WO2020134164A1 - 一种智能灭火器控制器 - Google Patents

一种智能灭火器控制器 Download PDF

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Publication number
WO2020134164A1
WO2020134164A1 PCT/CN2019/104089 CN2019104089W WO2020134164A1 WO 2020134164 A1 WO2020134164 A1 WO 2020134164A1 CN 2019104089 W CN2019104089 W CN 2019104089W WO 2020134164 A1 WO2020134164 A1 WO 2020134164A1
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WO
WIPO (PCT)
Prior art keywords
fire extinguisher
protective shell
fixedly connected
extinguisher controller
plate
Prior art date
Application number
PCT/CN2019/104089
Other languages
English (en)
French (fr)
Inventor
张敬敏
Original Assignee
山东光韵智能科技有限公司
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Publication date
Application filed by 山东光韵智能科技有限公司 filed Critical 山东光韵智能科技有限公司
Publication of WO2020134164A1 publication Critical patent/WO2020134164A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62CFIRE-FIGHTING
    • A62C37/00Control of fire-fighting equipment
    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62CFIRE-FIGHTING
    • A62C35/00Permanently-installed equipment
    • A62C35/20Hydrants, e.g. wall-hoses, wall units, plug-in cabinets

Definitions

  • the present invention belongs to the technical field of fire extinguisher controllers, and particularly relates to an intelligent fire extinguisher controller.
  • a fire extinguisher is a portable fire extinguishing tool. Chemicals are placed in the fire extinguisher to extinguish the fire.
  • the fire extinguisher is one of the common fire prevention facilities. It is stored in a public place or a place where a fire may occur. The composition of the filling is different. It is specially designed for different fires. When using it, care must be taken to avoid adverse effects and dangers. With the development of modern technology, standardized fire protection measures have become an indispensable system in various places. First, at the same time a high degree of automation and intelligence is also the main direction of future development.
  • the intelligent fire extinguisher controller in the fire fighting system enables one of the important components to achieve precise adjustment and timely reflection through the control of the intelligent fire extinguisher controller, but the traditional intelligent fire extinguisher controller usually needs to be installed in a protective shell
  • the protective shell does not take into account both the sealing and the heat dissipation. At the same time, when the fire itself occurs, it does not have a good flame suppression effect, leaving certain defects in the actual use process.
  • An object of the present invention is to provide an intelligent fire extinguisher controller that can balance the tightness and the heat dissipation in view of the above problems.
  • An intelligent fire extinguisher controller including a protective shell and a fire extinguisher controller body, the fire extinguisher controller body is disposed in the protective shell, the bottom of the protective shell An opening is provided, and a matching fixing plate is provided in the opening, the upper end of the fixing plate is fixedly connected with the lower end of the body of the fire extinguisher controller, and the lower end of the fixing plate is fixedly connected with a support machine
  • the fixing plate is provided with slots on the left and right side walls of the fixing plate, two limit mechanisms for respectively matching the two slots are provided in the opening, and two are provided on the upper end of the protective shell
  • a movable mechanism for cooperating with a limit mechanism, a cooling mechanism is provided in the protective shell, and an upper end of the cooling mechanism penetrates the top surface of the protective shell and extends to the outside thereof.
  • the fire extinguisher controller body includes a microcomputer and an infrared sensor
  • the microcomputer is provided with a control module
  • the control module is electrically connected to the detection module, the transmission module, the power supply module, respectively ,
  • the detection module is electrically connected to an infrared sensor
  • the transmission module is electrically connected to a WiFi signal transmitter and a signal receiver
  • the power module is electrically connected to a battery
  • the infrared sensor is provided outside the body of the fire extinguisher controller.
  • the support mechanism includes a bottom plate fixedly connected to the lower end of the fixed plate, the lower end of the bottom plate is fixedly connected with two support blocks, one end side of the two support blocks facing away from each other Card boards are fixedly connected on the walls.
  • the limit mechanism includes through holes provided on the inner wall of the opening penetrating left and right, the top surface and the bottom of the through hole are horizontally provided with a chute, the chute A slider matched with the slider is provided, a first telescopic rod is fixedly connected to a side wall of the end of the slider away from the opening, and an end of the first telescopic rod away from the slider is fixedly connected to the inner wall of the slide slot, A first spring is sleeved on the first telescopic rod, and a limit plate is inserted through the through hole, and the upper and lower ends of the limit plate are fixedly connected to the opposite side walls of the two sliders respectively, and the limit The upper end of the plate is provided with a limiting groove, and the limiting groove is wedge-shaped.
  • the movable mechanism includes a counterbore provided at the upper end of the protective shell, a plurality of second telescopic rods are fixedly connected to the bottom of the counterbore, and multiple second telescopic rods The upper end of the is fixedly connected with the same connecting block, and a second spring is sleeved on the second telescopic rod, and the upper and lower ends of the second spring are respectively fixedly connected to the lower end of the connecting block and the bottom of the counterbore,
  • the lower end of the connecting block is fixedly connected with an inserting plate, the lower end of the inserting plate penetrates the bottom of the counterbore and extends into the through hole, the lower end of the inserting plate has a wedge shape, the inserting plate and the limit Slot active connection.
  • the cooling mechanism includes two U-shaped pipes vertically arranged in a protective shell, and the two U-shaped pipes are provided with internal and external communication on the side wall of the end of the body of the fire extinguisher controller
  • the gap A hot-melt plate is fixedly connected in the mouth, the upper ends of the two U-shaped pipes respectively penetrate the top surface of the protective shell and extend to the outside thereof, and the upper end of the protective shell is horizontally provided with two connecting tubes, one of which is A fan is installed in the connecting pipe, the left and right ends of the two connecting pipes are fixedly connected and connected to the two ends of the two U-shaped pipes respectively, and the two U-shaped pipes and the two connecting pipes are filled with smoke suppression gas.
  • the combustible smoke is smoke mixed with carbon dioxide and dry powder, and the mixing ratio is 10:1.
  • the present invention achieves the use of a protective shell and a fixed plate so that the body of the fire extinguisher controller maintains a good tightness through the cooperation of the set limit mechanism and the movable mechanism and the cooling mechanism.
  • the U-shaped pipe and the connecting pipe can also be used In order to take into account the effect of heat dissipation, at the same time, it can also provide active combustion suppression effect through the combustion suppression smoke to prevent accidental fire.
  • FIG. 1 is a perspective view of an intelligent fire extinguisher controller provided by the present invention
  • FIG. 2 is a partial enlarged view at A in FIG. 1;
  • FIG. 3 is a partial enlarged view at B in FIG. 1;
  • FIG. 4 is a functional block diagram of an intelligent fire extinguisher controller provided by the present invention.
  • 1 protective shell 1 protective shell, 2 fire extinguisher controller body, 3 fixed plate, 4 support mechanism, 5 limit mechanism, 6 movable mechanism, 7 cooling mechanism, 8 combustion suppression smoke, 9 bottom plate, 10 support block, 11 clamping plate, 12 slide slot, 13 slide block, 14 first telescopic rod, 15 first spring, 16 limit plate, 17 limit slot, 18 counterbore, 19 second telescopic rod, 20 connecting block, 21 second Springs, 22 inserts, 23 U-shaped tubes, 24 hot-melt plates, 25 connecting tubes, 26 fans.
  • an intelligent fire extinguisher controller includes a protective shell 1 and a fire extinguisher controller body 2, the fire extinguisher controller body 2 is disposed in the protective shell 1, the fire extinguisher controller body 2 includes a microcomputer and Infrared sensor, infrared sensor is used to detect the change of its own temperature, and communicate and raise alarms with outside control personnel through WiFi signal transmitter and signal receiver.
  • Infrared sensor is installed outside the body 2 of the fire extinguisher controller, inside the microcomputer Equipped with a control module, the control module is electrically connected to the detection module, the transmission module, the power supply module, the memory and the central processor, the detection module is electrically connected to the infrared sensor, the transmission module is electrically connected to the WiFi signal transmitter and the signal receiver, and the power module is electrically connected to the battery .
  • the bottom of the protective shell 1 is provided with an opening, and the opening is provided with a matching fixing plate 3, the upper end of the fixing plate 3 is fixedly connected to the lower end of the fire extinguisher controller body 2, and the lower end of the fixing plate 3 is fixedly connected and supported Mechanism 4, the support mechanism 4 includes a bottom plate 9 fixedly connected to the lower end of the fixed plate 3, the length of the bottom plate 9 is the same as the length of the protective shell 1, and two support blocks 10 are fixedly connected to the lower end of the bottom plate 9, the two support blocks 10 are away from each other
  • a clamping plate 11 is fixedly connected to one side wall of the one end, and the clamping plate 11 can fix the bottom plate 9 in a preset wall pit, and the fixing plate 3 is provided with slots on the left and right side walls, and the opening is provided There are two limit mechanisms 5 for respectively matching two slots.
  • the position-limiting mechanism 5 includes through holes provided on the inner wall of the opening to penetrate left and right.
  • the top surface and the bottom of the through hole are provided with slide grooves 12 horizontally.
  • the slide groove 12 is provided with a slider 13 matching it.
  • a first telescopic rod 14 is fixedly connected to the side wall of the end of the block 13 away from the opening, and the end of the first telescopic rod 14 away from the slider 13 is fixedly connected to the inner wall of the slide slot 12.
  • the first telescopic rod 14 is sleeved with a first spring 15.
  • the first telescopic rod 14 can protect the first spring 15, the left and right ends of the first spring 15 are in contact with the inner wall of the sliding groove 12 and the side wall of the slider 13, the first spring 15 is used to drive the limit
  • the plate 17 pops out of the slot, and a limit plate 16 is inserted through the through hole.
  • the upper and lower ends of the limit plate 16 are fixedly connected to the opposite side walls of the two sliders 13 respectively.
  • the upper end of the limit plate 16 is provided with a limit groove 17
  • the limiting groove 17 is wedge-shaped.
  • the upper end of the protective shell 1 is provided with two movable mechanisms 6 for cooperating with the limit mechanism 5, the movable mechanism 6 includes a counterbore 18 provided on the upper end of the protective shell 1, and a plurality of second holes are fixedly connected to the bottom of the counterbore
  • a telescopic rod 19, a plurality of second telescopic rods 19 are fixedly connected to the same connecting block 20 on the upper end, a second spring 21 is sleeved on the second telescopic rod 19, the second telescopic rod 19 can protect the second spring 21 ,
  • the upper and lower ends of the second spring 21 are connected to The lower end of the block 20 is fixedly connected to the bottom of the counterbore 18, and the lower end of the connection block 20 is fixedly connected to the insert plate 22, the lower end of the insert plate 22 penetrates the bottom of the counterbore 18 and extends into the through hole, and the lower end of the insert plate 22 is a wedge In shape, the insert plate 22 is movably connected with the limiting groove 17, and
  • the cooling mechanism 7 includes two U-shaped tubes 23 vertically disposed in the protective shell 1, and two U-shaped tubes 23 are provided with a gap between the inside and the outside on the side wall of one end of the body 2 close to the fire extinguisher controller body 2
  • a hot-melt plate 24 is fixedly connected.
  • the hot-melt plate 24 is made of bismuth-tin alloy and has a melting point of 45 degrees to 100 degrees.
  • the upper ends of the two U-shaped tubes 23 penetrate the top surface of the protective shell 1 and extend to the outside
  • the upper end of the protective shell 1 is horizontally provided with two connecting pipes 25, one of the connecting pipes 25 is installed with a fan 26, the fan 26 is a technology of absorption, and will not be repeated here, the fan 26 is used to drive the U-shaped tube 23
  • the air flow in the connecting pipe 25 the left and right ends of the two connecting pipes 25 are fixedly connected and connected to the two ends of the two U-shaped pipes 23, and the two U-shaped pipes and the two connecting pipes 25 are filled with Suppression of smoke 8
  • Suppression of smoke 26 is a mixture of carbon dioxide and dry powder, the mixing ratio is 10: 1, carbon dioxide and dry powder can be sprayed out of the fire extinguisher controller body 2 for fire suppression treatment
  • the operator when in use, can use two clamping plates 11 to fix the bottom plate 9 in a predetermined wall pit, and then remove it by rotating the protective shell 1, and then The operator lifts up the two connecting blocks 20 again, so that the limit plate 16 rebounds under the action of the first spring 15 to withdraw from the slot.
  • the protective shell 1 and the fire extinguisher controller body 2 can be separated to reach The effect of repairing and replacing it, and then by closing it, pushing the two exiting limit plates 16 to re-insert them into the slot, during the insertion process, the insert plate 22 is under the action of the second spring 21 Snap into the limit slot 17 to limit it.
  • the fan 26 starts to drive the combustion suppression smoke 8 in the U-shaped pipe 23 and the connecting pipe 25 to circulate, so that the protective shell 1 The heat is taken away to achieve the effect of heat dissipation.
  • the body of the fire extinguisher controller 2 itself is short-circuited and caught fire due to an accident, as the internal temperature of the protective shell 1 rises, the hot melt plate 24 gradually breaks, and then the fan 26 With the cooperation of, the internal combustion suppression smoke 8 is discharged into the protective casing 1 for combustion suppression operation.
  • the present invention achieves the use of a protective shell and a fixed plate so that the body of the fire extinguisher controller maintains a good seal through the cooperation of the set limit mechanism and the movable mechanism and the cooling mechanism.
  • the U-shaped tube and the connection can also be used Take over to take into account the effect of heat dissipation, and at the same time, it can provide active combustion suppression effect through the combustion suppression smoke therein to prevent accidental fire.

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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)

Abstract

本发明属于灭火器控制器技术领域,尤其是涉及一种智能灭火器控制器,包括保护壳和灭火器控制器机体,灭火器控制器机体设置于保护壳内,保护壳的底部设有开口,开口内设有与之相匹配的固定板,固定板的上端与灭火器控制器机体的下端固定连接,固定板的下端固定连接有支撑机构,固定板的左右两端侧壁上均设有插槽,开口内设有两个用于分别配合两个插槽的限位机构,保护壳的上端设有两个用于配合限位机构的活动机构,保护壳内设有冷却机构,冷却机构的上端贯穿保护壳的顶面并延伸至其外部。优点在于:本发明可较好的兼顾智能灭火器控制器在使用过程中的密封性和散热性,同时其本身具有主动的抑燃效果,防止意外火灾的发生。

Description

一种智能灭火器控制器 技术领域
[0001] 本发明属于灭火器控制器技术领域, 尤其是涉及一种智能灭火器控制器。
背景技术
[0002] 灭火器是一种可携式灭火工具, 灭火器内放置化学物品, 用以救灭火灾, 灭火 器是常见的防火设施之一, 存放在公众场所或可能发生火灾的地方, 不同种类 的灭火器内装填的成分不一样, 是专为不同的火灾起因而设, 使用时必须注意 以免产生反效果及引起危险, 随着现代科技的发展, 标准化的消防措施已经时 各个场所内必不可少的系统之一, 同时高度的自动化和智能化也是未来发展的 主要方向。
发明概述
技术问题
[0003] 消防系统中的智能灭火器控制器使其中的一个重要的部件, 通过智能灭火器控 制器的控制达到精准调节和及时反映的效果, 但传统的智能灭火器控制器通常 需要安装在一个保护壳内, 该保护壳并不能很好的兼顾密封性和散热性, 同时 当其自身发生火灾后并不能够进行很好的抑燃效果, 在实际使用的过程中留用 一定的缺陷。
[0004] 为此, 我们提出一种智能灭火器控制器来解决上述问题。
问题的解决方案
技术解决方案
[0005] 本发明的目的是针对上述问题, 提供一种可兼顾密封性和散热性的智能灭火器 控制器。
[0006] 为达到上述目的, 本发明采用了下列技术方案: 一种智能灭火器控制器, 包括 保护壳和灭火器控制器机体, 所述灭火器控制器机体设置于保护壳内, 所述保 护壳的底部设有开口, 所述开口内设有与之相匹配的固定板, 所述固定板的上 端与灭火器控制器机体的下端固定连接, 所述固定板的下端固定连接有支撑机 构, 所述固定板的左右两端侧壁上均设有插槽, 所述开口内设有两个用于分别 配合两个插槽的限位机构, 所述保护壳的上端设有两个用于配合限位机构的活 动机构, 所述保护壳内设有冷却机构, 所述冷却机构的上端贯穿保护壳的顶面 并延伸至其外部。
[0007] 在上述的智能灭火器控制器中, 所述灭火器控制器机体包括微型计算机和红外 传感器, 所述微型计算机内设有控制模块, 所述控制模块分别电连接检测模块 、 传输模块、 电源模块、 存储器和中央处理器, 所述检测模块电连红外传感器 , 所述传输模块电连 WiFi信号发射器和信号接收器, 所述电源模块电连蓄电池
[0008] 在上述的智能灭火器控制器中, 所述红外传感器设置于灭火器控制器机体的外 部。
[0009] 在上述的智能灭火器控制器中, 所述支撑机构包括固定连接于固定板下端的底 板, 所述底板的下端固定连接有两块支撑块, 两块所述支撑块相背离的一端侧 壁上均固定连接有卡板。
[0010] 在上述的智能灭火器控制器中, 所述限位机构包括设置于开口内壁上左右贯通 的通孔, 所述通孔的顶面和底部均水平设有滑槽, 所述滑槽内设有与之相匹配 的滑块, 所述滑块远离开口的一端侧壁上固定连接有第一伸缩杆, 所述第一伸 缩杆远离滑块的一端与滑槽的内壁固定连接, 所述第一伸缩杆上套设有第一弹 簧, 所述通孔内贯穿插设有限位板, 所述限位板的上下两端分别与两块滑块的 相对侧壁固定连接, 所述限位板的上端设有限位槽, 所述限位槽呈楔形。
[0011] 在上述的智能灭火器控制器中, 所述活动机构包括设置于保护壳上端的沉孔, 所述沉孔的底部固定连接有多根第二伸缩杆, 多根所述第二伸缩杆的上端固定 连接有同一块连接块, 所述第二伸缩杆上套设有第二弹簧, 第二弹簧的上下两 端分别与连接块的下端和沉孔的底部固定连接,
[0012] 所述连接块的下端固定连接有插板, 所述插板的下端贯穿沉孔的底部并延伸至 通孔内, 所述插板的下端呈楔形状, 所述插板与限位槽活动连接。 在上述的智 能灭火器控制器中, 所述冷却机构包括竖直设置于保护壳内的两根 U型管, 两根 所述 U型管靠近灭火器控制器机体的一端侧壁上均设有内外连通的缺口, 所述缺 口内固定连接有热熔性板, 两根所述 U型管的上端分别贯穿保护壳的顶面并延伸 至其外部, 所述保护壳的上端水平设有两根连接管, 其中一根所述连接管内安 装有风扇, 两根所述连接管的左右两端分别与两根 U型管的两端固定连接并连通 设置, 两根所述 U型管和两根连接管内均填充有抑燃烟气。
[0013] 在上述的智能灭火器控制器中, 所述抑燃烟气为二氧化碳和干粉所混合的烟雾 , 混合比例为 10: 1。
发明的有益效果
有益效果
[0014] 与现有的技术相比, 本智能灭火器控制器的优点在于:
[0015] 本发明通过设置的限位机构和活动机构及冷却机构的配合, 以达到利用保护壳 和固定板使得灭火器控制器机体保持有良好的密封性同时, 还可利用 U型管和连 接管来兼顾散热性的效果, 同时还可通过其中的抑燃烟气来为其提供主动的抑 燃效果, 防止意外火灾的发生。
对附图的简要说明
附图说明
[0016] 图 1是本发明提供的一种智能灭火器控制器的透视图;
[0017] 图 2是图 1中 A处的局部放大图;
[0018] 图 3是图 1中 B处的局部放大图;
[0019] 图 4是本发明提供的一种智能灭火器控制器的原理框图。
[0020] 图中, 1保护壳、 2灭火器控制器机体、 3固定板、 4支撑机构、 5限位机构、 6活 动机构、 7冷却机构、 8抑燃烟气、 9底板、 10支撑块、 11卡板、 12滑槽、 13滑块 、 14第一伸缩杆、 15第一弹簧、 16限位板、 17限位槽、 18沉孔、 19第二伸缩杆 、 20连接块、 21第二弹簧、 22插板、 23 U型管、 24热熔性板、 25连接管、 26风 扇。
实施该发明的最佳实施例
本发明的最佳实施方式
[0021] 具体实施方式以下实施例仅处于说明性目的, 而不是想要限制本发明的范围。 发明实施例
实施例
[0022] 如图 1-4所示, 一种智能灭火器控制器, 包括保护壳 1和灭火器控制器机体 2, 灭火器控制器机体 2设置于保护壳 1内, 灭火器控制器机体 2包括微型计算机和红 外传感器, 红外传感器用于探测自身温度的变化情况, 并通过 WiFi信号发射器 和信号接收器与外界控制人员就那些传达和提高报警, 红外传感器设置于灭火 器控制器机体 2的外部, 微型计算机内设有控制模块, 控制模块分别电连接检测 模块、 传输模块、 电源模块、 存储器和中央处理器, 检测模块电连红外传感器 , 传输模块电连 WiFi信号发射器和信号接收器, 电源模块电连蓄电池。
[0023] 保护壳 1的底部设有开口, 开口内设有与之相匹配的固定板 3 , 固定板 3的上端 与灭火器控制器机体 2的下端固定连接, 固定板 3的下端固定连接有支撑机构 4, 支撑机构 4包括固定连接于固定板 3下端的底板 9 , 底板 9的长度与保护壳 1的长度 相同, 底板 9的下端固定连接有两块支撑块 10, 两块支撑块 10相背离的一端侧壁 上均固定连接有卡板 11, 卡板 11可将底板 9固定在预设的墙体坑槽内, 固定板 3 的左右两端侧壁上均设有插槽, 开口内设有两个用于分别配合两个插槽的限位 机构 5。
[0024] 限位机构 5包括设置于开口内壁上左右贯通的通孔, 通孔的顶面和底部均水平 设有滑槽 12, 滑槽 12内设有与之相匹配的滑块 13 , 滑块 13远离开口的一端侧壁 上固定连接有第一伸缩杆 14, 第一伸缩杆 14远离滑块 13的一端与滑槽 12的内壁 固定连接, 第一伸缩杆 14上套设有第一弹簧 15 , 第一伸缩杆 14可对第一弹簧 15 进行保护, 第一弹簧 15的左右两端分别与滑槽 12的内壁和滑块 13的侧壁相抵接 触, 第一弹簧 15用于带动限位板 17弹出插槽, 通孔内贯穿插设有限位板 16 , 限 位板 16的上下两端分别与两块滑块 13的相对侧壁固定连接, 限位板 16的上端设 有限位槽 17, 限位槽 17呈楔形。
[0025] 保护壳 1的上端设有两个用于配合限位机构 5的活动机构 6 , 活动机构 6包括设置 于保护壳 1上端的沉孔 18 , 沉孔的底部固定连接有多根第二伸缩杆 19 , 多根第二 伸缩杆 19的上端固定连接有同一块连接块 20, 第二伸缩杆 19上套设有第二弹簧 2 1, 第二伸缩杆 19可对第二弹簧 21进行保护, 第二弹簧 21的上下两端分别与连接 块 20的下端和沉孔 18的底部固定连接, 连接块 20的下端固定连接有插板 22, 插 板 22的下端贯穿沉孔 18的底部并延伸至通孔内, 插板 22的下端呈楔形状, 插板 2 2与限位槽 17活动连接, 保护壳 1内设有冷却机构 7, 冷却机构 7的上端贯穿保护 壳 1的顶面并延伸至其外部。
[0026] 冷却机构 7包括竖直设置于保护壳 1内的两根 U型管 23, 两根 U型管 23靠近灭火 器控制器机体 2的一端侧壁上均设有内外连通的缺口, 缺口内固定连接有热熔性 板 24, 热熔性板 24为铋锡合金材质, 其熔点为 45度 -100度, 两根 U型管 23的上端 分别贯穿保护壳 1的顶面并延伸至其外部, 保护壳 1的上端水平设有两根连接管 2 5 , 其中一根连接管 25内安装有风扇 26 , 风扇 26为吸纳有技术, 在此不做赘述, 风扇 26用于带动 U型管 23和连接管 25内的气流流动, 两根连接管 25的左右两端分 别与两根 U型管 23的两端固定连接并连通设置, 两根 U型管和两根连接管 25内均 填充有抑燃烟气 8 , 抑燃烟气 26为二氧化碳和干粉所混合的烟雾, 混合比例为 10: 1, 二氧化碳和干粉可在灭火器控制器机体 2发生火灾时喷出对其进行抑燃处理
[0027] 本发明, 在使用时, 操作人员可利用两块卡板 11来将底板 9固定在预设的墙体 坑槽内, 再通过旋转转动保护壳 1的方式来将其取下, 随后操作人员再将两块连 接块 20提起, 使得限位板 16在第一弹簧 15的作用下回弹从而从插槽内退出, 此 时即可将保护壳 1与灭火器控制器机体 2分开, 达到对其进行检修更换的效果, 随后再通过将其合上, 推动两块退出的限位板 16使其重新插入至插槽内, 在插 入的过程中插板 22在第二弹簧 21的作用下卡入限位槽 17对其进行限位, 在灭火 器控制器机体 2工作时, 风扇 26启动带动 U型管 23和连接管 25内的抑燃烟气 8进行 循环, 从而将保护壳 1内的热量带走, 以达到对其进行散热的效果, 当灭火器控 制器机体 2自身因意外出现短路着火时, 随着保护壳 1内部温度的升高, 热熔性 板 24逐渐破碎, 再在风扇 26的配合下将内部的抑燃烟气 8排放至保护壳体 1内进 行抑燃作业。
工业实用性
[0028] 本发明通过设置的限位机构和活动机构及冷却机构的配合, 以达到利用保护壳 和固定板使得灭火器控制器机体保持有良好的密封性同时, 还可利用 U型管和连 接管来兼顾散热性的效果, 同时还可通过其中的抑燃烟气来为其提供主动的抑 燃效果, 防止意外火灾的发生。
序列表自由内容
[0029] 尽管本文较多地使用了保护壳 1、 灭火器控制器机体 2、 固定板 3、 支撑机构 4、 限位机构 5、 活动机构 6、 冷却机构 7、 抑燃烟气 8、 底板 9、 支撑块 10、 卡板 11、 滑槽 12、 滑块 13、 第一伸缩杆 14、 第一弹簧 15、 限位板 16、 限位槽 17、 沉孔 18 、 第二伸缩杆 19、 连接块 20、 第二弹簧 21、 插板 22、 U型管 23、 热熔性板 24、 连 接管 25和风扇 26等术语, 但并不排除使用其它术语的可能性。 使用这些术语仅 仅是为了更方便地描述和解释本发明的本质; 把它们解释成任何一种附加的限 制都是与本发明精神相违背的。
[0030]

Claims

权利要求书
[权利要求 1] 一种智能灭火器控制器, 包括保护壳 (1) 和灭火器控制器机体 (2)
, 所述灭火器控制器机体 (2) 设置于保护壳 (1) 内, 其特征在于, 所述保护壳 (1) 的底部设有开口, 所述开口内设有与之相匹配的固 定板 (3) , 所述固定板 (3) 的上端与灭火器控制器机体 (2) 的下 端固定连接, 所述固定板 (3) 的下端固定连接有支撑机构 (4) , 所 述固定板 (3) 的左右两端侧壁上均设有插槽, 所述开口内设有两个 用于分别配合两个插槽的限位机构 (5) , 所述保护壳 (1) 的上端设 有两个用于配合限位机构 (5) 的活动机构 (6) , 所述保护壳 (1) 内设有冷却机构 (7) , 所述冷却机构 (7) 的上端贯穿保护壳 (1) 的顶面并延伸至其外部。
[权利要求 2] 根据权利要求 1所述的智能灭火器控制器, 其特征在于, 所述灭火器 控制器机体 (2) 包括微型计算机和红外传感器, 所述微型计算机内 设有控制模块, 所述控制模块分别电连接检测模块、 传输模块、 电源 模块、 存储器和中央处理器, 所述检测模块电连红外传感器, 所述传 输模块电连 WiFi信号发射器和信号接收器, 所述电源模块电连蓄电池
[权利要求 3] 根据权利要求 2所述的智能灭火器控制器, 其特征在于, 所述红外传 感器设置于灭火器控制器机体 (2) 的外部。
[权利要求 4] 根据权利要求 1所述的智能灭火器控制器, 其特征在于, 所述支撑机 构 (4) 包括固定连接于固定板 (3) 下端的底板 (9) , 所述底板 (9 ) 的下端固定连接有两块支撑块 (10) , 两块所述支撑块 (10) 相背 离的一端侧壁上均固定连接有卡板 (11) 。
[权利要求 5] 根据权利要求 1所述的智能灭火器控制器, 其特征在于, 所述限位机 构 (5) 包括设置于开口内壁上左右贯通的通孔, 所述通孔的顶面和 底部均水平设有滑槽 (12) , 所述滑槽 (12) 内设有与之相匹配的滑 块 (13) , 所述滑块 (13) 远离开口的一端侧壁上固定连接有第一伸 缩杆 (14) , 所述第一伸缩杆 (14) 远离滑块 (13) 的一端与滑槽 ( 12) 的内壁固定连接, 所述第一伸缩杆 (14) 上套设有第一弹簧 (15 ) , 所述通孔内贯穿插设有限位板 (16) , 所述限位板 (16) 的上下 两端分别与两块滑块 (13) 的相对侧壁固定连接, 所述限位板 (16) 的上端设有限位槽 (17) , 所述限位槽 (17) 呈楔形。
[权利要求 6] 根据权利要求 5所述的智能灭火器控制器, 其特征在于, 所述活动机 构 (6) 包括设置于保护壳 (1) 上端的沉孔 (18) , 所述沉孔 0 的 底部固定连接有多根第二伸缩杆 (19) , 多根所述第二伸缩杆 (19) 的上端固定连接有同一块连接块 (20) , 所述第二伸缩杆 (19) 上套 设有第二弹簧 (21) , 所述第二弹簧 (21) 的上下两端分别与连接块 (20) 的下端和沉孔 (18) 的底部固定连接, 所述连接块 (20) 的下 端固定连接有插板 (22) , 所述插板 (22) 的下端贯穿沉孔 (18) 的 底部并延伸至通孔内, 所述插板 (22) 的下端呈楔形状, 所述插板 ( 22) 与限位槽 (17) 活动连接。
[权利要求 7] 根据权利要求 1所述的智能灭火器控制器, 其特征在于, 所述冷却机 构 (7) 包括竖直设置于保护壳 (1) 内的两根 U型管 (23) , 两根所 述 U型管 (23) 靠近灭火器控制器机体 (2) 的一端侧壁上均设有内 外连通的缺口, 所述缺口内固定连接有热熔性板 (24) , 两根所述 U 型管 (23) 的上端分别贯穿保护壳 (1) 的顶面并延伸至其外部, 所 述保护壳 (1) 的上端水平设有两根连接管 (25) , 其中一根所述连 接管 (25) 内安装有风扇 (26) , 两根所述连接管 (25) 的左右两端 分别与两根 U型管 (23) 的两端固定连接并连通设置, 两根所述 U型 管和两根连接管 (25) 内均填充有抑燃烟气 (8) 。
[权利要求 8] 根据权利要求 7所述的智能灭火器控制器, 其特征在于, 所述抑燃烟 气 (8) 为二氧化碳和干粉所混合的烟雾, 混合比例为 10: 1。
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