US2017097154A1PendingUtilityA1

Device and method for producing fuel efficient candles configured with helical wicks

Assignee: MAJOR PAUL CAMERONPriority: Dec 19, 2016Filed: Dec 19, 2016Published: Apr 6, 2017
Est. expiryDec 19, 2036(~10.4 yrs left)· nominal 20-yr term from priority
F23D 3/16
24
PatentIndex Score
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Cited by
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Claims

Abstract

Helical wick candle and method of manufacturing this candle. The candle typically comprises a candle with meltable fuel such as wax, and at least one helical wick with a helical radius of at least ¼″ or greater. This helical wick is configured so that as the candle burns, the burning tip of the wick doesn't remain stationary, but rather circles the axis of the wick so as to burn more of the wax than would otherwise be possible with a prior art straight wick candle, at least when the diameter of the candle is larger than the pool of melted wax surrounding the wick. This results in higher fuel burning efficiency, often 1.5× or higher, as well as various interesting artistic shapes as the wick burns. Various wick sheath methods to improve the rigidity and burn resistance of the wick during the burning process are also discussed.

Claims

exact text as granted — not AI-modified
1 . A candle apparatus with a candle height, candle axis, candle radius, and candle circumference, candle top and candle bottom, comprising:
 a body of meltable fuel;   a helical wick with a helical wick axis disposed proximate said candle axis, said helical wick having a burnable tip, a helical wick radius that is less than said candle radius, a helical wick pitch, and a helical wick height that is at least as great as said candle height;   wherein said helical wick radius is at least ¼″;   said helical wick extending from at least said candle top to said candle bottom, and making at least one full turn between said candle top to said candle bottom;   said helical wick configured so that when said tip burns in said body of meltable fuel, said meltable fuel melts within a melting radius of said tip in a rotating manner, producing at least 1.5× higher fuel burning efficiency than a corresponding straight wick;   wherein a sum of said helical wick radius and said melting radius is less than said candle circumference.   
     
     
         2 . The candle apparatus of  claim 1 , wherein said helical wick comprises cotton, wood, or other burnable material. 
     
     
         3 . The candle apparatus of  claim 2 , wherein said helical wick further comprises an outer sheath of organic cellulose or cellulosic fibers wound around said helical wick. 
     
     
         4 . The candle apparatus of  claim 3 , wherein said outer sheath comprises hydrated organic cellulose or cellulosic fibers with a moisture content of at least 50% by weight. 
     
     
         5 . The candle apparatus of  claim 4 , wherein said outer sheath comprises plant leaves or other hydrated plant fibers. 
     
     
         6 . The candle apparatus of  claim 1 , wherein said candle apparatus is surrounded on said candle circumference and said candle bottom by a burn resistant support configured to retain said meltable fuel while said meltable fuel is in a melted state. 
     
     
         7 . The candle apparatus of  claim 6 , wherein said helical wick is configured so that said candle apparatus will consume substantially all of said meltable fuel while burning said helical wick from said candle top to said candle bottom. 
     
     
         8 . The candle apparatus of  claim 1 , wherein said candle apparatus is a substantially free standing candle that is not surrounded on said candle circumference. 
     
     
         9 . The candle apparatus of  claim 8 , wherein said helical wick is configured so that said candle apparatus will retain a substantial portion of an outer shell of unmelted meltable fuel that is between ⅛″ and ¼″ thick while burning said helical wick from said candle top to said candle bottom. 
     
     
         10 . The candle apparatus of  claim 1 , wherein said helical wick pitch is configured so that said tip, when said tip burns in said body of meltable fuel, rotates through one complete turn of said helical wick during substantially a same amount of time that it takes for said helical wick to burn said meltable fuel melted by said tip. 
     
     
         11 . A candle apparatus with a candle height, candle axis, candle radius, and candle circumference, candle top and candle bottom, comprising:
 a body of meltable fuel;   a plurality of helical wicks, each with a helical wick axis offset a fixed distance from said candle axis, each said helical wick having a burnable tip, a helical wick radius that, when combined with said fixed distance is less than said candle radius, a helical wick pitch, and a helical wick height that is at least as great as said candle height;   wherein each said helical wick radius is at least ¼″;   each said helical wick extending from at least said candle top to said candle bottom, and making at least one full turn between said candle top to said candle bottom;   each said helical wick configured so that when said tip burns in said body of meltable fuel, said meltable fuel melts within a melting radius of each said tip, said meltable fuel melts within a melting radius of said tip in a rotating manner, producing at least 1.5× higher fuel burning efficiency than a corresponding straight wick;   wherein a sum of said fixed distance, said helical wick radius and said melting radius is less than said candle circumference.   
     
     
         12 . A method of constructing a candle apparatus with a candle height, candle axis, candle radius, and candle circumference, candle top and candle bottom, said method comprising:
 winding a wick around a smooth and substantially cylindrical rod placed to form a helical wick with a helical wick axis disposed proximate said candle axis, said helical wick having a burnable tip, a helical wick radius that is less than said candle radius, a helical wick pitch, and a helical wick height that is at least as great as said candle height;   wherein said cylindrical rod has a radius is at least 3/16″, and said helical wick has a helical wick radius of at least ¼″;   placing said cylindrical rod and helical wick proximate a center of a candle mold;   said cylindrical rod and helical wick extending from at least said candle top to said candle bottom, and making at least one full turn between said candle top to said candle bottom;   said helical wick configured so that when said tip burns in a body of meltable fuel, said meltable fuel melts within a melting radius of said tip in a rotating manner, producing at least 1.5× higher fuel burning efficiency than a corresponding straight wick;   wherein a sum of said helical wick radius and said melting radius is less than said candle circumference;   filling said candle mold with melted meltable fuel;   after said meltable fuel has hardened, removing said cylindrical rod so that said helical wick remains affixed to hardened said meltable fuel;   and filling a void left by said cylindrical rod with additional melted meltable fuel.   
     
     
         13 . The method of  claim 12 , wherein said helical wick comprises cotton, wood, or other burnable material. 
     
     
         14 . The method of  claim 13 , wherein said helical wick further comprises an outer sheath of organic cellulose or cellulosic fibers wound around said helical wick. 
     
     
         15 . The method  claim 14 , wherein said outer sheath comprises hydrated organic cellulose or cellulosic fibers with a moisture content of at least 50% by weight; or wherein said outer sheath comprises plant leaves or other hydrated plant fibers. 
     
     
         16 . The method of  claim 12 , wherein said candle apparatus is surrounded on said candle circumference and said candle bottom by a burn resistant support configured to retain said meltable fuel while said meltable fuel is in a melted state. 
     
     
         17 . The method of  claim 16 , wherein said helical wick is configured so that said candle apparatus will consume substantially all of said meltable fuel while burning said helical wick from said candle top to said candle bottom. 
     
     
         18 . The method of  claim 12 , wherein said candle apparatus is a substantially free standing candle that is not surrounded on said candle circumference. 
     
     
         19 . The method of  claim 18 , wherein said helical wick is configured so that said candle apparatus will retain a substantial portion of an outer shell of unmelted meltable fuel that is between ⅛″ and ¼″ thick while burning said helical wick from said candle top to said candle bottom. 
     
     
         20 . The method of  claim 12 , wherein said helical wick pitch is configured so that said tip, when said tip burns in said body of meltable fuel, rotates through one complete turn of said helical wick during substantially a same amount of time that it takes for said helical wick to burn said meltable fuel melted by said tip.

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