JP2011025107A - Foam discharge container - Google Patents

Foam discharge container Download PDF

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JP2011025107A
JP2011025107A JP2009170527A JP2009170527A JP2011025107A JP 2011025107 A JP2011025107 A JP 2011025107A JP 2009170527 A JP2009170527 A JP 2009170527A JP 2009170527 A JP2009170527 A JP 2009170527A JP 2011025107 A JP2011025107 A JP 2011025107A
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air
piston
cylinder
chamber
air chamber
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JP5389557B2 (en
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Rie Ishii
理恵 石井
Hozumi Hirahara
穂積 平原
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Kao Corp
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Kao Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To introduce the open air into the air chamber in a cylinder expanded and contracted by an air piston by preventing the penetration of external water into the air chamber by a simple constitution in a foam discharge container. <P>SOLUTION: In the foam discharge container 10, an open air intake passage 71 is provided on the rear side of the air piston 70 in the cylinder 30 and a ventilation port 72, which is provided to the cylinder 30 so as to allow the open air intake passage 71 to communicate with the upper space of a container body 1, is provided at the position closed at the upper dead point of the air piston 70 by the air piston 70 and a suction check valve 73, which is always closed when the air chamber A is not depressurized but opened by the negative pressure of the air chamber A and permits the sucking of air into the air chamber A from the upper space of the container body 1 is provided to the bottom of the air chamber A formed in the cylinder 30. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は泡吐出器に関する。   The present invention relates to a foam dispenser.

泡吐出器として、特許文献1、2に記載の如く、容器本体の口部に固定したキャップに対し往復動可能に設けられる頭部を有し、頭部を往復動させることにより、容積可変の液室から内容液を、容積可変の空気室から空気を、それぞれ泡生成部に送り、この内容液と空気を泡生成部で混合発泡させ、生成した泡を頭部に設けた吐出口から吐出するに際し、頭部の往復動に連動して空気室を拡縮するエアピストンを設け、エアピストンにより拡張されて負圧になる空気室に外部の空気を吸入し、エアピストンにより収縮されて加圧される空気室の空気を泡生成部に送出するものがある。これらの泡吐出器では、エアピストンの空気室に対する裏側上部に外気取り込み室を設けるとともに、外気取り込み室と空気室を連通する空気の吸入口をエアピストンに設け、エアピストンに設けた空気の吸入口を開閉して外気取り込み室から空気室への空気の吸入を許容する吸入チェック弁を設けており、頭部とキャップの間の微小隙間を外気取り込み経路としている。   As described in Patent Documents 1 and 2, the foam discharger has a head portion that can be reciprocated with respect to a cap fixed to the mouth portion of the container body, and the volume can be changed by reciprocating the head portion. The content liquid from the liquid chamber and the air from the variable volume air chamber are respectively sent to the foam generation unit, the content liquid and air are mixed and foamed by the foam generation unit, and the generated foam is discharged from the discharge port provided in the head. In doing so, an air piston that expands and contracts the air chamber in conjunction with the reciprocation of the head is provided, and external air is drawn into the air chamber that is expanded by the air piston and becomes negative pressure, and is compressed by the air piston and compressed. There is one that sends the air in the air chamber to the bubble generator. In these bubble dischargers, an outside air intake chamber is provided in the upper part on the back side of the air piston with respect to the air chamber, an air intake port that communicates the outside air intake chamber and the air chamber is provided in the air piston, and the air intake provided in the air piston is provided. An intake check valve that opens and closes the mouth to allow air to be sucked into the air chamber from the outside air intake chamber is provided, and a minute gap between the head and the cap serves as an outside air intake path.

特開2005-193972JP2005-193972 特開2004-121898JP2004-121898

特許文献1、2に記載の泡吐出器では、エアピストンの空気室に対する裏側上部に設けた外気取り込み室に取り込んだ外部の空気を、エアピストンに設けた空気吸入口から空気室に吸入している。このとき、外気取り込み室に取り込んだ外部の空気には、使用環境(例えば風呂場に泡吐出器を置き、シャワー水がかかる場合等)によっては外水が混入する場合があり、この外水が外部の空気とともに空気室に浸入し、空気室に一旦浸入した外水は滞留しやすく、菌等を発生したり、泡生成部での泡生成を損なうおそれがある。   In the foam discharge devices described in Patent Documents 1 and 2, external air taken into the outside air intake chamber provided at the upper back side of the air piston with respect to the air chamber is sucked into the air chamber from the air suction port provided in the air piston. Yes. At this time, the outside air taken into the outside air intake chamber may be mixed in depending on the usage environment (for example, when a foam dispenser is placed in a bathroom and shower water is applied). The outside water enters the air chamber together with the external air, and the outside water that has once entered the air chamber is likely to stay, which may cause bacteria and the like and impair the bubble generation in the bubble generation unit.

本発明の課題は、泡吐出器において、簡易な構成により、エアピストンにより拡縮されるシリンダの内部の空気室への外水の浸入を防ぎ、空気室に外部の空気を吸入することにある。   An object of the present invention is to prevent intrusion of outside water into an air chamber inside a cylinder expanded and contracted by an air piston and to suck outside air into the air chamber with a simple configuration in the foam discharger.

請求項1の発明は、容器本体の口部に固定したキャップに対し往復動可能に設けられる頭部と容器本体の内部に設置されるシリンダを有し、頭部の往復動により、容積可変の液室から内容液が、容積可変の空気室から空気が、それぞれ泡生成部に送出され、この内容液と空気が泡生成部で混合発泡されて生成した泡が頭部に設けた吐出口から吐出可能にされ、頭部の往復動に連動するエアピストンがシリンダの内部に摺動可能に配置され、シリンダの内部のエアピストンの正面側に該エアピストンにより拡縮される空気室が形成され、エアピストンにより拡張されて負圧になる空気室に外部の空気を吸入し、エアピストンにより収縮されて加圧される空気室の空気を泡生成部に送出する泡吐出器であって、シリンダにおけるエアピストンの背面側に外気取り込み路が設けられ、この外気取り込み路を容器本体の上部空間に連通するようにシリンダに設けられる通気孔が、エアピストンの上死点で該エアピストンによって閉じられる位置に設けられ、空気室が負圧化されないときに常に閉じ、空気室の負圧により開かれて容器本体の上部空間から空気室への空気の吸入を許容する吸入チェック弁がシリンダの内部に形成されている空気室の底部に設けられたものである。   The invention of claim 1 has a head provided in a reciprocating manner with respect to a cap fixed to the mouth of the container main body, and a cylinder installed inside the container main body. The content liquid from the liquid chamber and the air from the variable volume air chamber are respectively sent to the foam generating unit, and the generated liquid and air are mixed and foamed by the foam generating unit from the discharge port provided in the head. An air piston that can be discharged and interlocked with the reciprocating movement of the head is slidably disposed inside the cylinder, and an air chamber that is expanded and contracted by the air piston is formed on the front side of the air piston inside the cylinder, A bubble discharger that sucks external air into an air chamber that is expanded by an air piston and becomes negative pressure, and sends air in the air chamber that is contracted and pressurized by the air piston to a bubble generation unit. Air piston back An outside air intake path is provided on the side, and a vent hole provided in the cylinder so as to communicate the outside air intake path with the upper space of the container body is provided at a position closed by the air piston at the top dead center of the air piston, Air in which a suction check valve is formed inside the cylinder that is always closed when the air chamber is not negatively pressured and opened by the negative pressure of the air chamber to allow air to be sucked into the air chamber from the upper space of the container body. It is provided at the bottom of the chamber.

請求項2の発明は、請求項1の発明において更に、前記吸入チェック弁が空気室と容器本体の上部空間との圧力差により開閉される弁体を備えるようにしたものである。   According to a second aspect of the present invention, in the first aspect of the present invention, the suction check valve further includes a valve body that is opened and closed by a pressure difference between the air chamber and the upper space of the container body.

請求項3の発明は、請求項1又は2の発明において更に、前記シリンダの空気室を形成している外周壁の下端部の高さ方向位置が、該空気室の底部と同じ高さ位置、又はより下方位置に設定されるようにしたものである。   In the invention of claim 3, in the invention of claim 1 or 2, the height direction position of the lower end of the outer peripheral wall forming the air chamber of the cylinder is the same height position as the bottom of the air chamber, Alternatively, the lower position is set.

(請求項1)
(a)シリンダにおけるエアピストンの背面側に設けた外気取り込み路に取り込んだ外部の空気を、シリンダに設けた通気孔から容器本体の上部空間に導き、シリンダの内部に形成されている空気室の底部に設けた空気吸入口から空気室に吸入する。外気取り込み路に取り込んだ外部の空気に外水が混入していても、この外水は容器本体の上部空間に到達してから容器本体の内部に落下し、空気室の底部の空気吸入口にほとんど回り込むことがない。従って、外水が外部の空気とともに空気室に浸入することがなく、空気室に滞留して菌等を発生したり、泡生成部での泡生成を損なうこともない。
(Claim 1)
(a) The outside air taken into the outside air intake passage provided on the back side of the air piston in the cylinder is led to the upper space of the container body from the vent hole provided in the cylinder, and the air chamber formed inside the cylinder The air is sucked into the air chamber from the air suction port provided at the bottom. Even if outside water is mixed into the outside air taken into the outside air intake path, the outside water reaches the upper space of the container body and then falls into the container body, and enters the air inlet at the bottom of the air chamber. There is almost no wraparound. Accordingly, the outside water does not enter the air chamber together with the outside air, and it does not stay in the air chamber to generate bacteria or the like, and does not impair the bubble generation in the bubble generation unit.

(b)シリンダにおけるエアピストンの上死点で該エアピストンによって閉じられる位置に通気孔を設け、シリンダの内部に形成されている空気室の底部の空気吸入口に吸入チェック弁を設けるだけの簡易な構成により、上述(a)の空気室への外水の浸入、滞留を防ぐことができる。   (b) Simple provision of a vent hole at a position where the air piston is closed by the air piston at the top dead center of the cylinder, and a suction check valve at the bottom of the air chamber formed inside the cylinder. With this configuration, it is possible to prevent the outside water from entering and staying in the air chamber (a).

(c)エアピストンが上死点で通気孔を閉じることにより、エアピストンが上死点に達した泡吐出器の待機状態で通気孔を閉じるものになる。従って、泡吐出器が待機状態で横に倒れる等があっても、容器本体の内部の内容液が上述の通気孔から外気取り込み路の側へ洩出することを防ぐことができる。   (c) When the air piston closes the vent hole at the top dead center, the air piston closes the vent hole in the standby state of the foam discharger that has reached the top dead center. Therefore, even if the foam discharger falls sideways in the standby state, it is possible to prevent the liquid inside the container body from leaking out from the vent hole to the outside air intake path side.

(請求項2)
(d)吸入チェック弁が空気室と容器本体の上部空間との圧力差により開閉される弁体を備えることにより、吸入チェック弁は空気室が負圧化されないとき(泡吐出器の待機状態を含む)に常に閉じ、空気室の負圧により開かれるものになる。
(Claim 2)
(d) Since the suction check valve is provided with a valve body that is opened and closed by the pressure difference between the air chamber and the upper space of the container body, the suction check valve can be used when the air chamber is not negatively Always closed and opened by the negative pressure of the air chamber.

(請求項3)
(e)シリンダの空気室を形成している外周壁の下端部の高さ方向位置が、該空気室の底部と同じ高さ位置、又はより下方位置に設定される。従って、容器本体1の内部に取り込まれる空気の流れに乗った外水が容器本体の内部に浸入しても、この外水はシリンダの外周壁を伝わって容器本体の内部に落下し、シリンダの内部に形成されている空気室の底部の空気吸入口にほとんど回り込むことがない。
(Claim 3)
(e) The height direction position of the lower end portion of the outer peripheral wall forming the air chamber of the cylinder is set to the same height position as the bottom portion of the air chamber or a lower position. Therefore, even if the outside water riding on the flow of air taken into the container body 1 enters the inside of the container body, the outside water travels along the outer peripheral wall of the cylinder and falls into the container body, It hardly wraps around the air inlet at the bottom of the air chamber formed inside.

図1は泡吐出器の初期状態を示す断面図である。FIG. 1 is a cross-sectional view showing an initial state of the foam discharger. 図2は泡吐出器の吐出開始状態を示す断面図である。FIG. 2 is a sectional view showing a discharge start state of the foam discharger. 図3は泡吐出器の吐出中間状態を示す断面図である。FIG. 3 is a cross-sectional view showing an intermediate discharge state of the foam discharger. 図4は泡吐出器の吐出完了/吸入開始状態を示す断面図である。FIG. 4 is a cross-sectional view showing a discharge completion / inhalation start state of the foam discharger. 図5は泡吐出器の吸入中間状態を示す断面図である。FIG. 5 is a cross-sectional view showing an intermediate suction state of the foam discharger. 図6は泡吐出器の変形例を示す断面図である。FIG. 6 is a cross-sectional view showing a modification of the foam discharger. 図7は図6の空気吸入構造を示す断面図である。7 is a cross-sectional view showing the air suction structure of FIG. 図8は吸入チェック弁を示す平面図である。FIG. 8 is a plan view showing the suction check valve. 図9は泡吐出器の変形例を示す断面図である。FIG. 9 is a cross-sectional view showing a modification of the foam discharger.

以下、本発明の実施の形態について、詳細に説明する。
泡吐出器10は、図1に示す如く、洗剤等の内容液が収容された容器本体1の口部1Aに、キャップ20の取付部20Aを固定する。キャップ20の取付部20Aの内側部にはシリンダ30の大径部30Aの上端部が突当てられ、大径部30Aの上端部はパッキン31とともに、キャップ20の取付部20Aの内側部と容器本体1の口部1Aとの間に挟圧固定される。
Hereinafter, embodiments of the present invention will be described in detail.
As shown in FIG. 1, the foam discharger 10 fixes the mounting portion 20 </ b> A of the cap 20 to the mouth portion 1 </ b> A of the container main body 1 in which a content liquid such as a detergent is accommodated. The upper end portion of the large-diameter portion 30A of the cylinder 30 is abutted against the inner portion of the attachment portion 20A of the cap 20, and the upper end portion of the large-diameter portion 30A together with the packing 31 and the inner portion of the attachment portion 20A of the cap 20 and the container body It is pinched and fixed between the 1 mouth part 1A.

シリンダ30は大径部30Aに連なる小径部30Bを有し、小径部30Bにディップチューブ32を嵌合し、このディップチューブ32を容器本体1の内部に挿入している。シリンダ30は、大径部30Aの内部に空気室Aを形成し、小径部30Bの内部に液室Lを形成する。キャップ20の筒部20Bには頭部40のステム41が上下方向に往復動可能に挿入される。泡吐出器10は、頭部40を往復動させることにより、容積可変の液室Lから内容液を、容積可変の空室Aから空気を、それぞれステム41の内部に設けてある後述する泡生成部80に送り、当該泡生成部80で混合発泡させ、生成した泡を頭部40に設けた吐出口42から吐出する。   The cylinder 30 has a small diameter portion 30B connected to the large diameter portion 30A. A dip tube 32 is fitted into the small diameter portion 30B, and the dip tube 32 is inserted into the container body 1. The cylinder 30 forms an air chamber A inside the large diameter portion 30A, and forms a liquid chamber L inside the small diameter portion 30B. A stem 41 of the head 40 is inserted into the cylindrical portion 20B of the cap 20 so as to reciprocate in the vertical direction. The foam discharger 10 reciprocates the head 40 to generate the later-described foam generation in which the content liquid is supplied from the variable volume liquid chamber L and the air is supplied from the variable volume empty chamber A, respectively. The foam is mixed and foamed by the foam generation unit 80, and the generated foam is discharged from the discharge port 42 provided in the head 40.

尚、本明細書において、上下とは、泡吐出器10の頭部40が後述する圧縮コイルばね53の付勢力に抗して押し込まれる往動方向に沿う方向を上下方向とし、頭部40が押し込まれる往動側を下側、頭部40が圧縮コイルばね53の付勢力により上がる復動側を上側とする。   In addition, in this specification, the up and down means the direction along the forward direction in which the head 40 of the foam discharger 10 is pushed against the urging force of the compression coil spring 53 described later as the up and down direction. The forward side to be pushed in is the lower side, and the backward side in which the head 40 is raised by the biasing force of the compression coil spring 53 is the upper side.

泡吐出器10に収容される洗剤等の内容液は防腐剤又は抗菌剤を添加される等により抗菌性を有する。防腐剤又は抗菌剤としては、例えば安息香酸、安息香酸パントテニルエチルエーテル、塩酸アルキルジアミノエチルグリシン、サリチル酸、ソルビン酸、デヒドロ酢酸、トリクロロヒドロキシジフェニルエーテル、パラオキシ安息香酸エステル、フェノキシエタノール、フェノール、ラウリルジアミノエチルグリシンナトリウム、イソプロピルメチルフェノール、塩化ベンザルコニウム、塩化ベンゼトニウム、塩酸クロルヘキシジシン、グルコン酸クロルヘキシジン、オルトフェニルフェノール、臭化アルキルイソキノリニウム、チモール、トリクロロカルバニリド、ハロカルバン、ヒノキチオール、2−メチル−4−イソチアゾリン−3−オン、5−クロロ−2−メチル−4−イソチアゾリン−3−オン、1,2−ベンゾイソチアゾリン−3−オン、ポリリジン、亜鉛塩、銀塩の1つ或いは複数の組合せを用いることができる。   The content liquid such as a detergent contained in the foam dispenser 10 has antibacterial properties by adding a preservative or an antibacterial agent. Examples of the antiseptic or antibacterial agent include benzoic acid, benzoic acid pantothenyl ethyl ether, alkyldiaminoethylglycine hydrochloride, salicylic acid, sorbic acid, dehydroacetic acid, trichlorohydroxydiphenyl ether, p-hydroxybenzoic acid ester, phenoxyethanol, phenol, lauryl diaminoethylglycine Sodium, isopropylmethylphenol, benzalkonium chloride, benzethonium chloride, chlorhexidicin hydrochloride, chlorhexidine gluconate, orthophenylphenol, alkylisoquinolinium bromide, thymol, trichlorocarbanilide, halocarban, hinokitiol, 2- Methyl-4-isothiazolin-3-one, 5-chloro-2-methyl-4-isothiazolin-3-one, 1,2-benzisothiazoline- - can be used on, polylysine, zinc salts, one or more combinations of a silver salt.

泡吐出器10は、頭部40の吐出口42に通ずるステム41の下端中空部に中空ピストンガイド51を嵌合固定し、ピストンガイド51の下端中空部に中空の液ピストン52の中空筒部52Aを嵌合固定し、液ピストン52の外周ピストン部52Bをシリンダ30の小径部30Bの内壁に摺動可能に挿入し、小径部30Bの下端側ばね受部33と後述するポペット60の下端バルブ62の上端面と液ピストン52との間に圧縮コイルばね53を介装している。即ち、頭部40を押しているときには、圧縮コイルばね53の下端部が小径部30Bの下端側ばね受部33に支持されるとともに、ポペット60の下端バルブ62の上端面は圧縮コイルばね53の下端部から離れる。頭部40から手を離したときには、圧縮コイルばね53の下端部が小径部30Bの下端側ばね受部33に支持されるとともに、ポペット60の下端バルブ62の上端面は圧縮コイルばね53の下端部に接する。泡吐出器10は、ピストンガイド51と液ピストン52の中空部を液室Lから延在する液吐出路54とし、ピストンガイド51における液吐出路54の上端部には上端側弁座51Aが設けられ、弁座51Aには液吐出路54からの圧力によって開くボール弁55が密接して載置される。   In the foam discharger 10, the hollow piston guide 51 is fitted and fixed to the lower end hollow portion of the stem 41 that communicates with the discharge port 42 of the head 40, and the hollow cylindrical portion 52 </ b> A of the hollow liquid piston 52 is fitted to the lower end hollow portion of the piston guide 51. Are fitted and fixed, and the outer peripheral piston portion 52B of the liquid piston 52 is slidably inserted into the inner wall of the small diameter portion 30B of the cylinder 30, and the lower end side spring receiving portion 33 of the small diameter portion 30B and the lower end valve 62 of the poppet 60 described later. A compression coil spring 53 is interposed between the upper end surface of the liquid piston 52 and the liquid piston 52. That is, when the head 40 is pushed, the lower end portion of the compression coil spring 53 is supported by the lower end side spring receiving portion 33 of the small diameter portion 30B, and the upper end surface of the lower end valve 62 of the poppet 60 is the lower end of the compression coil spring 53. Leave the department. When the hand is released from the head 40, the lower end portion of the compression coil spring 53 is supported by the lower end side spring receiving portion 33 of the small diameter portion 30B, and the upper end surface of the lower end valve 62 of the poppet 60 is the lower end of the compression coil spring 53. Touch the part. The bubble discharger 10 uses a hollow portion of the piston guide 51 and the liquid piston 52 as a liquid discharge passage 54 extending from the liquid chamber L, and an upper end side valve seat 51A is provided at the upper end portion of the liquid discharge passage 54 in the piston guide 51. The ball valve 55 that is opened by the pressure from the liquid discharge passage 54 is placed in close contact with the valve seat 51A.

泡吐出器10は、シリンダ30の小径部30Bから液ピストン52、ピストンガイド51に沿って延在するポペット60を有し、ポペット60の上端部61をピストンガイド51及び液ピストン52の内周に摩擦嵌合し、ポペット60の下端バルブ62を小径部30Bの下端側弁座34(小径部30Bの下端に形成された縮径領域)に密接して配置し、容器本体1の内部に対して液室Lを開閉する。ポペット60の外周溝と液ピストン52の内周との間、更にはピストンガイド51の内周溝との間が前述の液吐出路54とされる。ポペット60は下端側の領域においてコイルばね53の中心部に延在する。ポペット60の下端バルブ62は液ピストン52により収縮されて加圧される液室Lの液圧により下端側弁座34に押圧されて閉じ状態とされる。液室Lが最大拡張端にある図1の初期状態で、コイルばね53はポペット60が上方へ移動しない程度に下端バルブ62の上端面に接している。   The foam discharger 10 has a poppet 60 extending from the small diameter portion 30 </ b> B of the cylinder 30 along the liquid piston 52 and the piston guide 51, and the upper end portion 61 of the poppet 60 is arranged on the inner periphery of the piston guide 51 and the liquid piston 52. The lower end valve 62 of the poppet 60 is placed in close contact with the lower end side valve seat 34 of the small diameter portion 30B (the reduced diameter region formed at the lower end of the small diameter portion 30B). The liquid chamber L is opened and closed. The liquid discharge path 54 is formed between the outer peripheral groove of the poppet 60 and the inner periphery of the liquid piston 52 and further between the inner peripheral groove of the piston guide 51. The poppet 60 extends to the center of the coil spring 53 in the lower end side region. The lower end valve 62 of the poppet 60 is closed by being pressed against the lower end side valve seat 34 by the liquid pressure of the liquid chamber L that is contracted and pressurized by the liquid piston 52. In the initial state of FIG. 1 in which the liquid chamber L is at the maximum extended end, the coil spring 53 is in contact with the upper end surface of the lower end valve 62 so that the poppet 60 does not move upward.

泡吐出器10は、頭部40の上下の往復動に連動して液室L内を上下動するピストンガイド51及び液ピストン52を有し、ポペット60の下端バルブ62がピストンガイド51及び液ピストン52の上動に連動して弁座34から離れ、かつ液ピストン52の上動により拡張される液室Lに容器本体1の内容液を吸入し、ポペット60の下端バルブ62がピストンガイド51及び液ピストン52の下動に連動して弁座34に接し、かつ液ピストン52の下動により収縮される液室Lの内容液を液吐出路54経由で弁座51Aと離れて開かれたボール弁55から後述する泡生成部80に吐出する。   The foam discharger 10 has a piston guide 51 and a liquid piston 52 that move up and down in the liquid chamber L in conjunction with the vertical reciprocation of the head 40, and the lower end valve 62 of the poppet 60 is connected to the piston guide 51 and the liquid piston. The liquid in the container body 1 is sucked into the liquid chamber L which is separated from the valve seat 34 in conjunction with the upward movement of the liquid 52 and expanded by the upward movement of the liquid piston 52, and the lower end valve 62 of the poppet 60 is connected to the piston guide 51 and A ball opened in contact with the valve seat 34 in conjunction with the downward movement of the liquid piston 52 and separated from the valve seat 51A via the liquid discharge path 54 for the liquid in the liquid chamber L contracted by the downward movement of the liquid piston 52. It discharges from the valve | bulb 55 to the foam production | generation part 80 mentioned later.

即ち、泡吐出器10は、頭部40の上下の往復動に連動して液室L内を上下動する液ピストン52を有し、頭部40が上動する吸入行程で液ピストン52の上動により拡張される液室Lに容器本体1の抗菌性のある内容液を吸入し、頭部40が押込下動される吐出行程で液ピストン52の下動により収縮される液室Lの内容液を後述する泡生成部80に吐出する。   That is, the foam discharger 10 has a liquid piston 52 that moves up and down in the liquid chamber L in conjunction with the up and down reciprocation of the head 40, and the top of the liquid piston 52 in the suction stroke in which the head 40 moves up. The liquid chamber L that is expanded by movement sucks the antibacterial content liquid of the container body 1, and the content of the liquid chamber L is contracted by the downward movement of the liquid piston 52 in the discharge stroke in which the head 40 is pushed down. The liquid is discharged to a foam generation unit 80 described later.

泡吐出器10は、ピストンガイド51の外周にエアピストン70の中空筒部70Aを遊挿し、エアピストン70のピストン部70Bの外周リング部70Cをシリンダ30の大径部30Aの内壁に摺動自在に挿入し、シリンダ30の内部のエアピストン70の正面側(頭部40に対する反対側)に該エアピストン70により拡縮される空気室Aを形成する。本実施例では、頭部40のステム41の下端段差状内周孔にエアピストン70の筒部70Aの上端部を挿入し、頭部40を図1の初期状態から僅かに下動させたときに、ステム41の内周孔の段差面がエアピストン70の筒部70Aの上端面に突き当たる一定の時間差の後、頭部40(ピストンガイド51、液ピストン52も一体)の下動によりエアピストン70も下動させる。従って、エアピストン70はピストンガイド51の外周に沿ってピストンガイド51の中間フランジ部51Bに衝合するまで僅かに上下相対移動可能にし、それらの間に後述する空気送出口75Aを形成可能にする(図2)。   In the bubble discharger 10, the hollow cylindrical portion 70 </ b> A of the air piston 70 is loosely inserted on the outer periphery of the piston guide 51, and the outer peripheral ring portion 70 </ b> C of the piston portion 70 </ b> B of the air piston 70 is slidable on the inner wall of the large diameter portion 30 </ b> A. The air chamber A that is expanded and contracted by the air piston 70 is formed on the front side of the air piston 70 inside the cylinder 30 (the side opposite to the head 40). In the present embodiment, when the upper end portion of the cylindrical portion 70A of the air piston 70 is inserted into the lower end stepped inner peripheral hole of the stem 41 of the head portion 40, and the head portion 40 is moved slightly downward from the initial state of FIG. Furthermore, after a certain time difference in which the step surface of the inner peripheral hole of the stem 41 hits the upper end surface of the cylindrical portion 70A of the air piston 70, the air piston is moved downward by the downward movement of the head 40 (the piston guide 51 and the liquid piston 52 are also integrated). 70 is also moved down. Accordingly, the air piston 70 is slightly movable up and down along the outer periphery of the piston guide 51 until it abuts with the intermediate flange portion 51B of the piston guide 51, and an air delivery port 75A described later can be formed therebetween. (FIG. 2).

泡吐出器10は、シリンダ30におけるエアピストン70の背面側(頭部40の側)に外気取り込み路71を設ける。外気取り込み路71は、頭部40のステム41とキャップ20の筒部20Bとの微小環状間隙と、キャップ20とエアピストン70のピストン部70Bの上面との間隙を有し、キャップ20の筒部20Bの上端側に外気取り込み口71Aを設ける。   The foam discharger 10 is provided with an outside air intake path 71 on the back side (the head 40 side) of the air piston 70 in the cylinder 30. The outside air intake path 71 has a minute annular gap between the stem 41 of the head 40 and the cylinder portion 20B of the cap 20, and a gap between the cap 20 and the upper surface of the piston portion 70B of the air piston 70, and the cylinder portion of the cap 20 An outside air intake port 71A is provided on the upper end side of 20B.

泡吐出器10は、この外気取り込み路71をシリンダ30に設けた通気孔72により容器本体1の上部空間に連通させるに際し、この通気孔72を、シリンダ30におけるエアピストン70の上死点(頭部40の上下の往復動に連動するエアピストン70の上動端位置)で該エアピストン70のピストン部70B(外周リング70C)により閉じられる位置に設ける。本実施例においては、エアピストン70のピストン部70Bの外周リング部70Cが上死点より下側にあるとき、通気孔72は開かれて外気取り込み路71を容器本体1の上部空間に連通する。エアピストン70のピストン部70Bの外周リング部70Cは上死点において通気孔72を閉じ、外気取り込み路71と容器本体1の上部空間との連通を遮断する。   When the bubble discharger 10 communicates the outside air intake passage 71 with the upper space of the container body 1 through the vent hole 72 provided in the cylinder 30, the vent hole 72 is connected to the top dead center (head) of the air piston 70 in the cylinder 30. The piston 40 is provided at a position that is closed by the piston portion 70 </ b> B (outer ring 70 </ b> C) of the air piston 70 at the upper moving end position of the air piston 70 that is interlocked with the vertical reciprocation of the portion 40. In the present embodiment, when the outer peripheral ring portion 70C of the piston portion 70B of the air piston 70 is below the top dead center, the vent hole 72 is opened and the outside air intake path 71 is communicated with the upper space of the container body 1. . The outer peripheral ring portion 70C of the piston portion 70B of the air piston 70 closes the vent hole 72 at the top dead center and blocks communication between the outside air intake path 71 and the upper space of the container body 1.

尚、通気孔72は、泡吐出器10の泡生成のために、空気室Aに吸入すべき空気量と、容器本体1から液室Lに導入される内容液の減量に見合う空気量との合計空気量を、外気取り込み路71から容器本体1の上部空間へ取り入れ可能にするものであり、この合計空気量の導入に足りる孔数、孔径を備える必要がある。   In addition, the air hole 72 is configured so that the amount of air to be sucked into the air chamber A and the amount of air commensurate with the decrease in the content liquid introduced from the container body 1 into the liquid chamber L in order to generate bubbles in the foam discharger 10. The total amount of air can be taken into the upper space of the container main body 1 from the outside air intake path 71, and it is necessary to have the number of holes and the hole diameter sufficient to introduce the total amount of air.

泡吐出器10は、容器本体1の上部空間から空気室Aへの空気の吸入を許容する吸入チェック弁73を、シリンダ30の内部に形成されている空気室Aの底部に有している。また、泡吐出器10は、吸入チェック弁73により開閉される空気吸入口74を上記空気室Aの底部に設けている。本実施例において、空気吸入口74はシリンダ30の大径部30Aの底部であって、小径部30Bの外周に沿う複数位置のそれぞれに設けられる。吸入チェック弁73は、シリンダ30の内部で、小径部30Bの上端側外周における空気吸入口74の直上部に固定的に嵌合支持される環状支持部73Aを備える。そして、吸入チェック弁73は、空気室Aの圧力変化により、空気室Aと容器本体1の上部空間との圧力差で作動して空気吸入口74を開閉するように、シリンダ30の大径部30Aの底部における空気吸入口74の周囲に設けた弁座に接離する可撓環状弁体73Bを備える。   The foam discharger 10 has a suction check valve 73 that allows suction of air from the upper space of the container body 1 into the air chamber A at the bottom of the air chamber A formed inside the cylinder 30. Further, the foam discharger 10 is provided with an air suction port 74 opened and closed by a suction check valve 73 at the bottom of the air chamber A. In the present embodiment, the air inlet 74 is provided at each of a plurality of positions along the outer periphery of the small diameter portion 30B, which is the bottom of the large diameter portion 30A of the cylinder 30. The suction check valve 73 includes an annular support portion 73A that is fixedly fitted and supported directly above the air suction port 74 on the upper end side outer periphery of the small diameter portion 30B inside the cylinder 30. The suction check valve 73 is operated by a pressure difference between the air chamber A and the upper space of the container body 1 due to a pressure change in the air chamber A, and opens and closes the air suction port 74. A flexible annular valve body 73B that contacts and separates from a valve seat provided around the air inlet port 74 at the bottom of 30A is provided.

これにより、泡吐出器10の待機状態及び吐出行程で、吸入チェック弁73は空気室Aが負圧化されないとき(泡吐出器10の待機状態を含む)に常に閉じる。吸入チェック弁73は空気室Aがエアピストン70の下動により収縮されて加圧されるときにこの加圧力により可撓環状弁体73Bをシリンダ30の大径部30Aの底部の弁座に押当てて閉じ、泡吐出器10の待機状態(初期状態)ではシリンダ30の大径部30Aの底部の弁座に当たる閉じ習性を可撓環状弁体73B自体に備える。   Thus, in the standby state and the discharge stroke of the foam discharger 10, the suction check valve 73 is always closed when the air chamber A is not negatively pressured (including the standby state of the foam discharger 10). The suction check valve 73 pushes the flexible annular valve body 73B against the valve seat at the bottom of the large-diameter portion 30A of the cylinder 30 by this pressure when the air chamber A is contracted and pressurized by the downward movement of the air piston 70. The flexible annular valve body 73 </ b> B itself has a closing behavior that hits the valve seat at the bottom of the large-diameter portion 30 </ b> A of the cylinder 30 in the standby state (initial state) of the foam dispenser 10.

他方、泡吐出器10の吸入行程で、吸入チェック弁73は空気室Aがエアピストン70の上動により拡張されて負圧化されるときにこの負圧力により可撓環状弁体73Bをシリンダ30の大径部30Aの底部の弁座から離隔させるように撓ませて開き、容器本体1の上部空間から空気室Aへの空気の吸入を許容する。   On the other hand, in the suction stroke of the foam discharger 10, when the air chamber A is expanded by the upward movement of the air piston 70 and the suction check valve 73 is made negative pressure, the negative pressure causes the flexible annular valve body 73 B to move to the cylinder 30. The large-diameter portion 30A is bent and opened so as to be separated from the valve seat at the bottom of the large-diameter portion 30A, and air suction from the upper space of the container body 1 to the air chamber A is allowed.

従って、泡吐出器10にあっては、キャップ20の筒部20Bの上端側の外気取り込み口71Aから取り込まれる外気が、キャップ20の筒部20Bと頭部40のステム41の微小間隙、及びキャップ20とエアピストン70の微小間隙を有する外気取り込み路71、シリンダ30の大径部30Aの上部に設けた通気孔72を通り、容器本体1の上部空間に導かれる。容器本体1の上部空間に導かれた外気に混入していた水(ゴミ等の異物も同じ)は重力の作用で容器本体1の内部に落下して分離され、水が分離された空気が大径部30Aの外側部の側方から、大径部30Aの底部に設けた空気吸入口74、吸入チェック弁73を通って空気室Aに取り込まれる。   Therefore, in the foam discharger 10, the outside air taken in from the outside air intake port 71A on the upper end side of the cylinder portion 20B of the cap 20 is a minute gap between the cylinder portion 20B of the cap 20 and the stem 41 of the head 40, and the cap. 20 and the air piston 70 through the outside air intake path 71 having a minute gap and the vent hole 72 provided in the upper portion of the large diameter portion 30A of the cylinder 30 and led to the upper space of the container body 1. The water mixed in the outside air introduced into the upper space of the container body 1 (the same as foreign matter such as dust) falls into the container body 1 due to the action of gravity and is separated, and the air from which the water is separated is large. From the side of the outer side of the diameter portion 30A, the air is taken into the air chamber A through the air suction port 74 and the suction check valve 73 provided at the bottom of the large diameter portion 30A.

泡吐出器10は、ピストンガイド51の外周溝とエアピストン70の筒部70Aの内周との間、更にピストンガイド51の外周とステム41の内周溝との間の上下に続く空気送出路75を設け、ピストンガイド51の中間フランジ部51Bとエアピストン70の筒部70Aの下端とが空気送出口75Aを開閉する開閉弁76を形成する。開閉弁76は、頭部40の下動時に頭部40とともに下動するピストンガイド51の中間フランジ部51Bをエアピストン70の筒部70Aの下端から離隔させてそれらの間に空気送出口75Aを開き(図2、3)、頭部40の上動時に該頭部40とともに上動するピストンガイド51の中間フランジ部51Bをエアピストン70の筒部70Aの下端に下から衝合させてそれらの下端間の空気送出口75Aを閉じる(図4)。   The foam discharger 10 has an air delivery path that extends between the outer peripheral groove of the piston guide 51 and the inner periphery of the cylindrical portion 70A of the air piston 70, and further between the outer periphery of the piston guide 51 and the inner peripheral groove of the stem 41. 75, and the intermediate flange portion 51B of the piston guide 51 and the lower end of the cylindrical portion 70A of the air piston 70 form an on-off valve 76 that opens and closes the air outlet 75A. The on-off valve 76 separates the intermediate flange portion 51B of the piston guide 51 that moves downward together with the head portion 40 when the head portion 40 is moved downward from the lower end of the cylindrical portion 70A of the air piston 70, and provides an air outlet 75A therebetween. Opening (FIGS. 2 and 3), the intermediate flange portion 51B of the piston guide 51 that moves up together with the head portion 40 when the head portion 40 moves upward is brought into contact with the lower end of the cylindrical portion 70A of the air piston 70 from below. The air outlet 75A between the lower ends is closed (FIG. 4).

尚、頭部40は、筒状カバー77を吊下げ、カバー77によりステム41及びキャップ20の筒部20Bの上領域を囲み、カバー77の下端部によりキャップ20の筒部20Bまわりに微小間隙を形成する。カバー77は外気取り込み路71への外水の浸入を困難にする。   The head 40 suspends the cylindrical cover 77, surrounds the upper region of the stem 41 and the cylindrical portion 20 </ b> B of the cap 20 with the cover 77, and forms a minute gap around the cylindrical portion 20 </ b> B of the cap 20 with the lower end of the cover 77. Form. The cover 77 makes it difficult for the outside water to enter the outside air intake path 71.

即ち、泡吐出器10は、頭部40の上下の往復動に連動して空気室A内を上下動するエアピストン70をシリンダ30の大径部30Aの内部に摺動可能に挿入し、頭部40が上動する吸入行程でエアピストン70の上動により拡張されて負圧になる空気室Aに外部の空気を吸入し、頭部40が押込下動される吐出行程でエアピストン70の下動により収縮されて加圧される空気室Aの空気を後述する泡生成部80に送出する。   That is, the bubble discharger 10 slidably inserts an air piston 70 that moves up and down in the air chamber A in conjunction with the up and down reciprocation of the head 40 into the large diameter portion 30A of the cylinder 30 to External air is sucked into the air chamber A, which is expanded by the upward movement of the air piston 70 in the suction stroke in which the portion 40 moves upward and becomes negative pressure, and the air piston 70 is moved in the discharge stroke in which the head 40 is pushed down. The air in the air chamber A that is contracted and pressurized by the downward movement is sent to the foam generation unit 80 described later.

泡吐出器10は、頭部40の吐出口42に泡生成部80を備える。泡生成部80は、液吐出路54と空気送出路75の会合領域(ボール弁55の直上部)に設けたジェットリング81により空気と内容液とを混合発泡し、この発泡された内容液をジェットリング81の上側に配置したメッシュリング82に貼ったメッシュ82Aを通すことにより細かな泡を生成し、吐出口42から吐出可能にする。   The foam discharger 10 includes a foam generation unit 80 at the discharge port 42 of the head 40. The bubble generation unit 80 mixes and foams the air and the content liquid by the jet ring 81 provided in the meeting region (directly above the ball valve 55) of the liquid discharge path 54 and the air delivery path 75, and the foamed content liquid is used. Fine bubbles are generated by passing the mesh 82A attached to the mesh ring 82 disposed on the upper side of the jet ring 81, and can be discharged from the discharge port 42.

泡吐出器10は以下の如く動作する。
(動作1)(図2)
(1)図1の待機状態(初期状態)から頭部40を押すと最初に頭部40と一体となって、ピストンガイド51、液ピストン52、ポペット60が下へ下がる。
The foam dispenser 10 operates as follows.
(Operation 1) (FIG. 2)
(1) When the head 40 is pushed from the standby state (initial state) in FIG. 1, the piston guide 51, the liquid piston 52, and the poppet 60 are first lowered together with the head 40.

(2)ポペット60の下端バルブ62がシリンダ30の小径部30Bの弁座34に当たり(IA部分)、液室Lを閉じる。   (2) The lower end valve 62 of the poppet 60 hits the valve seat 34 of the small diameter portion 30B of the cylinder 30 (IA portion), and the liquid chamber L is closed.

(3)エアピストン70はこの時点では動かないため(頭部40とエアピストン70の上端の隙間が狭くなる)(IB部分)、エアピストン70の筒部70Aの下端とピストンガイド51の中間フランジ部51Bの間に隙間ができ、空気室Aの送出口75Aとなる(IC部分)。   (3) Since the air piston 70 does not move at this point (the gap between the head 40 and the upper end of the air piston 70 becomes narrower) (IB portion), the lower end of the cylindrical portion 70A of the air piston 70 and the intermediate flange of the piston guide 51 A gap is formed between the portions 51B, and serves as an outlet 75A of the air chamber A (IC portion).

(動作2)(図3)
(1)頭部40を更に押すと、頭部40と一体となって、ピストンガイド51、液ピストン52、エアピストン70が下へ下がる。
(Operation 2) (FIG. 3)
(1) When the head 40 is further pushed, the piston guide 51, the liquid piston 52, and the air piston 70 are lowered downward together with the head 40.

(2)空気室A内の空気は空気送出路75を通り、液室L内の液は液吐出路54を通り、泡生成部80のジェットリング81の部分で混合され泡となる。泡はメッシュリング82に貼られたメッシュ82Aを通り細かな泡となって頭部40の吐出口42から吐出される。   (2) The air in the air chamber A passes through the air delivery path 75, and the liquid in the liquid chamber L passes through the liquid discharge path 54 and is mixed in the portion of the jet ring 81 of the foam generating unit 80 to become bubbles. The bubbles pass through the mesh 82A attached to the mesh ring 82 and are discharged as fine bubbles from the discharge port 42 of the head 40.

(3)エアピストン70が上述(1)により上死点から一定ストローク下動すると、エアピストン70のピストン部70Bの外周リング部70Cがシリンダ30の上部の通気孔72から下方に離れる。従って、当該通気孔72が開放状態となり、外気取り込み路71から導かれる外気が通気孔72経由で容器本体1の上部空間に導入される。   (3) When the air piston 70 moves downward by a fixed stroke from the top dead center according to the above (1), the outer peripheral ring portion 70C of the piston portion 70B of the air piston 70 is separated downward from the vent hole 72 in the upper portion of the cylinder 30. Accordingly, the vent hole 72 is opened, and the outside air guided from the outside air intake path 71 is introduced into the upper space of the container body 1 through the vent hole 72.

(動作3)(図4)
(1)頭部40を押すのをやめて頭部40から手を離すと、頭部40と一体となって、ピストンガイド51、液ピストン52、ポペット60がコイルばね53のばね力で上がる。
(Operation 3) (FIG. 4)
(1) When the pressing of the head 40 is stopped and the hand is released from the head 40, the piston guide 51, the liquid piston 52, and the poppet 60 are raised by the spring force of the coil spring 53 together with the head 40.

(2)ポペット60の下端がシリンダ30の小径部30Bの弁座34から離れ隙間ができ(IIIA部分)、液室Lを開く。   (2) The lower end of the poppet 60 is separated from the valve seat 34 of the small diameter portion 30B of the cylinder 30 to form a gap (IIIA portion), and the liquid chamber L is opened.

(3)エアピストン70はこの時点では動かないため(頭部40とエアピストン70の上端の隙間が広くなる)(IIIB部分)、エアピストン70の筒部70Bの下端とピストンガイド51の中間フランジ部51Bの隙間が閉じ、空気送出口75Aが閉じられる(IIIC部分)。   (3) Since the air piston 70 does not move at this time (the gap between the head 40 and the upper end of the air piston 70 becomes wider) (IIIB portion), the lower end of the cylindrical portion 70B of the air piston 70 and the intermediate flange of the piston guide 51 The gap of the part 51B is closed, and the air outlet 75A is closed (IIIC part).

(動作4)(図5)
(1)頭部40が更に上昇すると、頭部40と一体となって、ピストンガイド51、液ピストン52、エアピストン70が上昇する。
(Operation 4) (FIG. 5)
(1) When the head 40 further rises, the piston guide 51, the liquid piston 52, and the air piston 70 rise together with the head 40.

(2)空気室A内は負圧となるため、吸入チェック弁73が開き、容器本体1の上部空間に導入された外気が空気吸入口74を通り空気室A内へ吸入される。また、液室L内も負圧となるため、容器本体1内の内容液がディップチューブ32を通って液室Lへ導入される。   (2) Since the air chamber A has a negative pressure, the suction check valve 73 is opened, and the outside air introduced into the upper space of the container body 1 is sucked into the air chamber A through the air suction port 74. Since the liquid chamber L also has a negative pressure, the content liquid in the container body 1 is introduced into the liquid chamber L through the dip tube 32.

(3)図1の待機状態(初期状態)に戻る。   (3) Return to the standby state (initial state) in FIG.

本実施例によれば以下の作用効果を奏する。
(a)シリンダ30におけるエアピストン70の背面側に設けた外気取り込み路71に取り込んだ外部の空気を、シリンダ30に設けた通気孔72から容器本体1の上部空間に導き、シリンダ30の内部に形成されている空気室Aの底部に設けた空気吸入口74から空気室Aに吸入する。外気取り込み路71に取り込んだ外部の空気に外水が混入していても、この外水は容器本体1の上部空間に到達してから容器本体1の内部に落下し、空気室Aの底部の空気吸入口74にほとんど回り込むことがない。従って、外水が外部の空気とともに空気室Aに浸入することがなく、空気室Aに滞留して菌等を発生したり、泡生成部80での泡生成を損なうこともない。
According to the present embodiment, the following operational effects can be obtained.
(a) External air taken into the outside air intake passage 71 provided on the back side of the air piston 70 in the cylinder 30 is guided to the upper space of the container body 1 from the vent hole 72 provided in the cylinder 30, and enters the inside of the cylinder 30. The air is sucked into the air chamber A from the air suction port 74 provided at the bottom of the formed air chamber A. Even if outside water is mixed into the outside air taken into the outside air intake path 71, the outside water reaches the upper space of the container body 1 and then falls into the container body 1. Almost no air wraps around the air inlet 74. Therefore, the outside water does not enter the air chamber A together with the outside air, and the water stays in the air chamber A and does not generate bacteria or impair the bubble generation in the bubble generation unit 80.

(b)シリンダ30におけるエアピストン70の上死点で該エアピストン70によって閉じられる位置に通気孔72を設け、シリンダ30の内部に形成されている空気室Aの底部の空気吸入口74に吸入チェック弁73を設けるだけの簡易な構成により、上述(a)の空気室Aへの外水の浸入、滞留を防ぐことができる。   (b) A vent hole 72 is provided at a position where the air piston 70 is closed by the air piston 70 at the top dead center in the cylinder 30, and the air is sucked into the air suction port 74 at the bottom of the air chamber A formed inside the cylinder 30. With a simple configuration in which only the check valve 73 is provided, it is possible to prevent the outside water from entering and staying in the air chamber A described above (a).

(c)エアピストン70が上死点で通気孔72を閉じることにより、エアピストン70が上死点に達した泡吐出器10の待機状態で通気孔72を閉じるものになる。従って、泡吐出器10が待機状態で横に倒れる等があっても、容器本体1の内部の内容液が上述の通気孔72から外気取り込み路71の側へ洩出することを防ぐことができる。図1に示すように本実施形態では、ピストン部70Bの外周リング部70Cが通気孔72より充分大きく設定されている為、容器本体1の内部の内容液が上述の通気孔72から外気取り込み路71の側へ洩出することを防ぐことができる。   (c) When the air piston 70 closes the vent hole 72 at the top dead center, the vent hole 72 is closed in the standby state of the foam discharger 10 when the air piston 70 reaches the top dead center. Therefore, even if the foam discharger 10 falls to the side in the standby state, the content liquid inside the container body 1 can be prevented from leaking from the vent hole 72 to the outside air intake path 71 side. . As shown in FIG. 1, in the present embodiment, the outer peripheral ring portion 70C of the piston portion 70B is set sufficiently larger than the vent hole 72, so that the content liquid inside the container body 1 can be taken in from the vent hole 72 to the outside air intake path. Leaking to the 71 side can be prevented.

(d)吸入チェック弁73が空気室Aと容器本体1の上部空間との圧力差により開閉される弁体73Bを備えることにより、吸入チェック弁73は空気室Aが負圧化されないとき(泡吐出器10の待機状態を含む)に常に閉じ、空気室Aの負圧により開かれるものになる。   (d) Since the suction check valve 73 includes a valve body 73B that is opened and closed by a pressure difference between the air chamber A and the upper space of the container body 1, the suction check valve 73 is used when the air chamber A is not negatively pressured (foam Always including the standby state of the discharger 10) and opened by the negative pressure of the air chamber A.

図6の泡吐出器10が図1〜図5の泡吐出器10と異なる点は、吸入チェック弁73を吸入チェック弁90に替えたことにある。吸入チェック弁90は、シリンダ30の大径部30Aの底部であって、大径部30Aの内周と、小径部30Bの周囲に立設された中径部30Cの外周との間に固定的に組込まれる。   The bubble dispenser 10 in FIG. 6 differs from the bubble dispenser 10 in FIGS. 1 to 5 in that the suction check valve 73 is replaced with a suction check valve 90. The intake check valve 90 is a bottom portion of the large diameter portion 30A of the cylinder 30 and is fixed between the inner periphery of the large diameter portion 30A and the outer periphery of the medium diameter portion 30C standing around the small diameter portion 30B. Incorporated.

吸入チェック弁90は、図7、図8に示す如く、外周支持部91、内周支持部92、可撓外周連結部93、可撓内周連結部94、環状弁体95を有して構成される。吸入チェック弁90は、大径部30Aの内周に外周支持部91を固定的に嵌合支持し、中径部30Cの外周に内周支持部92を固定的に嵌合支持し、外周支持部91の内周の周方向複数位置に複数の可撓外周連結部93を連結し、内周支持部92の外周の周方向複数位置に複数の可撓内周連結部94を連結し、各可撓外周連結部93の内側端と各可撓内周連結部94の外側端のそれぞれをそれら連結部93と連結部94の間に配置される環状弁体95の外周と内周のそれぞれに連結して構成される。   As shown in FIGS. 7 and 8, the suction check valve 90 includes an outer peripheral support portion 91, an inner peripheral support portion 92, a flexible outer peripheral connection portion 93, a flexible inner peripheral connection portion 94, and an annular valve body 95. Is done. The suction check valve 90 fixedly supports the outer periphery support portion 91 on the inner periphery of the large diameter portion 30A, and fixedly supports the inner periphery support portion 92 on the outer periphery of the medium diameter portion 30C. A plurality of flexible outer peripheral connecting portions 93 are connected to a plurality of circumferential positions on the inner periphery of the portion 91, and a plurality of flexible inner peripheral connecting portions 94 are connected to a plurality of circumferential positions on the outer periphery of the inner peripheral support portion 92. The inner end of the flexible outer peripheral connecting portion 93 and the outer end of each flexible inner peripheral connecting portion 94 are respectively connected to the outer periphery and inner periphery of the annular valve body 95 disposed between the connecting portion 93 and the connecting portion 94. Concatenated.

吸入チェック弁90は、図8の平面視で外周支持部91の内周と内周支持部92の外周の間の空間であって、可撓外周連結部93と可撓内周連結部94と環状弁体95が配置されない空間を、これらの可撓外周連結部93と可撓内周連結部94と環状弁体95により塞がれない空気通路になる空隙部として備える。   The suction check valve 90 is a space between the inner periphery of the outer peripheral support portion 91 and the outer periphery of the inner peripheral support portion 92 in a plan view of FIG. 8, and includes a flexible outer peripheral connection portion 93 and a flexible inner peripheral connection portion 94. A space in which the annular valve body 95 is not provided is provided as a gap portion that becomes an air passage that is not blocked by the flexible outer peripheral connection portion 93, the flexible inner peripheral connection portion 94, and the annular valve body 95.

そして、吸入チェック弁90は、自由状態の可撓外周連結部93と可撓内周連結部94により、環状弁体95をシリンダ30の大径部30Aの底部の空気吸入口74まわりに突設した環状弁座に当てる中立位置に位置付け、空気吸入口74を閉じる。   The suction check valve 90 has an annular valve body 95 projecting around the air suction port 74 at the bottom of the large-diameter portion 30A of the cylinder 30 by a flexible outer peripheral connection portion 93 and a flexible inner peripheral connection portion 94 in a free state. The air suction port 74 is closed at a neutral position where it is in contact with the annular valve seat.

これにより、泡吐出器10の待機状態及び吐出行程で、吸入チェック弁90は、空気室Aが負圧化されないとき(泡吐出器10の待機状態を含む)に常に閉じる。吸入チェック弁90は、空気室Aがエアピストン70の下動により収縮されて加圧されるときに、この加圧力により環状弁体95を中立位置においてシリンダ30の大径部30Aの底部の環状弁座に押当てて閉じる。吸入チェック弁90は泡吐出器10の待機状態(初期状態)では環状弁体95を中立位置に設定し、該環状弁体95をシリンダ30の大径部30Aの底部の環状弁座に当てて閉じる。   Thereby, in the standby state and the discharge stroke of the foam discharger 10, the suction check valve 90 is always closed when the air chamber A is not negatively pressured (including the standby state of the foam discharger 10). When the air chamber A is contracted and pressurized by the downward movement of the air piston 70, the suction check valve 90 causes the annular valve body 95 to be annular at the bottom of the large-diameter portion 30A of the cylinder 30 in the neutral position. Close by pressing against the valve seat. The suction check valve 90 sets the annular valve body 95 to a neutral position in the standby state (initial state) of the foam discharger 10, and places the annular valve body 95 against the annular valve seat at the bottom of the large-diameter portion 30 </ b> A of the cylinder 30. close.

他方、泡吐出器10の吸入行程で、吸入チェック弁90は、空気室Aがエアピストン70の上動により拡張されて負圧化されたときに、この負圧力により可撓外周連結部93、可撓内周連結部94を撓ませ、環状弁体95をシリンダ30の大径部30Aの底部の環状弁座から離隔させて開き、容器本体1の上部空間から空気室Aへの空気の吸入を許容する。   On the other hand, when the air chamber A is expanded by the upward movement of the air piston 70 in the suction stroke of the foam discharger 10, the suction check valve 90 is made negative pressure by the flexible outer peripheral connecting portion 93, The flexible inner peripheral connecting portion 94 is bent, the annular valve body 95 is opened apart from the annular valve seat at the bottom of the large diameter portion 30A of the cylinder 30, and air is sucked into the air chamber A from the upper space of the container body 1. Is allowed.

尚、外気に混入していたゴミ等の異物も、外気取り込み路71から容器本体1の上部空間に導かれたとき、重力の作用によって容器本体1の内部に落下し、吸入チェック弁73、90等に噛み込む等がなくなり、エアピストン70の吸入/送出機能を安定維持する。   It should be noted that foreign matters such as dust mixed in the outside air also fall into the inside of the container body 1 due to the action of gravity when guided from the outside air intake path 71 to the upper space of the container body 1, and the suction check valves 73 and 90. Therefore, the air piston 70 can maintain the suction / delivery function stably.

図9の泡吐出器10が図1〜図5の泡吐出器10と異なる点は、シリンダ30の空気室Aを形成している大径部30Aの外周壁の下端部78の高さ方向位置が、空気室Aの底部、本実施例では大径部30Aの底部に対し、より下方位置に設定されている(同じ高さ位置でも可)。シリンダ30の大径部30Aの外周壁の下端部78が、前述の吸入チェック弁73、空気吸入口74が設けられている大径部30Aの底部と同等高さ又はより下方に延在することで、容器本体1の内部に取り込まれる空気の流れに乗った外水が容器本体1の内部に浸入しても、この外水は大径部30Aの外周壁を伝わってその下端部78から容器本体1の内部に落下し、大径部30Aの底部に設けられている吸入チェック弁73、空気吸入口74の側にほとんど回り込むことがない。   9 is different from the foam dispenser 10 of FIGS. 1 to 5 in that the position in the height direction of the lower end portion 78 of the outer peripheral wall of the large-diameter portion 30A forming the air chamber A of the cylinder 30 is different. However, it is set at a lower position with respect to the bottom of the air chamber A, in this embodiment, the bottom of the large-diameter portion 30A (the same height position is also possible). The lower end portion 78 of the outer peripheral wall of the large-diameter portion 30A of the cylinder 30 extends to the same height as or lower than the bottom portion of the large-diameter portion 30A where the intake check valve 73 and the air suction port 74 are provided. Thus, even if the outside water riding on the flow of air taken into the container body 1 enters the inside of the container body 1, the outside water travels along the outer peripheral wall of the large diameter portion 30A and from the lower end 78 to the container. It falls into the main body 1 and hardly wraps around the suction check valve 73 and the air suction port 74 provided at the bottom of the large diameter portion 30A.

本発明は、泡吐出器において、簡易な構成により、エアピストンにより拡縮されるシリンダの内部の空気室への外水の浸入を防ぎ、空気室に外部の空気を吸入することができる。   According to the present invention, in the bubble discharger, with a simple configuration, it is possible to prevent intrusion of outside water into the air chamber inside the cylinder expanded and contracted by the air piston, and to suck outside air into the air chamber.

1 容器本体
1A 口部
10 泡吐出器
20 キャップ
30 シリンダ
40 頭部
42 吐出口
52 液ピストン
70 エアピストン
71 外気取り込み路
72 通気孔
73 吸入チェック弁
74 空気吸入口
78 外周壁の下端部
80 泡生成部
90 吸入チェック弁
A 空気室
L 液室
DESCRIPTION OF SYMBOLS 1 Container body 1A Mouth part 10 Foam discharger 20 Cap 30 Cylinder 40 Head 42 Discharge port 52 Liquid piston 70 Air piston 71 Outside air intake path 72 Vent hole 73 Suction check valve 74 Air suction port 78 Lower end 80 of outer peripheral wall Bubble generation 90 Intake check valve A Air chamber L Liquid chamber

Claims (3)

容器本体の口部に固定したキャップに対し往復動可能に設けられる頭部と容器本体の内部に設置されるシリンダを有し、頭部の往復動により、容積可変の液室から内容液が、容積可変の空気室から空気が、それぞれ泡生成部に送出され、この内容液と空気が泡生成部で混合発泡されて生成した泡が頭部に設けた吐出口から吐出可能にされ、
頭部の往復動に連動するエアピストンがシリンダの内部に摺動可能に配置され、シリンダの内部のエアピストンの正面側に該エアピストンにより拡縮される空気室が形成され、エアピストンにより拡張されて負圧になる空気室に外部の空気を吸入し、エアピストンにより収縮されて加圧される空気室の空気を泡生成部に送出する泡吐出器であって、
シリンダにおけるエアピストンの背面側に外気取り込み路が設けられ、この外気取り込み路を容器本体の上部空間に連通するようにシリンダに設けられる通気孔が、エアピストンの上死点で該エアピストンによって閉じられる位置に設けられ、
空気室が負圧化されないときに常に閉じ、空気室の負圧により開かれて容器本体の上部空間から空気室への空気の吸入を許容する吸入チェック弁がシリンダの内部に形成されている空気室の底部に設けられた泡吐出器。
It has a head that can be reciprocated with respect to the cap fixed to the mouth of the container body and a cylinder that is installed inside the container body. Air is sent from each of the volume-variable air chambers to the foam generation unit, and the content liquid and air are mixed and foamed in the foam generation unit, and the generated foam is made dischargeable from the discharge port provided in the head.
An air piston interlocked with the reciprocation of the head is slidably disposed inside the cylinder, and an air chamber that is expanded and contracted by the air piston is formed on the front side of the air piston inside the cylinder, and is expanded by the air piston. A bubble discharger that sucks external air into a negative pressure air chamber and sends the air in the air chamber compressed and compressed by the air piston to the bubble generation unit,
An outside air intake path is provided on the back side of the air piston in the cylinder, and a vent hole provided in the cylinder so as to communicate the outside air intake path with the upper space of the container body is closed by the air piston at the top dead center of the air piston. Provided at a position,
Air in which a suction check valve is formed inside the cylinder that is always closed when the air chamber is not negatively pressured and opened by the negative pressure of the air chamber to allow air to be sucked into the air chamber from the upper space of the container body. A foam dispenser at the bottom of the chamber.
前記吸入チェック弁が空気室と容器本体の上部空間との圧力差により開閉される弁体を備える請求項1に記載の泡吐出器。   The foam discharger according to claim 1, wherein the suction check valve includes a valve body that is opened and closed by a pressure difference between the air chamber and the upper space of the container body. 前記シリンダの空気室を形成している外周壁の下端部の高さ方向位置が、該空気室の底部と同じ高さ位置、又はより下方位置に設定される請求項1又は2に記載の泡吐出器。
The bubble according to claim 1 or 2, wherein a height direction position of a lower end portion of the outer peripheral wall forming the air chamber of the cylinder is set at the same height position as the bottom portion of the air chamber or a lower position. Dispenser.
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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011025144A (en) * 2009-07-23 2011-02-10 Kao Corp Foam discharge container
JP2011156445A (en) * 2010-01-29 2011-08-18 Kao Corp Air bubble discharger
JP2015163514A (en) * 2014-02-28 2015-09-10 株式会社吉野工業所 Foam discharger
JP2015163515A (en) * 2014-02-28 2015-09-10 株式会社吉野工業所 Foam discharger
JP2015163518A (en) * 2014-02-28 2015-09-10 株式会社吉野工業所 Foam discharger
JP2016101963A (en) * 2014-11-28 2016-06-02 花王株式会社 Foam discharging device
CN109717599A (en) * 2019-01-29 2019-05-07 洽兴包装工业(中国)有限公司 Prevent the cosmetics containers of nozzle discharge hole tear drop
JP7141068B1 (en) * 2021-03-22 2022-09-22 大成化工株式会社 discharge container

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EP1199105A1 (en) * 2001-07-17 2002-04-24 Guala Dispensing S.P.A. Foaming device
JP2008142608A (en) * 2006-12-08 2008-06-26 Kao Corp Foam discharge container
JP2009525845A (en) * 2006-02-07 2009-07-16 レクサム エアースプレー エヌ ブイ Self-cleaning foam dispenser
JP2009202097A (en) * 2008-02-27 2009-09-10 Kao Corp Bubble discharging device

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1199105A1 (en) * 2001-07-17 2002-04-24 Guala Dispensing S.P.A. Foaming device
JP2009525845A (en) * 2006-02-07 2009-07-16 レクサム エアースプレー エヌ ブイ Self-cleaning foam dispenser
JP2008142608A (en) * 2006-12-08 2008-06-26 Kao Corp Foam discharge container
JP2009202097A (en) * 2008-02-27 2009-09-10 Kao Corp Bubble discharging device

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011025144A (en) * 2009-07-23 2011-02-10 Kao Corp Foam discharge container
JP2011156445A (en) * 2010-01-29 2011-08-18 Kao Corp Air bubble discharger
JP2015163514A (en) * 2014-02-28 2015-09-10 株式会社吉野工業所 Foam discharger
JP2015163515A (en) * 2014-02-28 2015-09-10 株式会社吉野工業所 Foam discharger
JP2015163518A (en) * 2014-02-28 2015-09-10 株式会社吉野工業所 Foam discharger
JP2016101963A (en) * 2014-11-28 2016-06-02 花王株式会社 Foam discharging device
CN109717599A (en) * 2019-01-29 2019-05-07 洽兴包装工业(中国)有限公司 Prevent the cosmetics containers of nozzle discharge hole tear drop
JP7141068B1 (en) * 2021-03-22 2022-09-22 大成化工株式会社 discharge container
WO2022202842A1 (en) * 2021-03-22 2022-09-29 大成化工株式会社 Discharge container

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