US20140190966A1 - Container lid - Google Patents

Container lid Download PDF

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Publication number
US20140190966A1
US20140190966A1 US13/733,996 US201313733996A US2014190966A1 US 20140190966 A1 US20140190966 A1 US 20140190966A1 US 201313733996 A US201313733996 A US 201313733996A US 2014190966 A1 US2014190966 A1 US 2014190966A1
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US
United States
Prior art keywords
pair
valve
protuberances
body member
apertures
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US13/733,996
Inventor
Antonio F. Coloneri
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Liquiseal LLC
Original Assignee
Antonio F. Coloneri
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Antonio F. Coloneri filed Critical Antonio F. Coloneri
Priority to US13/733,996 priority Critical patent/US20140190966A1/en
Priority to PCT/US2014/010067 priority patent/WO2014107507A2/en
Publication of US20140190966A1 publication Critical patent/US20140190966A1/en
Assigned to LIQUISEAL LLC reassignment LIQUISEAL LLC ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: SEIDLER, JACK, COLONERI, ANTONIO F.
Abandoned legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D51/00Closures not otherwise provided for
    • B65D51/16Closures not otherwise provided for with means for venting air or gas
    • B65D51/1672Closures not otherwise provided for with means for venting air or gas whereby venting occurs by manual actuation of the closure or other element
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D51/00Closures not otherwise provided for
    • B65D51/16Closures not otherwise provided for with means for venting air or gas
    • B65D51/1672Closures not otherwise provided for with means for venting air or gas whereby venting occurs by manual actuation of the closure or other element
    • B65D51/1683Closures not otherwise provided for with means for venting air or gas whereby venting occurs by manual actuation of the closure or other element by actuating a separate element in the container or closure
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G19/00Table service
    • A47G19/22Drinking vessels or saucers used for table service
    • A47G19/2205Drinking glasses or vessels
    • A47G19/2266Means for facilitating drinking, e.g. for infants or invalids
    • A47G19/2272Means for facilitating drinking, e.g. for infants or invalids from drinking glasses or cups comprising lids or covers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D2543/00Lids or covers essentially for box-like containers
    • B65D2543/00009Details of lids or covers for rigid or semi-rigid containers
    • B65D2543/00018Overall construction of the lid
    • B65D2543/00046Drinking-through lids

Definitions

  • the present disclosure relates to a container lid and, more particularly, a container lid configured for sealable coupling with an open top of a fluid supporting container such as a beverage cup.
  • a container such as a cup with a lid selectively mounted to a rim of the cup.
  • lift-tabs or the like may be utilized to provide an opening in the lid for dispensing fluid contained within the cup.
  • the lift-tab is typically perforated to allow a user to fold the lift-tab and secure the lift-tab to a corresponding protuberance provided on a top surface of the lid.
  • one problem associated with the lift-tab type lids is that they are not resealable after having been folded.
  • known resealable container lids typically include complex mechanical mechanisms that are often an assembly of several distinct elements. As such, the known resealable container lids can be mechanically complicated, difficult to use, and/or are relatively expensive to manufacture.
  • An aspect of the present disclosure provides a lid configured for use with a fluid container.
  • the lid includes a body member including an outer periphery configured to couple to a rim of a fluid container.
  • the body member defines a pair of apertures that extend through the body member.
  • the body member may be detachably couplable to the fluid container.
  • a valve operably coupled to an interior/bottom surface of the body member includes a pair of protuberances that are configured to selectively engage the pair of apertures.
  • Each protuberance is in registration with one of the pair of apertures. Depression of one of the protuberances moves the pair of protuberances out of sealed engagement with the pair of apertures for dispensing fluid contained within the fluid container.
  • the pair of protuberances may be in vertical registration with the pair of apertures so as to extend parallel to a longitudinal axis that is defined through the fluid container.
  • the valve may include a generally elliptical configuration that has side portions at opposite ends of a major axis defined through the valve and top and bottom portions at opposite ends of a minor axis defined through the valve.
  • the side portions of the valve may be configured to flex as a result of depressing one or both of the pair of protuberances to enable the pair of protuberances to be spring loaded and to form a fluid tight seal with surfaces of the body member when the pair of protuberances are positioned within the pair of apertures.
  • the top portion of the valve may be thinner and/or thicker than the bottom portion to provide the valve with a suitable flexibility.
  • the top portion of the valve may be spaced apart from the interior surface of the body member to facilitate a sealed engagement between the pair of protuberances and the apertures when the valve is coupled to the interior surface of the body member. In certain embodiments, the top portion of the valve may be configured to rest on the interior surface of the body member.
  • a mounting bracket may be operably coupled to the interior surface of the body member.
  • the mounting bracket contacts the bottom portion of the valve to couple the valve to the interior surface of the body member such that both protuberances are depressible for dispensing fluid through one or both of the pair of apertures.
  • the mounting bracket may be operably coupled to the interior surface of the body member and in contact with the bottom portion of the valve to couple the valve to the interior surface of the body member such that one of the protuberances is depressible for dispensing a fluid from the aperture in registration with the other protuberance.
  • the mounting bracket may be mechanically coupled to the lid, for example, via at least one biocompatible adhesive.
  • the mounting bracket may be integrally formed with the body member.
  • Each of the apertures may be provided in a corresponding recess provided on the body member of each lid.
  • the corresponding recesses and/or apertures are positioned on the body member in a diametrically opposite relationship relative to one another.
  • the corresponding recesses may be configured to receive a corresponding one of the pair of protuberances therein so as to allow depression thereof by the user.
  • the corresponding recesses may have a generally circumferential configuration.
  • a generally elongated recess may be provided on the body member and positioned between the pair of corresponding recesses so as to allow stacking of a plurality of lids and to save space.
  • the generally elongated recess is configured to enable adjacently stacked lids to be radially offset, for example, approximately 90 degrees.
  • the lid includes a body member including an outer periphery configured to couple to a rim of a fluid container.
  • the body member defines a pair of apertures extending through the body member.
  • the body member may be detachably couplable to the fluid container.
  • a valve operably couples to an interior surface of the body member and includes a pair of depressible protuberances disposed in selective sealed engagement with the pair of apertures so as to prevent dispensing of a fluid from the fluid container.
  • a mounting bracket operably couples to an interior surface of the body member and is configured to couple the valve to the body member.
  • the pair of protuberances is configured such that depression of one of the pair of protuberances moves the pair of protuberances out of sealed engagement with the pair of apertures for dispensing a fluid of the fluid container.
  • Each of the pair of protuberances may be in vertical registration with one of the pair of apertures so as to extend parallel to a longitudinal axis that is defined through the fluid container.
  • the valve may include a generally elliptical configuration that has side portions at opposite ends of a major axis defined through the valve and top and bottom portions at opposite ends of a minor axis defined through the valve.
  • the side portions of the valve may be configured to flex as a result of depressing one or both of the pair of protuberances to enable the pair of protuberances to be spring loaded and to form a fluid tight seal with surfaces of the body member when the pair of protuberances are positioned within the pair of apertures.
  • the top portion of the valve may be thinner and/or thicker than the bottom portion to provide the valve with a suitable flexibility.
  • the top portion of the valve may be spaced apart from the interior surface of the body member to facilitate a sealed engagement between the pair of protuberances and the apertures when the valve is coupled to the interior surface of the body member. In certain embodiments, the top portion of the valve may be configured to rest on the interior surface of the body member.
  • a mounting bracket may be operably coupled to the interior surface of the body member and in contacting relationship with the bottom portion of the valve to couple the valve to the interior surface of the body member such that both protuberances are depressible for dispensing a fluid from the aperture in registration with the other protuberance.
  • the mounting bracket may be operably coupled to the interior surface of the body member and in contacting relationship with the bottom portion of the valve to couple the valve to the interior surface of the body member such that one of the protuberances is depressible for dispensing a fluid from the aperture in registration with the other protuberance.
  • the mounting bracket may be coupled to the lid via one or more biocompatible adhesives.
  • Each of the apertures may be provided in a corresponding recess provided on the body member.
  • the corresponding recesses may be configured to receive a corresponding one of the pair of protuberances therein so as to allow depression thereof by the user.
  • the corresponding recesses may have a generally circumferential configuration.
  • a generally elongated recess may be provided on the body member and positioned between the pair of corresponding recesses so as to allow stacking of a plurality of lids.
  • FIG. 1 is a perspective view of a user drinking from a fluid container including a lid according to an embodiment of the instant disclosure
  • FIG. 2 is an exploded view of the fluid container and lid depicted in FIG. 1 ;
  • FIG. 3 is a perspective view of the lid
  • FIG. 4 is a top elevational view of the lid
  • FIG. 5 is a cross-sectional view taken along line segment F-F in FIG. 4 ;
  • FIG. 6 is a cross-sectional view of the lid with a valve of the lid being illustrated in an open configuration
  • FIG. 7 is a cross-sectional, perspective view of the lid
  • FIG. 8 is a partial, cross-sectional view of the lid illustrating the valve shown in a closed configuration
  • FIG. 9 is a perspective view, with parts separated, of the valve and a mounting bracket of the lid;
  • FIG. 10 is a cross-sectional view of two lids in a stacked configuration.
  • FIG. 11 is a cross-sectional view of another lid according to another embodiment of the present disclosure.
  • proximal or “trailing” refer to the portion of a structure that is closer to a user, while the terms “distal” or “leading” refer to the portion of a structure that is farther from the user.
  • FIG. 1 is a perspective view of a fluid container 2 that utilizes a lid 4 according to an embodiment of the instant disclosure.
  • the lid 4 allows a user to selectively dispense a fluid “FL” from fluid container 2 while maintaining a sealed engagement therewith when not dispensing fluid “FL” to prevent inadvertent spilling of the fluid “F.”
  • Fluid container 2 may be made from any suitable material including, but not limited to, plastic, paper, glass, metal, ceramic, closed-cell extruded polystyrene foam, cardboard, etc. Although fluid container 2 may have any suitable configuration, fluid container 2 is shown, for illustrative purposes, as a typical paper/cardboard cup utilized, for example, by most restaurants, coffee houses, etc.
  • Fluid container 2 includes a generally cylindrical configuration having an open top end 6 and closed bottom end 10 ( FIG. 2 ). As appreciated, open top end 6 defines an opening 8 . A flange or rim 12 extends along a peripheral edge that defines opening 8 and is configured to facilitate detachable engagement between fluid container 2 and lid 4 . It is within the purview of the present disclosure; however, that lid 4 may be non-detachably or fixedly secured to fluid container 4 and movable with respect thereto from an open configuration for filling fluid container 2 with one or more suitable fluids to a closed, sealed configuration for containing and selectively dispensing fluid “FL.” In this particular embodiment, one or more hinge configurations may be utilized to couple lid 4 to fluid container 2 . Those skilled in the art will appreciate other coupling methods that may be utilized to couple lid 4 and fluid container 2 to one another.
  • lid 4 is illustrated.
  • Lid 4 may be formed from any suitable material, including the materials mentioned above with respect to fluid container 2 .
  • lid 4 is shown formed from a relatively soft plastic. In some embodiments, however, lid 4 may be made from a relatively hard plastic.
  • lid 4 may disposable, and in the latter instance, lid 4 may be reusable, e.g., lid 4 may be used and, subsequently, cleaned for future use. In either instance, lid 4 provides a simple and convenient method for dispensing fluid from fluid container 2 .
  • lid 4 is in sealed engagement with fluid container 2 so as not to allow fluid “FL” to escape therefrom, i.e., fluid container 2 is spill proof under normal operation, e.g., held by a user in a pre-dispensing configuration.
  • lid 4 includes a body 14 of suitable configuration for attaching to fluid container 2 .
  • body 14 is shown having a generally circumferential configuration with an outer surface 16 including a plurality of recesses thereon.
  • a pair of opposing recesses 20 a, 20 b ( FIGS. 3-7 ) of any suitable configuration are formed on outer surface 16 and are configured to receive a portion of a finger of a user therein.
  • Recesses 20 a, 20 b are shown having a generally circumferential configuration defined by sidewalls 22 a, 22 b and a bottom wall 24 a, 24 b, respectively ( FIGS. 3-7 ).
  • Recesses 20 a, 20 b may be utilized as a reservoir for dispensed fluid “FL” to prevent inadvertent dribbling as fluid “FL” is being dispensed from apertures 26 a, 26 b and into a user's mouth (see, e.g., FIG. 1 ).
  • an optional, generally elongated recess 21 of suitable configuration may be provided between recesses 20 a, 20 b.
  • Recess 21 may be configured to allow stacking of lid 2 , thereby facilitating packaging of lid 4 , for example, when lid 4 is purchased and sold in large quantities to vendors.
  • a pair of corresponding apertures 26 a, 26 b ( FIGS. 6 and 8 ) of suitable configuration are defined through respective bottom walls 24 a, 24 b and are configured to selectively receive therein a pair of corresponding protuberances 28 a, 28 b provided on a valve 30 .
  • apertures 26 a, 26 b include a generally circumferential configuration that is configured for sealed engagement with a generally conical surface provided on corresponding protuberances 28 a, 28 b, see FIGS. 5-8 and 10 for example. In this sealed engagement, fluid “FL” from fluid container 2 is prevented from being dispensed therefrom.
  • body 14 is formed with a thickness of plastic that provides a suitable rigidity to body 14 .
  • body 14 should have a thickness that prevents substantial deformation thereof when lid 4 is manipulated by a user.
  • bottom walls 24 a, 24 b should be rigid or sturdy enough so as not to deform when protuberances 28 a, 28 b are in sealed engagement with apertures 26 a, 26 b.
  • bottom walls 24 a, 24 b are not sufficiently thick, there exists the likelihood that bottom walls 24 a, 24 b may deform when protuberances 28 a, 28 b are in a sealed engagement therewith, which, in turn, may result in a seal between protuberances 28 a, 28 b and apertures 26 a, 26 b becoming compromised.
  • valve 30 couples to an interior surface 32 of body 14 and is configured to allow selective dispensing of fluid “FL” contained within fluid container 2 when lid 4 is coupled thereto.
  • valve 30 may be made from any suitable biocompatible material (e.g., plastic) and includes a generally elliptical configuration having side portions 34 a, 34 b at opposite ends of a major axis “B-B” defined through valve 30 and top and bottom portions 36 a, 36 b are disposed at opposite ends of a minor axis “C-C” defined through valve 30 , as best seen in FIG. 9 .
  • Side portions 34 a, 34 b are configured to flex as a result of depressing one or both of protuberances 28 a, 28 b.
  • valve 30 flexes about side portion 34 a, which, in turn, causes protuberance 28 b to move out of sealed engagement with aperture 26 b such that fluid “FL” can be dispensed from fluid container 2 through aperture 26 b, see FIGS. 1 and 6 .
  • the same effect is achieved when protuberance 28 b is depressed.
  • valve 30 may be shown in some of the figures with only two opposing side portions 34 a, 34 b, valve 30 may have any suitable number of side portions.
  • the valve 30 may have three or more side portions (e.g., Y-shaped with 3 side portions, star-shaped with 5 side portions, etc.).
  • each of these side portions may have any number of protuberances that are movably disposed in registration with any number of apertures defined within the body member of the lid at any number of locations about the body member.
  • Each side portion may be integrally formed and/or mechanically coupled to one or more of the other side portions by any suitable securement process such as welding, fastening, adhesive, etc.
  • the depressed protuberance provides a vent that facilitates dispensing fluid from lid 4 through the opposing aperture. More particularly, for example, when protuberance 28 a is depressed and fluid container 2 is tilted for dispensing fluid through aperture 26 b, aperture 26 a vents air therethrough, which, in turn, provides a smooth, steady flow of fluid “FL” through aperture 26 b and across sidewall 22 b of recess 20 b (see FIG. 1 ).
  • Top portion 36 a of valve 30 may have any suitable thickness when compared to bottom portion 36 b to provide valve 30 with any suitable flexibility sufficient to enable stable movement and selective sealing engagement of the protuberance(s) with the corresponding aperture(s).
  • top portion 36 a may be thicker than bottom portion 36 b to facilitate movement of protuberances 28 a, 28 b into and/or out of sealed engagement with apertures 26 a, 26 b when either of protuberances 28 a, 28 b is depressed and/or released.
  • top portion 36 a is configured to be spaced from interior surface 32 of body member 4 to facilitate a sealed engagement between protuberances 28 a, 28 b and apertures 26 a, 26 b when valve 30 is coupled to body 14 ( FIGS.
  • top portion 36 a is configured to engage and/or rest against the interior 32 of body member 4 . Additionally, top portion 36 a may be slanted upwardly from valve 30 to ensure that protuberances 28 a, 28 b remain in sealed engagement with apertures 26 a, 26 b when protuberances 28 a, 28 b are not depressed (see, e.g., FIG. 9 ). The upward slanting of top portion 36 a may also facilitate manufacturing.
  • bottom portion 36 b of valve 30 may have any suitable thickness relative to top portion 36 a to provide suitable flexibility to valve 30 sufficient to enable stable movement and selective sealing engagement of the protuberance(s) with the corresponding aperture(s).
  • bottom portion 36 b may be thinner than top portion 36 a to facilitate movement of protuberances 28 a, 28 b into and/or out of sealed engagement with apertures 26 a, 26 b when either of protuberances 28 a, 28 b is depressed and/or released.
  • a mounting bracket 40 extends across a medial portion 38 of bottom portion 36 b and is utilized to couple valve 30 to interior surface 32 of body 14 .
  • medial portion 38 is pressed towards interior surface 32 and forms two bowed portions 37 a, 37 b that provide a suitable biasing force that is configured to bias protuberances 28 a, 28 b into sealed engagement with apertures 26 a, 26 b.
  • a balance (equilibrium) between a thickness of bottom walls 24 a, 24 b and a biasing force provided by bowed portions 37 a, 37 b is needed to ensure that the biasing force of the bottom portion 36 b does not deform or otherwise alter the apertures 24 a, 24 b.
  • such a balance may be acquired via rudimentary calculations.
  • Mounting bracket 40 may take on any suitable configuration to achieve the purposes described herein ( FIG. 9 ).
  • mounting bracket 40 includes a “C” shape with two opposing flanges 42 a 42 b that are spaced apart from one another by a distance that is slightly greater than a width of bottom portion 36 b.
  • a pair of sidewalls 44 a, 44 b extend from flanges 42 a, 42 b and meet a base portion 46 that is configured to contact medial portion 38 of bottom portion 36 b.
  • Flanges 42 a, 42 b may couple to interior surface 32 of body 14 via any suitable coupling methods, e.g., a biocompatible adhesive or the like.
  • an alternate type of mounting configuration may be utilized for securing valve 30 lid 4 .
  • Protuberances 28 a, 28 b may include any suitable configuration including sides, or portions thereof, that are slanted at any suitable angle and/or sides, or portions thereof, that are not slanted (e.g., perpendicular to body member).
  • protuberances 28 a, 28 b can include a conical configuration to enable spill proof sealing when the sides of the protuberances are positioned in engagement with the surfaces of the lid that define the apertures.
  • sides K of protuberances 28 a, 28 b are angled to intersect at an angle “ ⁇ ” relative to axis “D-D.”
  • Angle “ ⁇ ” may be any suitable angle, e.g., angle “ ⁇ ” may range from between about 1 degree to about 90 degrees.
  • any of the dimensions of the protuberances may be arranged to accommodate different aperture diameters to provide selective sealing engagement of the outer surface of one or both of the protuberances 28 a, 28 b with one or both of the aperture 24 a, 24 b.
  • dimensions of the protuberance(s) can be configured such that the protuberance(s) seal with the aperture(s) at a predetermined location L along sides K of the protuberance.
  • the outer surface of the protuberance(s) and the inner surfaces of the body member that define the aperture(s) form an annular seal at the location L.
  • protuberances 28 a, 28 b have a relatively blunt tip 29 a, 29 b, see FIGS. 8-9 .
  • protuberances 28 a, 28 b may each include a blunt tip 29 a, 29 b that is ergonomically configured to accommodate various finger sizes (see area of detail “G” in FIG. 8 for example).
  • Protuberances 28 a, 28 b are configured such that depression of one of the protuberances, e.g., protuberance 28 a, moves both of protuberances 28 a, 28 b out of sealed engagement with apertures 26 a, 26 b such that fluid “FL” may be dispensed from fluid container 2 , see FIG. 6 .
  • protuberances 28 a, 28 b are in vertical registration with apertures 26 a, 26 b so as to extend along an axis “D-D” that is parallel to a longitudinal axis “A-A” defined through lid 2 ( FIG. 10 ).
  • protuberances 28 a, 28 b may be positioned within apertures 26 a, 26 b so as to extend non-parallel to longitudinal axis “A-A.”
  • fluid container 2 including a lid 4
  • fluid “FL” has been previously provided into fluid container 2 and lid 4 is secured thereto to form a seal around fluid container 2 .
  • protuberances 28 a, 28 b are oriented parallel to axis “D-D.”
  • protuberances 28 a, 28 b are in sealed engagement with apertures 26 a, 26 b so as to prevent inadvertent dispensing of the fluid “FL” from fluid container 2 .
  • a user may depress one of protuberances 28 a, 28 b, e.g., protuberance 28 b.
  • protuberance 28 b moves out of sealed engagement with aperture 26 b, which, in turn, causes protuberance 28 a to move out of engagement with aperture 26 a (see FIG. 6 for example).
  • a user may move fluid container 2 to a position for consuming the fluid “FL”, see FIG. 1 for example.
  • lid 4 including valve 30 overcomes the aforementioned drawbacks that are typically associated with conventional lids. That is, lid 4 is simple to operate and is relatively inexpensive to manufacture when compared to conventional lids.
  • valve 30 that includes two protuberances 28 a, 28 b that may be depressed for dispensing fluid “FL” from fluid container 2
  • other configurations of valve 30 may also be utilized.
  • lid 104 , 130 an alternative embodiment of the lid including a valve is illustrated and designated 104 , 130 , respectively.
  • Lid 104 and valve 30 are substantially similar to lid 4 and valve 30 and as such only those features unique to lid 104 and valve 130 are described in detail.
  • valve 130 includes a bottom portion 136 b that provides a suitable biasing force that is configured to bias protuberances 128 a, 128 b into sealed engagement with corresponding apertures (not explicitly shown in FIG. 11 ).
  • mounting bracket 40 is replaced by a mounting bracket 140 that is configured to mount valve 130 to an interior of lid 104 .
  • mounting bracket 140 is secured to an interior surface of lid 104 by one or more suitable securement methods, e.g., an adhesive, and is configured to couple to bottom portion 136 b (e.g., by an adhesive).
  • lid 104 Operation of lid 104 is similar to lid 4 , unlike lid 4 ; however, only one of protuberances 128 a, 128 b are configured to dispense fluid “FL” from the fluid container.
  • protuberance 128 b is configured to dispense fluid “FL” from the fluid container when protuberance 128 a is depressed.
  • depressing protuberance 128 b does not cause protuberance 128 a to move out of sealed engagement with the corresponding aperture. Therefore, this embodiment only allows dispensing of fluid “FL” on one side only.

Abstract

A lid configured for use with a fluid container is provided. The lid includes a body member including an outer periphery configured to couple to a rim of a fluid container. The body member includes a pair of apertures extending therethrough. A valve operably coupled to an interior surface of the body member includes a pair of protuberances configured to selectively engage the pair of apertures. The pair of protuberances configured such that depression of one protuberances moves the pair of protuberances out of sealed engagement with the pair of apertures for dispensing a fluid contained within the fluid container.

Description

    TECHNICAL FIELD
  • The present disclosure relates to a container lid and, more particularly, a container lid configured for sealable coupling with an open top of a fluid supporting container such as a beverage cup.
  • BACKGROUND
  • It has long been known in the prior art to enclose a container such as a cup with a lid selectively mounted to a rim of the cup. For example, lift-tabs or the like may be utilized to provide an opening in the lid for dispensing fluid contained within the cup. The lift-tab is typically perforated to allow a user to fold the lift-tab and secure the lift-tab to a corresponding protuberance provided on a top surface of the lid. However, one problem associated with the lift-tab type lids is that they are not resealable after having been folded.
  • In comparison, known resealable container lids typically include complex mechanical mechanisms that are often an assembly of several distinct elements. As such, the known resealable container lids can be mechanically complicated, difficult to use, and/or are relatively expensive to manufacture.
  • SUMMARY
  • An aspect of the present disclosure provides a lid configured for use with a fluid container. The lid includes a body member including an outer periphery configured to couple to a rim of a fluid container. The body member defines a pair of apertures that extend through the body member. The body member may be detachably couplable to the fluid container. A valve operably coupled to an interior/bottom surface of the body member includes a pair of protuberances that are configured to selectively engage the pair of apertures. Each protuberance is in registration with one of the pair of apertures. Depression of one of the protuberances moves the pair of protuberances out of sealed engagement with the pair of apertures for dispensing fluid contained within the fluid container. The pair of protuberances may be in vertical registration with the pair of apertures so as to extend parallel to a longitudinal axis that is defined through the fluid container.
  • The valve may include a generally elliptical configuration that has side portions at opposite ends of a major axis defined through the valve and top and bottom portions at opposite ends of a minor axis defined through the valve. The side portions of the valve may be configured to flex as a result of depressing one or both of the pair of protuberances to enable the pair of protuberances to be spring loaded and to form a fluid tight seal with surfaces of the body member when the pair of protuberances are positioned within the pair of apertures. The top portion of the valve may be thinner and/or thicker than the bottom portion to provide the valve with a suitable flexibility. In embodiments, the top portion of the valve may be spaced apart from the interior surface of the body member to facilitate a sealed engagement between the pair of protuberances and the apertures when the valve is coupled to the interior surface of the body member. In certain embodiments, the top portion of the valve may be configured to rest on the interior surface of the body member.
  • A mounting bracket may be operably coupled to the interior surface of the body member. The mounting bracket contacts the bottom portion of the valve to couple the valve to the interior surface of the body member such that both protuberances are depressible for dispensing fluid through one or both of the pair of apertures. Alternatively, the mounting bracket may be operably coupled to the interior surface of the body member and in contact with the bottom portion of the valve to couple the valve to the interior surface of the body member such that one of the protuberances is depressible for dispensing a fluid from the aperture in registration with the other protuberance. The mounting bracket may be mechanically coupled to the lid, for example, via at least one biocompatible adhesive. In embodiments, the mounting bracket may be integrally formed with the body member.
  • Each of the apertures may be provided in a corresponding recess provided on the body member of each lid. In embodiments, the corresponding recesses and/or apertures are positioned on the body member in a diametrically opposite relationship relative to one another. The corresponding recesses may be configured to receive a corresponding one of the pair of protuberances therein so as to allow depression thereof by the user. The corresponding recesses may have a generally circumferential configuration. Additionally, a generally elongated recess may be provided on the body member and positioned between the pair of corresponding recesses so as to allow stacking of a plurality of lids and to save space. In embodiments, the generally elongated recess is configured to enable adjacently stacked lids to be radially offset, for example, approximately 90 degrees.
  • According to one aspect, the lid includes a body member including an outer periphery configured to couple to a rim of a fluid container. The body member defines a pair of apertures extending through the body member. The body member may be detachably couplable to the fluid container. A valve operably couples to an interior surface of the body member and includes a pair of depressible protuberances disposed in selective sealed engagement with the pair of apertures so as to prevent dispensing of a fluid from the fluid container. A mounting bracket operably couples to an interior surface of the body member and is configured to couple the valve to the body member. The pair of protuberances is configured such that depression of one of the pair of protuberances moves the pair of protuberances out of sealed engagement with the pair of apertures for dispensing a fluid of the fluid container. Each of the pair of protuberances may be in vertical registration with one of the pair of apertures so as to extend parallel to a longitudinal axis that is defined through the fluid container.
  • The valve may include a generally elliptical configuration that has side portions at opposite ends of a major axis defined through the valve and top and bottom portions at opposite ends of a minor axis defined through the valve. The side portions of the valve may be configured to flex as a result of depressing one or both of the pair of protuberances to enable the pair of protuberances to be spring loaded and to form a fluid tight seal with surfaces of the body member when the pair of protuberances are positioned within the pair of apertures. The top portion of the valve may be thinner and/or thicker than the bottom portion to provide the valve with a suitable flexibility. In embodiments, the top portion of the valve may be spaced apart from the interior surface of the body member to facilitate a sealed engagement between the pair of protuberances and the apertures when the valve is coupled to the interior surface of the body member. In certain embodiments, the top portion of the valve may be configured to rest on the interior surface of the body member.
  • A mounting bracket may be operably coupled to the interior surface of the body member and in contacting relationship with the bottom portion of the valve to couple the valve to the interior surface of the body member such that both protuberances are depressible for dispensing a fluid from the aperture in registration with the other protuberance. Alternatively, the mounting bracket may be operably coupled to the interior surface of the body member and in contacting relationship with the bottom portion of the valve to couple the valve to the interior surface of the body member such that one of the protuberances is depressible for dispensing a fluid from the aperture in registration with the other protuberance. The mounting bracket may be coupled to the lid via one or more biocompatible adhesives.
  • Each of the apertures may be provided in a corresponding recess provided on the body member. The corresponding recesses may be configured to receive a corresponding one of the pair of protuberances therein so as to allow depression thereof by the user. The corresponding recesses may have a generally circumferential configuration. Additionally, a generally elongated recess may be provided on the body member and positioned between the pair of corresponding recesses so as to allow stacking of a plurality of lids.
  • Other aspects, features, and advantages will be apparent from the description, drawings, and the claims
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • Various embodiments of the present disclosure are described hereinbelow with references to the drawings, wherein:
  • FIG. 1 is a perspective view of a user drinking from a fluid container including a lid according to an embodiment of the instant disclosure;
  • FIG. 2 is an exploded view of the fluid container and lid depicted in FIG. 1;
  • FIG. 3 is a perspective view of the lid;
  • FIG. 4 is a top elevational view of the lid;
  • FIG. 5 is a cross-sectional view taken along line segment F-F in FIG. 4;
  • FIG. 6 is a cross-sectional view of the lid with a valve of the lid being illustrated in an open configuration;
  • FIG. 7 is a cross-sectional, perspective view of the lid;
  • FIG. 8 is a partial, cross-sectional view of the lid illustrating the valve shown in a closed configuration;
  • FIG. 9 is a perspective view, with parts separated, of the valve and a mounting bracket of the lid;
  • FIG. 10 is a cross-sectional view of two lids in a stacked configuration; and
  • FIG. 11 is a cross-sectional view of another lid according to another embodiment of the present disclosure.
  • DETAILED DESCRIPTION
  • As used herein, the terms “proximal” or “trailing” refer to the portion of a structure that is closer to a user, while the terms “distal” or “leading” refer to the portion of a structure that is farther from the user.
  • FIG. 1 is a perspective view of a fluid container 2 that utilizes a lid 4 according to an embodiment of the instant disclosure. In accordance with the instant disclosure, the lid 4 allows a user to selectively dispense a fluid “FL” from fluid container 2 while maintaining a sealed engagement therewith when not dispensing fluid “FL” to prevent inadvertent spilling of the fluid “F.”
  • Fluid container 2 may be made from any suitable material including, but not limited to, plastic, paper, glass, metal, ceramic, closed-cell extruded polystyrene foam, cardboard, etc. Although fluid container 2 may have any suitable configuration, fluid container 2 is shown, for illustrative purposes, as a typical paper/cardboard cup utilized, for example, by most restaurants, coffee houses, etc.
  • Fluid container 2 includes a generally cylindrical configuration having an open top end 6 and closed bottom end 10 (FIG. 2). As appreciated, open top end 6 defines an opening 8. A flange or rim 12 extends along a peripheral edge that defines opening 8 and is configured to facilitate detachable engagement between fluid container 2 and lid 4. It is within the purview of the present disclosure; however, that lid 4 may be non-detachably or fixedly secured to fluid container 4 and movable with respect thereto from an open configuration for filling fluid container 2 with one or more suitable fluids to a closed, sealed configuration for containing and selectively dispensing fluid “FL.” In this particular embodiment, one or more hinge configurations may be utilized to couple lid 4 to fluid container 2. Those skilled in the art will appreciate other coupling methods that may be utilized to couple lid 4 and fluid container 2 to one another.
  • Referring to FIG. 3, lid 4 is illustrated. Lid 4 may be formed from any suitable material, including the materials mentioned above with respect to fluid container 2. For illustrative purposes, lid 4 is shown formed from a relatively soft plastic. In some embodiments, however, lid 4 may be made from a relatively hard plastic. As can be appreciated, in the former instance, lid 4 may disposable, and in the latter instance, lid 4 may be reusable, e.g., lid 4 may be used and, subsequently, cleaned for future use. In either instance, lid 4 provides a simple and convenient method for dispensing fluid from fluid container 2. Moreover, when fluid “FL” is not being dispensed from fluid container 2, lid 4 is in sealed engagement with fluid container 2 so as not to allow fluid “FL” to escape therefrom, i.e., fluid container 2 is spill proof under normal operation, e.g., held by a user in a pre-dispensing configuration.
  • Continuing with reference to FIG. 3, lid 4 includes a body 14 of suitable configuration for attaching to fluid container 2. In the illustrated embodiment, body 14 is shown having a generally circumferential configuration with an outer surface 16 including a plurality of recesses thereon. Specifically, a pair of opposing recesses 20 a, 20 b (FIGS. 3-7) of any suitable configuration are formed on outer surface 16 and are configured to receive a portion of a finger of a user therein. Recesses 20 a, 20 b are shown having a generally circumferential configuration defined by sidewalls 22 a, 22 b and a bottom wall 24 a, 24 b, respectively (FIGS. 3-7). Recesses 20 a, 20 b may be utilized as a reservoir for dispensed fluid “FL” to prevent inadvertent dribbling as fluid “FL” is being dispensed from apertures 26 a, 26 b and into a user's mouth (see, e.g., FIG. 1). Moreover, an optional, generally elongated recess 21 of suitable configuration may be provided between recesses 20 a, 20 b. Recess 21 may be configured to allow stacking of lid 2, thereby facilitating packaging of lid 4, for example, when lid 4 is purchased and sold in large quantities to vendors.
  • A pair of corresponding apertures 26 a, 26 b (FIGS. 6 and 8) of suitable configuration are defined through respective bottom walls 24 a, 24 b and are configured to selectively receive therein a pair of corresponding protuberances 28 a, 28 b provided on a valve 30. Specifically, apertures 26 a, 26 b include a generally circumferential configuration that is configured for sealed engagement with a generally conical surface provided on corresponding protuberances 28 a, 28 b, see FIGS. 5-8 and 10 for example. In this sealed engagement, fluid “FL” from fluid container 2 is prevented from being dispensed therefrom.
  • In accordance with the instant disclosure, body 14 is formed with a thickness of plastic that provides a suitable rigidity to body 14. Specifically, body 14 should have a thickness that prevents substantial deformation thereof when lid 4 is manipulated by a user. More specifically, bottom walls 24 a, 24 b should be rigid or sturdy enough so as not to deform when protuberances 28 a, 28 b are in sealed engagement with apertures 26 a, 26 b. As can be appreciated, if bottom walls 24 a, 24 b are not sufficiently thick, there exists the likelihood that bottom walls 24 a, 24 b may deform when protuberances 28 a, 28 b are in a sealed engagement therewith, which, in turn, may result in a seal between protuberances 28 a, 28 b and apertures 26 a, 26 b becoming compromised.
  • Referring to FIGS. 5-10, valve 30 couples to an interior surface 32 of body 14 and is configured to allow selective dispensing of fluid “FL” contained within fluid container 2 when lid 4 is coupled thereto. With this purpose in mind, valve 30 may be made from any suitable biocompatible material (e.g., plastic) and includes a generally elliptical configuration having side portions 34 a, 34 b at opposite ends of a major axis “B-B” defined through valve 30 and top and bottom portions 36 a, 36 b are disposed at opposite ends of a minor axis “C-C” defined through valve 30, as best seen in FIG. 9. Side portions 34 a, 34 b are configured to flex as a result of depressing one or both of protuberances 28 a, 28 b. For example, when protuberance 28 a is depressed and removed out of sealed engagement with aperture 26 a, valve 30 flexes about side portion 34 a, which, in turn, causes protuberance 28 b to move out of sealed engagement with aperture 26 b such that fluid “FL” can be dispensed from fluid container 2 through aperture 26 b, see FIGS. 1 and 6. As can be appreciated, the same effect, with the obvious differences being taken into consideration, is achieved when protuberance 28 b is depressed. Further, in embodiments, although valve 30 may be shown in some of the figures with only two opposing side portions 34 a, 34 b, valve 30 may have any suitable number of side portions. For example, the valve 30 may have three or more side portions (e.g., Y-shaped with 3 side portions, star-shaped with 5 side portions, etc.). Moreover, each of these side portions may have any number of protuberances that are movably disposed in registration with any number of apertures defined within the body member of the lid at any number of locations about the body member. Each side portion may be integrally formed and/or mechanically coupled to one or more of the other side portions by any suitable securement process such as welding, fastening, adhesive, etc.
  • In accordance with the instant disclosure, the depressed protuberance provides a vent that facilitates dispensing fluid from lid 4 through the opposing aperture. More particularly, for example, when protuberance 28 a is depressed and fluid container 2 is tilted for dispensing fluid through aperture 26 b, aperture 26 a vents air therethrough, which, in turn, provides a smooth, steady flow of fluid “FL” through aperture 26 b and across sidewall 22 b of recess 20 b (see FIG. 1).
  • Top portion 36 a of valve 30 may have any suitable thickness when compared to bottom portion 36 b to provide valve 30 with any suitable flexibility sufficient to enable stable movement and selective sealing engagement of the protuberance(s) with the corresponding aperture(s). For example, top portion 36 a may be thicker than bottom portion 36 b to facilitate movement of protuberances 28 a, 28 b into and/or out of sealed engagement with apertures 26 a, 26 b when either of protuberances 28 a, 28 b is depressed and/or released. In embodiments, top portion 36 a is configured to be spaced from interior surface 32 of body member 4 to facilitate a sealed engagement between protuberances 28 a, 28 b and apertures 26 a, 26 b when valve 30 is coupled to body 14 (FIGS. 5 and 7). In certain embodiments, top portion 36 a is configured to engage and/or rest against the interior 32 of body member 4. Additionally, top portion 36 a may be slanted upwardly from valve 30 to ensure that protuberances 28 a, 28 b remain in sealed engagement with apertures 26 a, 26 b when protuberances 28 a, 28 b are not depressed (see, e.g., FIG. 9). The upward slanting of top portion 36 a may also facilitate manufacturing.
  • As discussed above, bottom portion 36 b of valve 30 may have any suitable thickness relative to top portion 36 a to provide suitable flexibility to valve 30 sufficient to enable stable movement and selective sealing engagement of the protuberance(s) with the corresponding aperture(s). For example, bottom portion 36 b may be thinner than top portion 36 a to facilitate movement of protuberances 28 a, 28 b into and/or out of sealed engagement with apertures 26 a, 26 b when either of protuberances 28 a, 28 b is depressed and/or released. Specifically, a mounting bracket 40 extends across a medial portion 38 of bottom portion 36 b and is utilized to couple valve 30 to interior surface 32 of body 14. In the assembled configuration, medial portion 38 is pressed towards interior surface 32 and forms two bowed portions 37 a, 37 b that provide a suitable biasing force that is configured to bias protuberances 28 a, 28 b into sealed engagement with apertures 26 a, 26 b. In accordance with the instant disclosure, a balance (equilibrium) between a thickness of bottom walls 24 a, 24 b and a biasing force provided by bowed portions 37 a, 37 b is needed to ensure that the biasing force of the bottom portion 36 b does not deform or otherwise alter the apertures 24 a, 24 b. As can be appreciated, such a balance may be acquired via rudimentary calculations.
  • Mounting bracket 40 may take on any suitable configuration to achieve the purposes described herein (FIG. 9). In the illustrated embodiment, for example, mounting bracket 40 includes a “C” shape with two opposing flanges 42 a 42 b that are spaced apart from one another by a distance that is slightly greater than a width of bottom portion 36 b. A pair of sidewalls 44 a, 44 b extend from flanges 42 a, 42 b and meet a base portion 46 that is configured to contact medial portion 38 of bottom portion 36 b. Flanges 42 a, 42 b may couple to interior surface 32 of body 14 via any suitable coupling methods, e.g., a biocompatible adhesive or the like. In embodiments, such as, for example, when lid 4 is reusable, an alternate type of mounting configuration may be utilized for securing valve 30 lid 4.
  • Protuberances 28 a, 28 b may include any suitable configuration including sides, or portions thereof, that are slanted at any suitable angle and/or sides, or portions thereof, that are not slanted (e.g., perpendicular to body member). As noted above, protuberances 28 a, 28 b can include a conical configuration to enable spill proof sealing when the sides of the protuberances are positioned in engagement with the surfaces of the lid that define the apertures. As shown in FIG. 8, sides K of protuberances 28 a, 28 b are angled to intersect at an angle “θ” relative to axis “D-D.” Angle “θ” may be any suitable angle, e.g., angle “θ” may range from between about 1 degree to about 90 degrees. As appreciated, any of the dimensions of the protuberances, e.g., diameter, height, etc., may be arranged to accommodate different aperture diameters to provide selective sealing engagement of the outer surface of one or both of the protuberances 28 a, 28 b with one or both of the aperture 24 a, 24 b. For example, dimensions of the protuberance(s) can be configured such that the protuberance(s) seal with the aperture(s) at a predetermined location L along sides K of the protuberance. In embodiments, the outer surface of the protuberance(s) and the inner surfaces of the body member that define the aperture(s) form an annular seal at the location L.
  • In the illustrated embodiment, protuberances 28 a, 28 b have a relatively blunt tip 29 a, 29 b, see FIGS. 8-9. Alternatively, protuberances 28 a, 28 b may each include a blunt tip 29 a, 29 b that is ergonomically configured to accommodate various finger sizes (see area of detail “G” in FIG. 8 for example).
  • Protuberances 28 a, 28 b are configured such that depression of one of the protuberances, e.g., protuberance 28 a, moves both of protuberances 28 a, 28 b out of sealed engagement with apertures 26 a, 26 b such that fluid “FL” may be dispensed from fluid container 2, see FIG. 6. In an assembled configuration, protuberances 28 a, 28 b are in vertical registration with apertures 26 a, 26 b so as to extend along an axis “D-D” that is parallel to a longitudinal axis “A-A” defined through lid 2 (FIG. 10). It has been found that positioning protuberances 28 a, 28 b within apertures 26 a, 26 b in this fashion provides a tight seal therebetween. In embodiments, however, protuberances 28 a, 28 b may be positioned within apertures 26 a, 26 b so as to extend non-parallel to longitudinal axis “A-A.”
  • Operation of fluid container 2 including a lid 4 is described herein. For illustrative purposes, it is assumed fluid “FL” has been previously provided into fluid container 2 and lid 4 is secured thereto to form a seal around fluid container 2. Moreover, it is assumed that protuberances 28 a, 28 b are oriented parallel to axis “D-D.”
  • With lid 4 secured to fluid container 2, protuberances 28 a, 28 b are in sealed engagement with apertures 26 a, 26 b so as to prevent inadvertent dispensing of the fluid “FL” from fluid container 2. To dispense fluid “FL” contained within fluid container 2, a user may depress one of protuberances 28 a, 28 b, e.g., protuberance 28 b. In doing so, protuberance 28 b moves out of sealed engagement with aperture 26 b, which, in turn, causes protuberance 28 a to move out of engagement with aperture 26 a (see FIG. 6 for example). Thereafter, a user may move fluid container 2 to a position for consuming the fluid “FL”, see FIG. 1 for example.
  • The unique configuration of lid 4 including valve 30 overcomes the aforementioned drawbacks that are typically associated with conventional lids. That is, lid 4 is simple to operate and is relatively inexpensive to manufacture when compared to conventional lids.
  • From the foregoing and with reference to the various figure drawings, those skilled in the art will appreciate that certain modifications can also be made to the present disclosure without departing from the scope of the same. For example, while lid 4 has been described herein as utilizing valve 30 that includes two protuberances 28 a, 28 b that may be depressed for dispensing fluid “FL” from fluid container 2, other configurations of valve 30 may also be utilized.
  • For example, with reference to FIG. 11, an alternative embodiment of the lid including a valve is illustrated and designated 104, 130, respectively. Lid 104 and valve 30 are substantially similar to lid 4 and valve 30 and as such only those features unique to lid 104 and valve 130 are described in detail.
  • Unlike valve 30, valve 130 includes a bottom portion 136 b that provides a suitable biasing force that is configured to bias protuberances 128 a, 128 b into sealed engagement with corresponding apertures (not explicitly shown in FIG. 11).
  • Moreover, mounting bracket 40 is replaced by a mounting bracket 140 that is configured to mount valve 130 to an interior of lid 104. In the embodiment illustrated in FIG. 11, for example, mounting bracket 140 is secured to an interior surface of lid 104 by one or more suitable securement methods, e.g., an adhesive, and is configured to couple to bottom portion 136 b (e.g., by an adhesive).
  • Operation of lid 104 is similar to lid 4, unlike lid 4; however, only one of protuberances 128 a, 128 b are configured to dispense fluid “FL” from the fluid container. In the embodiment illustrated in FIG. 11, protuberance 128 b is configured to dispense fluid “FL” from the fluid container when protuberance 128 a is depressed. In accordance with the instant disclosure, depressing protuberance 128 b does not cause protuberance 128 a to move out of sealed engagement with the corresponding aperture. Therefore, this embodiment only allows dispensing of fluid “FL” on one side only.
  • Persons skilled in the art will understand that the structures and methods specifically described herein and illustrated in the accompanying figures are non-limiting exemplary embodiments, and that the description, disclosure, and figures should be construed merely as exemplary of particular embodiments. It is to be understood, therefore, that the present disclosure is not limited to the precise embodiments described, and that various other changes and modifications may be effected by one skilled in the art without departing from the scope or spirit of the disclosure. Additionally, it is envisioned that the elements and features illustrated or described in connection with one exemplary embodiment may be combined with the elements and features of another without departing from the scope of the present disclosure, and that such modifications and variations are also intended to be included within the scope of the present disclosure. Accordingly, the subject matter of the present disclosure is not to be limited by what has been particularly shown and described.

Claims (19)

What is claimed is:
1. A lid configured for use with a fluid container, the lid comprising:
a body member including an outer periphery configured to couple to a rim of a fluid container, the body member including a pair of apertures extending therethrough; and
a valve operably coupled to an interior surface of the body member and including a pair of protuberances configured to selectively engage the pair of apertures,
wherein the pair of protuberances are configured such that depression of one protuberances moves the pair of protuberances out of sealed engagement with the pair of apertures for dispensing a fluid contained within the fluid container, each protuberance being disposed in registration with one of the pair of apertures.
2. The lid according to claim 1, wherein the pair of protuberances is in vertical registration with the pair of apertures so as to extend parallel to a longitudinal axis that is defined through the fluid container.
3. The lid according to claim 1, wherein the valve includes a generally elliptical configuration having side portions at opposite ends of a major axis defined through the valve and top and bottom portions at opposite ends of a minor axis defined through the valve.
4. The lid according to claim 3, wherein the side portions of the valve are configured to flex as a result of depressing at least one of the pair of protuberances.
5. The lid according to claim 3, wherein the thickness of the top portion of the valve is different from the thickness of the bottom portion to facilitate stable movement and flexibility of the valve.
6. The lid according to claim 3, wherein a mounting bracket is operably coupled to the interior surface of the body member and contacts the bottom portion of the valve to couple the valve to the interior surface of the body member such that both protuberances are depressible for dispensing the fluid through the aperture in registration with the other protuberance.
7. The lid according to claim 3, wherein a mounting bracket is operably coupled to the interior surface of the body member and contacts the bottom portion of the valve to couple the valve to the interior surface of the body member such that one of the protuberances is depressible for dispensing the fluid through the aperture in registration with the other protuberance.
8. The lid according to claim 6, wherein the mounting bracket is coupled to the lid via at least one biocompatible adhesive.
9. The lid according to claim 6, wherein each of the apertures is provided in a corresponding recess provided on the body member and the corresponding recesses are configured to receive a corresponding one of the pair of protuberances therein so as to allow depression thereof by the user.
10. The lid according to claim 9, wherein the corresponding recesses have a generally circumferential configuration.
11. The lid according to claim 1, wherein a generally elongated recess is provided on the body member and positioned between the pair of corresponding recesses so as to allow stacking of a plurality of lids.
12. A lid configured for use with a fluid container, the lid comprising:
a body member including an outer periphery configured to couple to a rim of a fluid container, the body member including a pair of apertures extending therethrough;
a valve operably coupled to an interior surface of the body member and including a pair of depressible protuberances disposed in selective sealed engagement with the pair of apertures so as to prevent dispensing of a fluid contained within the fluid container; and
a mounting bracket operably coupled to an interior surface of the body member and configured to couple the valve to the body member,
wherein the pair of protuberances are configured such that depression of one protuberance moves the pair of protuberances out of sealed engagement with the pair of apertures for dispensing the fluid contained within the fluid container, each protuberance being disposed in registration with one of the pair of apertures.
13. The lid according to claim 12, wherein the pair of protuberances is in vertical registration with the pair of apertures so as to extend parallel to a longitudinal axis that is defined through the fluid container.
14. The lid according to claim 12, wherein the valve includes a generally elliptical configuration having side portions at opposite ends of a major axis defined through the valve and top and bottom portions at opposite ends of a minor axis defined through the valve.
15. The lid according to claim 14, wherein the side portions of the valve are configured to flex as a result of depressing at least one of the pair of protuberances and, wherein the top portion of the valve is thicker than the bottom portion to facilitate selective sealing engagement between the pair of protuberances and the apertures when the valve is coupled to the body member.
16. The lid according to claim 15, wherein each protuberance is in registration with one of the pair of apertures, and wherein a mounting bracket is operably coupled to the interior surface of the body member and contacts the bottom portion of the valve to couple the valve to the interior surface of the body member such that both protuberances are depressible for dispensing the fluid from the aperture in registration with the other protuberance.
17. The lid according to claim 12, wherein each of the apertures is provided in a corresponding recess provided on the body member and the corresponding recesses are configured to receive a corresponding one of the pair of protuberances therein so as to allow depression thereof by the user, wherein the corresponding recesses have a generally circumferential configuration.
18. The lid according to claim 12, wherein a generally elongated recess is provided on the body member and positioned between the pair of corresponding recesses so as to allow stacking of a plurality of lids.
19. The lid according to claim 12, wherein the valve includes at least two side portions.
US13/733,996 2013-01-04 2013-01-04 Container lid Abandoned US20140190966A1 (en)

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