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    • 5. 发明专利
    • Flame detection system
    • 火焰检测系统
    • JP2011081793A
    • 2011-04-21
    • JP2010224463
    • 2010-10-04
    • Kidde Technologies Incキッダ テクノロジーズ,インコーポレイテッド
    • SMITH PAUL DDUNSTER ROBERT GRENNIE PAULJONES BETH A
    • G08B17/04A62C3/07G08B17/00
    • A62C37/48A62C3/07A62C35/68
    • PROBLEM TO BE SOLVED: To provide a flame detection system utilizing a reusable sensing fluid.
      SOLUTION: The flame detection system 10 includes a detection tube 22 and a valve 16. The detection tube 22 contains the sensing fluid 23 having a first physical condition and a second physical condition. The sensing fluid 23 is, in the first physical condition, lower than a threshold temperature, and is, in the second physical condition, higher the threshold temperature. The sensing fluid 23 is, at least partially, liquid in the first physical condition. A detection device is set to open, in response to a transition of a portion of the sensing fluid 23 from the first physical condition to the second physical condition. A cylinder 12 containing a flame suppressant 13 is operable to distribute the flame suppressant 13 through a distribution tube 14 via the release valve 16. The distribution tube 14 has a nozzle 18, and through the nozzle, the flame suppressant 13 is emitted. The release valve 16 keeps a closed state, until being opened by a release valve actuation assembly 20.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供利用可重复使用的感测流体的火焰检测系统。

      解决方案:火焰检测系统10包括检测管22和阀16.检测管22包含具有第一物理条件和第二物理条件的检测流体23。 感测流体23在第一物理条件下低于阈值温度,并且在第二物理条件下,阈值温度较高。 感测流体23在第一物理状态下至少部分地是液体的。 响应于感测流体23的一部分从第一物理状态到第二物理状态的过渡而将检测装置设置为打开。 包含阻燃剂13的圆筒12可操作以经由释放阀16将阻燃剂13分配通过分配管14.分配管14具有喷嘴18,并且通过喷嘴喷射阻燃剂13。 释放阀16保持关闭状态,直到通过释放阀致动组件20打开。版权所有(C)2011,JPO&INPIT

    • 6. 发明专利
    • Fire suppression system and fire suppression system for aircraft
    • 用于飞机的消防系统和消防系统
    • JP2011045711A
    • 2011-03-10
    • JP2010182017
    • 2010-08-17
    • Kidde Technologies Incキッダ テクノロジーズ,インコーポレイテッド
    • GATSONIDES JOSEPHINE GABRIELLEDUNSTER ROBERT G
    • A62C35/02A62C3/08B64D13/00B64D25/00B64D37/32
    • A62C3/08A62C35/02A62C99/0018
    • PROBLEM TO BE SOLVED: To provide a fire suppression system configured to minimize environmental load. SOLUTION: The fire suppression system 20 includes a main gas container 22 and a second gas container 24 containing inert gas. The gas container 22 communicates with a manifold 23 and a flow line 25 situated on the downstream of the manifold 23. The flow line 25 includes a pressure regulating valve 30 controlled by a pneumatic control unit 34. A high-pressure gas supply unit 32 supplies control gas to the pneumatic control unit 34 through a valve 36. The pneumatic control unit 34 includes a flow line 40 corresponding to a valve 48 of each compartment A, B, C, and a tap 42 for guiding the control gas to the valve 30 and each compartment A, B, C to control the pressure of the control gas delivered to the valve 30. The fire suppression system further includes a valve corresponding to the main container, and the valve switches the main container to the second container when the pressure in the main container drops to a predetermined amount or less. This switching is performed by pneumatic control. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供被配置为最小化环境负荷的灭火系统。 解决方案:灭火系统20包括主气体容器22和含有惰性气体的第二气体容器24。 气体容器22与位于歧管23下游的歧管23和流路25连通。流路25包括由气动控制单元34控制的调压阀30.高压气体供给单元32 通过阀36将气体控制到气动控制单元34.气动控制单元34包括对应于每个隔室A,B,C的阀48的流动管线40和用于将控制气体引导到阀30的龙头42 和每个隔室A,B,C,以控制输送到阀30的控制气体的压力。灭火系统还包括对应于主容器的阀,并且当压力 在主容器中下降到预定量或更少。 这种切换是通过气动控制进行的。 版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Fire suppression system and usage method therefor
    • 消防系统及其使用方法
    • JP2010221035A
    • 2010-10-07
    • JP2010065954
    • 2010-03-23
    • Kidde Technologies Incキッダ テクノロジーズ,インコーポレイテッド
    • CHATTAWAY ADAMGATSONIDES JOSEPHINE GABRIELLEDUNSTER ROBERT GSIMPSON TERRYSEEBALUCK DHARMENDR LENGLASER ROBERT E
    • A62C3/08B64D25/00
    • A62C99/0018A62C3/08A62C37/44
    • PROBLEM TO BE SOLVED: To provide a fire suppression system which replaces a halide fire suppression system. SOLUTION: The fire suppression system 110 for controlling the fire signs of cargo compartments 114a, 114b of an airplane 112 includes a pressurized inert gas source 116 for supplying a first inert gas output 118, an inert gas generator 120 for supplying a second inert gas output 122, a distributed network 124, and a controller 126 operatively connected to the distributed network. The fire suppression system first discharges the first inert gas output 118 from the pressurized inert gas source 116 according to a fire sign signal so as to reduce the oxygen concentration in the cargo compartment receiving the first inert gas output equal to or below a prescribed threshold value. Subsequently, the second inert gas output 122 is discharged from the inert gas generator 120 so as to maintain the oxygen concentration equal to or below the threshold value. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供替代卤化物灭火系统的灭火系统。 解决方案:用于控制飞机112的货舱114a,114b的消防标志的灭火系统110包括用于供应第一惰性气体输出118的加压惰性气体源116,用于提供第二惰性气体输出118的惰性气体发生器120 惰性气体输出122,分布式网络124和可操作地连接到分布式网络的控制器126。 灭火系统首先根据火焰信号从加压惰性气体源116排出第一惰性气体输出118,以便减少容纳第一惰性气体输出的货舱中的氧气浓度等于或低于规定阈值 。 随后,第二惰性气体输出122从惰性气体发生器120排出,以保持氧浓度等于或低于阈值。 版权所有(C)2011,JPO&INPIT