JP3091885U - Water particle bubble generator - Google Patents

Water particle bubble generator

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Publication number
JP3091885U
JP3091885U JP2002004752U JP2002004752U JP3091885U JP 3091885 U JP3091885 U JP 3091885U JP 2002004752 U JP2002004752 U JP 2002004752U JP 2002004752 U JP2002004752 U JP 2002004752U JP 3091885 U JP3091885 U JP 3091885U
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Prior art keywords
water
bubbles
fine particle
cylindrical body
water pipe
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JP2002004752U
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Japanese (ja)
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孝昭 森永
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孝昭 森永
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Abstract

(57)【要約】 【課題】 水の流れる中で渦を起こし、微粒子泡を発生
させる器具である、その器具を水道管の一部に取り付け
ることにより、その水道管蛇口より出る水は、多量の微
粒子泡を含んだ水となる、微粒子泡は、物体に付着する
性質があり、物体に微粒子泡の膜を貼った状態を作る
性質がある、その微粒子泡作る器具を提供する。 【解決手段】 微粒子泡は、水の流れる断面の大、小に
より水の流れの速さ、遅さ、垂直な横断方向への流れに
より管内の水が乱流になり渦をもたらし、その渦が微粒
子泡を発生させ、同じ工程を繰り返すことで多量の微粒
子泡を含んだ水となる
(57) [Summary] [PROBLEMS] By attaching the device to a part of a water pipe, which is a device that generates whirlpools in the flow of water and generates particulate bubbles, a large amount of water comes out of the water pipe faucet. Become water containing fine particle bubbles, the fine particle bubbles have the property of adhering to the object, create a state where a film of fine particle bubbles is attached to the object
Providing a device that has the properties of a particulate foam. SOLUTION: The fine particle bubbles are turbulent in the water in the pipe due to the speed and slowness of the flow of water due to the size of the cross section of the water, and the flow in the vertical transverse direction, and the vortex is generated. Generates fine bubbles and repeats the same process to produce water containing a large amount of fine bubbles

Description

【考案の詳細な説明】 【0001】 【考案の属する技術分野】 この考案は、普通の水道管の一部に取り付ける事で、蛇口より出る水道水は、 微粒子泡が含んだ水になる器具である。 【0002】 【従来の技術】 従来は、水の蛇口部分構造および補助機械器具を使用して、その水を工作機械 の冷却などに使用していたが、高速回転物には、水が飛び散り冷却効果が少なく 、加工物に熱が持つため、加工速度が遅く、それが通常の作業能力と思われてき た、又圧縮空気と水を使用した冷却方法もありますが、使用工作機械の使用が限 定して大型であり動力が必要としていた。 【0003】 【考案が解決しようとする課題】 本考案はその欠点を除くため、微粒子泡が高速回転物にも付着することに注目 した、微粒子泡が付着すると水そのものが付着して冷却効果が大きく、その微粒 子泡の発生を水の流れの中で作る方法を考えた。 【0004】 【課題を解決するための手段】 その結果、水道管より水の微粒子泡発生器具に入ると、流れる水が、流れる断 面の大、小により、水の流れの速さ、遅さ、垂直な横断方向への流れにより管内 の水が乱流になり、渦をもたらし、渦が微粒子泡を発生させ、水の微粒子泡発生 器具通過では、多量の微粒子泡を含んだ水になっていることを確認した、また水 の微粒子泡発生器具後部にラセンスクリュウを設け、水を回転する運動をお越し 、蛇口より出た水は回転して、物に巻き込むようにしたことを確認して、水の微 粒子泡発生器具の考案が完成した。 【0005】 【考案の実施の形態】 本考案の微粒子泡発生器具を、工作機械の冷却水管の一部に取り付けると、蛇 口より回転して出る水は、微粒子泡が含まれ、工作機械の刃及び鋼材加工品に付 着して、冷却効果が大きくなり、1.5倍から2.0倍の切断スピードにしても 熱が持たずに切断、加工が出来た。 【0006】 【考案の効果】 微粒子泡は物に付着する性質があるため、物に付着して膜が貼 った様な状態になり、水を使用すると冷却効果は大になり、工作機械全般に使用 出来ます、又消防ポンプのホース部に使用すると、燃えている物体に微粒子泡が 付着して膜を貼った状態を作るため、消火が速くなり少量の水で消火出来る、ま た温水を使用して、身体、物体に当てると微粒子泡が膜を貼った状態を作るため 保温効果が大なる効果がある。 【提出日】平成14年9月30日(2002.9.30) 【手続補正1】 【補正対象書類名】明細書 【補正対象項目名】全文 【補正方法】変更 【補正内容】 【考案の詳細な説明】 【0001】 【考案の属する技術分野】 この考案は、普通の水道管に取り付けて、該水道管を流れる水中に微粒子泡を 発生させて、微粒子泡を含んだ水として取り出すための水の微粒子泡発生器具に 関する。 【0002】 【従来の技術】 従来は、水道管の蛇口部分と補助機械器具を使用して、これより取り出す水を 工作機械の冷却水などに使用していたが、この冷却水が工作機械の高速回転部分 に送り込むと、この冷却水が飛散して冷却効果が少なく、そのため回転加工部分 に熱を持つため、加工速度が遅く、作業能率が悪かった。又圧縮空気と水とを使 用した冷却方法もあるが、これに使用される工作機械が特殊なものに限定されて いた。 【0003】 【考案が解決しようとする課題】 本考案は、その欠点を除くことを解決課題とするものである。 即ち、微粒子泡を含んだ水は、高速回転物であっても、これに付着し、又冷却 効果が大きいことに注目し、本考案は、微粒子泡の発生を水の流れの中で作る方 法を考えた。 【0004】 【課題を解決するための手段】 上記課題を解決するために、本考案は、円筒体1の一端部側壁2に水を円筒体 内部に導入するための水道管取付用開口部3を設け、円筒体1の内部に円錐体4 を設けて、該円錐体4の先端部4aを前記水道管取付用開口部3に面して水の流 れ用空間部5を有するよう配置し、該円錐体4の基端部4b外周面と円筒体1の 内壁との間に小さな隙間6を形成し、該円錐体4の基端部4b後方にあって、円 筒体1の内壁に接して、その長手方向に適当間隔に円盤7を設ける共に、各円盤 7に小さな貫通孔8を設けて、前記円錐体4とこの後方に配置される円盤7との 空間部9及び各円盤7,7間の空間部9を断面積の大なる水の流れ部となし、円 盤7に設けた小さな貫通孔8を断面積の小さな水の流れ部となし、円筒体1の他 端部側内部に水が螺旋状に流れる螺旋スクリュー10を設け、該螺旋スクリュー 10に連通して、円筒体1の他端部側壁11に円筒体内部の水を外部に導出する ための水道管取付用開口部12を設けてなる水の微粒子泡発生器具からなるもの である。 【0005】 【作用】 水が水道管取付用開口部3より水の流れ用空間部5を通って、円筒体1の内部 に導入され、この水が円錐体4の先端部4aに当たって基端部4b外周側に流れ 、該基端部4b外周面と円筒体1の内壁その間の小さな隙間6を通過することに よって、この部分で水の流速が速くなり、断面積の大なる空間部9に流れ込むこ とによって、円錐体4の基端部4bの後端面側で渦が出来、多くの微粒子泡が発 生する。この断面積の大なる空間部9では水の流速は遅くなるが、更に円盤7の 小さな貫通孔8を通過することによって、水の流速は速くなり、小さな貫通孔8 の出口側周囲で渦が出来、この部分でも多くの微粒子泡が発生する。このように して、円筒体1内部の水が各円盤7間の断面積の大きな水の流れ部である空間部 9と断面積の小さな水の流れ部である小さな貫通孔8とを交互に通過することに よって、これらを通過する度に渦が出来て微粒子泡を発生し、円筒体1の他端部 側壁11に至る時点では多量の微粒子泡を含んだ水となっており、最終段階でこ の水が該円筒体1の他端側内部に設けた螺旋スクリュー10を通過することによ って該水が回転運動を起こし、円筒体1の他端部側壁11に設けた水道管取付用 開口部12から外部に導出される時点では多量の微粒子泡の含んだ水が回転状態 となって取り出される。 【0006】 【考案の詳細な説明】 図1は、本考案の一実施形態の外観図であり、例えば普通の水道管13a,1 3bの途中に本考案に係る微粒子泡発生器具Aが取り付けられる。即ち、水道管 13aから粒子泡発生器具Aの円筒体1の内部に導入された水は、矢印で示すよ うに流れ、該円筒体1の内部を通過して、他方の水道管或いは蛇口13bから外 部に導出されるようになっている。 【0007】 図2及び図3は、粒子泡発生器具Aの内部構造を示すもので、円筒体1の一端 部側壁2の中央部には水を円筒体内部に導入するための水道管取付用開口部3を 設ける。例えば水道管13aをねじ止めするための水道管取付用雌ねじ3aが形 成されている。 【0008】 円筒体1の内部には、その中心部を長手方向に取付軸14が配設され、該取付 軸14の一端部に円錐体4が、該円錐体4の先端部4aが前記水道管取付用開口 部3に面して水の流れ用空間部5を形成するよう、また該円錐体4の基端部4b 外周面と円筒体1の内壁との間に小さな隙間6を形成するようにして取り付けら れる。 【0009】 そして、該円錐体4の基端部4b後方にあって、円筒体1の内壁に密接して、 その長手方向に適当間隔に円盤7を設ける共に、各円盤7に小さな貫通孔8を設 けて、前記円錐体4とこの後方に配置される円盤7との空間部9及び各円盤間の 空間部9を断面積の大なる水の流れ部となし、円盤7に設けた小さな貫通孔8を 断面積の小さな水の流れ部となしている。 【0010】 さらに、円筒体1の他端部側壁11は内部が円錐空間を形成するよう中空円錐 状に形成され、該中空円錐状内部に同じく外周面が円錐状となっている円錐状螺 旋スクリュー10がその外周面が円筒体1の他端部側壁11の内壁に密接するよ うにして、前記取付軸14の後端部に取り付けられる。従って、螺旋スクリュー 10の外周面には螺旋溝10aが形成され、該螺旋溝10aは、円筒体1の他端 部側壁11に設けた水道管取付用開口部12に連通している。該水道管取付用開 口部12には導出用の水道管13bをねじ止めするための水道管取付用雌ねじ1 2aが形成されている。 【0011】 従って、本考案に係る微粒子泡発生器具Aを、例えば工作機械の冷却水道管1 3a,13bの途中に取り付けることによって、水が水道管13aより水の流れ 用空間部5を通って、円筒体1の内部に導入され、この水が円錐体4の先端部4 aに当たって四方の基端部4b外周側に流れ、該基端部4b外周面と円筒体1の 内壁その間の小さな隙間6を通過することによって、この部分で水の流速が速く なり、断面積の大なる空間部9に流れ込むことによって、円錐体4の基端部4b の後端面側で渦が出来、多くの微粒子泡が発生する。この断面積の大なる空間部 9では水の流速は遅くなるが、更に円盤7の小さな貫通孔8を通過することによ って、水の流速は速くなり、小さな貫通孔8の出口側周囲で渦が出来、この部分 でも多くの微粒子泡が発生する。このようにして、円筒体1内部の水が各円盤7 間の断面積の大きな水の流れ部である空間部9と断面積の小さな水の流れ部であ る小さな貫通孔8とを交互に通過することによって、これら通過する度に渦が出 来て微粒子泡を発生し、円筒体1の他端部側壁11に至る時点では多量の微粒子 泡を含んだ水となっており、最終段階でこの水が該円筒体1の他端側内部に設け た螺旋スクリュー10を通過することによって該水が回転運動を起こし、円筒体 1の他端部側壁11に設けた水道管取付用開口部12から外部に導出される時点 では多量の微粒子泡の含んだ水が回転状態となって導出側の水道管または蛇口1 3bより取り出され、これが工作機械の刃や鋼材加工物に付着することによって 冷却効果を発揮することになる。 【0012】 【考案の効果】 水の微粒子泡は物に付着する性質があり、該微粒子泡が物に付着して膜を貼っ たような状態となるため、例えば、工作機械の冷却水道管の途中に本考案に係る 微粒子泡発生器具を取り付けることよって、該冷却水道管から導出される水は多 量の微粒子泡が含まれ、且つ回転水となっているため物の回りに巻き込む性質が あり、このために高速回転する工作機械の刃や鋼材か加工品に微粒子泡の含んだ 水が付着して、大きな冷却効果を上げることができ、長期間使用するも刃や加工 物に熱を持たず、従来の1.5倍から2倍のスピードで切断加工するも良好に切 断加工を行うことができた。 【0013】 また、微粒子泡を含んだ水は、前述のように物に付着し膜を貼ったような性質 があるため、消防ポンプのホースの途中に本考案に微粒子泡発生器具を取り付け ることによって、燃えている物体に微粒子泡が付着し膜を貼った状態となるため 消化が速くなり少量の水で消火作業を行うことができる。 【0014】 さらには、温水管に本考案に係る微粒子泡発生器具を取り付け、該温水管から でる水を身体や物体に当てると、微粒子泡が膜を貼った状態を作るため、保温効 果に大なる効果を上げることができる。[Detailed description of the invention] [0001] [Technical field to which the invention belongs]   This device is attached to a part of a normal water pipe. It is a device that becomes water containing fine particle bubbles. [0002] [Prior art]   Conventionally, the water is supplied to a machine tool using a water faucet substructure and auxiliary equipment. Used for cooling, etc. Since the work has heat, the processing speed is slow, which is considered to be the normal working capacity. There are also cooling methods using compressed air and water, but the use of machine tools is limited. It was large and required power. [0003] [Problems to be solved by the invention]   Note that the present invention eliminates the disadvantages, and the fine particle bubbles adhere to high-speed rotating objects. When the particulate bubbles adhere, the water itself adheres and the cooling effect is large, I thought about how to make the bubbles in the stream of water. [0004] [Means for Solving the Problems]   As a result, when the water enters the fine particle bubble generator through the water pipe, the flowing water is interrupted. In the pipe due to the speed and slowness of the flow of water due to the size of the surface, and the flow in the vertical transverse direction Of water becomes turbulent, causing vortices, and the vortices generate fine bubbles, generating fine bubbles of water After passing through the instrument, it was confirmed that the water contained a large amount of fine particle bubbles. Comes with a LENS CRYU at the back of the fine particle bubble generator to rotate the water Make sure that the water that comes out of the faucet rotates and gets caught in the object. The invention of a particle foam generator was completed. [0005] [Embodiment of the invention]   When the particulate foam generator of the present invention is attached to a part of the cooling water pipe of a machine tool, The water that comes out of the mouth contains fine particles bubbles and is attached to the blades of machine tools and steel products. Wearing, the cooling effect increases, even if the cutting speed of 1.5 to 2.0 times Cutting and processing were possible without heat. [0006] [Effect of the invention] Since the fine particle foam has a property of adhering to an object, it adheres to the object and a film is attached. When water is used, the cooling effect increases, and it is used for all machine tools. Yes, if used in the hose section of a fire pump The fire extinguishes quickly and can be extinguished with a small amount of water to create a state where the film adheres and adheres. When hot water is used to hit the body or objects, fine-particle bubbles form a film There is an effect that the heat retention effect is great.    [Submission date] September 30, 2002 (2002.9.30) [Procedure amendment 1] [Document name to be amended] Statement [Correction target item name] Full text [Correction method] Change [Correction contents] [Detailed description of the invention] [0001]     [Technical field to which the invention belongs]   This device attaches to an ordinary water pipe and removes particulate bubbles into the water flowing through the water pipe. Generate water and remove it as water containing fine particle bubbles. Related. [0002]     [Prior art]   Conventionally, the tap water of the water pipe and auxiliary equipment are used to remove the water Used as cooling water for machine tools, but this cooling water is When the cooling water is sent to the Because of the heat, the processing speed was slow and the work efficiency was poor. Also use compressed air and water. There is a cooling method used, but the machine tools used for this are limited to special ones. Was. [0003] [Problems to be solved by the invention]   It is an object of the present invention to eliminate the disadvantages.   In other words, water containing fine particle bubbles adheres to even high-speed rotating objects and cools. Noting that the effect is great, the present invention is a method to make the generation of fine particle bubbles in the flow of water. I thought the law. [0004]     [Means for Solving the Problems]   In order to solve the above-mentioned problems, the present invention provides a cylindrical body with water on one end side wall 2 of the cylindrical body. A water pipe mounting opening 3 is provided for introduction into the inside, and a conical body 4 is provided inside the cylindrical body 1. The tip 4a of the conical body 4 faces the water pipe mounting opening 3 so that the water flows. The conical body 4 is disposed so as to have a space portion 5 for the conical body 4. A small gap 6 is formed between the conical body 4 and the inner wall. Disks 7 are provided at appropriate intervals in the longitudinal direction in contact with the inner wall of the cylindrical body 1. 7 is provided with a small through-hole 8 so that the cone 4 and the disk 7 disposed behind the The space portion 9 and the space portion 9 between the disks 7 and 7 are defined as a flow portion of water having a large sectional area, and a circle is formed. The small through-hole 8 provided in the board 7 is formed as a water flow section having a small cross-sectional area, and A helical screw 10 in which water flows helically inside the end portion is provided. The water inside the cylindrical body is led out to the side wall 11 at the other end of the cylindrical body 1 in communication with the cylindrical body 1. Consisting of a fine water bubble generating device provided with a water pipe mounting opening 12 for use It is. [0005] [Action]   The water passes through the water flow space 5 through the water pipe mounting opening 3 and passes through the inside of the cylindrical body 1. This water hits the distal end 4a of the cone 4 and flows to the outer peripheral side of the proximal end 4b. Through the small gap 6 between the outer peripheral surface of the base end portion 4b and the inner wall of the cylindrical body 1. Therefore, the flow velocity of the water increases in this portion, and the water flows into the space 9 having a large sectional area. As a result, a vortex is formed on the rear end face side of the base end portion 4b of the cone 4, and many fine particle bubbles are generated. Live. In the space portion 9 having this large cross-sectional area, the flow rate of water is slow, but By passing through the small through-holes 8, the flow rate of water is increased, and the small through-holes 8 are formed. A vortex is formed around the outlet side of this, and a lot of fine particle bubbles are generated also in this part. in this way And the space inside the cylindrical body 1 in which the water inside the cylindrical body 1 is the flow part of the large cross-sectional area between the disks 7 9 and a small through hole 8 which is a flow section of water having a small cross-sectional area. Therefore, a vortex is generated each time the gas passes through them, and fine particle bubbles are generated. When reaching the side wall 11, the water contains a large amount of fine particle bubbles. Water passes through a helical screw 10 provided inside the other end of the cylindrical body 1. As a result, the water causes a rotational movement, and the water supply pipe attached to the other end side wall 11 of the cylindrical body 1 is attached. At the time when it is led out through the opening 12, the water containing a large amount of fine particle bubbles is rotating. It is taken out as. [0006] [Detailed description of the invention]   FIG. 1 is an external view of an embodiment of the present invention, for example, an ordinary water pipe 13a, 1 The fine bubble generating device A according to the present invention is attached in the middle of 3b. That is, water pipe The water introduced into the cylindrical body 1 of the particle foam generator A from 13a is indicated by an arrow. Flows through the inside of the cylindrical body 1 and out of the other water pipe or faucet 13b. Section. [0007]   FIG. 2 and FIG. 3 show the internal structure of the particle bubble generating device A, and one end of the cylindrical body 1. A water pipe installation opening 3 for introducing water into the cylindrical body is provided at the center of the side wall 2. Provide. For example, a female screw 3a for attaching a water pipe for screwing the water pipe 13a is formed. Has been established. [0008]   In the inside of the cylindrical body 1, a mounting shaft 14 is disposed in the longitudinal direction at the center thereof. A cone 4 is provided at one end of the shaft 14, and a tip 4a of the cone 4 is provided with the water pipe mounting opening. Facing the portion 3 so as to form a space 5 for water flow, and a base end 4b of the cone 4 It is attached so as to form a small gap 6 between the outer peripheral surface and the inner wall of the cylindrical body 1. It is. [0009]   Then, at the rear of the base end portion 4b of the conical body 4, close to the inner wall of the cylindrical body 1, Disks 7 are provided at appropriate intervals in the longitudinal direction, and small through holes 8 are provided in each disk 7. In addition, a space 9 between the cone 4 and the disk 7 disposed behind the cone 4 and between the respective disks. The space portion 9 is made to be a flow portion of water having a large sectional area, and the small through hole 8 provided in the disk 7 is formed. It has a small cross section of water flow. [0010]   Further, the other end side wall 11 of the cylindrical body 1 has a hollow conical shape so that the inside thereof forms a conical space. And a conical screw having the same outer peripheral surface inside the hollow conical shape. The spiral screw 10 has its outer peripheral surface in close contact with the inner wall of the other end side wall 11 of the cylindrical body 1. Thus, it is mounted on the rear end of the mounting shaft 14. Therefore, the spiral screw A spiral groove 10 a is formed on the outer peripheral surface of the cylindrical body 10, and the spiral groove 10 a It communicates with a water pipe attachment opening 12 provided in the side wall 11. Open for installing the water pipe A female screw 1 for attaching a water pipe for screwing a water pipe 13b for drawing out into the mouth portion 12 is provided. 2a is formed. [0011]   Therefore, the fine particle bubble generating device A according to the present invention can be used, for example, in a cooling water pipe 1 of a machine tool. The water flows from the water pipe 13a by being installed in the middle of 3a, 13b. The water is introduced into the inside of the cylindrical body 1 through the space 5, and the water is introduced into the tip 4 of the cone 4. a, flows toward the outer peripheral side of the four base ends 4b, and the outer peripheral surface of the base end 4b and the cylindrical body 1 By passing through the small gap 6 between the inner walls, the flow velocity of water is And flows into the space portion 9 having a large cross-sectional area, whereby the base end portion 4b of the cone 4 is formed. A vortex is formed on the rear end surface side of the substrate, and many fine particle bubbles are generated. A space with a large cross section 9, the flow velocity of the water is slowed down. As a result, the flow velocity of the water increases, and a vortex is formed around the exit side of the small through hole 8. However, many fine particle bubbles are generated. In this way, the water inside the cylinder 1 is The space 9 is a flow section of water having a large cross-sectional area and the flow section of water has a small cross-section area. Vortices are generated each time they pass. Come and generate fine particle bubbles, and a large amount of fine particles are generated when reaching the other end side wall 11 of the cylindrical body 1. It is water containing bubbles, and this water is provided inside the other end of the cylindrical body 1 in the final stage. When the water passes through the spiral screw 10, the water causes a rotational motion, At the time when it is led out through the water pipe mounting opening 12 provided in the other end side wall 11 In this case, the water containing a large amount of fine particle bubbles rotates and the water pipe or faucet 1 on the outlet side 3b, which adheres to the blades of machine tools and steel workpieces A cooling effect will be exhibited. [0012]     [Effect of the invention]   The fine particles of water have the property of adhering to the object, and the fine particles adhere to the object and adhere to the film. For example, according to the present invention in the middle of a cooling water pipe of a machine tool By attaching the particulate foam generator, the amount of water discharged from the cooling water pipe is large. It contains a small amount of fine particle bubbles and has the property of wrapping around objects because it is rotating water. Because of this, high-speed rotating machine tool blades and steel or workpieces contain fine bubbles. Water adheres and can greatly enhance the cooling effect. It does not have heat and can cut 1.5 to 2 times faster than conventional products. Cutting could be performed. [0013]   In addition, water containing fine particle bubbles has the property of sticking to a substance and sticking a film as described above. Because of this, a particulate foam generator is attached to the present invention in the middle of the fire pump hose. By doing so, fine particles are attached to the burning object and a film is attached Fire extinguishing work can be performed with a small amount of water because digestion is quick. [0014]   Furthermore, the particulate foam generating device according to the present invention is attached to the hot water pipe, and When the water that comes out hits the body or an object, it creates a state in which the fine-particle bubbles adhere to the membrane, which helps keep A great effect can be achieved.

【図面の簡単な説明】 【図1】水道管に取付た本考案の斜視図である。 【図2】本考案のカバーの一部を切り欠いた斜視図であ
る。 【図3】本考案の断面図である。 【符号の説明】 1 水道管 2 水の微粒子泡発生器具 3 断面の大の部分 4 水の通る穴 断面の小の部分 5 ラセンスクリュウ 6 水道管取付ネジ
BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a perspective view of the present invention attached to a water pipe. FIG. 2 is a partially cutaway perspective view of the cover of the present invention. FIG. 3 is a sectional view of the present invention. [Description of Signs] 1 Water pipe 2 Fine particle bubble generating device for water 3 Large part of cross section 4 Hole through which water passes Small part of cross section 5 Lace screw 6 Water pipe mounting screw

─────────────────────────────────────────────────────
【手続補正書】 【提出日】平成14年9月30日(2002.9.3
0) 【手続補正1】 【補正対象書類名】明細書 【補正対象項目名】全文 【補正方法】変更 【補正内容】 【書類名】 明細書 【考案の名称】 水の微粒子泡発生器具 【実用新案登録請求の範囲】 【請求項1】 円筒体の一端部側壁に水を円筒体内部に
導入するための水道管取付用開口部を設け、円筒体の内
部に円錐体を設けて、該円錐体の先端部を前記水道管取
付用開口部に面して水の流れ用空間部を有するよう配置
し、該円錐体の基端部外周面と円筒体の内壁との間に小
さな隙間を形成し、該円錐体の基端部後方にあって、円
筒体の内壁に接して、その長手方向に適当間隔に円盤を
設ける共に、各円盤に小さな貫通孔を設けて、前記円錐
体とこの後方に配置される円盤との間の空間部及び各円
盤間の空間部を断面積の大なる水の流れ部となし、円盤
に設けた小さな貫通孔を断面積の小さな水の流れ部とな
し、円筒体の他端部側内部に水が螺旋状に流れる螺旋ス
クリューを設け、該螺旋スクリューに連通して、円筒体
の他端部側壁に円筒体内部の水を外部に導出するための
水道管取付用開口部を設けてなる水の微粒子泡発生器
具。 【図面の簡単な説明】 【図1】 本考案の一実施形態を示す微粒子泡発生器具
の外観使用状態図である。 【図2】 微粒子泡発生器具を構成する円筒体の一部を
切り欠いて内部を示す斜視図である。 【図3】 同縦断面図である。 【符号の説明】 1 円筒体1 2 一端部側壁 3 水道管取付用開口部 4 円錐体 4a 円錐体4の先端部 4b 円錐体4の基端部 5 水の流れ用空間部 6 小さな隙間 7 円盤 8 小さな貫通孔 9 空間部 10 螺旋スクリュー 11 他端部側壁 12 水道管取付用開口部 13a 水道管 13b 水道管 【手続補正2】 【補正対象書類名】図面 【補正対象項目名】全図 【補正方法】変更 【補正内容】 【図1】 【図2】 【図3】
────────────────────────────────────────────────── ───
[Procedure for Amendment] [Submission Date] September 30, 2002 (2002.9.3
0) [Procedure amendment 1] [Document name to be amended] Specification [Item name to be amended] Full text [Amendment method] Change [Contents of amendment] [Document name] Description [Name of device] Claims: 1. A water pipe installation opening for introducing water into the cylindrical body is provided at one end side wall of the cylindrical body, and a cone is provided inside the cylindrical body. The distal end of the body is arranged so as to have a space for water flow facing the water pipe mounting opening, and a small gap is formed between the outer peripheral surface of the base end of the cone and the inner wall of the cylindrical body. At the rear of the base end of the cone, a disk is provided at an appropriate interval in the longitudinal direction thereof in contact with the inner wall of the cylinder, and a small through hole is provided in each disk, and the cone and the rear thereof are provided. The space between the disks and the space between the disks is defined as the flow of water with a large cross-sectional area, The small through-hole provided in the disk serves as a water flow section having a small cross-sectional area, and a helical screw in which water flows helically is provided inside the other end of the cylindrical body. A fine water bubble generating device having a water pipe installation opening for discharging water in a cylindrical body to the outside at the other end side wall. BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is an external use state diagram of a fine particle bubble generating device showing an embodiment of the present invention. FIG. 2 is a perspective view showing the inside of a cylindrical body constituting the fine particle bubble generating device, with a part cut away. FIG. 3 is a longitudinal sectional view of the same. [Description of Signs] 1 Cylindrical body 1 2 One end side wall 3 Water pipe mounting opening 4 Conical body 4a Tip 4b of conical body 4 Base end of conical body 5 Water flow space 6 Small gap 7 Disk Reference Signs List 8 small through hole 9 space part 10 spiral screw 11 other end side wall 12 water pipe installation opening 13a water pipe 13b water pipe [procedure correction 2] [document name to be corrected] drawing [item name to be corrected] all figure [correction] Method] Change [Contents of correction] [Fig. 1] FIG. 2 FIG. 3

Claims (1)

【実用新案登録請求の範囲】 【請求項1】 水の流れる断面を変化させ、流れに乱流
を起こし水の粒子間の散乱による渦で、微粒子泡を発生
させる器具。
[Claim 1] A device that changes the cross section of flowing water, causes turbulence in the flow, and generates fine bubbles by vortices due to scattering between particles of water.
JP2002004752U 2002-06-26 2002-06-26 Water particle bubble generator Expired - Fee Related JP3091885U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2002004752U JP3091885U (en) 2002-06-26 2002-06-26 Water particle bubble generator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2002004752U JP3091885U (en) 2002-06-26 2002-06-26 Water particle bubble generator

Publications (1)

Publication Number Publication Date
JP3091885U true JP3091885U (en) 2003-02-21

Family

ID=43245973

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2002004752U Expired - Fee Related JP3091885U (en) 2002-06-26 2002-06-26 Water particle bubble generator

Country Status (1)

Country Link
JP (1) JP3091885U (en)

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