Fire starter
09933160 ยท 2018-04-03
Assignee
Inventors
Cpc classification
C10L2230/06
CHEMISTRY; METALLURGY
F23Q1/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C10L2200/0469
CHEMISTRY; METALLURGY
F23Q2/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23Q3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F23Q2/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23Q3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fire starter includes a casing made from a first material a first material having a first time associated therewith that defines a length of time that the casing burns after being ignited. A second material disposed in the casing has a second time associated therewith that defines a length of time that the second material burns after being ignited. An igniter, disposed in the casing and adjacent to the second material, generates a first thermal event to ignite the second material wherein the second material combusts to define a second thermal event that ignites the first material. An actuator is coupled to the igniter and is positioned outside of the casing for activating the igniter to generate the first thermal event.
Claims
1. A fire starter, comprising: a casing made from a first material having a first time associated therewith, said first time defining a length of time that said casing burns after being ignited; a second material disposed in said casing, said second material having a second time associated therewith, said second time defining a length of time said second material burns after being ignited, said second time being less than said first time; an igniter disposed in said casing adjacent said second material for generating a first thermal event to ignite said second material wherein said second material combusts to define a second thermal event to ignite said first material; and an actuator coupled to said igniter and positioned outside of said casing for activating said igniter to generate said first thermal event.
2. A fire starter as in claim 1, wherein said first material comprises a mixture of paraffin wax and pieces of a cellulose material.
3. A fire starter as in claim 1, wherein said second material includes an oxidizer.
4. A fire starter as in claim 1, wherein said igniter comprises: a spark generator; and a fuse coupled to said spark generator and in contact with said second material.
5. A fire starter as in claim 1, wherein said actuator comprises one of a structure that is pulled and a structure that is pushed.
6. A fire starter as in claim 1, further comprising paper wrapped about a combination of said casing, said second material, and said igniter, wherein said actuator is positioned outside of said paper.
7. A fire starter as in claim 1, wherein said casing defines a chamber therein, and wherein said second material and said igniter are disposed in said chamber, said fire starter further comprising vent holes defining a fluid communication path between exterior regions of said casing and said chamber.
8. A fire starter as in claim 1, further comprising a flexible line coupled to at least one of said casing and said igniter, said flexible line extending from said casing to define a loop.
9. A fire starter, comprising: a casing defining a chamber therein, said casing made from a first material having a first time associated therewith, said first time defining a length of time that said casing burns after being ignited; a plurality of vent holes defined in said casing and defining a fluid communication path between exterior regions of said casing and said chamber; a second material to include an oxidizer disposed in said chamber, said second material having a second time associated therewith, said second time defining a length of time said second material burns after being ignited, said second time being less than said first time; an igniter disposed in said casing adjacent said second material for generating a first thermal event to ignite said second material wherein said second material combusts to define a second thermal event to ignite said first material; and an actuator coupled to said igniter, a first portion of the actuator disposed within a passageway of the casing, the passageway extended from the chamber to an outer surface of the casing, a second portion of the actuator positioned outside of the casing, the actuator configured to activate the igniter to generate said first thermal event.
10. A fire starter as in claim 9, wherein said first material comprises a mixture of paraffin wax and pieces of a cellulose material.
11. A fire starter as in claim 9, wherein said igniter comprises: a spark generator; and a fuse coupled to said spark generator and in contact with said second material.
12. A fire starter as in claim 9, wherein said actuator comprises one of a structure that is pulled and a structure that is pushed.
13. A fire starter as in claim 9, further comprising paper wrapped about a combination of said casing, said second material, and said igniter, wherein said actuator is positioned outside of said paper.
14. A fire starter as in claim 9, further comprising a flexible line coupled to at least one of said casing and said igniter, said flexible line extending from said casing to define a loop.
15. A fire starter as in claim 9, wherein said casing comprises at least two casing portions.
16. A fire starter, comprising: a casing made from a first material combustible that combusts when exposed to a flame; a spark generator disposed in said casing for generating a spark when activated; a fuse disposed in said casing, said fuse coupled to said spark generator and extending therefrom, said fuse combusting to define a burning fuse when exposed to said spark wherein said burning fuse burns for a time in a range of approximately 4 seconds to approximately 5 seconds; a second material disposed in said casing and in contact with said fuse, said second material combusting to define said flame when said second material is exposed to said burning fuse, wherein said flame burns for a time in a range of approximately 50 seconds to approximately 95 seconds; an actuator coupled to said spark generator, at least a portion of the actuator positioned outside of said casing for activating said spark generator; and an anchor line coupled to said spark generator, said anchor line extending from said casing.
17. A fire starter as in claim 16, wherein said first material comprises a mixture of paraffin wax and pieces of a cellulose material.
18. A fire starter as in claim 16, wherein said second material includes an oxidizer.
19. A fire starter as in claim 16, wherein said actuator comprises one of a structure that is pulled and a structure that is pushed.
20. A fire starter as in claim 16, further comprising paper wrapped about a combination of said casing, said spark generator, said fuse, and said second material, wherein said actuator and said loop are positioned outside of said paper.
21. A fire starter as in claim 16, wherein said casing defines a chamber therein, and wherein said second material, said fuse, and said spark generator are disposed in said chamber, said fire starter further comprising vent holes defining a fluid communication path between exterior regions of said casing and said chamber.
22. A fire starter as in claim 16, wherein said actuator and said loop are disposed at opposing ends of said casing.
23. A fire starter as in claim 16, wherein said casing comprises a first casing portion defining a first well portion and a second casing portion defining a second well portion, the first well portion and the second well portion collectively defining the chamber, the first casing portion being substantially identically shaped to the second casing portion.
24. The fire starter of claim 16, wherein the at least the portion of the actuator is positioned outside of the casing on a first side of the casing, the anchor line is extended from a second side of the casing different from the first side.
25. The fire starter of claim 16, wherein the anchor line is directly coupled to the spark generator and not directly coupled to the casing.
26. The fire starter of claim 1, further comprising paper wrapped about the casing overlying a vent hole defined by the casing, the paper being wrapped about the casing during activation of the actuator.
27. The fire starter of claim 9, wherein the casing includes at least two casing portions, a first casing portion from the at least two casing portions defining a first channel in a surface thereof, a second casing portion from the at least two casing portions defining a second channel in a surface thereof, the first channel and the second channel collectively defining a vent hole from the plurality of vent holes.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Other objects, features and advantages of the present invention will become apparent upon reference to the following description of the preferred embodiments and to the drawings, wherein corresponding reference characters indicate corresponding parts throughout the several views of the drawings and wherein:
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DETAILED DESCRIPTION OF THE INVENTION
(9) Referring now to the drawings and more particularly to
(10) The fire starter of the present invention is a novel arrangement of elements that, when activated, produce a plurality of thermal events with the last thermal event being an enduring flame suitable for starting a fire in a stack of wood, charcoal, etc. In terms of fire starter 10, the elements include an outer casing 12, an igniter 14 disposed in casing 12, a combustible material 16 disposed in casing 12 adjacent to igniter 14, and an actuator 18 coupled to igniter 14 and positioned outside of casing 12. While the overall size of fire starter 10 is not a limitation of the present invention, the entirety of fire starter 10 can generally be a hand-held structure.
(11) Casing 12 is made from a combustible material that provides the fuel for the final thermal event (i.e., a fire-starting enduring flame) for an activated fire starter 10. In general, casing 12 is made from a solid material that, once ignited, will burn for a sufficient period of time to ignite surrounding wood, charcoal, etc. that is adjacent to a burning casing 12. A suitable material choice for casing 12 is a mixture of paraffin wax and a cellulose material such as sawdust, woodchips, etc. The ratio of paraffin wax to cellulose material can be one-to-one or greater-than-one to one without departing from the scope of the present invention. In general, flame height will increase but the flame's life span will decrease with increasing amounts of paraffin wax. Accordingly, the ratio of paraffin wax to cellulose material can be tailored to suit a product's application. By way of example, a ratio of paraffin wax to cellulose material of approximately 1.5 to 1 provides a good balance between flame height and life span for most indoor and outdoor applications. For example, when casing 12 is constructed with this ratio and such that it can be hand-held, the burning life span of casing 12 can easily be in the range of approximately 20 minutes to approximately 60 minutes.
(12) Casing 12 can be formed or constructed to define a well or an internal chamber in which igniter 14 and combustible material 16 are disposed. As will be explained further below, if casing 12 forms part of, or all of, a chamber that houses igniter 14 and combustible material 16, vent holes (not shown) can be provided to admit outside air to flow into the chamber. Casing 12 can be a unitary body or could be assembled arrangement of casing portions without departing from the scope of the present invention.
(13) Combustible material 16 is the fuel for a thermal event that will trigger the combustion of casing 12. In general, the thermal event created when combustible material 16 combusts must last long enough to ignite casing 12 to combustion. To assure efficient combustion of combustible material 16 even in a low-level oxygen environment, an oxidizer can be included in combustible material 16. When casing 12 forms part of, or all of, an internal chamber housing combustible material 16, the inclusion of an oxidizer in combustible material 16 is particularly beneficial. The length of time that combustible material 16 must burn will generally be less than the burn time associated with casing 12. By way of example, when casing 12 is made from the above-described mixture of paraffin wax and cellulose material, combustible material 16 can be a mixture of materials capable of burning for a time in the range of approximately 50 seconds to approximately 95 seconds. Such mixtures can be readily found in road flare technologies where such mixtures generally include the following materials noted with a range of weight percent:
(14) TABLE-US-00001 Material Weight Percent Strontium nitrate 67-78% Potassium nitrate 2-11% Sulfur 6-15% Polyvinyl chloride 1-10% Paraffin oil 1-4% Sawdust 0-2%
Note that potassium nitrate defines the oxidizer in these types of mixtures.
(15) Igniter 14 is positioned adjacent to combustible material 16. In general, igniter 14 is capable of generating a thermal event that triggers the combustion of combustible material 16. That is, the thermal event produced by igniter 14 must last long enough to ignite combustible material 16. Depending on the material used for combustible material 16, the thermal event provided by igniter 14 (when activated) could be a spark, a small burn event (e.g., a burning fuse), a chemical reaction, etc. By way of example, when using the above-noted mixtures for combustible material 16, igniter 14 needs to provide a small burn event having a burn time in the range of approximately 4 second to approximately 5 seconds.
(16) Actuator 18 is coupled to igniter 14 but is positioned outside of casing 12. In general, actuator 18 is a manually-operated element that activates igniter 14 such that igniter 14 produces the igniter's above-described thermal event. As mentioned above, the manual operation applied to actuator 18 does not include or require the application of any external source of thermal energy. Actuator 18 can be realized by a structure that is manually pulled or manually pushed where such action activates igniter 14.
(17) Another embodiment of a fire starter in accordance with the present invention is illustrated in
(18) Another embodiment of the present invention is illustrated in
(19) An exemplary embodiment of the present invention will be described with simultaneous reference to
(20) Disposed in well region 44 (
(21) Fire starter 40 also includes an actuator 56 coupled to spark generator 50. By way of an illustrative example, if spark generator 50 is a pull-type device, actuator 56 can be a line/string coupled to spark generator 50 and extended through casing 42 to be accessible on the outside of casing 42. An anchoring line 58 can be attached to spark generator 50 (or casing 42) and extended though casing 42 to be accessible as a loop on the outside of casing 42. Anchoring line 58 has the attributes and function of previously-described anchoring line 32. By attaching anchoring line 58 to spark generator 50, a pulling/activating force applied to actuator 56 does not get transferred to casing 42. By isolating casing 42 from the pulling/activating force, casing 42 is not subject to tensile stresses. Isolating casing 42 from tensile stresses is important when casing 42 is made from a mixture of paraffin wax and cellulose material, i.e., a material that does not possess high tensile strength.
(22) A further embodiment of the present invention is illustrated in
(23) The advantages of the present invention are numerous. The fire starter does not require any externally-supplied source of thermal energy so that no matches, lighters, etc., are needed for its use. The fire starter is completely self-contained with its igniting thermal event devices being protected from wind thereby assuring its effectiveness in hostile outdoor environments. The fire starter's chain of thermal events for starting a fire is triggered by a single and simple mechanical action. At the same time, since the mechanical activation of the fire starter requires a purposeful event, the chance of its inadvertent ignition is greatly reduced or minimized.
(24) Although the invention has been described relative to specific embodiments thereof, there are numerous variations and modifications that will be readily apparent to those skilled in the art in light of the above teachings. It is therefore to be understood that, within the scope of the appended claims, the invention may be practiced other than as specifically described.