JP6754055B1 - Intelligent corridor smoke notification fire extinguishing equipment - Google Patents

Intelligent corridor smoke notification fire extinguishing equipment Download PDF

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JP6754055B1
JP6754055B1 JP2019127818A JP2019127818A JP6754055B1 JP 6754055 B1 JP6754055 B1 JP 6754055B1 JP 2019127818 A JP2019127818 A JP 2019127818A JP 2019127818 A JP2019127818 A JP 2019127818A JP 6754055 B1 JP6754055 B1 JP 6754055B1
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chamber
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elevating
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JP2020182806A (en
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張涛
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广州蕭浦科技有限公司
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    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62CFIRE-FIGHTING
    • A62C37/00Control of fire-fighting equipment
    • A62C37/08Control of fire-fighting equipment comprising an outlet device containing a sensor, or itself being the sensor, i.e. self-contained sprinklers
    • A62C37/09Control of fire-fighting equipment comprising an outlet device containing a sensor, or itself being the sensor, i.e. self-contained sprinklers telescopic or adjustable
    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62CFIRE-FIGHTING
    • A62C37/00Control of fire-fighting equipment
    • A62C37/08Control of fire-fighting equipment comprising an outlet device containing a sensor, or itself being the sensor, i.e. self-contained sprinklers
    • A62C37/10Releasing means, e.g. electrically released
    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62CFIRE-FIGHTING
    • A62C99/00Subject matter not provided for in other groups of this subclass
    • A62C99/0009Methods of extinguishing or preventing the spread of fire by cooling down or suffocating the flames
    • A62C99/0072Methods of extinguishing or preventing the spread of fire by cooling down or suffocating the flames using sprayed or atomised water

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  • Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Fire-Extinguishing By Fire Departments, And Fire-Extinguishing Equipment And Control Thereof (AREA)
  • Fire-Detection Mechanisms (AREA)
  • Fire Alarms (AREA)
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Abstract

【課題】本発明はインテリジェント廊下煙報知消火設備をを提供した。【解決手段】壁及び前記壁の中に位置している環状チャンバを含み、前記壁の中には装置の作動に動力を提供できる駆動機構が設置され、前記壁の下側には前記駆動機構に制御されて運動する噴射機構が設置され、前記駆動機構と前記噴射機構との間は昇降機構によって伝動を実現し、本装置は作動する時に四周に水を噴射して火を消すことができれば、需要によって四周に噴射された水を集めて加圧して噴射することもでき、また噴射の角度を調節でき、それによって火を集中して消すことに便利を与え、且つ水を噴射する範囲を増加し、それによって逃亡者の逃亡に便利である。【選択図】図1PROBLEM TO BE SOLVED: To provide an intelligent corridor smoke notification fire extinguishing system. SOLUTION: The wall includes a wall and an annular chamber located in the wall, a drive mechanism capable of providing power for operating an apparatus is installed in the wall, and the drive mechanism is installed under the wall. If an injection mechanism that moves under the control of the vehicle is installed, transmission is realized between the drive mechanism and the injection mechanism by an elevating mechanism, and when the device operates, water can be injected around four circumferences to extinguish the fire. It is also possible to collect and pressurize the water sprayed on all four laps according to demand, and the angle of spraying can be adjusted, which makes it convenient to concentrate and extinguish the fire, and the range to spray water. Increased, thereby convenient for fugitive escape. [Selection diagram] Fig. 1

Description

本発明はインテリジェント廊下煙報知消火設備であり、主には消防消火分野に関わる。 The present invention is an intelligent corridor smoke notification fire extinguishing system, and is mainly related to the field of fire extinguishing.

目家屋の廊下の頂部には煙報知器とスプリンクラー装置とが取り付けられ、しかし現階段のスプリンクラー装置は作動する時に大体四周に分散して水を噴射するのであり、噴射範囲が小さく、しかも水を有効に集中して消火することができなく、火勢を制御するのに不利で、逃亡者の逃亡に不便である。 A smoke alarm and a sprinkler device are installed at the top of the corridor of the eye house, but the sprinkler device of the current stairs sprays water roughly in four directions when it operates, and the spray range is small and water is sprayed. It is not possible to concentrate and extinguish the fire effectively, which is disadvantageous for controlling the fire force and inconvenient for the escape of the fugitive.

中国特許出願公開第109350896号明細書Chinese Patent Application Publication No. 109350896

本発明の解決しようとする技術的問題はインテリジェント廊下煙報知消火設備を提供し、廊下の頂部に消防するには水を集中して噴射する問題を克服し、消火範囲を高める。 The technical problem to be solved by the present invention provides an intelligent corridor smoke alarm fire extinguishing system, overcomes the problem of concentrated injection of water to fire at the top of the corridor, and enhances the fire extinguishing range.

本発明は以下の技術プランによって実現される。 The present invention is realized by the following technical plan.

本発明のインテリジェント廊下煙報知消火設備は、壁及び前記壁の中に位置している環状チャンバを含み、前記壁の中には装置の作動に動力を提供できる駆動機構が設置され、前記壁の下側には前記駆動機構に制御されて運動する噴射機構が設置され、前記駆動機構と前記噴射機構との間は昇降機構によって伝動を実現する。 The intelligent corridor smoke alarm fire extinguishing system of the present invention includes a wall and an annular chamber located in the wall, in which a drive mechanism capable of providing power for operating the device is installed in the wall. An injection mechanism that moves under the control of the drive mechanism is installed on the lower side, and transmission is realized by an elevating mechanism between the drive mechanism and the injection mechanism.

前記壁の下端面には装置を作動させ始めるか否かのを制御する煙報知器が固定され、前記壁の中にはまた水を蓄えることができる貯水チャンバが設置され、前記煙報知器が火災の発生をセンサーした時、貯水チャンバの中に水を加え、同時に前記煙報知器は集中して一方向に噴射する必要があるか否かを判断し、必要であれば前記駆動機構を制御して作動させ、噴射機構を一方向に回転させ、そして前記駆動機構の出力する動力を高めることによって、前記貯水チャンバから流す水の圧力が増加し、それによって前記噴射機構によって噴射する水がより遠く、水を集中して火を消すことに便利を与え、前記噴射機構が水を分散して噴射する必要があれば、前記煙報知器は前記駆動機構の作動を制御しなく、前記貯水チャンバの中の水が直接に前記噴射機構によって四周に分散して噴射される。 A smoke alarm that controls whether or not to start operating the device is fixed to the lower end surface of the wall, and a water storage chamber capable of storing water is installed in the wall, and the smoke alarm is installed. When the occurrence of a fire is sensed, water is added into the water storage chamber, and at the same time, the smoke alarm determines whether or not it is necessary to concentrate and inject in one direction, and if necessary, controls the drive mechanism. By operating, rotating the injection mechanism in one direction, and increasing the output power of the drive mechanism, the pressure of the water flowing from the water storage chamber is increased, whereby the water injected by the injection mechanism is more. The smoke alarm does not control the operation of the drive mechanism and the water storage chamber, if the injection mechanism needs to disperse and inject water, which is convenient for concentrating water to extinguish a fire in the distance. The water inside is directly dispersed and injected in four circumferences by the injection mechanism.

前記噴射機構はメイン流れ道と、二つの伸縮ばねと、環状板と、四つのLロッドと、環状ブロックと、四つの昇降ブロックと、噴射ブロックとを含み、前記壁の下側には前記噴射ブロックが設置され、前記噴射ブロックの中には前記噴射ブロックを貫通した前記メイン流れ道が形成されており、前記噴射ブロックの中には前記メイン流れ道を中心に設置された円環チャンバが設置され、前記円環チャンバの内壁の中にはまた前記円環チャンバに連通した環状溝が形成されており、前記環状溝の中には前記環状板及び二つの前記環状板を復帰させることができる前記伸縮ばねが設置され、前記円環チャンバの中には四つの前記昇降ブロック及び一つの前記環状ブロックが設置され、前記環状板の下端には四つの一端が前記円環チャンバの中に位置しており、且つ前記昇降ブロックと前記環状ブロックとに挟まれた前記Lロッドが固定されている。 The injection mechanism includes a main flow path, two telescopic springs, an annular plate, four L rods, an annular block, four elevating blocks, and an injection block, and the injection is on the underside of the wall. A block is installed, the main flow path penetrating the injection block is formed in the injection block, and an annular chamber installed around the main flow path is installed in the injection block. An annular groove communicating with the annular chamber is also formed in the inner wall of the annular chamber, and the annular plate and the two annular plates can be restored in the annular groove. The telescopic spring is installed, four elevating blocks and one annular block are installed in the annular chamber, and four ends are located in the annular chamber at the lower end of the annular plate. And the L rod sandwiched between the elevating block and the annular block is fixed.

さらに、前記駆動機構はモーターと、駆動軸と、駆動ギヤと、駆動盤と、回転盤と、円錐形柱と、円柱と、二つの位置制限板と、二つ位置制限ばねと、回字型ブロックと、従動軸と、第一ベベルギヤと、第二ベベルギヤと、遠心輪と、ベルトと、タービン羽根車軸と、第二ベルトプーリと、タービン羽根車と、第一ベルトプーリと、電磁石と水入りパイプとを含み、前記環状チャンバの中には前記駆動盤と前記回転盤とが設置され、前記回転盤の上端には前記円錐形柱が固定され、前記駆動盤の中には前記駆動盤を貫通した貫通チャンバが設置され、前記貫通チャンバの前後端壁の中にはいずれも前記貫通チャンバに連通した位置制限溝が形成されており、前記貫通チャンバの中には上端が前記回転盤を上方へプッシュする前記円柱が設置され、前記円柱の前後両端にはいずれも一端が前記位置制限溝の中に位置している位置制限板が設置され、前記位置制限溝の中の上端壁には下端が前記位置制限板と連結された前記位置制限ばねが設置され、前記環状チャンバの左端壁の中には前記環状チャンバに連通した駆動チャンバが設置され、前記駆動チャンバの上端壁には前記モーターが設置され、前記モーターの下端には前記駆動軸が動力が伝達できるように連結され、前記駆動軸には前記第一ベベルギヤと前記第一ベルトプーリとが固定され、前記駆動軸にはまた前記駆動盤の左端と噛み合っている前記駆動ギヤがスライドできるように連結され、前記駆動チャンバの中には回字型ブロックが設置され、前記回字型ブロックの下側にはまた前記電磁石が設置され、前記駆動チャンバの左側壁には前記回字型ブロックの中心を通過する前記従動軸が回転できるように連結され、前記従動軸には前記第一ベベルギヤの左端と噛み合っている前記第二ベベルギヤが固定され、前記従動軸にはまた回転する時に前記回字型ブロックを上方へプッシュする前記遠心輪が固定され、前記駆動ギヤの左端が前記回字型ブロックの中心を貫通しており、前記貯水チャンバの上端壁の中には従動チャンバが設置され、前記従動チャンバの上端壁には下端が前記貯水チャンバの中に位置している前記タービン羽根車軸が回転できるように連結され、前記タービン羽根車軸の下端には前記タービン羽根車が固定され、且つ前記タービン羽根車軸の上端には前記第二ベルトプーリが固定され、前記第一ベルトプーリと前記第二ベルトプーリとの間が前記ベルトによって連結され、また前記円錐形柱の下端が前記ベルトの中心に位置している。 Further, the drive mechanism includes a motor, a drive shaft, a drive gear, a drive plate, a rotary plate, a conical column, a cylinder, two position limiting plates, two position limiting springs, and a circular shape. Block, driven shaft, first bevel gear, second bevel gear, centrifugal wheel, belt, turbine impeller axle, second belt pulley, turbine impeller, first belt pulley, electromagnet and water The drive plate and the rotary plate are installed in the annular chamber including a pipe, the conical pillar is fixed to the upper end of the rotary plate, and the drive plate is installed in the drive plate. A penetrating through chamber is installed, and a position limiting groove communicating with the through chamber is formed in each of the front and rear end walls of the through chamber, and the upper end of the through chamber is above the turntable. The column to be pushed to is installed, a position limiting plate having one end located in the position limiting groove is installed at both front and rear ends of the column, and a lower end is installed on the upper end wall in the position limiting groove. The position limiting spring connected to the position limiting plate is installed, a drive chamber communicating with the annular chamber is installed in the left end wall of the annular chamber, and the motor is installed on the upper end wall of the drive chamber. Installed, the drive shaft is connected to the lower end of the motor so that power can be transmitted, the first bevel gear and the first belt pulley are fixed to the drive shaft, and the drive shaft is also driven. The drive gear meshing with the left end of the board is connected so as to be slidable, a circular block is installed in the drive chamber, and the electromagnet is also installed under the circular block. The driven shaft passing through the center of the circular block is connected to the left wall of the drive chamber so as to be rotatable, and the second bevel gear meshing with the left end of the first bevel gear is fixed to the driven shaft. The driven shaft is also fixed with the centrifugal ring that pushes the circular block upward when rotating , the left end of the drive gear penetrates the center of the circular block, and the water storage chamber. A driven chamber is installed in the upper end wall of the driven chamber, and the turbine impeller axle whose lower end is located in the water storage chamber is connected to the upper end wall of the driven chamber so as to be rotatable. The turbine impeller is fixed to the lower end, and the second belt pulley is fixed to the upper end of the turbine impeller axle, and the space between the first belt pulley and the second belt pulley is in front. It is connected by a belt and the lower end of the conical column is located in the center of the belt.

さらに、前記噴射機構はまた四つの分流道と、四枚の切断板と、四つの圧縮ばねと、二本のロープと、二つの切断ブロックと、二つの従動ばねとを含み、前記噴射ブロックの中には前記噴射ブロックを貫通した前記メイン流れ道が形成されており、前記噴射ブロックの中にはまた四つの外部空間と前記メイン流れ道とを連通した前記分流道が設置され、前記環状ブロックの下端には下端が前記円環チャンバの下端壁と連結された四つの前記圧縮ばねが固定され、前記円環チャンバの下端壁には四つの前記分流道を貫通した昇降溝が形成されており、前記昇降溝の中には前記分流道を切断でき、且つ上端が前記環状ブロックと連結された前記切断板が設置され、前記切断板の中には前記切断板を貫通し、且つ前記分流道に連通した貫通穴が設置され、前記噴射ブロックの中にはまた前記メイン流れ道を切断できる移動チャンバが設置され、前記移動チャンバの中には二つの前記メイン流れ道を切断できる前記切断ブロックが設置され、前記切断ブロックと前記移動チャンバの端壁との間が前記従動ばねによって連結され、左右両側の前記切断板の下端にはいずれもロープが固定され、前記ロープの下端が前記移動チャンバの端壁を貫通し、且つ前記切断ブロックと連結されている。 Further, the injection mechanism also includes four diversion paths, four cutting plates, four compression springs, two ropes, two cutting blocks and two driven springs of the injection block. The main flow path penetrating the injection block is formed in the injection block, and the diversion path connecting the four external spaces and the main flow path is installed in the injection block, and the annular block is installed. The four compression springs whose lower ends are connected to the lower end walls of the annular chamber are fixed to the lower end of the ring chamber, and the lower end walls of the annular chamber are formed with four elevating grooves penetrating the diversion paths. The cutting plate capable of cutting the diversion path and having the upper end connected to the annular block is installed in the hoisting groove, and the diversion path penetrates the cutting plate and penetrates the cutting plate. A through hole is installed in the injection block, a moving chamber capable of cutting the main flow path is also installed in the injection block, and the cutting block capable of cutting the two main flow paths is installed in the moving chamber. Installed, the cutting block and the end wall of the moving chamber are connected by the driven spring, ropes are fixed to the lower ends of the cutting plates on both the left and right sides, and the lower end of the rope is the moving chamber. It penetrates the end wall and is connected to the cutting block.

さらに、前記昇降機構は四つの昇降板と、四本の昇降ロッドと、八つの昇降ばねと、四つの円球と、四つの固定ブロックと、四つの連結ばねと、四つの固定ロッドと、送水ホースとを含み、前記環状チャンバの下端壁の中には四つの上方に開口した昇降チャンバが設置され、前記昇降チャンバの中には前記昇降板及び二つの前記昇降板を支持する前記昇降ばねが設置され、前記噴射ブロックの上端には上方に開口した四つの円溝が形成されており、前記円溝の中には回転できるが前記円溝から離れることができない前記円球が設置され、前記昇降板の下端には下端が前記昇降チャンバの下端壁と前記円溝の上端壁とを貫通し、且つ前記円球と連結された前記昇降ロッドが固定され、前記貯水チャンバの下端壁には下端が外部空間の中に位置している前記送水ホースが設置され、前記送水ホースの下端が前記噴射ブロックと固定的に連結され、且つ前記送水ホースが前記メイン流れ道に連通しており、前記壁の下端壁には四つの前記固定ブロックが固定され、前記固定ブロックの中には下方に開口したばね溝が形成されており、前記ばね溝の上端壁には前記連結ばねが固定され、前記連結ばねの下端には下端が前記円環チャンバの上端壁を貫通し、且つ前記昇降ブロックと連結された前記固定ロッドが固定されている。 Further, the elevating mechanism includes four elevating plates, four elevating rods, eight elevating springs, four spheres, four fixing blocks, four connecting springs, four fixing rods, and water supply. Four upwardly open elevating chambers are installed in the lower end wall of the annular chamber, including a hose, and the elevating plate and the elevating springs supporting the two elevating plates are contained in the elevating chamber. It is installed, and four circular grooves opened upward are formed at the upper end of the injection block, and the circular sphere that can rotate but cannot be separated from the circular groove is installed in the circular groove. The lower end of the elevating plate penetrates the lower end wall of the elevating chamber and the upper end wall of the circular groove, and the elevating rod connected to the sphere is fixed, and the lower end is attached to the lower end wall of the water storage chamber. Is installed in the external space, the lower end of the water supply hose is fixedly connected to the injection block, and the water supply hose communicates with the main flow path, and the wall. Four of the fixing blocks are fixed to the lower end wall of the hose, a spring groove opened downward is formed in the fixing block, and the connecting spring is fixed to the upper end wall of the spring groove, and the connecting spring is fixed. The fixed rod is fixed to the lower end of the spring so that the lower end penetrates the upper end wall of the annular chamber and is connected to the elevating block.

さらに、前記駆動軸と前記駆動ギヤとの間の摩擦力が大きいため、前記駆動軸が回転する時に前記駆動ギヤを回転連動させることができ、また前記電磁石が作動する時に前記駆動ギヤは前記駆動軸でスライドすることができる。 Further, since the frictional force between the drive shaft and the drive gear is large, the drive gear can be rotationally interlocked when the drive shaft rotates, and the drive gear is driven when the electromagnet is operated. Can slide on the axis.

さらに、前記遠心輪は回転して遠心運動が発生する時、前記遠心輪は前記回字型ブロックを支えることができる。 Further, when the centrifugal ring rotates and centrifugal movement occurs, the centrifugal ring can support the circular block.

さらに、前記四つの連結ばねの弾力の総量は二つの伸縮ばねと四つの伸縮ばねの弾力との総量より大きく、前記一つの連結ばねの弾力は二つの伸縮ばねと四つの圧縮ばねの弾力の総量より小さい。 Further, the total elasticity of the four connecting springs is larger than the total elasticity of the two telescopic springs and the four telescopic springs, and the elasticity of the one connecting spring is the total elasticity of the two telescopic springs and the four compression springs. Smaller.

さらに、前記ベルトは初期状態の下で緩め状態にあり、前記円錐形柱は下降した後に前記ベルトをきつく締めることができる。 Further, the belt is in a loosened state under the initial state, and the conical column can be lowered and then tightened.

本発明の有益な効果は:本装置は構成が簡単で、操作が便利であり、本装置は作動する時に四周に水を噴射して火を消すことができれば、需要によって四周に噴射された水を集めて加圧して噴射することもでき、また噴射の角度を調節でき、それによって火を集中して消すことに便利を与え、且つ水を噴射する範囲を増加し、それによって逃亡者の逃亡に便利である。 The beneficial effect of the present invention is: The device is simple to configure and convenient to operate, and if the device can spray water around four laps to extinguish the fire when it operates, the water sprayed around four laps on demand. Can also be collected, pressurized and jetted, and the angle of the jet can be adjusted, thereby providing convenience in concentrating and extinguishing the fire, and increasing the range of spraying water, thereby fleeing the fugitive. It is convenient for.

発明の実施例または既存の技術の中の技術方案をより詳しく説明できるため、以下は実施例または既存の技術を説明することに必要な付図に対して簡単な紹介を行い、明らかなように、以下の付図はただ発明の一部の実施例であり、当業者にとって、創造的な労働を払わなくても、これらの付図に基づいて他の付図を獲得することができる。下記に図1〜4をあわせて本発明について詳しく説明し、便利に説明するために、下記の方向を以下のように規定する:図1は本発明装置の正面図であり、以下に述べる上下左右前後の方向と図1の自身投影関係の上下左右前後の方向とが一致である。 In order to be able to explain in more detail the examples of the invention or the technical ideas in the existing technology, the following is a brief introduction to the illustrations necessary to explain the examples or the existing technology, and as is clear, The following illustrations are only examples of some of the inventions, and those skilled in the art can obtain other illustrations based on these illustrations without having to pay creative labor. In order to explain the present invention in detail with reference to FIGS. 1 to 4 below and to explain the present invention in a convenient manner, the following directions are defined as follows: FIG. The left-right front-back direction and the up-down, left-right front-back direction of the self-projection relationship in FIG. 1 are the same.

図1は本発明の実施例の構成概略図FIG. 1 is a schematic configuration diagram of an embodiment of the present invention. 図2は本発明の実施例のA―Aの構成概略図FIG. 2 is a schematic configuration diagram of AA according to an embodiment of the present invention. 図3は本発明の実施例のB―Bの構成概略図FIG. 3 is a schematic configuration diagram of BB according to an embodiment of the present invention. 図4は本発明の実施例の回字型ブロックの全断面の左側面の拡大構成概略図FIG. 4 is an enlarged schematic view of the left side surface of the entire cross section of the circular block according to the embodiment of the present invention.

付図1〜4に示した上記のインテリジェント廊下煙報知消火設備の機械構成図を参照し、壁1及び前記壁1の中に位置している環状チャンバ2を含み、前記壁1の中には装置の作動に動力を提供できる駆動機構55が設置され、前記壁1の下側には前記駆動機構55に制御されて運動する噴射機構56が設置され、前記駆動機構55と前記噴射機構56との間は昇降機構57によって伝動を実現する。 With reference to the mechanical configuration diagram of the intelligent corridor smoke alarm fire extinguishing system shown in FIGS. 1 to 4, the wall 1 and the annular chamber 2 located in the wall 1 are included, and the device is contained in the wall 1. A drive mechanism 55 capable of providing power for the operation of the drive mechanism 55 is installed, and an injection mechanism 56 controlled by the drive mechanism 55 to move is installed under the wall 1 of the drive mechanism 55 and the injection mechanism 56. During the interval, transmission is realized by the elevating mechanism 57.

前記壁1の下端面には装置を作動させ始めるか否かのを制御する煙報知器21が固定され、前記壁1の中にはまた水を蓄えることができる貯水チャンバ4が設置され、前記煙報知器21が火災の発生をセンサーした時、貯水チャンバ4の中に水を加え、同時に前記煙報知器21は集中して一方向に噴射する必要があるか否かを判断し、必要であれば前記駆動機構55を制御して作動させ、噴射機構56を一方向に回転させ、そして前記駆動機構55の出力する動力を高めることによって、前記貯水チャンバ4から流す水の圧力が増加し、それによって前記噴射機構56によって噴射する水がより遠く、水を集中して火を消すことに便利を与え、前記噴射機構56が水を分散して噴射する必要があれば、前記煙報知器21は前記駆動機構55の作動を制御しなく、前記貯水チャンバ4の中の水が直接に前記噴射機構56によって四周に分散して噴射される。 A smoke alarm 21 for controlling whether or not to start operating the device is fixed to the lower end surface of the wall 1, and a water storage chamber 4 capable of storing water is installed in the wall 1 as described above. When the smoke alarm 21 senses the occurrence of a fire, water is added to the water storage chamber 4, and at the same time, the smoke alarm 21 determines whether or not it is necessary to concentrate and inject in one direction, and it is necessary. If there is, the pressure of the water flowing from the water storage chamber 4 is increased by controlling and operating the drive mechanism 55, rotating the injection mechanism 56 in one direction, and increasing the output power of the drive mechanism 55. As a result, the water injected by the injection mechanism 56 is farther away, which makes it convenient to concentrate the water and extinguish the fire, and if the injection mechanism 56 needs to disperse and inject the water, the smoke alarm 21 Does not control the operation of the drive mechanism 55, and the water in the water storage chamber 4 is directly dispersed and injected in four circumferences by the injection mechanism 56.

前記駆動機構55はモーター13と、駆動軸18と、駆動ギヤ20と、駆動盤49と、回転盤3と、円錐形柱10と、円柱50と、二つの位置制限板53と、二つ位置制限ばね52と、回字型ブロック19と、従動軸17と、第一ベベルギヤ11と、第二ベベルギヤ14と、遠心輪16と、ベルト9と、タービン羽根車軸7と、第二ベルトプーリ6と、タービン羽根車8と、第一ベルトプーリ12と、電磁石61と水入りパイプ58とを含み、前記環状チャンバ2の中には前記駆動盤49と前記回転盤3とが設置され、前記回転盤3の上端には前記円錐形柱10が固定され、前記駆動盤49の中には前記駆動盤49を貫通した貫通チャンバ51が設置され、前記貫通チャンバ51の前後端壁の中にはいずれも前記貫通チャンバ51に連通した位置制限溝54が形成されており、前記貫通チャンバ51の中には上端が前記回転盤3を上方へプッシュする前記円柱50が設置され、前記円柱50の前後両端にはいずれも一端が前記位置制限溝54の中に位置している位置制限板53が設置され、前記位置制限溝54の中の上端壁には下端が前記位置制限板53と連結された前記位置制限ばね52が設置され、前記環状チャンバ2の左端壁の中には前記環状チャンバ2に連通した駆動チャンバ15が設置され、前記駆動チャンバ15の上端壁には前記モーター13が設置され、前記モーター13の下端には前記駆動軸18が動力が伝達できるように連結され、前記駆動軸18には前記第一ベベルギヤ11と前記第一ベルトプーリ12とが固定され、前記駆動軸18にはまた前記駆動盤49の左端と噛み合っている前記駆動ギヤ20がスライドできるように連結され、前記駆動チャンバ15の中には回字型ブロック19が設置され、前記回字型ブロック19の下側にはまた前記電磁石61が設置され、前記駆動チャンバ15の左側壁には前記回字型ブロック19の中心を通過する前記従動軸17が回転できるように連結され、前記従動軸17には前記第一ベベルギヤ11の左端と噛み合っている前記第二ベベルギヤ14が固定され、前記従動軸17にはまた回転する時に前記回字型ブロック19を上方へプッシュする前記遠心輪16が固定され、前記駆動ギヤ49の左端が前記回字型ブロック19の中心を貫通しており、前記貯水チャンバ4の上端壁の中には従動チャンバ5が設置され、前記従動チャンバ5の上端壁には下端が前記貯水チャンバ4の中に位置している前記タービン羽根車軸7が回転できるように連結され、前記タービン羽根車軸7の下端には前記タービン羽根車8が固定され、且つ前記タービン羽根車軸7の上端には前記第二ベルトプーリ6が固定され、前記第一ベルトプーリ12と前記第二ベルトプーリ6との間が前記ベルト9によって連結され、また前記円錐形柱10の下端が前記ベルト9の中心に位置している。 The drive mechanism 55 includes a motor 13, a drive shaft 18, a drive gear 20, a drive plate 49, a rotary plate 3, a conical column 10, a cylinder 50, two position limiting plates 53, and two positions. The limiting spring 52, the circular block 19, the driven shaft 17, the first bevel gear 11, the second bevel gear 14, the centrifugal wheel 16, the belt 9, the turbine impeller shaft 7, and the second belt pulley 6. A turbine impeller 8, a first belt pulley 12, an electric magnet 61, and a water-filled pipe 58 are included, and a drive plate 49 and a rotating plate 3 are installed in the annular chamber 2, and the rotating plate is installed. The conical column 10 is fixed to the upper end of 3, a penetration chamber 51 penetrating the drive board 49 is installed in the drive board 49, and all of them are inside the front and rear end walls of the through chamber 51. A position limiting groove 54 communicating with the through chamber 51 is formed, and the cylinder 50 whose upper end pushes the rotary disk 3 upward is installed in the through chamber 51, and the cylinder 50 is installed at both front and rear ends of the cylinder 50. In each case, a position limiting plate 53 whose one end is located in the position limiting groove 54 is installed, and the lower end of the position limiting plate 53 is connected to the position limiting plate 53 on the upper end wall in the position limiting groove 54. A limiting spring 52 is installed, a drive chamber 15 communicating with the annular chamber 2 is installed in the left end wall of the annular chamber 2, the motor 13 is installed on the upper end wall of the drive chamber 15, and the motor is installed. The drive shaft 18 is connected to the lower end of the drive shaft 18 so that power can be transmitted, the first bevel gear 11 and the first belt pulley 12 are fixed to the drive shaft 18, and the drive shaft 18 is also described. The drive gear 20 that meshes with the left end of the drive panel 49 is connected so as to be slidable, a circular block 19 is installed in the drive chamber 15, and a circular block 19 is installed below the circular block 19. The electromagnet 61 is installed, and the driven shaft 17 passing through the center of the circular block 19 is connected to the left wall of the drive chamber 15 so as to be rotatable, and the driven shaft 17 is connected to the first bevel gear 11. The second bevel gear 14 that meshes with the left end of the drive gear 49 is fixed, and the centrifugal wheel 16 that pushes the circular block 19 upward when rotating is fixed to the driven shaft 17, and the left end of the drive gear 49 is fixed. Penetrates the center of the circular block 19, a driven chamber 5 is installed in the upper end wall of the water storage chamber 4, and the lower end is the upper end wall of the driven chamber 5. The turbine impeller shaft 7 located in the water storage chamber 4 is connected so as to be rotatable, the turbine impeller 8 is fixed to the lower end of the turbine impeller shaft 7, and the turbine impeller shaft 7 is fixed to the upper end of the turbine impeller shaft 7. The second belt pulley 6 is fixed, the first belt pulley 12 and the second belt pulley 6 are connected by the belt 9, and the lower end of the conical column 10 is at the center of the belt 9. positioned.

前記噴射機構56はメイン流れ道59と、四つの分流道30と、二つの伸縮ばね45と、環状板43と、四つのLロッド41と、環状ブロック40と、四つの昇降ブロック42と、四つの切断板37と、四つの圧縮ばね39と、二本のロープ36と、二つの切断ブロック34と、二つの従動ばね35と、噴射ブロック29とを含み、前記壁1の下側には前記噴射ブロック29が設置され、前記噴射ブロック29の中には前記噴射ブロック29を貫通した前記メイン流れ道59が形成されており、前記噴射ブロック29の中にはまた四つの外部空間と前記メイン流れ道59とを連通した前記分流道30が設置され、前記噴射ブロック29の中には前記メイン流れ道59を中心に設置された円環チャンバ31が設置され、前記円環チャンバ31の内壁の中にはまた前記円環チャンバ31に連通した環状溝44が形成されており、前記環状溝44の中には前記環状板43及び二つの前記環状板43を復帰させることができる前記伸縮ばね45が設置され、前記円環チャンバ31の中には四つの前記昇降ブロック42及び一つの前記環状ブロック40が設置され、前記環状板43の下端には四つの一端が前記円環チャンバ31の中に位置しており、且つ前記昇降ブロック42と前記環状ブロック4とに挟まれた前記Lロッド41が固定され、前記環状ブロック40の下端には下端が前記円環チャンバ31の下端壁と連結された四つの前記圧縮ばね39が固定され、前記円環チャンバ31の下端壁には四つの前記分流道30を貫通した昇降溝32が形成されており、前記昇降溝32の中には前記分流道30を切断でき、且つ上端が前記環状ブロック40と連結された前記切断板37が設置され、前記切断板37の中には前記切断板37を貫通し、且つ前記分流道30に連通した貫通穴38が設置され、前記噴射ブロック29の中にはまた前記メイン流れ道59を切断できる移動チャンバ33が設置され、前記移動チャンバ33の中には二つの前記メイン流れ道59を切断できる前記切断ブロック34が設置され、前記切断ブロック34と前記移動チャンバ33の端壁との間が前記従動ばね35によって連結され、左右両側の前記切断板37の下端にはいずれもロープ36が固定され、前記ロープ36の下端が前記移動チャンバ33の端壁を貫通し、且つ前記切断ブロック34と連結されている。 The injection mechanism 56 includes a main flow path 59, four diversion paths 30, two telescopic springs 45, an annular plate 43, four L rods 41, an annular block 40, four elevating blocks 42, and four. It includes one cutting plate 37, four compression springs 39, two ropes 36, two cutting blocks 34, two driven springs 35, and an injection block 29, and the lower side of the wall 1 is the said. The injection block 29 is installed, the main flow path 59 penetrating the injection block 29 is formed in the injection block 29, and four external spaces and the main flow are also formed in the injection block 29. The diversion path 30 communicating with the path 59 is installed, and an annular chamber 31 installed around the main flow path 59 is installed in the injection block 29, and inside the inner wall of the annular chamber 31. Also, an annular groove 44 communicating with the annular chamber 31 is formed in the annular groove 44, and the annular plate 43 and the expansion spring 45 capable of returning the two annular plates 43 are contained in the annular groove 44. Four of the elevating blocks 42 and one of the annular blocks 40 are installed in the annular chamber 31, and four ends are located in the annular chamber 31 at the lower end of the annular plate 43. The L rod 41 sandwiched between the elevating block 42 and the annular block 4 is fixed, and the lower end of the annular block 40 is connected to the lower end wall of the annular chamber 31. The compression spring 39 is fixed, and an elevating groove 32 penetrating the four diversion paths 30 is formed on the lower end wall of the annular chamber 31, and the diversion path 30 is provided in the elevating groove 32. The cutting plate 37 that can be cut and whose upper end is connected to the annular block 40 is installed, and a through hole 38 that penetrates the cutting plate 37 and communicates with the diversion path 30 is provided in the cutting plate 37. A moving chamber 33 capable of cutting the main flow path 59 is also installed in the injection block 29, and the cutting block 34 capable of cutting the two main flow paths 59 is installed in the moving chamber 33. Installed, the cutting block 34 and the end wall of the moving chamber 33 are connected by the driven spring 35, and ropes 36 are fixed to the lower ends of the cutting plates 37 on both the left and right sides, and the rope 36 The lower end penetrates the end wall of the moving chamber 33 and is connected to the cutting block 34.

前記昇降機構57は四つの昇降板48と、四本の昇降ロッド46と、八つの昇降ばね47と、四つの円球27と、四つの固定ブロック22と、四つの連結ばね24と、四つの固定ロッド26と、送水ホース25とを含み、前記環状チャンバ2の下端壁の中には四つの上方に開口した昇降チャンバ60が設置され、前記昇降チャンバ60の中には前記昇降板48及び二つの前記昇降板48を支持する前記昇降ばね47が設置され、前記噴射ブロック29の上端には上方に開口した四つの円溝28が形成されており、前記円溝28の中には回転できるが前記円溝28から離れることができない前記円球27が設置され、前記昇降板48の下端には下端が前記昇降チャンバ60の下端壁と前記円溝28の上端壁とを貫通し、且つ前記円球27と連結された前記昇降ロッド46が固定され、前記貯水チャンバ4の下端壁には下端が外部空間の中に位置している前記送水ホース25が設置され、前記送水ホース25の下端が前記噴射ブロック29と固定的に連結され、且つ前記送水ホース25が前記メイン流れ道59に連通しており、前記壁1の下端壁には四つの前記固定ブロック22が固定され、前記固定ブロック22の中には下方に開口したばね溝23が形成されており、前記ばね溝23の上端壁には前記連結ばね24が固定され、前記連結ばね24の下端には下端が前記円環チャンバ31の上端壁を貫通し、且つ前記昇降ブロック42と連結された前記固定ロッド26が固定されている。 The elevating mechanism 57 includes four elevating plates 48, four elevating rods 46, eight elevating springs 47, four spheres 27, four fixing blocks 22, four connecting springs 24, and four. Including the fixed rod 26 and the water supply hose 25, four elevating chambers 60 opened upward are installed in the lower end wall of the annular chamber 2, and the elevating plates 48 and two are installed in the elevating chamber 60. The elevating spring 47 that supports the elevating plate 48 is installed, and four circular grooves 28 that are opened upward are formed at the upper end of the injection block 29, and the circular grooves 28 can be rotated. The sphere 27 that cannot be separated from the circular groove 28 is installed, and the lower end of the elevating plate 48 penetrates the lower end wall of the elevating chamber 60 and the upper end wall of the circular groove 28, and the circle. The elevating rod 46 connected to the ball 27 is fixed, the water supply hose 25 whose lower end is located in the external space is installed on the lower end wall of the water storage chamber 4, and the lower end of the water supply hose 25 is said. The water supply hose 25 is fixedly connected to the injection block 29 and communicates with the main flow path 59, and four fixed blocks 22 are fixed to the lower end wall of the wall 1 to form the fixed block 22. A spring groove 23 that opens downward is formed therein, the connecting spring 24 is fixed to the upper end wall of the spring groove 23, and the lower end is the upper end of the annular chamber 31 at the lower end of the connecting spring 24. The fixing rod 26 that penetrates the wall and is connected to the elevating block 42 is fixed.

装置全体の機械的作動の順序は: The order of mechanical operation of the entire device is:

1、煙報知器21が作動して噴射機構56に水を分散して噴射させ又は水を集中して噴射させることを判断し、分散して噴射すると、水入りパイプ58が貯水チャンバ4の中へ水を送り、送水ホース25を通じてメイン流れ道59の中へ水を送り、移動ブロック34がメイン流れ道59の下端を切断し、それによって水が分流道30から噴射される。 1. It is determined that the smoke alarm 21 operates to disperse and inject water into the injection mechanism 56 or concentrate and inject water, and when the water is dispersed and injected, the water-filled pipe 58 is inside the water storage chamber 4. Water is sent into the main flow path 59 through the water supply hose 25, and the moving block 34 cuts the lower end of the main flow path 59, whereby water is ejected from the diversion path 30.

2、噴射機構56に水を集中して噴射する時、モーター13が作動して駆動軸を回転させ、それによって駆動ギヤ20を回転させ、それによって駆動盤49を回転させ、貫通チャンバ51が駆動盤49とともに昇降チャンバ60の上側に位置するまで回転した時、位置制限ばね52が位置制限板53と円柱50とを下降連動させ、それによって昇降板48を下降させ、昇降ばね47が下降し、一つの昇降板48の下降は昇降ロッド46を下降させ、それによって噴射ブロック29の一端を下降させ、それによって噴射ブロック29を傾斜させ、それによってメイン流れ道59の下端の出口を傾斜させる。 2. When water is concentrated and injected into the injection mechanism 56, the motor 13 operates to rotate the drive shaft, thereby rotating the drive gear 20, thereby rotating the drive panel 49, and driving the penetration chamber 51. When rotated together with the board 49 until it is located above the elevating chamber 60, the position limiting spring 52 lowers and interlocks the position limiting plate 53 and the cylinder 50, thereby lowering the elevating plate 48 and lowering the elevating spring 47. The lowering of one elevating plate 48 lowers the elevating rod 46, thereby lowering one end of the injection block 29, thereby inclining the injection block 29, thereby inclining the outlet at the lower end of the main flow path 59.

3、噴射ブロック29の傾斜方向を決めた後、電磁石61を作動させ、回字型ブロック20を上方へ運動させ、それによって駆動ギヤ20を上方へ運動させ、且つ駆動盤49との噛合から離脱させ、この時にモーター13が出力を増やし、それによって駆動軸18がより速く回転し、それによって第一ベベルギヤ11と、第二ベベルギヤ14と、従動軸17と、遠心輪16とを快速回転させ、それによって遠心輪16が中心から遠ざかり、且つ遠心輪16の上端が回字型ブロック19をプッシュし、この時に電磁石61は作動しなくなる。 3. After determining the inclination direction of the injection block 29, the electromagnet 61 is operated to move the circular block 20 upward, thereby moving the drive gear 20 upward and disengaging from the engagement with the drive panel 49. At this time, the motor 13 increases the output, whereby the drive shaft 18 rotates faster, whereby the first bevel gear 11, the second bevel gear 14, the driven shaft 17, and the centrifugal wheel 16 are rotated at high speed. As a result, the centrifugal ring 16 moves away from the center, and the upper end of the centrifugal ring 16 pushes the circular block 19, and at this time, the electromagnet 61 does not operate.

4、円柱50の下降によって、回転盤3が下降し、それによって円錐形柱10が下降し、それによって円錐形柱10の上端がベルト9を引っ張り、それによって第一ベルトプーリ12と第二ベルトプーリ6との間の伝動を実現し、それによって駆動軸18の動力をタービン羽根車軸7に伝達し、それによってタービン羽根車8を回転させ、それによって貯水チャンバ4の中の水を排出する時の圧力を増やす。 4. As the cylinder 50 descends, the turntable 3 descends, thereby lowering the conical column 10, whereby the upper end of the conical column 10 pulls the belt 9, thereby pulling the first belt pulley 12 and the second belt. When transmitting power to and from the pulley 6 is thereby transmitting the power of the drive shaft 18 to the turbine impeller shaft 7 thereby rotating the turbine impeller 8 and thereby draining the water in the water storage chamber 4. Increase the pressure of.

5、噴射ブロック29の傾斜によって、三所の昇降ブロック42と環状ブロック40との間の距離が増加され、また、この三所のLロッド41は昇降ブロック42と環状ブロック40とに挟まなくなり、それによって四つの圧縮ばねと二つの伸縮ばね45とが復帰し、それによって一つの連結ばね24が圧縮され、それによってLロッド41が上方へ運動して再び昇降ブロック42と接触し、環状ブロック40が上方へ運動して切断板37を上方へ運動連動させて分流道30を切断し、切断板37が上方へ運動してロープ36の伝動によって切断ブロック37の一端をメイン流れ道59から離れさせ、加圧された水は送水ホース25とメイン流れ道59とを通過した後噴き出される。 5. Due to the inclination of the injection block 29, the distance between the elevating block 42 and the annular block 40 at the three locations is increased, and the L rods 41 at the three locations are no longer sandwiched between the elevating block 42 and the annular block 40. As a result, the four compression springs and the two telescopic springs 45 are restored, whereby one connecting spring 24 is compressed, whereby the L rod 41 moves upward and comes into contact with the elevating block 42 again, and the annular block 40 Moves upward to cut the diversion path 30 by interlocking the cutting plate 37 with the upward movement, and the cutting plate 37 moves upward to separate one end of the cutting block 37 from the main flow path 59 by the transmission of the rope 36. , The pressurized water is ejected after passing through the water supply hose 25 and the main flow path 59.

6、装置を復帰させる時、モーター13は作動を停止し、遠心輪16が回転しなくなり、且つ復帰し、それによって回字型ブロック19と駆動ギヤ20とを下降させ、また駆動ギヤ20と駆動盤49とが再び噛み合い、この時にモーター13が回転して駆動軸18と駆動ギヤ20とを回転連動させ、それによって駆動盤49を回転連動させ、それによって円柱50が昇降チャンバ60から離れ、それによって位置制限ばね52が圧縮され、また円柱50が再び上方へ突き出て回転盤3と円錐形柱10とを上方へプッシュし、それによってベルト9が再び緩められ、円柱50の離れによって昇降板48が復帰し、それによって四本の昇降ロッド46が再び同じ高さに位置し、噴射ブロック29が復帰し、それによって昇降ブロック42が再びLロッド41と環状ブロック40とを下方へ推し、それによって貫通穴38が再び分流道30に連通し、装置が復帰する。 6. When returning the device, the motor 13 stops operating, the centrifugal wheel 16 stops rotating and returns, whereby the circular block 19 and the drive gear 20 are lowered, and the drive gear 20 and the drive gear 20 are driven. The board 49 meshes again, at which time the motor 13 rotates to rotate and interlock the drive shaft 18 and the drive gear 20, thereby causing the drive board 49 to rotate and interlock, thereby separating the cylinder 50 from the elevating chamber 60. The position limiting spring 52 is compressed by the cylinder 50, and the cylinder 50 protrudes upward again to push the rotating disk 3 and the conical column 10 upward, whereby the belt 9 is loosened again, and the elevating plate 48 is separated by the separation of the cylinder 50. Returned so that the four elevating rods 46 were again positioned at the same height and the injection block 29 returned so that the elevating block 42 again pushed the L rod 41 and the annular block 40 downwards. The through hole 38 communicates with the diversion channel 30 again, and the device returns.

上記の実施例は本発明の技術的構想と特徴を説明するだけであり、その目的は当業者に本発明内容を了解させてさらに実施させるのであり、本発明の保護範囲を制限することはできない。本発明の精神の実質に基づいて行われたすべての等価的な変化又は修飾は、本発明の保護範囲の中に含むべきである。 The above examples merely explain the technical concept and features of the present invention, the purpose of which is to allow a person skilled in the art to understand the contents of the present invention and further implement the invention, and the scope of protection of the present invention cannot be limited. .. All equivalent changes or modifications made on the basis of the spiritual substance of the invention should be included within the scope of protection of the invention.

Claims (8)

正面視で、壁及び前記壁の中に位置している環状チャンバを含み、前記壁の中には装置の作動に動力を提供できる駆動機構が設置され、前記壁の下側には前記駆動機構に制御されて運動する噴射機構が設置され、前記駆動機構と前記噴射機構との間は昇降機構によって伝動を実現し、前記壁の下端面には装置を作動させ始めるか否かのを制御する煙報知器が固定され、前記壁の中にはまた水を蓄えることができる貯水チャンバが設置され、前記煙報知器が火災の発生をセンサーした時、貯水チャンバの中に水を加え、同時に前記煙報知器は集中して一方向に噴射する必要があるか否かを判断し、必要であれば前記駆動機構を制御して作動させ、噴射機構を一方向に回転させ、そして前記駆動機構の出力する動力を高めることによって、前記貯水チャンバから流す水の圧力が増加し、それによって前記噴射機構によって噴射する水がより遠く、水を集中して火を消すことに便利を与え、前記噴射機構が水を分散して噴射する必要があれば、前記煙報知器は前記駆動機構の作動を制御しなく、前記貯水チャンバの中の水が直接に前記噴射機構によって四周に分散して噴射され、前記噴射機構はメイン流れ道と、二つの伸縮ばねと、環状板と、四つのLロッドと、環状ブロックと、四つの昇降ブロックと、噴射ブロックとを含み、前記壁の下側には前記噴射ブロックが設置され、前記噴射ブロックの中には前記噴射ブロックを貫通した前記メイン流れ道が形成されており、前記噴射ブロックの中には前記メイン流れ道を中心に設置された円環チャンバが設置され、前記円環チャンバの内壁の中にはまた前記円環チャンバに連通した環状溝が形成されており、前記環状溝の中には前記環状板及び二つの前記環状板を復帰させることができる前記伸縮ばねが設置され、前記円環チャンバの中には四つの前記昇降ブロック及び一つの前記環状ブロックが設置され、前記環状板の下端には四つの一端が前記円環チャンバの中に位置しており、且つ前記昇降ブロックと前記環状ブロックとに挟まれた前記Lロッドが固定されていることを特徴とするインテリジェント廊下煙報知消火設備。 In front view, it includes a wall and an annular chamber located within the wall, in which a drive mechanism capable of providing power to operate the device is installed, and below the wall the drive mechanism. An injection mechanism that is controlled and moves is installed, transmission is realized between the drive mechanism and the injection mechanism by an elevating mechanism, and whether or not to start operating the device is controlled on the lower end surface of the wall. A smoke alarm is fixed, and a water storage chamber capable of storing water is installed in the wall. When the smoke alarm detects the occurrence of a fire, water is added to the water storage chamber, and at the same time, the said The smoke alarm determines if it is necessary to concentrate and inject in one direction, and if necessary, control and operate the drive mechanism, rotate the injection mechanism in one direction, and then the drive mechanism. By increasing the output power, the pressure of the water flowing from the water storage chamber is increased, whereby the water injected by the injection mechanism is farther away, which makes it convenient to concentrate the water and extinguish the fire, and the injection mechanism. If it is necessary to disperse and inject water, the smoke alarm does not control the operation of the drive mechanism, and the water in the water storage chamber is directly dispersed and injected in four circumferences by the injection mechanism. The injection mechanism includes a main flow path, two telescopic springs, an annular plate, four L rods, an annular block, four elevating blocks, and an injection block, and the injection mechanism is on the lower side of the wall. A block is installed, the main flow path penetrating the injection block is formed in the injection block, and an annular chamber installed around the main flow path is installed in the injection block. An annular groove communicating with the annular chamber is also formed in the inner wall of the annular chamber, and the annular plate and the two annular plates can be restored in the annular groove. The telescopic spring is installed, four elevating blocks and one annular block are installed in the annular chamber, and four ends are located in the annular chamber at the lower end of the annular plate. An intelligent corridor smoke notification fire extinguishing facility, characterized in that the L rod sandwiched between the elevating block and the annular block is fixed. 前記駆動機構はモーターと、駆動軸と、駆動ギヤと、駆動盤と、回転盤と、円錐形柱と、円柱と、二つの位置制限板と、二つ位置制限ばねと、回字型ブロックと、従動軸と、第一ベベルギヤと、第二ベベルギヤと、遠心輪と、ベルトと、タービン羽根車軸と、第二ベルトプーリと、タービン羽根車と、第一ベルトプーリと、電磁石と水入りパイプとを含み、前記環状チャンバの中には前記駆動盤と前記回転盤とが設置され、前記回転盤の上端には前記円錐形柱が固定され、前記駆動盤の中には前記駆動盤を貫通した貫通チャンバが設置され、前記貫通チャンバの前後端壁の中にはいずれも前記貫通チャンバに連通した位置制限溝が形成されており、前記貫通チャンバの中には上端が前記回転盤を上方へプッシュする前記円柱が設置され、前記円柱の前後両端にはいずれも一端が前記位置制限溝の中に位置している位置制限板が設置され、前記位置制限溝の中の上端壁には下端が前記位置制限板と連結された前記位置制限ばねが設置され、前記環状チャンバの左端壁の中には前記環状チャンバに連通した駆動チャンバが設置され、前記駆動チャンバの上端壁には前記モーターが設置され、前記モーターの下端には前記駆動軸が動力が伝達できるように連結され、前記駆動軸には前記第一ベベルギヤと前記第一ベルトプーリとが固定され、前記駆動軸にはまた前記駆動盤の左端と噛み合っている前記駆動ギヤがスライドできるように連結され、前記駆動チャンバの中には回字型ブロックが設置され、前記回字型ブロックの下側にはまた前記電磁石が設置され、前記駆動チャンバの左側壁には前記回字型ブロックの中心を通過する前記従動軸が回転できるように連結され、前記従動軸には前記第一ベベルギヤの左端と噛み合っている前記第二ベベルギヤが固定され、前記従動軸にはまた回転する時に前記回字型ブロックを上方へプッシュする前記遠心輪が固定され、前記駆動ギヤの左端が前記回字型ブロックの中心を貫通しており、前記貯水チャンバの上端壁の中には従動チャンバが設置され、前記従動チャンバの上端壁には下端が前記貯水チャンバの中に位置している前記タービン羽根車軸が回転できるように連結され、前記タービン羽根車軸の下端には前記タービン羽根車が固定され、且つ前記タービン羽根車軸の上端には前記第二ベルトプーリが固定され、前記第一ベルトプーリと前記第二ベルトプーリとの間が前記ベルトによって連結され、また前記円錐形柱の下端が前記ベルトの中心に位置していることを特徴とする請求項1に記載のインテリジェント廊下煙報知消火設備。 The drive mechanism includes a motor, a drive shaft, a drive gear, a drive plate, a rotary plate, a conical column, a cylinder, two position limiting plates, two position limiting springs, and a circular block. , Driven shaft, 1st bevel gear, 2nd bevel gear, centrifugal wheel, belt, turbine impeller axle, 2nd belt pulley, turbine impeller, 1st belt pulley, electromagnet and water-filled pipe The drive plate and the rotary plate are installed in the annular chamber, the conical pillar is fixed to the upper end of the rotary plate, and the drive plate is penetrated into the drive plate. A through chamber is installed, and a position limiting groove communicating with the through chamber is formed in each of the front and rear end walls of the through chamber, and the upper end pushes the turntable upward in the through chamber. A position limiting plate whose one end is located in the position limiting groove is installed at both front and rear ends of the column, and the lower end is the upper end wall in the position limiting groove. The position limiting spring connected to the position limiting plate is installed, a drive chamber communicating with the annular chamber is installed in the left end wall of the annular chamber, and the motor is installed on the upper end wall of the drive chamber. The drive shaft is connected to the lower end of the motor so that power can be transmitted, the first bevel gear and the first belt pulley are fixed to the drive shaft, and the drive shaft is also connected to the drive panel. The drive gear that meshes with the left end is connected so as to slide, a circular block is installed in the drive chamber, and an electric magnet is also installed under the circular block to drive the drive. The driven shaft passing through the center of the circular block is connected to the left side wall of the chamber so as to be rotatable, and the second bevel gear meshing with the left end of the first bevel gear is fixed to the driven shaft. The centrifugal ring that pushes the circular block upward when rotating is fixed to the driven shaft, the left end of the drive gear penetrates the center of the circular block, and the upper end of the water storage chamber. A driven chamber is installed in the wall, and the upper end wall of the driven chamber is connected so that the turbine impeller axle whose lower end is located in the water storage chamber can rotate, and is connected to the lower end of the turbine impeller axle. The turbine impeller is fixed, the second belt pulley is fixed to the upper end of the turbine impeller axle, and the belt is between the first belt pulley and the second belt pulley. The intelligent corridor smoke alarm fire extinguishing system according to claim 1, wherein the lower end of the conical pillar is located at the center of the belt. 前記噴射機構はまた四つの分流道と、四枚の切断板と、四つの圧縮ばねと、二本のロープと、二つの切断ブロックと、二つの従動ばねとを含み、前記噴射ブロックの中には前記噴射ブロックを貫通した前記メイン流れ道が形成されており、前記噴射ブロックの中にはまた四つの外部空間と前記メイン流れ道とを連通した前記分流道が設置され、前記環状ブロックの下端には下端が前記円環チャンバの下端壁と連結された四つの前記圧縮ばねが固定され、前記円環チャンバの下端壁には四つの前記分流道を貫通した昇降溝が形成されており、前記昇降溝の中には前記分流道を切断でき、且つ上端が前記環状ブロックと連結された前記切断板が設置され、前記切断板の中には前記切断板を貫通し、且つ前記分流道に連通した貫通穴が設置され、前記噴射ブロックの中にはまた前記メイン流れ道を切断できる移動チャンバが設置され、前記移動チャンバの中には二つの前記メイン流れ道を切断できる前記切断ブロックが設置され、前記切断ブロックと前記移動チャンバの端壁との間が前記従動ばねによって連結され、左右両側の前記切断板の下端にはいずれもロープが固定され、前記ロープの下端が前記移動チャンバの端壁を貫通し、且つ前記切断ブロックと連結されていることを特徴とする請求項1に記載のインテリジェント廊下煙報知消火設備。 The injection mechanism also includes four diversion paths, four cutting plates, four compression springs, two ropes, two cutting blocks and two driven springs in the injection block. Is formed with the main flow path penetrating the injection block, and the diversion path connecting the four external spaces and the main flow path is also installed in the injection block, and the lower end of the annular block. The four compression springs whose lower ends are connected to the lower end walls of the annular chamber are fixed to the lower end wall, and the lower end walls of the annular chamber are formed with four elevating grooves penetrating the diversion paths. The cutting plate capable of cutting the diversion path and having the upper end connected to the annular block is installed in the hoistway groove, and the cutting plate penetrates the cutting plate and communicates with the diversion path. The through hole is installed, a moving chamber capable of cutting the main flow path is also installed in the injection block, and the cutting block capable of cutting the two main flow paths is installed in the moving chamber. , The cutting block and the end wall of the moving chamber are connected by the driven spring, ropes are fixed to the lower ends of the cutting plates on both the left and right sides, and the lower end of the rope is the end wall of the moving chamber. The intelligent corridor smoke alarm fire extinguishing equipment according to claim 1, wherein the intelligent corridor smoke alarm fire extinguishing apparatus is characterized in that it penetrates and is connected to the cutting block. 前記昇降機構は四つの昇降板と、四本の昇降ロッドと、八つの昇降ばねと、四つの円球と、四つの固定ブロックと、四つの連結ばねと、四つの固定ロッドと、送水ホースとを含み、前記環状チャンバの下端壁の中には四つの上方に開口した昇降チャンバが設置され、前記昇降チャンバの中には前記昇降板及び二つの前記昇降板を支持する前記昇降ばねが設置され、前記噴射ブロックの上端には上方に開口した四つの円溝が形成されており、前記円溝の中には回転できるが前記円溝から離れることができない前記円球が設置され、前記昇降板の下端には下端が前記昇降チャンバの下端壁と前記円溝の上端壁とを貫通し、且つ前記円球と連結された前記昇降ロッドが固定され、前記貯水チャンバの下端壁には下端が外部空間の中に位置している前記送水ホースが設置され、前記送水ホースの下端が前記噴射ブロックと固定的に連結され、且つ前記送水ホースが前記メイン流れ道に連通しており、前記壁の下端壁には四つの前記固定ブロックが固定され、前記固定ブロックの中には下方に開口したばね溝が形成されており、前記ばね溝の上端壁には前記連結ばねが固定され、前記連結ばねの下端には下端が前記円環チャンバの上端壁を貫通し、且つ前記昇降ブロックと連結された前記固定ロッドが固定されていることを特徴とする請求項1に記載のインテリジェント廊下煙報知消火設備。 The elevating mechanism includes four elevating plates, four elevating rods, eight elevating springs, four spheres, four fixing blocks, four connecting springs, four fixing rods, and a water supply hose. In the lower end wall of the annular chamber, four elevating chambers open upward are installed, and in the elevating chamber, the elevating plate and the elevating spring supporting the two elevating plates are installed. , Four circular grooves opened upward are formed at the upper end of the injection block, and the circular sphere that can rotate but cannot be separated from the circular groove is installed in the circular groove, and the elevating plate is installed. The lower end of the elevating chamber penetrates the lower end wall of the elevating chamber and the upper end wall of the circular groove, and the elevating rod connected to the sphere is fixed to the lower end of the water storage chamber. The water supply hose located in the space is installed, the lower end of the water supply hose is fixedly connected to the injection block, and the water supply hose communicates with the main flow path, and the lower end of the wall. Four of the fixing blocks are fixed to the wall, a spring groove opened downward is formed in the fixing block, and the connecting spring is fixed to the upper end wall of the spring groove to form the connecting spring. The intelligent corridor smoke notification fire extinguishing apparatus according to claim 1, wherein the lower end penetrates the upper end wall of the annular chamber and the fixed rod connected to the elevating block is fixed to the lower end. 前記駆動軸と前記駆動ギヤとの間の摩擦力が大きいため、前記駆動軸が回転する時に前記駆動ギヤを回転連動させることができ、また前記電磁石が作動する時に前記駆動ギヤは前記駆動軸でスライドすることができることを特徴とする請求項2に記載のインテリジェント廊下煙報知消火設備。 Since the frictional force between the drive shaft and the drive gear is large, the drive gear can be rotationally interlocked when the drive shaft rotates, and when the electromagnet operates, the drive gear is on the drive shaft. The intelligent corridor smoke notification fire extinguishing device according to claim 2, wherein the intelligent corridor smoke notification fire extinguishing equipment can be slid. 前記遠心輪は回転して遠心運動が発生する時、前記遠心輪は前記回字型ブロックを支えることができることを特徴とする請求項2に記載のインテリジェント廊下煙報知消火設備。 The intelligent corridor smoke notification fire extinguishing system according to claim 2, wherein the centrifugal ring can support the circular block when the centrifugal ring rotates and centrifugal motion is generated. 前記四つの連結ばねの弾力の総量は二つの伸縮ばねと四つの伸縮ばねの弾力との総量より大きく、前記一つの連結ばねの弾力は二つの伸縮ばねと四つの圧縮ばねの弾力の総量より小さいことを特徴とする請求項3又は請求項4に記載のインテリジェント廊下煙報知消火設備。 The total elasticity of the four connecting springs is larger than the total elasticity of the two telescopic springs and the four telescopic springs, and the elasticity of the one connecting spring is smaller than the total elasticity of the two telescopic springs and the four compression springs. The intelligent corridor smoke notification fire extinguishing facility according to claim 3 or 4, wherein the intelligent corridor smoke notification fire extinguishing facility. 前記ベルトは初期状態の下で緩め状態にあり、前記円錐形柱は下降した後に前記ベルトをきつく締めることができることを特徴とする請求項2に記載のインテリジェント廊下煙報知消火設備。 The intelligent corridor smoke notification fire extinguishing system according to claim 2, wherein the belt is in a loosened state under an initial state, and the conical pillar can be tightened after the conical pillar is lowered.
JP2019127818A 2019-05-08 2019-07-09 Intelligent corridor smoke notification fire extinguishing equipment Expired - Fee Related JP6754055B1 (en)

Applications Claiming Priority (2)

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CN201910380854.X 2019-05-08
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CN113865804A (en) * 2021-10-19 2021-12-31 华夏生生药业(北京)有限公司 Batch detection device and method for production of polypropylene infusion bags
CN114038155A (en) * 2021-12-27 2022-02-11 郑龙意 House security protection system based on thing networking
CN114602102A (en) * 2022-03-20 2022-06-10 吴文武 Fire-fighting spraying device based on fire hazard dangerous case spraying
CN115035662A (en) * 2022-06-07 2022-09-09 长沙环康科技有限公司 A people's air defense one-key SOS device for basement
CN115364414A (en) * 2022-08-10 2022-11-22 江苏桐方消防科技集团股份有限公司 Rotation angle adjustable spray head for indoor fire extinguishing
CN115501525A (en) * 2022-09-27 2022-12-23 陈鹄 Fire-fighting equipment for logistics warehouse
CN115554637A (en) * 2022-09-20 2023-01-03 张旋 Intelligent fireproof alarm system for electric power instrument
CN117173853A (en) * 2023-11-02 2023-12-05 山东新顺达信息科技有限公司 Patrol and examine smog alarm device

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CN113294209A (en) * 2021-05-19 2021-08-24 徐州中安防爆电器制造有限公司 Mining ann's type smoke transducer installation device
CN113294209B (en) * 2021-05-19 2023-08-29 徐州中安防爆电器制造有限公司 Mining intrinsic safety type smoke sensor mounting device
CN113865804B (en) * 2021-10-19 2023-04-25 华夏生生药业(北京)有限公司 Batch detection device and detection method for polypropylene infusion bag production
CN113865804A (en) * 2021-10-19 2021-12-31 华夏生生药业(北京)有限公司 Batch detection device and method for production of polypropylene infusion bags
CN114038155A (en) * 2021-12-27 2022-02-11 郑龙意 House security protection system based on thing networking
CN114038155B (en) * 2021-12-27 2023-09-15 深圳市顺联智能科技有限公司 Residential security system based on Internet of things
CN114602102A (en) * 2022-03-20 2022-06-10 吴文武 Fire-fighting spraying device based on fire hazard dangerous case spraying
CN115035662A (en) * 2022-06-07 2022-09-09 长沙环康科技有限公司 A people's air defense one-key SOS device for basement
CN115364414A (en) * 2022-08-10 2022-11-22 江苏桐方消防科技集团股份有限公司 Rotation angle adjustable spray head for indoor fire extinguishing
CN115554637A (en) * 2022-09-20 2023-01-03 张旋 Intelligent fireproof alarm system for electric power instrument
CN115554637B (en) * 2022-09-20 2024-06-07 北京新航城城市运营管理有限公司 Intelligent fireproof alarm system for electric power instrument
CN115501525A (en) * 2022-09-27 2022-12-23 陈鹄 Fire-fighting equipment for logistics warehouse
CN117173853A (en) * 2023-11-02 2023-12-05 山东新顺达信息科技有限公司 Patrol and examine smog alarm device
CN117173853B (en) * 2023-11-02 2024-02-23 山东新顺达信息科技有限公司 Patrol and examine smog alarm device

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