JP2012145144A - Water spouting device - Google Patents

Water spouting device Download PDF

Info

Publication number
JP2012145144A
JP2012145144A JP2011002333A JP2011002333A JP2012145144A JP 2012145144 A JP2012145144 A JP 2012145144A JP 2011002333 A JP2011002333 A JP 2011002333A JP 2011002333 A JP2011002333 A JP 2011002333A JP 2012145144 A JP2012145144 A JP 2012145144A
Authority
JP
Japan
Prior art keywords
opening
operation button
pressing
water
flow rate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP2011002333A
Other languages
Japanese (ja)
Other versions
JP5685089B2 (en
Inventor
Kenichi Katayama
健一 片山
Koji Hiramoto
耕治 平本
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Toto Ltd
Nifco Inc
Original Assignee
Toto Ltd
Nifco Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Toto Ltd, Nifco Inc filed Critical Toto Ltd
Priority to JP2011002333A priority Critical patent/JP5685089B2/en
Publication of JP2012145144A publication Critical patent/JP2012145144A/en
Application granted granted Critical
Publication of JP5685089B2 publication Critical patent/JP5685089B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Mechanically-Actuated Valves (AREA)
  • Domestic Plumbing Installations (AREA)
  • Fluid-Driven Valves (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a water spouting device that can perform the adjustment operation of a water spouting flow rate without changing a position of an operation button.SOLUTION: This water spouting device 1 comprises: valve units 14, 16 in which main valve bodies 14a are opened and closed by depression operations, and openings of the main valve bodies are changed by rotation operations; opening and closing buttons 6, 10 which open and close the main valve bodies of the valve units by the depression operations, and switch the spouting and stopping of water; and flow-rate operation means 8, 18 which are connected to ends at sides of the opening and closing buttons of the valve units, open and close the main valve bodies of the valve units by translationally moving to the valve units, and adjust the water spouting flow rate by rotatively moving by the rotation operations. Interval adjusting means 6i 18a and 18b for performing adjustment so that an interval between an opening and closing button part and the valve units may be constant irrespective of the rotation operations of the flow-rate operation means are arranged between a face at the side of the flow-rate operation means of the opening and closing button part and a face at the side of the opening and closing button part of the flow-rate operation means.

Description

本発明は、吐水装置に係わり、特に、押圧操作により吐水と止水を切り替え、回転操作により吐水流量を調整する吐水装置に関する。   The present invention relates to a water discharge device, and more particularly to a water discharge device that switches between water discharge and water stop by a pressing operation and adjusts the water discharge flow rate by a rotating operation.

従来から、浴室やキッチン等に使用される吐水装置として、例えば、特許文献1〜4に記載されているように、押しボタン等を手で押圧操作して吐水と止水を切り替え、回転操作により吐水流量を調整することができる、いわゆる「タッチ水栓」と呼ばれる吐水装置が知られている。
特許文献1及び特許文献2に記載されている吐水装置では、吐水装置本体に内蔵されたパイロット弁を操作ボタンの操作により移動させることにより、パイロット弁の移動量に応じた主弁体の開度を調整して吐水流量を調整することができるようになっている。
また、特許文献3及び特許文献4に記載されている吐水装置は、上述した特許文献1及び特許文献2に記載されたようなパイロット弁の移動量に応じて主弁体の開度を調整して吐水流量を調整するものではなく、パイロット弁以外に別途に設けられた流量調節部材や流量調節弁による流量調節手段によって吐水流量を調整している。
Conventionally, as a water discharge device used in a bathroom or kitchen, for example, as described in Patent Documents 1 to 4, a push button or the like is manually pressed to switch between water discharge and water stop, and by rotation operation. A so-called “touch faucet” that can adjust the water discharge flow rate is known.
In the water discharge device described in Patent Document 1 and Patent Document 2, the opening degree of the main valve body according to the movement amount of the pilot valve is obtained by moving the pilot valve built in the water discharge device body by operating the operation button. The water discharge flow rate can be adjusted by adjusting.
Moreover, the water discharging apparatus described in Patent Document 3 and Patent Document 4 adjusts the opening degree of the main valve body according to the movement amount of the pilot valve as described in Patent Document 1 and Patent Document 2 described above. However, the discharged water flow rate is not adjusted but the discharged water flow rate is adjusted by a flow rate adjusting member or a flow rate adjusting member provided separately from the pilot valve.

特開2007−85525号公報JP 2007-85525 A 特開2008−231686号公報JP 2008-231686 A 特開2001−98596号公報JP 2001-98596 A 特開2008−256141号公報JP 2008-256141 A

しかしながら、上述した従来の吐水装置においては、パイロット弁や流量調節手段に直接的又は間接的に連結されている操作ボタンが、吐水流量の調整操作に伴って、パイロット弁や流量調節手段と共に軸方向に移動し、操作ボタンの取付面に対して外側又は内側方向に移動する。このため、例えば、浴室や洗面台の壁面等に吐水装置の本体が埋め込まれているタイプの吐水装置の操作ボタンの場合には、操作ボタンが取り付けられる取付面と操作ボタン自体の表面が互いに面一に合わせることができず、このように操作ボタンの面が取付面と面一に合わない状態になると、突出した状態の操作ボタンに使用者から過大な押圧力や不意な力が加えられ、操作ボタンが破損したりするおそれがあるという問題がある。
同様に、例えば、シャワー吐水用とカラン吐水用の複数の操作ボタンを備えた吐水装置の場合にも、互いの操作ボタンの表面が面一に合わない状態になると、突出した状態の操作ボタンの方に使用者から過大な押圧力や不意な力が加えられ、操作ボタンが破損したりするおそれがあるという問題がある。
However, in the conventional water discharge device described above, the operation button connected directly or indirectly to the pilot valve and the flow rate adjusting means is axially moved together with the pilot valve and the flow rate adjusting means along with the operation of adjusting the water discharge flow rate. And move outward or inward with respect to the mounting surface of the operation button. For this reason, for example, in the case of an operation button of a water discharge device of the type in which the main body of the water discharge device is embedded in the wall surface of a bathroom or a wash basin, the mounting surface to which the operation button is attached and the surface of the operation button itself face each other If the surface of the operation button is not flush with the mounting surface in this way, excessive pressing force or unexpected force is applied from the user to the protruding operation button, There is a problem that the operation button may be damaged.
Similarly, for example, in the case of a water discharge device including a plurality of operation buttons for shower water discharge and currant water discharge, when the surfaces of the operation buttons are not flush with each other, On the other hand, there is a problem that an excessive pressing force or unexpected force is applied from the user, and the operation button may be damaged.

そこで、本発明は、上述した従来の問題を解決するためになされたものであり、操作ボタンの位置を変化させることなく吐水流量の調整操作を行うことができる吐水装置を提供することを目的としている。   Then, this invention was made | formed in order to solve the conventional problem mentioned above, and it aims at providing the water discharging apparatus which can perform the adjustment operation of the water discharge flow rate, without changing the position of an operation button. Yes.

上記の目的を達成するために、本発明は、押圧操作により吐水と止水を切り替え、回転操作により吐水流量を調整する吐水装置であって、主弁体を備え、押圧操作により上記主弁体が開閉し、回転操作により上記主弁体の開度が変化するバルブユニットと、使用者の押圧操作によって上記バルブユニットの主弁体を開閉させ、吐水と止水を切り替える開閉操作ボタン部と、上記バルブユニットの開閉操作ボタン部側の端部に連結され、上記開閉操作ボタン部からの押圧操作によって上記バルブユニットに対して並進移動して上記バルブユニットの主弁体を開閉させ、使用者の回転操作によって回転移動して吐水流量を調整する流量操作手段と、を有し、上記開閉操作ボタン部の流量操作手段側の面と上記流量操作手段の開閉操作ボタン部側の面との間には、上記流量操作手段の回転操作にかかわらず上記開閉操作ボタン部と上記バルブユニットとの間隔が一定になるように調整する間隔調整手段が設けられていることを特徴としている。
このように構成された本発明においては、開閉操作ボタン部の流量操作手段側の面と流量操作手段の開閉操作ボタン部側の面との間に設けられた間隔調整手段により、流量操作手段の回転操作にかかわらず開閉操作ボタン部とバルブユニットとの間隔が一定になるように調整することができる。したがって、開閉操作ボタン部の位置を変化させることなく流量操作手段の回転操作を行って、吐水流量の調整操作を行ったとしても、例えば、開閉操作ボタン部が取り付けられる取付位置の面と開閉操作ボタン部の表面とを互いに面一に合わせることができ、開閉操作ボタン部に隣接して他の開閉操作ボタン部を設けた場合には、双方の開閉操作ボタン部の表面を互いに面一に合わせることもできる。さらに、開閉操作ボタン部が取付位置の面外に突出することを防ぎ、突出した状態の開閉操作ボタン部に不意な力が加わって開閉操作ボタン部が破損したりするのを未然に防ぐことができる。また、開閉操作ボタン部の流量操作手段側の面と流量操作手段の開閉操作ボタン部側の面との間に間隔調整手段を設けたことにより、バルブユニット自体の設計変更を行う必要がないため、既存のバルブユニットにも容易に適用することができる。
In order to achieve the above object, the present invention is a water discharger that switches between water discharge and water stop by a pressing operation and adjusts the water discharge flow rate by a rotating operation, comprising a main valve body, and the main valve body by a pressing operation. Is opened and closed, the valve unit in which the opening degree of the main valve body is changed by a rotation operation, and an opening / closing operation button unit that opens and closes the main valve body of the valve unit by a user's pressing operation, and switches between water discharge and water stop, The valve unit is connected to an end of the valve unit on the side of the opening / closing operation part, and is moved in translation with respect to the valve unit by a pressing operation from the opening / closing operation button part to open / close the main valve body of the valve unit. Flow operation means for adjusting the water discharge flow rate by rotational movement, and a surface on the flow operation means side of the opening / closing operation button section and an opening operation button section side of the flow operation means section And between, is characterized by gap adjusting means for adjusting so that the distance between the opening and closing operation button portion and the valve unit regardless of the rotation operation of the flow rate operating means is constant is provided.
In the present invention thus configured, the flow rate adjusting means is provided by the interval adjusting means provided between the flow control means side surface of the open / close operation button portion and the open / close operation button side surface of the flow rate operation means. Regardless of the rotation operation, the distance between the opening / closing operation button unit and the valve unit can be adjusted to be constant. Therefore, even if the rotation operation of the flow rate operation means is performed without changing the position of the opening / closing operation button part, and the adjustment operation of the discharged water flow rate is performed, for example, the surface of the mounting position where the opening / closing operation button part is attached and the opening / closing operation The surface of the button part can be flush with each other, and when another opening / closing button part is provided adjacent to the opening / closing button part, the surfaces of both opening / closing button parts are flush with each other. You can also. Furthermore, the opening / closing operation button part is prevented from protruding out of the mounting position, and the opening / closing operation button part is prevented from being damaged due to unexpected force applied to the protruding opening / closing operation button part. it can. In addition, since the gap adjusting means is provided between the flow control means side surface of the open / close operation button part and the open / close operation button part side surface of the flow rate operation means, it is not necessary to change the design of the valve unit itself. It can be easily applied to existing valve units.

本発明において、好ましくは、上記開閉操作ボタン部は、使用者によって押圧される操作ボタン部材と、この操作ボタン部材に設けられ、使用者の押圧操作により上記間隔調整手段を押圧するように上記操作ボタン部材を回動可能に支持するヒンジ手段と、を備えている。
このように構成された本発明においては、使用者が開閉操作ボタン部の操作ボタン部材を押圧した際に、操作ボタン部材が過大な押圧力を要することなく、ヒンジ手段により回動して間隔調整手段を効果的に押圧することができる。また、使用者による操作ボタン部材への押圧操作により、間隔調整手段を介して流量操作手段及びバルブユニットを効果的に並進移動させて吐水と止水を効率よく切り替えることができる。
In the present invention, preferably, the opening / closing operation button portion is provided on the operation button member pressed by the user and the operation button member, and the operation is performed so as to press the interval adjusting means by the user's pressing operation. Hinge means for rotatably supporting the button member.
In the present invention configured as described above, when the user presses the operation button member of the opening / closing operation button portion, the operation button member is rotated by the hinge means without excessive pressure, and the interval is adjusted. The means can be effectively pressed. Further, by the user's pressing operation on the operation button member, the flow rate operation means and the valve unit can be effectively translated through the interval adjustment means, and water discharge and water stop can be switched efficiently.

本発明において、好ましくは、上記間隔調整手段は、上記流量操作手段の開閉操作ボタン部側の面の上記回転操作の回転の中心に対して円周方向に沿って延びた所定の領域に形成されて上記開閉操作ボタン部に向って突出する凸部を備え、この凸部の開閉操作ボタン部側の端面は、上記円周方向に沿ってほぼ螺旋状に傾斜しながら延びる傾斜部を形成し、上記間隔調整手段は、更に、上記傾斜部に上記押圧操作による押圧力を伝達可能に上記開閉操作ボタン部の流量操作手段側の面から流量操作手段側に突出する押圧操作用突起を備えている。
このように構成された本発明においては、流量操作手段の開閉操作ボタン部側の面に開閉操作ボタン部に向って突出する凸部を形成し、この凸部の開閉操作ボタン部側の端面を円周方向に沿ってほぼ螺旋状に傾斜しながら延びる傾斜部を間隔調整手段の構成の一つとする共に、この傾斜部に押圧操作による押圧力を伝達可能にする開閉操作ボタン部の押圧操作用突起を間隔調整手段の構成の一つとする簡単な構成により、流量操作手段の回転操作にかかわらず開閉操作ボタン部とバルブユニットとの間隔が一定になるように容易に調整することができ、間隔調整手段の制作コストを安く済ませることができる。
In the present invention, preferably, the interval adjusting means is formed in a predetermined region extending along the circumferential direction with respect to the center of rotation of the rotating operation on the surface of the flow rate operating means on the opening / closing operation button portion side. A convex portion projecting toward the opening / closing operation button portion, and an end surface of the convex portion on the side of the opening / closing operation button portion forms an inclined portion extending while being inclined substantially spirally along the circumferential direction, The interval adjusting means further includes a pressing operation protrusion that protrudes toward the flow rate operation means side from the flow rate operation means side surface of the opening / closing operation button portion so that the pressing force by the pressing operation can be transmitted to the inclined portion. .
In the present invention configured as described above, a convex portion projecting toward the opening / closing operation button portion is formed on the opening / closing operation button portion side surface of the flow rate operation means, and an end surface of the convex portion on the opening / closing operation button portion side is formed. For the pressing operation of the opening / closing operation button portion that makes the inclined portion extending while being inclined substantially spirally along the circumferential direction as one of the structures of the interval adjusting means, and allows the pressing force by the pressing operation to be transmitted to the inclined portion. With a simple structure that uses the protrusion as one of the distance adjusting means, the distance between the opening / closing operation button part and the valve unit can be easily adjusted regardless of the rotation operation of the flow rate operating means. The production cost of the adjustment means can be reduced.

本発明において、好ましくは、上記間隔調整手段は、更に、上記押圧操作用突起と上記傾斜部との間に設けられ且つ上記押圧操作による開閉操作ボタン部からの押圧力を受圧して上記傾斜部に伝達する受圧部材を備え、この受圧部材の上記傾斜部側の面には、上記傾斜部側に向って突出し且つ上記傾斜部と複数の箇所で当接することにより上記押圧力を分散させる押圧力分散用突起が形成されている。
このように構成された本発明においては、開閉操作ボタン部を押圧操作する際に、押圧操作用突起と傾斜部との間に設けられた受圧部材が開閉操作ボタン部からの押圧力を受圧し、受圧部材の押圧力分散用突起が傾斜部と複数の箇所で当接して押圧力を傾斜部の複数の箇所に分散させることができるため、開閉操作ボタン部に押圧力が集中して加わることによって破損につながるのを未然に防ぐことができる。また、受圧部材の押圧力分散用突起が傾斜部を押圧する部分の面積が、受圧部材の押圧力分散用突起が傾斜部と1つの箇所で当接する場合よりも大きくなるため、より安定して且つ確実な押圧操作を行うことができる。さらに、押圧操作用突起と傾斜部との間に受圧部材を設けて押圧操作用突起と傾斜部を介在させることにより、押圧操作用突起が受圧部材を押圧する場合の方が、押圧操作用突起が傾斜部を直接的に押圧する場合よりも、押圧操作用突起が当接するまでの距離と時間を短くすることができると共に、より確実な押圧操作が実現できるため、使用者が押圧操作を行っているときの操作の応答性を向上させて、押圧操作のよりよい操作感覚を使用者に与えることができる。
In the present invention, it is preferable that the distance adjusting means is further provided between the pressing operation projection and the inclined portion, and receives a pressing force from the opening / closing operation button portion by the pressing operation, and the inclined portion. A pressure receiving member that transmits the pressure to the inclined portion side surface of the pressure receiving member and disperses the pressing force by coming into contact with the inclined portion at a plurality of locations. Dispersion protrusions are formed.
In the present invention configured as described above, when pressing the opening / closing operation button portion, the pressure receiving member provided between the pressing operation protrusion and the inclined portion receives the pressing force from the opening / closing operation button portion. The pressure distribution protrusion of the pressure receiving member abuts the inclined portion at a plurality of locations so that the pressing force can be dispersed at a plurality of locations on the inclined portion, so that the pressing force is concentrated on the opening / closing operation button portion. It can be prevented from leading to breakage. In addition, since the area of the portion where the pressing force distribution protrusion of the pressure receiving member presses the inclined portion is larger than when the pressing force distribution protrusion of the pressure receiving member abuts the inclined portion at one location, the area is more stable. In addition, a reliable pressing operation can be performed. Further, when the pressure operation protrusion presses the pressure receiving member by providing a pressure receiving member between the pressure operation protrusion and the inclined portion and interposing the pressure operation protrusion and the inclined portion, the pressure operation protrusion Since the distance and time until the pressing operation projection abuts can be shortened and more reliable pressing operation can be realized than when the inclined portion is pressed directly, the user performs the pressing operation. It is possible to improve the responsiveness of the operation at the time of the operation, and to give the user a better operational feeling of the pressing operation.

本発明において、好ましくは、上記間隔調整手段の凸部は、複数の凸部であり、これらの複数の凸部のぞれぞれの開閉操作ボタン部側の端面は上記傾斜部をそれぞれ形成している。
このように構成された本発明においては、開閉操作ボタン部を押圧操作する際に、押圧操作用突起と傾斜部との間に設けられた受圧部材が開閉操作ボタン部からの押圧力を受圧し、受圧部材の押圧力分散用突起が複数の傾斜部と複数の箇所で当接して押圧力を複数の傾斜部の複数の箇所に分散させることができるため、開閉操作ボタン部に押圧力が集中して加わることによって破損につながるのを未然に防ぐことができる。また、受圧部材の押圧力分散用突起が複数の傾斜部を押圧する部分の面積が、受圧部材の押圧力分散用突起が1つの傾斜部と1つの箇所で当接する場合よりも大きくなるため、より安定して且つ確実な押圧操作を行うことができる。
In the present invention, preferably, the convex portion of the interval adjusting means is a plurality of convex portions, and the end surface of each of the plurality of convex portions on the opening / closing operation button portion side forms the inclined portion. ing.
In the present invention configured as described above, when pressing the opening / closing operation button portion, the pressure receiving member provided between the pressing operation protrusion and the inclined portion receives the pressing force from the opening / closing operation button portion. The pressure distribution protrusion of the pressure receiving member abuts the plurality of inclined portions at a plurality of locations so that the pressing force can be distributed to the plurality of portions of the plurality of inclined portions, so that the pressing force is concentrated on the opening / closing operation button portion. Therefore, it is possible to prevent damage by joining. In addition, since the area of the portion where the pressing force distribution protrusion of the pressure receiving member presses the plurality of inclined portions is larger than when the pressing force distribution protrusion of the pressure receiving member abuts one inclined portion at one location, A more stable and reliable pressing operation can be performed.

本発明において、好ましくは、上記バルブユニットは、更に、押圧操作により軸方向に移動して上記主弁体を開閉させるパイロット弁と、このパイロット弁が上記主弁体を開弁させる吐水位置と上記パイロット弁が上記主弁体を閉弁させる止水位置を押圧操作により切り替え、上記主弁体が開弁時に回転操作により上記パイロット弁の移動量を変化させ、上記主弁体の開度を調整して吐水流量を調整する操作手段と、を備え、このバルブユニットの操作手段は、上記パイロット弁の開閉操作ボタン部側の端部に連結され、上記開閉操作ボタン部からの押圧操作による押圧力を上記パイロット弁に伝達させる押圧操作手段と、この押圧操作手段の外周側に回転可能に取り付けられて上記流量操作手段に連結され、上記押圧操作により上記押圧操作手段と共に並進し、上記回転操作により上記押圧操作手段との軸方向の相対位置を変化させる回転操作手段と、を備え、上記バルブユニットは、更に、上記主弁体の開度を増加させる方向に上記押圧操作手段を付勢する付勢手段と、上記パイロット弁が上記止水位置にあるときに上記押圧操作手段を係止する係止手段と、上記パイロット弁が上記吐水位置にあるときに上記回転操作により上記回転操作手段が上記押圧操作手段に対して軸方向に相対的に移動する量を所定の範囲内に規制する規制手段と、を備え、この規制手段は、上記回転操作手段及び上記押圧操作手段のそれぞれの軸方向に対向する面に円周方向に沿ってほぼらせん状に形成され且つ上記付勢手段の付勢力により互いが当接する回転操作手段傾斜部及び押圧操作手段傾斜部をそれぞれ備えている。
このように構成された本発明においては、パイロット弁が吐水位置にあるときに、バルブユニットの操作手段の回転操作手段を回転操作すると、狭いスペース内で付勢手段の付勢力により押圧操作手段傾斜部が回転操作手段傾斜部に当接して押し付けられながら、バルブユニットの操作手段の押圧操作手段を回転操作手段に対して軸方向に相対的に移動させることができ、パイロット弁の移動量を変化させて、吐水流量を調整することができる。したがって、バルブユニットの操作手段とパイロット弁の大きさを小さくすることができ、吐水装置全体を小型化することができる。
In the present invention, preferably, the valve unit further includes a pilot valve that moves in an axial direction by a pressing operation to open and close the main valve body, a water discharge position at which the pilot valve opens the main valve body, and the The pilot valve switches the water stop position to close the main valve body by pressing operation, and when the main valve body is opened, the movement amount of the pilot valve is changed by rotating operation to adjust the opening degree of the main valve body And an operating means for adjusting the water discharge flow rate, and the operating means of the valve unit is connected to the end of the pilot valve on the opening / closing operation button part side, and the pressing force by the pressing operation from the opening / closing operation button part Is transmitted to the pilot valve, and is rotatably attached to the outer peripheral side of the press operation means and is connected to the flow rate operation means, and the press operation is performed by the press operation. Rotation operation means that translates together with the means and changes the relative position in the axial direction with respect to the pressing operation means by the rotation operation, and the valve unit further increases the opening of the main valve body. Energizing means for energizing the pressing operation means, locking means for locking the pressing operation means when the pilot valve is in the water stop position, and when the pilot valve is in the water discharge position Restricting means for restricting, within a predetermined range, the amount by which the rotating operation means moves relative to the pressing operation means in the axial direction by a rotating operation, and the restricting means includes the rotating operation means and the rotating operation means. Rotation operation means inclined portion and press operation means inclination formed in a substantially spiral shape in the circumferential direction on the surfaces facing each axial direction of the pressing operation means and in contact with each other by the urging force of the urging means Are you with each.
In the present invention configured as described above, when the rotation operation means of the operation means of the valve unit is rotated when the pilot valve is in the water discharge position, the pressure operation means is inclined by the urging force of the urging means in a narrow space. The pressing operation means of the operation means of the valve unit can be moved in the axial direction relative to the rotation operation means while the part is in contact with and pressed against the rotation operation means inclined portion, and the movement amount of the pilot valve is changed. The water discharge flow rate can be adjusted. Therefore, the size of the operation means of the valve unit and the pilot valve can be reduced, and the entire water discharge device can be reduced in size.

本発明の吐水装置によれば、操作ボタンの位置を変化させることなく吐水流量の調整操作を行うことができる。   According to the water discharge device of the present invention, the adjustment operation of the water discharge flow rate can be performed without changing the position of the operation button.

本発明の一実施形態による吐水装置の正面側から見た斜視図である。It is the perspective view seen from the front side of the water discharging apparatus by one Embodiment of this invention. 本発明の一実施形態による吐水装置の斜め正面側から見た分解斜視図である。It is the disassembled perspective view seen from the diagonal front side of the water discharging apparatus by one Embodiment of this invention. 本発明の一実施形態による吐水装置の斜め背面側から見た分解斜視図である。It is the disassembled perspective view seen from the diagonal back side of the water discharging apparatus by one Embodiment of this invention. 本発明の一実施形態による吐水装置の止水状態で且つカラン用流調ダイヤルつまみを最大流量設定位置に設定した場合における平面断面図である。It is a plane sectional view in the case where the water discharge device according to one embodiment of the present invention is in a water-stopping state and the curan flow adjustment dial knob is set at the maximum flow rate setting position. 本発明の一実施形態による吐水装置の止水状態で且つカラン用流調ダイヤルつまみを最大流量設定位置に設定した場合における側面断面図である。It is side surface sectional drawing in the case of the water stop state of the water discharging apparatus by one Embodiment of this invention, and the flow control dial knob for currants being set to the maximum flow volume setting position. 本発明の一実施形態による吐水装置の止水状態で且つカラン用流調ダイヤルつまみを最小流量設定位置に設定した場合における側面断面図である。It is side surface sectional drawing in the case of the water stop state of the water discharging apparatus by one Embodiment of this invention, and when the flow adjustment dial knob for currants is set to the minimum flow volume setting position. 本発明の一実施形態による吐水装置の吐水状態で且つカラン用流調ダイヤルつまみを最大流量設定位置に設定した場合における側面断面図である。It is side surface sectional drawing in the case of the water discharging state of the water discharging apparatus by one Embodiment of this invention, and setting the flow control dial knob for currants to the maximum flow volume setting position. 本発明の一実施形態による吐水装置の吐水状態で且つカラン用流調ダイヤルつまみを最小流量設定位置に設定した場合における側面断面図である。It is side surface sectional drawing in the case of the water discharging state of the water discharging apparatus by one Embodiment of this invention, and setting the flow control dial knob for currants to the minimum flow volume setting position. 本発明の一実施形態による吐水装置に内蔵されているカラン用流調バルブユニットとこれに連結されているカラン用流調ダイヤルつまみの斜視図である。It is a perspective view of the flow control valve unit for curans built in the water discharging apparatus by one Embodiment of this invention, and the flow control dial knob for curans connected to this. 本発明の一実施形態による吐水装置に内蔵されているカラン用流調バルブユニットの分解斜視図である。It is a disassembled perspective view of the flow control valve unit for curans built in the water discharging apparatus by one Embodiment of this invention. 本発明の一実施形態による吐水装置に内蔵されているカラン用流調バルブユニットのカム溝形成部材を示す外観斜視図である。It is an external appearance perspective view which shows the cam groove formation member of the flow control valve unit for curans built in the water discharging apparatus by one Embodiment of this invention. 本発明の一実施形態による吐水装置に内蔵されているカラン用流調バルブユニットのカム溝形成部材の内部の状態を示す斜視図である。It is a perspective view which shows the state inside the cam groove formation member of the flow control valve unit for curans built in the water discharging apparatus by one Embodiment of this invention. 本発明の一実施形態による吐水装置に内蔵されているカラン用流調バルブユニットの回転操作部材を示す外観斜視図である。It is an external appearance perspective view which shows the rotation operation member of the flow control valve unit for currants incorporated in the water discharging apparatus by one Embodiment of this invention. 本発明の一実施形態による吐水装置に内蔵されているカラン用流調バルブユニットの回転操作部材の内部の状態を示す斜視図である。It is a perspective view which shows the state inside the rotation operation member of the flow control valve unit for curans built in the water discharging apparatus by one Embodiment of this invention.

以下、添付図面により、本発明の一実施形態による吐水装置を説明する。
図1は本発明の一実施形態による吐水装置の正面側から見た斜視図であり、図2は本実施形態による吐水装置の斜め正面側から見た分解斜視図であり、図3は本実施形態による吐水装置の斜め背面側から見た分解斜視図である。
Hereinafter, a water discharging device according to an embodiment of the present invention will be described with reference to the accompanying drawings.
FIG. 1 is a perspective view seen from the front side of a water discharger according to an embodiment of the present invention, FIG. 2 is an exploded perspective view seen from an oblique front side of the water discharger according to the present embodiment, and FIG. It is the disassembled perspective view seen from the diagonal back side of the water discharging apparatus by a form.

また、図4は本実施形態による吐水装置の止水状態で且つカラン用流調ダイヤルつまみを最大流量設定位置に設定した場合における平面断面図であり、図5は本実施形態による吐水装置の止水状態で且つカラン用流調ダイヤルつまみを最大流量設定位置に設定した場合における側面断面図であり、図6は本実施形態による吐水装置の止水状態で且つカラン用流調ダイヤルつまみを最小流量設定位置に設定した場合における断面図である。   FIG. 4 is a plan cross-sectional view when the water discharge device according to the present embodiment is in a water stop state and the curan flow adjustment dial knob is set at the maximum flow rate setting position, and FIG. 5 is a plan view of the water discharge device according to the present embodiment. FIG. 6 is a side cross-sectional view when the flow control dial knob for currants is set to the maximum flow rate setting position in a water state, and FIG. 6 shows the minimum flow rate of the flow control dial knob for currants in the water stop state of the water discharging device according to the present embodiment. It is sectional drawing in the case of setting to a setting position.

さらに、図7は本実施形態による吐水装置の吐水状態で且つカラン用流調ダイヤルつまみを最大流量設定位置に設定した場合における側面断面図であり、図8は本実施形態による吐水装置の吐水状態で且つカラン用流調ダイヤルつまみを最小流量設定位置に設定した場合における側面断面図である。   Further, FIG. 7 is a side cross-sectional view when the water discharge device according to the present embodiment is in a water discharge state and the curan flow adjustment dial knob is set at the maximum flow rate setting position, and FIG. 8 is a water discharge state of the water discharge device according to the present embodiment. FIG. 5 is a side cross-sectional view when the curan flow adjustment dial knob is set at the minimum flow rate setting position.

また、図9は本実施形態による吐水装置に内蔵されているカラン用流調バルブユニットとこれに連結されているカラン用流調ダイヤルつまみの斜視図である。   FIG. 9 is a perspective view of the curan flow control valve unit built in the water discharger according to the present embodiment and the curan flow control dial knob connected thereto.

図1に示すように、本発明の一実施形態による吐水装置1は、吐水装置本体2を有し、この吐水装置本体2は、浴室やキッチン等のカウンター板4の背面側に収納されている。
また、図1及び図2に示すように、吐水装置1は、カラン用開閉操作ボタン6、カラン用流調ダイヤルつまみ8、シャワー用開閉操作ボタン10、シャワー用流調ダイヤルつまみ12、カラン用流調バルブユニット14、シャワー用流調バルブユニット16、カラン用流調ダイヤル18、及び、シャワー用流調ダイヤル19を有する。
As shown in FIG. 1, the water discharging apparatus 1 by one Embodiment of this invention has the water discharging apparatus main body 2, and this water discharging apparatus main body 2 is accommodated in the back side of the counter boards 4, such as a bathroom and a kitchen. .
As shown in FIGS. 1 and 2, the water discharge device 1 includes a curan opening / closing operation button 6, a curan flow adjustment dial knob 8, a shower opening / closing operation button 10, a shower flow adjustment dial knob 12, a curan flow. It has a regulating valve unit 14, a shower flow regulating valve unit 16, a currant flow regulating dial 18, and a shower flow regulating dial 19.

カラン用開閉操作ボタン6は、使用者の押圧操作によってカラン用の吐水と止水を切り替える開閉操作ボタン部である。
また、カラン用流調ダイヤルつまみ8は、カラン用流調ダイヤル18に取り付けられ、このカラン用流調ダイヤル18は、カラン用の吐水流量を調整する流量操作手段として機能するようになっている。
The opening / closing operation button 6 for currants is an opening / closing operation button unit for switching between water discharge and water stopping for curans by a user's pressing operation.
The currant flow control dial knob 8 is attached to the currant flow control dial 18, and the currant flow control dial 18 functions as a flow rate operating means for adjusting the water discharge flow rate for the currant.

同様に、シャワー用開閉操作ボタン10は、使用者の押圧操作によってシャワー用の吐水と止水を切り替える開閉操作ボタン部である。
また、シャワー用流調ダイヤルつまみ12は、シャワー用流調ダイヤル19に取り付けられ、このシャワー用流調ダイヤル19は、シャワー用の吐水流量を調整する流量操作手段として機能するようになっている。
Similarly, the shower opening / closing operation button 10 is an opening / closing operation button unit that switches between shower water discharge and water stop by a user's pressing operation.
The shower flow adjustment dial knob 12 is attached to a shower flow adjustment dial 19, and the shower flow adjustment dial 19 functions as a flow rate operating means for adjusting the water discharge flow rate for the shower.

また、カラン用開閉操作ボタン6とシャワー用開閉操作ボタン10の両部材は互いに隣接して並置された同一の構成部材であり、カラン用流調ダイヤルつまみ8とシャワー用流調ダイヤルつまみ12の両部材についても、互いに隣接して並置された同一の構成部材である。
なお、以下、シャワー用の吐水及び止水に関連する部材については、カラン用の吐水及び止水に関連する部材と同一であるため、説明を省略し、カラン用の吐水及び止水に関連する部材のみについて具体的に説明する。
Further, the members of the curan opening / closing operation button 6 and the shower opening / closing operation button 10 are the same constituent members juxtaposed adjacent to each other. Both the curan flow adjustment dial knob 8 and the shower flow adjustment dial knob 12 are provided. The members are also the same constituent members juxtaposed adjacent to each other.
Hereinafter, the members related to the shower water discharge and water stop are the same as the members related to the water discharge and water stop for the curan, so the description is omitted, and the members related to the water discharge and the water stop for the curan are omitted. Only the members will be specifically described.

本実施形態による吐水装置1は、使用者が押圧操作によりカラン用開閉操作ボタン6を並進移動させると吐水と止水が切り替えられ、使用者がカラン用流調ダイヤルつまみ8のつまみ部8aをつまんで回転操作することにより、カラン用流調ダイヤルつまみ8を回転移動させると吐水流量が調整されるようになっている。   In the water discharging device 1 according to the present embodiment, when the user translates the opening / closing operation button 6 for curan by a pressing operation, water discharging and water stopping are switched, and the user pinches the knob portion 8a of the flow adjusting dial knob 8 for curan. When the currant flow adjustment dial knob 8 is rotationally moved by rotating the dial, the water discharge flow rate is adjusted.

図1、図2、図4及び図5に示すように、吐水装置本体2は、カウンター板4の背面側に配置されており、サーモ水栓(図示せず)によって温度調節された湯水が流入する本体流入口2aを備えている。
また、吐水装置本体2は、本体流入口2aから流入した湯水が、吐水装置本体2に内蔵されたカラン用流調バルブユニット14(図2〜4参照)を通過してカラン用の吐水として流出するカラン用本体流出口2bを備えている。
さらに、吐水装置本体2は、本体流入口2aから流入した湯水が、吐水装置本体2に内蔵されたシャワー用流調バルブユニット16(図2〜4参照)を通過してカラン用の吐水として流出するシャワー用本体流出口2cを備えている。
As shown in FIGS. 1, 2, 4, and 5, the water discharge device main body 2 is disposed on the back side of the counter plate 4, and hot water whose temperature is adjusted by a thermo faucet (not shown) flows in. A main body inlet 2a is provided.
Further, in the water discharge device main body 2, hot water flowing in from the main body inlet 2 a passes through the curan flow control valve unit 14 (see FIGS. 2 to 4) built in the water discharge device main body 2 and flows out as water discharge for the curan. The main body outlet 2b for currants is provided.
Further, in the water discharge device main body 2, the hot water flowing in from the main body inlet 2 a passes through the shower flow control valve unit 16 (see FIGS. 2 to 4) built in the water discharge device main body 2 and flows out as water discharge for curan. A shower main body outlet 2c is provided.

図1〜3に示すように、カラン用開閉操作ボタン6は、使用者によって押圧される操作ボタン部材として機能し且つほぼ長方形の板状のドア部材6aと、このドア部材6aを回動可能に支持するヒンジ手段である回動軸部材6bを備えており、この回動軸部材6bは、カラン側操作ボタンユニット本体6cによって保持されている。ドア部材6aを使用者側から押圧すると、ドア部材6aが回動軸部材6bの回りを回動し、カウンター板4のカウンター面よりも奥行方向に押圧されるようになっている。   As shown in FIGS. 1-3, the opening / closing operation button 6 for currants functions as an operation button member pressed by the user, and can rotate the substantially rectangular plate-like door member 6a and the door member 6a. A rotation shaft member 6b, which is a hinge means to be supported, is provided, and this rotation shaft member 6b is held by a curran side operation button unit main body 6c. When the door member 6 a is pressed from the user side, the door member 6 a rotates around the rotation shaft member 6 b and is pressed in the depth direction from the counter surface of the counter plate 4.

また、ドア部材6aが回動軸部材6bの回りを回動する回動部には、ねじりばね6dが取り付けられ、使用者がドア部材6aを押圧していない状態で、カウンター板4のカウンター面とほぼ面一の状態となったときに、ねじりばね6dが、ドア部材6aをカウンター板4のカウンター面の奥行方向(背面側)に付勢するようになっている。   In addition, a torsion spring 6d is attached to the rotating portion where the door member 6a rotates about the rotating shaft member 6b, and the counter surface of the counter plate 4 is in a state where the user is not pressing the door member 6a. The torsion spring 6d biases the door member 6a in the depth direction of the counter surface of the counter plate 4 (back side).

さらに、カラン側操作ボタンユニット本体6cの前端部には、ロック部材6eが設けられ、使用者がドア部材6aを押圧していない状態で、カウンター板4のカウンター面とほぼ面一になったときは、ロック部材6eを所定の横方向にスライドさせることにより、ドア部材6aの下端がロック部材6eの凹部6fに係止されるようになっている。また、ドア部材6aを使用者が押圧する際には、ロック部材6eを上記所定の横方向とは逆の方向にスライドさせることにより、ロック部材6eの凹部6fとドア部材6aの下端の係止が解除されるようになっている。   Furthermore, when the locking member 6e is provided at the front end of the curran-side operation button unit main body 6c and the user does not press the door member 6a, the counter plate 4 is substantially flush with the counter surface. Is configured such that the lower end of the door member 6a is engaged with the recess 6f of the lock member 6e by sliding the lock member 6e in a predetermined lateral direction. Further, when the user presses the door member 6a, the locking member 6e is slid in the direction opposite to the predetermined lateral direction, thereby locking the recess 6f of the locking member 6e and the lower end of the door member 6a. Is to be canceled.

また、カラン側操作ボタンユニット本体6cの前端部のロック部材6eに隣接した上方の位置には、受圧部材6gが前後方向に摺動可能に設けられ、ドア部材6aの背面側には、後方に突出して受圧部材6gの前面に当接可能な突起6hが形成されている。使用者の押圧操作によりドア部材6aが後方側に押圧されると、このドア部材6aの突起6hに伝達された押圧力を受圧部材6gが受圧するようになっている。
さらに、受圧部材6gの背面には、後方に突出して且つ横幅方向に所定長さ延びて、受圧部材6gが受圧した押圧力を後方側へ分散させて伝達する押圧力分散用突起6iが形成されている。
A pressure receiving member 6g is slidable in the front-rear direction at an upper position adjacent to the lock member 6e at the front end of the curran-side operation button unit main body 6c. A protrusion 6h that protrudes and can contact the front surface of the pressure receiving member 6g is formed. When the door member 6a is pressed rearward by the pressing operation of the user, the pressure receiving member 6g receives the pressing force transmitted to the protrusion 6h of the door member 6a.
Further, on the back surface of the pressure receiving member 6g, there is formed a pressing force distribution protrusion 6i that protrudes rearward and extends a predetermined length in the lateral width direction and distributes and transmits the pressing force received by the pressure receiving member 6g to the rear side. ing.

なお、シャワー用開閉操作ボタン10についても、上述したカラン用開閉操作ボタン6と同様に、ドア部材10a、回動軸部材10b、シャワー側操作ボタンユニット本体10c、ねじりばね10d、ロック部材10e、凹部10f、受圧部材10g、突起10h、押圧力分散用突起10iを備えているが、カラン用開閉操作ボタン6の各構成と同一であるため、説明は省略する。   As for the opening / closing operation button 10 for the shower, similarly to the opening / closing operation button 6 for the curan described above, the door member 10a, the rotating shaft member 10b, the shower side operation button unit main body 10c, the torsion spring 10d, the lock member 10e, the recess 10f, a pressure receiving member 10g, a protrusion 10h, and a pressing force dispersion protrusion 10i, which are the same as the components of the currant opening / closing operation button 6, and thus the description thereof is omitted.

つぎに、図2、図4、図5及び図9に示すように、カラン用流調ダイヤルつまみ8は、カラン用流調ダイヤル18に対して回動不能で、かつ押圧方向に摺動可能に結合されているが、このカラン用流調ダイヤル18は、カラン用流調バルブユニット14のカラン用開閉操作ボタン6側の端部に位置し且つカラン用流調バルブユニット14の構成の一部である回転操作部材20(詳細は後述する)に連結されている。   Next, as shown in FIGS. 2, 4, 5, and 9, the currant flow dial knob 8 is not rotatable with respect to the currant flow dial 18 and is slidable in the pressing direction. The curan flow adjustment dial 18 is located at the end of the currant flow adjustment valve unit 14 on the side of the opening / closing operation button 6 for the currant and is a part of the configuration of the flow adjustment valve unit 14 for the currant. It is connected to a certain rotation operation member 20 (details will be described later).

また、カラン用流調ダイヤルつまみ8及びカラン用流調ダイヤル18は、カラン用開閉操作ボタン6からの押圧操作によってカラン用流調バルブユニット14に対して並進移動して、カラン用流調バルブユニット14の主弁体14aを開閉させ、使用者の回転操作によって回転移動してカラン用の吐水流量を調整する流量操作手段として機能している。   The currant flow control dial knob 8 and the currant flow control dial 18 are translated with respect to the currant flow control valve unit 14 by a pressing operation from the open / close operation button 6 for the currant, and the flow control valve unit for the currant. 14 main valve elements 14a are opened and closed, and function as flow rate operation means for adjusting the water discharge flow rate for curan by rotating and moving according to the rotation operation of the user.

さらに、図2〜図9に示すように、流量操作手段であるカラン用流調ダイヤル18のカラン用開閉操作ボタン6側の面のカラン用流調ダイヤル18の回転中心を中心に円周方向に沿って延びた所定の領域には、カラン用開閉操作ボタン6側に向って突出した複数の凸部18a,18bが形成されている。
また、図9に示すように、これらの凸部18a,18bのそれぞれのカラン用開閉操作ボタン6側の端面は、それらの円周方向の各始端部18c,18dからそれぞれに対応する円周方向の各終端部18e,18fにかけて、円周方向に沿ってほぼ螺旋状に傾斜しながら延びる傾斜部18g,18hを形成している。
ここで、各傾斜部18g,18hがカラン用開閉操作ボタン6側に突出する傾斜部分の高さは、終端部18e,18fが最大高さとなり、始端部18c,18dが最低高さとなっている。
Further, as shown in FIG. 2 to FIG. 9, in the circumferential direction around the rotation center of the curan flow adjustment dial 18 on the surface of the flow adjustment dial 18, which is the flow operation means, on the side of the curan opening / closing operation button 6. A plurality of convex portions 18a and 18b projecting toward the currant opening / closing operation button 6 are formed in a predetermined region extending along the same.
Further, as shown in FIG. 9, the end surfaces of the projections 18a and 18b on the side of the opening / closing operation button 6 for curran are respectively in the circumferential directions corresponding to the respective start ends 18c and 18d in the circumferential direction. Inclined portions 18g and 18h are formed extending in a substantially spiral manner along the circumferential direction over the end portions 18e and 18f.
Here, as for the height of the inclined part where each inclined part 18g, 18h protrudes toward the opening / closing operation button 6 for currants, the end parts 18e, 18f are the maximum height, and the starting end parts 18c, 18d are the minimum height. .

さらに、カラン用流調ダイヤル18の各凸部18a,18bの傾斜部18g,18hは、カラン用流調ダイヤル18の回転角度に応じて、カラン用開閉操作ボタン6側の上述した受圧部材6gの押圧力分散用突起6iと始端部18c,18dから終端部18e,18fまでの範囲で常時当接しており、使用者の押圧操作によるカラン用開閉操作ボタン6側からの押圧力が受圧部材6gの押圧力分散用突起6iを介してカラン用流調ダイヤル18の各凸部18a,18bの傾斜部18g,18hに伝達されるようになっている。
すなわち、カラン用流調ダイヤル18は、カラン用流調ダイヤルつまみ8の回転操作によりカラン用流調ダイヤルつまみ8と一体的に回転するため、カラン用流調ダイヤル18の回転角度に伴って、カラン用流調ダイヤル18の各凸部18a,18bの傾斜部18g,18hと受圧部材6gの押圧力分散用突起6iとが互いに当接する位置が変化するようになっている。
したがって、上述したカラン用流調ダイヤル18の各凸部18a,18b及びカラン用開閉操作ボタン6の受圧部材6gの押圧力分散用突起6iは、カラン用流調ダイヤルつまみ8の回転操作にかかわらず、カラン用開閉操作ボタン6とカラン用流調バルブユニット14との間隔が一定になるように調整する間隔調整手段として機能するようになっている。
Further, the inclined portions 18g and 18h of the respective convex portions 18a and 18b of the curan flow adjusting dial 18 correspond to the pressure receiving member 6g on the curran opening / closing operation button 6 side according to the rotation angle of the curran flow adjusting dial 18. The pressing force distribution protrusion 6i is always in contact with the end portions 18c, 18d to the end portions 18e, 18f, and the pressing force from the curran opening / closing operation button 6 side by the pressing operation of the user is applied to the pressure receiving member 6g. It is transmitted to the inclined portions 18g, 18h of the convex portions 18a, 18b of the currant flow adjustment dial 18 via the pressing force dispersing projection 6i.
That is, the curan flow adjustment dial 18 rotates integrally with the currant flow adjustment dial knob 8 by the rotation operation of the currant flow adjustment dial knob 8, and accordingly, according to the rotation angle of the currant flow adjustment dial 18. The positions where the inclined portions 18g and 18h of the convex portions 18a and 18b of the flow adjustment dial 18 and the pressing force dispersion protrusions 6i of the pressure receiving member 6g abut each other are changed.
Therefore, the projections 18a and 18b of the currant flow control dial 18 and the pressure distribution protrusion 6i of the pressure receiving member 6g of the curran open / close operation button 6 are independent of the rotation operation of the currant flow control dial knob 8. In addition, it functions as an interval adjusting means for adjusting the interval between the curan opening / closing operation button 6 and the curan flow control valve unit 14 to be constant.

また、図2、図4及び図5に示すように、カラン用流調バルブユニット14は、吐水装置本体2内に内蔵され、固定ナット22によって吐水装置本体2に固定されている。
カラン用流調バルブユニット14は、カラン用開閉操作ボタン6の押圧操作によって主弁体14aが開閉され、カラン用流調ダイヤルつまみ8の回転操作によって主弁体14aの開度が変化されるようになっている。
As shown in FIGS. 2, 4, and 5, the curan flow control valve unit 14 is built in the water discharger main body 2 and is fixed to the water discharger main body 2 by a fixing nut 22.
In the currant flow control valve unit 14, the main valve element 14 a is opened and closed by pressing the currant opening / closing operation button 6, and the opening degree of the main valve element 14 a is changed by rotating the currant flow control dial knob 8. It has become.

つぎに、図4〜図13を参照して、吐水装置本体2に内蔵されているカラン用流調バルブユニット14の構成を具体的に説明する。
図10は本実施形態による吐水装置に内蔵されているカラン用流調バルブユニットの分解斜視図であり、図11は本実施形態による吐水装置に内蔵されているカラン用流調バルブユニットのカム溝形成部材を示す外観斜視図であり、図12は本実施形態による吐水装置に内蔵されているカラン用流調バルブユニットのカム溝形成部材の内部の状態を示す斜視図である。
また、図13は本実施形態による吐水装置に内蔵されているカラン用流調バルブユニットの回転操作部材を示す外観斜視図であり、図14は本実施形態による吐水装置に内蔵されているカラン用流調バルブユニットの回転操作部材の内部の状態を示す斜視図である。
Next, with reference to FIGS. 4 to 13, the configuration of the curan flow control valve unit 14 built in the water discharger main body 2 will be described in detail.
FIG. 10 is an exploded perspective view of the curan flow control valve unit built in the water discharge device according to the present embodiment, and FIG. 11 is a cam groove of the curan flow control valve unit built in the water discharge device according to the present embodiment. FIG. 12 is an external perspective view showing the forming member, and FIG. 12 is a perspective view showing an internal state of the cam groove forming member of the flow control valve unit for currant incorporated in the water discharging device according to the present embodiment.
FIG. 13 is an external perspective view showing the rotation operation member of the flow control valve unit for currants built in the water discharger according to the present embodiment, and FIG. 14 is for curans built in the water discharger according to the present embodiment. It is a perspective view which shows the state inside the rotation operation member of a flow control valve unit.

図4〜図10に示すように、カラン用流調バルブユニット14は、バルブ本体24と、このバルブ本体24に固定して取り付けられて圧力室26を形成する圧力室形成部材28と、バルブ本体24と圧力室形成部材28の間に挟み込まれたダイヤフラム30を備え、このダイヤフラム30には、主弁体14aが取り付けられている。
バルブ本体24は、概ね円筒状の部材であり、外部側面のバルブ流入口24aから通水路24bに流入し、主弁座24cを通過した湯水を、バルブ流出口24dから流出させるようになっている。
As shown in FIGS. 4 to 10, the currant flow control valve unit 14 includes a valve main body 24, a pressure chamber forming member 28 fixedly attached to the valve main body 24 to form a pressure chamber 26, and a valve main body. The diaphragm 30 is sandwiched between the pressure chamber forming member 28 and the pressure chamber forming member 28, and the main valve body 14 a is attached to the diaphragm 30.
The valve body 24 is a substantially cylindrical member, and flows into the water passage 24b from the valve inlet 24a on the outer side surface, and flows out the hot water passing through the main valve seat 24c from the valve outlet 24d. .

また、カラン用流調バルブユニット14は、使用者によるカラン用開閉操作ボタン6の押圧操作により、圧力室形成部材28のガイド部28aの内部を軸方向に摺動して主弁体14aを開閉させるパイロット弁32を備えている。
さらに、図9に示すように、カラン用流調バルブユニット14は、パイロット弁32が主弁体14aを開弁させる吐水位置とパイロット弁32が主弁体14aを閉弁させる止水位置を押圧操作により切り替え、主弁体14aが開弁時に回転操作によりパイロット弁32の移動量を変化させ、主弁体14aの開度を調整して吐水流量を調整するバルブ操作ユニット34を備えている。
Further, the curan flow control valve unit 14 opens and closes the main valve body 14a by sliding in the guide portion 28a of the pressure chamber forming member 28 in the axial direction by the pressing operation of the opening / closing operation button 6 for the curan by the user. A pilot valve 32 is provided.
Further, as shown in FIG. 9, the flow control valve unit 14 for currant presses the water discharge position where the pilot valve 32 opens the main valve element 14a and the water stop position where the pilot valve 32 closes the main valve element 14a. There is provided a valve operation unit 34 that switches by operation, changes the amount of movement of the pilot valve 32 by rotation when the main valve body 14a is opened, and adjusts the opening of the main valve body 14a to adjust the discharge water flow rate.

つぎに、図9及び図10に示すように、カラン用流調バルブユニット14のバルブ操作ユニット34は、圧力室形成部材28のカラン用開閉操作ボタン6側に固定されて概ね円筒状のカム溝形成部材38と、このカム溝形成部材38と圧力室形成部材28との間に部分的に内蔵され且つカラン用開閉操作ボタン6からの押圧操作による押圧力をパイロット弁32に伝達させる押圧操作ユニット36(詳細は後述する)を備えている。
また、押圧操作ユニット36は、カム溝形成部材38の中央部分を軸方向に貫く中央穴38dを通過する方向、すなわち、主弁体14aの開度を調整する方向に摺動可能に配置されており、カム溝形成部材38の内周部に形成された複数の浅溝38a及び深溝38bと押圧操作ユニット36の回動リング部材46の一部が係合可能になっている。
Next, as shown in FIGS. 9 and 10, the valve operating unit 34 of the curan flow control valve unit 14 is fixed to the curran opening / closing operation button 6 side of the pressure chamber forming member 28, and is a substantially cylindrical cam groove. Forming member 38 and a pressing operation unit that is partially built between the cam groove forming member 38 and the pressure chamber forming member 28 and transmits a pressing force generated by a pressing operation from the curan opening / closing operation button 6 to the pilot valve 32. 36 (details will be described later).
The pressing operation unit 36 is slidably arranged in a direction passing through a central hole 38d passing through the central portion of the cam groove forming member 38 in the axial direction, that is, in a direction of adjusting the opening degree of the main valve body 14a. A plurality of shallow grooves 38 a and deep grooves 38 b formed on the inner peripheral portion of the cam groove forming member 38 and a part of the rotating ring member 46 of the pressing operation unit 36 can be engaged.

また、図9に示すように、カラン用流調バルブユニット14のバルブ操作ユニット34は、押圧操作ユニット36の外周側に回転可能に取り付けられると共に外周側がカラン用流調ダイヤル18に取り付けられた回転操作部材20を含む回転操作ユニット40(詳細は後述する)を備えている。この回転操作ユニット40は、カラン用開閉操作ボタン6からの押圧操作により、カラン用流調ダイヤル18及び押圧操作ユニット36と共に軸方向に並進し、回転操作部材20の回転操作により押圧操作ユニット36との軸方向の相対位置を変化させることができるようになっている。   Further, as shown in FIG. 9, the valve operation unit 34 of the curan flow control valve unit 14 is rotatably mounted on the outer peripheral side of the pressing operation unit 36 and the outer peripheral side is mounted on the curan flow control dial 18. A rotation operation unit 40 including the operation member 20 (details will be described later) is provided. The rotation operation unit 40 translates in the axial direction together with the curan flow adjustment dial 18 and the pressing operation unit 36 by a pressing operation from the curan opening / closing operation button 6, and is connected to the pressing operation unit 36 by a rotating operation of the rotating operation member 20. The relative position in the axial direction can be changed.

バルブ操作ユニット34の押圧操作ユニット36は、パイロット弁32のシャフト32aのカラン用開閉操作ボタン6側の端部に連結され、圧力室形成部材28のガイド部28aの外周部に軸方向に摺動可能に配置された概ね円筒状の摺動部材42を備えている。
さらに、摺動部材42の内周部には、突起(図示せず)等の回動係止手段が設けられている。この摺動部材42の突起(図示せず)等の回動係止手段は、圧力室形成部材28のガイド部28aの外周部に長手方向に延びるように設けられた複数のガイド溝28bに係合し、圧力室形成部材28の外周部に対する摺動部材42の周方向の回動を規制している。
また、押圧操作ユニット36は、圧力室形成部材28のガイド部28aの外周側且つ摺動部材42の内周側に配置された圧縮コイルばね44を備え、この圧縮コイルばね44は、摺動部材42及びパイロット弁32をカラン用開閉操作ボタン6側に移動させて主弁体14aの開度を増加させる方向に付勢する付勢手段として機能している。
The pressing operation unit 36 of the valve operation unit 34 is connected to the end portion of the shaft 32 a of the pilot valve 32 on the side of the opening / closing operation button 6 for the curan, and slides in the axial direction on the outer periphery of the guide portion 28 a of the pressure chamber forming member 28. A generally cylindrical sliding member 42 is provided which can be arranged.
Furthermore, a rotation locking means such as a protrusion (not shown) is provided on the inner peripheral portion of the sliding member 42. Rotation locking means such as protrusions (not shown) of the sliding member 42 are engaged with a plurality of guide grooves 28b provided in the outer peripheral portion of the guide portion 28a of the pressure chamber forming member 28 so as to extend in the longitudinal direction. Accordingly, the rotation of the sliding member 42 in the circumferential direction with respect to the outer peripheral portion of the pressure chamber forming member 28 is restricted.
The pressing operation unit 36 includes a compression coil spring 44 disposed on the outer peripheral side of the guide portion 28a of the pressure chamber forming member 28 and on the inner peripheral side of the sliding member 42. The compression coil spring 44 includes the sliding member. 42 and the pilot valve 32 function as urging means for urging in the direction of increasing the opening degree of the main valve body 14a by moving the opening / closing operation button 6 for currants.

さらに、押圧操作ユニット36は、摺動部材42の外周側に回動可能に取り付けられ且つカム溝形成部材38の内周側に配置された概ね円環状の回動リング部材46を備えている。
また、回動リング部材46は、摺動部材42の外周に沿って形成された段部42aと係合可能なフランジ部46aを内周部に備え、押圧操作ユニット36の圧縮コイルばね44の付勢により、摺動部材42の段部42aが回動リング部材46のフランジ部46aを押圧し、回動リング部材46及び摺動部材42が、圧力室形成部材28及びカム溝形成部材38に対して軸方向に移動可能となっている。
Further, the pressing operation unit 36 includes a generally annular rotating ring member 46 that is rotatably attached to the outer peripheral side of the sliding member 42 and is disposed on the inner peripheral side of the cam groove forming member 38.
The rotating ring member 46 includes a flange portion 46 a that can be engaged with a step portion 42 a formed along the outer periphery of the sliding member 42 on the inner peripheral portion, and is attached to the compression coil spring 44 of the pressing operation unit 36. Due to the force, the step portion 42 a of the sliding member 42 presses the flange portion 46 a of the rotating ring member 46, and the rotating ring member 46 and the sliding member 42 are against the pressure chamber forming member 28 and the cam groove forming member 38. Can be moved in the axial direction.

さらに、回動リング部材46は、外周に沿って所定間隔を置いて配置された複数の係合突起46bを備え、これらの係合突起46bの各々が、カム溝形成部材38及び後述するクラッチリング部材48に対する回動リング部材46の回動角度に応じてカム溝形成部材38の浅溝38a又は深溝38bと係合可能となっている。
すなわち、詳細は後述するが、回動リング部材46の係合突起46bは、パイロット弁32が止水位置にあるときに、カム溝形成部材38の浅溝38aに係合し、パイロット弁32が吐水位置にあるときに、カム溝形成部材38の深溝38bに係合するようになっている。
Further, the rotating ring member 46 includes a plurality of engaging protrusions 46b arranged at predetermined intervals along the outer periphery, and each of the engaging protrusions 46b includes a cam groove forming member 38 and a clutch ring described later. The cam ring forming member 38 can be engaged with the shallow groove 38 a or the deep groove 38 b according to the rotation angle of the rotation ring member 46 with respect to the member 48.
That is, although details will be described later, the engaging protrusion 46b of the rotating ring member 46 engages with the shallow groove 38a of the cam groove forming member 38 when the pilot valve 32 is in the water stop position, and the pilot valve 32 is When in the water discharge position, it engages with the deep groove 38b of the cam groove forming member 38.

また、押圧操作ユニット36は、回動リング部材46と軸方向に対向するように、回動リング部材46に対してカラン用開閉操作ボタン6側に配置された概ね円環状のクラッチリング部材48を備え、このクラッチリング部材48は、回動リング部材46のクラッチリング部材48側の端部に形成されたクラッチ歯面46cと噛み合い可能なクラッチ歯面48aを備えている。
さらに、クラッチリング部材48は、このカラン用開閉操作ボタン6側の端面が円周方向に沿ってほぼらせん状に突出するように形成された複数の傾斜部48b,48cを備えており、これらのクラッチリング部材48の傾斜部48b,48cは、対応する回転操作部材20の傾斜部20a,20bと接触するようになっている。
また、カラン用流調ダイヤル18の回転操作により回転操作部材20がクラッチリング部材48及び圧力室形成部材28に対して相対的に回動すると、回転操作部材20の傾斜部20a,20bとクラッチリング部材48の傾斜部48b,48cとの接触位置が変化し、回転操作部材20が軸方向に移動してパイロット弁32の軸方向の位置が変化し、バルブ操作ユニット34の吐水流量の調整が行われるようになっている。
In addition, the pressing operation unit 36 includes a substantially annular clutch ring member 48 disposed on the curl opening / closing operation button 6 side with respect to the rotating ring member 46 so as to face the rotating ring member 46 in the axial direction. The clutch ring member 48 includes a clutch tooth surface 48a that can mesh with a clutch tooth surface 46c formed at the end of the rotating ring member 46 on the clutch ring member 48 side.
Further, the clutch ring member 48 includes a plurality of inclined portions 48b and 48c formed so that the end face on the side of the opening / closing operation button 6 for currants protrudes substantially spirally along the circumferential direction. The inclined portions 48 b and 48 c of the clutch ring member 48 come into contact with the inclined portions 20 a and 20 b of the corresponding rotation operation member 20.
Further, when the rotation operation member 20 is rotated relative to the clutch ring member 48 and the pressure chamber forming member 28 by the rotation operation of the currant flow adjustment dial 18, the inclined portions 20a and 20b of the rotation operation member 20 and the clutch ring are rotated. The contact position of the member 48 with the inclined portions 48b and 48c changes, the rotation operation member 20 moves in the axial direction, the axial position of the pilot valve 32 changes, and the discharge water flow rate of the valve operation unit 34 is adjusted. It has come to be.

さらに、クラッチリング部材48の内周面には、内方に向って突出する複数の回動係止用突起48dが円周方向に所定間隔を置いて配置され、摺動部材42の外周面には、長手方向に延びる複数のガイド溝42bが円周方向に所定間隔を置いて配置されている。
クラッチリング部材48の回動係止用突起48dのそれぞれは、摺動部材42のガイド溝42bのそれぞれに係合されており、クラッチリング部材48は、摺動部材42に対して回動が係止されているが、摺動部材42に対して軸方向に摺動可能となっている。
Further, on the inner peripheral surface of the clutch ring member 48, a plurality of rotation locking projections 48 d protruding inward are arranged at predetermined intervals in the circumferential direction, and on the outer peripheral surface of the sliding member 42. The guide grooves 42b extending in the longitudinal direction are arranged at predetermined intervals in the circumferential direction.
Each of the rotation locking protrusions 48 d of the clutch ring member 48 is engaged with each of the guide grooves 42 b of the sliding member 42, and the clutch ring member 48 is rotated with respect to the sliding member 42. Although it is stopped, it can slide in the axial direction with respect to the sliding member 42.

また、回動リング部材46の係合突起46bがカム溝形成部材38の所定の浅溝38aに係合し、パイロット弁32が止水位置にある状態で、カラン用開閉操作ボタン6を押圧操作することにより、回転操作部材20、クラッチリング部材48及び回動リング部材46が主弁体14a側に所定距離以上並進移動させると、回動リング部材46の係合突起46bとカム溝形成部材38の所定の浅溝38aとの係合が一旦解除された後、回動リング部材46のクラッチ歯面46cがクラッチリング部材48のクラッチ歯面48aとの接触面に沿って摺動し、回動リング部材46がクラッチリング部材48及び圧力室形成部材28に対して回動するようになっている。そして、回動リング部材46の係合突起46bが、前回係合解除したカム溝形成部材38の所定の浅溝38aの隣に配置されている深溝38bに移動して係合し、パイロット弁32が吐水位置に切り替えられるようになっている。   Further, when the engagement protrusion 46b of the rotating ring member 46 is engaged with a predetermined shallow groove 38a of the cam groove forming member 38, and the pilot valve 32 is in the water stop position, the currant opening / closing operation button 6 is pressed. As a result, when the rotation operation member 20, the clutch ring member 48, and the rotation ring member 46 are translated to the main valve body 14a by a predetermined distance or more, the engagement protrusion 46b of the rotation ring member 46 and the cam groove forming member 38 are moved. After the engagement with the predetermined shallow groove 38a is once released, the clutch tooth surface 46c of the rotating ring member 46 slides along the contact surface with the clutch tooth surface 48a of the clutch ring member 48, and rotates. The ring member 46 rotates with respect to the clutch ring member 48 and the pressure chamber forming member 28. Then, the engaging protrusion 46b of the rotating ring member 46 moves and engages with the deep groove 38b disposed next to the predetermined shallow groove 38a of the cam groove forming member 38 that was previously disengaged, and the pilot valve 32 is engaged. Can be switched to the water discharge position.

一方、回動リング部材46の係合突起46bがカム溝形成部材38の所定の深溝38bに係合し、パイロット弁32が吐水位置にある状態で、カラン用開閉操作ボタン6を押圧操作することにより、回転操作部材20、クラッチリング部材48及び回動リング部材46が主弁体14a側に所定距離以上並進移動させると、回動リング部材46の係合突起46bとカム溝形成部材38の所定の深溝38bとの係合が一旦解除された後、回動リング部材46のクラッチ歯面46cがクラッチリング部材48のクラッチ歯面48aとの接触面に沿って摺動し、回動リング部材46がクラッチリング部材48に対して回動し、回動リング部材46の係合突起46bが、前回係合解除したカム溝形成部材38の所定の深溝38bの隣に配置されている浅溝38aに移動して係合し、パイロット弁32が止水位置に切り替えられるようになっている。   On the other hand, when the engagement protrusion 46b of the rotating ring member 46 is engaged with the predetermined deep groove 38b of the cam groove forming member 38 and the pilot valve 32 is in the water discharge position, the currant opening / closing operation button 6 is pressed. As a result, when the rotation operation member 20, the clutch ring member 48, and the rotation ring member 46 are translated into the main valve body 14a by a predetermined distance or more, the engagement protrusions 46b of the rotation ring member 46 and the cam groove forming member 38 are predetermined. After the engagement with the deep groove 38 b is once released, the clutch tooth surface 46 c of the rotating ring member 46 slides along the contact surface of the clutch ring member 48 with the clutch tooth surface 48 a, and the rotating ring member 46. Is rotated with respect to the clutch ring member 48, and the engaging protrusion 46b of the rotating ring member 46 is disposed next to the predetermined deep groove 38b of the cam groove forming member 38 which has been previously disengaged. Engage and move to 38a, the pilot valve 32 is adapted to be switched to the water stop position.

つぎに、バルブ操作ユニット34の回転操作ユニット40は、カム溝形成部材38の外周に回転可能に取り付けられた概ね円筒状の回転操作部材20を備えている。
図14に示すように、回転操作部材20の内側且つカラン用開閉操作ボタン6側の端部には、円周方向に沿ってほぼらせん状に突出するように形成された複数の傾斜部20a,20bを備えている。
回転操作部材20がカム溝形成部材38に取り付けられた状態では、回転操作部材20の傾斜部20a,20bのそれぞれが、カム溝形成部材38の中央穴38dを通過して押圧操作ユニット36のクラッチリング部材48の傾斜部48b,48cのそれぞれと当接し、回転操作部材20の回転角度に応じて回転操作部材20の傾斜部20a,20bと押圧操作ユニット36のクラッチリング部材48の傾斜部48b,48cとの互いの軸方向の距離が変化することにより、回転操作部材20とクラッチリング部材48との軸方向の相対位置が変化するようになっている。
すなわち、これらの回転操作部材20の傾斜部20a,20bと押圧操作ユニット36のクラッチリング部材48の傾斜部48b,48cは、パイロット弁32が吐水位置にあるときに回転操作部材20の回転操作により回転操作部材20が押圧操作ユニット36に対して軸方向に相対的に移動する量を所定の範囲内に規制する規制手段として機能するようになっている。
Next, the rotation operation unit 40 of the valve operation unit 34 includes a substantially cylindrical rotation operation member 20 that is rotatably attached to the outer periphery of the cam groove forming member 38.
As shown in FIG. 14, a plurality of inclined portions 20 a formed so as to protrude substantially spirally along the circumferential direction on the inner side of the rotation operation member 20 and on the end portion on the side of the opening / closing operation button 6 for currants. 20b.
In a state where the rotation operation member 20 is attached to the cam groove forming member 38, each of the inclined portions 20 a and 20 b of the rotation operation member 20 passes through the central hole 38 d of the cam groove formation member 38 and the clutch of the pressing operation unit 36. The inclined portions 48b and 48c of the ring member 48 are in contact with the inclined portions 48b and 48c, respectively, and the inclined portions 20a and 20b of the rotary operation member 20 and the inclined portions 48b and 48b of the clutch ring member 48 of the pressing operation unit 36 according to the rotation angle of the rotary operation member 20. The relative position in the axial direction between the rotation operation member 20 and the clutch ring member 48 is changed by changing the mutual axial distance from the 48c.
That is, the inclined portions 20a and 20b of the rotational operation member 20 and the inclined portions 48b and 48c of the clutch ring member 48 of the pressing operation unit 36 are caused by the rotational operation of the rotational operation member 20 when the pilot valve 32 is in the water discharge position. The rotary operation member 20 functions as a regulating means for regulating the amount of movement relative to the pressing operation unit 36 in the axial direction within a predetermined range.

また、回転操作部材20の圧力室形成部材28側の端部には、外周から内周方向に突出する突起20cが設けられ、回転操作部材20がカム溝形成部材38に対して回転した際に、回転操作部材20の突起20cが、カム溝形成部材38の外周に形成されて軸方向に延びる突起38cと当接することにより回転が規制されるようになっている。
さらに、回転操作部材20のカラン用開閉操作ボタン6側の端部は、カラン用流調ダイヤル18の内周部が取り付けられるための概ね円環状のカラン用流調ダイヤル取付部20dが設けられている。
Further, a protrusion 20c protruding in the inner circumferential direction from the outer periphery is provided at the end of the rotation operation member 20 on the pressure chamber forming member 28 side, and when the rotation operation member 20 rotates with respect to the cam groove forming member 38. The protrusion 20c of the rotation operation member 20 is in contact with the protrusion 38c formed on the outer periphery of the cam groove forming member 38 and extending in the axial direction, so that the rotation is restricted.
Further, the end portion of the rotary operation member 20 on the side of the opening / closing operation button 6 for the curan is provided with a generally annular curan flow adjustment dial mounting portion 20d for attaching the inner peripheral portion of the flow adjustment dial 18 for the curan. Yes.

また、図11及び図12に示すように、カム溝形成部材38のカラン用開閉操作ボタン6側の端部にはフランジ38eが設けられている。
特に、図5及び図6に示すように、パイロット弁32が止水位置にあるときには、回転操作部材20の傾斜部20a,20bと、これらに対向するクラッチリング部材48の傾斜部48b,48cとが互いに接触しているが、カラン用流調ダイヤル18の回転操作にかかわらず、回転操作部材20の突起20cが、カム溝形成部材38のフランジ38eに当接しないようになっている。したがって、吐水装置1の止水時には、回転操作部材20の傾斜部20a,20bとクラッチリング部材48の傾斜部48b,48cとの互いの接触による摩耗も少なく、カラン用流調ダイヤル18を比較的小さな回転操作力で操作することができるようになっている。
As shown in FIGS. 11 and 12, a flange 38e is provided at the end of the cam groove forming member 38 on the side of the opening / closing operation button 6 for currant.
In particular, as shown in FIGS. 5 and 6, when the pilot valve 32 is in the water stop position, the inclined portions 20 a and 20 b of the rotation operation member 20 and the inclined portions 48 b and 48 c of the clutch ring member 48 facing them are provided. Are in contact with each other, but the protrusion 20c of the rotation operation member 20 does not come into contact with the flange 38e of the cam groove forming member 38 regardless of the rotation operation of the currant flow adjustment dial 18. Therefore, when the water discharge device 1 is stopped, there is little wear due to mutual contact between the inclined portions 20a, 20b of the rotary operation member 20 and the inclined portions 48b, 48c of the clutch ring member 48, and the curling flow control dial 18 is relatively It can be operated with a small rotational operating force.

一方、図7及び図8に示すように、パイロット弁32が吐水位置にあるときには、回転操作部材20の傾斜部20a,20bと、これらに対向するクラッチリング部材48の傾斜部48b,48cとが互いに接触していると共に、回転操作部材20の突起20cがカム溝形成部材38のフランジ38eに当接しており、図5及び図6に示すパイロット弁32が止水位置にあるときに比べて、カラン用流調ダイヤル18の回転操作時には大きな回転操作力を要するが、吐水装置1の吐水状態は、止水状態に比べると一時的であり、カラン用流調ダイヤル18の回転角度にかかわらず、回転操作力もほぼ一定となるため、カラン用流調ダイヤル18の良好な回転操作性を保つことができるようになっている。   On the other hand, as shown in FIGS. 7 and 8, when the pilot valve 32 is in the water discharge position, the inclined portions 20 a and 20 b of the rotation operation member 20 and the inclined portions 48 b and 48 c of the clutch ring member 48 facing them are provided. The protrusions 20c of the rotary operation member 20 are in contact with each other and the flange 38e of the cam groove forming member 38 is in contact with the pilot valve 32 shown in FIGS. Although a large rotational operation force is required at the time of rotating the curan flow adjustment dial 18, the water discharge state of the water discharge device 1 is temporary compared to the water stop state, regardless of the rotation angle of the curan flow adjustment dial 18. Since the rotational operation force is also substantially constant, it is possible to maintain good rotational operability of the currant flow adjustment dial 18.

また、パイロット弁32のシャフト32aのカラン用開閉操作ボタン6側の端部に連結された押圧操作ユニット36の摺動部材42のカラン用開閉操作ボタン6側の端部には、パイロット弁32を摺動部材42に固定するためのキャップ50が取り付けられている。
さらに、バルブ操作ユニット34の回転操作ユニット40は、キャップ50と回転操作部材20のカラン用流調ダイヤル取付部20dの基端部20eとの間に配置された圧縮コイルばね52を備え、圧縮コイルばね52が回転操作部材20に向けて付勢する軸方向の付勢力により、回転操作部材20の押圧操作ユニット36に対する軸方向のがたつきを抑え、回転操作部材20の回転角度に応じて、キャップ50の軸方向の位置をカラン用流調ダイヤル取付部20dの基端部20eと先端部20fとの間の範囲内に常時位置させるようになっている。
The pilot valve 32 is connected to the end portion of the sliding member 42 of the pressing operation unit 36 connected to the end portion of the shaft 32a of the pilot valve 32 on the side of the open / close operation button 6 for the currant. A cap 50 for fixing to the sliding member 42 is attached.
Further, the rotation operation unit 40 of the valve operation unit 34 includes a compression coil spring 52 disposed between the cap 50 and the base end portion 20e of the currant flow adjustment dial mounting portion 20d of the rotation operation member 20, and includes a compression coil. The axial urging force that the spring 52 urges toward the rotation operation member 20 prevents axial rotation of the rotation operation member 20 with respect to the pressing operation unit 36, and according to the rotation angle of the rotation operation member 20, The position of the cap 50 in the axial direction is always positioned within the range between the base end portion 20e and the tip end portion 20f of the currant flow dial mounting portion 20d.

また、主弁体14aには、通水路24bの湯水を圧力室26内へ流入させるブリード孔14bと、圧力室26内の湯水を通水路24eへ排水する圧力開放孔14cが形成されている。
パイロット弁32のシャフト32aと弁部32bとの間には圧縮コイルばね32cが配置されている。
図5に示すように、吐水装置1が止水された状態では、圧縮コイルばね32cが圧縮されることによって生じた付勢力により、パイロット弁32の弁部32bが圧力開放孔14cを閉鎖すると共に、パイロット弁32のシャフト32aがカラン用開閉操作ボタン6側に付勢されるようになっている。
The main valve body 14a is formed with a bleed hole 14b through which hot water in the water passage 24b flows into the pressure chamber 26 and a pressure release hole 14c through which the hot water in the pressure chamber 26 flows into the water passage 24e.
A compression coil spring 32c is disposed between the shaft 32a of the pilot valve 32 and the valve portion 32b.
As shown in FIG. 5, in a state where the water discharge device 1 is stopped, the valve portion 32b of the pilot valve 32 closes the pressure release hole 14c by the urging force generated by the compression coil spring 32c being compressed. The shaft 32a of the pilot valve 32 is urged toward the opening / closing operation button 6 for currant.

つぎに、上述した本発明の一実施形態による吐水装置1の作用を説明する。
まず、図1及び図5に示すように、吐水装置1が止水状態で且つカラン用流調ダイヤルつまみ8を最大流量設定位置に設定した場合には、ダイヤフラム30が、バルブ本体24の主弁座24cに着座し、主弁座24cが閉鎖されている。
すなわち、吐水装置本体2の本体流入口2aからバルブ流入口24aを経て通水路24bに流入した湯水が、主弁体14aに設けられたブリード孔14bを通って圧力室26に流入し、圧力室26内の湯水の圧力により、ダイヤフラム30及び主弁体14aが主弁座24cに向けて押圧され、主弁座24cが閉鎖されている。
また、パイロット弁32の弁部32bが、圧縮された圧縮コイルばね32cの付勢力により圧力開放孔14cを閉鎖している。
Below, the effect | action of the water discharging apparatus 1 by one Embodiment of this invention mentioned above is demonstrated.
First, as shown in FIGS. 1 and 5, when the water discharge device 1 is in a water stop state and the curan flow adjustment dial knob 8 is set to the maximum flow rate setting position, the diaphragm 30 is connected to the main valve of the valve body 24. The seat 24c is seated and the main valve seat 24c is closed.
That is, hot water that has flowed into the water passage 24b from the main body inlet 2a of the water discharger main body 2 through the valve inlet 24a flows into the pressure chamber 26 through the bleed hole 14b provided in the main valve body 14a. The diaphragm 30 and the main valve body 14a are pressed toward the main valve seat 24c by the pressure of the hot water in 26, and the main valve seat 24c is closed.
Further, the valve portion 32b of the pilot valve 32 closes the pressure release hole 14c by the urging force of the compressed compression coil spring 32c.

このとき、回転リング部材46の係合突起46bは、カム溝形成部材38の浅溝38aに係止されており、回転リング部材46のクラッチ歯面46cとクラッチリング部材48のクラッチ歯面48aが噛み合っているため、押圧操作ユニット36の摺動部材42、回転リング部材46及びクラッチリング部材48は、軸方向及び回転方向に移動することなく固定されている。
また、カラン用開閉操作ボタン6のドア部材6aの突起6hが受圧部材6gに当接し、この受圧部材6gの押圧力分散用突起6iが、カラン用流調ダイヤル18の双方の凸部18a,18bのカラン用開閉操作ボタン6側に突出する傾斜部分の高さが最大高さである終端部18e,18fに当接している。
このとき、カラン用開閉操作ボタン6のドア部材6aの正面側の表面は、カウンター板4のカウンター面とほぼ面一の状態となっている。
At this time, the engaging protrusion 46b of the rotating ring member 46 is locked to the shallow groove 38a of the cam groove forming member 38, and the clutch tooth surface 46c of the rotating ring member 46 and the clutch tooth surface 48a of the clutch ring member 48 are Since they are engaged, the sliding member 42, the rotating ring member 46, and the clutch ring member 48 of the pressing operation unit 36 are fixed without moving in the axial direction and the rotating direction.
Further, the protrusion 6h of the door member 6a of the curan opening / closing operation button 6 abuts on the pressure receiving member 6g, and the pressing force distribution protrusion 6i of the pressure receiving member 6g corresponds to the convex portions 18a, 18b of the curan flow adjustment dial 18. The height of the inclined portion projecting toward the curran opening / closing operation button 6 is in contact with the end portions 18e and 18f having the maximum height.
At this time, the front surface of the door member 6 a of the curan opening / closing operation button 6 is substantially flush with the counter surface of the counter plate 4.

つぎに、図6に示すように、吐水装置1が止水状態で且つカラン用流調ダイヤルつまみ8を最小流量設定位置に設定した場合には、使用者がカラン用流調ダイヤルつまみ8を回転操作すると、カラン用流調ダイヤル18及び回転操作部材20のみがカラン用流調ダイヤルつまみ8と一体的に回動する。
このとき、回転操作部材20のそれぞれの傾斜部20a,20bが、カム溝形成部材38の中央穴38dを通過し、固定されている状態のクラッチリング部材48のそれぞれの傾斜部48b,48cに当接しながら回動し、回転操作部材20がクラッチリング部材48に対してカラン用開閉操作ボタン6側に軸方向に移動して、カラン用流調ダイヤル18も回転操作部材20と共にカラン用開閉操作ボタン6側に軸方向に移動する。
しかしながら、押圧操作ユニット36の摺動部材42、回転リング部材46及びクラッチリング部材48は、軸方向及び回転方向に移動することなく固定されているため、パイロット弁32の弁部32bも、圧力開放孔14cを閉鎖した状態のままとなり、ダイヤフラム30及び主弁体14aについても、主弁座24cを閉鎖した状態のままとなっている。
Next, as shown in FIG. 6, when the water discharge device 1 is in a water-stopping state and the currant flow adjustment dial knob 8 is set to the minimum flow rate setting position, the user rotates the currant flow adjustment dial knob 8. When operated, only the currant flow adjustment dial 18 and the rotation operation member 20 rotate integrally with the currant flow adjustment dial knob 8.
At this time, the respective inclined portions 20a and 20b of the rotation operation member 20 pass through the central hole 38d of the cam groove forming member 38 and contact the respective inclined portions 48b and 48c of the clutch ring member 48 in a fixed state. The rotation operation member 20 moves in the axial direction toward the curan opening / closing operation button 6 with respect to the clutch ring member 48, and the curan flow adjustment dial 18 together with the rotation operation member 20 rotates. 6 moves in the axial direction.
However, since the sliding member 42, the rotating ring member 46, and the clutch ring member 48 of the pressing operation unit 36 are fixed without moving in the axial direction and the rotating direction, the valve portion 32b of the pilot valve 32 is also released from the pressure. The hole 14c remains closed, and the diaphragm 30 and the main valve body 14a also remain closed with the main valve seat 24c.

また、カラン用流調ダイヤル18の回動に伴って、カラン用開閉操作ボタン6の受圧部材6gの押圧力分散用突起6iが、カラン用流調ダイヤル18の双方の凸部18a,18bのカラン用開閉操作ボタン6側に突出する傾斜部分の高さが最低高さである始端部18c,18dに当接し、カラン用開閉操作ボタン6のドア部材6aの正面側の表面は、カウンター板4のカウンター面とほぼ面一の状態となっている。
すなわち、図5及び図6に示すように、吐水装置1が止水状態でカラン用流調ダイヤルつまみ8の回転させて流量設定位置を変更しても、カラン用流調ダイヤルつまみ8の回転の回転角度に応じて、カラン用開閉操作ボタン6の受圧部材6gの押圧力分散用突起6iがカラン用流調ダイヤル18の双方の凸部18a,18bに当接する位置が変更され、カラン用流調ダイヤル18とカラン用開閉操作ボタン6との距離が一定になるように調整される。
Further, along with the rotation of the curan flow adjustment dial 18, the pressing force distribution protrusion 6i of the pressure receiving member 6g of the curan opening / closing operation button 6 causes the curans of both convex portions 18a, 18b of the curan flow adjustment dial 18 to be. The front surface of the door member 6a of the currant opening / closing operation button 6 is in contact with the start end portions 18c, 18d having the lowest height protruding toward the opening / closing operation button 6 side. It is almost flush with the counter surface.
That is, as shown in FIGS. 5 and 6, even if the flow control dial knob 8 is rotated while the water discharge device 1 is in the water-stopping state and the flow rate setting position is changed, In accordance with the rotation angle, the position where the pressing force dispersion projection 6i of the pressure receiving member 6g of the curan opening / closing operation button 6 abuts on both convex portions 18a, 18b of the curan flow dial 18 is changed. The distance between the dial 18 and the curan opening / closing operation button 6 is adjusted to be constant.

つぎに、図5に示す吐水装置1が止水状態で且つカラン用流調ダイヤルつまみ8を最大流量設定位置に設定した状態で、使用者がカラン用開閉操作ボタン6を押圧操作すると、図7に示すように、吐水装置1が吐水状態に切り替わり、カラン用流調ダイヤルつまみ8を最大流量設定位置に設定した状態となる。
このとき、使用者の押圧操作により、カラン用開閉操作ボタン6のドア部材6aが回動軸部材6bの回りを回動し、カラン用流調バルブユニット14側に押し込まれ、ドア部材6aの突起6hが受圧部材6gをカラン用流調バルブユニット14側に押圧する。
そして、受圧部材6gの押圧力分散用突起6iが、カラン用流調ダイヤル18の双方の凸部18a,18bの終端部18e,18fを押圧し、カラン用流調ダイヤル18が、カラン用流調バルブユニット14側に軸方向に一体的に並進し、カラン用流調バルブユニット14側に押し込まれる。
これにより、カラン用流調バルブユニット14の回転操作部材20についても、カラン用流調ダイヤル18と共に一体的に軸方向の主弁体14a側に押し込まれる。
Next, when the user presses the opening / closing operation button 6 for currants in a state where the water discharging device 1 shown in FIG. 5 is in a water-stopping state and the currant flow adjustment dial knob 8 is set to the maximum flow rate setting position, FIG. As shown in FIG. 4, the water discharge device 1 is switched to the water discharge state, and the curan flow adjustment dial knob 8 is set to the maximum flow rate setting position.
At this time, by the pressing operation of the user, the door member 6a of the curan opening / closing operation button 6 rotates around the rotation shaft member 6b and is pushed into the currant flow control valve unit 14 side, and the protrusion of the door member 6a. 6h presses the pressure receiving member 6g toward the curan flow control valve unit 14 side.
Then, the pressing force dispersion protrusion 6i of the pressure receiving member 6g presses the end portions 18e and 18f of both convex portions 18a and 18b of the currant flow dial 18, and the currant flow dial 18 It translates integrally in the axial direction to the valve unit 14 side and is pushed into the flow control valve unit 14 side for curan.
As a result, the rotational operation member 20 of the curan flow control valve unit 14 is also pushed together with the curan flow control dial 18 to the main valve body 14a in the axial direction.

さらに、回転操作部材20が軸方向の主弁体14a側に押し込まれることにより、その背面側に配置された押圧操作ユニット36の摺動部材42、回転リング部材46及びクラッチリング部材48も軸方向の主弁体14a側に押し込まれる。これにより、回転リング部材46の係合突起46bとカム溝形成部材38の浅溝38aとの係止が解除されて回転リング部材46が所定角度回転し、回転リング部材46の係合突起46bがカム溝形成部材38の深溝38b内に移動し、圧縮コイルばね44の付勢力により、摺動部材42がカラン用開閉操作ボタン6側に摺動する。
この結果、回転操作部材20と押圧操作ユニット36の摺動部材42、回転リング部材46及びクラッチリング部材48が、一体的に軸方向のカラン用開閉操作ボタン6側に移動する。
Further, when the rotation operation member 20 is pushed into the main valve element 14a in the axial direction, the sliding member 42, the rotation ring member 46, and the clutch ring member 48 of the pressing operation unit 36 disposed on the back side thereof are also axial. Is pushed into the main valve body 14a side. As a result, the engagement between the engaging protrusion 46b of the rotating ring member 46 and the shallow groove 38a of the cam groove forming member 38 is released, the rotating ring member 46 rotates by a predetermined angle, and the engaging protrusion 46b of the rotating ring member 46 is moved. It moves into the deep groove 38b of the cam groove forming member 38, and the sliding member 42 slides toward the curran opening / closing operation button 6 side by the urging force of the compression coil spring 44.
As a result, the sliding member 42, the rotating ring member 46, and the clutch ring member 48 of the rotating operation member 20 and the pressing operation unit 36 are integrally moved toward the curran opening / closing operation button 6 in the axial direction.

このとき、パイロット弁32のシャフト32aも摺動部材42と共にカラン用開閉操作ボタン6側に移動するため、パイロット弁32の弁部32bが圧力開放孔14cを開放し、圧力室26内の湯水が圧力開放孔14cから通水路24e内に流出し、圧力室26内部の圧力が低下する。そして、ダイヤフラム30及び主弁体14aが主弁座24cから離れ、吐水状態となる。   At this time, the shaft 32a of the pilot valve 32 also moves together with the sliding member 42 to the curran opening / closing operation button 6 side, so that the valve portion 32b of the pilot valve 32 opens the pressure release hole 14c, and the hot water in the pressure chamber 26 flows. The pressure flows out from the pressure release hole 14c into the water passage 24e, and the pressure inside the pressure chamber 26 decreases. And the diaphragm 30 and the main valve body 14a leave | separate from the main valve seat 24c, and will be in the water discharge state.

また、図7に示すように、カラン用開閉操作ボタン6のドア部材6aの突起6hが受圧部材6gに当接し、この受圧部材6gの押圧力分散用突起6iが、カラン用流調ダイヤル18の双方の凸部18a,18bのカラン用開閉操作ボタン6側に突出する傾斜部分の高さが最大高さである終端部18e,18fに当接している。したがって、カラン用開閉操作ボタン6のドア部材6aの正面側の表面は、カウンター板4のカウンター面よりも僅かに正面側に突出した状態となっている。   Further, as shown in FIG. 7, the projection 6h of the door member 6a of the curan opening / closing operation button 6 contacts the pressure receiving member 6g, and the pressing force distribution projection 6i of the pressure receiving member 6g The convex portions 18a and 18b are in contact with the end portions 18e and 18f having the maximum height of the inclined portions protruding toward the currant opening and closing operation button 6 side. Accordingly, the front surface of the door member 6 a of the curran opening / closing operation button 6 is slightly protruded to the front side from the counter surface of the counter plate 4.

つぎに、図8に示すように、吐水装置1が吐水状態で且つカラン用流調ダイヤルつまみ8を最小流量設定位置に設定した場合には、使用者がカラン用流調ダイヤルつまみ8を回転操作すると、カラン用流調ダイヤル18及び回転操作部材20がカラン用流調ダイヤルつまみ8と一体的に回動する。
このとき、回転操作部材20は、クラッチリング部材48に対して軸方向に移動することなく、回転操作部材20のそれぞれの傾斜部20a,20b及びクラッチリング部材48のそれぞれの傾斜部48b,48cが互いに当接した状態で相対的に回動する。そして、クラッチリング部材48のそれぞれの傾斜部48b,48cが、当接している回転操作部材20のそれぞれの傾斜部20a,20bによって回動すると共に、クラッチリング部材48が軸方向の主弁体14a側に押し込まれる。
Next, as shown in FIG. 8, when the water discharge device 1 is in a water discharge state and the currant flow adjustment dial knob 8 is set to the minimum flow rate setting position, the user rotates the currant flow adjustment dial knob 8. Then, the currant flow control dial 18 and the rotation operation member 20 rotate integrally with the currant flow control dial knob 8.
At this time, the rotational operation member 20 does not move in the axial direction with respect to the clutch ring member 48, and the respective inclined portions 20a, 20b of the rotational operation member 20 and the respective inclined portions 48b, 48c of the clutch ring member 48 They rotate relative to each other in contact with each other. The inclined portions 48b and 48c of the clutch ring member 48 are rotated by the inclined portions 20a and 20b of the rotating operation member 20 in contact with the clutch ring member 48, and the clutch ring member 48 is axially connected to the main valve body 14a. Pushed into the side.

また、クラッチリング部材48が軸方向の主弁体14a側に押し込まれると、回転リング部材46及び摺動部材42についても、回転リング部材46と一体的に軸方向の主弁体14a側に押し込まれる。
このとき、回転リング部材46の係合突起46bは、カム溝形成部材38の深溝38b内の途中に位置している。
Further, when the clutch ring member 48 is pushed into the axial main valve element 14a, the rotating ring member 46 and the sliding member 42 are also pushed into the axial main valve element 14a integrally with the rotating ring member 46. It is.
At this time, the engaging protrusion 46 b of the rotating ring member 46 is located in the middle of the deep groove 38 b of the cam groove forming member 38.

さらに、パイロット弁32のシャフト32aも摺動部材42と共に主弁体14a側に移動するため、パイロット弁32の弁部32bについても、圧縮コイルばね32cの付勢力により、図7に示すカラン用流調ダイヤルつまみ8を最大流量設定位置に設定した場合に比べて、圧力開放孔14cに近づくため、圧力室26内部の圧力が上昇する。したがって、ダイヤフラム30及び主弁体14aが主弁座24cに近づき、図7に示すカラン用流調ダイヤルつまみ8を最大流量設定位置に設定した場合に比べて、吐水流量が減少する。   Further, since the shaft 32a of the pilot valve 32 also moves to the main valve body 14a side together with the sliding member 42, the valve portion 32b of the pilot valve 32 is also applied to the curan flow shown in FIG. 7 by the urging force of the compression coil spring 32c. Compared to the case where the adjustment dial knob 8 is set to the maximum flow rate setting position, the pressure inside the pressure chamber 26 increases because the pressure release hole 14c is approached. Therefore, the diaphragm 30 and the main valve body 14a approach the main valve seat 24c, and the discharged water flow rate is reduced as compared with the case where the curan flow adjustment dial knob 8 shown in FIG. 7 is set to the maximum flow rate setting position.

また、図8に示すように、カラン用開閉操作ボタン6のドア部材6aの突起6hが受圧部材6gに当接し、この受圧部材6gの押圧力分散用突起6iが、カラン用流調ダイヤル18の双方の凸部18a,18bのカラン用開閉操作ボタン6側に突出する傾斜部分の高さが最低高さである始端部18c,18dに当接している。したがって、カラン用開閉操作ボタン6のドア部材6aの正面側の表面は、カウンター板4のカウンター面よりも僅かに正面側に突出した状態となっている。   Further, as shown in FIG. 8, the projection 6h of the door member 6a of the curan opening / closing operation button 6 contacts the pressure receiving member 6g, and the pressing force distribution projection 6i of the pressure receiving member 6g Both convex portions 18a, 18b are in contact with the start end portions 18c, 18d having the lowest height of the inclined portions protruding toward the curran opening / closing operation button 6. Accordingly, the front surface of the door member 6 a of the curran opening / closing operation button 6 is slightly protruded to the front side from the counter surface of the counter plate 4.

そして、使用者がカラン用開閉操作ボタン6を再び押圧操作すると、回転操作部材20が、カラン用流調ダイヤルつまみ8及びカラン用流調ダイヤル18と共に一体的に軸方向の主弁体14a側に再び押し込まれる。
これにより、回転リング部材46の係合突起46bとカム溝形成部材38の深溝38bとの整合が解除されて回転リング部材46が所定角度回転し、回転リング部材46の係合突起46bがカム溝形成部材38の浅溝38a内に係止される。そして、再び、パイロット弁32及び主弁体14aは、図5に示す止水位置に保持される。すなわち、パイロット弁32の弁部32bが主弁体14aの圧力開放孔14cを閉鎖し、圧力室26内の圧力が上昇することにより、ダイヤフラム30及び主弁体14aは主弁座24cに着座され、止水状態となる。
When the user presses the curan opening / closing operation button 6 again, the rotation operation member 20 is integrally moved to the axial main valve body 14a side together with the curan flow adjustment dial knob 8 and the currant flow adjustment dial 18. It is pushed again.
As a result, the alignment between the engaging protrusion 46b of the rotating ring member 46 and the deep groove 38b of the cam groove forming member 38 is released, the rotating ring member 46 rotates by a predetermined angle, and the engaging protrusion 46b of the rotating ring member 46 becomes cam groove. Locked in the shallow groove 38a of the forming member 38. And again, the pilot valve 32 and the main valve body 14a are hold | maintained in the water stop position shown in FIG. That is, the valve portion 32b of the pilot valve 32 closes the pressure release hole 14c of the main valve body 14a, and the pressure in the pressure chamber 26 rises, so that the diaphragm 30 and the main valve body 14a are seated on the main valve seat 24c. It becomes a water stop state.

上述した本発明の一実施形態による吐水装置1によれば、カラン用流調ダイヤル18の各凸部18a,18b及びカラン用開閉操作ボタン6の受圧部材6gの押圧力分散用突起6iが、カラン用流調ダイヤルつまみ8の回転操作にかかわらず、カラン用開閉操作ボタン6とカラン用流調バルブユニット14との間隔が一定になるように調整する間隔調整手段として機能することにより、カラン用開閉操作ボタン6とカラン用流調ダイヤル18との間隔を調整することができる。
したがって、カラン用開閉操作ボタン6の軸方向の位置を変化させることなくカラン用流調ダイヤルつまみ8の回転操作を行って、吐水流量の調整操作を行ったとしても、例えば、吐水装置1が止水状態においては、カラン用開閉操作ボタン6のドア部材6aの正面側の表面は、カウンター板4のカウンター面とほぼ面一となる状態が維持される。それゆえ、カラン用開閉操作ボタン6のドア部材6aの正面側の表面と、これに隣接して並置されているシャワー用開閉操作ボタン10のドア部材10aの正面側の表面についても互いに面一に合わせることもできる。
さらに、吐水装置1が止水状態において、カラン用開閉操作ボタン6及びシャワー用開閉操作ボタン10がカウンター板4のカウンター面よりも正面側に突出することを防ぐことができ、突出した状態のカラン用開閉操作ボタン6及びシャワー用開閉操作ボタン10に不意な力が加わってカラン用開閉操作ボタン6及びシャワー用開閉操作ボタン10が破損したりするのを未然に防ぐことができる。
また、カラン用流調ダイヤル18の各凸部18a,18b及びカラン用開閉操作ボタン6の受圧部材6gの押圧力分散用突起6iが、カラン用流調ダイヤルつまみ8の回転操作にかかわらず、カラン用開閉操作ボタン6とカラン用流調バルブユニット14との間隔が一定になるように調整する間隔調整手段として機能することにより、流調バルブユニット14,16自体の設計変更を行う必要がないため、既存の流調バルブユニットにも容易に適用することができる。
According to the water discharging device 1 according to the embodiment of the present invention described above, the projections 18a and 18b of the curan flow adjustment dial 18 and the pressing force distribution protrusion 6i of the pressure receiving member 6g of the curan opening / closing operation button 6 are Regardless of the rotation operation of the flow adjustment dial knob 8, the opening / closing operation for the curan is performed by functioning as an interval adjusting means for adjusting the interval between the opening / closing operation button 6 for the current flow and the flow adjustment valve unit 14 for the current flow. The distance between the operation button 6 and the curan flow adjustment dial 18 can be adjusted.
Therefore, even if the curan flow adjustment dial knob 8 is rotated without changing the axial position of the curan opening / closing operation button 6 to adjust the water discharge flow rate, for example, the water discharge device 1 is stopped. In the water state, the front surface of the door member 6a of the curran opening / closing operation button 6 is maintained substantially flush with the counter surface of the counter plate 4. Therefore, the surface on the front side of the door member 6a of the opening / closing operation button 6 for currants and the surface on the front side of the door member 10a of the opening / closing operation button 10 for shower arranged adjacent to each other are flush with each other. It can also be combined.
Furthermore, when the water discharge device 1 is in a water-stopped state, the curan opening / closing operation button 6 and the shower opening / closing operation button 10 can be prevented from projecting to the front side from the counter surface of the counter plate 4, and the curan in the projecting state can be prevented. It is possible to prevent the unexpected opening of the opening / closing operation button 6 and the shower opening / closing operation button 10 to damage the curran opening / closing operation button 6 and the shower opening / closing operation button 10.
Further, the projections 18a, 18b of the curan flow adjustment dial 18 and the pressing force distribution protrusions 6i of the pressure receiving member 6g of the curan opening / closing operation button 6 are independent of the rotation operation of the curan flow adjustment dial knob 8. By functioning as an interval adjusting means for adjusting the interval between the open / close operation button 6 and the curan flow control valve unit 14 to be constant, it is not necessary to change the design of the flow control valve units 14 and 16 themselves. It can be easily applied to existing flow control valve units.

また、本実施形態による吐水装置1によれば、使用者がカラン用開閉操作ボタン6を押圧した際に、ドア部材6aが過大な押圧力を要することなく、回動軸部材6bにより回動してカラン用流調ダイヤル18及び押圧操作ユニット36を効果的に押圧することができる。さらに、使用者によるカラン用開閉操作ボタン6への押圧操作により、受圧部材6gの押圧力分散用突起6iを介してカラン用流調ダイヤル18及び押圧操作ユニット36を効果的に並進移動させて吐水と止水を効率よく切り替えることができる。   Moreover, according to the water discharging apparatus 1 by this embodiment, when a user presses the opening / closing operation button 6 for currants, the door member 6a is rotated by the rotating shaft member 6b without requiring excessive pressing force. Thus, the currant flow control dial 18 and the pressing operation unit 36 can be effectively pressed. Further, when the user presses the opening / closing operation button 6 for the curan, the curan flow adjustment dial 18 and the pressing operation unit 36 are effectively translated through the pressing force distribution protrusion 6i of the pressure receiving member 6g to discharge water. And water stop can be switched efficiently.

さらに、本実施形態による吐水装置1によれば、カラン用流調ダイヤル18のカラン用開閉操作ボタン6側の面のカラン用流調ダイヤル18の回転中心を中心に円周方向に沿って延びた所定の領域にカラン用開閉操作ボタン6側に向って突出するように形成した複数の凸部18a,18bと、カラン用開閉操作ボタン6の受圧部材6gの押圧力分散用突起6iによって、カラン用開閉操作ボタン6とカラン用流調バルブユニット14との間隔が一定になるように調整する間隔調整手段を簡易な構成で実現することができるため、製造コストを抑えることができる。   Furthermore, according to the water discharging apparatus 1 according to the present embodiment, the currant flow adjusting dial 18 extends along the circumferential direction around the rotation center of the currant flow adjusting dial 18 on the surface of the currant opening / closing operation button 6 side. A plurality of projections 18a and 18b formed so as to protrude toward the curran opening / closing operation button 6 in a predetermined area and a pressing force distribution protrusion 6i of the pressure receiving member 6g of the curan opening / closing operation button 6 Since the interval adjusting means for adjusting the interval between the opening / closing operation button 6 and the curan flow control valve unit 14 to be constant can be realized with a simple configuration, the manufacturing cost can be suppressed.

また、本実施形態による吐水装置1によれば、カラン用開閉操作ボタン6を押圧操作する際に、カラン用開閉操作ボタン6の受圧部材6gがカラン用開閉操作ボタン6の突起6hからの押圧力を受圧し、受圧部材6gの押圧力分散用突起6iがカラン用流調ダイヤル18の凸部18a,18bの傾斜部18g,18hと複数の箇所で当接するため、押圧力を各傾斜部18g,18hの所定箇所に分散させることができる。したがって、カラン用開閉操作ボタン6に押圧力が集中して加わることによって破損につながるのを未然に防ぐことができる。
さらに、受圧部材6gの押圧力分散用突起6iが各傾斜部18g,18hを押圧する部分の面積が、受圧部材6gの押圧力分散用突起6iが1つの特定の傾斜部と一箇所で集中的に当接する場合よりも大きくなるため、より安定して且つ確実な押圧操作を行うことができる。
また、ドア部材6aの突起6hとカラン用流調ダイヤル18の凸部18a,18bの傾斜部18g,18hとの間に受圧部材6gを介在させたことにより、ドア部材6aの突起6hが受圧部材6gを押圧する場合の方が、ドア部材6aの突起6hがカラン用流調ダイヤル18の凸部18a,18bの傾斜部18g,18hを直接的に押圧する場合よりも、ドア部材6aの突起6hが当接するまでの距離と時間を短くすることができると共に、より確実な押圧操作が実現できる。したがって、使用者が押圧操作を行っているときの操作の応答性を向上させて、押圧操作のよりよい操作感覚を使用者に与えることができる。
Further, according to the water discharging device 1 according to the present embodiment, when the curan opening / closing operation button 6 is pressed, the pressure receiving member 6g of the curan opening / closing operation button 6 is pressed by the protrusion 6h of the curan opening / closing operation button 6. The pressure distribution protrusion 6i of the pressure receiving member 6g contacts the inclined portions 18g, 18h of the convex portions 18a, 18b of the currant flow dial 18 at a plurality of locations, so that the pressing force is applied to each inclined portion 18g, It is possible to disperse at a predetermined position of 18h. Therefore, it is possible to prevent damage to the currant opening / closing operation button 6 due to concentrated pressing force.
Furthermore, the area of the portion where the pressing force distribution protrusion 6i of the pressure receiving member 6g presses each of the inclined portions 18g and 18h is concentrated on one specific inclined portion and the area of the pressing force distribution protrusion 6i of the pressure receiving member 6g. Therefore, a more stable and reliable pressing operation can be performed.
Further, the pressure receiving member 6g is interposed between the protrusion 6h of the door member 6a and the inclined portions 18g, 18h of the convex portions 18a, 18b of the currant flow control dial 18, so that the protrusion 6h of the door member 6a becomes the pressure receiving member. In the case of pressing 6g, the protrusion 6h of the door member 6a directly presses the inclined portions 18g, 18h of the convex portions 18a, 18b of the currant flow dial 18 for the protrusion 6h of the door member 6a. It is possible to shorten the distance and time until the contact with each other and realize more reliable pressing operation. Therefore, the responsiveness of the operation when the user is performing the pressing operation can be improved, and a better operational feeling of the pressing operation can be given to the user.

さらに、本実施形態による吐水装置1によれば、カラン用開閉操作ボタン6を押圧操作する際に、受圧部材6gの押圧力分散用突起6iがカラン用流調ダイヤル18の凸部18a,18bの複数の傾斜部18g,18hと複数の箇所で当接するため、押圧力を複数の傾斜部18g,18hの複数の箇所に分散させることができる。したがって、カラン用開閉操作ボタン6に押圧力が集中して加わることによって破損につながるのを未然に防ぐことができる。また、受圧部材6gの押圧力分散用突起6iが複数の傾斜部18g,18hを押圧する部分の面積が、受圧部材6gの押圧力分散用突起6iが1つの傾斜部と1つの箇所で当接する場合よりも大きくなるため、より安定して且つ確実な押圧操作を行うことができる。   Further, according to the water discharging device 1 according to the present embodiment, when the curan opening / closing operation button 6 is pressed, the pressing force distribution protrusion 6i of the pressure receiving member 6g is formed on the protrusions 18a, 18b of the curan flow control dial 18. Since the plurality of inclined portions 18g and 18h abut at a plurality of locations, the pressing force can be distributed to a plurality of locations of the plurality of inclined portions 18g and 18h. Therefore, it is possible to prevent damage to the currant opening / closing operation button 6 due to concentrated pressing force. In addition, the area of the portion where the pressing force distribution protrusion 6i of the pressure receiving member 6g presses the plurality of inclined portions 18g, 18h is such that the pressing force distribution protrusion 6i of the pressure receiving member 6g contacts one inclined portion at one location. Since it becomes larger than the case, a more stable and reliable pressing operation can be performed.

さらに、本実施形態による吐水装置1によれば、パイロット弁32が吐水位置にあるときに、バルブ操作ユニット34の回転操作部材20を回転操作すると、狭いスペース内で圧縮コイルばね44の付勢力により、クラッチリング部材48の各傾斜部48b,48cが回転操作部材20の対応する傾斜部20a,20bに当接して押し付けられながら、押圧操作ユニット36の摺動部材42、回転リング部材46及びクラッチリング部材48を回転操作部材20に対して軸方向に相対的に移動させることができ、パイロット弁36の移動量を変化させて、吐水流量を調整することができる。したがって、バルブ操作ユニット34とパイロット弁32の大きさを小さくすることができ、吐水装置1の全体の大きさを小型化することができる。   Furthermore, according to the water discharging device 1 according to the present embodiment, when the rotary operation member 20 of the valve operation unit 34 is rotated when the pilot valve 32 is in the water discharging position, the biasing force of the compression coil spring 44 is applied in a narrow space. While the inclined portions 48b and 48c of the clutch ring member 48 are pressed against the corresponding inclined portions 20a and 20b of the rotation operation member 20, the sliding member 42, the rotation ring member 46 and the clutch ring of the pressing operation unit 36 are pressed. The member 48 can be moved relative to the rotational operation member 20 in the axial direction, and the amount of movement of the pilot valve 36 can be changed to adjust the water discharge flow rate. Therefore, the size of the valve operation unit 34 and the pilot valve 32 can be reduced, and the overall size of the water discharge device 1 can be reduced.

なお、上述した本実施形態による吐水装置1においては、一例として、カラン用開閉操作ボタン6について、押圧操作により、ドア部材6aが回動軸部材6bの回りを回動するような形態について説明したが、このような形態に限定されず、押圧操作により、ドア部材6aが回動することなくカラン用流調バルブユニット側に向って軸方向に摺動するような形態にしてもよい。
また、本実施形態の吐水装置1では、カラン用流調ダイヤル18のカラン用開閉操作ボタン6側の面にらせん状の複数の凸部18a,18bを設けた形態について説明したが、このような形態に限定されず、これらのらせん状の複数の凸部18a,18bに相当する手段をカラン用流調ダイヤル18のカラン用開閉操作ボタン6側の面に設ける代わりに、カラン用開閉操作ボタン6のドア部材6a又は受圧部材6gの背面側に設けてもよい。
In addition, in the water discharging apparatus 1 by this embodiment mentioned above, about the opening / closing operation button 6 for currants, the form where the door member 6a rotated around the rotating shaft member 6b by pressing operation was demonstrated. However, the present invention is not limited to such a form, and the door member 6a may be slid in the axial direction toward the currant flow control valve unit without rotating by a pressing operation.
Moreover, although the water discharging apparatus 1 of this embodiment demonstrated the form which provided the some convex part 18a, 18b of spiral shape in the surface at the side of the opening / closing operation button 6 for currants of the curan flow adjustment dial 18, such a thing. The present invention is not limited to the form, and instead of providing means corresponding to the plurality of spiral convex portions 18a and 18b on the surface of the currant flow control dial 18 on the side of the curran opening / closing operation button 6, the curran opening / closing operation button 6 The door member 6a or the pressure receiving member 6g may be provided on the back side.

1 吐水装置
2 吐水装置本体
2a 本体流入口
2b カラン用本体流出口
2c シャワー用本体流出口
4 カウンター板
6 カラン用開閉操作ボタン(開閉操作ボタン部)
6a ドア部材(操作ボタン部材)
6b 回動軸部材(ヒンジ手段)
6c カラン側操作ボタンユニット本体
6d ねじりばね
6e ロック部材
6f 凹部
6g 受圧部材
6h 突起(押圧操作用突起)
6i 押圧力分散用突起(間隔調整手段)
8 カラン用流調ダイヤルつまみ(流量操作手段)
8a つまみ部
10 シャワー用開閉操作ボタン(開閉操作ボタン部)
10a ドア部材(操作ボタン部材)
10b 回動軸部材(ヒンジ手段)
10c シャワー側操作ボタンユニット本体
10d ねじりばね
10e ロック部材
10f 凹部
10g 受圧部材
10h 突起
10i 押圧力分散用突起
12 シャワー用流調ダイヤルつまみ
14 カラン用流調バルブユニット
14a 主弁体
14b ブリード孔
14c 圧力開放孔
16 シャワー用流調バルブユニット
18 カラン用流調ダイヤル(流量操作手段)
18a 凸部(間隔調整手段)
18b 凸部(間隔調整手段)
18c 凸部の始端部
18d 凸部の始端部
18e 凸部の終端部
18f 凸部の終端部
18g 凸部の傾斜部
18h 凸部の傾斜部
19 シャワー用流調ダイヤル
20 回転操作部材(回転操作手段)
20a 傾斜部(回転操作手段傾斜部)
20b 傾斜部(回転操作手段傾斜部)
20c 突起
20d カラン用流調ダイヤル取付部
20e カラン用流調ダイヤル取付部の基端部
20f カラン用流調ダイヤル取付部の先端部
22 固定ナット
24 バルブ本体
24a バルブ流入口
24b 通水路
24c 主弁座
24d バルブ流出口
24e 通水路
26 圧力室
28 圧力室形成部材
28a ガイド部
28b ガイド溝
30 ダイヤフラム
32 パイロット弁
32a シャフト
32b 弁部
32c 圧縮コイルばね
34 バルブ操作ユニット(バルブユニットの操作手段)
36 押圧操作ユニット(押圧操作手段)
38 カム溝形成部材
38a 浅溝
38b 深溝
38c 突起
38d 中央穴
38e フランジ
40 回転操作ユニット(回転操作手段)
42 摺動部材
42a 段部
42b ガイド溝
44 圧縮コイルばね
46 回転リング部材
46a フランジ部
46b 係合突起
46c クラッチ歯面
48 クラッチリング部材
48a クラッチ歯面
48b 傾斜部(押圧操作手段傾斜部)
48c 傾斜部(押圧操作手段傾斜部)
48d 回動係止用突起
50 キャップ
52 圧縮コイルばね
DESCRIPTION OF SYMBOLS 1 Water discharging apparatus 2 Water discharging apparatus main body 2a Main body inflow port 2b Main body outlet for currants 2c Main body outlet for showers 4 Counter plate 6 Open / close operation button for open / close
6a Door member (operation button member)
6b Rotating shaft member (hinge means)
6c Curran side operation button unit main body 6d Torsion spring 6e Lock member 6f Recess 6g Pressure receiving member 6h Protrusion (protrusion for pressing operation)
6i Protrusion for pressure distribution (interval adjustment means)
8 Flow control dial knob for curan (flow control means)
8a Knob 10 Open / close operation button for shower (open / close operation button)
10a Door member (operation button member)
10b Rotating shaft member (hinge means)
10c Shower side operation button unit main body 10d Torsion spring 10e Lock member 10f Recess 10g Pressure receiving member 10h Protrusion 10i Protrusion for pressure distribution 12 Flow adjustment dial knob for shower 14 Flow adjustment valve unit for curan 14a Main valve body 14b Bleed hole 14c Pressure release Hole 16 Flow control valve unit for shower 18 Flow control dial for currant (flow control means)
18a Convex part (interval adjustment means)
18b Convex part (interval adjusting means)
18c Start end portion of convex portion 18d Start end portion of convex portion 18e End portion of convex portion 18f End portion of convex portion 18g Inclined portion of convex portion 18h Inclined portion of convex portion 19 Flow adjustment dial for shower 20 Rotation operation means (rotation operation means )
20a inclined part (rotating operation means inclined part)
20b inclined part (rotating operation means inclined part)
20c Protrusion 20d Flow control dial mounting part for curan 20e Base end part of flow control dial mounting part for curan 20f Tip part of flow control dial mounting part for curan 22 Fixing nut 24 Valve body 24a Valve inlet 24b Water passage 24c Main valve seat 24d Valve outlet 24e Water passage 26 Pressure chamber 28 Pressure chamber forming member 28a Guide portion 28b Guide groove 30 Diaphragm 32 Pilot valve 32a Shaft 32b Valve portion 32c Compression coil spring 34 Valve operation unit (valve unit operation means)
36 Pressing operation unit (pressing operation means)
38 cam groove forming member 38a shallow groove 38b deep groove 38c protrusion 38d center hole 38e flange 40 rotation operation unit (rotation operation means)
42 Sliding member 42a Step portion 42b Guide groove 44 Compression coil spring 46 Rotating ring member 46a Flange portion 46b Engaging projection 46c Clutch tooth surface 48 Clutch ring member 48a Clutch tooth surface 48b Inclined portion (pressing operation means inclined portion)
48c Inclined part (Pressing operation means inclined part)
48d Rotation locking projection 50 Cap 52 Compression coil spring

Claims (6)

押圧操作により吐水と止水を切り替え、回転操作により吐水流量を調整する吐水装置であって、
主弁体を備え、押圧操作により上記主弁体が開閉し、回転操作により上記主弁体の開度が変化するバルブユニットと、
使用者の押圧操作によって上記バルブユニットの主弁体を開閉させ、吐水と止水を切り替える開閉操作ボタン部と、
上記バルブユニットの開閉操作ボタン部側の端部に連結され、上記開閉操作ボタン部からの押圧操作によって上記バルブユニットに対して並進移動して上記バルブユニットの主弁体を開閉させ、使用者の回転操作によって回転移動して吐水流量を調整する流量操作手段と、を有し、
上記開閉操作ボタン部の流量操作手段側の面と上記流量操作手段の開閉操作ボタン部側の面との間には、上記流量操作手段の回転操作にかかわらず上記開閉操作ボタン部と上記バルブユニットとの間隔が一定になるように調整する間隔調整手段が設けられていることを特徴とする吐水装置。
A water discharger that switches between water discharge and water stop by a pressing operation and adjusts the water discharge flow rate by a rotation operation,
A valve unit including a main valve body, the main valve body is opened and closed by a pressing operation, and the opening degree of the main valve body is changed by a rotation operation;
An opening / closing operation button portion for opening and closing the main valve body of the valve unit by a user's pressing operation, and switching between water discharge and water stopping;
The valve unit is connected to an end of the valve unit on the side of the opening / closing operation part, and is moved in translation with respect to the valve unit by a pressing operation from the opening / closing operation button part to open / close the main valve body of the valve unit. And a flow rate operation means for adjusting the water discharge flow rate by rotating by a rotation operation,
Regardless of the rotation operation of the flow rate operation means, the open / close operation button portion and the valve unit are provided between the flow rate operation means side surface of the open / close operation button portion and the flow rate operation means side surface. The water discharging apparatus is characterized by being provided with an interval adjusting means for adjusting so that the interval between and is constant.
上記開閉操作ボタン部は、使用者によって押圧される操作ボタン部材と、この操作ボタン部材に設けられ、使用者の押圧操作により上記間隔調整手段を押圧するように上記操作ボタン部材を回動可能に支持するヒンジ手段と、を備えている請求項1記載の吐水装置。   The opening / closing operation button portion is provided on the operation button member pressed by the user and the operation button member, and the operation button member can be rotated so as to press the interval adjusting means by the user's pressing operation. The water discharging device according to claim 1, further comprising a hinge means for supporting. 上記間隔調整手段は、上記流量操作手段の開閉操作ボタン部側の面の上記回転操作の回転の中心に対して円周方向に沿って延びた所定の領域に形成されて上記開閉操作ボタン部に向って突出する凸部を備え、この凸部の開閉操作ボタン部側の端面は、上記円周方向に沿ってほぼ螺旋状に傾斜しながら延びる傾斜部を形成し、上記間隔調整手段は、更に、上記傾斜部に上記押圧操作による押圧力を伝達可能に上記開閉操作ボタン部の流量操作手段側の面から流量操作手段側に突出する押圧操作用突起を備えている請求項1又は2に記載の吐水装置。   The interval adjusting means is formed in a predetermined region extending along the circumferential direction with respect to the center of rotation of the rotation operation on the opening / closing operation button side surface of the flow rate operation means, and is formed on the opening / closing operation button section. A projecting portion protruding toward the opening / closing operation button portion side of the projecting portion, and forming an inclined portion extending in a spiral manner along the circumferential direction. The pressure operation protrusion which protrudes from the surface by the side of the flow rate operation means of the said opening / closing operation button part to the flow rate operation means side so that the pressing force by the said push operation can be transmitted to the said inclination part is provided. Water discharge device. 上記間隔調整手段は、更に、上記押圧操作用突起と上記傾斜部との間に設けられ且つ上記押圧操作による開閉操作ボタン部からの押圧力を受圧して上記傾斜部に伝達する受圧部材を備え、この受圧部材の上記傾斜部側の面には、上記傾斜部側に向って突出し且つ上記傾斜部と複数の箇所で当接することにより上記押圧力を分散させる押圧力分散用突起が形成されている請求項3記載の吐水装置。   The interval adjusting means further includes a pressure receiving member that is provided between the pressing operation projection and the inclined portion and receives a pressing force from the opening / closing operation button portion by the pressing operation and transmits the pressing force to the inclined portion. On the surface of the pressure receiving member on the inclined portion side, there are formed pressing force distribution protrusions that project toward the inclined portion side and disperse the pressing force by contacting the inclined portion at a plurality of locations. The water discharging apparatus according to claim 3. 上記間隔調整手段の凸部は、複数の凸部であり、これらの複数の凸部のぞれぞれの開閉操作ボタン部側の端面は上記傾斜部をそれぞれ形成している請求項3又は4に記載の吐水装置。   5. The convex part of the said space | interval adjustment means is a some convex part, The end surface at the side of the opening / closing operation button part side of each of these some convex part forms the said inclination part, respectively. The water discharging apparatus described in 1. 上記バルブユニットは、更に、押圧操作により軸方向に移動して上記主弁体を開閉させるパイロット弁と、このパイロット弁が上記主弁体を開弁させる吐水位置と上記パイロット弁が上記主弁体を閉弁させる止水位置を押圧操作により切り替え、上記主弁体が開弁時に回転操作により上記パイロット弁の移動量を変化させ、上記主弁体の開度を調整して吐水流量を調整する操作手段と、を備え、このバルブユニットの操作手段は、上記パイロット弁の開閉操作ボタン部側の端部に連結され、上記開閉操作ボタン部からの押圧操作による押圧力を上記パイロット弁に伝達させる押圧操作手段と、この押圧操作手段の外周側に回転可能に取り付けられて上記流量操作手段に連結され、上記押圧操作により上記押圧操作手段と共に並進し、上記回転操作により上記押圧操作手段との軸方向の相対位置を変化させる回転操作手段と、を備え、上記バルブユニットは、更に、上記主弁体の開度を増加させる方向に上記押圧操作手段を付勢する付勢手段と、上記パイロット弁が上記止水位置にあるときに上記押圧操作手段を係止する係止手段と、上記パイロット弁が上記吐水位置にあるときに上記回転操作により上記回転操作手段が上記押圧操作手段に対して軸方向に相対的に移動する量を所定の範囲内に規制する規制手段と、を備え、この規制手段は、上記回転操作手段及び上記押圧操作手段のそれぞれの軸方向に対向する面に円周方向に沿ってほぼらせん状に形成され且つ上記付勢手段の付勢力により互いが当接する回転操作手段傾斜部及び押圧操作手段傾斜部をそれぞれ備えている請求項1乃至5の何れか1項に記載の吐水装置。   The valve unit further includes a pilot valve that is moved in the axial direction by a pressing operation to open and close the main valve body, a water discharge position where the pilot valve opens the main valve body, and the pilot valve is the main valve body. The water stop position for closing the valve is switched by a pressing operation, and when the main valve body is opened, the movement amount of the pilot valve is changed by a rotation operation, and the opening degree of the main valve body is adjusted to adjust the discharge water flow rate. And operating means of the valve unit are connected to an end portion of the pilot valve on the opening / closing operation button portion side, and transmit a pressing force by a pressing operation from the opening / closing operation button portion to the pilot valve. A pressing operation means, and is rotatably attached to the outer peripheral side of the pressing operation means and connected to the flow rate operating means, and translates together with the pressing operation means by the pressing operation, and the rotation Rotation operation means for changing the axial relative position of the pressing operation means by operation, and the valve unit further biases the pressing operation means in a direction to increase the opening of the main valve body. Urging means for engaging, locking means for locking the pressing operation means when the pilot valve is in the water stop position, and rotation operation means by the rotation operation when the pilot valve is in the water discharge position Restricting means for restricting the amount of movement relative to the pressing operation means in the axial direction within a predetermined range, and the restricting means includes respective shafts of the rotating operation means and the pressing operation means. A rotation operation means inclined portion and a pressing operation means inclined portion that are formed in a substantially spiral shape in a circumferential direction on surfaces facing each other and are brought into contact with each other by an urging force of the urging means. Or water discharge device according to any one of 5.
JP2011002333A 2011-01-07 2011-01-07 Water discharge device Active JP5685089B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2011002333A JP5685089B2 (en) 2011-01-07 2011-01-07 Water discharge device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2011002333A JP5685089B2 (en) 2011-01-07 2011-01-07 Water discharge device

Publications (2)

Publication Number Publication Date
JP2012145144A true JP2012145144A (en) 2012-08-02
JP5685089B2 JP5685089B2 (en) 2015-03-18

Family

ID=46788912

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2011002333A Active JP5685089B2 (en) 2011-01-07 2011-01-07 Water discharge device

Country Status (1)

Country Link
JP (1) JP5685089B2 (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016118036A (en) * 2014-12-19 2016-06-30 株式会社Lixil Water faucet device and bath unit mounted with the same
CN105864474A (en) * 2016-05-26 2016-08-17 吴孟人 Throttling valve capable of achieving gear adjustment by means of fluid pressure
KR102042925B1 (en) * 2018-05-24 2019-11-08 박현규 Functional improvement type water discharge route adjustment apparatus
EP3420258B1 (en) 2016-02-22 2020-02-12 Neoperl GmbH Valve-actuating device

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001098596A (en) * 1999-09-29 2001-04-10 Inax Corp Water discharge device
JP2004092069A (en) * 2002-08-29 2004-03-25 Toto Ltd Hot water and water mixture faucet
JP2006308021A (en) * 2005-04-28 2006-11-09 Toto Ltd Opening and closing valve device
JP2007046770A (en) * 2005-07-12 2007-02-22 Inax Corp Pilot type water discharging/stopping and flow regulating valve device
JP2007085525A (en) * 2005-09-26 2007-04-05 Toto Ltd Water discharge device
JP2008232188A (en) * 2007-03-16 2008-10-02 Toto Ltd Water discharge device
JP2008231686A (en) * 2007-03-16 2008-10-02 Toto Ltd Spouting device
JP2008256141A (en) * 2007-04-06 2008-10-23 Nok Corp Push button faucet
JP2009079421A (en) * 2007-09-26 2009-04-16 Toto Ltd Faucet device

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001098596A (en) * 1999-09-29 2001-04-10 Inax Corp Water discharge device
JP2004092069A (en) * 2002-08-29 2004-03-25 Toto Ltd Hot water and water mixture faucet
JP2006308021A (en) * 2005-04-28 2006-11-09 Toto Ltd Opening and closing valve device
JP2007046770A (en) * 2005-07-12 2007-02-22 Inax Corp Pilot type water discharging/stopping and flow regulating valve device
JP2007085525A (en) * 2005-09-26 2007-04-05 Toto Ltd Water discharge device
JP2008232188A (en) * 2007-03-16 2008-10-02 Toto Ltd Water discharge device
JP2008231686A (en) * 2007-03-16 2008-10-02 Toto Ltd Spouting device
JP2008256141A (en) * 2007-04-06 2008-10-23 Nok Corp Push button faucet
JP2009079421A (en) * 2007-09-26 2009-04-16 Toto Ltd Faucet device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016118036A (en) * 2014-12-19 2016-06-30 株式会社Lixil Water faucet device and bath unit mounted with the same
EP3420258B1 (en) 2016-02-22 2020-02-12 Neoperl GmbH Valve-actuating device
EP3420258B2 (en) 2016-02-22 2023-06-28 Neoperl GmbH Valve-actuating device
CN105864474A (en) * 2016-05-26 2016-08-17 吴孟人 Throttling valve capable of achieving gear adjustment by means of fluid pressure
CN105864474B (en) * 2016-05-26 2018-06-19 吴孟人 A kind of throttle valve by Fluid pressure regulation stall
KR102042925B1 (en) * 2018-05-24 2019-11-08 박현규 Functional improvement type water discharge route adjustment apparatus

Also Published As

Publication number Publication date
JP5685089B2 (en) 2015-03-18

Similar Documents

Publication Publication Date Title
US8474482B2 (en) Plumbing shutoff or switching valve
JP5685089B2 (en) Water discharge device
ITMI20102359A1 (en) THERMOSTATIC MIXING VALVE WITH INCORPORATED FLOW DIVERTER
JP5711977B2 (en) Water discharge device
DK2806197T3 (en) Single-lever valve, in particular sanitary single lever mixing valve
JP2008256141A (en) Push button faucet
JP4958068B2 (en) Water discharge device
EP3198351A2 (en) Fluid control valves
JP4993410B2 (en) Water discharge device
JP5671562B2 (en) Hot and cold mixer tap
JP6057845B2 (en) Valve unit and faucet
JP6485631B2 (en) Faucet device
JP2014066091A (en) Shower faucet
JP2011074967A (en) Main valve separation type electromagnetic valve and automatic faucet
JP3882193B1 (en) Hot water mixing apparatus and hot water mixing faucet provided with the same
JP6583607B2 (en) Faucet device
JP5721679B2 (en) Faucet device
KR101812214B1 (en) Shower
JP2019148073A (en) Hot and cold water mixing faucet device
JP2013076445A (en) Water discharge device
JP3882194B1 (en) Hot water mixing apparatus and hot water mixing faucet provided with the same
JP2013064261A (en) Mixing faucet
CN114017517A (en) Valve core, faucet and kitchen and bathroom appliance
JP4753664B2 (en) Single lever type mixer tap
WO2019187630A1 (en) Valve device

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20131113

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20140911

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20140924

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20141118

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20150105

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20150116

R150 Certificate of patent or registration of utility model

Ref document number: 5685089

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

S111 Request for change of ownership or part of ownership

Free format text: JAPANESE INTERMEDIATE CODE: R313117

R350 Written notification of registration of transfer

Free format text: JAPANESE INTERMEDIATE CODE: R350

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250