Disclosure of Invention
The invention aims to provide an indoor fire-fighting truck, which aims to solve the problems of the prior fire-fighting truck in the use process in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: an indoor fire-fighting van, comprising;
the bearing platform comprises a horizontal platform body and a vertical platform body, and the change of the shape of the bearing platform is realized through the rotation of an expansion part in the horizontal platform body, so that the occupied area of the bearing platform is changed;
the fire water monitor is integrally arranged on the vertical platform body, when the fire water monitor works, the bearing platform is deformed into a horizontal state, and the recoil force generated when the fire water monitor sprays is counteracted by means of the supporting action of the ground on the expansion part;
and the moving component is arranged on the horizontal platform body so as to realize the movement of the fire fighting truck and the adjustment of the horizontal height of the vertical platform body.
Preferably, the vertical platform body and the horizontal platform body extension part are respectively provided with a pressure bearing balancing rod and an up-down rotating handle, so as to assist in realizing the transformation of the bearing platform.
Preferably, the fire water monitor comprises a connecting part, a supporting seat, a flow collecting part and a water gun, and fire water sequentially flows through the connecting part, the supporting seat and the flow collecting part through a pipeline assembly and is sprayed out of the water gun.
Preferably, the supporting seat is in a T shape, and the fire fighting water branched by the supporting seat is gathered in the flow collecting part and is ejected from the water gun.
Preferably, the fire monitor further comprises a handle member fixed to the manifold member.
Preferably, the fire hose car still includes that detachable installs control box on the fire water monitor, just be furnished with on the fire water monitor to being in high temperature environment the spray assembly that the control box cooled down.
Preferably, the spraying assembly comprises a cooling pipeline communicated with the collecting part, and a branch pipeline I and a branch pipeline II extending from the cooling pipeline.
Preferably, valves are arranged on the first branch pipeline and the second branch pipeline, and water outlets of the first branch pipeline and the second branch pipeline are connected with universal bamboo joint pipes for cooling in any direction.
Preferably, the vertical table body is a storage box for placing auxiliary rescue equipment.
Compared with the prior art, the invention has the beneficial effects that:
1. the specially-made flap folding design of the indoor fire fighting truck reduces the shape and the volume of the indoor fire fighting truck during daily furnishing and daily standby war, ensures that the indoor fire fighting truck is leaned against the combination of an indoor fire hydrant cabinet, is convenient to take, has similar size and thickness, and does not enlarge the occupied space of the original circulation channel or fire fighting channel; the whole indoor fire hydrant equipment system which participates in the fire disaster enables a first finder of the fire disaster to be connected with and control the whole equipment system, the fire disaster equipment system is thrown into the first person at once to save oneself, the fire disaster extinguishing system plays a positive role in extinguishing the initial fire disaster and restraining the spreading and expanding of the fire disaster, the fire disaster equipment system also plays a positive role in comprehensively extinguishing the fire disaster in the primary fire disaster, precious time is won for professional rescue teams, and the original indoor fire hydrant equipment system is further perfected.
2. By arranging the bearing platform capable of being converted between the vertical state and the horizontal state and taking the bearing platform as a bearing carrier of the fire water monitor, when the bearing platform is deformed into the horizontal state, the recoil force generated when the fire water monitor sprays can be counteracted by means of the supporting effect of the ground on the expansion part, and the safety of rescue workers during rescue operation is improved.
3. The fire water monitor is necessary hardware for implementing the fire extinguishing operation of rapidly scanning fire points in a multi-azimuth, multi-angle and large-range itinerant type, can rotate in the horizontal direction, and simultaneously can rotate in the vertical direction by the flow collecting part and the water gun, so that the omnibearing adjustment of the spraying angle can be realized; the fire water monitor is organically combined with the bearing platform, so that rescue workers can more conveniently carry out rescue operation.
4. Through set up the manometer on the fire water monitor, the fire control water pressure in the system can be known directly perceivedly to the rescue personnel when operating the fire water monitor and putting out a fire the operation.
5. According to the indoor fire-fighting box car, the flow collecting component, the cooling pipeline and the water spraying pipeline which are communicated with the pipeline in the pipeline assembly are arranged to guide partial fire-fighting water, the water outlet directions of the cooling pipeline and the water spraying pipeline are adjusted by matching with the bamboo joint pipes, fire-fighting normal-temperature water can be continuously sprayed to different positions on the box car and different positions on the outer surface of a human body of a fire fighter wearing the fire-fighting heat insulation suit in fire rescue operation, so that the indoor fire-fighting box car, equipment in the indoor fire-fighting box car, electric components carried by the indoor fire-fighting box car and the fire fighter can be continuously cooled in a high-temperature environment radiated by the fire scene, and the normal operation of the equipment and the personal safety of the fire fighter are ensured.
6. The storage box in the indoor fire-fighting truck is used for storing and placing some attack-assisting emergency material equipment in the whole process of fire operation; the environment-friendly water-based throwing fire-extinguishing bottle in the storage box creates an organic condition for sweeping local obstacles away for indoor fire-fighting truck system equipment to be put into a battle by being put into use and generating a place space which is instantly extinguished and is not re-burned when the fire situation is large and difficult to enter at the first time when the fire scene enters; the floating-charging type fire-fighting flashlight in the storage box is arranged on a fire-fighting safety helmet after fire extinguishment is finished, and plays a necessary illumination role for checking the fire-fighting effect condition of a scene and evacuating the scene at the night of power failure during fire-fighting and rescue; the fire axe in the storage box plays a necessary role in removing obstacles in the moving or parking rescue fire extinguishing process of boxcar equipment; after fire-fighting rescue is basically finished, the fire blanket in the storage box is subjected to on-site fire-fighting effect condition inspection, and a covering pressurization consolidation and supplementation fire-fighting action is carried out on existing micro-ignition points which are not completely extinguished and possibly reburning, so that positive effects are played for completely extinguishing and emergently evacuating the site; the conventional squirt in the storage box reaches basic control at the rescue effect of putting out a fire, and after the condition of a fire is less, also can use it and bear high pressure segmentation hosepipe lug connection, control relative moderate degree play water pressure and carry out the scene consolidation nature action of putting out a fire of handing the squirt in a relatively flexible way, also can reach the effect of thoroughly putting out a fire.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 5, an indoor fire fighting truck (hereinafter referred to as a truck for short) includes a main body including a bearing platform 100 and a fire fighting monitor 300, which are integrally designed, wherein the bearing platform 100 includes a horizontal platform 110 disposed along a horizontal direction and a vertical platform 120 disposed along a vertical direction, the fire fighting monitor 300 is mounted on the vertical platform 120, and the fire fighting monitor 300 is connected to a hose through a pipe assembly 400, when in use, fire fighting water flows through the hose and the pipe assembly 400, and is finally sprayed out through the fire fighting monitor 300, for convenience of description, the X-axis direction and the Z-axis direction in fig. 1 are respectively recorded as the length directions of the horizontal platform 110 and the vertical platform 120, and the lengths of the horizontal platform 110 and the vertical platform 120 are respectively recorded as L and H.
Specifically, the horizontal platform body 110 includes a fixing portion 111 and an expanding portion 112, both the fixing portion 111 and the expanding portion 112 are plate-shaped members, and the expanding portion 112 is rotatably connected to one end of the fixing portion 111, that is, the expanding portion 112 can rotate around the connecting position of the fixing portion 111, so as to receive and release the expanding portion 112, and further change the overall shape of the carrying platform 100, thereby being suitable for different working scenes.
Specifically, the lengths of the fixed part 111 and the expanded part 112 are respectively designated as L1 and L2, when the expanded part 112 is folded, the expanded part 112 rotates to a vertical position, namely, parallel to the vertical platform 120, and the state is designated as a vertical state, only the fixed part 111 of the horizontal platform 110 is horizontally placed, so that the floor area of the whole load-bearing platform 100 is reduced, the placing operation of the boxcar is simplified, when the expanded part 112 is lowered, the expanded part 112 rotates to a horizontal position, and at this time, the fixed part 111 and the expanded part 112 are spliced together to form a plate component, namely, the expanded part 112 and the fixed part 111 are jointly spliced to form the plate-shaped horizontal platform 110, and the state is designated as a horizontal state, correspondingly, the length L = L1+ L2 of the horizontal platform 110, namely, the extension of the horizontal platform 110 in the length direction is realized by the lowering of the expanded part 112, so that the contact length of the horizontal platform 110 with the ground in the length direction is increased, the recoil force generated when the fire monitor 300 is sprayed is offset by the acting force of the extension part partially facing the box wagon, so that the stable operation of the box wagon can be ensured.
Further, referring to fig. 1, in order to improve the stability of the boxcar during the use when the supporting platform 100 is in the horizontal state, the vertical platform 120 further includes pressure-bearing balance bars 130 disposed on the front and rear end surfaces of the vertical platform 120, and when the supporting platform 100 is in the horizontal state, the upper ends of the pressure-bearing balance bars 130 can be rotated to contact with the ground to provide an auxiliary supporting force for the boxcar.
Further, the extension part 112 is further provided with an up-down rotating handle 140 for assisting the rescue workers to complete the extension and retraction of the extension part 112.
When the boxcar is in an idle state, the expansion part 112 rotates to a vertical position, so that the whole floor area of the boxcar is reduced, the boxcar is convenient to store, and meanwhile, the daily life of people cannot be influenced, when a fire disaster occurs, a fireman pushes the boxcar into a fire fighting area, rotates the expansion part 112 to a horizontal position, stands on the horizontal platform body 110, operates the fire water monitor 300 to spray fire water to extinguish the fire, at the moment, the length L = L1+ L2 of the horizontal platform body 110 is not less than H, the recoil generated when the fire water monitor 300 is sprayed is offset by the supporting force of the bottom surface to the horizontal platform body 110, on one hand, the stability of the fire water monitor 300 during fire extinguishing operation can be improved, on the other hand, by means of the supporting effect of the boxcar, the fire water generated when the fire water monitor 300 is sprayed cannot directly act on the fireman, the fireman can select high-pressure fire water for fire fighting operation all the time while the fireman is convenient to operate, the rescue efficiency is improved.
Further, this boxcar still includes the moving part 200 of installing on horizontal stage body 110, and this moving part 200 includes the support piece that sets up in the removal wheel of the four corners of fixed part 111 bottom and set up in extension 112 bottom surface cell body, realizes the removal of boxcar and the regulation of vertical stage body 120 level through setting up moving part 200.
Specifically, pipe assembly 400 includes vertical section 401 and horizontal segment 410, and vertical section 401 is whole to be located the storage box inside and extend to the top of storing the box, and vertical section 401's top is passed through adapting unit 500 and is connected with fire water monitor 300 subassembly, and horizontal segment 410 is located the below of load-bearing platform 100, and the one end and the vertical section 401 of horizontal segment 410 are connected, and the other end of horizontal segment 410 passes through hosepipe and outside water source connection, supplies water to fire water monitor 300 through pipe assembly 400.
Further, the extension part 112 includes a main body part and an extension part, wherein the extension part is rotatably connected to the front and rear ends of the main body part, and the folding and unfolding processes of the extension part and the horizontal stage body 110 are performed synchronously, so as to further increase the floor area of the horizontal stage body 110 in a horizontal state and improve the stability of the boxcar during operation.
Referring to fig. 3 and 4, the fire monitor 300 integrally includes a support base 301, a water gun 310 and a collecting member 320 for connecting the water gun 310 and the support base 301, specifically, the support base 301 is T-shaped and includes an input end and two output ends, wherein the input end is connected to the pipe assembly 400 through a connecting member 500, and the support base 301 integrally can rotate around the axis of the connecting member 500, so as to adjust the horizontal angle of the fire monitor 300; the flow collecting part 320 is provided with two input ends and one output end, the input end of the flow collecting part 320 is connected with the output end of the supporting seat 301, the output end of the flow collecting part 320 is connected with the water gun 310, meanwhile, the flow collecting part 320 is rotatably connected with the supporting seat 301, namely, a combination body of the flow collecting part 320 and the water gun 310 can rotate around the axis of the output end of the supporting seat 301, the support seat 301 is matched to rotate around the axis of the connecting part 500, the horizontal and vertical angle adjustment of the flow collecting part 320 and the water gun 310 can be realized, and the multi-angle fire extinguishing operation is realized.
Further, the fire monitor 300 further comprises an angle fixing mechanism 330 for fixing the position of the flow collecting member 320, specifically, the angle fixing mechanism 330 comprises fixing holes 331 arranged at the corresponding positions of the output end of the supporting base 301 and the input end of the flow collecting member 320, a supporting plate 332 fixed on the flow collecting member 320, and through holes 332a for the locking posts 333 to pass through are arranged on the supporting plate 332, and the locking posts 333 are pulled by external force to enter and separate from the fixing holes 331, so that the fixing and releasing of the flow collecting member 320 can be realized.
Further, in order to control the movement of the fire monitor 300, the fire monitor 300 further includes a handle member 600 fixed to the manifold member 320, the handle member 600 is fixedly connected to the manifold member 320, and a fire fighter can control the spraying angle of the fire monitor 300 by operating the handle member 600.
Further, still be equipped with detachable control box 900 on this boxcar, be equipped with control button and signal transmitter on this control box 900 for the operation of other parts in the remote control fire extinguishing systems, further, this fire fighter can also take out control box 900, remote control fire control water yield and water pressure, and the water pressure can be surveyd in real time through manometer 850 to the rescue personnel simultaneously.
Meanwhile, in order to ensure that the electrical components in the control box 900 can stably operate and ensure the safety of fire fighters, the box car is also provided with a spraying assembly 800 for cooling the box car and human bodies in consideration of the high-temperature environment in the fire scene.
Specifically, the spraying assembly 800 includes a cooling pipe 801, the cooling pipe 801 is connected to the collecting part 320, that is, the water inlet end of the cooling pipe 801 is connected to the pipe in the collecting part 320, fire-fighting water is used as the water source of the spraying assembly 800, and the spraying assembly 800 further includes two branch pipes led out from the cooling pipe 801, which are respectively marked as a first branch pipe 810 and a second branch pipe 820, each branch pipe is provided with a valve for controlling the on-off of the branch pipe, and the water outlets of the first branch pipe 810 and the second branch pipe 820 are connected to a bamboo joint pipe 830, the water outlet directions of the first branch pipe 810 and the second branch pipe 820 can be adjusted through the bamboo joint pipe 830, when in use, the water outlets of the first branch pipe 810 and the second branch pipe 820 face the control box 900, the control box 900 is sprayed by the casing of the control box 900 to cool the control box 900, so as to ensure that the electronic components in the control box 900 can still normally operate in a fire environment, meanwhile, a water spraying pipe 840 is led out of the pipe assembly 400 and used for cooling the human body.
Further, the vertical platform 120 is a storage box for accommodating auxiliary rescue equipment such as thermal insulation clothes, gas masks, flashlights and the like, and the auxiliary rescue equipment and the whole vehicle can enter a fire scene together with the vertical platform, so that rescuers can selectively use the auxiliary rescue equipment according to the scene conditions.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.