The present invention relates to a vial suited to deliver its contents without shards.
The delivery of topical medicine to the skin to treat skin conditions or to penetrate the skin for medicinal purposes is known. Likewise, the delivery of tooth whitener gel compositions is known. U.S. Pat. No. 7,201,577, for instance, discloses a tooth whitener applicator and method. The applicator is a conventional glass ampoule having a tooth whitening solution vacuum-sealed within a chamber of the ampoule. The whitening solution is a liquid based gel containing a whitening formula.
The conventional glass ampoule is contained within a cylindrical plastic sleeve closed at one end and enclosed at its other open end by the proximal termination of a brush-type applicator. An adhesive such as glue is used to adhere the periphery of the brush to the inner surfaces of the plastic cylinder. The bristles preferably have circular cross-sections so that when they are tightly packed together and adhered to the plastic cylinder, interstices between adjacent bristles are sufficiently large enough to permit flow through of the tooth whitening composition while being sufficiently small enough to prevent shards of glass from the ampoule, when popped or broken open, to pass through the brush. A cardboard sleeve surrounds the plastic cylinder to protect the user from the glass ampoule when broken.
The dimension of such interstices, therefore, imposes limitations on the tooth whitening composition. The presence of shards of glass affects the choice for design of the applicator, because it is necessary to prevent the shards from reaching the brush-type applicator for safety reasons. The solution proposed by U.S. Pat. No. 7,201,577 is to limit the size of the interstices. Such a solution, of course, would not be necessary if there were no shards.
Limiting the dimension of the interstices to prevent the passage of shards affects how viscous the tooth whitening composition can be. If the tooth whitening composition is too viscous, the interstices may become clogged due to the small size of the interstices to prevent the passage of shards through them. On the other hand, the more viscous the whitening composition, the better the whitening composition adheres to teeth, which is a desirable attribute for teeth whitening.
It would be desirable to eliminate the need to break a glass ampoule for delivering a tooth whitening composition gel. Indeed, it is desirable to prevent the creation of shards and thus (1) eliminate the need to take safety precautions to prevent the passage of the shards through interstices, (2) eliminate the need for a protective cardboard sleeve to protect the user from the shards, and (3) eliminate the risk of clogging of the gel at the interstices as might otherwise arise if the interstices size is too small and the viscosity of the gel is too high. By increasing the size of the interstices beyond that necessary to prevent the passage of shards, the viscosity of the gel may be likewise increased to enhance adhesion without creating the risk of clogging at the interstices.
One aspect of the invention resides in a flexible plastic vial. One end of the vial is preferably closed and the other preferably plugged. The plugged end opens as a plug is pulled out. This allows the contents of the vial to be squeezed and poured out through interstices to reach a brush-like applicator.
The vial is flexible to narrow an interior volume under manual squeezing pressure. There is a mating structure that closes the open end of the flexible tubular vial in a retracted relative position and that opens the open end of the flexible tubular vial in a cleared relative position to form a gap. There is a sleeve that bounds the gap. There is a blocking structure that limits relative movement of the mating structure to only between the retracted and cleared positions. There is an interstices structure that includes interstices dimensioned and arranged to permit contents of the flexible tubular vial to pass through the interstices as the flexible tubular vial is flexing under the manual squeezing pressure to reduce an interior volume of the vial and provided the mating structure is in the cleared relative position.
The squeezing of the flexible plastic vial is at a location between the ends of the vial. Such squeezing narrows the interior accordingly, which tends to urge the tooth whitening composition gel toward the path of least resistance—toward the open end. Further, by pointing the open end downward, gravity will assist in urging the tooth whitening composition gel toward the open end. A brush-type applicator receives the tooth whitening composition gel emerging through the interstices.
The contents of the flexible tubular vial may be a tooth whitening composition gel of any desired viscosity, including those of relatively high viscosities so as to better adhere to teeth surfaces to be whitened than would otherwise be the case for tooth whitening compositions of lesser viscosity. For applications other than dentistry in which the contents are delivered to a surface of a tooth, the contents may be delivered to other areas of the body. For instance, a pharmaceutical application would deliver a topical medicine or emollient to a skin surface for treatment of a medical malady, such as skin diseases, burns and other applications such as those requiring the pharmaceutical to penetrate through pores in the skin. In other applications, the contents could be an alternative medicine remedy, herbal extract or other medicinal remedy, or be used to color the skin and/or for cosmetic purposes.
For a better understanding of the present invention, reference is made to the following description and accompanying drawings, while the scope of the invention is set forth in the appended claims:
Turning to the drawing,
Both embodiments have a vial 10 (
The present invention has application of delivery of a substance to surfaces in a variety of applications. For instance, the substance may be a tooth whitening composition delivered to a tooth for cosmetic dental applications. The substance may be a drug, such as doxycycline hyclate, delivered to an inner mouth surface such as gum surface to treat gum disease or other mouth conditions as part of a dental treatment. The substance may be a colorant delivered to a skin surface for coloring the skin for cosmetic purposes. The substance may be a topical medicine delivered to a skin surface to treat skin disorders as part of a dermatology treatment or to deliver a medicinal pharmaceutical to penetrate pores in the skin to reach target areas of the body. The substance may be an herbal extract delivered to a skin surface as part of an alternative medicine treatment.
The male structure or sleeve 18 includes a stem or a plug 14. The male structure 18 also has a cap 20 with a sleeve 22. The sleeve 22 bounds a gap 24 (
The male structure or sleeve 18 also includes interstices 30 arranged preferably in an equidistant manner about the inner walls 33 of the male structure 18. As seen in
The vial 10 has a proximal end with a flexible walled chamber 11 and a distal opening 13, and contains a teeth whitening composition gel of any desired viscosity. The male structure or sleeve 18 is urged to separate from the vial 10 so that the plug 14 leaves the female structure 12 to reach an unplugged or cleared position. As a result, squeezing the vial 10 causes the gel to be urged out of the vial 10 about the plug 14 and bounded by the sleeve 22 so as to reach the interstices 30 to pass through the same and reach the applicator 32 (
The squeezing is performed at a location along the vial 10 that is spaced from ends of the vial 10. Such squeezing narrows the volume of the interior where the squeezing takes place. With less interior volume available, the gel, whose volume otherwise fills the vial 10, is urged by the manual squeezing pressure to flow along a path of least resistance. In this case, such a path leads to and through the interstices 30.
In addition, the end of the vial 10 with the male structure 18 thereon may be pointed downward so that gravity assists in urging the gel through the interstices 30. Once through the interstices 30, the gel reaches the applicator 32, which if equipped with bristles of a brush-like applicator, may be brushed on for application to the teeth. Since the vial 10 is made of flexible plastic, it flexes under pressure of squeezing and will not break. Further, since it does not contain any glass vial, no shards will be created.
Therefore, there is no need to take safety measures to prevent the passage of shards through the interstices 30 and thus the dimension of the interstices 30 need not be limited to so prevent such passage. Further, there is no need to provide for a cardboard sleeve on the vial 10 to protect the user's fingers from shards. Finally, the viscosity of the gel need not be limited so as to prevent passage of shards through the interstices 30.
Turning to the two-piece twist embodiment of
Turning to the three-piece pull-apart embodiment of
A brief discussion follows about the manner of conventional delivery of a tooth whitening composition gel by GoSMILE, Inc. with reference to
The present invention has application of delivery of a substance to surfaces in a variety of applications. For instance, the substance may be a tooth whitening composition delivered to a tooth for cosmetic dental applications. The substance may be a drug, such as doxycycline hyclate, delivered to an inner mouth surface such as gum surface to treat gum disease or other mouth conditions as part of a dental treatment. The substance may be a colorant delivered to a skin surface for coloring the skin for cosmetic purposes. The substance may be a topical medicine delivered to a skin surface to treat skin disorders as part of a dermatology treatment or to deliver a medicinal pharmaceutical to penetrate pores in the skin to reach target areas of the body. The substance may be an herbal extract delivered to a skin surface as part of an alternative medicine treatment.
While the foregoing description and drawings represent the preferred embodiments of the present invention, it will be understood that various changes and modifications may be made without departing from the scope of the present invention.
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