Claims
- 1. A portable fire extinguisher comprising:
a blower tube assembly having: an outer tube that defines an inner mixing chamber disposed adjacent to an outlet port adapted to direct a discharge flow of a mixed air and fire retardant out of the outer tube to extinguish a fire, wherein the inner mixing chamber is adapted for communication with a portable reservoir containing a liquid fire retardant which is enabled to flow into the inner mixing chamber; an inner tube defining a blower tube inlet port adapted to receive the outlet port of a portable forced air blower, wherein the inner tube is disposed for communication with the inner mixing chamber to enable a continuous volume of forced air to flow from a portable forced air blower, through the inner tube into the inner mixing chamber of the outer tube; and at least one ambient air intake port disposed for communication with the inner mixing chamber to enable ambient air, disposed outside the outer tube, to enter into the inner mixing chamber to mix with a flow of forced air and fire retardant for discharge through the outlet port of the outer tube.
- 2. A portable fire extinguisher as recited in claim 1 further comprising at least one spacer support disposed between the outer tube and the inner tube so that the relative position of outer tube from the inner tube is substantially fixed, and
wherein the ambient air intake port is defined by a passage formed between the outer tube and the inner tube, adjacent the spacer support.
- 3. A portable fire extinguisher as recited in claim 2 wherein an outer portion of said spacer support is fixed to the outer tube, and an opposing inner portion of said spacer support is fixed to inner tube thereby fixing the inner tube to the outer tube such that relative movement between the inner tube and the outer tube is restricted.
- 4. A portable fire extinguisher as recited in claim 2 wherein a plurality of spacer supports are employed to fix the inner tube in relation to the outer tube to restrict relative movement, and
wherein a plurality of ambient air intake ports are defined by said plurality of spacer supports.
- 5. A portable fire extinguisher as recited in claim 1 further comprising a flow nozzle extending through the outer tube of the blower tube assembly, wherein the flow nozzle includes a first end disposed on the outside of the blower tube assembly for connection to a portable reservoir, and a second end disposed within the inner mixing chamber so that liquid fire retardant can flow from the portable reservoir, through the flow nozzle into the inner mixing chamber.
- 6. A portable fire extinguisher as recited in claim 5 wherein the flow nozzle is disposed to extend through the outer tube, and through a support spacer, into the inner mixing chamber.
- 7. A portable fire extinguisher as recited in claim 2 wherein the outer tube is cylindrical in shape and larger in diameter that a cylindrically shaped inner tube, wherein a portion of the outer tube is disposed over the inner tube to form a passage that defines the ambient air intake port.
- 8. A portable fire extinguisher as recited in claim 7 wherein a plurality of support spacers are radially disposed around the inner tube, extending radially outward from the inner tube to the outer tube to form a plurality of alike ambient air intake ports.
- 9. A portable fire extinguisher as recited in claim 8 wherein each support spacer includes an outer portion fixed to the outer tube, and an opposing inner portion fixed to the inner tube thereby fixing the inner tube to the outer tube such that relative movement between the inner tube and the outer tube is restricted.
- 10. A method of making a portable fire extinguisher comprising the steps:
assembling a blower tube assembly including: providing an outer tube that defines an inner mixing chamber disposed adjacent to an outlet port adapted to direct a discharge flow of a mixed air and fire retardant out of the outer tube to extinguish a fire, wherein the inner mixing chamber is adapted for communication with a portable reservoir containing a liquid fire retardant which is enabled to flow into the inner mixing chamber; providing an inner tube that defines a blower tube inlet port adapted to receive the outlet port of a portable forced air blower, wherein the inner tube is disposed for communication with the inner mixing chamber to enable a continuous volume of forced air to flow from a portable forced air blower, through the inner tube into the inner mixing chamber of the outer tube; and forming at least one ambient air intake port disposed for communication with the inner mixing chamber to enable ambient air, disposed outside the outer tube, to enter into the inner mixing chamber to mix with a flow of forced air and fire retardant for discharge through the outlet port of the outer tube.
- 11. A method of making a portable fire extinguisher as recited in claim 10 further comprising the step of providing at least one spacer support disposed between the outer tube and the inner tube so that the relative position of outer tube from the inner tube is substantially fixed, and
wherein the ambient air intake port is formed by a passage formed between the outer tube and the inner tube, adjacent the spacer support.
- 12. A method of making a portable fire extinguisher as recited in claim 11 wherein a plurality of spacer supports are employed to fix the inner tube in relation to the outer tube to restrict relative movement, and
wherein a plurality of ambient air intake ports are defined and formed by said plurality of spacer supports.
- 13. A method of making a portable fire extinguisher as recited in claim 10 further comprising the step of extending a flow nozzle through the outer tube of the blower tube assembly, wherein the flow nozzle includes a first end disposed on the outside of the blower tube assembly for connection to a portable reservoir, and a second end disposed within the inner mixing chamber so that liquid fire retardant can flow from the portable reservoir, through the flow nozzle into the inner mixing chamber.
- 14. A method of making a portable fire extinguisher as recited in claim 11 wherein the outer tube is cylindrical in shape and larger in diameter that a cylindrically shaped inner tube, wherein a portion of the outer tube is disposed over the inner tube to form a passage that defines the ambient air intake port.
- 15. A method of making a portable fire extinguisher as recited in claim 14 wherein a plurality of support spacers are radially disposed around the inner tube, extending radially outward from the inner tube to the outer tube to form a plurality of alike ambient air intake ports.
- 16. A portable fire extinguisher comprising:
portable air means for producing a flow of forced air through an outlet port; portable reservoir means for storing and supplying a flow of liquid fire retardant; a blower tube assembly having: an outer tube that defines an inner mixing chamber disposed adjacent to an outlet port adapted to direct a discharge flow of a mixed air and fire retardant out of the outer tube to extinguish a fire, wherein the inner mixing chamber is adapted for communication with the portable reservoir to enable liquid fire retardant to flow into the inner mixing chamber; an inner tube defining a blower tube inlet port adapted to receive the outlet port of the portable air means, wherein the inner tube is disposed for communication with the inner mixing chamber to enable a continuous volume of forced air to flow from the air means, through the inner tube into the inner mixing chamber of the outer tube; and at least one ambient air intake port disposed for communication with the inner mixing chamber to enable ambient air, disposed outside the outer tube, to enter into the inner mixing chamber to mix with a flow of forced air and fire retardant for discharge through the outlet port of the outer tube.
- 17. A portable fire extinguisher as recited in claim 16 wherein the portable air means comprises a hand held forced air blower for producing a flow of forced air through an outlet port, and where the portable reservoir means comprises a liquid storage tank arranged to be carried as a back pack on the user's back to supply a flow of liquid fire retardant.
- 18. A portable fire extinguisher as recited in claim 16 further comprising at least one spacer support disposed between the outer tube and the inner tube so that the relative position of outer tube from the inner tube is substantially fixed, and
wherein the ambient air intake port is defined by a passage formed between the outer tube and the inner tube, adjacent the spacer support.
- 19. A portable fire extinguisher as recited in claim 18 wherein a plurality of spacer supports are employed to fix the inner tube in relation to the outer tube to restrict relative movement, and
wherein a plurality of ambient air intake ports are defined by said plurality of spacer supports.
- 20. A portable fire extinguisher as recited in claim 17 further comprising a flow nozzle extending through the outer tube of the blower tube assembly, wherein the flow nozzle includes a first end disposed on the outside of the blower tube assembly for communication with the portable reservoir means, and a second end disposed within the inner mixing chamber so that liquid fire retardant can flow from the portable reservoir, through the flow nozzle into the inner mixing chamber.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/468,422 filed May 7, 2003.
Provisional Applications (1)
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Number |
Date |
Country |
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60468422 |
May 2003 |
US |