JP4713976B2 - Inlet water discharge structure of faucet - Google Patents

Inlet water discharge structure of faucet Download PDF

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JP4713976B2
JP4713976B2 JP2005220060A JP2005220060A JP4713976B2 JP 4713976 B2 JP4713976 B2 JP 4713976B2 JP 2005220060 A JP2005220060 A JP 2005220060A JP 2005220060 A JP2005220060 A JP 2005220060A JP 4713976 B2 JP4713976 B2 JP 4713976B2
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water
hose
discharge port
faucet
water discharge
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JP2007032183A (en
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智 近藤
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株式会社ケーブイケー
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Description

本発明は、ホースが引き出し自在に取り付けられた水栓の本体内に浸入する湯水等の浸入水を排出するための水栓の浸入水排出構造に関する。   The present invention relates to a faucet intrusion water discharge structure for discharging intrusion water such as hot water entering a main body of a faucet to which a hose is removably attached.

従来、流し台や洗面台等にシャワー装置等を収容保持するための水栓が用いられており、このような水栓には、シャワーヘッド等の吐水具に接続されたホースが水栓の本体から引き出し自在に取り付けられ、流し台シンクや洗面ボウル等内の所望の位置でシャワー散水を得ることができるホース引き出し式の水栓も知られている。このような水栓では、ホースが挿通される水栓の開口部の隙間等から水栓本体内部に湯水が浸入し、ホースを伝って流し台や洗面台下側のキャビネット内等に湯水が垂れるおそれがある。そこで、従来、ホースに伝わって滴下する湯水を水栓本体途中からその外部に排出するための排出口を設けるなどの、水栓の浸入水排出構造が用いられている。   Conventionally, faucets for accommodating and holding shower devices and the like have been used in sinks and washstands, and in such faucets, a hose connected to a water discharge device such as a shower head is connected to the faucet body. There is also known a hose pull-out faucet that is attached so as to be freely drawn out and can obtain shower watering at a desired position in a sink sink or a wash bowl. In such a faucet, hot water may enter the faucet body from the gap of the faucet opening through which the hose is inserted, and the hot water may hang down along the hose or in the cabinet below the sink or washbasin. There is. In view of this, conventionally, a faucet intrusion water discharge structure has been used, such as providing a discharge port for discharging hot water that is dropped through the hose from the middle of the faucet body.

このような水栓の浸入水排出構造としては、例えば、図7に示すように、水栓10の本体11に排出口60を形成するとともに、この排出口60の上流側に、ホース18に直接接触するとともに表面に多数の通孔を有する表面材62と、その下側に重ねられたスポンジ等の吸水材64とからなる水切部材66を用いるものが知られている。この浸入水排出構造68では、水栓10内に斜めに収容されるホース18の表面に付着する浸入水を、ホース18出し入れの際に表面材62によってしごくように取り除くとともに、取り除いた浸入水を吸水材64によって吸収させて排出口60から確実に排出させるものである。また、表面材62によって吸水材64を保護することにより、ホース18の出し入れによって吸水材64がすり切れて水切り能力の低下することが防止されている(例えば、特許文献1参照。)。   As such an intrusion water discharge structure of the faucet, for example, as shown in FIG. 7, a discharge port 60 is formed in the main body 11 of the faucet 10, and the hose 18 is directly connected to the upstream side of the discharge port 60. A device using a draining member 66 comprising a surface material 62 that contacts and has a large number of through-holes on the surface and a water absorbing material 64 such as a sponge layered on the lower surface is known. In this intrusion water discharge structure 68, the intrusion water adhering to the surface of the hose 18 accommodated obliquely in the faucet 10 is removed by the surface material 62 when the hose 18 is taken in and out, and the removed intrusion water is removed. It is absorbed by the water absorbing material 64 and reliably discharged from the discharge port 60. Further, by protecting the water absorbing material 64 with the surface material 62, the water absorbing material 64 is prevented from being worn out by the hose 18 being put in and out (see, for example, Patent Document 1).

特開2002−364036号公報(図3)JP 2002-364036 A (FIG. 3)

ところが、この水栓10の浸入水排出構造68では、上記したように、ホース18と直接摺接する水切部材66がホース18の引き出し・収納の際にホース18外周面の浸入水をしごくようにして取り除くことができるが、ホース18が引き出された状態、又は、ホース18が収納された状態のままでは効率良く水切りを行うことができない。よって、ホース18を引き出した状態で吐水を行っている場合に浸入した浸入水や、ホース18を収納した状態で流れ落ちる浸入水は十分に水切りを行うことができず、ホース18外周面を伝ったまま水栓10下方に流れ落ちてしまう。また、勢い良く水栓10内に湯水が浸入した場合などには、浸入水は、水切部材66を乗り越えてホース18外周面の側方や上側に跳ね上がって、排出口60を越えて水栓10内部の下方へ流れ落ちていってしまうおそれもある。   However, in the intrusion water discharge structure 68 of the faucet 10, as described above, the draining member 66 that is in direct sliding contact with the hose 18 makes the intrusion water on the outer peripheral surface of the hose 18 when the hose 18 is pulled out and stored. Although it can be removed, draining cannot be performed efficiently if the hose 18 is pulled out or the hose 18 is housed. Therefore, the intrusion water that has entered when the water is discharged with the hose 18 pulled out or the intrusion water that flows down in the state in which the hose 18 is housed cannot be sufficiently drained, and is transmitted to the outer peripheral surface of the hose 18. It will flow down to the faucet 10 as it is. In addition, when hot water enters the faucet 10 vigorously, the intruded water jumps over the drainage member 66 and jumps to the side or upper side of the outer peripheral surface of the hose 18, and passes through the outlet 60 to the faucet 10. There is also a risk of flowing down inside.

本発明は上記した従来の水栓の浸入水排出構造の問題点を解消するものであり、ホース外周面を伝わる浸入水を減少させ、また、浸入水の水勢を抑えて排出口を飛び越える浸入水を減少させ、排出口から効率よく浸入水を排出させることのできる水栓の浸入水排出構造を提供することを目的とする。   The present invention solves the above-mentioned problems of the conventional faucet intrusion water discharge structure, reduces the intrusion water that travels on the outer peripheral surface of the hose, and suppresses the water flow of the intrusion water to jump over the discharge port. It is an object of the present invention to provide an intrusion water discharge structure for a faucet that can reduce inflow and efficiently discharge intrusion water from a discharge port.

以上の課題を解決するために、本発明の採った手段を以下に説明する。本発明の水栓の浸入水排出構造は、ホースが引き出し自在に挿通される水栓の本体内部に浸入した浸入水を排出するための水栓の浸入水排出構造であって、前記ホースが収容される前記本体の挿通孔には排出口が形成され、該排出口よりも挿通孔先端寄りの前記挿通孔の内周面下部には、その上方に前記ホースを支持するリブが形成され、前記リブの基端部が先端部よりも低く形成されたことを特徴とする水栓の浸入水排出構造(請求項1)であるIn order to solve the above problems, means taken by the present invention will be described below. The faucet intrusion water discharge structure of the present invention is a faucet intrusion water discharge structure for discharging intrusion water that has entered the inside of the faucet body through which the hose is removably inserted. A discharge port is formed in the insertion hole of the main body to be formed, and a rib supporting the hose is formed above the lower portion of the inner peripheral surface of the insertion hole closer to the tip of the insertion hole than the discharge port , a penetration water discharge structure of the faucet, characterized in that the base end portion of the rib is formed lower than the front end portion (claim 1).

このように挿通孔内でホースを支持するリブが形成されることにより、ホースの外周面は挿通孔内周面の下部から離れて挿通孔の上方に位置される。よって、ホースを伝う浸入水をホース外周面から分離させて下方に滴下させることができる。このようにして、ホース外周面を伝う浸入水を減少させ、浸入水を効率よく排出口から排出させることができる。また、リブによって、浸入水がリブの両側に分流されることにより、ホース外周面から滴下された浸入水の水勢を弱めることができ、浸入水が水勢によって排出口を飛び越えることを防止することができる。   By forming the rib for supporting the hose in the insertion hole as described above, the outer peripheral surface of the hose is positioned above the insertion hole away from the lower portion of the inner peripheral surface of the insertion hole. Therefore, the intrusion water that travels through the hose can be separated from the outer peripheral surface of the hose and dropped downward. In this way, it is possible to reduce the intrusion water that travels on the outer peripheral surface of the hose and efficiently discharge the intrusion water from the discharge port. Also, the inflowing water is diverted to both sides of the rib by the rib, so that the inflowing water dripped from the outer peripheral surface of the hose can be weakened, and the intruding water can be prevented from jumping over the discharge port due to the water force. it can.

また、排出口の近傍のリブ基端部が、リブの先端部よりも低く形成されることにより、排出口の直前においてリブとホース外周面との間にも隙間を設けることができる。ここで、リブの先端部とは、吐水口における先端側の部位を言い、リブの基端部とは、吐水口における基端側の部位を言う。よって、ホースとリブとの間に伝わる浸入水についても、この隙間によって挿通孔下部に滴下させることが容易となり、より一層浸入水の排出を効率よく行うことができる。
In addition, since the rib base end portion in the vicinity of the discharge port is formed lower than the tip end portion of the rib, a gap can be provided between the rib and the hose outer peripheral surface immediately before the discharge port. Here, the distal end portion of the rib refers to a portion on the distal end side in the water discharge port, and the proximal end portion of the rib refers to a portion on the proximal end side in the water discharge port. Therefore, the intrusion water transmitted between the hose and the rib can be easily dropped to the lower portion of the insertion hole by this gap, and the intrusion water can be discharged more efficiently.

本発明は上記のようにリブが設けられているので、ホース外周面を伝わる浸入水を減少させるとともに、浸入水の水勢を抑えて排出口を飛び越える浸入水を減少させ、排出口から効率よく浸入水を排出させることができる。   Since the present invention is provided with the ribs as described above, the intrusion water that travels on the outer peripheral surface of the hose is reduced, and the intrusion water that jumps over the discharge port is reduced by suppressing the water flow of the intrusion water. Water can be discharged.

次に、本発明の水栓の浸入水排出構造の実施の形態を図を参考にして詳細に説明する。図1に示すように、水栓の浸入水排出構造1は、流し台や洗面台のデッキ面(図示省略)上に設置される水栓10の本体11に設けられるものである。本体11のボデーユニット12の上部には、レバーハンドル13が取り付けられ、また、ボデーユニット12の側面中央付近には、吐水口15が水平方向に回動自在に取り付けられている。そして、この水栓10は、レバーハンドル13を操作することにより、吐水口15先端に着脱自在に保持されるシャワーヘッド14からの吐止水及び吐水量の調整を行うことができるものである。   Next, an embodiment of the ingress water discharge structure for a faucet of the present invention will be described in detail with reference to the drawings. As shown in FIG. 1, the faucet ingress water discharge structure 1 is provided on a main body 11 of a faucet 10 installed on a deck surface (not shown) of a sink or a wash basin. A lever handle 13 is attached to the upper part of the body unit 12 of the main body 11, and a water outlet 15 is attached to the vicinity of the center of the side surface of the body unit 12 so as to be rotatable in the horizontal direction. The faucet 10 can adjust the amount of water discharged and the amount of water discharged from the shower head 14 detachably held at the tip of the water discharge port 15 by operating the lever handle 13.

シャワーヘッド14は、吐水口15の先端開口部16に着脱自在に保持されている。また、シャワーヘッド14に接続されたホース18は、先端開口部16奥の挿通孔20内に引き出し自在に収容挿通されており、シャワーヘッド14をホース18ごと引き出すことにより、流し台シンクや洗面ボウル(図示省略)内の所望の位置においてシャワーヘッド14からの吐水を得ることができるように構成されている。そして、図示は省略するが、水栓10下方に引き回されるホース18は、引き出しが可能な十分な長さに水栓10の下方に垂れ下げられ、さらにその端部は、水栓10の本体11内に内蔵された弁装置に接続されている。また、ホース18は、外周面が蛇腹状に形成されたいわゆるフレキシブル管から構成され、一定の剛性を備えるとともにある程度自由に可撓可能に設けられており、ホース18を円滑に引き出し・収容できるように構成されている。なお、本例のホース18の外径は約14mmに設けられている。   The shower head 14 is detachably held at the tip opening 16 of the water discharge port 15. The hose 18 connected to the shower head 14 is accommodated and inserted into the insertion hole 20 at the back of the tip opening 16 so that it can be pulled out. By pulling out the shower head 14 together with the hose 18, a sink sink and a wash bowl ( The water discharge from the shower head 14 can be obtained at a desired position in (not shown). And although illustration is omitted, the hose 18 routed below the faucet 10 is hung down below the faucet 10 to a length that can be pulled out. It is connected to a valve device built in the main body 11. Further, the hose 18 is formed of a so-called flexible tube having an outer peripheral surface formed in a bellows shape, and has a certain rigidity and is provided so as to be flexible to some extent, so that the hose 18 can be smoothly drawn out and accommodated. It is configured. In addition, the outer diameter of the hose 18 of this example is provided at about 14 mm.

吐水口15は、ボデーユニット12から斜め上方にその先端が向けられて取り付けられている。また、その全体が、先端に行くにしたがって下方に緩やかに湾曲した形状とされている。吐水口15の横断面形状は、先端に行くにしたがって先細となるように形成されている。また、後述するように、吐水口15内部の挿通孔20の横断面形状も先端に行くにしたがって先細となる形状に形成されており、基端側の最も大径の部位で約35mmに、先端側で約24mmに設けられている。   The water discharge port 15 is attached with its tip directed obliquely upward from the body unit 12. Moreover, the whole is made into the shape gently curved below as it goes to the front-end | tip. The cross-sectional shape of the water discharge port 15 is formed so as to be tapered toward the tip. Further, as will be described later, the cross-sectional shape of the insertion hole 20 inside the water discharge port 15 is also formed to taper as it goes to the tip, and the tip of the largest diameter portion on the base end side is about 35 mm. It is about 24mm on the side.

また、斜め上方に突設された吐水口15の側面部の下側に向けられる部位には、吐水口15の先端寄りに、先端側から順に、第一排出口22と係止孔24とが穿設されている。また、吐水口15の基端寄りには第二排出口26が穿設されている。第一排出口22は、先端開口部16から浸入した浸入水を、第二排出口26に先だって排出するために形成されるものである。また、係止孔24は、後述する水切部材30の係止突起38が係止されて、水切部材30を吐水口15内に固定するために設けられており、平面視が係止突起38とほぼ同形状に形成されている。第二排出口26は、傾斜して突設される吐水口15の外側壁に対して、鉛直方向に穿設されており、同じく鉛直方向に突設される壁部50と相まって、浸入水を確実に排出できるように形成されている。また、第二排出口26の後方側の挿通孔20の内周面の下部部分には、上部が半円状に切り欠かれた壁部50が設けられている。そして、この壁部50の上部にホース18が載置されるとともに、ホース18の引き出し・収納の際にはこの壁部50上をホース18が移動される。   In addition, the first discharge port 22 and the locking hole 24 are arranged in order from the front end side near the front end of the water discharge port 15 at a portion directed to the lower side of the side surface portion of the water discharge port 15 protruding obliquely upward. It has been drilled. A second discharge port 26 is formed near the base end of the water discharge port 15. The first discharge port 22 is formed to discharge the intrusion water that has entered from the tip opening 16 prior to the second discharge port 26. Further, the locking hole 24 is provided to lock a draining member 30 in a water discharge port 15 by locking a locking projection 38 of a draining member 30 to be described later. It is formed in almost the same shape. The second discharge port 26 is formed in the vertical direction with respect to the outer wall of the water discharge port 15 that protrudes in an inclined manner. It is formed so that it can be discharged reliably. Further, a wall portion 50 whose upper portion is cut out in a semicircular shape is provided in a lower portion of the inner peripheral surface of the insertion hole 20 on the rear side of the second discharge port 26. The hose 18 is placed on the upper portion of the wall 50, and the hose 18 is moved on the wall 50 when the hose 18 is pulled out and stored.

吐水口15の先端開口部16内には、ほぼ円筒状の水切部材30が挿嵌固定されており、ホース18は、この水切部材30内に挿通されて吐水口15内に挿通されている。水切部材30の先端外周面にはセレーション32が刻設されており、シャワーヘッド14が吐水口15に保持される際には、シャワーヘッド14が水切部材30の先端に挿嵌接続されるとともにシャワーヘッド14の基端部内周面のセレーション17が水切部材30側のセレーション32に噛合することにより、吐水口15に対するシャワーヘッド14の回動が防止されている。また、吐水口15に取り付けられた状態で下方に向けられる水切部材30の側面の中央付近には開口部34が形成されている。この開口部34は、吐水口15内に取り付けられた状態で第一排出口22に臨む位置に配置され、ホース18を伝う浸入水が、この開口部34から第一排出口22に導かれるように構成されている。また、水切部材30の基端部には、片持ち梁状に突設された係止片36が設けられており、この係止片36の先端に設けられた係止突起38が、上記したように、吐水口15の係止孔24に係止される。   A substantially cylindrical draining member 30 is inserted and fixed in the distal end opening 16 of the water discharge port 15, and the hose 18 is inserted into the water draining member 30 and inserted into the water discharge port 15. A serration 32 is engraved on the outer peripheral surface of the tip of the draining member 30, and when the shower head 14 is held in the water discharge port 15, the shower head 14 is inserted into and connected to the tip of the draining member 30 and showered. Since the serrations 17 on the inner peripheral surface of the base end portion of the head 14 mesh with the serrations 32 on the draining member 30 side, the shower head 14 is prevented from rotating with respect to the water discharge port 15. An opening 34 is formed in the vicinity of the center of the side surface of the draining member 30 that is directed downward while being attached to the water discharge port 15. The opening 34 is disposed at a position facing the first discharge port 22 in a state of being attached in the water discharge port 15, so that the intrusion water passing through the hose 18 is guided to the first discharge port 22 from the opening 34. It is configured. Further, the base end portion of the draining member 30 is provided with a locking piece 36 protruding like a cantilever, and the locking projection 38 provided at the tip of the locking piece 36 is as described above. As described above, it is locked in the locking hole 24 of the water discharge port 15.

次いで、吐水口15の挿通孔20内に形成されたリブ40について説明する。リブ40は、図1に示すように、挿通孔20の長手方向に沿って、その中央付近から第二排出口26の直前にかけて、挿通孔20の内周面下部から上方に向けて突設されている。図2及び図3に示すように、リブ40は、挿通孔20の内周面下部中央から、挿通孔20の中心に向かって突設されている。挿通孔20の内周面からのリブ40の高さは約5mmに設けられている。また、リブ40は、図3に示すようにその横断面形状が、上端が先細となる約20度の角度に開いた扇状に形成されており、また、その上端部42の幅は約2mmに設けられている。また、リブ40の第二排出口26側の約6mmの長さの基端部44は、挿通孔20の内周面からの高さが約2mmとされており、約5mmの高さに設けられたリブ40の先端部46よりもその高さが低く設けられている。   Next, the rib 40 formed in the insertion hole 20 of the water discharge port 15 will be described. As shown in FIG. 1, the rib 40 protrudes upward from the lower portion of the inner peripheral surface of the insertion hole 20 along the longitudinal direction of the insertion hole 20 from the vicinity of the center thereof to immediately before the second discharge port 26. ing. As shown in FIGS. 2 and 3, the rib 40 protrudes from the center of the lower part of the inner peripheral surface of the insertion hole 20 toward the center of the insertion hole 20. The height of the rib 40 from the inner peripheral surface of the insertion hole 20 is about 5 mm. Further, as shown in FIG. 3, the rib 40 is formed in a fan shape opened at an angle of about 20 degrees with a tapered upper end, and the width of the upper end portion 42 is about 2 mm. Is provided. Further, the base end portion 44 having a length of about 6 mm on the second discharge port 26 side of the rib 40 has a height from the inner peripheral surface of the insertion hole 20 of about 2 mm, and is provided at a height of about 5 mm. The height of the rib 40 is lower than that of the front end portion 46 of the rib 40.

このように構成された浸入水排出構造1では、以下のように浸入水を効率よく排出させることができる。まず、吐水口15の先端開口部16から、ホース18との間から挿通孔20内に浸入する浸入水は、ホース18外周面から下方へ流れ、上記したように、水切部材30の開口部34を経て、第一排出口22から一定量が排出される。第一排出口22周辺に流れ落ちず、ホース18外周面を伝って挿通孔20下方へ流下する浸入水や、第一排出口22周辺に流れ落ちたが、第一排出口22を越えてしまった浸入水は、さらに挿通孔20内を流下する。この際に、図2及び図3に示すように、ホース18がリブ40によって挿通孔20の上方に支持されており、挿通孔20の内周面下部から一定の距離がおかれている。よって、ホース18の下部を伝う浸入水は、ホース18下方の挿通孔20の内周面下部に落下し、ホース18外周面から容易に滴下させることができる。そして、図3に示すように、このようにホース18から分離された浸入水Bは、リブ40の両脇いずれかを通って第二排出口26方向へと流れ落ちる。また、図2に示すように、リブ40の基端側は、先端部46よりも低く形成された基端部44とされているため、特に先端部46の上端部42とホース18外周面との間を伝わってきた浸入水なども、基端部44とホース18外周面との間に設けられる隙間48によって、ホース18外周面から容易に滴下させることができる。なお、同時に、基端部44を設けておくことにより、第二排出口26直前でリブ40の左右の浸入水が合流して水勢が増すことを防止することもできる。そして、ホース18から滴下された浸入水は、第二排出口26から吐水口18外に排出される。また、壁部50によって、第二排出口26を飛び越えて挿通孔20下方へと流下しようとする浸入水は第二排出口26に強制的に導かれる。   In the infiltration water discharge structure 1 configured as described above, the infiltration water can be efficiently discharged as follows. First, intrusion water that enters the insertion hole 20 from between the tip opening 16 of the water discharge port 15 and the hose 18 flows downward from the outer peripheral surface of the hose 18, and as described above, the opening 34 of the draining member 30. After that, a certain amount is discharged from the first discharge port 22. Infiltration water that does not flow down around the first discharge port 22 but flows down the insertion hole 20 through the outer peripheral surface of the hose 18 or flows into the periphery of the first discharge port 22, but has entered the first discharge port 22. Water further flows down through the insertion hole 20. At this time, as shown in FIGS. 2 and 3, the hose 18 is supported above the insertion hole 20 by the rib 40, and a certain distance is placed from the lower part of the inner peripheral surface of the insertion hole 20. Therefore, the intrusion water that propagates through the lower portion of the hose 18 can drop to the lower portion of the inner peripheral surface of the insertion hole 20 below the hose 18 and can be easily dropped from the outer peripheral surface of the hose 18. As shown in FIG. 3, the intrusion water B thus separated from the hose 18 flows down toward the second discharge port 26 through either side of the rib 40. Further, as shown in FIG. 2, the proximal end side of the rib 40 is a proximal end portion 44 formed lower than the distal end portion 46, and therefore, particularly the upper end portion 42 of the distal end portion 46 and the outer peripheral surface of the hose 18. The intrusion water or the like transmitted between the hose 18 can be easily dropped from the outer peripheral surface of the hose 18 by the gap 48 provided between the base end portion 44 and the outer peripheral surface of the hose 18. At the same time, by providing the base end portion 44, it is possible to prevent the intrusion water on the left and right sides of the rib 40 from joining just before the second discharge port 26 to increase the water force. Then, the ingress water dripped from the hose 18 is discharged from the second outlet 26 to the outside of the outlet 18. Further, the intruding water that jumps over the second discharge port 26 and flows downward through the insertion hole 20 is forcibly guided to the second discharge port 26 by the wall 50.

また、浸入水がいったんリブ40の両側に分けられて第二排出口26方向へ流下されるようにすることにより、浸入水が多量に集まり水流が強まることを防止でき、浸入水が第二排出口26を容易には飛び越えないようにすることができる。なお、本例の水栓10のように、吐水口15が湾曲した形状とされているために、型抜きの支障となる場合など、壁部を挿通孔20全周に渡って形成できない場合には、挿通孔20上方寄りの、壁部50が形成されない部位からの浸入水の流下を抑制できるので好適である。このようにして、挿通孔20内に浸入した浸入水を効率よく排出させることができる。   In addition, by making the ingress water once divided on both sides of the rib 40 and flowing down toward the second discharge port 26, it is possible to prevent a large amount of intrusion water from collecting and strengthen the water flow, and the intrusion water is prevented from flowing into the second discharge port 26. It is possible to prevent the outlet 26 from jumping over easily. In the case where the wall portion cannot be formed over the entire circumference of the insertion hole 20, such as when the water discharge port 15 has a curved shape, as in the faucet 10 of the present example, which may obstruct the mold removal. Is preferable because it can suppress the inflow of intrusion water from a portion near the upper portion of the insertion hole 20 where the wall portion 50 is not formed. In this way, the intrusion water that has entered the insertion hole 20 can be discharged efficiently.

次に、本発明の水栓の浸入水排出構造の別の実施の形態を図を参考にして詳細に説明する。なお、上記した第一の実施の形態と共通する構成については、第一の実施の形態と同一の符号を図に付して説明を省略する。図4に示すのは、挿通孔20内に2条のリブ40を並設した浸入水排出構造2である。この浸入水排出構造2によれば、2条のリブ40によって浸入水を3つに分散できるので、より一層浸入水の水流を弱めることができ、浸入水を第二排出口26から確実に排出させることができる。   Next, another embodiment of the ingress water discharge structure for a faucet of the present invention will be described in detail with reference to the drawings. In addition, about the structure which is common in above-mentioned 1st embodiment, the code | symbol same as 1st embodiment is attached | subjected to a figure, and description is abbreviate | omitted. FIG. 4 shows an intrusion water discharge structure 2 in which two ribs 40 are arranged in parallel in the insertion hole 20. According to this intrusion water discharge structure 2, since the inflow water can be dispersed into three by the two ribs 40, the inflow water flow can be further weakened, and the ingress water is reliably discharged from the second discharge port 26. Can be made.

また、図5に示す浸入水排出構造3では、リブ40の上端部42に凹部52が形成されている。この浸入水排出構造3によれば、ホース18外周面と上端部42との間に隙間を設けることができるので、ホース18外周面の下部を伝う浸入水をホース18外周面から分離させやすくすることもできる。また同様に、図6に示す浸入水排出構造4のように、リブ40の上端部42にブラシ54を設けることにより、ホース18外周面と上端部42との間に隙間を設け、ホース18外周面の下部を伝う浸入水をホース18外周面から分離させやすくすることができる。また、リブ自体をブラシとすることとしても良い。   Further, in the intrusion water discharge structure 3 shown in FIG. 5, a recess 52 is formed in the upper end portion 42 of the rib 40. According to this intrusion water discharge structure 3, since a gap can be provided between the outer peripheral surface of the hose 18 and the upper end portion 42, it is easy to separate intrusion water that travels below the outer peripheral surface of the hose 18 from the outer peripheral surface of the hose 18. You can also. Similarly, as in the infiltration water discharge structure 4 shown in FIG. 6, a brush 54 is provided at the upper end portion 42 of the rib 40, thereby providing a gap between the outer peripheral surface of the hose 18 and the upper end portion 42. It is possible to make it easier to separate the intrusion water that travels in the lower part of the surface from the outer peripheral surface of the hose 18. Further, the rib itself may be a brush.

なお、本発明は上記した実施の形態に限られるものではなく、本発明の趣旨の範囲内で種々の変更が可能である。例えば、リブ40の形状は他のものでも良く、長さ、厚み、高さなどは適宜変更することができる。また、吐水口の形状によっては、挿通孔20内の別の部位にリブ40を設けることもできる。また、リブ40を吐水口15とは別体に形成することもできる。   The present invention is not limited to the above-described embodiment, and various modifications can be made within the scope of the gist of the present invention. For example, the rib 40 may have other shapes, and the length, thickness, height, and the like can be changed as appropriate. Further, depending on the shape of the water discharge port, the rib 40 can be provided at another part in the insertion hole 20. Further, the rib 40 can be formed separately from the water outlet 15.

本発明の水栓の浸入水排出構造を用いた水栓の側面視縦断面図である。It is a side view longitudinal cross-sectional view of the faucet using the ingress water discharge structure of the faucet of the present invention. 図1の要部拡大図面である。It is a principal part enlarged view of FIG. 図2のA−A線断面図である。It is the sectional view on the AA line of FIG. 別の浸入水排出構造の要部拡大図である。It is a principal part enlarged view of another intrusion water discharge structure. さらに別の浸入水排出構造の要部拡大図である。It is a principal part enlarged view of another intrusion water discharge structure. さらに別の浸入水排出構造の要部拡大図である。It is a principal part enlarged view of another intrusion water discharge structure. 従来の水栓の浸入水排出構造を用いた水栓の側面視縦断面図である。It is a side view longitudinal cross-sectional view of the faucet using the conventional ingress water discharge structure of a faucet.

符号の説明Explanation of symbols

1,2,3,4;浸入水排出構造、10;水栓、11;本体、12;ボデーユニット、13;レバーハンドル、14;シャワーヘッド、15;吐水口、16;先端開口部、17;セレーション、18;ホース、20;挿通孔、22;第一排出口、24;係止孔、26;第二排出口、30;水切部材、32;セレーション、34;開口部、36;係止片、38;係止突起、40;リブ、42;上端部、44;基端部、46;先端部、48;隙間、50;壁部、52;凹部、54;ブラシ、60;排出口、62;表面材、64;吸水材、66;水切部材、68;浸入水排出構造。
1, 2, 3, 4; Inlet water discharge structure, 10; faucet, 11; body, 12; body unit, 13; lever handle, 14; shower head, 15; water outlet, 16; Serration, 18; hose, 20; insertion hole, 22; first outlet, 24; locking hole, 26; second outlet, 30; draining member, 32; serration, 34; opening, 36; , 38; locking projection, 40; rib, 42; upper end portion, 44; proximal end portion, 46; distal end portion, 48; gap, 50; wall portion, 52; Surface material, 64; water-absorbing material, 66; draining member, 68;

Claims (1)

ホースが引き出し自在に挿通される水栓の本体内部に浸入した浸入水を排出するための水栓の浸入水排出構造であって、
前記ホースが収容される前記本体の挿通孔には排出口が形成され、該排出口よりも挿通孔先端寄りの前記挿通孔の内周面下部には、その上方に前記ホースを支持するリブが形成され、前記リブの基端部が先端部よりも低く形成されたことを特徴とする水栓の浸入水排出構造。
A faucet intrusion water discharge structure for discharging the intrusion water that has entered the inside of the faucet body through which the hose is removably inserted,
A discharge port is formed in the insertion hole of the main body in which the hose is accommodated, and a rib for supporting the hose is provided above the insertion hole at a lower portion of the inner peripheral surface of the insertion hole closer to the tip of the insertion hole than the discharge port. An intrusion water discharge structure for a faucet , wherein the rib has a base end portion formed lower than a tip end portion .
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JP2022170570A (en) * 2021-04-28 2022-11-10 パナソニックIpマネジメント株式会社 faucet device

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0336058U (en) * 1989-08-19 1991-04-09
JP2002364036A (en) * 2001-06-06 2002-12-18 Inax Corp Throating structure of hose storage faucet

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0336058A (en) * 1989-07-03 1991-02-15 Nec Corp Low noise printing hammer

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0336058U (en) * 1989-08-19 1991-04-09
JP2002364036A (en) * 2001-06-06 2002-12-18 Inax Corp Throating structure of hose storage faucet

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