. 5, a groove-shaped inflow path 36 extending from the bottom of the steam chamber 25 to the inlet 35 a of the circulation passage 35 is formed on the side wall of the steam chamber 25. A weir plate 37 is provided at a position facing the inflow path 36 and the inflow port 35a.

蓋上板20の前記蒸気室25の底壁には、図5に示すように、最も低い位置に結露水溜まり部38が形成され、結露水溜まり部38には、環流弁39によって開閉される環流孔40が形成されている。環流孔40は、内圧が高いときすなわち、内容器7が加熱されて内圧が上昇すると環流弁39が上昇して閉じられ、加熱が停止されて内圧が降下すると環流弁39が自重により下降して開かれ、蒸気室25に貯溜した結露水を本体2の内容器7内に環流する。   As shown in FIG. 5, a dew condensation water reservoir 38 is formed at the lowest position on the bottom wall of the steam chamber 25 of the lid upper plate 20. The dew condensation water reservoir 38 has a recirculation hole opened and closed by a recirculation valve 39. 40 is formed. When the internal pressure is high, that is, when the internal pressure rises and the internal pressure rises, the recirculation hole 40 rises and closes the recirculation valve 39. When the heating is stopped and the internal pressure falls, the recirculation valve 39 descends due to its own weight. The condensed water stored in the steam chamber 25 is circulated into the inner container 7 of the main body 2.

カバー21は、蒸気室25の上方開口を閉鎖するもので、蒸気が流出する多数の蒸気排出孔41が形成されている。   The cover 21 closes the upper opening of the steam chamber 25 and has a number of steam discharge holes 41 through which steam flows out.

遮熱板22は、図示しない蒸気孔を有するとともに、外周縁に蓋パッキン42を有し、蓋下板19にねじ止めされている。   The heat shield plate 22 has a vapor hole (not shown), a lid packing 42 on the outer peripheral edge, and is screwed to the lid lower plate 19.

次に、以上の構成からなる加湿器の動作を説明する。   Next, the operation of the humidifier having the above configuration will be described.

本体2の内容器7に水を収容し、蓋体3を閉じて「運転切/入」スイッチボタン10を押すと、ヒータ8に通電が開始され、水が沸騰する。本体2の内容器7内で発生する蒸気は、図4に示すように、遮熱板22の蒸気孔(不図示)から蓋体3に侵入し、蓋下板19の支持凹部27の通気口26、キャップ30の流入口29、蒸気噴出ノズル33を通って蒸気室25に噴出される。蒸気室25に噴出された蒸気は、蒸気室25の底面に沿って流動し、本体2の空気導入孔15(図2参照)を介して空気流入孔34(図2参照)から流入する空気と混合して、ある温度に低下された後、カバー21の蒸気排出孔41から外部に排出される。   When water is stored in the inner container 7 of the main body 2, the lid 3 is closed and the “running off / on” switch button 10 is pressed, energization of the heater 8 is started and the water boils. As shown in FIG. 4, the steam generated in the inner container 7 of the main body 2 enters the lid body 3 through a steam hole (not shown) of the heat shield plate 22, and vents the support recess 27 of the lid lower plate 19. 26, jetted into the steam chamber 25 through the inlet 29 of the cap 30 and the steam jet nozzle 33. The steam ejected into the steam chamber 25 flows along the bottom surface of the steam chamber 25, and the air flowing in from the air inflow hole 34 (see FIG. 2) through the air introduction hole 15 (see FIG. 2) of the main body 2. After being mixed and lowered to a certain temperature, it is discharged to the outside from the steam discharge hole 41 of the cover 21.

ヒータ8により内容器7内の水を加熱して蒸気が発生している間、環流弁39は内容器7内の内圧により上昇して環流孔40を閉鎖している。内圧がさらに上昇すると、図示しない安全弁が開放して内圧の上昇が抑制される。   While the water in the inner container 7 is heated by the heater 8 and steam is generated, the recirculation valve 39 rises due to the internal pressure in the inner container 7 and closes the recirculation hole 40. When the internal pressure further increases, a safety valve (not shown) is opened, and the increase in internal pressure is suppressed.

蒸気室25で結露した結露水Wは、図6に示すように、結露水溜まり部38に貯溜される。運転開始から所定時間経過する毎に強制的にヒータ8への通電を停止する。これにより、内容器7内の内圧が低下し、環流弁39が自重により降下し、環流孔40が開放され、結露水溜まり部38に貯溜された結露水が環流孔40から遮熱板22の蒸気孔(不図示)を介して内容器7内に環流される。   As shown in FIG. 6, the dew condensation water W condensed in the steam chamber 25 is stored in the dew condensation water reservoir 38. The energization of the heater 8 is forcibly stopped every time a predetermined time has elapsed from the start of operation. As a result, the internal pressure in the inner container 7 is reduced, the recirculation valve 39 is lowered by its own weight, the recirculation hole 40 is opened, and the dew condensation water stored in the dew condensation water reservoir 38 is vaporized from the recirculation hole 40 to the heat shield plate 22. It circulates in the inner container 7 through a hole (not shown).

水位の低下がLED11により表示され又は報知されると、ユーザは蓋体3を開放して水を補充する。図7(a)に示すように、蓋体3を開放してゆくと、蒸気室25の結露水溜まり部38に貯溜している結露水Wが蒸気室25の側壁の流入路36をヒンジアーム23に向かって流動し、図7(b)に示すようにヒンジアーム23の環流通路35の流入口35aに流入し、環流通路35を通ってその流出口35bから本体2の流出路18を通って内容器7内に環流する。ユーザが勢いよく蓋体3を開放しても、堰板37によって結露水Wが外部に飛散するのが防止される。   When the lowering of the water level is displayed or notified by the LED 11, the user opens the lid 3 and replenishes water. As shown in FIG. 7A, when the lid 3 is opened, the dew condensation water W stored in the dew condensation water reservoir 38 of the steam chamber 25 passes through the inflow path 36 on the side wall of the steam chamber 25 through the hinge arm 23. 7 (b), flows into the inlet 35a of the circulation passage 35 of the hinge arm 23, passes through the circulation passage 35, passes through the outlet 35b, and passes through the outlet passage 18 of the main body 2. It circulates in the inner container 7. Even if the user vigorously opens the lid 3, the dam plate 37 prevents the condensed water W from being scattered outside.

図8に示すように、本実施形態の本体2は上方から見て正方形であり、操作パネル9のある面を本体2の正面とすると、正面の両側にハンドル取付部12があり、空気導入孔15が本体の正面からみて右側のハンドル取付部12の上方に位置している。このような加湿器1では、本体2内の水を排水するとき、ユーザは空気導入孔15の側(A側)から排水することは避けるであろう。また、ハンドル13を持ってバケツのように排水することを考えると、ユーザは操作パネル9がある正面の側(B側)、又はその反対側(C側)から排水する虞れがある。
そこで、本実施形態では、マグネットプラグ受け14は、水が排水されやすいA,B,Cの側でなく、水が排水されにくいD側、すなわち本体2の正面からみて左側のハンドル取付部12の下方に位置させている。このため、水の排水時にマグネットプラグ受け14に排水がかかり、排水後にマグネットプラグを取り付ける際に感電やショートが生じる虞れがなく、安全である。
As shown in FIG. 8, the main body 2 of this embodiment is square when viewed from above, and when the surface on which the operation panel 9 is located is the front of the main body 2, there are handle attachment portions 12 on both sides of the front, 15 is located above the handle attachment portion 12 on the right side when viewed from the front of the main body. In such a humidifier 1, when draining the water in the main body 2, the user will avoid draining from the air introduction hole 15 side (A side). Further, considering that the handle 13 is drained like a bucket, the user may drain from the front side (B side) where the operation panel 9 is located or the opposite side (C side).
Therefore, in the present embodiment, the magnet plug receiver 14 is not located on the A, B, C side where water is easily drained, but on the D side where water is not easily drained, that is, the left side handle mounting portion 12 when viewed from the front of the main body 2. It is located below. For this reason, the magnet plug receiver 14 is drained when water is drained, and there is no risk of electric shock or short circuit when the magnet plug is attached after draining, which is safe.

ところで、従来、就寝時に切りタイマー(おやすみタイマー)を操作して部屋を暗くすると、操作パネル9のLED11が明るく点灯するため、睡眠が妨害されるという問題があった。本実施形態では、ユーザによる切りタイマーの操作が確定してから10秒経過後に全てのLED11の光量を強制的に減少させる。すなわち、図9に示すように、LED11の一端に5Vを印加し他端を抵抗Rを介してマイコンポートに接続した回路では、図10に示すように、通常点灯時にマイコンポートの出力をLow(0V)とし、通常消灯時にマイコンポートの出力をHi(5V)とするとともに、切りタイマー操作時にマイコンポートの出力を10ms周期で2msのみLow(0V)とする。これにより、光量が減少するので、ユーザの睡眠が妨害されることがなくなる。なお、代案として、図11に示すように、LED11の一端に5Vを印加し他端を抵抗R、Rを介して2つのマイコンポートA,Bに接続した回路では、通常点灯時にはマイコンポートAを常時Low(0V)とし、通常消灯時にマイコンポートAの出力をHi(5V)とするとともに、光量減少時にはマイコンポートBを常時Low(0V)とする。また、図12に示すように、LED11の一端に5Vを印加し他端を抵抗Rを介してマイコンポートAに接続するとともに3つのダイオードDを介してマイコンポートBに接続した回路では、通常点灯時にはマイコンポートAを常時Low(0V)とし、通常消灯時にマイコンポートAの出力をHi(5V)とするとともに、光量減少時にはマイコンポートBを常時Low(0V)とする。   By the way, conventionally, when a room is darkened by operating a turn-off timer (sleep timer) at bedtime, there is a problem that sleep is disturbed because the LED 11 of the operation panel 9 is lit brightly. In the present embodiment, the amount of light of all the LEDs 11 is forcibly decreased after 10 seconds have elapsed since the operation of the turning timer by the user is confirmed. That is, as shown in FIG. 9, in a circuit in which 5V is applied to one end of the LED 11 and the other end is connected to the microcomputer port via the resistor R, as shown in FIG. 0V), the microcomputer port output is set to Hi (5V) when the light is normally turned off, and the microcomputer port output is set to Low (0V) only for 2 ms in a 10 ms cycle when the turn-off timer is operated. Thereby, since a light quantity decreases, a user's sleep is not disturbed. As an alternative, as shown in FIG. 11, in a circuit in which 5 V is applied to one end of the LED 11 and the other end is connected to the two microcomputer ports A and B via resistors R and R, the microcomputer port A is not connected during normal lighting. The output of the microcomputer port A is always set to Hi (5 V) when the light is normally turned off, and the microcomputer port B is always set to Low (0 V) when the amount of light is reduced. Further, as shown in FIG. 12, in a circuit in which 5V is applied to one end of the LED 11 and the other end is connected to the microcomputer port A through the resistor R and is connected to the microcomputer port B through the three diodes D, it is normally lit. Sometimes, the microcomputer port A is always set to Low (0V), the output of the microcomputer port A is set to Hi (5V) when the light is normally turned off, and the microcomputer port B is always set to Low (0V) when the amount of light is reduced.

本発明に係る加湿器の斜視図。The perspective view of the humidifier which concerns on this invention. 図1の加湿器の分解斜視図。The disassembled perspective view of the humidifier of FIG. 図1の加湿器のカバーを外した平面図。The top view which removed the cover of the humidifier of FIG. 図3のIV−IV線断面図。IV-IV sectional view taken on the line of FIG. 図3のV−V線断面図。VV sectional view taken on the line of FIG. 図3のVI−VI線断面図。VI-VI sectional view taken on the line of FIG. (a),(b)は蓋体を開放するときの結露水の環流状態を示す断面図。(A), (b) is sectional drawing which shows the circulatory state of condensed water when a cover body is open | released. 本体のマグネットプラグ受けの位置を説明する斜視図。The perspective view explaining the position of the magnet plug receptacle of a main part. LEDの回路図。The circuit diagram of LED. LEDの光量制御方法を示すタイムチャート。The time chart which shows the light quantity control method of LED. LEDの他の回路図。The other circuit diagram of LED. LEDのさらに他の回路図。The other circuit diagram of LED.

1 加湿器
2 本体
3 蓋体
17 ヒンジ軸
18 流出路
23 ヒンジアーム(ヒンジ部)
25 蒸気室
35 環流通路
35a 流入口
35b 流出口
36 流入路
37 堰板
DESCRIPTION OF SYMBOLS 1 Humidifier 2 Main body 3 Lid body 17 Hinge shaft 18 Outflow path 23 Hinge arm (hinge part)
25 Steam chamber 35 Circulation passage 35a Inlet 35b Outlet 36 Inlet passage 37 Dam plate

Claims (2)

加熱された液体を収容する本体と、前記本体にヒンジ軸を介して開閉自在に取り付られ、前記本体から発生する蒸気が流通する蒸気室および該蒸気室の蒸気が流出する蒸気排出孔を備えた蓋体とからなる液体容器において、
前記蓋体に突設され前記ヒンジ軸が配置されるヒンジ部に形成され、前記蒸気室の上方の壁部を貫通し該蒸気室内の結露水が流入する流入口と、前記本体と連通し該本体に結露水が流出する流出口とを有し、前記蓋体の開放時に前記蒸気室に貯溜する結露水を受け入れて前記本体に環流する還流通路と、
前記蒸気室の内壁に、前記蓋体の開放時に結露水が前記環流通路に向かって流動するように形成された流入路と、
前記流入口を介して前記流入路と対峙する堰板と
を備えることを特徴とする液体容器。
A main body for containing heated liquid, a steam chamber attached to the main body through a hinge shaft so as to be opened and closed, a steam chamber through which steam generated from the main body flows, and a steam discharge hole through which the steam in the steam chamber flows out In a liquid container consisting of a lid,
An inlet that protrudes from the lid and is formed in a hinge portion where the hinge shaft is disposed, passes through a wall portion above the steam chamber and into which condensed water flows in the steam chamber, and communicates with the main body. A reflux passage through which the condensed water flows out to the main body, and accepts the condensed water stored in the steam chamber when the lid is opened, and circulates to the main body ;
An inflow passage formed on the inner wall of the steam chamber so that condensed water flows toward the circulation passage when the lid is opened;
A liquid container comprising a weir plate facing the inflow passage through the inflow port.
前記ヒンジ軸を前記本体に設けたことを特徴とする請求項1に記載の液体容器。   The liquid container according to claim 1, wherein the hinge shaft is provided in the main body.
JP2007132568A 2007-05-18 2007-05-18 Liquid container Expired - Fee Related JP4922827B2 (en)

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