JP5006539B2 - Hot water tap - Google Patents

Hot water tap Download PDF

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JP5006539B2
JP5006539B2 JP2005363992A JP2005363992A JP5006539B2 JP 5006539 B2 JP5006539 B2 JP 5006539B2 JP 2005363992 A JP2005363992 A JP 2005363992A JP 2005363992 A JP2005363992 A JP 2005363992A JP 5006539 B2 JP5006539 B2 JP 5006539B2
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spring
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temperature
valve body
movable valve
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JP2007139176A (en
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利明 西岡
元太 井上
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株式会社三栄水栓製作所
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本発明は、水栓本体内に軸線方向に移動可能に設けられた可動弁体を、形状記憶材料よりなる感温バネとバイアスバネとにより軸線方向の両側から付勢するように構成されている湯水混合栓に関するものである。   The present invention is configured to urge a movable valve body provided in the faucet body so as to be movable in the axial direction from both sides in the axial direction by a temperature-sensitive spring and a bias spring made of a shape memory material. It relates to hot and cold water mixing taps.

この種の湯水混合栓は、水栓本体内に設けられた水側弁座及び湯側弁座と、これら両弁座に選択的に接離するように前記水栓本体内に同軸上で軸線方向に移動可能に設けられた可動弁体と、この可動弁体の上流側および下流側の水栓本体内にそれぞれ形成された湯流入室及び湯水混合室と、前記可動弁体を湯側弁座と接近する方向に付勢するように前記湯水混合室側に設けられた形状記憶材料よりなる感温バネと、この感温バネの付勢力に対抗させて前記可動弁体を水側弁座と接近する方向に付勢するように前記湯流入室側に設けられたバイアスバネと、前記水栓本体の一端に設けられ前記バイアスバネを介して可動弁体を軸線方向に移動させることにより湯水混合水の設定温度を調整する温調ハンドルと、を備えて構成されている。そして、従来一般の湯水混合栓においては、前記バイアスバネとして、図5に示すように、その軸線方向の全長にわたって等ピッチで螺旋状に巻回されてほぼ一定のバネ定数を有するように作製された単一のコイルバネ70が使用されていた。   This type of hot and cold water mixing valve is composed of a water side valve seat and a hot water side valve seat provided in the faucet body, and an axial line coaxially in the faucet body so as to selectively contact and separate these valve seats. A movable valve body movably provided in the direction, a hot water inflow chamber and a hot water mixing chamber formed in the water faucet body upstream and downstream of the movable valve body, and the movable valve body as a hot water side valve. A temperature-sensitive spring made of a shape memory material provided on the hot water / water mixing chamber side so as to be biased in a direction approaching the seat; and the movable valve body is made to oppose the biasing force of the temperature-sensitive spring to the water-side valve seat And a bias spring provided on the hot water inflow chamber side so as to be biased in a direction approaching the hot water, and a movable valve body is moved in the axial direction via the bias spring provided at one end of the faucet body. And a temperature control handle for adjusting the set temperature of the mixed water. Then, in the conventional general hot-and-water mixing tap, as the bias spring, as shown in FIG. 5, the bias spring is spirally wound at an equal pitch over the entire length in the axial direction, and has a substantially constant spring constant. A single coil spring 70 was used.

しかし、このようにバネ定数がほぼ一定の単一コイルバネ(バイアスバネ)を使用してなる従来一般の湯水混合栓では、前記バイアスバネのバネ定数を湯水混合水の温度(以下、吐水温度という)が40℃付近で安定するようなバネ定数に選択すると、温調ハンドルの回転角度が限られるために、高温の吐水域、例えば最高温度に設定すべく温調ハンドルを全開位置に回転操作してもバイアスバネ70の付勢力(押し返す力)が不足気味になり、意図した最高温度の吐水温度が得られない。すなわち、設定温度を高くすると、感温バネが圧縮されて該感温バネの付勢力が増大されることになり、この感温バネの付勢力増大に伴い可動弁体が水側弁座から離間する方向に移動され、その結果、冷水が湯水混合室に流入して、高温吐水域での温度調整を正確に行うことができないという問題がある。
また、等ピッチのバイアスバネ70は、温調ハンドルがいかなる回転角度にあり、可動弁体が軸線方向のどの位置にある場合もそのバネ定数がほとんど一定であるために、感温バネと共振しやすく、共振すると、早いタイミングでハンチングが起き易いという問題もある。
However, in the conventional general hot and cold water mixing tap using a single coil spring (bias spring) having a substantially constant spring constant as described above, the spring constant of the bias spring is set to the temperature of the hot and cold water mixture (hereinafter referred to as water discharge temperature). If the spring constant is selected so that the temperature is stable at around 40 ° C, the rotation angle of the temperature control handle is limited. Therefore, the temperature adjustment handle is rotated to the fully open position to set the hot water discharge area, for example, the maximum temperature. However, the biasing force (pushing back force) of the bias spring 70 is insufficient, and the intended maximum water discharge temperature cannot be obtained. That is, when the set temperature is increased, the temperature sensing spring is compressed and the urging force of the temperature sensing spring is increased, and the movable valve body is separated from the water side valve seat as the urging force of the temperature sensing spring increases. As a result, cold water flows into the hot and cold water mixing chamber, and there is a problem that temperature adjustment in the hot water discharge area cannot be performed accurately.
In addition, the bias spring 70 having an equal pitch resonates with the temperature-sensitive spring because the spring constant is almost constant regardless of the rotation angle of the temperature control handle and the movable valve body at any position in the axial direction. When it resonates easily, there is also a problem that hunting is likely to occur at an early timing.

このような従来一般の湯水混合栓が有する問題を解決するために、従来、次に示すような構成の湯水混合栓が提案されている。すなわち、図6〜図8に示すように、水栓本体66内に湯側弁座60及び水側弁座61を設けるとともに、これら両弁座60,61に選択的に接離されるように水栓本体66内に同軸上で軸線方向に移動可能な可動弁体62を設け、この可動弁体62を湯側弁座60と接近する方向に付勢する形状記憶材料よりなる感温バネ63と、この感温バネ63の付勢力に対抗するように前記可動弁体62を水側弁座61と接近する方向に付勢する一対のバイアスバネ64,65とを設け、これらのバイアスバネ64,65を介して可動弁体62を軸線方向に移動させることにより湯水混合水の設定温度を調整する温調ハンドル(図示省略する)を設けてなる湯水混合栓であって、前記一対のバイアスバネ64,65は水栓本体66内に同軸上にて並列して設けられた外径及び長さの異なるコイルバネからなる。そして、この従来提案の湯水混合栓では、可動弁体62が低温吐水域に位置するときは、図6に示すように、その可動弁体62に対して両バイアスバネ64,65の付勢力が作用しなくなり、可動弁体62が中温吐水域に位置するときは、図7に示すように、可動弁体62に対して一方のバイアスバネ64のみの付勢力が作用し、また、可動弁体62が高温吐水域に位置するときは、図8に示すように、可動弁体62に対して両バイアスバネ64,65の付勢力が作用するように構成されている(例えば、特許文献1参照)。   In order to solve the problems of such a conventional general hot and cold water mixing tap, conventionally, a hot and cold water mixing tap having the following configuration has been proposed. That is, as shown in FIGS. 6 to 8, a hot water side valve seat 60 and a water side valve seat 61 are provided in the faucet body 66, and water is selectively contacted with and separated from these valve seats 60, 61. A movable valve body 62 that is coaxially movable in the axial direction is provided in the stopper body 66, and a temperature-sensitive spring 63 made of a shape memory material that biases the movable valve body 62 in a direction approaching the hot water side valve seat 60; A pair of bias springs 64 and 65 for biasing the movable valve body 62 in a direction approaching the water-side valve seat 61 so as to oppose the biasing force of the temperature-sensitive spring 63 are provided. A hot water / water mixing tap provided with a temperature adjustment handle (not shown) that adjusts the set temperature of the hot / cold water mixture by moving the movable valve body 62 in the axial direction via 65, the pair of bias springs 64. , 65 are coaxially arranged in the faucet body 66 on the same axis. Made from the outer diameter and different coil springs lengths provided Te. In this conventional proposed hot and cold water mixing tap, when the movable valve body 62 is located in the low temperature water discharge region, the biasing forces of the bias springs 64 and 65 are applied to the movable valve body 62 as shown in FIG. When the movable valve body 62 is located in the middle-temperature water discharge area, the biasing force of only one bias spring 64 acts on the movable valve body 62 as shown in FIG. When 62 is located in the high temperature water discharge region, as shown in FIG. 8, the biasing force of both bias springs 64 and 65 is configured to act on the movable valve body 62 (see, for example, Patent Document 1). ).

特開2005−133848号公報JP 2005-133848 A

上記の特許文献1で示される従来提案の湯水混合栓は、一対のバイアスバネ64,65を用い、これらバネ64,65を温調ハンドルの回転操作による設定温度に応じて変則的に動作させることにより、可動弁体62が高温吐水域に位置した状態では、一対のバイアスバネ64,65による大きな付勢力を可動弁体62に作用させて、感温バネ63の付勢力に十分に対抗させることが可能であり、感温バネ63が大きく圧縮されてその付勢力が増大されても、可動弁体62が水側弁座61から離間する方向に移動されて冷水が湯水混合室に流入し高温吐水域での温度調整を正確に行うことができないという問題、並びに、バネ定数が異なる一対のバイアスバネ64,65はもともと振動が発生しにくく、感温バネ63との共振に起因するハンチングの発生という従来一般の湯水混合栓が有する問題を解決することができる。   The conventional hot and cold water mixing tap shown in Patent Document 1 uses a pair of bias springs 64 and 65, and operates the springs 64 and 65 irregularly according to the set temperature by rotating the temperature control handle. Thus, in a state where the movable valve body 62 is located in the high temperature water discharge region, a large biasing force by the pair of bias springs 64 and 65 is applied to the movable valve body 62 to sufficiently counter the biasing force of the temperature-sensitive spring 63. Even if the temperature-sensitive spring 63 is greatly compressed and its urging force is increased, the movable valve body 62 is moved away from the water-side valve seat 61 so that cold water flows into the hot and cold water mixing chamber. The problem that the temperature adjustment in the water discharge area cannot be performed accurately, and the pair of bias springs 64 and 65 having different spring constants are less likely to generate vibrations and are caused by resonance with the temperature-sensitive spring 63. It is possible to solve the problem with the conventional ordinary mixer tap that occurred in the ring.

しかしながら、特許文献1で示される従来提案の湯水混合栓は、外径及び長さの異なる二つのバイアスバネ64,65を用いる必要があるだけでなく、水栓本体66内にそれら二つのバイアスバネ64,65を同軸(同芯)上に保持させるために水栓本体66内の構造を大幅に改造することも必要で、部品点数の面からも製作加工面からもコスト高になるとともに、水栓本体66内への組み付け作業にも手間がかかり、さらに、外径の異なる二つのバイアスバネ64,65を水栓本体66内に組み込むために、水栓本体66の必要外径も自ずと大きくなり、湯水混合栓全体が大型化しやすいという問題があった。   However, the conventionally proposed hot and cold water mixing tap disclosed in Patent Document 1 requires not only two bias springs 64 and 65 having different outer diameters and lengths, but also the two bias springs in the faucet body 66. In order to hold 64 and 65 on the same axis (concentric), it is also necessary to significantly modify the structure in the faucet body 66, which increases the cost in terms of both the number of parts and the manufacturing process. Assembling work into the plug body 66 also takes time, and in addition, since the two bias springs 64 and 65 having different outer diameters are incorporated into the faucet body 66, the required outer diameter of the faucet body 66 naturally increases. There was a problem that the whole hot and cold water mixing tap was easy to enlarge.

本発明は上記のような実情に鑑みてなされたもので、その目的は、コストの低減及び組付け作業の容易化、さらには、全体の小型化を図りながら、高温吐水域での温度調整を正確に行え、かつ、早いタイミングでのハンチングの発生を防止することができる湯水混合栓を提供することにある。   The present invention has been made in view of the above circumstances, and its purpose is to reduce the cost, facilitate the assembly work, and further adjust the temperature in the high temperature water discharge area while reducing the overall size. An object of the present invention is to provide a hot and cold water mixing tap that can be accurately performed and can prevent occurrence of hunting at an early timing.

上記目的を達成するために、本発明に係る湯水混合栓は、水栓本体内に設けられた水側弁座及び湯側弁座と、これら両弁座に選択的に接離するように前記水栓本体内に同軸上で軸線方向に移動可能に設けられた可動弁体と、この可動弁体の上流側および下流側の水栓本体内にそれぞれ形成された湯流入室及び湯水混合室と、前記可動弁体を湯側弁座と接近する方向に付勢するように前記湯水混合室側に設けられた形状記憶材料よりなる感温バネと、この感温バネの付勢力に対抗させて前記可動弁体を水側弁座と接近する方向に付勢するように前記湯流入室側に設けられたバイアスバネと、前記水栓本体の一端に設けられ前記バイアスバネを介して可動弁体を軸線方向に移動させることにより湯水混合水の設定温度を調整する温調ハンドルとを備えた湯水混合栓において、前記バイアスバネが、前記温調ハンドルを介して可動弁体を40℃付近の設定温度になるように移動させたときのバネ定数よりも、前記可動弁体を最高温度付近の設定温度になるように移動させたときのバネ定数が大きくなるように、少なくとも大小二段のバネ定数を有する単一のバネから構成されていることを特徴としている。 In order to achieve the above-mentioned object, a hot and cold water mixing valve according to the present invention includes a water side valve seat and a hot water side valve seat provided in a faucet body, and the above-mentioned valve seats so as to be selectively contacted and separated. A movable valve body provided coaxially in the faucet body so as to be movable in the axial direction, and a hot water inflow chamber and a hot water mixing chamber formed in the water faucet body on the upstream side and downstream side of the movable valve body, respectively A temperature sensitive spring made of a shape memory material provided on the hot water / water mixing chamber side so as to bias the movable valve body in a direction approaching the hot water valve seat, and a biasing force of the temperature sensitive spring A bias spring provided on the hot water inflow chamber side so as to bias the movable valve body in a direction approaching the water side valve seat, and a movable valve body provided at one end of the faucet body via the bias spring. A temperature control handle that adjusts the set temperature of the hot / cold water mixture by moving the In the hot and cold water mixing valve was example, the bias spring, than the spring constant of the through the temperature regulating handle when moving so that the movable valve body to a set temperature of around 40 ° C., the movable valve body to close to the maximum temperature It is characterized in that it is composed of a single spring having at least two stages of large and small spring constants so that the spring constant when moved to a set temperature of

上記のような特徴構成を有する本発明では、感温バネの付勢力に対抗するバイアスバネとして、温調ハンドルを介して可動弁体を40℃付近の設定温度になるように移動させたときのバネ定数よりも可動弁体を最高温度付近の設定温度になるように移動させたときのバネ定数が大きくなるような少なくとも二段のバネ定数を有する単一バネを用い、この単一バイアスバネを温調ハンドルの回転操作による設定温度に応じて変則的に動作させるようにしているので、中温吐水域付近では、吐水温度を設定温度に安定よく維持することができるのはもとより、高温吐水域では、バイアスバネによる大きな付勢力を可動弁体に作用させて当該高温吐水域で圧縮により付勢力が増大されている感温バネの付勢力に十分に対抗させることが可能であり、したがって、可動弁体が水側弁座から離間する方向に移動されて冷水が湯水混合室に流入することを防いで、高温吐水域において意図した最高温度の吐水温度を容易かつ正確に確保することができる。
また、バイアスバネのバネ定数が変化するので、このバイアスバネが感温バネと共振して振動を起きしにくくなり、早いタイミングでハンチングが発生することも防止できる。
In the present invention having the above-described characteristic configuration, when the movable valve body is moved to a set temperature of about 40 ° C. via the temperature control handle as a bias spring that opposes the biasing force of the temperature-sensitive spring. Using a single spring having at least two stages of spring constants that increase the spring constant when the movable valve body is moved to a set temperature near the maximum temperature rather than the spring constant. Since it operates irregularly according to the set temperature by rotating the temperature control handle, the water discharge temperature can be stably maintained at the set temperature in the vicinity of the medium temperature water discharge area, and in the high temperature water discharge area. , It is possible to sufficiently oppose the urging force of the temperature sensitive spring in which the urging force is increased by compression in the high temperature water discharge region by applying a large urging force by the bias spring to the movable valve body, Therefore, the movable valve body is moved in the direction away from the water side valve seat, preventing cold water from flowing into the hot water mixing chamber, and ensuring the intended maximum water discharge temperature in the high temperature water discharge area easily and accurately. be able to.
Further, since the spring constant of the bias spring changes, it becomes difficult for the bias spring to resonate with the temperature-sensitive spring to cause vibration, and hunting can be prevented from occurring at an early timing.

しかも、本発明では、特許文献1で示される従来提案の湯水混合栓が使用していた外径及び長さの異なる二つのバイアスバネが果すところの正確な温度調整機能及びハンチング防止機能を、単一のバイアスバネで果たすことができるので、部品点数の削減が図れるとともに水栓本体内にも特別な構造改造を施す必要がなく、これによって、湯水混合栓全体のコスト低減並びに組付け作業性の向上も図ることができ、加えて、水栓本体内には単一のバイアスバネを組み込めるスペースがあればよいので、水栓本体の必要外径も小さくなり、湯水混合栓全体の小型化を実現できるという効果を奏する。   In addition, in the present invention, an accurate temperature adjustment function and a hunting prevention function, which are performed by two bias springs having different outer diameters and lengths, which have been used in the conventionally proposed hot and cold mixing tap shown in Patent Document 1, are provided. Since it can be achieved with a single bias spring, it is possible to reduce the number of parts and eliminate the need for special structural modifications in the faucet body. In addition, the space needed to incorporate a single bias spring in the faucet body is sufficient, so the required outer diameter of the faucet body is reduced, and the entire hot-water mixing faucet is downsized. There is an effect that can be done.

また、本発明において使用する大小二段のバネ定数を有する単一のバイアスバネとしては、可動弁体の移動方向に不等ピッチで螺旋状に巻回されたコイルバネ(請求項2)、あるいは、可動弁体の移動方向に等ピッチまたはほぼ等ピッチで、かつ、その移動方向に漸次径を変化させて巻回された円錐バネ(請求項3)のいずれであってもよいが、上述したような温度調整動作時における同軸維持及び製作加工面から考えると、不等ピッチで螺旋状に巻回されたコイルバネの使用がより好ましい。 Moreover, as a single bias spring having a large and small two-stage spring constant used in the present invention, a coil spring spirally wound at an unequal pitch in the moving direction of the movable valve element (Claim 2 ), or at an equal pitch or substantially equal pitch in the direction of movement of the movable valve body, and the moving direction is gradually changed diameter wound conical spring may be either (claim 3), as described above Considering the coaxial maintenance and manufacturing process surface at the time of a temperature adjustment operation, it is more preferable to use a coil spring wound spirally at an unequal pitch.

以下、本発明の実施の形態について説明する。
図1は、例えば浴室の壁面に設置され、シャワーヘッドまたは蛇口等の吐水管に水、湯または湯水混合水を供給して吐出する湯水混合栓Aの全体断面図を示す。
Embodiments of the present invention will be described below.
FIG. 1 shows an overall cross-sectional view of a hot and cold water mixing tap A that is installed on a wall surface of a bathroom, for example, and supplies and discharges water, hot water, or hot water mixed water to a water discharge pipe such as a shower head or a faucet.

図1において、1は筒状の水栓本体で、その一端に水、湯または混合水に供給して吐出・止水機能と流量調整機能を有する切替ハンドル2が設けられているとともに、他端に湯水混合水の温度調節機能を有する温調ハンドル3が設けられている。これら温調ハンドル3及び切替ハンドル2は、操作時に水栓本体1の軸芯Xまわりに回動可能に構成されている。また、前記水栓本体1は、一端に後述する切替ユニット4の挿入用開口1aを有する一方、他端に後述する温調ユニット6の挿入用開口1bを有する。   In FIG. 1, reference numeral 1 denotes a tubular faucet body, which is provided with a switching handle 2 that supplies water, hot water or mixed water to one end thereof and has a discharge / water stop function and a flow rate adjusting function. In addition, a temperature control handle 3 having a function of adjusting the temperature of the hot / cold water is provided. The temperature control handle 3 and the switching handle 2 are configured to be rotatable around the axis X of the faucet body 1 during operation. The faucet body 1 has an insertion opening 1a for a switching unit 4 (described later) at one end, and an insertion opening 1b for a temperature control unit 6 (described later) at the other end.

前記切替ハンドル2に接続可能な切替ユニット4は、前記開口1aを介して水栓本体1の内部に該水栓本体1の軸芯Xと同軸になるように挿入配置される。5は切替表示リングである。また、前記温調ハンドル3に接続可能な温調ユニット6は、前記開口1bを介して水栓本体31の内部に該水栓本体1の軸芯Xと同軸になるように挿入配置される。   The switching unit 4 that can be connected to the switching handle 2 is inserted and arranged in the faucet body 1 through the opening 1 a so as to be coaxial with the axial core X of the faucet body 1. Reference numeral 5 denotes a switching display ring. Further, the temperature control unit 6 that can be connected to the temperature control handle 3 is inserted and arranged in the faucet body 31 through the opening 1b so as to be coaxial with the axis X of the faucet body 1.

前記水栓本体1は、湯配管(図示せず)に連通するように湯配管用継手7が着脱可能に装着された湯接続口8と、水配管(図示せず)に連通するように水配管用継手9が着脱可能に装着された水接続口10と、L字型のシャワーホース用継手11が着脱可能に装着されたシャワーホース接続口12とが上面側に形成されているとともに、下面側には、吐水管用継手(図示せず)が着脱可能に装着された水、湯または混合水の吐水管接続口を有する。図1において、111は、水配管から水栓本体1に流入する水流入路を示し、112で示す実線矢印は、水栓本体1内を環状に流れる水の環状流路を示し、113で示す点線矢印は湯配管から水栓本体1に流入し、さらに、後述する可動弁体と後述する湯側弁座との隙間を通り湯流入室Sから前記可動弁体に形成された中央孔を通って湯水混合室Rに至る湯流入路を示し、114で示す一点鎖線矢印は、前記水の環状流路112から前記可動弁体と後述する水側弁座との隙間を通り湯水混合室Rに至る水流入路を示す。   The faucet body 1 is connected to a hot water connection port 8 in which a hot water pipe joint 7 is detachably attached so as to communicate with a hot water pipe (not shown), and water so as to communicate with a water pipe (not shown). A water connection port 10 to which the piping joint 9 is detachably attached and a shower hose connection port 12 to which the L-shaped shower hose joint 11 is detachably attached are formed on the upper surface side, and the lower surface. On the side, there is a water discharge pipe connection port for water, hot water or mixed water to which a water discharge pipe joint (not shown) is detachably attached. In FIG. 1, 111 indicates a water inflow path that flows into the faucet body 1 from the water pipe, and a solid line arrow 112 indicates an annular flow path of water that flows in an annular manner in the faucet body 1, indicated by 113. A dotted line arrow flows from the hot water pipe into the faucet body 1 and passes through a central hole formed in the movable valve body from the hot water inflow chamber S through a gap between a movable valve body described later and a hot water side valve seat described later. 1 shows a hot water inflow passage leading to the hot water mixing chamber R, and an alternate long and short dash line arrow 114 indicates that the hot water mixing chamber R passes through the gap between the movable valve element and a water side valve seat described later from the water annular channel 112. It shows the water inflow path to reach.

15は前記切替ユニット4の筒状外ケースで、水栓本体1内に該水栓本体1と同軸の横置き状態で設けられている。この外ケース15は、樹脂製で筒状水栓本体1の内壁に0リングなどのシール部材16を介して水密状態に固定されており、この外ケース15と水栓本体1間に前記水の環状流路112が形成されている。なお、前記外ケース15は、湯水混合室Rと吐水管接続口を連通する連通孔及び湯水混合室Rとシャワーホース接続口を連通する連通孔とを有する。   Reference numeral 15 denotes a cylindrical outer case of the switching unit 4, which is provided in the faucet body 1 in a horizontally placed state coaxial with the faucet body 1. The outer case 15 is made of resin and is fixed to the inner wall of the tubular faucet body 1 in a watertight state via a seal member 16 such as an O-ring, and the water is between the outer case 15 and the faucet body 1. An annular channel 112 is formed. The outer case 15 has a communication hole that communicates the hot / cold water mixing chamber R and the water discharge pipe connection port, and a communication hole that communicates the hot / water mixing chamber R and the shower hose connection port.

17は前記切替ユニット4の筒状内ケースで、前記外ケース15内に水栓本体1と同軸の横置き状態で設けられている。この内ケース17には吐水管連通用切欠およびシャワーホース連通用切欠が形成され、内ケース17内に設けた筒状の回動部材としての金属製切替バルブ18が、前記切替ハンドル2の切替操作により切替栓棒19を介して、吐水管側あるいはシャワーホース側に、内ケース17の前記吐水管連通用切欠またはシャワーホース連通用切欠を介して水栓本体1の軸芯Xのまわりに切り替わるように構成されている。   Reference numeral 17 denotes a cylindrical inner case of the switching unit 4, which is provided in the outer case 15 in a horizontally placed state coaxial with the faucet body 1. The inner case 17 is formed with a water discharge pipe communicating notch and a shower hose communicating notch, and a metallic switching valve 18 as a cylindrical rotating member provided in the inner case 17 is used to switch the switching handle 2. Is switched around the axis X of the faucet body 1 to the water discharge pipe side or the shower hose side via the switching plug bar 19 via the water discharge pipe communication notch or the shower hose communication notch of the inner case 17. It is configured.

一方、前記温調ユニット6は、切替ユニット4の外ケース15の端部にシール可能に当接する端部を有し水栓本体1との間に前記水の環状流路112を形成する筒状の外ケース20と、この外ケース20内に設けられた筒状のハウジング21とを主として備えている。前記筒状ハウジング21は、可動弁体22を軸線方向に移動可能に収容する筒状の弁体収容部材23と、前記温調ハンドル3及び可動弁体22間に水栓本体1と同軸の横置き状態で設けられた筒状の固定ガイド部材24と、これら両者23,24を内側からシール可能に接続するように設けた筒状の接続部材25とから構成される。前記弁体収容部材23は、可動弁体22を介して切替ユニット4側に形成される湯水混合室Rの一部を有し、また、可動弁体22を介して温調ユニット6側に形成される湯流入室Sを有し、さらに、可動弁体22をリング状の湯側弁座26と接近する方向に付勢する形状記憶材料よりなる感温バネ27を湯水混合室Rの一部に有する。前記湯側弁座26は接続部材25の一方端面で可動弁体22が対向する側に形成されている。   On the other hand, the temperature control unit 6 has an end portion that comes into contact with the end portion of the outer case 15 of the switching unit 4 so as to be sealable, and forms the annular channel 112 of the water with the faucet body 1. The outer case 20 and a cylindrical housing 21 provided in the outer case 20 are mainly provided. The tubular housing 21 includes a tubular valve body housing member 23 for housing the movable valve body 22 so as to be movable in the axial direction, and a horizontal axis coaxial with the faucet body 1 between the temperature control handle 3 and the movable valve body 22. A cylindrical fixed guide member 24 provided in a standing state and a cylindrical connection member 25 provided so as to connect both the members 23 and 24 in a sealable manner from the inside. The valve body housing member 23 has a part of the hot / cold water mixing chamber R formed on the switching unit 4 side via the movable valve body 22 and is formed on the temperature control unit 6 side via the movable valve body 22. And a temperature-sensitive spring 27 made of a shape memory material for biasing the movable valve body 22 in a direction approaching the ring-shaped hot water side valve seat 26, and a part of the hot water mixing chamber R. Have. The hot water side valve seat 26 is formed on one end face of the connecting member 25 on the side where the movable valve body 22 faces.

一方、固定ガイド部材24は、内部に温調ハンドル3の回転操作に連動して回転操作される温調栓棒28を有するとともに、この温調栓棒28の回転に伴って可動弁体22と離接する軸線方向に移動される移動部材29を収容するとともに、前記温調栓棒28の回転に伴ってこの移動部材29を軸線方向に移動するスクリュー棒30を内部に有する。そして、可動弁体22を水側弁座31側に付勢するよう可動弁体22の感温バネ27とは反対側の湯流入室S内、具体的には、固定ガイド部材24と接続部材25間にわたりバイアスバネ32が設けられている。このバイアスバネ32は、移動部材29の一方端面と可動弁体22の先端面内側に取り付けたバネ受け部材33との間に介設されている。前記水側弁座31は、弁体収容部材23の段差部分である内周小径位置に形成されている。そして、湯水混合水の設定温度調整のたびに、温調ハンドル3を回転させることにより、バイアスバネ32を軸線方向に伸縮させて設定温度である湯水混合水の吐水温度を調整設定するように前記温調栓棒28と移動部材29が設けられている。   On the other hand, the fixed guide member 24 has a temperature control plug rod 28 that is rotated in conjunction with the rotation operation of the temperature control handle 3, and the movable valve body 22 and the fixed guide member 24 together with the rotation of the temperature control plug rod 28. A moving member 29 that is moved in the axial direction to be in contact with and separated from the housing is accommodated, and a screw rod 30 that moves the moving member 29 in the axial direction in accordance with the rotation of the temperature control plug rod 28 is provided inside. And in the hot water inflow chamber S on the opposite side to the temperature-sensitive spring 27 of the movable valve body 22 to urge the movable valve body 22 toward the water side valve seat 31, specifically, the fixed guide member 24 and the connection member A bias spring 32 is provided between 25. The bias spring 32 is interposed between one end surface of the moving member 29 and a spring receiving member 33 attached to the inside of the distal end surface of the movable valve body 22. The water-side valve seat 31 is formed at the inner peripheral small diameter position which is a step portion of the valve body housing member 23. Then, each time the set temperature of the hot / cold mixed water is adjusted, the temperature adjustment handle 3 is rotated to expand / contract the bias spring 32 in the axial direction so as to adjust and set the discharge temperature of the hot / cold water that is the set temperature. A temperature control rod 28 and a moving member 29 are provided.

上記のような基本構成を有する湯水混合栓Aにおいて、前記バイアスバネ32は、図2に明示するように、前記可動弁体22の移動方向に不等ピッチ(P1≠P2≠P3≠P4≠P5≠P6≠P7)で螺旋状に巻回して作製された単一のコイルバネからなり、これによって、40℃付近の設定温度のときのバネ定数よりも、40℃よりも高温の吐水域で最高温度付近の設定温度のときのバネ定数が大きくなるように構成されている。具体的に、この実施の形態で用いたバイアスバネ(コイルバネ)32は、1.6mmの線径を有するSUS製線材を長さ方向両端の細ピッチ部有効巻数が1.25T、中間の粗ピッチ部有効巻数が2.50T、総巻数が5.75T(座各1T)で、かつ、コイル外径DがΦ12.4±0.1mm、全長Lが20.67mmとなるように螺旋状に巻回することによって作製されている。   In the hot and cold water mixing tap A having the above-described basic configuration, the bias spring 32 is unequal pitch (P1 ≠ P2 ≠ P3 ≠ P4 ≠ P5) in the moving direction of the movable valve body 22 as clearly shown in FIG. ≠ P6 ≠ P7), which consists of a single coil spring that is spirally wound. This makes it the highest temperature in the water discharge region that is higher than 40 ° C than the spring constant at the set temperature around 40 ° C. The spring constant at the set temperature in the vicinity is increased. Specifically, the bias spring (coil spring) 32 used in this embodiment is a SUS wire having a wire diameter of 1.6 mm, the effective pitch of the fine pitch portion at both ends in the length direction is 1.25 T, and the intermediate coarse pitch The coil is spirally wound so that the effective number of turns is 2.50 T, the total number of turns is 5.75 T (each seat is 1 T), the coil outer diameter D is Φ12.4 ± 0.1 mm, and the total length L is 20.67 mm. It is made by turning.

ところで、湯水混合栓Aでは湯水混合水の設定温度が大になるにつれて、温調ハンドル3の回転角度を大きくしていき、この温調ハンドル3の回転量の増大によってバイアスバネ32に与えられる荷重が大きくなればなるほどバネ長Lが短くなり、それに伴ってバイアスバネ32が発生する付勢力も増大して行く。   By the way, in the hot-water mixing tap A, as the set temperature of the hot-water mixed water increases, the rotation angle of the temperature adjustment handle 3 is increased, and the load applied to the bias spring 32 due to the increase in the rotation amount of the temperature adjustment handle 3. The larger the is, the shorter the spring length L becomes, and accordingly, the biasing force generated by the bias spring 32 also increases.

図3は、前記のように作製されたバイアスバネ32のバネ長対バネ荷重の特性図を示しており、同図からも明らかなように、例えば吐水温度が40℃よりは低い低温の吐水域のときは温調ハンドル3の回転によってバイアスバネ32に与えられる荷重が38(N)のときバネ長が17.5mmであるが、吐水温度が40℃付近の中温度の吐水域のときは温調ハンドル3の回転によってバイアスバネ32に与えられる荷重は50.0(N)でバネ長は16.5mmとなる。このように、低温及び中温の吐水域ではバネ長と荷重の測定値がほぼ同じ勾配を持った直線B上に位置するバネ定数となるとともに、吐水温度が40℃よりも高い高温の吐水域のときは温調ハンドル3の回転によってバイアスバネ32に与えられる荷重が115.0(N)でバネ長が12.7mmになる。すなわち、高温の吐水域ではバネ長と荷重の測定値がほぼ同じ勾配を持ち、前記直線Bよりも勾配の大きい直線C上に位置するバネ定数となる。   FIG. 3 is a characteristic diagram of the spring length versus spring load of the bias spring 32 produced as described above. As is apparent from FIG. 3, for example, a low temperature water discharge region where the water discharge temperature is lower than 40 ° C. When the load applied to the bias spring 32 by rotation of the temperature control handle 3 is 38 (N), the spring length is 17.5 mm. However, when the water discharge temperature is a mid-temperature water discharge region around 40 ° C., the temperature is The load applied to the bias spring 32 by the rotation of the adjusting handle 3 is 50.0 (N), and the spring length is 16.5 mm. Thus, in the low temperature and medium temperature water discharge areas, the spring length and load measurement values are spring constants located on the straight line B having substantially the same gradient, and the water discharge temperature is higher than 40 ° C. When the temperature control handle 3 rotates, the load applied to the bias spring 32 is 115.0 (N) and the spring length is 12.7 mm. That is, in the hot water discharge region, the measured values of the spring length and the load have substantially the same gradient, and the spring constant is located on the straight line C having a larger gradient than the straight line B.

このように、吐水温度40℃付近のバネ定数よりも、高温の吐水域、例えば最高温度付近のバネ定数が大きく(強く)なるように二段のバネ定数を有する単一のバイアスバネ32を用いることにより、吐水温度40℃付近の安定性を維持しながら、温調ハンドル3の全開操作時のバイアスバネ32の付勢力(押し返す力)を感温バネ27の付勢力よりも大きくすることができ、意図した最高温度の吐水温度を確保することができる。また、バイアスバネ32は温度調整動作に伴いそのバネ定数が変化するので、感温バネ27との共振による振動が抑えられハンチングの発生を防止することができる。   In this way, a single bias spring 32 having a two-stage spring constant is used so that the spring constant near the maximum water temperature is larger (stronger) than the spring constant near the water discharge temperature of 40 ° C., for example. As a result, the biasing force (pushing back force) of the bias spring 32 when the temperature control handle 3 is fully opened can be made larger than the biasing force of the temperature sensing spring 27 while maintaining the stability of the water discharge temperature around 40 ° C. The intended maximum water discharge temperature can be ensured. Further, since the bias constant of the bias spring 32 changes with the temperature adjustment operation, vibration due to resonance with the temperature-sensitive spring 27 can be suppressed, and the occurrence of hunting can be prevented.

さらに、従来提案の湯水混合栓において、二つのバイアスバネの使用で果たしていた正確な温度調整機能と、早いタイミングでのハンチング防止機能とを、単一のバイアスバネ32で果たすことができるので、部品点数の削減及び水栓本体1内における特別な構造改造の不要化によって、湯水混合栓A全体のコスト低減並びに組付け作業性の向上も図ることができ、さらに、水栓本体1内には単一のバイアスバネ32を組み込めるスペースがあればよいので、水栓本体1の必要外径も小さくなり、湯水混合栓A全体の小型化を実現できる。   Further, in the previously proposed hot and cold water mixing tap, the single bias spring 32 can perform the accurate temperature adjustment function that has been achieved by using two bias springs and the anti-hunting function at an early timing. By reducing the number of points and eliminating the need for special structural modifications in the faucet body 1, it is possible to reduce the cost of the hot-water mixing faucet A as a whole and improve the assembly workability. Since it is sufficient if there is a space in which one bias spring 32 can be incorporated, the required outer diameter of the faucet body 1 is also reduced, and the overall size of the hot and cold water mixing tap A can be reduced.

また、温調ユニット6の外ケース20と水栓本体1とで水の環状流路112を形成している。そのため、湯流入室Sの湯により弁体収容部材23を介して外ケース20に湯による熱が伝導しても水の環状流路11によって最も外側の水栓本体1にはその熱が伝わらず、やけど等の火傷を防止し使用の安全性をより高めることができる。   Further, the outer case 20 of the temperature control unit 6 and the faucet body 1 form an annular flow path 112 of water. Therefore, even if heat from the hot water is conducted to the outer case 20 through the valve body housing member 23 by the hot water in the hot water inflow chamber S, the heat is not transmitted to the outermost faucet body 1 by the water annular channel 11. Can prevent burns and other burns, and can increase the safety of use.

なお、上記実施の形態では、単一のバイアスバネとして不等ピッチのコイルバネ32を用いたが、これに代えて、図4に示すように、可動弁体22の移動方向に等ピッチまたはほぼ等ピッチで、かつ、その移動方向に漸次径を変化させて巻回させた円錐バネ42を用いてもよい。この場合、当該円錐バネ42はその径の変化率の工夫によって、上記実施の形態で示した不等ピッチのコイルバネ(バイアスバネ)32と同様に、40℃付近の設定温度のときのバネ定数よりも、40℃よりも高温の吐水域で最高温度付近の設定温度のときのバネ定数が大きくなるような二段のバネ定数を有するように構成されている。   In the above embodiment, the coil springs 32 having unequal pitches are used as a single bias spring. Instead, as shown in FIG. 4, the pitches or substantially the same in the moving direction of the movable valve element 22 are used. You may use the conical spring 42 wound by pitch and changing the diameter gradually in the moving direction. In this case, the conical spring 42 can be obtained from a spring constant at a set temperature of around 40 ° C., similarly to the coil springs (bias springs) 32 of unequal pitch shown in the above embodiment, by devising the rate of change in diameter. However, it is configured to have a two-stage spring constant such that the spring constant at a set temperature near the maximum temperature in a water discharge region higher than 40 ° C. becomes large.

また、本発明では、バネ定数が変化する単一のバイアスバネであれば、上記不等ピッチのコイルバネ32、円錐バネ42に限るものではない。さらに、バイアスバネ32として、バネ定数が40℃付近の設定温度のときよりも、最高温度付近の設定温度のときの方が大きく(強く)なるように構成されたものを示したが、高温の吐水域において二つ以上の異なるバネ定数を持つように構成してもよく、この場合は高温になるほど強いバネ定数を持つように構成することは勿論である。   In the present invention, the single bias spring whose spring constant is changed is not limited to the coil spring 32 and the conical spring 42 having the unequal pitch. Further, the bias spring 32 is configured so that the spring constant is larger (stronger) at the set temperature near the maximum temperature than at the set temperature near 40 ° C. It may be configured to have two or more different spring constants in the water discharge area, and in this case, of course, it is configured to have a stronger spring constant at higher temperatures.

本発明に係る湯水混合栓の実施形態を示す全体断面図である。It is a whole sectional view showing an embodiment of a hot-and-water mixing tap concerning the present invention. 本発明に係る湯水混合栓の主要構成であるバイアスバネの拡大側面図である。It is an expanded side view of the bias spring which is the main structures of the hot-water and water mixing tap which concerns on this invention. 図2に示すバイアスバネのバネ長さ対バネ荷重特性図である。FIG. 3 is a spring length vs. spring load characteristic diagram of the bias spring shown in FIG. 2. 本発明に係る湯水混合栓の主要構成であるバイアスバネの他の例を示す拡大側面図である。It is an enlarged side view which shows the other example of the bias spring which is the main structures of the hot / cold mixing tap concerning this invention. 従来一般の湯水混合栓で用いられていたバイアスバネを示す拡大側面図である。It is an enlarged side view which shows the bias spring conventionally used with the hot and cold water mixing tap. 従来提案の湯水混合栓における低温吐水域の動作を示す要部の拡大断面図である。It is an expanded sectional view of the principal part which shows the operation | movement of the low temperature water discharge area in the conventionally proposed hot-water and water mixing tap. 前記従来提案の湯水混合栓における中温吐水域の動作を示す要部の拡大断面図である。It is an expanded sectional view of the principal part which shows operation | movement of the middle temperature water discharge area in the said hot water mixing tap of the said proposal. 前記従来提案の湯水混合栓における高温吐水域の動作を示す要部の拡大断面図である。It is an expanded sectional view of the principal part which shows the operation | movement of the high temperature water discharge area in the said hot water mixing tap of the said proposal.

1 水栓本体
3 温調ハンドル
22 可動弁体
26 湯側弁座
27 感温バネ
31 水側弁座
32 バイアスバネ
S 湯流入室
R 湯水混合室
DESCRIPTION OF SYMBOLS 1 Water faucet body 3 Temperature control handle 22 Movable valve body 26 Hot water side valve seat 27 Temperature-sensitive spring 31 Water side valve seat 32 Bias spring S Hot water inflow chamber R Hot water mixing chamber

Claims (3)

水栓本体内に設けられた水側弁座及び湯側弁座と、これら両弁座に選択的に接離するように前記水栓本体内に同軸上で軸線方向に移動可能に設けられた可動弁体と、この可動弁体の上流側および下流側の水栓本体内にそれぞれ形成された湯流入室及び湯水混合室と、前記可動弁体を湯側弁座と接近する方向に付勢するように前記湯水混合室側に設けられた形状記憶材料よりなる感温バネと、この感温バネの付勢力に対抗させて前記可動弁体を水側弁座と接近する方向に付勢するように前記湯流入室側に設けられたバイアスバネと、前記水栓本体の一端に設けられ前記バイアスバネを介して可動弁体を軸線方向に移動させることにより湯水混合水の設定温度を調整する温調ハンドルとを備えた湯水混合栓において、前記バイアスバネが、前記温調ハンドルを介して可動弁体を40℃付近の設定温度になるように移動させたときのバネ定数よりも、前記可動弁体を最高温度付近の設定温度になるように移動させたときのバネ定数が大きくなるように、少なくとも大小二段のバネ定数を有する単一のバネから構成されていることを特徴とする湯水混合栓。 A water side valve seat and a hot water side valve seat provided in the faucet body, and provided so as to be movable in the axial direction on the same axis in the faucet body so as to selectively contact with and separate from both valve seats. Movable valve body, hot water inflow chamber and hot water mixing chamber formed in the faucet body on the upstream side and downstream side of the movable valve body, respectively, and biasing the movable valve body in a direction approaching the hot water side valve seat The temperature sensing spring made of a shape memory material provided on the hot water / water mixing chamber side and the movable valve body is biased in the direction approaching the water side valve seat against the biasing force of the temperature sensing spring. As described above, the set temperature of the hot / cold water mixture is adjusted by moving the movable valve body in the axial direction via the bias spring provided on the hot water inflow chamber side and the bias spring provided at one end of the faucet body. In a hot and cold water mixing tap provided with a temperature control handle, the bias spring includes the temperature control valve. Spring constant when than the spring constant when moving so that the movable valve body to a set temperature of around 40 ° C. through the handle is moved so that the movable valve body setting temperature near the maximum temperature A hot and cold water mixing tap characterized by comprising a single spring having at least two stages of large and small spring constants so as to increase. 前記バイアスバネが、可動弁体の移動方向に不等ピッチで螺旋状に巻回されたコイルバネである請求項1に記載の湯水混合栓。 The hot and cold water mixing plug according to claim 1, wherein the bias spring is a coil spring wound spirally at an unequal pitch in the moving direction of the movable valve body . 前記バイアスバネが、可動弁体の移動方向に等ピッチまたはほぼ等ピッチで、かつ、その移動方向に漸次径を変化させて巻回された円錐バネである請求項1に記載の湯水混合栓。 The hot and cold water mixing plug according to claim 1 , wherein the bias spring is a conical spring wound at an equal pitch or substantially an equal pitch in the moving direction of the movable valve body and gradually changing the diameter in the moving direction .
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