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JPH0579069A - Water faucet member and manufacture thereof - Google Patents

Water faucet member and manufacture thereof

Info

Publication number
JPH0579069A
JPH0579069A JP27343691A JP27343691A JPH0579069A JP H0579069 A JPH0579069 A JP H0579069A JP 27343691 A JP27343691 A JP 27343691A JP 27343691 A JP27343691 A JP 27343691A JP H0579069 A JPH0579069 A JP H0579069A
Authority
JP
Japan
Prior art keywords
film
valve
faucet
diamond
sliding surface
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
JP27343691A
Other languages
Japanese (ja)
Other versions
JPH07907B2 (en
Inventor
Norihito Fujiwara
原 徳 仁 藤
Sueyoshi Ookura
倉 末代史 大
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.)
Daido Steel Co Ltd
TYK Corp
Original Assignee
Daido Steel Co Ltd
TYK Corp
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 Daido Steel Co Ltd, TYK Corp filed Critical Daido Steel Co Ltd
Priority to JP3273436A priority Critical patent/JPH07907B2/en
Publication of JPH0579069A publication Critical patent/JPH0579069A/en
Publication of JPH07907B2 publication Critical patent/JPH07907B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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  • Sliding Valves (AREA)
  • Multiple-Way Valves (AREA)
  • Domestic Plumbing Installations (AREA)

Abstract

PURPOSE:To maintain a good sliding property over a long period of time in a state of requiring no grease composed of the conventional silicone as its main ingredient. CONSTITUTION:On each sliding surface of metal or ceramics valves 1, 2 constituting a faucet, first at least more than one type of thin films being selected out of metal or the carbide, nitride and carbo-nitride are formed as much as at least one layer on one side or both surfaces 1a, 2a of two surface constituting this slidging surface, setting it down an inclined film. Subsequently a thin film such as a diamond-form carbon film (otherwise called i-carbon) is formed on this inclined film. Therefore, an improvement in adhesive force to the ceramics valve surface of this diamond-form carbon film (i-C film) can be heightened so sharply. In addition, this diamond-form carbon film is so strongly formed on the valve sliding surface, and even under the serious service condition, no grease is required, thus a long-lived faucet valve is manufacturable.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】この発明は、良好な摺動性の維持
を長期間にわたりなしうる水栓バルブ部材と、その製造
方法に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a faucet valve member capable of maintaining good slidability for a long period of time, and a method for manufacturing the same.

【0002】[0002]

【従来の技術】水栓バルブに於いて、近年その耐摩耗性
に優れることや熱による歪の少ないこと、化学的耐蝕性
に優れることなどから、ファインセラミックス,わけて
も安価に製造できるアルミナを主体にしたバルブが急速
に普及してきている。このようなバルブには、湯または
水を単独に給,止水のできるものや、1つのバルブで
湯,水を混合して使用するものなどがある。そしてこれ
らのバルブの摺動面は、水洩れを起こさぬ様に、通常、
鏡面状態に仕上げられ、且つ、操作性の改善のためにシ
リコンを主成分としたグリースが塗布されている。
2. Description of the Related Art In recent years, water faucet valves are mainly made of fine ceramics, especially alumina which can be manufactured at low cost, due to their excellent wear resistance, low strain due to heat, and excellent chemical corrosion resistance. Valves that have become popular are rapidly becoming popular. Such valves include those that can supply hot water or water independently and stop water, and those that mix hot water and water with one valve. And the sliding surface of these valves is normally made to prevent water leakage.
It is mirror-finished, and grease containing silicon as a main component is applied to improve operability.

【0003】[0003]

【発明が解決しようとする課題】しかし、水栓バルブが
セラミックス化されたことにより大きな問題もまた発生
してきた。前記した如く、セラミックスバルブの摺動面
にはシリコンを主成分としたグリースが塗布されてい
る。
However, since the faucet valve is made of ceramics, a big problem has occurred. As described above, the grease whose main component is silicon is applied to the sliding surface of the ceramic valve.

【0004】このグリースの役割は、そもそもセラミッ
クスのみで構成をされグリースの塗布されていないバル
ブに於いては、リンキング現象またはジャンピング現象
と呼ばれるいわゆるバルブが固着する現象がおこり、操
作時にキシミ音をたてたり、または操作トルクが著しく
上昇するなどの現象がおこり、ひどい場合には固着して
摺動不能になるといった現象を生ずるもので、これら現
象防止のためになされている。
The role of this grease is that, in the case of a valve which is composed of only ceramics and is not coated with grease, a phenomenon called so-called valve sticking occurs, which is called a linking phenomenon or a jumping phenomenon, and a squeaking noise is generated during operation. The phenomenon occurs such that the operation torque is significantly increased or the operation torque is significantly increased, and in a severe case, the phenomenon of sticking and non-sliding can occur.

【0005】しかし、摺動面にグリースを塗布しても、
水又は湯の吐水時にグリースが同時に流出してしまい、
先に述べた諸問題が頻発し、水栓バルブのメーカーにと
ってはそれがクレームとなり対応を迫られている。こう
した、欠点の解決に関し、例えばグリースを長期に亘り
維持できるようにグリース溜りを設けたり、バルブの形
状を工夫するなどの改善がなされているが、通常これら
のバルブは、水洩れ防止のために200Kg・cm以上
の締付トルクで圧着されており、グリース流出後、その
間隙にグリースを供給することはむつかしく、未だ有効
な対策のないのが実情である。
However, even if grease is applied to the sliding surface,
Grease leaks out at the same time when water or hot water is discharged,
The above-mentioned problems frequently occur, and the manufacturers of faucet valves have complained about them and have to deal with them. In order to solve these drawbacks, improvements have been made, for example, by providing a grease reservoir so that the grease can be maintained for a long period of time and devising the valve shape.However, these valves are usually used to prevent water leakage. It is crimped with a tightening torque of 200 kg / cm or more, and it is difficult to supply grease to the gap after the grease has flowed out, and there is no effective measure yet.

【0006】こうした、従来バルブのもつ欠点に対し、
ダイヤモンド状炭素膜(以後i−Cと略記する)を、バ
ルブの摺動面の表面に設けることにより、従来使用して
いたグリースを不要な状態で解決することに成功した。
[0006] To such drawbacks of the conventional valve,
By providing a diamond-like carbon film (hereinafter abbreviated as i-C) on the surface of the sliding surface of the valve, it has succeeded in solving the conventionally used grease in an unnecessary state.

【0007】しかし、水栓バルブとしての使用時、主と
して水洩れ防止のために固定側ディスク、可動側ディス
クを強く圧して使用したり、また水道水中に混入してい
る砂などの異物が膜を損傷する恐れがあり、セラミック
スバルブとi−C膜との密着強度の向上が求められると
ころとなっている。
However, when the valve is used as a faucet valve, the fixed side disk and the movable side disk are used by being strongly pressed to prevent water leakage, and foreign matter such as sand mixed in tap water causes a film. There is a risk of damage, and there is a need to improve the adhesion strength between the ceramic valve and the i-C film.

【0008】[0008]

【課題を解決するための手段】本発明は優れた潤滑性,
優れた耐摩耗性を有するi−Cをセラミックスバルブ表
面により強固に密着させるようにした水栓バルブ部材の
発明とその製造方法の発明に関するものである。
The present invention has excellent lubricity,
The present invention relates to an invention of a faucet valve member in which i-C having excellent wear resistance is more firmly adhered to the surface of a ceramic valve, and an invention of a manufacturing method thereof.

【0009】即ち、この発明の水栓バルブ部材は、湯ま
たは水あるいは両者の水栓を構成するセラミックス製の
バルブの摺動面において、摺動面を構成する2面のうち
のいずれか一方または両方の面に、ダイヤモンド状炭素
膜(別名i−Carbon)の薄膜を、金属またはその
炭化物,窒化物,炭窒化物から選ばれる少なくとも1種
類以上の薄膜を介在して設けてなることを特徴とするも
のである。またこの発明の水栓バルブ部材の製造方法
は、水栓を構成するセラミックスバルブ表面に、先ず金
属またはその炭化物あるいは窒化物若しくはその炭窒化
物から選ばれる少なくとも1種類以上の薄膜を気相蒸着
などの手段により少なくとも一層以上形成してこれを傾
斜膜とし、その後この傾斜膜の上にダイヤモンド状炭素
膜(別名i−Carbon)の薄膜を形成することを特
徴とするものである。
That is, according to the water faucet valve member of the present invention, one of the two surfaces forming the sliding surface of the sliding surface of the ceramic valve forming the water faucet, the water faucet, or both of them, or A thin film of a diamond-like carbon film (also called i-Carbon) is provided on both surfaces with at least one kind of thin film selected from metal or its carbide, nitride, and carbonitride being interposed. To do. Further, in the method for manufacturing a faucet valve member of the present invention, at least one or more thin films selected from a metal, a carbide thereof, a nitride thereof, or a carbonitride thereof are vapor-deposited on the surface of a ceramic valve constituting a faucet. It is characterized in that at least one layer is formed by the method described above to form a gradient film, and then a thin film of a diamond-like carbon film (also called i-Carbon) is formed on the gradient film.

【0010】一般に、セラミックスバルブ表面に、目的
とする薄膜を気相蒸着させるにあたり、蒸着温度が高
く、セラミックスバルブと薄膜との熱膨張差、薄膜がそ
れ故にうける内部歪が主要な原因となって密着が阻害さ
れる。本発明は、これらの薄膜とセラミックスバルブの
間に歪の吸収材としての傾斜膜を設けることで、上記の
欠点を解決するものである。
In general, when vapor-depositing a target thin film on the surface of a ceramic valve, the vapor deposition temperature is high, the difference in thermal expansion between the ceramic valve and the thin film, and the internal strain that the thin film receives are the main causes. Adhesion is hindered. The present invention solves the above-mentioned drawbacks by providing an inclined film as a strain absorbing material between these thin films and the ceramic valve.

【0011】傾斜膜を形成する方法として、気相による
蒸着法,メッキ法,メタライジング法などがあるが、好
ましくは、薄い膜が形成でき、しかも低温での蒸着が可
能なスパッタ法が好ましい。また、傾斜膜として金属の
薄膜を用いる場合は耐蝕性の大きいTiなどが好まし
い。
As the method for forming the gradient film, there are vapor phase vapor deposition method, plating method, metallizing method and the like, but it is preferable to use the sputtering method because a thin film can be formed and vapor deposition at low temperature is possible. Further, when a metal thin film is used as the gradient film, Ti or the like having high corrosion resistance is preferable.

【0012】[0012]

【実施例】以下、本発明を実施例により、詳しく説明す
る。図1,及び図2に示した水栓のセラミックバルブ
1,2をアルミナ含有量92%,残部がSiO2,Mg
O,TiO2で構成をされた材料で作製した。(以後、
図1の(A)の形状のセラミックバルブ1を「固定
側」、図1の(B)の形状のセラミックバルブ2を「可
動側」と呼ぶ)作製後、摺動面をダイヤモンド砥粒を用
いて、ラップ盤にて研磨仕上げを行い、鏡面に研磨し
た。
EXAMPLES The present invention will be described in detail below with reference to examples. The ceramic valves 1 and 2 of the water faucet shown in FIG. 1 and FIG. 2 have alumina content of 92% and the balance of SiO 2 and Mg.
It was made of a material composed of O and TiO 2 . (Hereinafter,
The ceramic valve 1 having the shape shown in FIG. 1A is referred to as a “fixed side” and the ceramic valve 2 having the shape shown in FIG. 1B is referred to as a “movable side”. Then, it was polished and finished on a lapping machine and polished to a mirror surface.

【0013】このアルミナ製バルブの摺動面に、ダイヤ
モンド状炭素膜を生成させるが生成法としては、CVD
(Chemical Vapor Deposition)法とPVD(Physical V
aporDeposition)法に大別されるが、今回は、PVD法
の1種であるマグネトロンスパッタ法により、実施し
た。
A diamond-like carbon film is formed on the sliding surface of this alumina valve.
(Chemical Vapor Deposition) method and PVD (Physical V
apor Deposition) method, but this time, it was carried out by a magnetron sputtering method which is one of the PVD methods.

【0014】上記、処理品としてのアルミナ製バルブを
真空チャンバーにセットした後、5×10-5mbarまで、
真空排気した。次にキャンバー内にアルゴンガスを導入
し、圧力を1×10-2mbarにほぼ一定に保ち、接地された
真空チャンバーに対し、処理品に13.56MHZの高
周波を出力2000Wでかけて生成されたアルゴンプラ
ズマ中のアルゴンイオンによるボンバードを10分間実
施し、クリーニングを実施した。
After setting the above-mentioned alumina valve as a treated product in the vacuum chamber, up to 5 × 10 -5 mbar,
Evacuated. Next, an argon gas was introduced into the camber, the pressure was kept almost constant at 1 × 10 -2 mbar, and a high frequency of 13.56 MHZ was applied to the processed product at an output of 2000 W into a grounded vacuum chamber to generate argon. A bombardment with argon ions in plasma was performed for 10 minutes to perform cleaning.

【0015】次に、マグネトロンカソードを直流電源に
接続し、直流放電をさせ、カソード表面に取り付けたチ
タンターゲットをスパッタさせた。放電ガスとしては、
アルゴンガスを5×10-3mbarの圧力になるよう導入
し、反応性ガスとして窒素とアセチレンを使用した。処
理品をイオンでボンハードしながら、膜を堆積するため
にこの間には、250〜350W高周波を、処理品にか
けておいた。反応性ガスの窒素とアセチレンは、膜構成
が処理品基材側から、金属チタン〜TiN〜TiCN〜
TiCの、いわゆる傾斜膜となるように流量を調整変化
させた。
Next, the magnetron cathode was connected to a direct current power source to cause direct current discharge, and a titanium target mounted on the cathode surface was sputtered. As the discharge gas,
Argon gas was introduced at a pressure of 5 × 10 −3 mbar, and nitrogen and acetylene were used as reactive gases. While ion-bonding the processed product, a high frequency of 250 to 350 W was applied to the processed product during this period to deposit a film. Nitrogen and acetylene, which are reactive gases, are composed of titanium metal, TiN, TiCN, TiN
The flow rate was adjusted and changed so as to form a so-called graded film of TiC.

【0016】最後に窒素流量をゼロとし、アセチレンの
流量を増大させ、圧力7.5×10-3mbarの状態にする
とチタンターゲットの表面は、グラファイトやダイヤモ
ンド状炭素膜で完全に覆われた状態となり、この状態を
維持することによって、処理品上にダイヤモンド状炭素
膜を堆積させた。膜厚みは全厚み1.5μmであり、傾
斜膜が0.5μmダイヤモンド状炭素膜が1.0μmで
あり、堆積時間は35分であった。
Finally, when the nitrogen flow rate is set to zero and the acetylene flow rate is increased to a pressure of 7.5 × 10 -3 mbar, the surface of the titanium target is completely covered with graphite or diamond-like carbon film. By maintaining this state, the diamond-like carbon film was deposited on the treated product. The film thickness was 1.5 μm in total thickness, the gradient film was 0.5 μm, the diamond-like carbon film was 1.0 μm, and the deposition time was 35 minutes.

【0017】なお図1の(A)の固定側セラミックバル
ブ1及び図1の(B)の可動側セラミックバルブ2にお
いて、1a,2aは摺動面、3は水流入口、4は湯流入
口、5は吐水口、6は湯水混合水の通路である。
In the fixed side ceramic valve 1 of FIG. 1A and the movable side ceramic valve 2 of FIG. 1B, 1a and 2a are sliding surfaces, 3 is a water inlet, 4 is a hot water inlet, Reference numeral 5 is a spout, and 6 is a passage of hot and cold water mixture.

【0018】上記の方法で作製したバルブの摺動面に、
引っ張りせん断強度80Kgf/cm2のエポキシ系接
着剤を塗布し、下記表1に示す組み合わせにて引っ張り
試験を行った。(なお表1に於いてi−Cは、摺動面表
面にi−C膜を設けたもの、Al23とは、i−C膜を
設けなかったものを指す。)
On the sliding surface of the valve manufactured by the above method,
An epoxy adhesive having a tensile shear strength of 80 Kgf / cm 2 was applied, and a tensile test was conducted with the combinations shown in Table 1 below. (In Table 1, i-C means that the i-C film was provided on the sliding surface, and Al 2 O 3 means that the i-C film was not provided.)

【0019】[0019]

【表1】 [Table 1]

【0020】比較例は、セラミックスバルブの摺動面表
面に直接i−C膜を形成したものであり、実施例1,2
は本発明によりi−C膜を形成したものである。比較例
に示すように、直接i−C膜をバルブ表面に形成したも
のは、32Kgf/cm2の強度しか示さず、破断はi−
C膜より起こっている。
In the comparative example, the i-C film was directly formed on the sliding surface of the ceramic valve.
Is an i-C film formed according to the present invention. As shown in the comparative example, the one in which the i-C film was directly formed on the valve surface showed only 32 Kgf / cm 2 of strength, and the fracture was i-
It happens from the C film.

【0021】これに対し、本方法で形成したi−C膜の
場合には、破断はエポキシ樹脂部よりなされており、引
っ張りせん断強度は90Kgf/cm2以上と結論づける
ことができる。
On the other hand, in the case of the i-C film formed by this method, the breakage is caused by the epoxy resin portion, and it can be concluded that the tensile shear strength is 90 Kgf / cm 2 or more.

【0022】[0022]

【発明の効果】以上述べた如く、本発明によれば、金属
製あるいはセラミックス製バルブに金属又はその炭化物
又はその窒化物又はその炭窒化物より選ばれる少なくと
も1種以上の薄膜を傾斜膜として設け、更にその上にi
−C膜を形成することにより、i−C膜のセラミックス
製バルブに対する密着力の向上を著しく高めるものであ
る。本方法により、バルブの摺動面にi−C膜を密着力
よく形成でき、苛酷な使用条件下に於いても、グリース
が不要で長寿命の水栓バルブを製作することができる。
As described above, according to the present invention, a metal or ceramic valve is provided with at least one thin film selected from metal, its carbide, its nitride, or its carbonitride as an inclined film. , On top of that i
By forming the -C film, the adhesion of the i-C film to the ceramic valve is significantly improved. According to this method, the i-C film can be formed on the sliding surface of the valve with good adhesion, and a long-life faucet valve can be manufactured without grease even under severe use conditions.

【図面の簡単な説明】[Brief description of drawings]

【図1】の(A)固定側セラミックバルブの説明斜視図
である。
FIG. 1 (A) is an explanatory perspective view of a fixed-side ceramic valve.

【図1】の(B)可動側セラミックバルブの説明斜視図
である。
FIG. 1 (B) is an explanatory perspective view of a movable side ceramic valve.

【図2】水栓の分解説明図である。FIG. 2 is an exploded view of a water faucet.

【図3】本発明方法に係る水栓バルブ部材の拡大した一
部の縦断面図である。
FIG. 3 is a longitudinal sectional view of an enlarged part of the water faucet valve member according to the method of the present invention.

【符号の説明】[Explanation of symbols]

1 バルブ 2 バルブ 1a 摺動面 2a 摺動面 3 水流入口 4 湯流入口 5 吐水口 6 湯水混合水通路 7 下ぶた 8 蛇口 9 湯流入用配管 10 水流入用配管 11 ゴムパッキン 12 バルブ装着プラスチックケース 13 化粧ぶた 14 操作レバー 1 valve 2 valve 1a sliding surface 2a sliding surface 3 water inlet 4 hot water inlet 5 spout 6 hot water mixed water passage 7 bottom lid 8 faucet 9 hot water inflow pipe 10 water inflow pipe 11 rubber packing 12 plastic case with valve 13 Makeup cover 14 Control lever

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 湯または水あるいは両者の水栓を構成す
るセラミックス製又は金属製のバルブの摺動面に於い
て、摺動面を構成する2面のうちのいずれか一方または
両方の面に、ダイヤモンド状炭素膜(別名i−Carb
on)の薄膜を、金属またはその炭化物,窒化物,炭窒
化物から選ばれる少なくとも1種類以上の薄膜を介在し
て設けてなることを特徴とする水栓バルブ部材。
1. A sliding surface of a ceramic or metal valve that constitutes a faucet for hot water, water, or both, on one or both of the two surfaces constituting the sliding surface. , Diamond-like carbon film (also known as i-Carb
On), the water faucet valve member is characterized in that it is provided with at least one kind of thin film selected from metals or their carbides, nitrides, and carbonitrides.
【請求項2】 水栓を構成するセラミックスバルブ表面
に、先ず金属またはその炭化物あるいはその窒化物若し
くはその炭窒化物から選ばれる少なくとも1種類以上の
薄膜を気相蒸着などの手段により少なくとも一層以上形
成してこれを傾斜膜とし、その後この傾斜膜の上にダイ
ヤモンド状炭素膜(別名i−Carbon)の薄膜を形
成することを特徴とする水栓バルブ部材の製造方法。
2. At least one or more thin films selected from metals, their carbides, their nitrides, or their carbonitrides are first formed on the surface of a ceramic valve constituting a water faucet by means of vapor deposition or the like. Then, this is used as a gradient film, and then a thin film of a diamond-like carbon film (also called i-Carbon) is formed on this gradient film, a method of manufacturing a faucet valve member.
JP3273436A 1991-09-24 1991-09-24 Faucet valve member and manufacturing method thereof Expired - Lifetime JPH07907B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3273436A JPH07907B2 (en) 1991-09-24 1991-09-24 Faucet valve member and manufacturing method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3273436A JPH07907B2 (en) 1991-09-24 1991-09-24 Faucet valve member and manufacturing method thereof

Publications (2)

Publication Number Publication Date
JPH0579069A true JPH0579069A (en) 1993-03-30
JPH07907B2 JPH07907B2 (en) 1995-01-11

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08210521A (en) * 1995-01-31 1996-08-20 Kyocera Corp Sliding device and faucet valve
JPH09303576A (en) * 1996-05-14 1997-11-25 Ngk Spark Plug Co Ltd Ceramic valve
US5934321A (en) * 1996-07-25 1999-08-10 Citizen Watch Co., Ltd. Valve unit for water mixing valve
JP2007526974A (en) * 2004-03-05 2007-09-20 ウオーターズ・インベストメンツ・リミテツド Valve with low friction coating
JP2012533041A (en) * 2009-07-13 2012-12-20 アイデックス・ヘルス・アンド・サイエンス・リミテッド ライアビリティ カンパニー Rotating shear valve assembly with hard-on-hard seal surface
US8876081B2 (en) 2009-07-13 2014-11-04 Idex Health & Science Llc Rotary shear valve assembly with a polymer insert device

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61109628A (en) * 1984-10-29 1986-05-28 Toshiba Tungaloy Co Ltd Diamond coated tool
JPS63286576A (en) * 1987-05-19 1988-11-24 Idemitsu Petrochem Co Ltd Production of rigid carbon film
JPH02149673A (en) * 1988-11-29 1990-06-08 Citizen Watch Co Ltd Member coated with rigid carbon film
JPH03172683A (en) * 1989-11-30 1991-07-26 Toto Ltd Slide member made of ceramic

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61109628A (en) * 1984-10-29 1986-05-28 Toshiba Tungaloy Co Ltd Diamond coated tool
JPS63286576A (en) * 1987-05-19 1988-11-24 Idemitsu Petrochem Co Ltd Production of rigid carbon film
JPH02149673A (en) * 1988-11-29 1990-06-08 Citizen Watch Co Ltd Member coated with rigid carbon film
JPH03172683A (en) * 1989-11-30 1991-07-26 Toto Ltd Slide member made of ceramic

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08210521A (en) * 1995-01-31 1996-08-20 Kyocera Corp Sliding device and faucet valve
JPH09303576A (en) * 1996-05-14 1997-11-25 Ngk Spark Plug Co Ltd Ceramic valve
US5934321A (en) * 1996-07-25 1999-08-10 Citizen Watch Co., Ltd. Valve unit for water mixing valve
JP2007526974A (en) * 2004-03-05 2007-09-20 ウオーターズ・インベストメンツ・リミテツド Valve with low friction coating
JP4768709B2 (en) * 2004-03-05 2011-09-07 ウオーターズ・テクノロジーズ・コーポレイシヨン Valve with low friction coating
JP2012533041A (en) * 2009-07-13 2012-12-20 アイデックス・ヘルス・アンド・サイエンス・リミテッド ライアビリティ カンパニー Rotating shear valve assembly with hard-on-hard seal surface
US8876081B2 (en) 2009-07-13 2014-11-04 Idex Health & Science Llc Rotary shear valve assembly with a polymer insert device
US8905075B2 (en) 2009-07-13 2014-12-09 Idex Health & Science Llc Rotary shear valve assembly with hard-on-hard seal surfaces
US9388908B2 (en) 2009-07-13 2016-07-12 Idex Health & Science Llc Rotary shear valve assembly with hard-on-hard seal surfaces

Also Published As

Publication number Publication date
JPH07907B2 (en) 1995-01-11

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