The present application relates generally to a drying system for personal hydration systems and, more particularly, pertains to systems and methods for reliably, efficiently and safely drying a bladder and a supply hose of a personal hydration system.
Many athletes and others use back-mounted or waist-mounted personal hydration systems to carry water or other drinking liquid with them during strenuous activities. The systems typically include a flexible bag or hydration bladder in which the liquid of choice is contained, and a flexible supply hose running from the bladder to the mouth of a user to allow the user to take in liquids easily. The hydration bladder may be formed with various size fill openings that allow the user to pour water or a desired drink into and out of the bladder, and a removable cap is provided for opening and closing the fill opening. The outermost end of the supply hose is equipped with a valve that prevents air from entering into the system, and selectively enables the dispensing of liquid into the mouth of the user usually upon biting the valve. Such systems are convenient and provide hands-free hydration in lieu of carrying canteens, bottles, cans and other containers.
Once a user has completed activity, the nature of the materials involved in the personal hydration system does not readily allow for drying of the hydration bladder and the supply hose. This allows for retention of the liquid in the bladder for long periods of time, and therefore the possibility for growth of potentially harmful microorganisms, such as bacteria, mold and mildew.
The present application provides drying systems adapted to dry a personal hydration system having a fill opening and a supply hose. A dryer assembly providing a flow of forced air is adapted to be introduced into the fill opening of the personal hydration system. The dryer assembly includes a seal-forming structure adapted to form a seal with the fill opening of the personal hydration system to enhance the pressurization and inflation of the personal hydration system.
In another example, the dryer assembly includes an internal and external seal-forming structure. The dryer assembly may include a cover having a first retaining structure, and a dryer housing connected to the cover and having a second retaining structure. A motor may be positioned and retained between the first and second retaining structures and connected to a source of power. A fan is connected to a shaft of the motor and is located within the dryer housing. The dryer assembly may include a dryer housing constructed with a generally cylindrical first wall portion, a generally cylindrical second wall portion separated from the first wall portion by a flange and a generally cylindrical third wall portion extending from the second wall portion. The third wall portion is located eccentric to the first and second wall portions. An outer surface of the second wall forms a first seal-forming structure adapted to form a seal with one size fill opening of the bladder. An inner surface of the third wall portion defines a second seal-forming structure adapted to form a seal with another size fill opening of the bladder. The dryer assembly may include a channel defining a relief valve adapted to permit exhaust of air flow from the fill opening upon pressurization and inflation of the personal hydration system. The dryer assembly also may include a resilient cam arm adapted to enable the dryer assembly to sealingly fit variously sized fill openings.
In another example, a hydration bladder has a fill opening and a supply hose. A dryer assembly provides a flow of forced air introduced into the fill opening of the personal hydration system, and is sealed to the fill opening of the bladder.
The dryer assembly may have an external and internal seal-forming structure, either of which is sealed to the fill opening. The dryer assembly may include a dryer housing have a generally cylindrical first wall portion, a generally cylindrical second wall portion separated from the first wall portion by a flange, and a generally cylindrical third wall portion extending from the second wall portion. The second wall portion engages the fill opening to form a seal. An inner surface of the third wall portion is formed with retaining structure that engages the fill opening to form a seal.
In another example, a method of removing moisture from a personal hydration system having a bladder with a fill opening and a supply hose is provided. The method may include the steps of supplying a dryer assembly for providing a flow of forced air; engaging the dryer assembly against the fill opening of the bladder to create a seal between the dryer assembly and the fill opening; and operating the dryer assembly to force air into the bladder and out of the supply hose.
In another example, the method may include the step of providing the dryer assembly with a relief valve enabling air forced into the bladder to exhaust from the fill opening through the relief valve. The method may also include the step of providing the dryer assembly with a resilient cam arm enabling the dryer assembly to sealingly fit various sizes of fill openings. The step of engaging the dryer assembly with the fill opening may include the step of engaging retaining structure on the dryer assembly with threads of the fill opening. The step of engaging the dryer assembly with the fill opening also may include the step of engaging an outer wall portion of the dryer assembly with threads of the fill opening.
The drawings illustrate the best mode presently contemplated in carrying out the invention.
In the drawings:
Referring now to the drawings,
Personal hydration system 10 includes a flexible and expandable bladder 14 which is typically housed in a pack that is conveniently worn on the back or waist of a user as is well known. The bladder 14 may vary in size and shape depending on the volume of liquid to be carried by the user and the shape of the pack into which the bladder 14 is stored. The bladder 14 includes a threaded or non-threaded neck 16 defining a fill opening with a cap 18 which may be opened and closed to empty, fill or clean the bladder 14. Bladder 14 also includes an outlet opening 20 onto which one end of a flexible supply hose 22 is mounted. The supply hose 22 defines an elongated drinking tube to enable drink liquid to be withdrawn from the bladder 14. The other end of the supply hose 22 is provided with a valve in the form of a bite or mouth-actuated mouthpiece 24. The mouthpiece 24 is selectively deformed from a closed position in which liquid is prevented from being dispensed to a dispensing position in which the user may draw liquid from the bladder when the user compresses the mouthpiece 24 with one's teeth or lips. Drying system 12 includes a dryer assembly 26 connected to a wire 28 of a 110/220 to 12 volt power converter 30 that plugs into a wall outlet, or is otherwise connected to a source of electrical power. The dryer assembly 26 could be alternatively powered by a solar panel, battery packs or electrical generator, if desired. In the preferred embodiment, the dryer assembly 26 is electrically powered, but it should be understood that the dryer assembly 26 may contemplate other embodiments that provide a flow of forced air for drying the personal hydration system 10.
Referring now to
Cover 32 is formed with a series of intake openings 46 and a pair of spaced apart fastener openings 48 for receiving the screws 44. As seen best in
Still referring to
The intermediate wall portion 76 and the tabs 84 define external and internal seal-forming structure of the dryer assembly 26 which are variously engageable with differently sized fill opening necks 16 to form a seal between the dryer assembly 26 and the fill opening neck 16 that will enhance pressurization and inflation of the hydration bladder 14 during a drying operation.
Because of the sealing relationship between the fill opening neck 16 and the dryer assembly 26, the bladder 14 is pressurized and inflated in a faster, more efficient method than in previous drying methods to exhaust moistened air out of the supply hose 22. The enhanced inflation caused by the seal formation ensures that air circulates throughout the entire bladder 14 and the supply hose 22 so that all moisture can evaporate. The air relief valve formed by channel 78 allows the bladder 14 to be fully inflated, but prevents overinflation of the bladder 14 and allows moisture-laden air to leave the bladder 14 through both the supply hose 22 and the relief valve 78. The drying system 12 is particularly effective in providing forced air into the corners of the bladder 14 so as to prevent the growth of mold, mildew and other bacteria.
It should be appreciated that the dryer assembly 26 may be sealingly engaged with other fill opening necks 16 by squeezing the cam arm 80 allowing the dryer assembly 26 to be engaged with neck 16. Once cam arm 80 is released, the dryer assembly 26 expands providing the necessary seal with the neck 16 of the bladder 14.
It should also be understood that a bladder 14 may be dried by the drying system 12 while the bladder 14 remains in a waist or back-mounted pack. Although not shown, the drying system 12 may have an alternate use for drying shoes and boots after a hike or ride. Such a drying system is advantageous because there is no heat to shrink leather or synthetic materials of the footwear. The drying system 12 has been found to work well on drying new bladders 14 to evaporate solvents left over from the manufacturing process. The drying system 12 is applicable to a variety of personal hydration systems, such as those worn by users in a variety of sporting, recreational, hunting, industrial, military, and law enforcement applications.
The examples discussed above thus provide preventive maintenance and enhanced drying of a hydration bladder and supply hose, wherein the dryer assembly engages with the fill opening neck to form a seal enabling pressurization and inflation of the bladder forcing air to circulate and exhaust out the supply hose and the relief valve. The enhanced drying functions to eliminate the formation of harmful mold or mildew in the hydration bladder and supply hose thereby eliminating the need for any cleaning brushes and cleaning tablets. The dryer housing is configured to sealingly fit different brands of bladders with different diameters and both threaded and non-threaded necks.
While the invention has been described with reference to a preferred embodiment, those skilled in the art will appreciate that certain substitutions, alterations and omissions may be made without departing from the spirit thereof. Accordingly, the foregoing description is meant to be exemplary only and should not be deemed limitative on the scope of the invention set forth with the following claims.
This application claims the benefit of U.S. Provisional Patent Application Ser. No. 60/948,563, filed Jul. 9, 2007, which is incorporated herein by reference.
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Number | Date | Country | |
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60948563 | Jul 2007 | US |