Cosmetic device with thermal storage tip
09833055 · 2017-12-05
Assignee
Inventors
Cpc classification
A45D2200/055
HUMAN NECESSITIES
A45D2200/152
HUMAN NECESSITIES
B65D83/14
PERFORMING OPERATIONS; TRANSPORTING
B65D83/285
PERFORMING OPERATIONS; TRANSPORTING
A45D2200/155
HUMAN NECESSITIES
A45D34/04
HUMAN NECESSITIES
B05B11/10
PERFORMING OPERATIONS; TRANSPORTING
B65D83/30
PERFORMING OPERATIONS; TRANSPORTING
A45D40/26
HUMAN NECESSITIES
A45D2200/056
HUMAN NECESSITIES
International classification
B05C11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A dispenser includes a thermal storage tip and a housing having a reservoir for containing a product, such as a cosmetics product or a medicinal product. The thermal storage tip comprises a material that is capable of storing and retaining thermal energy during application of the product.
Claims
1. A device for applying a product, the device comprising: a housing having a reservoir configured to contain the product; a thermal storage tip coupled to the housing, the thermal storage tip comprising a metal or ceramic material, and comprising a convex application face for applying the product to a surface; and an insert disposed within the thermal storage tip, the insert defining a product delivery passageway in communication with the reservoir, the insert being truncated relative to the application face of the thermal storage tip, the product delivery passageway extending through the thermal storage tip and terminating in an aperture in the application face, wherein the convex application face is angled relative to an axis extending through the center of the product delivery passageway.
2. A device for applying a product, the device comprising: a housing having a reservoir configured to contain the product; a thermal storage tip comprising: a body coupled to the housing; a metal applicator configured to fit over a top of the body, the applicator having a convex application face for applying the product to a surface; and the body defining a product delivery passageway in communication with the reservoir, the insert being truncated relative to the application surface of the thermal storage tip, the product delivery passageway extending through the thermal storage tip and terminating in an aperture in the application face, wherein the convex application face is angled relative to an axis extending through the center of the product delivery passageway.
3. A dispenser comprising: a housing having a reservoir configured to contain a product; a thermal storage tip coupled to the housing, the thermal storage tip comprising a metal or a ceramic and a convex application face configured to apply the product to a surface, the application face having a circumferential edge; and a product delivery passageway in communication with the reservoir, a portion of the product delivery passageway extending through the thermal storage tip and terminating in an aperture in the application face, wherein, the convex application face is angled relative to a center axis of the portion of the product delivery passageway extending through the thermal storage tip, and the aperture is not centered between a point along the circumferential edge of the convex, disk-shaped application face and an opposing point of the circumferential edge of the convex, disk-shaped application face.
4. The dispenser according to claim 3, wherein the aperture is not centered between a topmost point of the application face and a bottommost point of the application face.
5. The dispenser according to claim 3, further comprising an airless pump for dispensing the product from the reservoir.
6. A dispenser comprising: a housing having a reservoir configured to contain a product; a thermal storage tip coupled to the housing, the thermal storage tip comprising a metal or a ceramic and having a convex disk shaped application face configured to apply the product to a surface; and a product delivery passageway in communication with the reservoir, the product delivery passageway extending through the thermal storage tip and terminating in an aperture of the convex disk shaped application face, wherein a center of the aperture is displaced from a center of curvature of the convex application face.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The detailed description is set forth with reference to the accompanying figures. In the figures, the left-most digit(s) of a reference number identifies the figure in which the reference number first appears. The use of the same reference numbers in different figures indicates similar or identical items.
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DETAILED DESCRIPTION
Overview
(9) This disclosure is directed to dispensers with thermal storage tips that are able to store and maintain a level of thermal energy. Thermal storage tips may have an application face comprising various metals, ceramics, composites, and/or other materials that can be heated or cooled and are able to retain the heated or cooled condition for a period of time. A product may be dispensed from the dispenser through the thermal storage tip for application to a user's skin. By virtue of the thermal retention of the tip, thermal energy may be applied to the dispensed product so that it may be heated or cooled during application. Moreover, the application face of the thermal storage tip may transfer heat to or from the user's skin, thereby causing the user to feel a thermal sensation (warm or cool depending on the thermal energy in the thermal storage tip). In some cases, the heat transfer may also minimize or alleviate pain or discomfort caused by damage to the skin.
(10) Illustrative Dispenser with Thermal Storage Tip
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(12) The dispenser 100 also includes a cap 112 that encapsulates the thermal storage tip 102 when the dispenser is not in use and includes a plug 114 that seals the product delivery passageway 110. The plug 114 may be made of a thermoplastic polymer similar to insert 108 or any other material which is non-reactive or resistant to the product being dispensed, such as various metals, plastics, ceramics, composites, or the like. Additionally or alternatively, either the plug 114, the insert 108, or both may be elastomeric, such that when the cap is in place either the plug 114, insert 108, or both, may expand and deform somewhat to seal the product delivery passageway 110.
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(14) In this implementation the thermal storage tip is shown as being a generally disk-shaped body. In addition, the thermal storage tip 102 in this implementation is made at least in part of stainless steel, and has a mass of between about 300 and about 700 milligrams, and a volume of between about 300 and about 700 millimeters3. More specifically, the thermal storage tip 102 has a mass of about 500 milligrams and a volume of about 500 millimeters.sup.3. In some implementations, the thermal storage tip may have a mass of at least about 300 milligrams (0.3 grams) and at most about 600 milligrams (0.6 grams), and a volume of at least about 450 millimeters.sup.3 and at most about 550 millimeters.sup.3. Further, in some implementations, the application face 106 may have a surface finish of between about 32 and about 64 micro-inches, while in other implementations the application face 106 may have a surface finish of about 30 to about 70 micro-inches. The surface finish corresponds to the measurements of the small scale variations in the height of the physical surface. A surface finish of about 64 micro-inches may be accomplished by casting and buffing inside the fabrication mold, while finer surface finishes may be achieved using one or more secondary operations, such as buffing, polishing, or chroming, for example. While features of various illustrative implementations are described, in other implementations, the storage tip may be configured in any form suitable for the application of the product contained in dispenser 100. For example, the thermal storage tip may be constructed in any other suitable shape and size and may have any suitable mass, surface finish, and/or surface treatment desired for a given application.
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(18) The following is a discussion of examples, without limitation, of delivery mechanisms for dispensing a product. The first example may be implemented using a click or a reverse click operation, whereby the user may operate the dispenser by moving the applicator member relative to the housing member in either a clockwise or counterclockwise direction.
(19) Another example delivery mechanism for dispensing the product may be a squeeze operation. In certain embodiments wherein the delivery mechanism is a squeeze operation, when pressure is applied to the housing containing the reservoir, the product in the reservoir may be forced, by the squeezing action, through the dispenser via a product delivery passageway for application to the user's skin.
(20) In yet another example, a delivery mechanism for dispensing the product may be by a pressurized dispenser, such as an aerosol dispenser. In certain embodiments wherein the delivery mechanism is an aerosol delivery mechanism, the composition will be held under pressure in a container and will be dispersed along with an aerosol propellant in response to actuation by a user. Actuation may be by depressing, rotating, tilting, or otherwise manipulating the thermal storage tip, pressing a button, and/or by any other suitable dispensing mechanism. Details of the construction and propellant of an aerosol dispenser are within the skill of one of ordinary skill in the art and will, therefore, not be described in detail herein.
(21) In yet another example, a delivery mechanism for dispensing product may be an airless pump. The term airless pump refers to a pump that provides dispensing of a substance from a container under pressure in essentially a single direction without permitting reverse (intake) flow of air via the pump. That is, as product is pumped from the container, the pumped product is not replaced with a corresponding volume of air through the pump. In addition to preventing reverse intake flow of air, an airless pump typically does not allow intake of any other substances to replace the volume of product pumped out of the container. For example, an airless pump could include a one-way valve, such as a check valve.
(22) Further illustrated in
(23) Illustrative Unitary Thermal Storage Tip
(24) While the dispenser with a thermal storage tip 100 shown in
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(26) Illustrative Thermal Storage Tip with Thermal Storage Applicator
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(28) The body 602 of the thermal storage tip 600 may be made of a thermoplastic polymer, for example, which is relatively light weight and inexpensive. In other implementations, the body 602 may be made of virtually any other desired material, such as various metals, plastics, ceramics, composites, or the like. In one implementation, the applicator 604 can be made of stainless steel. However, in other implementations, any suitable material may be used that is capable of retaining heat or cold during the application of the product. Examples of other suitable materials include, without limitation, metals (e.g., aluminum, titanium, steel, nickel, tin, copper, brass, alloys thereof, etc.), ceramics, high-density plastics, composites, or the like.
(29) Alternative Illustrative Dispenser with a Thermal Storage Tip
(30) In the implementations shown in
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(32) The thermal storage tips 702a-702c may be coupled to the respective housings 704a-704c by placing them over a narrowed neck 708a-708c of the housing and attaching them to the housing 704a-704c by, for example, crimping, adhesive, press-fit, snap-fit, retaining ribs or barbs on the inside of the thermal storage tip and/or the outside of the narrowed neck of the housing, and/or by any other suitable attachment means.
(33) In still other implementations, dispensers may additionally or alternatively include a brush, a sponge, or various other features to assist in the application of a dispensed product to a user's skin.
(34) While the dispensers with thermal storage tips shown in
CONCLUSION
(35) Although the invention has been described in language specific to structural features and/or methodological acts, it is to be understood that the invention is not necessarily limited to the specific features or acts described. Rather, the specific features and acts are disclosed as illustrative forms of implementing the invention.