A grenade throwing fire extinguishing bomb
A technology for fire-extinguishing bombs and grenades, which is applied in fire rescue and other directions, can solve the problems of inconvenient use of automatic fire-extinguishing devices, and achieve the effects of being conducive to controlling fire, ensuring safety and necessity, and expanding scope.
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Embodiment 1
[0054] A grenade thrown fire extinguisher, see figure 2 , the hollow cavity is in the shape of a water drop with bumps on the outside of the outer wall. The hollow cavity has a built-in 0.2-0.3kg fire extinguishing fluid and is vertically divided into four equal chambers, corresponding to four temperature sensing heads and four igniters. , No. 1, No. 2, No. 3, and No. 4 temperature sensor heads correspond to the four igniters No. 1, No. 2, No. 3, and No. 4.
[0055] The fire extinguishing bomb is thrown to the periphery of the fire field after the upper cover is pulled, and the controller starts to start the upper cover delay of the igniter after receiving the signal from the upper cover sensor, which is 12s.
[0056] Then, the controller receives the temperatures of No. 1, No. 2, No. 3, and No. 4 temperature sensing heads as 222°C, 459°C, 324°C, and 307°C respectively, and starts the temperature delay; the four temperature sensing heads press the temperature The order is No...
Embodiment 2
[0060] A grenade-type throwing fire extinguishing bomb. The hollow cavity is in the shape of a water drop with bumps on the outer wall. The hollow cavity contains 0.2-0.3kg of fire extinguishing fluid. It is vertically divided into two equal chambers, corresponding to two temperatures. The sensor head and two igniters, the two temperature sensor heads No. 1 and No. 2 correspond to the two igniters No. 1 and No. 2.
[0061] The fire extinguishing bomb is thrown into the fire field after the upper cover is pulled, and the controller starts to start the upper cover delay of the igniter after receiving the signal from the upper cover sensor, which is 10s.
[0062] Then, the controller receives the temperatures of No. 1 and No. 2 temperature sensing heads as 559°C and 621°C respectively, and starts the temperature delay; the two temperature sensing heads are sorted by temperature as No. 1 and No. 2, and the top 1 The delay of No. 1 igniter corresponding to No. 1 temperature sensing...
Embodiment 3
[0065] A grenade-type throwing fire extinguishing bomb. The hollow cavity is in the shape of a water drop with bumps on the outer wall. The hollow cavity contains 0.2-0.3kg of fire extinguishing fluid. It is vertically divided into two equal chambers, corresponding to two temperatures. The sensor head and two igniters, the two temperature sensor heads No. 1 and No. 2 correspond to the two igniters No. 1 and No. 2.
[0066] The fire extinguishing bomb is thrown into the fire field after the upper cover is pulled, and the controller starts to start the upper cover delay of the igniter after receiving the signal from the upper cover sensor, which is 6s.
[0067] Then, the controller receives the temperatures of No. 1 and No. 2 temperature sensing heads as 559°C and 643°C respectively, and starts the temperature delay; the two temperature sensing heads are sorted by temperature as No. 1 and No. 2, and the top 1 The delay of No. 1 igniter corresponding to No. 1 temperature sensing ...
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