DROPPER PACKAGE FOR DISPENSING A FLUID PRODUCT
20230276921 · 2023-09-07
Inventors
Cpc classification
A45D2200/054
HUMAN NECESSITIES
A45D34/04
HUMAN NECESSITIES
International classification
Abstract
A dropper package for dispensing and applying a fluid product, comprising a container body for storing the fluid product and a dropper assembly coupled to one end of the container body. The dropper assembly comprises a deformable bulb, a tube with its proximal end connected to the deformable bulb, and an applicator tip connected to a distal end of the tube. The applicator tip comprises a shank portion and an applying member that has two opposing main application faces. The applicator tip includes a groove on its outer surface that extends from a proximal end of the shank portion to at least a length of the applying member on one of the two opposing main application faces. The applying member is adapted to apply and dispense the fluid product in a very controlled manner as well as massage the user's keratinous surface.
Claims
1. A dropper package for a fluid product, the dropper package comprising: a container body with a hollow reservoir for containing the fluid product; a cap removably coupled to the container body; a deformable bulb coupled to the cap and defining an interior chamber; a tube coupled to a lower portion of the deformable bulb; an applicator tip coupled to a distal end of the tube either directly or indirectly through a connector; wherein the tube has a channel that is in fluid communication with the interior chamber of the deformable bulb; wherein an upper portion of the applicator tip is formed as a shank portion and a lower portion of the applicator tip is formed as applying member that is intended to come in contact with the skin of a user for application of the fluid product; wherein the applicator tip comprises two opposing main application faces; wherein a groove 011 an outer surface of the applicator tip; Wherein the groove extends from a proximal end of the shank portion to at least a length of the applying member on one of the two opposing main application faces; and wherein a portion of the groove that extends in the shank portion is in constant: fluid communication with the channel of the tube.
2. The dropper package according to claim 1, wherein the applicator tip is made from a thermal material capable of providing a cold sensation on contact with the user's skin; and wherein the thermal material is selected from a glass, metal, stone, or ceramic.
3. The dropper package according to claim 1, wherein the dropper assembly includes a push button, the cap, an inner screw member, the deformable bulb, the tube, a connector, and the applicator tip.
4. The dropper package according to claim 3, wherein the push button is coupled to an upper inner side of the cap; the deformable bulb is housed inside the cap, and wherein the applicator tip is connected to a lower end of the tube through the connector.
5. The dropper package according to claim 4, wherein the tube includes at least one coupling groove formed on an inner periphery near a proximal end portion of the tube; and wherein a coupling protrusion present on an outer upper portion of the connector is received and fitted into the at least one coupling, groove of the tube for coupling the connector to the tube.
6. The dropper package according to claim 5, wherein the shank portion includes at least one coupling protrusion on an outer surface thereof that is received in at least one coupling groove present on an inner circumferential surface of a lower portion of the connector.
7. The dropper package according to claim 1, wherein the applicator tip is elongated along a longitudinal axis of the dropper package; and wherein the groove is formed in the middle of the one of the two opposing main application faces.
8. The dropper package according to claim l , wherein the applying member includes two opposing main application faces namely a first application face and a second application face; wherein the applicator tip includes a first lateral side and a second lateral side; wherein the groove is formed in the middle of the first application face of the applying member.
9. The dropper package according to claim 8, wherein the first lateral side is concavely curved along a longitudinal direction of the applying member and the second lateral side is convexly curved along the longitudinal direction of the applying member; and wherein the first lateral side and the second lateral side converge towards a free distal end of the applying member.
10. The dropper package according to claim 1, wherein the applying member has a rounded cross-section along at least a major portion of the length of the applying member; and wherein the rounded cross-section of the applying member is selected from a group consisting of a circular shape, an oval, and an elliptical shape.
11. The dropper package according to claim 1, wherein the applying member tapers towards a free distal end of the applying member, and wherein the free distal end of the applying member is off-centered with respect to a longitudinal axis of the dropper package.
12. The dropper package according to claim 1, wherein the groove has outer edges that form a longitudinal curved profile on the applying member and wherein the groove has one of a C-shaped or a U-shaped cross-sectional shape.
13. The dropper package according to claim 1, wherein the groove extends over more than a quarter of the width of the applying member as well as over more than a quarter of the length of the applying member.
14. The dropper package according to claim 1, wherein the groove has a maximum depth between 1 mm to 2.5 mm; wherein the maximum width of the groove on the applying member is between 2 mm and 4 mm; wherein the maximum length of the groove on the applying member is between 6 mm and 10 mm.
15. The dropper package according to claim 1, wherein the maximum width of the applying member is between 5 mm and 15 mm, the length of the applying member is between 10 mm and 18 mm; the maximum thickness of the applying member is between 5 mm and 15 mm.
16. The dropper package according to claim 1, wherein the groove in the shank portion creates an inner gap between an inner side of a lower portion of the tube and the shank portion; wherein the inner gap creates a dispensing channel between the tube and the shank portion; wherein the dispensing channel terminates at the proximal end of the applying member; wherein the dispensing channel is in fluid communication with the channel of the tube.
17. A dropper package for a fluid product, the dropper package comprising: a container body with a hollow reservoir for containing the fluid product; a cap removably coupled to the container body; a deformable bulb coupled to the cap and defining an interior chamber; a tube coupled to a lower portion of the deformable bulb; an applicator tip coupled to a lower end of the tube either directly or indirectly through a connector; wherein the tube has a channel that is in fluid communication with the interior chamber of the deformable bulb; wherein an upper portion of the applicator tip is formed as a shank portion and a lower portion of the applicator tip is formed as applying member that is intended to come in contact with the skin of a user for application of the fluid product, wherein the applicator tip comprises two opposing main application faces; wherein a groove on an outer surface of the applicator tip; wherein the groove extends from a proximal end of the shank portion to at least a length of the applying member on one of the two opposing main application faces; wherein the groove in the shank portion at least partially defines a dispensing channel that is in fluid communication with the channel of the tube; and wherein the applicator tip is at least partially made from a thermal material capable of providing a cold sensation on contact with the skin.
18. A dropper package for a fluid product, the dropper package comprising: a container body with a reservoir for containing the fluid product; a cap removably coupled to the container body; a deformable bulb coupled to the cap and defining an interior chamber; a tube coupled to a lower portion of the deformable bulb; an applicator tip coupled to a lower end of the tube; wherein the tube has a channel that is in fluid communication with the interior chamber of the deformable bulb; wherein an upper portion of the applicator tip is formed as a shank portion and a lower portion of the applicator tip is formed as an applying member that is intended to come in contact with the skin of a user for application of the fluid product; wherein the applicator tip comprises two opposing main application faces; wherein a groove extends from a proximal end of the shank portion to at least a length of the applying member on one of the two opposing main application faces; and wherein a portion of the groove that extends in the shank portion is in constant fluid communication with the channel of the tube.
19. The dropper package according to claim 17, wherein the groove in the shank portion creates an inner gap between an inner side of a lower portion of the tube and the shank portion; wherein the inner gap creates a dispensing channel between the tube and the shank portion; wherein the dispensing channel terminates at the proximal end of the applying member; wherein the dispensing channel is in fluid communication with the channel of the tube.
20. The dropper package according to claim 17, wherein the applicator tip is made from a thermal material capable of providing a cold sensation on contact with the user's skin; and wherein the thermal material is selected from a glass, metal, stone or ceramic.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0044] A more complete appreciation of the present disclosure and many of the attendant advantages thereof will be readily obtained as the same becomes better understood by reference to the following detailed description when considered in connection with the accompanying drawings, wherein:
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DETAILED DESCRIPTION
[0063] As shown throughout the drawings, like reference numerals designate like or corresponding parts. While illustrative embodiments of the present disclosure have been described and illustrated above, it should be understood that these are exemplary of the disclosure and are not to be considered as limiting. Additions, deletions, substitutions, and other modifications can be made without departing from the spirit or scope of the present disclosure. Accordingly, the present disclosure is not to be considered as limited by the foregoing description.
[0064] Throughout this specification, the terms “comprise,” “comprises,” “comprising” and the like, shall consistently mean that a collection of objects is not limited to those objects specifically recited.
[0065] In the description of embodiments of the disclosure disclosed herein, any reference to direction or orientation is merely intended for convenience of description and is not intended in any way to limit the scope of the present disclosure. Relative terms such as “proximal,” “distal,” “lower,” “upper,” “horizontal,” “vertical,” “above,” “below,” “up,” “down,” “top” and “bottom” as well as derivatives thereof (e.g., “horizontally,” “downwardly,” “upwardly,” etc.) should be construed to refer to the orientation as then described or as shown in the drawing under discussion. These relative terms are for convenience of description only and do not require that the package be constructed or operated in a particular orientation unless explicitly indicated as such.
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[0068] Referring to
[0069] Referring back to
[0070] A wiper 132 is fitted into the opening 211 of the container body 200, as seen in
[0071] In an embodiment, the wiper 132 is made of plastic material. In various embodiments, the plastic material is selected from low-density polyethylene LDPE), polyethylene (PE) or any other suitable material.
[0072] Further, as shown in
[0073] The deformable bulb 125 is housed inside the cap 120 such that an upper portion of the deformable bulb 125 is located inside the push button 110. An upper portion of the tube 121 is received inside the deformable bulb 125. The deformable bulb 125 has a fastening groove 155 formed on an inner side thereof at a lower portion of the deformable bulb 125 and a locking projection 160 is formed at an outer surface of the tube 121 on its upper portion, and wherein the locking projection 160 is fixedly received within the fastening groove 155 of the deformable bulb 125 so that the tube 121 is not separated from the deformable bulb 125. More desirably, the tube 121 is fixedly and air-tightly coupled inside to the deformable bulb 125.
[0074] As seen in
[0075] Referring to
[0076] As shown in
[0077] As shown in
[0078] The first lateral side 126c is concave and the second lateral side 126 is convex. In the illustrated embodiment, the radius of curvature of the first lateral side 126c is greater than the radius of curvature of the second lateral side 126d. This makes it possible to obtain good convergence of the lateral sides 126c, 126d towards the free distal end 126f of the applying member 126.
[0079] As shown in
[0080] The applying member 126 has axially asymmetrical smooth curves, that is to say, may be selected to have an offset towards one side, having a shape like a mango, as seen in
[0081] Further, as shown in
[0082] In the present embodiment, the applicator tip 127 is made of a thermal material that can retain heat and provide a cooling sensation upon contact with the user's skin. The thermal material preferably is ceramic. In alternate embodiments, the applicator tip 127 may be made of glass, steel, ceramic, stones, or metals, wherein the metal is selected from but not limited to silver, stainless steel, platinum, aluminum, gold, copper, brass, nickel, and alloys thereof. In yet another alternate embodiment, the applicator tip 127 may not be made from a thermal material and may be made of a plastic or any other suitable material known in the art. Further, in exemplary embodiment, the applying member 126 is free from flocking. However, in alternate embodiments, the applying member 126 may be at least partially flocked.
[0083] As seen in
[0084] Referring to
[0085] Referring to
[0086] Further, the connector 122 includes at least one coupling groove 210 and one coupling protrusion 350, wherein the at least one coupling groove 210 is provided on an inner circumferential surface of the lower portion 326, and the coupling protrusion 350 is provided on the outer peripheral surface of the upper portion 325 of the connector 122. Additionally, both the coupling groove 210 and protrusion 350 can be constructed of any diameter and depth. Further, the connector 122 may be of any shape or include various structures.
[0087] According to an aspect of the present disclosure, the applicator tip 127 may be secured to the connector 122, for example, by a pess-fit, snap-fit, adhesive, and/or engagement by one or more engagement features or by any other means of engagement known in the art,. In the exemplary embodiment, referring to
[0088] Referring to
[0089] Further as seen in FIGS, 11 and 12, the dispensing channel 310 is formed by an inner gap between the inner side of the lower portion 326 of the connector 122 and the surface of groove 450 extending on the shank portion 128. The dispensing channel 310 terminates in the dispensing orifice 150 formed at the proximal end 126e of the applying member 126. The dispensing, or 150 is thus partially defined the connector 122 and partially by an interface between the shank portion 128 and the applying member 126 of the applicator tip 127. The fluid product in the longitudinal channel 330 of the tube 121 is in fluid communication with the channel 320 formed at the upper portion 325 of the connector 122 and with the dispensing channel 310.
[0090] Intake of the fluid product inside the dispensing channel 310 as well as the release of the fluid product is done through the dispensing orifice 150 of the dropper assembly 300. Further, the fluid product released from an orifice 150 of the applicator tip 127 is held within the groove 450 so that it can be applied to the skin of the user.
[0091] Whole in use, when the push button 110 is pressed slowly towards its lowest position, it causes the deformable bulb 125 to deform reducing the interior volume of the chamber 111 of the deformable bulb 125 and ready the dropper assembly 300 for (hawing fluid product out of the container body 200. Releasing the push button 110 allows the chamber 111 of the deformable bulb 125 to return to its original volume and shape, drawing the fluid product into the dispensing orifice 150 and up into the channel 330 in the tube 121 through the channel 310, the channel 320 of the connector 122. To dispense the drawn-in product, when the channel 330 of the tube 121 is already filled with a predetermined quantity of fluid, in that case, the push button 110 is pressed slowly towards its lowest position, causing the deformable bulb 125 to deform as a result the fluid product discharges out in a controlled manner from the dispensing orifice 150 on the applicator tip 127. More particularly, when pressure is applied by the squeezing action to the deformable bulb 125, the fluid product in the tube 121 is forced to dispense out through the dispensing orifice 150 via dispensing channels 310 and 320 for application to the user's skin. The fluid product released from the dispensing orifice 150 conies directly onto the groove 450 of the applicator tip 127 that prevents the fluid product from dripping and wasting.
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[0093] The container body 200 that defines a reservoir 201 for filling with fluid may be made of a rigid material like glass, metal, hard plastic, or any other material known in the art. However, in alternate embodiments, the container body 200 is made of glass material. The container body material is non-reactive with the fluid product stored in the reservoir 201. In other implementations, the container body 200 may be made of virtually any other material that is non-reactive or resistant to the fluid product being dispensed, such as various metals, plastics, glass, composites, or the like.
[0094] According to an aspect of the present disclosure, the cosmetic package 100, 1000 is of an elongated cylindrical configuration. However, in alternate embodiments, the cosmetic package 100, 1000 may be of an elongated square, polygonal configuration, oval, triangular, heart, or any other configuration known in the art.
[0095] According to an embodiment, the cap 120 may be made of a rigid material like metal, hard plastic, or any other material known in the art, However, in alternate embodiments, the cap 120 may be made of a rigid thermoplastic material like; acrylonitrile-butadiene-styrene (ABS); polyethylene (PE); polypropylene (PP), or any other material known in the art.
[0096] According to an embodiment of the present disclosure, the connector 122 is made of plastic, wherein the plastic may be selected from the following list: thermoplastic materials; polyethylene (PE); polyethylene terephthalate (PET); polypropylene (PP); this list not being limiting. In an alternate embodiment, the connector 122 can be made of a material selected from plastic, steel, and metal.
[0097] According to an embodiment of the present disclosure, the tube 121, 1121 is made of plastic, wherein the plastic may be selected from the following list: thermoplastic materials; polyethylene (PE); polyethylene terephthalate (PET); polypropylene (PP); this list not being limiting. In an alternate embodiment, the tube 121, 1121 can be made of a material selected from glass, metal, steel, or plastic.
[0098] It will be understood that: the foregoing is only illustrative of the principles of the disclosure, and that various modifications can be made by those skilled in the art without departing from the scope and spirit of the disclosure. For example, the shapes and/or sizes of various components can be different from the shapes and sizes shown herein. As another example, the materials used for various components can be different from those mentioned specifically herein.