JP2004162527A - Toilet unit - Google Patents

Toilet unit Download PDF

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JP2004162527A
JP2004162527A JP2004027498A JP2004027498A JP2004162527A JP 2004162527 A JP2004162527 A JP 2004162527A JP 2004027498 A JP2004027498 A JP 2004027498A JP 2004027498 A JP2004027498 A JP 2004027498A JP 2004162527 A JP2004162527 A JP 2004162527A
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water
receiving portion
toilet unit
drainage
crushing
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Norihiro Furukawa
悟弘 古川
Nobuyuki Tsukagoshi
信行 塚越
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Bridgestone Corp
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Bridgestone Corp
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  • Sanitary Device For Flush Toilet (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To fracture a solid matter or toilet paper to fluidize them when defecating, and to save energy such as electricity when discharging water. <P>SOLUTION: A toilet unit comprises a toilet unit body, a retention-water receiving part communicating with the body, a fracturing part for fracturing a defecated solid matter or the like in the receiving part, and a driving-force receiving part which houses a rotary shaft for supporting the fracturing part. The driving-force receiving part is provided with a water inlet for letting the water flow into the driving-force receiving part at a high speed, and a water outlet for letting the water flow out. The rotary shaft is rotated by the inflow of the water. The defecated solid matter or the like is fractured and fluidized inside the retention-water receiving part as the rotary shaft rotates. Then the water discharged from the water outlet is driven into the retention-water receiving part. The water discharged from a discharging outlet, which is provided at the retention-water receiving part to discharge the water in which the solid matter is fractured, is driven to a drain pipe, and is drained by means of siphonage. <P>COPYRIGHT: (C)2004,JPO

Description

本発明は、給水マセレータトイレユニットに関するものである。   The present invention relates to a water supply macerator toilet unit.

従来のトイレユニットは、その内部に常に一定水位に保たれた滞留水が存在しており、排便時での排便物、トイレットペーパー等はこの滞留水中に固形状態のまま蓄積され、排便後の流水によって半ば砕かれながら外部へ排出される構造になっている。   In a conventional toilet unit, accumulated water is always kept at a constant level inside the toilet unit, and defecation and toilet paper during defecation are accumulated in the accumulated water in a solid state, and the dewatered water is discharged. It is structured to be discharged to the outside while being half-crushed.

しかしながら、一般のトイレユニットでは一度に多量の水を流してインパクトを与える状態にしなくては排出処理ができず、排水管の口径も太くする必要があり、水資源の節約や設置・配管工事の簡易化に対して大きな欠点があった。特に水資源の節約は大きな問題となっており、従来では8〜10リットル以上の水が排便の際に用いられていたが、近年になり6リットル以下の節水タイプのトイレユニットも登場し、この傾向は益々広がることが予想される。   However, in general toilet units, drainage treatment cannot be performed unless a large amount of water is flown at once to give an impact, and it is necessary to increase the diameter of the drain pipe, saving water resources and installing and plumbing. There was a major drawback to simplification. In particular, saving water resources has become a major problem. Conventionally, water of 8 to 10 liters or more was used for defecation, but in recent years, water-saving toilet units of 6 liters or less have appeared. The trend is expected to spread further.

更に、近年に至り建築排水システムも改良が重ねられており、水回り器具からの排水管を集合させず床スラブ上を這わし、これを立て管に対して一定の落差を持った位置に配置された合流継手に接続し、この落差から来るサイホン力を利用して排水するシステムが提案されている。このシステムの特徴は排水に対して電力等のエネルギーが基本的にゼロであるという特徴があり、更に水回り器具からの排水管を全て同一の口径の柔軟な樹脂パイプとすることにより配管工事のしやすさやコストの低減、更にはメンテナンスの容易さをもたらすものである。   Furthermore, in recent years, the construction drainage system has also been improved, and the drainage pipes from the plumbing fixtures are not gathered, but crawl on the floor slab and placed at a position with a certain head drop from the vertical pipe A system has been proposed in which the drainage is connected to a combined joint, and the water is drained using the siphon force coming from the head. The feature of this system is that energy such as electric power is basically zero for drainage.Furthermore, all drainage pipes from plumbing equipment are made of flexible resin pipes of the same diameter, so that piping work can be performed. This results in ease of use, reduction in cost, and ease of maintenance.

かかる樹脂パイプの口径の例としては20mm程度が好ましいものとされるところ、水回り器具としての水洗トイレユニットからの排水も例外ではなく、使用される樹脂パイプの口径も統一される必要がある。このため、必要であれば排便後の固形物もこの口径の樹脂パイプ内を容易に通過するように処理されなければならない。このため、より素早く固形物の流動化をもたらすトイレユニットの構造とする必要があり、その際にも電力の使用も省力化が必要である。   The diameter of the resin pipe is preferably about 20 mm. However, drainage from a flush toilet unit as a plumbing fixture is no exception, and the diameter of the resin pipe used must be unified. For this reason, if necessary, the solid matter after defecation must be treated so as to easily pass through the resin pipe of this diameter. For this reason, it is necessary to adopt a structure of a toilet unit that allows fluidization of solids more quickly, and in that case, it is necessary to save power consumption.

本発明はかかる新規な建築排水システムに適合するトイレユニットを提供するものである。   The present invention provides a toilet unit compatible with such a novel construction drainage system.

本発明の構成は、トイレユニット本体と、当該トイレユニット本体に連なる滞留水受部と、当該滞留水受部内で排便固形物等を粉砕する粉砕部と、この粉砕部を支持する回転軸を内蔵する駆動力受部と、からなり、駆動力受部には高速で水を流入させる流入口と、この水を排出する流出口とを備え、水の流入によって回転軸を回転させ、この回転に伴い滞留水受部内で排便固形物等を粉砕・流動状態とさせ、次いで流出口より排水される水が滞留水受部内に導かれ、滞留水受部に備えた固形物を粉砕した水の排出口より排出される水を排水管に導き、サイホン力によって排水させることを特徴とするトイレユニットであり、好ましくは、駆動力受部の流出口より供給される水によって滞留水受部内を洗浄する機能を合わせ持つものがよい。   The configuration of the present invention incorporates a toilet unit main body, a stagnant water receiving portion connected to the toilet unit main body, a crushing portion for crushing defecation solids and the like in the stagnant water receiving portion, and a rotating shaft supporting the crushing portion. A driving force receiving portion, which comprises an inflow port for inflowing water at a high speed, and an outflow port for discharging the water, and the rotation shaft is rotated by the inflow of water. Accordingly, the defecation solids and the like are crushed and fluidized in the stagnant water receiving portion, and then water discharged from the outlet is guided into the stagnant water receiving portion, and the crushed solids provided in the stagnant water receiving portion are discharged. A toilet unit that guides water discharged from an outlet to a drain pipe and drains the water by siphon power, and preferably cleans the inside of the stagnant water receiver with water supplied from an outlet of a driving force receiver. It is better to have both functions.

本発明のトイレユニットは排便時の固形物やトイレットペーパーの粉砕流動化を省エネ的に行うもので、その排水に際しても基本的には電気等のエネルギーは不要であって、その実用性は著しく高いものである。   The toilet unit of the present invention performs energy-saving pulverization and fluidization of solids and toilet paper at the time of defecation, and basically does not require energy such as electricity at the time of drainage, and its practicality is extremely high. Things.

発明の実施の形態の一例としては、滞留水受部に水を供給する供給口と、固形物を粉砕した排水を排出する排出口とを備え、駆動力受部には例えば給水タービンにて高速化された水を流入させる流入口と、この水を排出する流出口とを備えたもので、滞留水受部の供給口と駆動力受部の流出口とをつなぐ流路が形成されたトイレユニットである。   As an example of an embodiment of the invention, a supply port for supplying water to a stagnant water receiving section, and a discharge port for discharging waste water obtained by crushing solids are provided. Toilet having an inflow port for inflow of the converted water and an outflow port for discharging the water, and having a flow path formed between the supply port of the stagnant water receiving section and the outflow port of the driving force receiving section. Unit.

最も好ましくは、駆動力受部内の水が滞留水受部内に流れ込んで洗浄機能をなした後、流動化された固形物と共に排出されるのがよい。   Most preferably, the water in the driving force receiving portion flows into the stagnant water receiving portion to perform a cleaning function, and then is discharged together with the fluidized solids.

又、駆動力受部内の粉砕部に回転用羽根部が、そして、滞留水受部内の粉砕部に圧送・粉砕用羽根部が備えられたものである。   Further, the crushing section in the driving force receiving section is provided with a rotating blade section, and the crushing section in the stagnant water receiving section is provided with a pressure feeding / crushing blade section.

排水を促すサイホン力の発生は、例えば排水立て管にトイレユニットからの排水を合流する継手を前記排水管と段差をもって備え、前記排水管を継手に接続し段差分のサイホン力によるのがよく、これによって滞留水受部内の汚物の混じった水を排水する。   The generation of the siphon force that promotes drainage is provided, for example, with a joint that joins the drainage from the toilet unit to the drainage stack with the drainage pipe and a step. This drains the water mixed with dirt in the stagnant water receiving section.

前記したように本発明者等は主として高層建築物の排水システムとして排水管内の流体の流れを満流とする圧送・サイホン流れとする技術を既に提案した。即ち、各階を貫く立て管と、各階の水周り器具から導かれる排水管と、立て管へこれを直接接続する継手とからなる排水システムであって、継手のレベルを排水床スラブのレベルより下げ、排水管内の流体に垂直速度成分を十分に付与してから立て管内の流体に合流させるシステムで、排水管の小径化と共に、無勾配管であるため、その施工性の容易さと床下空間の有効利用を図ることが可能となったものである。そして、本発明はこれを更にトイレユニットの排水に適用できるようにしたものであり、排便の際の固形物等を粉砕して流動状態とし、これを排水管におけるサイホン力を利用して排出しようとするものである。   As described above, the present inventors have already proposed a technique of performing a pumping / siphon flow in which a flow of a fluid in a drain pipe is full, mainly as a drainage system for a high-rise building. That is, a drainage system comprising a standing pipe penetrating each floor, a drainage pipe led from a plumbing fixture on each floor, and a joint directly connecting the standing pipe to the standing pipe, wherein the level of the joint is lower than that of the drainage floor slab. This system allows the vertical velocity component to be sufficiently imparted to the fluid in the drainpipe and then joins the fluid in the vertical pipe. It is now possible to use it. The present invention is further adapted to be applied to the drainage of a toilet unit, and crushes solids and the like at the time of defecation into a fluid state, and discharges this using the siphon force in the drainpipe. It is assumed that.

この排水システムについて更に述べれば、水回り器具からの排水は全て個別単独に立て管に設置する特殊な継手に直接接続するもので、排水管は原則として例えば20mm径に統−し、立て管への接続レベルは1階高相当(使用階スラブ・2m)下方を標準とする。排水管について更に言えば、基本的には夫々独立したフレキシブルな管が用いられることからそれほど容量の大きいものでなくともよく、口径20mmのポリブテン管で充分であり、しかも各器具への接続はこの一種類の管で充分であるため作業上のメリットは格段に大きい。特にポリブテン管はワンタッチ接続法が開発されており接続もこれを利用するのが最適である。そして、各器具からの排水管(フレキシブル管)は原則として途中で接続されることなく床スラブ上に置かれ、かつこの各階よりも下がったレベルにて継手に接続されるものである。従って、フレキシブル管は当初は水平方向にそして次いで垂直方向に曲げられて配管されるものである。このため、フレキシブル管内の流体は床スラブと継手管の段差(落差)によって生じるサイホン力によって高速満流の状態で吸引され、立て管内の流体に合流することとなったものである。   To further describe this drainage system, all drainage from plumbing fixtures is directly connected to a special joint installed individually on a standpipe. The standard connection level is below the first floor height (used floor slab, 2m). As for the drainage pipe, since the independent flexible pipes are basically used, the capacity does not need to be large, and a polybutene pipe having a diameter of 20 mm is sufficient. Since one kind of pipe is sufficient, the merit in work is remarkably large. In particular, a one-touch connection method has been developed for polybutene tubes, and it is optimal to use this for connection. The drainage pipes (flexible pipes) from the appliances are placed on the floor slab without being connected in the middle, and are connected to the joint at a level lower than each floor. Thus, flexible tubing is initially bent horizontally and then vertically bent. For this reason, the fluid in the flexible pipe is sucked in a high-speed full state by the siphon force generated by the step (fall) between the floor slab and the joint pipe, and merges with the fluid in the vertical pipe.

そして、特にトイレユニツトにつき言及すれば、固形物の粉砕に当たっては電力と多量の水が用いられるところであり、このためにコスト高となるし、停電時の対策は殆ど取られないのが現状である。しかるに、本発明は上記したように基本的には電力を使用せず、排水管内の満流流れによるサイホン力を利用してトイレユニット内の固形物を排出しようとするものであり、省エネ型のトイレユニットを提供することができたものである。具体的な設計水準としては、水道直結給水量3〜5リットル/洗浄(給水圧1〜2kgf/cm2 )、排水管は20mm径のポリブテン管を採用し、無勾配にて床スラブ上を這わせるものであり、床スラブと立て管との継手の位置(サイホン高さ)は2m以下とするものである。 And especially when it comes to toilet units, power and a large amount of water are used to pulverize solids, which increases costs and hardly takes any measures during power outages. . However, as described above, the present invention does not basically use electric power, but uses a siphon force generated by a full flow in a drain pipe to discharge solid matter in a toilet unit. A toilet unit could be provided. As a specific design level, the water supply directly connected to the water supply is 3 to 5 liters / washing (water supply pressure is 1 to 2 kgf / cm 2 ), and the drainage pipe adopts a 20 mm diameter polybutene pipe and crawls on the floor slab without gradient. The position (siphon height) of the joint between the floor slab and the riser is 2 m or less.

以下、本発明のトイレユニットを新たな建築排水システムとともに図面をもって説明する。図1は本建築排水システムの概念図であり、符号1は各階における床スラブを示す。そしてこれら各階を口径50mmの立て管2が貫いており、これに水回り器具3からの排水管4が接続される。この水回り器具はトイレユニット3が示され、これに口径20mmのポリブテン管4が接続されている。勿論、図示しない他の器具にもポリブテン管が接続される。このポリブテン管4は床スラブ1上を横方向に無勾配に伸ばされ、立て管2に至ってその方向を下向きに変え、そのまま立て管2との継手7に接続される。   Hereinafter, the toilet unit of the present invention will be described with a drawing together with a new construction drainage system. FIG. 1 is a conceptual diagram of the building drainage system, and reference numeral 1 indicates a floor slab on each floor. A standing pipe 2 having a diameter of 50 mm penetrates each floor, and a drain pipe 4 from a plumbing fixture 3 is connected to this. This plumbing device is shown as a toilet unit 3 to which a polybutene pipe 4 having a diameter of 20 mm is connected. Of course, the polybutene tube is also connected to other devices not shown. The polybutene pipe 4 is stretched in the horizontal direction on the floor slab 1 without gradient, reaches the standing pipe 2, changes its direction downward, and is connected to the joint 7 with the standing pipe 2 as it is.

継手7はこの例では階下の床スラブ1の近くに備えられており、立て管2に対してその周囲に立設された周設管7bにポリブテン管4の先端が接続され、通常は中央部に立て管2が接続される。即ち、継手7は立て管2を囲んでその周囲に周設管7bを複数備えたものであり、この周設管7bには例えば後述するプッシュロックが装着され、ポリブテン管4の先端が接続される。   In this example, the joint 7 is provided near the floor slab 1 downstairs, and the tip of the polybutene pipe 4 is connected to a peripheral pipe 7b erected around the standpipe 2 and is usually located at the center. Is connected to the standing pipe 2. That is, the joint 7 surrounds the standpipe 2 and includes a plurality of peripheral pipes 7b around the standpipe 2. For example, a push lock described later is attached to the peripheral pipe 7b, and the tip of the polybutene pipe 4 is connected thereto. You.

この例にあって床スラブ1から継手7までの高低差(H)は約2mである。従って、立て管2内の排水流体は垂直方向に加速して(ほぼ一定の流速になっている)垂直落下するのに対し、各階の各器具からの排水流体はポリブテン管4によって床スラブ1上を横方向に流れ、次いで継手7との落差(2m)によって垂直方向の速度成分を増し、継手7内にて立て管2の流体と合流するものであって、ここに両者の合流は無理なく行われることになる。   In this example, the height difference (H) from the floor slab 1 to the joint 7 is about 2 m. Therefore, while the drainage fluid in the stack pipe 2 is accelerated vertically and falls vertically (having a substantially constant flow rate), the drainage fluid from each fixture on each floor is moved onto the floor slab 1 by the polybutene pipe 4. Flows laterally, and then increases the vertical velocity component by a drop (2 m) from the joint 7 and merges with the fluid in the riser 2 within the joint 7, where the merging of both naturally occurs. Will be done.

さて、図2は本発明の中心をなすトイレユニット3の側面概念図であり、11はトイレ本体、12は便座、13は滞留水受部、14は駆動力受部である。滞留水受部13内には固形物粉砕手段としての粉砕部15が備えられ、複数の圧送・粉砕用羽根部15aが備えられている。又、この粉砕部15の軸16は駆動力受部14内に備えられ、この例では回転軸16に複数の回転羽根部16aが備えられている。   FIG. 2 is a side view conceptually showing the toilet unit 3 which forms the center of the present invention, wherein 11 is a toilet body, 12 is a toilet seat, 13 is a stagnant water receiving portion, and 14 is a driving force receiving portion. A crushing unit 15 as a solid material crushing unit is provided in the stagnant water receiving unit 13, and a plurality of blades 15a for pressure feeding and crushing are provided. The shaft 16 of the crushing unit 15 is provided in the driving force receiving unit 14, and in this example, the rotating shaft 16 is provided with a plurality of rotating blades 16a.

図例では、滞留水受部13には水を供給する供給口13aと、固形物を粉砕した排水を排出する排出口13bとが備えられ、一方、駆動力受部14には高速で水を流入させる流入口14aと、この水を排出する流出口14bとを備えたものである。   In the illustrated example, the stagnant water receiving section 13 is provided with a supply port 13a for supplying water and a discharge port 13b for discharging waste water obtained by pulverizing solids, while the driving force receiving section 14 receives water at high speed. It has an inlet 14a for inflow and an outlet 14b for discharging this water.

水の流れから言及すると、駆動力受部14の流入口14aからは例えばタービンにて高速化された水が流れ込み、回転羽根部16aが回転して軸16が回転する。そして、その後流出口14bから流れ出る。   In terms of the flow of water, for example, water whose speed has been increased by a turbine flows in from the inflow port 14a of the driving force receiving unit 14, the rotating blade 16a rotates, and the shaft 16 rotates. Then, it flows out from the outlet 14b.

一方、滞留水受部13内には水を流入させるが、特に新たな水を用いず、駆動力受部14の流出口14bからの水を用いるものであり、具体的には、滞留水受部13における水の供給口13aと駆動力受部14の流出口を連結するものである。   On the other hand, water is allowed to flow into the stagnant water receiving portion 13, but water is not particularly used but water from the outlet 14 b of the driving force receiving portion 14 is used. It connects the water supply port 13 a in the section 13 and the outlet of the driving force receiving section 14.

或いは、駆動力受部14内の水をトイレ本体11内に流れ込んで洗浄機能をなした後、流動化された固形物と共に排出すればよい。この特に好ましい後者の例を説明すると、トイレ本体11の上縁のリム11aの裏側に水を吐出する吐出口11bが備えられており、駆動力受部14の流出口14bはこの吐出口11bにつながれる流路14cを設けるのがよい。このようにすることにより、流出口14bから出た水は流路14cを経由して吐出口11bよりトイレ本体11内を洗浄するのに用いられる。そして、滞留水受部13には滞留水と共に排便による固形物が滞留するが、軸16が回転するに伴って粉砕部15が回転し、これに備えられた羽根部15aによって固形物が粉砕され流動化する。   Alternatively, the water in the driving force receiving portion 14 may flow into the toilet main body 11 to perform a cleaning function, and then may be discharged together with the fluidized solid matter. To explain this particularly preferred example of the latter, a discharge port 11b for discharging water is provided behind the rim 11a at the upper edge of the toilet main body 11, and an outlet 14b of the driving force receiving portion 14 is connected to the discharge port 11b. It is preferable to provide a connecting channel 14c. By doing so, the water that has flowed out of the outlet 14b is used to wash the inside of the toilet main body 11 from the outlet 11b via the flow path 14c. Then, the solid matter due to defecation stays in the accumulated water receiving section 13 together with the accumulated water, but the crushing section 15 rotates as the shaft 16 rotates, and the solid matter is crushed by the blade section 15a provided therein. Fluidize.

この排出に当たって、本発明は特に大きな特徴を有しており、前記したように落差(H)を利用した排水管4内の満流流れによるサイホン力を利用して吸引排水することとなるものである。   In this discharge, the present invention has a particularly large characteristic, and as described above, suction drainage is performed by using the siphon force of the full flow in the drain pipe 4 utilizing the head (H). is there.

図3は本発明の排水管4と継手5の立穴、排水管4と水回り器具側の接続管との連結に好適に用いられるプッシュロック機構20である。即ち、ソケット21内にグラブリング22、ワッシャー23、Oーリング24、及びこれらを支持するキャップ25がソケット21に螺着されている。このソケット21には雌ねじ部26が形成され、これが水回りの器具側の接続管に接続される。一方、キャップ25に先端内側にカラー27を嵌め込んだポリブテン管4を差し込み、グラブリング22がポリブテン管4の外側に食い込んで接続されることとなる。この両者の連結は確実でその作業もいたって簡単となる。   FIG. 3 shows a push-lock mechanism 20 suitably used for connecting the drainage pipe 4 and the vertical hole of the joint 5 and the drainage pipe 4 to the connection pipe on the side of the plumbing device of the present invention. That is, in the socket 21, the grab ring 22, the washer 23, the O-ring 24, and the cap 25 supporting these are screwed to the socket 21. The socket 21 is formed with a female screw portion 26, which is connected to a connection pipe on the side of the appliance around the water. On the other hand, the polybutene tube 4 in which the collar 27 is fitted inside the tip of the cap 25 is inserted, and the grab ring 22 is cut into the outside of the polybutene tube 4 and connected. The connection between the two is secure and the work is very simple.

本発明のトイレユニットは排便時の固形物やトイレットペーパー等の粉砕流動化を省エネ的に行うもので、その排水に際しても基本的には電気等のエネルギーは不要であって、集合住宅のみならず、戸建て住宅のトイレットとして極めて実現の可能性の高い技術である。   The toilet unit of the present invention performs energy-saving pulverization and fluidization of solids and toilet paper at the time of defecation, and basically does not require energy such as electricity at the time of drainage. It is a technology that has a very high possibility of being realized as a toilet for a detached house.

図1は本発明のトイレユニット及びこれに採用される建築排水システムの概念図である。FIG. 1 is a conceptual diagram of a toilet unit according to the present invention and a building drainage system employed therein. 図2は本発明のトイレユニットの一例を示す側面概念図である。FIG. 2 is a conceptual side view showing an example of the toilet unit of the present invention. 図3はプッシュロック機構を示す断面図である。FIG. 3 is a sectional view showing the push lock mechanism.

符号の説明Explanation of reference numerals

1‥床スラブ、
2‥立て管、
3‥水回り器具(トイレユニット)、
4‥排水管(ポリブテン管)、
7‥継手、
11‥トイレ本体、
11a‥リム、
11b‥吐出口、
13‥滞留水受部、
13a‥供給口、
13b‥排出口、
14‥駆動力受部、
14a‥流入口、
14b‥流出口、
14c‥流路、
15‥粉砕部、
15a‥粉砕用羽根部、
16‥回転軸、
16a‥回転羽根部、
20‥プッシュロック機構。
1 ‥ floor slab,
2 ‥ standing pipe,
3 ‥ Plumbing equipment (toilet unit),
4 ‥ drainage pipe (polybutene pipe),
7 ‥ fitting,
11 ‥ toilet body,
11a @ rim,
11b @ outlet
13 ‥ Retained water receiving section,
13a @ supply port,
13b outlet,
14 ‥ driving force receiving part,
14a ‥ inlet,
14b @ outlet
14c channel,
15 mm crushing section,
15a ‥ blade for crushing,
16 ° rotating shaft,
16a ‥ rotating blades,
20 ° push lock mechanism.

Claims (6)

トイレユニット本体と、当該トイレユニット本体に連なる滞留水受部と、当該滞留水受部内で排便固形物等を粉砕する粉砕部と、この粉砕部を支持する回転軸を内蔵する駆動力受部と、からなり、駆動力受部には高速で水を流入させる流入口と、この水を排出する流出口とを備え、水の流入によって回転軸を回転させ、この回転に伴い滞留水受部内で排便固形物等を粉砕・流動状態とさせ、次いで流出口より排水される水が滞留水受部内に導かれ、滞留水受部に備えた固形物を粉砕した水の排出口より排出される水を排水管に導き、サイホン力によって排水させることを特徴とするトイレユニット。   A toilet unit main body, a stagnant water receiving portion connected to the toilet unit main body, a crushing portion for crushing defecation solids and the like in the stagnant water receiving portion, and a driving force receiving portion incorporating a rotary shaft supporting the crushing portion. The driving force receiving portion is provided with an inflow port through which water flows in at high speed, and an outflow port through which the water is discharged. Water discharged from the outlet is guided into the stagnant water receiving portion, and the water discharged from the water outlet of the crushed solids provided in the stagnant water receiving portion is caused to pulverize the defecation solids and the like into a fluidized state. The toilet unit is characterized in that water is guided to a drain pipe and drained by siphon power. 駆動力受部の流出口より供給される水によって滞留水受部内を洗浄する請求項1記載のトイレユニット。   The toilet unit according to claim 1, wherein the inside of the stay water receiving portion is washed with water supplied from an outlet of the driving force receiving portion. 駆動力受部内の粉砕部に圧送・粉砕用羽根部が備えられた請求項1記載のトイレユニット。   The toilet unit according to claim 1, wherein the crushing section in the driving force receiving section is provided with a blade for pressure feeding and crushing. 駆動力受部内に流入する水は給水タービンにて高速化された請求項1記載のトイレユニット。   2. The toilet unit according to claim 1, wherein the speed of the water flowing into the driving force receiving portion is increased by a water supply turbine. 3. 滞留水受部内の回転部に回転用羽根部が備えられた請求項1記載のトイレユニット。   The toilet unit according to claim 1, wherein a rotating blade portion is provided in a rotating portion in the accumulated water receiving portion. 排水立て管にトイレユニットからの排水を合流する継手を前記排水管と段差をもって備え、前記排水管を継手に接続し段差分のサイホン力によって滞留水受部内の水を排水する請求項1記載のトイレユニット。

2. The drainage stack according to claim 1, further comprising a joint having a step with the drainage pipe for joining the drainage from the toilet unit to the drainage stack, connecting the drainage pipe to the joint, and draining the water in the stagnant water receiving portion by the siphon force of the step difference. Toilet unit.

JP2004027498A 2004-02-04 2004-02-04 Toilet unit Pending JP2004162527A (en)

Priority Applications (1)

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Publications (1)

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Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105507403A (en) * 2015-12-25 2016-04-20 杜庆存 Full-automatic oil sealing type toilet bowl

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02229332A (en) * 1989-02-28 1990-09-12 Tsutomu Yamazaki Aqueduct music box
JP2000297447A (en) * 1999-04-14 2000-10-24 Bridgestone Corp Drainage system for building

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02229332A (en) * 1989-02-28 1990-09-12 Tsutomu Yamazaki Aqueduct music box
JP2000297447A (en) * 1999-04-14 2000-10-24 Bridgestone Corp Drainage system for building

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105507403A (en) * 2015-12-25 2016-04-20 杜庆存 Full-automatic oil sealing type toilet bowl

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