WO2011121889A1 - 消火ガス噴射器 - Google Patents
消火ガス噴射器 Download PDFInfo
- Publication number
- WO2011121889A1 WO2011121889A1 PCT/JP2011/001177 JP2011001177W WO2011121889A1 WO 2011121889 A1 WO2011121889 A1 WO 2011121889A1 JP 2011001177 W JP2011001177 W JP 2011001177W WO 2011121889 A1 WO2011121889 A1 WO 2011121889A1
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- WO
- WIPO (PCT)
- Prior art keywords
- fire extinguishing
- extinguishing gas
- cylinder
- cam
- housing
- Prior art date
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Classifications
-
- A—HUMAN NECESSITIES
- A62—LIFE-SAVING; FIRE-FIGHTING
- A62C—FIRE-FIGHTING
- A62C13/00—Portable extinguishers which are permanently pressurised or pressurised immediately before use
- A62C13/76—Details or accessories
-
- A—HUMAN NECESSITIES
- A62—LIFE-SAVING; FIRE-FIGHTING
- A62C—FIRE-FIGHTING
- A62C13/00—Portable extinguishers which are permanently pressurised or pressurised immediately before use
- A62C13/62—Portable extinguishers which are permanently pressurised or pressurised immediately before use with a single permanently pressurised container
-
- A—HUMAN NECESSITIES
- A62—LIFE-SAVING; FIRE-FIGHTING
- A62C—FIRE-FIGHTING
- A62C99/00—Subject matter not provided for in other groups of this subclass
- A62C99/0009—Methods of extinguishing or preventing the spread of fire by cooling down or suffocating the flames
- A62C99/0018—Methods of extinguishing or preventing the spread of fire by cooling down or suffocating the flames using gases or vapours that do not support combustion, e.g. steam, carbon dioxide
Definitions
- the present invention is suitable for, for example, a vehicle-mounted fire extinguishing gas injector, and can safely and easily break a gas cylinder without requiring a safety member for preventing breakage when not in use and its removal operation. Prevents unnecessary expenses for fire extinguishing gas, injects fire extinguishing gas to the source of fire reliably and accurately, and can effectively perform initial fire extinguishing, and promptly notify others when troubles such as night vehicles occur. While emergency measures and safety can be ensured, in the event of a vehicle emergency such as a vehicle fire or a collision accident, the seat belt can be quickly cut, and the windshield can be crushed to ensure quick exit from the passenger compartment.
- the present invention relates to a fire extinguishing gas injector.
- a general fire extinguisher installed in a home or a factory has a problem that it is large and heavy, requires an arm for a fire extinguishing operation, and is generally difficult to use. For this reason, various simple fire extinguishing tools which are small and light and can be used easily have been proposed as solutions to the above problems.
- a gas cylinder is accommodated inside a pipe body with a cover attached, a dish-shaped nozzle having an injection hole formed at the lower end thereof, and a pusher guide body at the upper end portion of the pipe body , Slidably install a pusher with a firing needle attached to the guide body, attach a cylinder receiver to the inside of the pusher guide body, and screw a mouth screw of a gas cylinder to the receiver. Is inserted to prevent the movement.
- the fire extinguisher requires a safety plate to prevent tearing when not in use, and it is difficult to understand the operation of the safety plate during firefighting during firefighting, and it is difficult to pull out the safety plate because the grip is small.
- the blown gas is guided to the gap between the pipe body and the gas cylinder and is injected from the injection hole on the side opposite to the broken position.
- the initial fire extinguishing is difficult to be effective due to a decrease, and the blown gas remaining after the breakage remains inside the pipe body, making it impossible to use the entire amount of the filling gas.
- a cylinder body containing a gas cylinder is screwed to the upper cover body so as to be movable up and down, and a stopper that can be engaged with the lower end of the upper cover body is provided at the upper part of the cylinder body. While preventing the upward movement of the cylinder, an insertion part with a firing needle attached to the upper cover body is projected downward, and a cylinder fitting body to which a gas cylinder can be screwed is attached to the upper end of the cylinder.
- the tip of the firing pin is positioned directly above the sealing plate, and at the time of extinguishing the fire, the cylinder is turned upward while pressing the stopper to break the gas, and the fire extinguishing gas is ejected to the outside from the injection hole (for example, see Patent Document 2).
- the fire extinguishing tool requires a stopper to prevent the tearing when not in use, and requires many rotating operations of the cylinder when the tearing is broken, which makes the tearing operation cumbersome and troublesome and quickly extinguishes the fire.
- the fire extinguishing gas instantaneously spouts after being broken, it is difficult to accurately spout the fire extinguishing gas toward the fire source, and there is a problem that the effectiveness of initial fire fighting cannot be obtained.
- the applicant arranges a cylinder holder that holds a gas cylinder inside the upper and lower cases and a tear holder that protrudes a needle tube so as to be able to move close to and away from each other.
- a control valve that can be closed at all times is attached to the communication path of the tank, and after extinguishing the fire extinguishing gas, the fire extinguishing gas is retained in the cylinder holder through-hole and the passage of the sealing holder, and the control valve is opened by operating the operation lever.
- a fire extinguisher has been developed in which gas is ejected from a nozzle and reliably and effectively injected into a fire source (see, for example, Patent Document 3).
- the fire extinguisher can reliably and effectively inject the fire extinguishing gas after the breakage into the fire source, but it requires a safety ring for preventing the breakage when not in use between the upper and lower cases, increasing the number of parts.
- the attaching / detaching operation is complicated.
- a simple fire extinguisher is desired to be installed in a car in addition to being installed in a home or office, etc. and capable of responding to a car fire.
- a simple fire extinguisher for vehicle installation in that case, what was provided with the escape function from a motor vehicle other than a fire extinguishing function, and was able to aim at escape from a passenger compartment at the time of emergency, such as a collision accident, was desired.
- the applicant attaches a severing rod to a cylinder holder capable of holding a gas cylinder so as to be movable up and down, attaches an outer cylinder to the outside of the cylinder holder, and attaches it to one side of the outer cylinder.
- a seat belt introduction groove and a cutter are provided, and a hammer member is provided at the bottom of the gas cylinder that is exposed to the outside.
- the fire extinguishers are for in-vehicle use and have a function to escape from the passenger compartment in the event of an emergency such as a vehicle fire, and can respond to emergency situations. If such troubles occur at night, the troubles can be promptly reported to others. Since there is no means for notifying them, there is a concern of inducing traffic accidents, and the solution has been desired in advance.
- the present invention solves such a problem, and is suitable for, for example, a vehicle-mounted fire extinguishing gas injector, and safely and easily breaks a gas cylinder without requiring a safety member for preventing tearing when not in use and its removal operation. It can be sealed, and after it is broken, it can prevent the expense of fire extinguishing gas, inject fire extinguishing gas toward the source of fire reliably and accurately, and can be effective for initial fire extinguishing. In the event of an emergency such as a vehicle fire or a collision accident, the seat belt should be cut quickly to ensure that the windshield is crushed and quickly removed from the passenger compartment.
- An object of the present invention is to provide a fire extinguishing gas injector capable of escape.
- a housing that forms an outer periphery, a mouth portion of a gas cylinder that is filled with a fire extinguishing gas and seals a sealing plate, is detachably attached, a cylinder holder that has a through hole formed therein, and the through hole is slid.
- a needle tube that is movably movable and that allows the sealing plate to be ruptured via a pointed portion provided at a lower end portion, and a communication hole that is conductive to the needle tube and the through-hole and a nozzle hole that is open to the outside;
- a fire extinguishing gas injector having a severing device comprising: a transparent or translucent translucent member; and a plurality of lamps arranged on the inside of the housing so as to be able to flash or light up.
- an illumination tube having a plurality of lamps arranged on the peripheral surface is provided inside the housing so that the lamps can be arranged, assembled and wired easily.
- an operation lever provided with a contact point on the housing is rotatably provided, and a contact panel that can contact the contact point is provided on the peripheral surface of the illumination tube, so that the lighting operation of the lamp is facilitated.
- the power supply circuit open / close structure with both contacts is configured easily and inexpensively.
- the lamp can be blinked or lit through the turning operation of the operation lever before the gas cylinder is opened or after the gas cylinder is opened. It is possible to cope with each.
- the contact is formed by a coil spring or a leaf spring, allowing a slight shift or swinging of the operation displacement of the operation lever, providing flexibility in the contact operation with respect to the contact panel, and securing the lamp. Blinks or lights up.
- the invention of claim 6 is characterized in that cam pins project in two positions in the diameter direction of the cylinder holder peripheral surface, and two cam grooves are formed in a helical shape at symmetrical positions on the peripheral surface of the illumination cylinder, A cam pin is slidably engaged, the cylinder holder is rotatably mounted inside the illumination cylinder, and the gas cylinder is rotated to be sealed.
- each cam groove is formed in a range of about 90 ° on the peripheral surface of the illumination cylinder, and the gas cylinder can be quickly sealed as compared with the conventional structure in which the gas cylinder is rotated a plurality of times. The sealed space is made compact.
- a locking piece engageable with the cam pin is provided on the lower end side of each cam groove so as to be broken or bendable, and the locking piece is configured as a breakage preventing means.
- the stopper is broken or bent to easily release the anti-seal, so that the conventional procedure for releasing the anti-seal can be eliminated, and the seal can be quickly opened.
- the locking piece is integrally formed with the lighting tube
- the breakage prevention means is formed integrally with the lighting tube
- a separate component structure of the conventional breakage prevention means is eliminated.
- the number of points is reduced and the configuration is simplified, so that it can be manufactured easily and inexpensively.
- the invention according to claim 10 is provided with a locking piece engageable with the cam pin on the lower end side of each cam groove so as to be movable up and down, and can be reused without breaking or folding the locking piece.
- the convenience of the apparatus can be improved.
- the cam pin after the rupture, the cam pin is moved to the lower end side of each cam groove, and the movement of the cam pin is restrained so that a new gas cylinder can be replaced. To be able to prevent.
- a cylinder holder in which at least one cam pin is formed in a tubular shape, a lock pin is inserted into the tubular cam pin from the outside of the breaking device, the lock pin can be restrained, and the lock pin is fixed. It prevents rotation and prevents breakage when replacing a new gas cylinder.
- the operation lever is rotatably disposed on one side of the housing, a seat belt introduction groove is disposed on the other side of the housing, and a cutter is disposed so as to face the introduction groove.
- the seat belt is cut quickly so that the passenger can quickly escape from the passenger compartment.
- a belt escape portion having a substantially inverted triangular cross section is provided at the back of the seat belt introduction groove so that the seat belt can be cut smoothly and quickly so that the seat belt can quickly escape from the passenger compartment in an emergency. I have to.
- the lamp battery is housed inside the lower part of the other side of the housing, and the space of the housing is effectively used to make the breaking device compact.
- a control valve that can be normally closed is provided in the communication hole, the control valve can be opened through the operation of the operation lever, and the fire extinguishing gas after being pierced passes through the communication hole. The fire extinguishing gas is prevented from being wasted by temporarily staying in the hole, and the fire extinguishing gas is accurately injected toward the fire source through the operation of the operation lever so that the initial fire extinguishing is effective.
- the invention according to claim 17 is provided with a hammer member having a pointed portion at the bottom of the gas cylinder, through which the windshield of the vehicle can be crushed, and through the hammer member in a vehicle emergency such as a vehicle fire or a collision accident.
- the window glass is reliably crushed so that it can be quickly removed from the passenger compartment to ensure safety.
- the housing is formed of a transparent or translucent light-transmitting member, and a plurality of lamps are arranged in the housing so as to be able to blink or light up. It is possible to promptly notify the occurrence of trouble to others, and to ensure first aid and safety.
- the illumination tube having a plurality of lamps arranged on the peripheral surface is provided inside the housing, the lamps can be easily arranged, assembled and wired.
- the operation lever provided with the contact point on the housing is rotatably provided, and the contact panel that can contact the contact point is provided on the peripheral surface of the illumination tube, the lighting operation of the lamp can be easily performed.
- the contact is formed by a coil spring or a leaf spring, the operation displacement of the operation lever is allowed to be somewhat shifted and oscillated, the contact operation with respect to the contact panel is made flexible, and the lamp is provided. It can be reliably blinked or lit.
- the invention of claim 6 is characterized in that cam pins project in two positions in the diameter direction of the cylinder holder peripheral surface, and two cam grooves are formed in a helical shape at symmetrical positions on the peripheral surface of the illumination cylinder, Since the cam pin is slidably engaged and the cylinder holder is rotatably mounted inside the illumination tube, the gas cylinder can be rotated to be sealed.
- each of the cam grooves is formed in a range of about 90 ° of the peripheral surface of the illumination cylinder, the gas cylinder can be quickly sealed as compared with the conventional structure in which the gas cylinder is operated to rotate a plurality of times. It is possible to reduce the size of the sealed space.
- the locking piece engageable with the cam pin is provided on the lower end side of each cam groove so as to be broken or bendable, the locking piece can be configured as a breakage preventing means. It is possible to easily break the latching piece by breaking or folding it, easily releasing the breakage, and eliminating the trouble of the conventional breakage prevention release operation.
- the breakage prevention means is formed integrally with the lighting tube, and a separate part configuration of the conventional breakage prevention means is eliminated.
- the number of parts can be reduced, the configuration can be simplified, and it can be manufactured easily and inexpensively.
- the locking piece engageable with the cam pin is provided on the lower end side of each cam groove so as to be movable up and down, the locking piece can be reused without being broken or bent. The convenience of the sealing device can be improved.
- since the cam pin is moved to the lower end side of each cam groove after the breakage and the movement of the cam pin is restrained so that the new gas cylinder can be replaced. Breaking can be prevented.
- At least one cam pin is formed in a tubular shape, and the lock pin is inserted into the tubular cam pin from the outside of the breaking device so that the lock pin can be restrained. Can be prevented, and can be prevented from being broken when a new gas cylinder is replaced.
- the operation lever is rotatably disposed on one side of the housing, and a seat belt introduction groove and a cutter are disposed on the other side of the housing so as to face the introduction groove.
- the seat belt can be quickly cut and the vehicle can be quickly evacuated.
- a belt escape portion having a substantially inverted triangular cross section is provided at the back of the seat belt introduction groove, the seat belt is easily and promptly cut and quickly escapes from the passenger compartment in an emergency. Can do.
- the lamp battery is accommodated inside the lower part of the other side of the housing, the space of the housing can be effectively used, and the breakage device can be made compact.
- a control valve that can be normally closed is provided in the communication hole, and the control valve can be opened through operation of the operation lever.
- the control valve can be opened through operation of the operation lever.
- FIG. 3 is a cross-sectional view taken along the line AA in FIG. 2 and shows a state of opening the power supply circuit of the lamp.
- FIG. 3 is a sectional view taken along line BB in FIG. 2.
- FIG. 8 is a plan view of FIG. 7.
- FIG. 8 is a cross-sectional view taken along the line CC of FIG.
- FIG. 8 is a right side view of FIG. 7.
- FIG. 8 is a rear view of FIG. 7.
- FIG. 8 is a plan view of FIG. 7.
- FIG. 6 is an explanatory diagram showing the operating state of the cam pin, where (a) shows a normal state where the cam pin is positioned so as to be engageable with the locking piece, and (b) shows that the cam pin is engaged with the locking piece; (C) shows the situation immediately after the start of the breaking operation in which the stop piece is bent, (c) shows the breakage prevention release situation in which the locking piece is broken after the cam pin is engaged with the locking piece, (d) Shows a situation just before the breakage where the locking piece is broken and falls into the cam groove and the locking pin further moves upward.
- (C) shows the situation immediately after the start of the breaking operation in which the locking piece is engaged and the locking piece is bent, and (c) shows that the locking piece is moved downward after the cam pin is engaged with the locking piece.
- (D) shows the situation when the cylinder holder is rotated by about 90 °, and (e) shows the situation when the cylinder holder is rotated backward by about 90 ° after the opening. This shows the situation at the time of cylinder replacement in which the cylinder is returned to its original position and the lock pin is inserted into the cam pin to restrict movement. It is sectional drawing which expands and shows the restraint condition of the cam pin by a lock pin.
- FIGS. 1 to 20 1 is a small-sized one filled with carbon dioxide as a fire extinguishing gas.
- a screw part 3 is formed in the mouth part of the gas cylinder 1, and the screw part 3 is screwed and attached to the lower part of the breaking device 2.
- the gas cylinder 1 of the embodiment has an outer diameter of about 40 mm, a length of about 130 mm, and a tare of about 90 ml, and is filled with carbon dioxide of about 4 MPa inside, and has a weight after filling of about 300 g.
- the sealing plate 4 is sealed at the mouth, and a hammer member to be described later is attached to the bottom.
- the breaking device 2 is housed in a housing 5 made of a synthetic resin that forms an outer shell, an operation lever 6 made of synthetic resin that is pivotably attached to the peripheral surface of the housing 5, and an inside of the housing 5.
- the illumination cylinder 7 made of synthetic resin, the breaking holder 8 accommodated inside the illumination cylinder 7, and the cylinder holder 9 capable of holding the gas cylinder 1 are configured.
- the housing 5 is formed in a cylindrical body with a transparent or translucent light-transmitting synthetic resin, and the cylindrical body is formed by bonding a pair of housing pieces 5a and 5b divided in the longitudinal direction.
- Engagement grooves 10a, 10b and 11a, 11b and concave curved grooves 12a, 12b are formed at the joints of the pieces 5a, 5b, and pin holes 12 are formed at the upper ends of the engagement grooves 11a, 11b.
- 12c and 12d are engaging walls provided on the inner surfaces of the lower ends of the concave curved grooves 12a and 12b, and are arranged to be engageable with the lower end of the operating lever 6.
- an engagement groove 13 that can be engaged with the outer peripheral surface of the illumination tube 7 and an engagement groove 14 that can be engaged with a plurality of warning lights attached to the illumination tube 7 are formed on the inner surfaces of the housing pieces 5a and 5b.
- a large number of recesses are formed on the inner surface of the engagement groove 14 in the form of a dotted pattern, or are subjected to texturing so that the light of the warning lamp can be irregularly reflected.
- the operating lever 6 is formed of a transparent or semi-transparent translucent synthetic resin in a substantially L shape, and a substantially semi-cylindrical convex portion 6a is provided on the upper end portion thereof, and a pin 15 is provided on the convex portion 6a. It is protruding.
- the operation lever 6 is rotatably and slidably disposed between the molding grooves 10a and 10b and 11a and 11b.
- the pin 15 is inserted into the pin hole 12, and is attached to be rotatable about the pin 15.
- the lower end part which is an operation part is arrange
- 16 is a vertically long through hole formed in the middle part of the operation lever 6, and a later-described injection cylinder protruding from the illumination cylinder 7 can be inserted
- 17 is the rear side of the housing piece 5a, 5b.
- a pair of pins 18 project in the vicinity of the seat belt introduction groove provided on the front side, a cutter 19 is attached to the pin 18, and the blade edge 19a faces the sheet belt introduction groove 17 and is disposed in a slanting manner. is doing.
- Inverted triangular belt relief pieces 20a and 20b that gradually increase in width toward the back side are projected at the back of the seat belt introduction groove 17, and these are joined together when the housing pieces 5a and 5b are bonded.
- a triangular belt relief 20 is formed.
- reference numeral 21 denotes a convex portion protruding from the upper lower surface of the operation lever 6 and is disposed so as to be engageable with a spring receiver described later.
- the illumination tube 7 is formed in a substantially octagonal column shape having a hollow chamber 22 inside, and four vertically long rectangular lamp mounting grooves 23 are formed at equiangular positions on the outer periphery of the upper half, and an intermediate portion of the lamp mounting groove 23 is formed.
- a board mounting groove 24 is formed in the board mounting groove 24, and a board 26 to which two warning lights 25 as lamps are mounted is detachably mounted.
- red LEDs that consume less power and have excellent light directivity and call attention are used. Two of these LEDs are arranged above and below the substrate 26, and the wiring 27 is connected to the substrate 26. Located on the back side.
- the warning lamp 25 is turned on to light up or blink. In the case of the embodiment, each LED blinks at an appropriate period.
- One end of the contact 35 is attached to the inner surface of the operation lever 6 and the other end is formed as a free end.
- the contact 35 moves with the operation lever 6 to provide a degree of freedom in contact with the contact panel 28, and others.
- the warning lamp 25 can be turned off by always separating the end portion from the contact panel 28. Then, the operation lever 6 is gripped and rotated around the pin 15, and the contact 35 is brought into contact with the contact panel 28 so that the warning lamp 25 can be turned on.
- the contact point 35 of the embodiment is separated after contact with the contact panel 28 and can be turned off when it is contacted again.
- Helical cam grooves 30 a and 30 b are formed at symmetrical positions in the middle and high parts of the illumination tube 7, and the length of the cam grooves 30 a and 30 b is approximately 90 ° from the center of the hollow chamber 22 or the cylinder holder 9.
- the distal ends of cam pins 31, 31 such as spring pins are slidably inserted into the cam grooves 30a, 30b. In this case, it is desirable to provide a recess that can be engaged with the cam pins 31 and 31 at the uppermost position of the cam grooves 30a and 30b to prevent the cam pins 31 and 31 from moving after being broken.
- the cam pin 31 protrudes in the diameter direction of the cylinder holder 9, and is disposed at the lower end of the cam grooves 30a and 30b before the gas cylinder 1 is broken.
- Locking pieces 32, 32 project downward from the lower ends of the cam grooves 30 a, 30 b, and the locking pieces 32, 32 are disposed so as to be engageable with the cam pins 31, 31.
- notch grooves 33 and 34 are formed on one side or both side positions in the vicinity of the base, so that the locking pieces 32 and 32 can be easily bent or broken.
- the locking pieces 32, 32 are broken and dropped into the cam grooves 30a, 30b. However, the locking pieces 32, 32 are bent and stored inside the notch groove 34. Also good.
- An injection cylinder 36 projects from the upper part of the front surface of the illumination cylinder 7, and the injection cylinder 36 is inserted into the through hole 16 of the operation lever 6 to allow the operation lever 6 to rotate.
- an injection hole 37 communicating with a nozzle hole described later and a pin hole 38 into which a locking pin described later can be inserted are opened.
- the severing holder 8 is formed in a substantially cylindrical shape with aluminum, and has a spring chamber 39 and a communication hole 40 having large and small diameters communicating with each other inside.
- the spring holder 41 is slid up and down in the upper spring chamber 39.
- the shaft portion 41a is inserted into the through hole 7a in the ceiling portion of the illumination tube 7 and protrudes, and the protrusion 21 is disposed so as to be engageable with the convex portion 21.
- An O-ring 42 and a spring 43 are arranged inside the spring chamber 39 and urge the spring receiver 41 to move upward through the elasticity of the spring 43, while a lower end portion of the spring receiver 41 has a control valve described later.
- the push rod is pushed down when the operation lever 6 is injecting operation, so that the control valve can be opened.
- a nozzle hole 44 communicating with the injection hole 37 is formed in the lower part of the spring chamber 39 so that a fire extinguishing gas can be ejected from the nozzle hole 44 when the control valve is opened.
- a screw hole (not shown) is formed in an intermediate portion of the communication hole 40, and a screw portion (not shown) provided on the peripheral surface of the intermediate portion of the control valve 45 is screwed into the screw hole so that the control valve 45 is airtight. It is installed.
- the control valve 45 includes the push rod 46 penetrating through the inside and an inner valve 47 that can move along with the push rod 46, and urges them upward by a valve spring (not shown) provided inside. The inner valve 47 is pressed against the main body of the control valve so that the valve can be normally closed.
- 48 is an injection guide opened on the peripheral surface of the severing holder 8
- a nozzle hole 44 is opened in the inner part thereof
- 49 and 49 are pin holes formed at diametrical positions on the peripheral surface of the severing holder 8.
- a small-diameter guide rod 51 protrudes from the lower end portion of the severing holder 8, and the guide rod 51 is slidably inserted into the through hole 52 of the cylinder holder 9.
- a guide hole 53 communicating with the communication hole 40 is formed inside the guide rod 51, a base portion of the needle tube 54 is inserted into the guide hole 53, and a pointed end portion 54 a is disposed immediately above the sealing plate 4.
- 55 is a spring inserted between the severing holder 8 and the cylinder holder 9, and 56 is an O-ring mounted on the peripheral surface of the lower end portion of the guide rod 51.
- the cylinder holder 9 is formed in a cylindrical body having the same diameter as that of the severing holder 8, and a pin hole 9 a into which the pin 31 can be inserted is formed at a position in the diameter direction of an intermediate portion thereof.
- a screw hole 57 communicating with the through hole 52 is formed, and the screw portion 3 of the gas cylinder 1 can be screwed into the screw hole 57.
- 58 is an O-ring inserted between the lower end of the through hole 52 and the sealing plate 4.
- reference numeral 59 denotes a pocket formed inside the rear part of the housing piece 5a, 5b, in which a plurality of batteries 60 serving as a power source for the warning lamp 25 are housed, and the opening is provided through a cover 61. It can be opened and closed.
- 62 is a cover sheet made of a heat insulating film attached to the outer surface of the gas cylinder 1, and the usage of the fire extinguisher of the present invention is printed on the surface with a picture.
- a synthetic resin film is used as the covering sheet 62, and the film is shrink-molded and attached to the surface of the gas cylinder 1 after being filled with carbon dioxide at a predetermined temperature.
- a hammer member 63 having a pointed end is attached to the bottom surface of the gas cylinder 1, and the hammer member 63 includes a steel holding ring 64 and a hammer shaft 65 obtained by quenching a steel hard member.
- the holding ring 64 is formed in a substantially dish shape, and a through hole 66 is formed at the center thereof. After the holding ring 64 is welded to the bottom of the gas cylinder 1, a hammer is mounted on the through hole 66 together with a C ring 67 as a stopper.
- the shaft 65 is inserted, and after insertion, the hammer shaft 65 is tightly attached by engaging the tapered surface 68 of the inner edge of the through hole 66 of the C ring 67.
- the hammer shaft 65 is formed in a shaft shape that is longer than the height of the holding ring 64, an annular groove 69 that is a neck portion is formed at a base portion thereof, a pointed end portion 65 a is formed at a tip portion, and the pointed end portion 65 a is formed. Projecting to the outside of the retaining ring 64.
- the retaining ring 64 is welded after the gas cylinder 1 is filled with carbon dioxide of a predetermined pressure and the sealing plate 4 is sealed at the mouth, and after the retaining ring 64 is welded, the gas cylinder 1 and the retaining ring 64 are plated at the same time. I have to.
- a hardened and plated hammer shaft 65 is prepared, an adhesive is applied to the peripheral surface of the hammer shaft 65, and a circular C-ring 67 having a circular cross section is attached to the annular groove 69 by being compressed.
- the hammer shaft 65 is inserted into the through-hole 66 while maintaining this elastic state.
- the spherical surface of the C-ring 67 is elastically engaged with the tapered surface 68 of the inner edge of the through-hole 66, and the C-ring 67 is pressed against the tapered surface 68 to form the wedge effect, and the gas cylinder.
- the adhesive is infiltrated into the gap between 1 and the C-ring 67 and the hammer shaft 65 to be solidified, and the hammer shaft 65 is firmly and tightly attached.
- the holding ring 64 is welded to the gas cylinder 1, and the hammer shaft 65 is hooked on the holding ring 64, thereby avoiding the process of welding and plating the hammer shaft 65 to the gas cylinder 1. Therefore, when the hammer shaft 65 is welded to the gas cylinder 1 and plated, the tip 65a of the hammer shaft 65 prevents the peripheral surface of the gas cylinder 1 from being damaged.
- 70 is a fire extinguishing gas ejected to the outside after being sealed
- 71 is a windshield of an automobile
- 72 is a seat belt installed in the passenger compartment
- 73 is a user's hand.
- the warning lamp 25 blinks or lights up
- the fire extinguishing gas injector is held and notified.
- a magnet (not shown) is attached to an appropriate position of the housing 5, and the magnet is attached to the outer periphery of the automobile. If it is adsorbed and held at an appropriate position, the burden of labor of the notification operation can be reduced.
- the fire extinguishing gas injector configured in this way is configured by attaching a tear-off device 2 to the top of a small gas cylinder 1, and the small gas cylinder 1 includes a hammer member 63 for emergency escape at the bottom, and the tear-off device 2 is transparent.
- a translucent synthetic resin housing 5 having translucency, an operation lever 6 rotatably attached to a peripheral surface of the housing 5, an illumination cylinder 7 accommodated in the housing 5, and the illumination cylinder 7 is composed of a severing holder 8 accommodated in the interior of the sack 7 and a bomb holder 9 for holding the gas cylinder 1. 19 is provided.
- the hammer member 63 is attached by filling the gas cylinder 1 with carbon dioxide at a predetermined pressure, sealing the sealing plate 4 at the mouth, welding the holding ring 64 to the bottom of the gas cylinder 1, and plating them. After that, an adhesive is applied to the peripheral surface of the hammer shaft 65, and a C ring 67 is attached to the annular groove 69, and this elastic state is maintained and the hammer shaft 65 is inserted into the through hole 66.
- the spherical surface of the C ring 67 is engaged with the tapered surface 68 at the inner edge of the through hole 66, the C ring 67 is pressed against the tapered surface 68, and the gas cylinder 1, the C ring 67 and the hammer shaft 65 are Adhesive is infiltrated into the gap and solidified, and the hammer shaft 65 is tightly attached.
- the cover sheet 62 is placed on the peripheral surface of the gas cylinder 1 on the peripheral surface of the gas cylinder 1 and moved to a heating furnace at a predetermined temperature, and the film is thermally contracted in the heating furnace.
- a shrink molding is applied to the circumferential surface of the intermediate portion of the material.
- a transparent or semi-transparent synthetic resin is formed in half in the vertical direction to form a pair of left and right housing pieces 5a and 5b, which are engaged with their joints.
- Grooves 10a, 10b and 11a, 11b and concave curved grooves 12a, 12b are formed, and pin holes 12 are formed at the upper ends of the engaging grooves 11a, 11b.
- an engagement groove 13 that can be engaged with the outer peripheral surface of the illumination tube 7 and an engagement groove 14 that can be engaged with a plurality of warning lights 25 are formed inside the housing pieces 5a and 5b.
- a large number of recesses are formed in a dotted pattern on the inner surface of the sheet, or are subjected to a textured process, and a seat belt introduction groove 17 and seat belt relief parts 20a and 20b are formed on the rear part.
- the operating lever 6 is molded in a substantially L shape with the same synthetic resin as the housing 5, a pin 15 is projected from the upper end, a vertically long through hole 16 is formed in the middle, and a coil spring is formed on the inner surface of the lower end. Attach the base of the contact 35.
- a substantially octagonal columnar illuminating cylinder 7 is formed from a synthetic resin of the same quality as the housing 5, lamp mounting grooves 23 and substrate mounting grooves 24 are formed at four locations on the peripheral surface thereof, and symmetrical positions on the peripheral surface of the middle and high portions.
- Helical cam grooves 30a and 30b are formed, and locking pieces 32 and 32 are provided so as to project downward at the lower ends thereof, and notch grooves 33 and 34 are formed on both left and right sides of the upper base of the locking pieces 32 and 32. And the injection cylinder 36 is projected and formed at the front portion.
- a red LED as a warning light 25 a mounting board 24 for the red LED, and lead wires for wiring 27 are prepared, and two warning lights 25 are arranged on the front surface of the substrate 24, and lead wires are provided on the back surface. 27 is wired, the substrate 24 is inserted into the substrate mounting groove 24, and the wiring 27 is accommodated on the back surface to lead out the power supply line 29, which is connected to the contact panel 28.
- the tear holder 8 and the cylinder holder 9 are processed to have the same diameter with an aluminum material, and the communication hole 40 is formed in the axial direction inside the tear holder 8, and the nozzle hole 44 that communicates with the communication hole 40 is laterally formed. Open. Then, a spring receiver 41 is disposed above the communication hole 40, and its shaft portion 41a is inserted into and protrudes from the through hole 7a in the ceiling portion of the lighting tube 7, and an O-ring 42 and a spring 43 are disposed below the flange. Then, the spring receiver 41 is urged airtight upward, and the control valve 45 is screwed into the communication hole 40 and attached.
- a guide rod 51 having a small diameter is protruded from the lower end portion of the severing holder 8, a guide hole 53 communicating with the communication hole 40 is formed therein, a needle tube 54 is inserted into the guide hole 53, and a pointed end portion 54a is formed.
- a through hole 52 and a large-diameter screw hole 57 are provided inside the cylinder holder 9.
- the breaking holder 8 and the cylinder holder 9 are inserted into the hollow chamber 22 of the lighting cylinder 7, a spring 55 is inserted between them, a pin 50 is inserted from the pin hole 38, and this is inserted into the breaking holder 8.
- the breakage holder 8 is fixed to the upper part in the illumination tube 7.
- the pins 31 and 31 are inserted into the lower end portions of the cam grooves 30a and 30b of the illuminating cylinder 7, and are inserted into the pin holes 9a of the cylinder holder 9, so that the cylinder holder 9 can be helically moved to the lower part in the illuminating cylinder 7. Install.
- the operation lever 6 is disposed between the housing pieces 5a and 5b, the injection cylinder 36 of the illumination cylinder 7 is inserted into the through hole 16, the cam pin 31 at the upper end portion is inserted into the pin hole 12, and the cam pin 31 is inserted.
- the upper lower surface is engaged with the shaft portion 41a, and is urged to rotate forward.
- the cutter 19 is attached to the pins 18 and 18 at the rear of the housing pieces 5a and 5b, the blade edge 19a is disposed so as to face the seat belt introduction groove 17, and the joining portions are bonded to join the housing pieces 5a and 5b. To do.
- the tearing device 2 assembled in this way has a height of about 90 mm, a length of about 60 mm in the front-rear direction, and an outer diameter of about 50 mm, and an illumination tube 7 with a warning lamp 25 attached inside the housing 5 is disposed.
- a breakage holder 8 is arranged inside 7.
- the battery 60 is housed inside the lower part of the housing 5, the contact 35 is arranged inside the lower part of the operation lever 6, the contact panel 28 is protected by the housing 5, and the front surface is shielded by the lower part of the operation lever 6. Since wind and rain are avoided, the occurrence of disconnection, short circuit, and wiring trouble can be prevented and safety in use can be ensured. This situation is as shown in FIGS.
- the sealing device 2 when used for a fire extinguishing gas injector, the screw part 3 of the gas cylinder 1 filled with the fire extinguishing gas may be screwed into the screw hole 57 of the cylinder holder 9 of the sealing device 2.
- the fire-extinguishing gas injector loaded with the gas cylinder 1 is as shown in FIGS. 1 to 3 and is configured to be a small and lightweight with a height of about 183 mm and a weight of 460 g. Since a safety member for preventing breakage at the time is not required, the number of parts is reduced, the configuration is simplified and the weight can be reduced, and this can be manufactured easily and inexpensively.
- the fire extinguishing gas injector is provided with the cutter 19 for cutting the seat belt 72 and the hammer member 63 in the gas cylinder 1 and the tearing device 2 which are indispensable for the fire extinguishing gas injector, and does not require a dedicated escape device.
- the escape mechanism is reasonably constructed and can be used easily.
- the fire-extinguishing gas injector includes an illumination tube 7 with a warning lamp 25 inside the rupture device 2 to deal with vehicle troubles at night or in an emergency, thereby improving safety against vehicle troubles. To do.
- the breaking holder 8 In the assembled fire extinguishing gas injector, when not in use, the breaking holder 8 is located above the cylinder holder 9, the pointed portion 54 a of the needle tube 54 is located immediately above the sealing plate 4 of the gas cylinder 1, and the sealing plate 4 is broken. Not sealed. Further, the control valve 45 provided in the inside of the severing holder 8 is closed, and conduction between the communication hole 40 and the nozzle hole 44 is interrupted.
- the cam pins 31, 31 are located at the lower end portions of the cam grooves 30a, 30b and are stationary, and are locked in the proximity of the cam pins 31, 31 as anti-seal means.
- the pieces 32 and 32 are positioned to prevent the cam pins 31 and 31 from moving upward, and prevent the gas cylinder 1 from moving upward or the sealing plate 4 from being broken.
- the operating lever 6 is urged so as to be able to rotate forward by the elasticity of the spring receiver 41, the lower end portion thereof is positioned on the concave curved portions 12 a and 12 b at the front lower portion of the housing 5, and the coil spring contact 35 is a contact point.
- the power supply circuit of the warning lamp 25 is opened away from the panel 28, and the warning lamp 25 is turned off.
- the fire extinguishing gas injector When mounting the assembled fire extinguishing gas injector on a car, place it horizontally or vertically in a driver's seat or auxiliary seat in the passenger compartment, or around other seats, such as a pocket inside the door or a small case around the shift lever. Store and place.
- the fire extinguishing gas injector since the fire extinguishing gas injector has a substantially elliptical shape with a long diameter in the front-rear direction, the cross-section of the severing device 2 can prevent rolling, abnormal noise, or damage when placed horizontally. . If the fire extinguishing gas injector is housed in a protective case that can be easily put in and out, the appearance is good and the safety is increased.
- the fire-extinguishing gas injector of the present invention is provided with a means for preventing breakage when not in use, that is, a locking piece 32 provided inside the sealing device 2 and is safe regardless of the installation state of the fire-extinguishing gas injector or overturning. Maintain prevention function. Therefore, there is no fear that the conventional anti-seal means is attached to the outer surface of the fire-extinguishing gas injector, and this is lost due to the installation state of the fire-extinguishing gas injector or overturning and the safety preventing function is lost.
- the seat belt 72 When the fire extinguisher gas injector is installed in a car, if the seat belt 72 cannot be removed due to a traffic accident or the door of the car cannot be opened, the seat belt 72 is cut off when the driver or passenger evacuates outside the car. And / or the windshield 71 needs to be broken.
- the seat belt introduction groove 17 of the tear-off device 2 when cutting the seat belt 72, hold the fire extinguishing gas injector with the seat belt introduction groove 17 of the tear-off device 2 sideways or obliquely forward, and hold the seat belt 72 with the other hand. It is inserted into the seat belt introduction groove 17.
- the seat belt introduction groove 17 since the seat belt introduction groove 17 is opened obliquely downward with respect to the axial direction of the breaking device 2, the seat belt introduction groove 17 is formed via a mountain-shaped portion directly below the seat belt introduction groove 17 as compared with the case where the seat belt introduction groove 17 is opened vertically downward.
- the seat belt 72 can be inserted smoothly. Thereafter, the end portion of the seat belt 72 is brought into contact with the cutting edge 19a of the cutter 19, and the breaking device 2 is quickly pulled down to cut the seat belt 72.
- the blade edge 19a of the cutter 19 is disposed at a substantially acute angle with respect to the introduction direction of the seat belt 72, the blade edge 19a of the cutter 19 is disposed at a substantially right angle with respect to the belt introduction groove 17.
- the cutting edge 19a of the cutter 19 is cut at an acute angle at the side end portion of the seat belt 72, and the cutting can be facilitated to cut smoothly and quickly.
- the slit portion is pushed to the left and right as the pointed portion enters, and moves to the back along the tapered surfaces 55 on both sides of the belt relief portion 20, and the expanding action of the tear portion is the seat belt 72. It propagates to the other side end, that is, the cut portion side. Therefore, the seat belt 72 is prevented from coming into close contact with the both side surfaces of the cutter 19, and smooth movement to the inner side of the seat belt 72 is promoted, so that the cutter 19 performs smooth and quick cutting.
- the cutter 19 and the belt escape portion 20 are arranged in close contact with each other, when the seat belt 17 is sandwiched between the minute gap portions, the movement of the seat belt 72 is stagnated and cannot be cut.
- the section can prevent the above situation in advance.
- the extinguishing gas injector is gripped in substantially the same manner as when the seat belt 72 is cut, and the bottom portion of the hammer member 63 faces the side or the front window glass 71, and the sharp end portion 65a of the hammer member 63 is Crush or smash into the windshield 71. This situation is as shown in FIG.
- the window glass 71 when the window glass 71 is broken after the seat belt 72 is cut, the window glass 71 is broken by continuous operation without changing the fire extinguishing gas injector, and when the seat belt 72 is cut after the window glass 71 is broken.
- the operation can be performed quickly and safely as compared with the case where the seat belt introduction groove 17 and the hammer member 63 are arranged on the same side and in the different phase positions.
- the hammer member 63 is disposed away from the seat belt introduction groove 17, there is no fear that the window glass 71 will be broken vigorously and surely, and there will be no injury due to broken glass. Even if the seat belt 72 is cut and the window glass 71 is broken in this way, the above-described anti-seal means 32 will not break or bend due to their operation or impact, so there is no risk of accidental tearing.
- the warning light 25 blinks at night, for example, to notify others of the emergency and to ensure safety and to request emergency treatment or rescue.
- the fire extinguishing gas injector is held as shown in FIG. 18 and the lower part of the operation lever 6 is pressed.
- the operating lever 6 rotates downward about the pin 15 against the elasticity of the spring receiver 41, and the lower end of the operating lever 6 comes into contact with the inner engagement piece 12c to be stationary.
- the contact 35 contacts the contact panel 28 to close the power supply circuit of the warning lamp 25, and each warning lamp 25 is turned on to flash red light.
- the operation lever 6 is allowed to be displaced or oscillated in rotation or slightly displaced in the contact panel 28, and is flexible in ON / OFF operation of the power supply circuit. Can be obtained.
- the warning lamp 25 blinks, the light passes through the transparent or translucent housing and is radiated to the outside.
- the evacuees hold the fire-extinguishing gas injector outside the vehicle and perform a notification operation.
- a magnet (not shown) is attached to an appropriate position of the housing 5 and the magnet is adsorbed to a suitable position on the outer periphery of the vehicle. If held, the burden of the labor of the operation can be reduced.
- the operation lever 6 is once released, the contact 35 is separated from the contact panel 28, the operation lever 6 is rotated downward again, and the contact 35 is moved to the contact panel 28. If contact is made, the power supply circuit of the warning lamp 25 is opened, and the warning lamp 25 is turned off.
- the fire extinguishing gas injector is used to extinguish the fire.
- the tearing device 2 is gripped with one hand, the gas cylinder 1 is gripped with the other hand, and they are rotated in opposite directions.
- the gas cylinder 1 and the cylinder holder 9 into which the gas cylinder 1 is screwed rotate together, and the cam pins 31 and 31 projecting from the cylinder holder 9 are guided to the cam grooves 30a and 30b of the illumination cylinder 7 and are moved upward. To do.
- the locking pieces 32 and 32 engage with the cam pins 31 and 31 to prevent the upward movement and temporarily prevent the breaking operation. Therefore, the locking pieces 32 and 32 function as a breakage prevention means, and the locking pieces 32 and 32 are used. Is integrally formed with the lighting cylinder 7, so that it is possible to avoid a separate component configuration as in the prior art, to reduce the number of components, and to simplify the configuration and to achieve inexpensive and easy manufacturing.
- the filling gas in the gas cylinder 1 is guided from the severing part to the needle tube 54 and is ejected to the communication hole 40 of the severing holder 8.
- the jet gas stays in the lower half portion of the communication hole 40 and the through hole 52 of the cylinder holder 9.
- the gas injector temporarily retains the fire-extinguishing gas after the rupture in the severing device 2 and injects the fire-extinguishing gas after the injection cylinder 36 is accurately directed to the fire source. Costs can be prevented and fire extinguishing gas can be used reliably and effectively to increase the effectiveness of initial fire fighting.
- each warning light 25 is turned on and flashes red. Accordingly, a vehicle fire can be notified by blinking of the warning light 25, and can be used as an evacuation light after extinguishing the fire, thereby ensuring safety of evacuation.
- FIGS. 21 to 23 show other embodiments of the present invention, and the same reference numerals are used for the components corresponding to the above-described embodiments.
- the above-described locking pieces 32, 32 are formed integrally with the lighting tube 7 so as to face the cam grooves 30a, 30b, and are not broken or bent after being engaged with the cam pin 31 made of a spring pin.
- Guide grooves 74 and 74 are formed on the middle and high peripheral surfaces of the lighting cylinder 7 so as to face the cam grooves 30a and 30b, and the locking pieces 75 and 75 are slidably accommodated in the guide grooves 74 and 74, respectively. ing.
- the locking pieces 75 and 75 are formed in a substantially bowl shape by a synthetic resin plate, a taper surface 75a is formed on one side of the lower end thereof, and neck portions 75b and 75b are formed on the other side thereof. 75b and 75b are positioned so as to be engageable with locking projections 76 and 76 projecting below the guide grooves 74 and 74, respectively.
- reference numeral 78 denotes a urethane rubber seal ring provided in place of the above-described O-ring 58.
- the thickness of the seal ring is larger than the diameter of the O-ring 58, and the receiving groove is deeper than that of the O-ring. It is formed and the fitting is improved to prevent deformation such as dropping or twisting.
- Reference numeral 79 denotes a through hole provided in the lower portion of the operation lever 6, and a lock pin 80 is inserted into the through hole 79 so as to be removable.
- the lock pin 80 is formed of a metal rod such as a steel wire, and a small diameter portion 80a is formed at the tip thereof.
- the small diameter portion 80 is removably inserted into the cam pin 31, and the gas cylinder 1 and the cylinder holder are replaced when the gas cylinder 1 is replaced. 9 is prevented, and the gas cylinder 1 can be prevented from being broken when the gas cylinder 1 is replaced.
- the lock pin 80 is suspended and stored in the breaking device 2 by a string or the like, for example.
- the locking piece 75 is always pushed down by the spring 77, its lower end protrudes into the cam grooves 30a and 30b, and its side end is positioned so as to be engageable with the cam pins 31 and 31.
- FIG. 22 (a) When used in a fire extinguishing gas injector, as in the case described above, holding the tear-off device 2 with one hand, holding the gas cylinder 1 with the other hand, and rotating them in opposite directions, Then, the cylinder holder 9 into which the gas cylinder 1 is screwed is rotated integrally, and the cam pins 31, 31 projecting from the cylinder holder 9 are guided to the cam grooves 30a, 30b and moved upward. This situation is as shown in FIG.
- the gas cylinder 1 when replacing the gas cylinder 1 after consumption of the fire extinguishing gas, the gas cylinder 1 is rotated in the opposite direction to the above in the same manner as described above, the gas cylinder 1 and the cylinder holder 9 are moved, and the cam pins 31, 31 are moved. It guides to the cam grooves 30a, 30b and moves downward to engage with the tapered surfaces 75a, 75a of the locking pieces 75, 75.
- the locking pieces 75 and 75 are pushed up against the elasticity of the springs 77 and 77, pushed up to the highest position, and then disengaged from the cam pins 31 and 31 and pushed to the springs 77 and 77. It is lowered and returns to its original position. Thereafter, the cam pins 31, 31 move to the end portions of the cam grooves 30 a, 30 b and stop, and the locking pieces 75, 75 are positioned so as to be engageable with the pins 31, 31. This situation is as shown in FIG. Thereafter, the gas cylinder 1 is further rotated in the same direction and removed from the cylinder holder 9.
- the lock pin 80 is inserted into the through hole 79 provided in the operation handle 6, and the small-diameter portion 80a at the tip is inserted into the one cam pin 31, and this state is maintained. In this manner, the lock pin 80 prevents the cylinder holder 9 from rotating, and the cam pins 31, 31 protruding from the cylinder holder 9 are prevented from moving.
- the screw part 3 of the new gas cylinder 1 is screwed in, the gas cylinder 1 is screwed into the screw hole 57 and enters.
- the cylinder holder 9 is prevented from co-rotating with the gas cylinder 1 by the lock pin 80, and the cam pins 31 and 31 are stopped in a state where they are engaged with the locking pieces 75 and 75. Therefore, the cylinder holder 9 is rotated when the gas cylinder 1 is replaced, and the cam pins 31 and 31 move together to push up the locking pieces 75 and 75 so that they do not move along the cam grooves 30a and 30b. Since the pointed portion 54a of 54 and the sealing plate 4 hold the desired separated position, the sealing plate 4 is not broken by the needle tube 54, and the safety at the time of replacement of the gas cylinder 1 is ensured. Thus, after replacing the gas cylinder 1, the lock pin 80 is pulled out from the hole 79 and stored in an appropriate position. Therefore, the locking pieces 75 and 75 can be used repeatedly, and the convenience of the breaking device 2 is improved.
- the seal ring 78 is formed to be thicker than the diameter of the O-ring 58 and the accommodation groove is formed deeply, the seal ring 78 is accommodated more securely and more securely than the O-ring 58, and its stability. The sealed action can be obtained. Therefore, the O-ring 58 drops off when the gas cylinder 1 is removed as in the prior art, or when the gas cylinder 1 is replaced, the O-ring 58 turns over due to contact with the sealing plate 4 or is deformed to reduce the sealing action. It is possible to prevent the stored gas from leaking after sealing.
- the fire-extinguishing gas injector of the present invention can safely and easily break the gas cylinder without requiring a safety member for preventing the tearing when not in use and the operation for removing the safety member. It is possible to prevent costs, inject fire extinguishing gas toward the fire source reliably and accurately, and to make effective the initial fire extinguishing. While safety can be ensured, in the event of an emergency such as a vehicle fire or a collision accident, the seat belt can be quickly cut, the windshield can be reliably crushed to escape quickly from the passenger compartment. Suitable for gas injectors.
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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)
- Filling Or Discharging Of Gas Storage Vessels (AREA)
Abstract
Description
このため、前記問題を解決するものとして、小形軽量で簡便に使用できる簡易消火具が種々提案されている。
その場合の車載用簡易消火具としては、消火機能以外に自動車からの脱出機能を具備させ、衝突事故等の非常時に車室から脱出を図れるものが望まれていた。
請求項2の発明は、前記ハウジングの内側に複数の灯具を周面に配置した照明筒を設け、灯具の配置と組み付け並びに配線を容易に行なえるようにしている。
請求項4の発明は、ガスボンベの破封前またはガスボンベの破封後、前記操作レバーの回動操作を介して前記灯具を点滅または点灯可能にし、夜間の車両火災以外の非常時や車両火災時を分けて、それぞれに対応可能にしている。
請求項5の発明は、前記接点をコイルバネまたは板バネで形成し、操作レバーの作動変位の多少のずれや揺動を許容して、接点パネルに対する接触動作に融通性を持たせ、灯具を確実に点滅または点灯するようにしている。
請求項7の発明は、前記各カム溝を前記照明筒周面の約90°の範囲に形成し、ガスボンベを複数回回動操作する従来の構造に比べて、速やかに破封し得るとともに、破封スペースのコンパクト化を図るようにしている。
請求項8の発明は、前記各カム溝の下端部側にカムピンと係合可能な係止片を折損または折曲可能に突設し、係止片を破封防止手段として構成するとともに、係止片を折損または折曲させて容易に破封防止を解除し、従来の破封防止解除操作の煩雑をなくして、速やかに破封し得るようにしている。
請求項10の発明は、前記各カム溝の下端部側にカムピンと係合可能な係止片を上下動可能に設け、係止片を折損または折曲することなく再利用を図れ、破封装置の利便性を向上し得るようにしている。
請求項11の発明は、破封後、前記カムピンを各カム溝の下端部側に移動し、該カムピンの移動を拘束して新規なガスボンベを交換可能にし、新規なガスボンベの交換時における破封を防止し得るようにしている。
請求項12の発明は、少なくとも一方のカムピンを管状に形成し、該管状のカムピンに破封装置の外側からロックピンを挿入し、該ロックピンを拘束可能にして、ロックピンを固定したボンベホルダの回動を防止し、新規なガスボンベの交換時における破封を防止し得るようにしている。
請求項14の発明は、前記シートベルト導入溝の奥部に横断面が略逆三角形のベルト逃がし部を設け、シートベルトを円滑かつ速やかに切断し、非常時に車室から速やかに脱出し得るようにしている。
請求項16の発明は、前記連通孔に常時は閉弁可能な制御弁を設け、該制御弁を前記操作レバーの操作を介して開弁可能にし、破封後の消火ガスを連通孔と貫通孔に一旦滞留して消火ガスの空費を防止し、操作レバーの操作を介し消火ガスを火元に向けて正確に噴射させて、初期消火の実効を図るようにしている。
請求項17の発明は、前記ガスボンベの底部に尖端部を有するハンマー部材を設け、該ハンマー部材を介し車両のウィンドガラスを破砕可能にし、車両火災や衝突事故等の車両の非常時にハンマー部材を介しウィンドガラスを確実に破砕して、車室から速やかに脱出し安全を確保し得るようにしている
請求項2の発明は、前記ハウジングの内側に複数の灯具を周面に配置した照明筒を設けたから、灯具の配置と組み付け並びに配線を容易に行なうことができる。
請求項3の発明は、前記ハウジングに接点を備えた操作レバーを回動可能に設けるとともに、前記照明筒の周面に前記接点に接触可能な接点パネルを設けたから、灯具の点灯操作を容易に行なえるとともに、両接点による給電回路の開閉構造を容易かつ安価に構成することができる。
請求項4の発明は、ガスボンベの破封前またはガスボンベの破封後、前記操作レバーの回動操作を介して前記灯具を点滅または点灯可能にしたから、夜間の車両火災以外の非常時や車両火災時を分けて、それぞれに対応することができる。
請求項6の発明は、前記ボンベホルダ周面の直径方向の二位置にカムピンを突設するとともに、前記照明筒周面の対称位置に二つのカム溝をヘリカル状に形成し、該カム溝に前記カムピンを滑動可能に係合し、前記照明筒の内側に前記ボンベホルダを回動可能に装着したから、ガスボンベを回動操作して破封することができる。
請求項7の発明は、前記各カム溝を前記照明筒周面の約90°の範囲に形成したから、ガスボンベを複数回回動操作する従来の構造に比べて、速やかに破封し得るとともに、破封スペースのコンパクト化を図ることができる。
請求項8の発明は、前記各カム溝の下端部側にカムピンと係合可能な係止片を折損または折曲可能に突設したから、係止片を破封防止手段として構成し得るとともに、係止片を折損または折曲させて容易に破封防止を解除し、従来の破封防止解除操作の煩雑をなくして、速やかに破封することができる
請求項10の発明は、前記各カム溝の下端部側にカムピンと係合可能な係止片を上下動可能に設けたから、係止片を折損または折曲することなく再利用を図れ、破封装置の利便性を向上することができる。
請求項11の発明は、破封後、前記カムピンを各カム溝の下端部側に移動し、該カムピンの移動を拘束して新規なガスボンベを交換可能にしたから、新規なガスボンベの交換時における破封を防止することができる。
請求項12の発明は、少なくとも一方のカムピンを管状に形成し、該管状のカムピンに破封装置の外側からロックピンを挿入し、該ロックピンを拘束可能にしたから、ロックピンを固定したボンベホルダの回動を防止し、新規なガスボンベの交換時における破封を防止することができる。
請求項14の発明は、前記シートベルト導入溝の奥部に横断面が略逆三角形のベルト逃がし部を設けたから、シートベルトを容易かつ速やかに切断し、非常時に車室から速やかに脱出することができる。
請求項15の発明は、前記ハウジングの他側の下部内側に前記灯具用電池を収容したから、ハウジングのスペースを有効に利用し、破封装置のコンパクト化を図ることができる。
請求項17の発明は、前記ガスボンベの底部に尖端部を有するハンマー部材を設け、該ハンマー部材を介し車両のウィンドガラスを破砕可能にしたから、車両火災や衝突事故等の車両の非常時にハンマー部材を介しウィンドガラスを確実に破砕して、車室から速やかな脱出を図れ安全を確保することができる。
実施形態のガスボンベ1は、外径約40mm、長さ約130mm、風袋約90mlで、内部に約4MPaの二酸化炭素を充填し、充填後の重量が約300gのものを用い、前記ガスの充填後、口元部に封板4をシールし、底部に後述するハンマー部材を取り付けている。
図中、12c,12dは前記凹状湾曲溝12a,12bの下端部内面に設けた係合壁で、操作レバー6の下端部に係合可能に配置されている。
前記操作レバー6は、前記成形溝10a,10bと11a,11bの間に回動かつ摺動可能に配置され、前記ピン15をピン孔12に挿入し、ピン15を中心に回動可能に取り付けられていて、常時は後述するバネ受けの弾性によって前方へ回動可能に付勢され、操作部である下端部を凹状湾曲溝12a,12bに配置している。
この他、図中、21は操作レバー6の上部下面に突設した凸部で、後述のバネ受けと係合可能に配置されている。
実施形態では警告灯25として、消費電力が小さく光の指向性に優れ、かつ注意を喚起する赤色のLEDを用い、このLEDを基板26の上下に2個配置し、その配線27を基板26の裏面に配置している。
そして、操作レバー6を握持してピン15を中心に回動し、接点35を接点パネル28に接触させて、警告灯25をON可能にしている。実施形態の接点35は、接点パネル28に接触後に離間し、再度接触させた際、OFF可能にされている。
この場合、カム溝30a,30bの最上位置にカムピン31,31と係合可能な凹部を設け、破封後のカムピン31,31の移動を防止させることが望ましい。
実施形態では前記係止片32,32を折損させ、これをカム溝30a,30bに落下しているが、係止片32,32を折曲して切欠溝34の内側に収納するようにしても良い。
前記バネ室39の下部に、前記噴射孔37に連通するノズル孔44が形成され、前記制御弁の開弁時にノズル孔44から消火ガスを噴出可能にしている。
前記制御弁45は、内部を貫通する前記プッシュロッド46と、該プッシュロッド46に同動可能な内弁47とを備え、これらを内部に設けたバルブスプリング(図示略)によって上方へ付勢し、内弁47を制御弁本体に押し付けて常時は閉弁可能にされている。
図中、55は破封ホルダ8とボンベホルダ9の間に介挿したスプリング、56はガイドロッド51の下端部周面に装着したOリングである。
また、前記ボンベホルダ9の下端部に前記貫通孔52に連通するネジ孔57が形成され、該ネジ孔57にガスボンベ1のネジ部3をねじ込み可能にしている。図中、58は貫通孔52の下端と封板4との間に介挿したOリングである。
実施形態では、被覆シート62として合成樹脂製フィルムを使用し、該フィルムを二酸化炭素充填後のガスボンベ1の表面に、所定温度でシュリンク成形して取付けている。
前記保持リング64は略皿状に形成され、その中央に通孔66を形成し、保持リング64をガスボンベ1の底部に溶接後、前記通孔66に止め具であるCリング67と一緒にハンマー軸65を挿入し、挿入後、Cリング67を通孔66の内側口縁部のテーパ面68に係合して、ハンマー軸65を緊密に取付けている。
前記保持リング64の溶接は、ガスボンベ1に所定圧の二酸化炭素を充填し、口元部に封板4をシールした後に行ない、該保持リング64の溶接後にガスボンベ1と保持リング64を同時にメッキするようにしている。
前記挿入後、弾性によってCリング67の球面を通孔66の内側口縁部のテーパ面68に係合し、該テーパ面68にCリング67を圧接し、その楔効果を形成するともに、ガスボンベ1とCリング67およびハンマー軸65の隙間に前記接着剤を浸入して固化し、ハンマー軸65を強固かつ緊密に取付けている。
したがって、ハンマー軸65をガスボンベ1に溶接し、それらをメッキする際、ハンマー軸65の尖端部65aがガスボンベ1の周面を損傷する事態を未然に防止している。
なお、警告灯25の点滅または点灯時には、消火ガス噴射器を保持して告知することとなるが、その際、例えばハウジング5の適宜位置にマグネット(図示略)を取付け、該マグネットを自動車の外周の適所に吸着保持させれば、前記告知操作の労力の負担を軽減し得る。
前記挿入後、Cリング67の球面を通孔66の内側口縁部のテーパ面68に係合し、該テーパ面68にCリング67を圧接し、ガスボンベ1とCリング67およびハンマー軸65の隙間に接着剤を浸入して固化し、ハンマー軸65を緊密に取り付ける。
また、ハウジングピース5a,5bの内側に照明筒7の外周面と係合可能な係合溝13と、複数の警告灯25と係合可能な係合溝14を形成し、該係合溝14の内面に多数の凹部を散点模様状に成形し、若しくはシボ加工し、更に後部にシートベルト導入溝17と シートベルト逃がし部20a,20bを成形する。
また、ハウジング5と同質の合成樹脂で略八角柱状の照明筒7を成形し、その周面の4箇所にランプ取付溝23と基板取付溝24を形成し、その中高部周面の対称位置にヘリカル状のカム溝30a,30bを形成し、その下側端部に係止片32,32を下向きに突設し、該係止片32,32の上側基部の左右両側に切欠溝33,34を形成し、前部に噴射筒36を突出成形する
そして、前記連通孔40の上部にバネ受41を配置し、その軸部41aを照明筒7の天井部の透孔7aに差し込んで突出し、フランジの下側にOリング42とバネ43を配置して、バネ受41を上方へ気密に付勢するとともに、連通孔40の内部に制御弁45をねじ込んで取付ける。
一方、照明筒7のカム溝30a,30bの下側端部にピン31,31を差し込み、これをボンベホルダ9のピン孔9aに差し込んで、照明筒7内の下部にボンベホルダ9をヘリカル移動可能に取付ける。
また、ハウジングピース5a,5bの後部のピン18,18にカッター19を取付け、その刃先19aをシートベルト導入溝17に臨ませて配置し、その接合部を接着してハウジングピース5a,5bを接合する。
また、電池60はハウジング5の下部内側に収容され、接点35は操作レバー6の下部内側に配置され、接点パネル28は周囲をハウジング5で保護され、前面を操作レバー6の下部で遮蔽されて、風雨を回避されているから、断線や短絡、配線トラブルの発生を防止し、使用上の安全性を確保し得る この状況は図4および図6のようである。
前記ガスボンベ1を装填した消火ガス噴射器は図1乃至図3のようで、高さ約183mm、重さ460gの小形軽量に構成され、従来のようにガスボンベ1の外側を覆うケースや、不使用時の破封を防止する安全部材を要しないから、その分部品点数が低減し構成が簡潔になって軽量化を図れ、これを容易かつ安価に製作できる。
しかも、前記消火ガス噴射器は、破封装置2の内部に警告灯25を備えた照明筒7を備え、夜間での車両トラブルや緊急時に対応させているから、車両トラブル等に対する安全性が増進する。
この場合、消火ガス噴射器は、破封装置2の横断面が前後方向に長径の略楕円形に形成されているから、横置きした場合の転動や異音の発生若しくは損傷を防止し得る。なお、消火ガス噴射器を容易に出し入れ可能な保護ケ-スに収容すれば、体裁が良く安全性が増大する。
この場合、シートベルト導入溝17は、破封装置2の軸方向に対し斜め下向きに開口しているから、これが垂直下向きに開口するものに比べ、シートベルト導入溝17直下の山形部を介してシートベルト72を円滑に挿入できる。
この後、シートベルト72の端部をカッター19の刃先19aに接触させ、破封装置2を素早く引き下げて、シートベルト72を切断する。
そして、前記切り裂き部がカッター19の後方へ移動すると、カッター19の切り込み圧力から解放され、その内部応力を解かれて繊維組織が原状を回復し、ベルト逃がし部20の尖端部へ移動する。
このため、カッター19の両側面に対するシートベルト72の密着ないし纏わりが防止され、シートベルト72の奥部側への円滑な移動を促して、カッター19による円滑かつ速やかな切断が行なわれる。
しかも、ハンマー部材63はシートベルト導入溝17から離間して配置されているから、ウィンドガラス71を勢い良く確実に割れ、ガラスの破片で怪我をする心配がない。
このようにシートベルト72を切断し、ウィンドガラス71を割っても、それらの動作や衝撃では前述した破封防止手段32は折損または折曲しないから、誤って破封される心配はない。
その場合、消火ガス噴射器を図18のように保持し、操作レバー6の下部を押圧する。
このようにすると、操作レバー6がバネ受41の弾性に抗して、ピン15を中心に下向きに回動し、その下端部が内側の係合片12cに当接して静止し、バネ製の接点35が接点パネル28に接触して警告灯25の給電回路を閉成し、各警告灯25がONして赤色光を点滅する。
こうして、警告灯25が点滅すると、その光が透明または半透明のハウジングを透過して外部に放射され、これに他者が注意を喚起されて前記事態を確認し、避難者および他者の急場の安全を確保するとともに、所要の救急処置ないし救助を講じられる。
この場合、避難者は車外で前記消火ガス噴射器を保持して告知操作するが、その際、例えばハウジング5の適宜位置にマグネット(図示略)を取付け、該マグネットを自動車の外周の適所に吸着保持させれば、前記操作の労力の負担を軽減し得る。
前記消火に際しては、片手で破封装置2を握持し、他方の手でガスボンベ1を握持し、これらを互いに反対方向へ回動する。
このようにすると、ガスボンベ1と、ガスボンベ1をねじ込んだボンベホルダ9とが一体に回動し、ボンベホルダ9に突設したカムピン31,31が照明筒7のカム溝30a,30bに導かれて上動する。
この状況は図12(c),(d)のようである。
折損後、係止片32,32は図12(d)のように、カム溝30a,30bに落下するが、これによってカムピン31,31の上動ないし破封操作が障害になることはない。
したがって、ガスボンベ1を複数回転する従来のものに比べ、前記破封を容易かつ速やかに行なえる。
このため、連通孔40と貫通孔52に滞留した消火ガスがノズル孔44から噴出し、火元に噴射される。この状況は図20のようである。
このため、火元周辺の温度が下がるとともに、火元周辺の酸素の供給を遮断して、消火作用が効率良く行なわれ速やかな消火を促す。
そして、消火ガスの費消後、ガスボンベ1をボンベホルダ9から取り外せば、空状態のガスボンベ1を回収できる。
この実施形態は、前述の係止片32,32が、カム溝30a,30bに臨ませて照明筒7に一体成形され、スプリングピン製のカムピン31に係合後は折損または折曲する代わりに、照明筒7の中高部周面にカム溝30a,30bに臨ませてガイド溝74,74を形成し、該ガイド溝74,74に係止片75,75を上下に摺動可能に収容している。
前記係止片75,75は合成樹脂板によって略鉤形に形成され、その下端の一側にテ-パ面75aが形成され、この他側に頸部75b,75bが形成され、該頸部75b,75bをガイド溝74,74の下部に突設した係止突起76,76に係合可能に位置付けている。
図中、78は前述のOリング58の代わりに設けたウレタンゴム製のシ-ルリングで、その板厚をOリング58の直径よりも厚く形成し、その収容溝をOリングの場合よりも深く形成し、その嵌合を向上して脱落や捩れ等の変形を防止可能にしている。79は操作レバー6の下部に設けた通孔で、該通孔79にロックピン80が抜き差し可能に挿入している。
この状況は図22(a)のようである。
次に、消火ガス噴射器に使用に際して、前述と同様に片手で破封装置2を握持し、他方の手でガスボンベ1を握持し、これらを互いに反対方向へ回動すると、ガスボンベ1と、ガスボンベ1をねじ込んだボンベホルダ9とが一体に回動し、ボンベホルダ9に突設したカムピン31,31がカム溝30a,30bに導かれて上動する。この状況は図22(b)のようである。
この後、ガスボンベ1が同方向へ更にねじ込まれ、略90°回動したところで破封され、破封後、消火ガスが火元に噴出して消火され消費される。この状況は図22(d)のようである。
この後、カムピン31,31がカム溝30a,30bの終端部に移動して静止し、該ピン31,31に係止片75,75が係合可能に位置する。この状況は図22(e)のようである。この後、ガスボンベ1を更に同方向に回動してボンベホルダ9から取り外す。
このようにすると、ロックピン80によってボンベホルダ9の回動が阻止され、該ボンベホルダ9に突設したカムピン31,31の移動が阻止される
このような状況の下で、ボンベホルダ9のネジ孔57に新規なガスボンベ1のネジ部3をねじ込むと、該ガスボンベ1が前記ネジ孔57にねじ込まれて進入する。
したがって、ガスボンベ1の交換時にボンベホルダ9が回動し、これにカムピン31,31が同動して係止片75,75を押上げ、カム溝30a,30bに沿って移動することがなく、針管54の尖端部54aと封板4とは所期の離間位置を保持するから、封板4が針管54で破封されることはなく、ガスボンベ1の交換時における安全性を確保する。
こうして、ガスボンベ1を交換後、ロックピン80を通孔79から引き抜き、適宜位置に保管する。したがって、係止片75,75を繰り返し使用可能になり、破封装置2の利便性が向上する。
したがって、従来のようにガスボンベ1の取外し時にOリング58が脱落したり、ガスボンベ1の交換時に封板4と接触してOリング58がめくれ、若しくは変形してシ-ル作用が低下し、破封後に貯留ガスが漏洩する事態を防止し得る。
2 破封装置
4 封板
5 ハウジング
5a,5b ハウジングピース
6 操作レバー
7 照明筒
9 ボンベホルダ
17 シートベルト導入溝
19 カッター
20 ベルト逃がし部
25 灯具(警告灯)
28 接点パネル
30a,30b カム溝
31 カムピン
33,34 切欠溝
35 接点
36 噴射筒
37 噴射孔
40 連通孔
44 ノズル孔
52 貫通孔
54 針管
54a 尖端部
60 電池
71 ウィンドガラス
72 シートベルト
80 ロックピン
Claims (17)
- 外周を形成するハウジングと、消火ガスを充填して封板をシールしたガスボンベの口元部を着脱可能に取付け、内部に貫通孔を形成したボンベホルダと、前記貫通孔を摺動可能に移動し、下端部に設けた尖端部を介して前記封板を破封可能にした針管と、該針管と前記貫通孔および外部に開口したノズル孔とに導通可能な連通孔と、を備えた破封装置を有する消火ガス噴射器において、前記ハウジングを透明または半透明の透光部材で形成し、該ハウジングの内側に複数の灯具を点滅または点灯可能に配置したことを特徴とする消火ガス噴射器。
- 前記ハウジングの内側に複数の灯具を周面に配置した照明筒を設けた請求項1記載の消火ガス噴射器。
- 前記ハウジングに接点を備えた操作レバーを回動可能に設けるとともに、前記照明筒の周面に前記接点に接触可能な接点パネルを設けた請求項2記載の消火ガス噴射器。
- ガスボンベの破封前または破封後、前記操作レバーの回動操作を介して前記灯具を点滅または点灯可能にした請求項2記載の消火ガス噴射器。
- 前記接点をコイルバネまたは板バネで形成した請求項3記載の消火ガス噴射器。
- 前記ボンベホルダ周面の直径方向の二位置にカムピンを突設し、前記照明筒周面の対称位置に二つのカム溝をヘリカル状に形成し、該カム溝に前記カムピンを滑動可能に係合するとともに、前記照明筒の内側に前記ボンベホルダを回動可能に装着した請求項2記載の消火ガス噴射器。
- 前記各カム溝を前記照明筒周面の約90°の範囲に形成した請求項6記載の消火ガス噴射器。
- 前記各カム溝の下端部側にカムピンと係合可能な係止片を折損または折曲可能に突設した請求項6記載の消火ガス噴射器。
- 前記係止片を前記照明筒と一体成形した請求項8記載の消火ガス噴射器。
- 前記各カム溝の下端部側にカムピンと係合可能な係止片を上下動可能に設けた請求項6記載の消火ガス噴射器。
- 破封後、前記カムピンを各カム溝の下端部側に移動し、該カムピンの移動を拘束して新規なガスボンベを交換可能にした請求項10記載の消火ガス噴射器。
- 少なくとも一方のカムピンを管状に形成し、該管状のカムピンに破封装置の外側からロックピンを挿入し、該ロックピンを拘束可能にした請求項11記載の消火ガス噴射器。
- 前記ハウジングの一側に前記操作レバーを回動可能に配置するとともに、前記ハウジングの他側にシートベルト導入溝と、該導入溝に臨ませてカッタ-を配置した請求項3記載の消火ガス噴射器。
- 前記シートベルト導入溝の奥部に横断面が略逆三角形のベルト逃がし部を設けた請求項13記載の消火ガス噴射器具。
- 前記ハウジングの他側の下部内側に前記灯具用電池を収容した請求項1記載の消火ガス噴射器。
- 前記連通孔に常時は閉弁可能な制御弁を設け、該制御弁を前記操作レバーの操作を介して開弁可能にした請求項3記載の消火ガス噴射器
- 前記ガスボンベの底部に尖端部を有するハンマー部材を設け、該ハンマー部材を介し車両のウィンドガラスを破砕可能にした請求項1記載の消火ガス噴射器。
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US13/638,921 US20130014964A1 (en) | 2010-03-30 | 2011-03-01 | Fire extinguisher gas ejector |
EP11762143.3A EP2529795A4 (en) | 2010-03-30 | 2011-03-01 | APPARATUS FOR EXTINGUISHING GAS SPRAY |
JP2012508041A JP5757939B2 (ja) | 2010-03-30 | 2011-03-01 | 消火ガス噴射器 |
CN2011800151256A CN102811775A (zh) | 2010-03-30 | 2011-03-01 | 灭火气体喷射器 |
KR1020127027685A KR101385418B1 (ko) | 2010-03-30 | 2011-03-01 | 소화가스 분사기 |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2010077614 | 2010-03-30 | ||
JP2010-077614 | 2010-03-30 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2011121889A1 true WO2011121889A1 (ja) | 2011-10-06 |
Family
ID=44711660
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP2011/001177 WO2011121889A1 (ja) | 2010-03-30 | 2011-03-01 | 消火ガス噴射器 |
Country Status (7)
Country | Link |
---|---|
US (1) | US20130014964A1 (ja) |
EP (1) | EP2529795A4 (ja) |
JP (1) | JP5757939B2 (ja) |
KR (1) | KR101385418B1 (ja) |
CN (1) | CN102811775A (ja) |
TW (1) | TW201143852A (ja) |
WO (1) | WO2011121889A1 (ja) |
Cited By (3)
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CN103623522A (zh) * | 2012-08-27 | 2014-03-12 | 汪佳泉 | 带安全锤结构的车用灭火器 |
JP2014064849A (ja) * | 2012-09-27 | 2014-04-17 | Hideo Yoshida | 消火ガス噴射器 |
JP2015064005A (ja) * | 2013-08-29 | 2015-04-09 | 吉田 英夫 | ガスボンベの封板およびガスボンベの破封装置並びに消火ガス噴射器 |
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US20150209604A1 (en) * | 2014-01-24 | 2015-07-30 | Ching Lun Ma | Fire extinguisher apparatus |
US9861846B2 (en) * | 2015-01-22 | 2018-01-09 | Kidde Technologies, Inc. | Spring-collet mechanism for activating a fire extinguisher |
KR101711103B1 (ko) * | 2015-02-10 | 2017-02-28 | 주식회사 태성트레이딩 | 가스저장 탱크 장착 장치 |
US10105562B2 (en) * | 2015-03-30 | 2018-10-23 | Utc Fire & Security Corporation | Hermetically sealed portable fire extinguisher with pressure indicator |
CN109310898B (zh) * | 2016-06-13 | 2021-10-22 | 株式会社高压 | 灭火器 |
US10252094B1 (en) | 2016-10-14 | 2019-04-09 | The United States Of America As Represented By The Secretary Of The Army | Fire extinguisher manifold with safety interlock cross-bolt |
SE540500C2 (en) * | 2016-12-19 | 2018-09-25 | Inventi Vidi Ab | Fire extinguishing device and method for extinguishing a fire |
US10232771B2 (en) * | 2017-06-02 | 2019-03-19 | Travis Zehr | Carbon monoxide alarm assembly |
WO2019017805A1 (ru) * | 2017-07-20 | 2019-01-24 | Николай Вадимович СОВА | Устройство для тушения пожара (варианты), запорно-пусковое устройство для устройства для тушения пожара (варианты), устройство принудительной активации для запорно-пускового устройства, система тушения пожара и способ тушения пожара |
WO2019103779A1 (en) | 2017-11-24 | 2019-05-31 | A Shepard's Protection Llc | Improved portable fire extinguisher adapted for persons with disabilities |
KR102082342B1 (ko) * | 2018-10-15 | 2020-02-27 | 하재민 | 수동식 소화기 |
CN110440042A (zh) * | 2019-08-16 | 2019-11-12 | 中煤科工集团重庆研究院有限公司 | 一种快开阀及应用其制备的抑爆器 |
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Also Published As
Publication number | Publication date |
---|---|
US20130014964A1 (en) | 2013-01-17 |
KR101385418B1 (ko) | 2014-04-14 |
TW201143852A (en) | 2011-12-16 |
CN102811775A (zh) | 2012-12-05 |
JP5757939B2 (ja) | 2015-08-05 |
EP2529795A4 (en) | 2013-10-09 |
KR20130001287A (ko) | 2013-01-03 |
JPWO2011121889A1 (ja) | 2013-07-04 |
EP2529795A1 (en) | 2012-12-05 |
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