WO2014067062A1 - Self-luminous fire-monitoring sprinkler - Google Patents

Self-luminous fire-monitoring sprinkler Download PDF

Info

Publication number
WO2014067062A1
WO2014067062A1 PCT/CN2012/083737 CN2012083737W WO2014067062A1 WO 2014067062 A1 WO2014067062 A1 WO 2014067062A1 CN 2012083737 W CN2012083737 W CN 2012083737W WO 2014067062 A1 WO2014067062 A1 WO 2014067062A1
Authority
WO
WIPO (PCT)
Prior art keywords
power generation
generation device
temperature sensing
turbine power
self
Prior art date
Application number
PCT/CN2012/083737
Other languages
French (fr)
Chinese (zh)
Inventor
胡伟
Original Assignee
Hu Wei
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hu Wei filed Critical Hu Wei
Priority to PCT/CN2012/083737 priority Critical patent/WO2014067062A1/en
Publication of WO2014067062A1 publication Critical patent/WO2014067062A1/en

Links

Classifications

    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62CFIRE-FIGHTING
    • A62C31/00Delivery of fire-extinguishing material
    • A62C31/02Nozzles specially adapted for fire-extinguishing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S9/00Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply
    • F21S9/04Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a generator
    • F21S9/046Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a generator driven by hydropower, e.g. by water powered turbines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • F21V33/0064Health, life-saving or fire-fighting equipment
    • F21V33/0076Safety or security signalisation, e.g. smoke or burglar alarms, earthquake detectors; Self-defence devices
    • 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
    • A62C37/11Releasing means, e.g. electrically released heat-sensitive

Definitions

  • the invention relates to the technical field of safety protection, in particular to the technical field related to fire protection monitoring nozzles.
  • the temperature sensing tube holder 22 for fixing the temperature sensing tube 20, the temperature sensing tube 20, the shower member 23 for sprinkling the water flowing by the fire protection, and the plug 24 for closing and opening the fire hose can be provided.
  • the working principle is that the fire monitoring nozzle is connected to the fire water pipe. In normal time, the temperature sensing tube 20 passes the plug 24 through the temperature sensing tube bracket 2 to close the fire water pipe.
  • the temperature sensing tube 20 When a fire occurs, the temperature sensing tube 20 is fired, and when it reaches the set temperature, it will automatically burst. At this time, the supporting force against the plug 24 disappears, and the plug is under the action of the water pressure in the fire hose. Pushing open, the fire water is directly sprayed on the shower member 23 disposed at a distance from the outlet thereof, so that the water of the spray fire can be sprinkled to achieve the function of extinguishing fire.
  • the object of the present invention is to provide a self-illuminating fire-monitoring nozzle which can be self-illuminated by using fire water spray and illumination when fire, fire, and fire are not required, without using an external power supply.
  • a self-illuminating fire-fighting monitoring nozzle wherein the self-illuminating fire-monitoring nozzle comprises a nozzle body 1 connected to a fire-fighting water pipe and a temperature-sensing control member 2, wherein the nozzle body 1 comprises:
  • the casing 10 is provided with a pipe joint 100 connected to the fire water pipe at the top of the casing 10, and the pipe joint 100 is provided with a water inlet 101;
  • the closing plunger 11 is disposed at the top of the casing 10 to open or close the water inlet 101 of the pipe joint;
  • the turbine power generating device 12 includes a power generating device housing 120, a power generating device water inlet 1200 provided on the housing, a generator 121, a turbine 122, a circuit board 123, an arc tube 124, and a power generating device water outlet 1201.
  • a power generating device housing 120 When the water inlet 101 is opened, the water flow entering from the water inlet 101 passes through the water inlet 1200 of the turbine power generator to operate the turbine power generator 12, and the water passing through the turbine power generator 12 flows out of the water outlet 1201 of the power generator for spraying fire protection;
  • the temperature sensing member 2 includes a temperature sensing tube that can control the closing plunger to open or close the water inlet 101.
  • the nozzle body 1 is opened or closed by the water inlet port 101 of the pipe joint head and the turbine power generating device 12 is operated or not, and the casing 10 is sequentially provided from the top of the casing to the bottom of the casing.
  • the closing plunger 11 and the turbine power generating device 12 can close the water inlet 101 when the closing plunger 11 and the turbine power generating device 12 are at the top of the casing, and can be inserted when the closing plunger 11 and the turbine power generating device 12 are at the bottom of the casing.
  • the nozzle 101 is opened; the closing plunger 11 and the turbine power generating device 12 are controlled at the top or bottom of the housing by a temperature sensing control member 2 disposed outside the bottom of the housing.
  • the temperature sensing control unit 2 includes a temperature sensing control connector 21 connectable to the nozzle body 1 and connected to the temperature sensing member connector 21 to support the fixed temperature sensor tube 20. Temperature tube bracket 22.
  • the self-illuminating fire-fighting monitoring nozzle has a shower member 23 at the bottom of the temperature-sensing tube bracket 22 for allowing the water outlet 1201 to flow out from the power generating device for spraying the fire.
  • the self-illuminating fire-fighting monitoring nozzle has a bottom card edge 102 at the bottom of the housing 10 and a mounting ring 104 integrally connected with the bottom card edge 102 through the connecting rib 103.
  • the connecting rib 103 and the mounting ring 104 and the bottom card edge 102 are connected.
  • the through hole 105 is the extension of the arc tube 124 when the turbine power generator 12 is at the bottom of the housing.
  • the temperature sensing tube connector 20 is connected to the mounting ring 104; the power generating device water outlet 1201 is sleeved in the connector ring 210 provided by the temperature sensing member connector 21, and the temperature sensing tube 20 is disposed at the temperature sensing unit.
  • the pipe holder 2 is connected between the power generating device water outlet 1201, and the closing plunger 11 is held by the turbine power generating device 12 to close the water inlet 101.
  • the self-illuminating fire-fighting monitoring nozzle has a gap between the top of the casing 10 and the closing plunger 11 to reach the water inlet 101 and the closing plunger 11 when the closing plunger 11 and the turbine power generating device 12 are at the top of the casing.
  • a sealed top seal 13 is provided.
  • the self-illuminating fire-fighting monitoring nozzle between the bottom card edge 102 of the casing 10 and the edge of the bottom of the turbine power generating device 12, is provided to seal when the closing plunger 11 and the turbine power generating device 12 are at the bottom of the casing.
  • a bottom seal 14 that seals between the turbine power plant 12 and the housing 10.
  • the self-illuminating fire-fighting monitoring nozzle after the turbine power generating device 12 is turned on, emits a flashing warning light.
  • the self-illuminating fire-fighting monitoring nozzle has an illuminating fire monitoring head provided with an audible alarm unit, and when the turbine generating device 12 is turned on, the audible alarm unit is turned on.
  • the self-illuminating fire-fighting monitoring nozzle has a temperature sensing tube 20 disposed between the temperature sensing tube bracket 22 and the water outlet 1201 of the power generating device, and is connected to the temperature sensing tube bracket 22 through one end of the temperature sensing tube 20, and is sensitive to temperature.
  • the other end of the tube 20 is realized on the outlet center piece 1202 fixed by the outlet connecting rib 1204 at the outlet end of the power generating unit water outlet 1201.
  • the technical advancement of the invention lies in that the turbine power generation structure and the current fire monitoring nozzle are designed together, the structure is simple, the use is convenient, and the external power source is not needed, and when the fire is encountered, the fire water spray and the illumination can be utilized; After that, because the darkness is not easy to escape, the rescue is insufficient.
  • FIG. 1 is a schematic structural view of a prior art fire monitoring nozzle
  • Figure 2 is a schematic perspective view of the present invention
  • Figure 3 is a partial cross-sectional structural view of the present invention.
  • FIG. 4 is a schematic perspective view of a turbine power generating device of the present invention.
  • Figure 5 is a schematic exploded view of the three-dimensional structure of the turbine power generating device of the present invention.
  • FIG. 6 is a schematic structural view of another embodiment of the present invention.
  • the self-illuminating fire-fighting monitoring nozzle is composed of two detachable independent components, and includes a nozzle body 1 and a temperature sensing control member 2 connected to the fire water pipe.
  • the nozzle body 1 includes a housing 10, a closing plunger 11, and a turbine power generating device 12.
  • the top of the casing 10 is provided with a pipe joint 100 which can be screwed with a fire hose, and the pipe joint 100 is provided with a water inlet 101.
  • the closing plunger 11 is disposed at the top of the casing 10 to open or close the water inlet 101 of the pipe joint.
  • the turbine power generating device 12 includes a power generating device casing 120, a power generating device water inlet 1200 provided on the casing, a generator 121, a turbine 122, a circuit board 123, an arc tube 124, and a power generating device water outlet 1201.
  • a power generating device casing 120 When the water inlet 101 is opened by the closing plunger 11, the water flow entering from the water inlet 101 passes through the water inlet 1200 of the turbine power generator to operate the turbine power generating device 12, and the water passing through the turbine power generating device 12 flows out from the water outlet 1201 of the power generating device. Spray fire.
  • a closed plunger 11 and a turbine power generating device 12 are sequentially disposed in the casing 10 from the top of the casing to the bottom of the casing.
  • the temperature sensing control member 2 includes a temperature sensing controller connector 21 connectable to the nozzle body 1 and a temperature sensing tube connector 22 connected to the temperature sensing controller connector 21, and can support the temperature sensing tube bracket 22 of the fixed temperature sensing tube 20, Sprinkle the showering piece 23 of the fire sprinkler.
  • the closed plunger 11 and the turbine power generating device 12 are configured in the housing 10 such that the bottom of the housing 10 is provided with a bottom card edge 102 and a mounting ring 104 integrally connected with the bottom card edge 102 via the connecting rib 103.
  • the through hole 105 between the connecting rib 103 and the mounting ring 104 and the bottom rim 102 is an protruding hole of the illuminating tube 124 when the turbine power generating device 12 is at the bottom of the housing; the temperature sensing member connector 21 can be matched with the mounting ring 104.
  • the water outlet 1201 of the power generation device is sleeved in the connector ring 210 provided by the temperature control member connector 21, and the temperature sensing tube 20 is disposed between the temperature sensing tube bracket 2 and the water outlet 1201 of the power generating device.
  • One end of the tube 20 is in contact with the temperature sensing tube holder 22, and the other end of the temperature sensing tube 20 is realized on the outlet center piece 1202 fixed by the outlet connecting rib 1204 at the outlet end of the power generating unit water outlet 1201.
  • the turbine power generating device 12 includes a power generating device housing 120, a power generating device water inlet 1200 provided on the housing, a housing water guiding port 1205 in the housing, a generator 121, and power generation provided on the generator housing.
  • the casing water conduit 1210, the turbine seat 1206, the turbine 122, the turbine seat water inlet 1207 on the turbine seat, the turbine seat cover 1208, the power generating device water outlet 1201 provided on the turbine seat cover, the circuit board 123, and the circuit board The light-emitting tube 124 and the power generating device water outlet 1201.
  • the working process is that after the water enters the power generating device housing 120 from the water inlet 1200 of the power generating device, under the guidance of the water guiding port 1205 of the power generating device, the turbine 122 is pushed by the generator shell water guiding port 1210 and the turbine seat water inlet 1207, and then the turbine 122 is rotated. The water is discharged from the power outlet 1201 of the power generator.
  • the turbine 122 drives the generator 121 to operate via a motor shaft 1211 coupled thereto.
  • the electrical output of the generator is connected to the circuit of the circuit board 123 and supplies power to the light-emitting tube 124.
  • the circuit of circuit board 123 can be designed to be a flashing warning light. This circuit can also be equipped with an audible alarm unit.
  • the self-illuminating fire monitoring nozzle is composed of an integral component, including a casing 10, a closing plunger 11, and a turbine power generating device 12; wherein the casing 10 is divided into a left cavity and a right Cavity.
  • a pipe joint 100 and a closing plunger 11 that can be screwed to the fire hose are provided in the right chamber.
  • the pipe joint 100 is provided with a water inlet 101.
  • the closing plunger 11 can be moved up and down in the right cavity to open or close the pipe joint inlet 101.
  • the temperature sensing tube 20 is disposed between the temperature sensing tube holder 22 and the closing plunger 11, and is connected to the temperature sensing tube holder 22 through one end of the temperature sensing tube 20, and the temperature sensing tube 20 is further One end is placed at the bottom end of the closing plunger 11.
  • the closing plunger 11 closes the water inlet 101.
  • the closing plunger 11 moves downward under the action of the water pressure, so that the water inlet 101 of the pipe joint is opened.
  • a turbine power generator 12 is disposed in the left cavity; a shower member 23 is disposed on the outer side of the bottom of the left cavity to allow the water to be sprayed to fire.
  • the water inlet 101 of the pipe joint When the water inlet 101 of the pipe joint is opened, the water flows through the water inlet 101 and enters the left cavity from the right cavity, and is sprayed out from the water outlet 1201 of the power generating device via the turbine power generating device 12. Under the action of the shower member 23, the fire can be sprayed. The water flows away. Through the operation of the turbine power generating device 12, the arc tube 124 is operated.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Hydrology & Water Resources (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Environmental & Geological Engineering (AREA)
  • 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)

Abstract

A self-luminous fire-monitoring sprinkler includes a sprinkler body (1) connected to a water hose and a temperature sensor controller (2), wherein the sprinkler body (1) comprises a shell (10), a plunger (11) and a turbine power generator (12). When the plunger (11) opens the water inlet (101) of the shell (10), the water flow from the water inlet (101) through the turbine power generator inlet (1200) to start the turbine power generator (12), the water flowing through the turbine power generator (12) flows out of the turbine power generator outlet (1201), and then is used to extinguish a fire; the temperature sensor controller (2) comprises a temperature sensing tube (20) which can control the plunger (11) to open or close the water inlet (101). The present invention combines the turbine power generator with the existing fire-monitoring sprinkler. The self-luminous fire-monitoring sprinkler has simple structure, is convenient to use and needs no external power supply. In the event of a fire, the self-luminous fire-monitoring sprinkler could spray water and illuminate by itself, solving the problem of difficult escaping and rescuing in darkness when the power fails.

Description

自发光消防监控喷头  Self-illuminating fire monitoring nozzle
技术领域 Technical field
本发明涉及安全防护技术领域, 特别涉及消防监控喷头相关技术领域。  The invention relates to the technical field of safety protection, in particular to the technical field related to fire protection monitoring nozzles.
背景技术 Background technique
目前全球对于建筑用火警的消防监控喷头使用非常广泛, 该消防监控喷头的 基本结构如图 1所示, 由可与消防水管连接的连接件连接头 21、 与感温控制件 连接头 21连接在一起, 可支撑固定感温管 20的感温管支架 22, 感温管 20, 可 使喷淋消防的水流撒开的花洒件 23及可使消防水管关闭及开通的堵头 24。其工 作原理为, 将该消防监控喷头连接在消防水管上, 在正常时感温管 20通过感温 管支架 2将堵头 24顶住, 使其将消防水管封闭。 当有火灾发生时, 感温管 20 在火烤下, 当达到设定温度时, 会自动爆裂, 此时顶住堵头 24的支撑力消失, 堵头在消防水管内水压的作用下被推开, 消防用水直接喷在设于其出口一段距 离的花洒件 23上, 使喷淋消防的水流撒开, 达到灭火的功能。  At present, the fire monitoring nozzles for building fire alarms are widely used in the world. The basic structure of the fire monitoring nozzles is shown in Figure 1. The connector connector 21, which can be connected to the fire hose, is connected to the temperature sensing member connector 21. Together, the temperature sensing tube holder 22 for fixing the temperature sensing tube 20, the temperature sensing tube 20, the shower member 23 for sprinkling the water flowing by the fire protection, and the plug 24 for closing and opening the fire hose can be provided. The working principle is that the fire monitoring nozzle is connected to the fire water pipe. In normal time, the temperature sensing tube 20 passes the plug 24 through the temperature sensing tube bracket 2 to close the fire water pipe. When a fire occurs, the temperature sensing tube 20 is fired, and when it reaches the set temperature, it will automatically burst. At this time, the supporting force against the plug 24 disappears, and the plug is under the action of the water pressure in the fire hose. Pushing open, the fire water is directly sprayed on the shower member 23 disposed at a distance from the outlet thereof, so that the water of the spray fire can be sprinkled to achieve the function of extinguishing fire.
众所周知在许多场合, 特别是室内, 发生火灾时, 供电***被损坏或关闭, 火灾现场照明状况很差; 使得逃生及救援收到影响。  It is well known that on many occasions, especially indoors, when a fire occurs, the power supply system is damaged or shut down, and the fire scene is in poor condition; the escape and rescue are affected.
技术内容 Technical content
本发明的目的提供一种结构简单、 使用方便, 不用外接电源, 在遇到火警喷 淋消防时, 可利用自身消防水喷淋、 照明的可自发光的消防监控喷头。  The object of the present invention is to provide a self-illuminating fire-monitoring nozzle which can be self-illuminated by using fire water spray and illumination when fire, fire, and fire are not required, without using an external power supply.
本发明的目的可以通过以下技术方案实现; 一种自发光消防监控喷头, 其 所述自发光消防监控喷头包括与消防水管连接的喷头体 1及感温控制件 2,其中 喷头体 1包括:  The object of the present invention can be achieved by the following technical solutions; a self-illuminating fire-fighting monitoring nozzle, wherein the self-illuminating fire-monitoring nozzle comprises a nozzle body 1 connected to a fire-fighting water pipe and a temperature-sensing control member 2, wherein the nozzle body 1 comprises:
壳体 10: 壳体 10顶部设有可与消防水管连接的管道连接头 100, 管道连接 头 100设有入水口 101 ; 封闭柱塞 11 : 设于壳体 10内的顶部, 可使管道连接头入水口 101开通或关 闭; The casing 10 is provided with a pipe joint 100 connected to the fire water pipe at the top of the casing 10, and the pipe joint 100 is provided with a water inlet 101; The closing plunger 11 is disposed at the top of the casing 10 to open or close the water inlet 101 of the pipe joint;
涡轮发电装置 12: 包括发电装置壳体 120、 设于壳体上的发电装置入水口 1200、发电机 121、 涡轮 122、 电路板 123、发光管 124及发电装置出水口 1201, 当封闭柱塞 11使入水口 101开通时, 由入水口 101进入的水流, 经涡轮发电装 置入水口 1200使涡轮发电装置 12工作, 经涡轮发电装置 12的水由发电装置出 水口 1201流出, 用于喷淋消防;  The turbine power generating device 12 includes a power generating device housing 120, a power generating device water inlet 1200 provided on the housing, a generator 121, a turbine 122, a circuit board 123, an arc tube 124, and a power generating device water outlet 1201. When the water inlet 101 is opened, the water flow entering from the water inlet 101 passes through the water inlet 1200 of the turbine power generator to operate the turbine power generator 12, and the water passing through the turbine power generator 12 flows out of the water outlet 1201 of the power generator for spraying fire protection;
其中感温控制件 2包括可控制封闭柱塞使入水口 101开通或关闭的感温管 The temperature sensing member 2 includes a temperature sensing tube that can control the closing plunger to open or close the water inlet 101.
20。 20.
所述自发光消防监控喷头, 其喷头体 1 中使管道连接头入水口 101开通或 关闭及使涡轮发电装置 12工作与否为, 在壳体 10内自壳体顶部到壳体底部依 次设有封闭柱塞 11及涡轮发电装置 12,当封闭柱塞 11及涡轮发电装置 12在壳 体顶部时可使入水口 101关闭, 当封闭柱塞 11及涡轮发电装置 12在壳体底部 时可使入水口 101开通; 封闭柱塞 11及涡轮发电装置 12在壳体顶部或底部是 通过设于壳体底部外侧的感温控制件 2控制。  In the self-illuminating fire-fighting monitoring nozzle, the nozzle body 1 is opened or closed by the water inlet port 101 of the pipe joint head and the turbine power generating device 12 is operated or not, and the casing 10 is sequentially provided from the top of the casing to the bottom of the casing. The closing plunger 11 and the turbine power generating device 12 can close the water inlet 101 when the closing plunger 11 and the turbine power generating device 12 are at the top of the casing, and can be inserted when the closing plunger 11 and the turbine power generating device 12 are at the bottom of the casing. The nozzle 101 is opened; the closing plunger 11 and the turbine power generating device 12 are controlled at the top or bottom of the housing by a temperature sensing control member 2 disposed outside the bottom of the housing.
所述自发光消防监控喷头, 其感温控制件 2包括可与喷头体 1连接的感温 控制件连接头 21、 与感温控制件连接头 21连接在一起, 可支撑固定感温管 20 的感温管支架 22。  The temperature sensing control unit 2 includes a temperature sensing control connector 21 connectable to the nozzle body 1 and connected to the temperature sensing member connector 21 to support the fixed temperature sensor tube 20. Temperature tube bracket 22.
所述自发光消防监控喷头, 其感温管支架 22 的底部设有使由发电装置出 水口 1201流出, 用于喷淋消防的水流撒开的花洒件 23。  The self-illuminating fire-fighting monitoring nozzle has a shower member 23 at the bottom of the temperature-sensing tube bracket 22 for allowing the water outlet 1201 to flow out from the power generating device for spraying the fire.
所述自发光消防监控喷头, 其壳体 10的底部设有底部卡边 102及与底部 卡边 102通过连接筋 103连为一体的安装环 104,连接筋 103与安装环 104及底 部卡边 102之间的通孔 105为发光管 124在涡轮发电装置 12在壳体底部时的伸 出孔; 感温控制件连接头 21可与安装环 104配合连接; 发电装置出水口 1201 套接在感温控制件连接头 21所设的连接头环 210内, 感温管 20设置在感温管 支架 2与发电装置出水口 1201之间, 并通过涡轮发电装置 12将封闭柱塞 11顶 住, 使入水口 101封闭。 The self-illuminating fire-fighting monitoring nozzle has a bottom card edge 102 at the bottom of the housing 10 and a mounting ring 104 integrally connected with the bottom card edge 102 through the connecting rib 103. The connecting rib 103 and the mounting ring 104 and the bottom card edge 102 are connected. The through hole 105 is the extension of the arc tube 124 when the turbine power generator 12 is at the bottom of the housing. The temperature sensing tube connector 20 is connected to the mounting ring 104; the power generating device water outlet 1201 is sleeved in the connector ring 210 provided by the temperature sensing member connector 21, and the temperature sensing tube 20 is disposed at the temperature sensing unit. The pipe holder 2 is connected between the power generating device water outlet 1201, and the closing plunger 11 is held by the turbine power generating device 12 to close the water inlet 101.
所述自发光消防监控喷头, 其壳体 10内顶部与封闭柱塞 11之间设有当封 闭柱塞 11及涡轮发电装置 12在壳体顶部时, 可达到入水口 101与封闭柱塞 11 之间密封的顶部密封件 13。  The self-illuminating fire-fighting monitoring nozzle has a gap between the top of the casing 10 and the closing plunger 11 to reach the water inlet 101 and the closing plunger 11 when the closing plunger 11 and the turbine power generating device 12 are at the top of the casing. A sealed top seal 13 is provided.
所述自发光消防监控喷头, 其壳体 10的底部卡边 102与涡轮发电装置 12 底部的边缘之间, 设有当封闭柱塞 11及涡轮发电装置 12在壳体底部时可起到 使密封涡轮发电装置 12与所述壳体 10之间密封的底部密封件 14。  The self-illuminating fire-fighting monitoring nozzle, between the bottom card edge 102 of the casing 10 and the edge of the bottom of the turbine power generating device 12, is provided to seal when the closing plunger 11 and the turbine power generating device 12 are at the bottom of the casing. A bottom seal 14 that seals between the turbine power plant 12 and the housing 10.
所述的自发光消防监控喷头, 其涡轮发电装置 12开启工作后, 所发光为闪 烁的警示灯光。  The self-illuminating fire-fighting monitoring nozzle, after the turbine power generating device 12 is turned on, emits a flashing warning light.
所述的自发光消防监控喷头, 其发光消防监控喷头设有声音报警单元, 当 涡轮发电装置 12开启工作后, 声音报警单元被打开。  The self-illuminating fire-fighting monitoring nozzle has an illuminating fire monitoring head provided with an audible alarm unit, and when the turbine generating device 12 is turned on, the audible alarm unit is turned on.
所述的自发光消防监控喷头, 其感温管 20设置在感温管支架 22与发电装 置出水口 1201之间时, 是通过感温管 20的一端与感温管支架 22相接触, 感温 管 20的另一端顶在发电装置出水口 1201出口端的由出口连接筋 1204固定的出 口中心件 1202上实现的。  The self-illuminating fire-fighting monitoring nozzle has a temperature sensing tube 20 disposed between the temperature sensing tube bracket 22 and the water outlet 1201 of the power generating device, and is connected to the temperature sensing tube bracket 22 through one end of the temperature sensing tube 20, and is sensitive to temperature. The other end of the tube 20 is realized on the outlet center piece 1202 fixed by the outlet connecting rib 1204 at the outlet end of the power generating unit water outlet 1201.
本发明的技术进步在于, 将涡轮发电结构与现消防监控喷头设计在一起, 结 构简单、 使用方便, 不用外接电源, 在遇到火警时, 可利用自身消防水喷淋、 照明; 解决的断电后, 由于黑暗不易逃生、 救援的不足。  The technical advancement of the invention lies in that the turbine power generation structure and the current fire monitoring nozzle are designed together, the structure is simple, the use is convenient, and the external power source is not needed, and when the fire is encountered, the fire water spray and the illumination can be utilized; After that, because the darkness is not easy to escape, the rescue is insufficient.
附图说明 DRAWINGS
图 1为现有技术消防监控喷头结构示意图; 图 2为本发明立体结构示意图; 1 is a schematic structural view of a prior art fire monitoring nozzle; Figure 2 is a schematic perspective view of the present invention;
图 3为本发明局部剖视结构示意图;  Figure 3 is a partial cross-sectional structural view of the present invention;
图 4为本发明涡轮发电装置立体结构示意图;  4 is a schematic perspective view of a turbine power generating device of the present invention;
图 5为本发明涡轮发电装置立体结构***示意图;  Figure 5 is a schematic exploded view of the three-dimensional structure of the turbine power generating device of the present invention;
图 6为本发明另一实施例结构示意图。  FIG. 6 is a schematic structural view of another embodiment of the present invention.
具体实施方式  detailed description
下面结合具体实施例, 对本发明进行进一步的详述。  The invention will now be further described in detail in conjunction with the specific embodiments.
如图 2、 图 3、 图 4所示, 为实施例 1 ; 该自发光消防监控喷头, 由可拆卸 的两个独立部件组成, 包括与消防水管连接的喷头体 1及感温控制件 2。其中喷 头体 1包括壳体 10、 封闭柱塞 11、 涡轮发电装置 12。 其中壳体 10顶部设有可 与消防水管螺紋连接的管道连接头 100, 管道连接头 100设有入水口 101。 其中 封闭柱塞 11设于壳体 10内的顶部, 可使管道连接头入水口 101开通或关闭。 其中涡轮发电装置 12, 包括发电装置壳体 120、 设于壳体上的发电装置入水口 1200、发电机 121、 涡轮 122、 电路板 123、发光管 124及发电装置出水口 1201。 当封闭柱塞 11使入水口 101开通时, 由入水口 101进入的水流, 经涡轮发电装 置入水口 1200使涡轮发电装置 12工作, 经涡轮发电装置 12的水由发电装置出 水口 1201流出, 用于喷淋消防。 在壳体 10内自壳体顶部到壳体底部依次设有 封闭柱塞 11及涡轮发电装置 12,当封闭柱塞 11及涡轮发电装置 12在壳体顶部 时可使入水口 101关闭, 当封闭柱塞 11及涡轮发电装置 12在壳体底部时可使 入水口 101开通; 封闭柱塞 11及涡轮发电装置 12在壳体顶部或底部是通过设 于壳体底部外侧的感温控制件 2控制。 其中感温控制件 2包括可与喷头体 1连 接的感温控制件连接头 21、与感温控制件连接头 21连接在一起, 可支撑固定感 温管 20的感温管支架 22, 可使喷淋消防的水流撒开的花洒件 23。 所述封闭柱塞 11、 涡轮发电装置 12在壳体 10中的结构为, 其壳体 10的底 部设有底部卡边 102及与底部卡边 102通过连接筋 103连为一体的安装环 104, 连接筋 103与安装环 104及底部卡边 102之间的通孔 105为发光管 124在涡轮 发电装置 12在壳体底部时的伸出孔; 感温控制件连接头 21可与安装环 104配 合连接;发电装置出水口 1201套接在感温控制件连接头 21所设的连接头环 210 内, 感温管 20设置在感温管支架 2与发电装置出水口 1201之间, 是通过感温 管 20的一端与感温管支架 22相接触, 感温管 20的另一端顶在发电装置出水口 1201出口端的由出口连接筋 1204固定的出口中心件 1202上实现的。 As shown in FIG. 2, FIG. 3 and FIG. 4, it is the first embodiment; the self-illuminating fire-fighting monitoring nozzle is composed of two detachable independent components, and includes a nozzle body 1 and a temperature sensing control member 2 connected to the fire water pipe. The nozzle body 1 includes a housing 10, a closing plunger 11, and a turbine power generating device 12. The top of the casing 10 is provided with a pipe joint 100 which can be screwed with a fire hose, and the pipe joint 100 is provided with a water inlet 101. The closing plunger 11 is disposed at the top of the casing 10 to open or close the water inlet 101 of the pipe joint. The turbine power generating device 12 includes a power generating device casing 120, a power generating device water inlet 1200 provided on the casing, a generator 121, a turbine 122, a circuit board 123, an arc tube 124, and a power generating device water outlet 1201. When the water inlet 101 is opened by the closing plunger 11, the water flow entering from the water inlet 101 passes through the water inlet 1200 of the turbine power generator to operate the turbine power generating device 12, and the water passing through the turbine power generating device 12 flows out from the water outlet 1201 of the power generating device. Spray fire. A closed plunger 11 and a turbine power generating device 12 are sequentially disposed in the casing 10 from the top of the casing to the bottom of the casing. When the closing plunger 11 and the turbine power generating device 12 are at the top of the casing, the water inlet 101 can be closed. When the plunger 11 and the turbine power generator 12 are at the bottom of the casing, the water inlet 101 can be opened; the closing plunger 11 and the turbine power generating device 12 are controlled at the top or bottom of the casing by the temperature sensing control unit 2 disposed outside the bottom of the casing. . The temperature sensing control member 2 includes a temperature sensing controller connector 21 connectable to the nozzle body 1 and a temperature sensing tube connector 22 connected to the temperature sensing controller connector 21, and can support the temperature sensing tube bracket 22 of the fixed temperature sensing tube 20, Sprinkle the showering piece 23 of the fire sprinkler. The closed plunger 11 and the turbine power generating device 12 are configured in the housing 10 such that the bottom of the housing 10 is provided with a bottom card edge 102 and a mounting ring 104 integrally connected with the bottom card edge 102 via the connecting rib 103. The through hole 105 between the connecting rib 103 and the mounting ring 104 and the bottom rim 102 is an protruding hole of the illuminating tube 124 when the turbine power generating device 12 is at the bottom of the housing; the temperature sensing member connector 21 can be matched with the mounting ring 104. The water outlet 1201 of the power generation device is sleeved in the connector ring 210 provided by the temperature control member connector 21, and the temperature sensing tube 20 is disposed between the temperature sensing tube bracket 2 and the water outlet 1201 of the power generating device. One end of the tube 20 is in contact with the temperature sensing tube holder 22, and the other end of the temperature sensing tube 20 is realized on the outlet center piece 1202 fixed by the outlet connecting rib 1204 at the outlet end of the power generating unit water outlet 1201.
涡轮发电装置 12如 5所示, 包括发电装置壳体 120、 设于壳体上的发电装 置入水口 1200、 壳体内的壳体导水口 1205, 发电机 121、 设于发电机壳体上的 发电机壳导水口 1210, 涡轮座 1206、涡轮 122、涡轮座上的涡轮座入水口 1207、 涡轮座盖 1208、 设于涡轮座盖上的发电装置出水口 1201, 电路板 123、 设于电 路板上的发光管 124及发电装置出水口 1201。 其工作过程为, 当水由发电装置 入水口 1200进入发电装置壳体 120后, 在壳体导水口 1205的引导下, 经发电 机壳导水口 1210、涡轮座入水口 1207推动涡轮 122旋转, 之后水由发电装置出 水口 1201排出。 涡轮 122通过与其连接的电机轴 1211带动发电机 121工作发 电。 发电机的电输出端接电路板 123的电路, 并为发光管 124供电。 电路板 123 的电路可设计成为发光为闪烁的警示灯光。 本电路也可加装声音报警单元。  As shown in FIG. 5, the turbine power generating device 12 includes a power generating device housing 120, a power generating device water inlet 1200 provided on the housing, a housing water guiding port 1205 in the housing, a generator 121, and power generation provided on the generator housing. The casing water conduit 1210, the turbine seat 1206, the turbine 122, the turbine seat water inlet 1207 on the turbine seat, the turbine seat cover 1208, the power generating device water outlet 1201 provided on the turbine seat cover, the circuit board 123, and the circuit board The light-emitting tube 124 and the power generating device water outlet 1201. The working process is that after the water enters the power generating device housing 120 from the water inlet 1200 of the power generating device, under the guidance of the water guiding port 1205 of the power generating device, the turbine 122 is pushed by the generator shell water guiding port 1210 and the turbine seat water inlet 1207, and then the turbine 122 is rotated. The water is discharged from the power outlet 1201 of the power generator. The turbine 122 drives the generator 121 to operate via a motor shaft 1211 coupled thereto. The electrical output of the generator is connected to the circuit of the circuit board 123 and supplies power to the light-emitting tube 124. The circuit of circuit board 123 can be designed to be a flashing warning light. This circuit can also be equipped with an audible alarm unit.
如图 6所示, 为实施例 2; 该自发光消防监控喷头, 由一个整体部件组成, 包括壳体 10、 封闭柱塞 11、 涡轮发电装置 12; 其中壳体 10分为左腔体及右腔 体。 右腔体中设有可与消防水管螺紋连接的管道连接头 100及封闭柱塞 11。 管 道连接头 100设有入水口 101。 其中封闭柱塞 11可在右腔体中上下移动, 使管 道连接头入水口 101 开通或关闭。 右腔体的底部外侧, 设有可支撑固定感温管 20的感温管支架 22; 感温管 20设置在感温管支架 22与封闭柱塞 11之间, 是 通过感温管 20的一端与感温管支架 22相接触, 感温管 20的另一端顶在封闭柱 塞 11的底端。 当感温管 20顶住封闭柱塞 11的底端时, 封闭柱塞 11使入水口 101关闭。 当感温管 20遇热爆裂时, 封闭柱塞 11在水压的作用下向下移动, 使 管道连接头入水口 101开通。 左腔体中设有涡轮发电装置 12; 左腔体的底部外 侧设有可使喷淋消防的水流撒开的花洒件 23。 管道连接头入水口 101开通时水 流经入水口 101 由右腔体进入左腔体, 经涡轮发电装置 12 由发电装置出水口 1201喷出, 在花洒件 23的作用下, 可使喷淋消防的水流撒开。 经涡轮发电装置 12的工作, 带动发光管 124工作。 As shown in FIG. 6, it is the embodiment 2; the self-illuminating fire monitoring nozzle is composed of an integral component, including a casing 10, a closing plunger 11, and a turbine power generating device 12; wherein the casing 10 is divided into a left cavity and a right Cavity. A pipe joint 100 and a closing plunger 11 that can be screwed to the fire hose are provided in the right chamber. The pipe joint 100 is provided with a water inlet 101. The closing plunger 11 can be moved up and down in the right cavity to open or close the pipe joint inlet 101. On the outer side of the bottom of the right cavity, there is a supportable fixed temperature tube The temperature sensing tube 20 is disposed between the temperature sensing tube holder 22 and the closing plunger 11, and is connected to the temperature sensing tube holder 22 through one end of the temperature sensing tube 20, and the temperature sensing tube 20 is further One end is placed at the bottom end of the closing plunger 11. When the temperature sensing tube 20 is pressed against the bottom end of the closing plunger 11, the closing plunger 11 closes the water inlet 101. When the temperature sensing tube 20 bursts with heat, the closing plunger 11 moves downward under the action of the water pressure, so that the water inlet 101 of the pipe joint is opened. A turbine power generator 12 is disposed in the left cavity; a shower member 23 is disposed on the outer side of the bottom of the left cavity to allow the water to be sprayed to fire. When the water inlet 101 of the pipe joint is opened, the water flows through the water inlet 101 and enters the left cavity from the right cavity, and is sprayed out from the water outlet 1201 of the power generating device via the turbine power generating device 12. Under the action of the shower member 23, the fire can be sprayed. The water flows away. Through the operation of the turbine power generating device 12, the arc tube 124 is operated.

Claims

WO 2014/067062 +π χ,, π + - - PCT/CN2012/083737 权 利 要 求 书 WO 2014/067062 +π χ,, π + - - PCT/CN2012/083737 Claims
1、 一种自发光消防监控喷头, 其特征在于: 所述自发光消防监控喷头包括 与消防水管连接的喷头体 1及感温控制件 2, 其中喷头体 1包括: 1. A self-illuminating fire monitoring nozzle, characterized in that: the self-illuminating fire monitoring nozzle includes a nozzle body 1 connected to a fire water pipe and a temperature sensing control component 2, wherein the nozzle body 1 includes:
壳体 10: 壳体 10顶部设有可与消防水管连接的管道连接头 100, 管道连接 头 100设有入水口 101 ; Shell 10: The top of the shell 10 is provided with a pipe connection head 100 that can be connected to a fire water pipe, and the pipe connection head 100 is provided with a water inlet 101;
封闭柱塞 11 : 设于壳体 10内的顶部, 可使管道连接头入水口 101开通或关 闭; Closing plunger 11: Located at the top of the housing 10, it can open or close the water inlet 101 of the pipe connector;
涡轮发电装置 12: 包括发电装置壳体 120、 设于壳体上的发电装置入水口 1200、发电机 121、 涡轮 122、 电路板 123、发光管 124及发电装置出水口 1201, 当封闭柱塞 11使入水口 101开通时, 由入水口 101进入的水流, 经涡轮发电装 置入水口 1200使涡轮发电装置 12工作, 经涡轮发电装置 12的水由发电装置出 水口 1201流出, 用于喷淋消防; Turbine power generation device 12: includes a power generation device casing 120, a power generation device water inlet 1200 located on the casing, a generator 121, a turbine 122, a circuit board 123, a luminous tube 124 and a power generation device water outlet 1201. When the plunger 11 is closed When the water inlet 101 is opened, the water flowing in from the water inlet 101 passes through the turbine power generation device inlet 1200 to make the turbine power generation device 12 work, and the water passing through the turbine power generation device 12 flows out from the power generation device outlet 1201 for spray fire protection;
其中感温控制件 2包括可控制封闭柱塞使入水口 101开通或关闭的感温管 The temperature sensing control part 2 includes a temperature sensing tube that can control the closing plunger to open or close the water inlet 101.
20。 20.
2、 根据权利要求 1所述的自发光消防监控喷头, 其特征在于: 所述喷头体 1 中使管道连接头入水口 101开通或关闭及使涡轮发电装置 12工作与否为, 在壳 体 10内自壳体顶部到壳体底部依次设有封闭柱塞 11及涡轮发电装置 12, 当封 闭柱塞 11及涡轮发电装置 12在壳体顶部时可使入水口 101关闭, 当封闭柱塞 11及涡轮发电装置 12在壳体底部时可使入水口 101开通; 封闭柱塞 11及涡轮 发电装置 12在壳体顶部或底部是通过设于壳体底部外侧的感温控制件 2控制。 2. The self-luminous fire monitoring nozzle according to claim 1, characterized in that: in the nozzle body 1, the water inlet 101 of the pipe connector is opened or closed and the turbine power generation device 12 is operated or not, in the casing 10 There are a closing plunger 11 and a turbine power generating device 12 in sequence from the top of the shell to the bottom of the shell. When the closing plunger 11 and the turbine power generating device 12 are at the top of the shell, the water inlet 101 can be closed. When the closing plunger 11 and The water inlet 101 can be opened when the turbine power generation device 12 is at the bottom of the casing; the closing plunger 11 and the turbine power generation device 12 are controlled by the temperature control member 2 located outside the bottom of the casing when they are at the top or bottom of the casing.
3、 根据权利要求 1或 2所述的自发光消防监控喷头, 其特征在于: 所述感 温控制件 2包括与喷头体 1连接的感温控制件连接头 21、 与感温控制件连接头 21连接在一起, 可支撑固定感温管 20的感温管支架 22。 3. The self-illuminating fire monitoring nozzle according to claim 1 or 2, characterized in that: the temperature sensing control component 2 includes a temperature sensing control component connector 21 connected to the nozzle body 1, and a temperature sensing control component connector 21. 21 are connected together to support the temperature sensing tube bracket 22 that fixes the temperature sensing tube 20 .
4、 根据权利要求 1或 2所述的自发光消防监控喷头, 其特征在于: 所述感温管 支架 22的底部设有使由发电装置出水口 1201流出, 用于喷淋消防的水流撒开 的花洒件 23。 4. The self-illuminating fire monitoring nozzle according to claim 1 or 2, characterized in that: the bottom of the temperature sensing pipe bracket 22 is provided with a water outlet 1201 for flowing out from the power generation device, and the water used for spraying fire protection is spread. Shower head piece 23.
5、 根据权利要求 3所述的自发光消防监控喷头, 其特征在于: 所述壳体 10的 底部设有底部卡边 102及与底部卡边 102通过连接筋 103连为一体的安装环 104, 连接筋 103与安装环 104及底部卡边 102之间的通孔, 为发光管 124在涡轮发 电装置 12在壳体底部时的伸出孔; 感温控制件连接头 21可与安装环 104配合 连接; 发电装置出水口 1201套接在感温控制件连接头 21所设的连接头环 210 内, 感温管 20设置在感温管支架 2与发电装置出水口 1201之间, 并通过涡轮 发电装置 12将封闭柱塞 11顶住, 使入水口 101封闭。 5. The self-luminous fire monitoring nozzle according to claim 3, characterized in that: the bottom of the housing 10 is provided with a bottom clamping edge 102 and a mounting ring 104 integrated with the bottom clamping edge 102 through a connecting rib 103, The through hole between the connecting rib 103, the mounting ring 104 and the bottom clamping edge 102 is the protruding hole of the luminous tube 124 when the turbine power generation device 12 is at the bottom of the housing; the temperature control component connector 21 can cooperate with the mounting ring 104 Connection; The water outlet 1201 of the power generation device is sleeved in the connector ring 210 provided in the temperature sensing control component connector 21. The temperature sensing tube 20 is arranged between the temperature sensing tube bracket 2 and the water outlet 1201 of the power generation device, and generates electricity through the turbine. The device 12 presses the sealing plunger 11 to seal the water inlet 101.
6、 根据权利要求 5所述的自发光消防监控喷头, 其特征在于: 所述 6. The self-luminous fire monitoring nozzle according to claim 5, characterized in that:
壳体 10内顶部与封闭柱塞 11之间设有当封闭柱塞 11及涡轮发电装置 12在壳 体顶部时, 可达到入水口 101与封闭柱塞 11之间密封的顶部密封件 13。 There is a top seal 13 between the top of the housing 10 and the closing plunger 11 that can achieve a seal between the water inlet 101 and the closing plunger 11 when the closing plunger 11 and the turbine power generation device 12 are at the top of the housing.
7、 根据权利要求 5所述的自发光消防监控喷头, 其特征在于: 所述 7. The self-illuminating fire monitoring nozzle according to claim 5, characterized in that:
壳体 10的底部卡边 102与涡轮发电装置 12底部的边缘之间, 设有当封闭柱塞 11及涡轮发电装置 12在壳体底部时可起到使密封涡轮发电装置 12与所述壳体 10之间密封的底部密封件 14。 Between the bottom edge 102 of the casing 10 and the edge of the bottom of the turbine power generation device 12, there is a sealing plug 11 which can seal the turbine power generation device 12 and the casing when the closing plunger 11 and the turbine power generation device 12 are at the bottom of the casing. 10 between the bottom seals 14.
8、 根据权利要求 1或 2所述的自发光消防监控喷头, 其特征在于: 所述涡轮发 电装置 12开启工作后, 所发光为闪烁的警示灯光。 8. The self-luminous fire monitoring nozzle according to claim 1 or 2, characterized in that: after the turbine power generation device 12 is turned on, the light emitted is a flashing warning light.
9、 根据权利要求 1或 2所述的自发光消防监控喷头, 其特征在于: 所述发光消 防监控喷头设有声音报警单元, 当涡轮发电装置 12开启工作后, 声音报警单元 被打开。 9. The self-illuminating fire monitoring nozzle according to claim 1 or 2, characterized in that: the luminous fire monitoring nozzle is provided with a sound alarm unit, and when the turbine power generation device 12 starts working, the sound alarm unit is turned on.
10、 根据权利要求 5所述的自发光消防监控喷头, 其特征在于: 所述感温管 20 设置在感温管支架 22与发电装置出水口 1201之间时, 是通过感温管 20的一端 与感温管支架 22相接触, 感温管 20的另一端顶在发电装置出水口 1201出口端 的由出口连接筋 1204固定的出口中心件 1202上实现的。 10. The self-luminous fire monitoring nozzle according to claim 5, characterized in that: the temperature sensing tube 20 When it is arranged between the temperature sensing tube bracket 22 and the water outlet 1201 of the power generation device, one end of the temperature sensing tube 20 is in contact with the temperature sensing tube bracket 22, and the other end of the temperature sensing tube 20 is against the outlet end of the power generation device water outlet 1201. It is realized on the outlet center piece 1202 fixed by the outlet connecting rib 1204.
PCT/CN2012/083737 2012-10-30 2012-10-30 Self-luminous fire-monitoring sprinkler WO2014067062A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2012/083737 WO2014067062A1 (en) 2012-10-30 2012-10-30 Self-luminous fire-monitoring sprinkler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2012/083737 WO2014067062A1 (en) 2012-10-30 2012-10-30 Self-luminous fire-monitoring sprinkler

Publications (1)

Publication Number Publication Date
WO2014067062A1 true WO2014067062A1 (en) 2014-05-08

Family

ID=50626299

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2012/083737 WO2014067062A1 (en) 2012-10-30 2012-10-30 Self-luminous fire-monitoring sprinkler

Country Status (1)

Country Link
WO (1) WO2014067062A1 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20170136275A1 (en) * 2014-06-23 2017-05-18 Urbansite Verwaltungs Gmbh I.G. Device, method for advertising, method for retrofitting a device, construction set and arrangement
EP3215276A4 (en) * 2014-11-05 2018-07-18 Jain Irrigation Systems Limited Embedded sprinkler activated generator
DE102019111466A1 (en) * 2019-05-03 2020-11-05 Zumtobel Lighting Gmbh Luminaire with extended functionality

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007132973A1 (en) * 2006-05-12 2007-11-22 Soon Nam Byun Hydraulic generation sprinkler for refuge leading
CN201067714Y (en) * 2007-06-19 2008-06-04 胡伟 Spray head with turbo supercharging mechanism
CN201120323Y (en) * 2008-03-12 2008-09-24 胡伟 Self-luminescence spray head equipped with separated flow hole
CN201631957U (en) * 2010-01-26 2010-11-17 温州市工业科学研究院 Self-generating and illuminating fire-fighting sprinkler head
CN202065881U (en) * 2011-03-21 2011-12-07 上海通用化工技术研究所 Emergency lamplight indicating device used in fire-fighting spraying system
CN102895752A (en) * 2012-10-30 2013-01-30 胡伟 Self-luminous fire monitoring sprinkler head

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007132973A1 (en) * 2006-05-12 2007-11-22 Soon Nam Byun Hydraulic generation sprinkler for refuge leading
CN201067714Y (en) * 2007-06-19 2008-06-04 胡伟 Spray head with turbo supercharging mechanism
CN201120323Y (en) * 2008-03-12 2008-09-24 胡伟 Self-luminescence spray head equipped with separated flow hole
CN201631957U (en) * 2010-01-26 2010-11-17 温州市工业科学研究院 Self-generating and illuminating fire-fighting sprinkler head
CN202065881U (en) * 2011-03-21 2011-12-07 上海通用化工技术研究所 Emergency lamplight indicating device used in fire-fighting spraying system
CN102895752A (en) * 2012-10-30 2013-01-30 胡伟 Self-luminous fire monitoring sprinkler head

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20170136275A1 (en) * 2014-06-23 2017-05-18 Urbansite Verwaltungs Gmbh I.G. Device, method for advertising, method for retrofitting a device, construction set and arrangement
EP3215276A4 (en) * 2014-11-05 2018-07-18 Jain Irrigation Systems Limited Embedded sprinkler activated generator
DE102019111466A1 (en) * 2019-05-03 2020-11-05 Zumtobel Lighting Gmbh Luminaire with extended functionality

Similar Documents

Publication Publication Date Title
RU2379080C1 (en) Sprinkler with controlled start-up
RU2631520C1 (en) Sprinkler sprayer of fire-fighting set
WO2014067062A1 (en) Self-luminous fire-monitoring sprinkler
KR101003795B1 (en) Fire extinguisher
CN102895752B (en) Self-luminous fire fighting monitoring shower nozzle
WO2018051662A1 (en) Automatic fire extinguishing device
CN207493089U (en) A kind of Novel firefighting bolt
WO2008041867A3 (en) Fire suppression apparatus incorporated into domestic faucet
CN108999245A (en) A kind of intelligent fire bolt with hydraulic pressure detection
CN205307671U (en) A solenoid valve and shower head for fire control
CN202942572U (en) Self-luminous firefighting monitoring nozzle
CN112419649A (en) Fire alarm for municipal works building
WO2013085434A2 (en) Sprinkler with fire sensor
JP2009240745A (en) Automatic fire extinguisher
RU2471524C1 (en) Sprinkler with controlled start
JP2005118109A (en) Fire extinguisher to be mounted inside range hood
CN104368102A (en) Automatic fire extinguisher with rotatable nozzle
CN109701191B (en) Water-based running water type fire extinguishing system and application method thereof
KR102635845B1 (en) AI Flame Tracking Fire Extinguisher
CN107929990A (en) Novel firefighting bolt
CN210674072U (en) Better automatic watering shower nozzle of fire extinguishing effect
CN216395084U (en) Automatic fire extinguishing center control cabinet for tunnel
CN211857689U (en) Building emergency alarm device
CN212067543U (en) Fire hydrant nozzle with pressure device
RU2526705C1 (en) Sprinkler with controlled start

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 12887653

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205N DATED 07/07/2015)

122 Ep: pct application non-entry in european phase

Ref document number: 12887653

Country of ref document: EP

Kind code of ref document: A1