The present disclosure relates to an insert for supporting a measuring scoop or other utensil in combination with a container.
Containers for storing a product, such as a liquid, a powder or granular materials, are known. The form of a container is often varied to provide for delivery of the product, in sealing the product or aesthetic reasons. Structures for dispensing the product from a container are known, including scoops for measuring a desired quantity of the product.
It is known to provide a measuring scoop with a container or on a closure lid structure. US D661,588 to Irani et al shows a measuring scoop mounted to the underside of a pivotable container lid.
U.S. Pat. No. 7,971,747 to Blomdahl et al shows a container closure having two pivotable parts and a separable scoop structure.
U.S. Pat. No. 5,775,531 top Lowry shows a container having a closure rim with an inwardly directed flange. A membrane seal is removably attached to the flange and a scoop structure is detachably secured to the underside of the membrane seal.
In one aspect of the present disclosure, an insert is provided for use with a container. The container may be of the type having an interior volume where a product is stored and an opening therein for providing access to the product. The container opening may be defined by a peripheral rim having an internal sidewall. The insert includes a body portion defining an outer periphery and an internal open area. The outer periphery includes a defined dimension for receipt of the insert within the internal sidewall of the container rim. The utensil is frangibly secured to the body within the internal area. The utensil initially extends across at least a portion of the open area. A receiving tab projects from the body into the open area. Frictional engagement means is formed on the utensil and on the receiving tab. The engagement portions cooperate with one another for removably securing the utensil to the receiving tab. The utensil is frangibly connected to the body. The frangible connection may be structurally ruptured in response to application of a sufficient force between the body and the utensil for removal of the utensil. The utensil is secondarily secured to the receiving tab by the frictional engagement means. The utensil is preferably frangibly connected to the insert body at two spaced locations.
In a further aspect of the disclosure, the utensil is in the form of a scoop having a handle portion and a utility portion in the form of a bowl. The bowl of the scoop may be defined with a fixed volume for measuring a desired quantity of project. The bowl is defined by a top opening lip, tapered sidewalls, and a bottom surface. The handle preferably extends from the utility portion, with the two defining a linear length of the utensil, with the linear length of the utensil being substantially equal to a transverse dimension of the open area of the body, such that the utensil extends across the open area and is frangibly connected at opposite ends.
In a further aspect of the disclosure, the utensil may be frangibly connected to the body at one end and frangibly connected to the receiving tab at an opposite end. Preferably, the body, tab and utensil are integrally molded from a polymeric material. The frangible connections preferably comprise a reduced cross-sectional thickness of said polymeric material between the utensil and the connection to the body.
In a still further aspect of the disclosure, a leveling bar may be provided. The leveling bar is preferably connected to the body of the insert and extends across the open area adjacent the utensil.
In a further aspect of the disclosure, the frictional engagement means comprises a projecting tag and a receiving opening. The projecting tag is formed for frictional engagement within the receiving opening. As an example, the receiving opening may be formed on the receiving tab and the cooperating projecting tag may be formed on the utensil.
In a further aspect of the disclosure, the body may be formed as a ring, with the ring having an outside sidewall defining the outer periphery and an inside wall with the open area defined therein. A projecting rim portion may be provided that extends outwardly from the outside wall. The rim portion may be adapted to engage the peripheral rim of the container for positioning the body within the container opening. In a further aspect of the disclosure, the ring may be formed as a circle to match the form of a circular opening in the container. The outside wall of the ring may include frictional ribs for engagement of the body with the internal wall of the container opening.
In a further aspect of the disclosure, an insert and container combination is defined. The container includes a sidewall, a bottom wall and an opening surrounded by an upper rim. The sidewall and bottom wall define an interior volume where a product may be stored and the opening provides access to the product. An insert is provided with the container. The insert includes a planer body having an outer periphery and an internal open area. The outer periphery of the insert body is dimensioned to permit its receipt within the container rim. A scoop or other utensil is frangibly secured within the plane of the body. The scoop initially extends across at least a portion of the open area. The scoop preferably includes a handle portion projecting from a peripheral lip of an open bowl portion. A receiving tab is provided on the body of the insert and projects the open area within the plane of the body. An engagement means is cooperatively formed on the scoop handle and on the receiving tab. The engagement means provides for removable securing of the scoop to the receiving tab. The scoop is initially connected to the body within the open area and the frangible connection accommodates a rupture of the connection in response to application of a force to the scoop. The scoop is secondarily secured in the open area to the receiving tab by activation of the frictional engagement means.
In a further aspect of the disclosure, the scoop may be frangibly connected to the insert body at two spaced locations. Further, the body, tab and scoop of the insert are preferably integrally molded from a polymeric material. 20. The frangible connections are preferably formed by a reduced cross-sectional thickness of the material between the scoop and the connection to the insert body. One of the frangible connections of the scoop to the insert body may be formed as a connection to the receiving tab. Further, a leveling bar may also be connected to the body to extend across the open area. Preferably, the leveling bar is positioned adjacent and parallel to the scoop.
In a further aspect of the combination, the frictional engagement means may include a projecting tag and a receiving opening, wherein the projecting tag is formed for frictional engagement within the receiving opening. The receiving opening, for example, may be formed on the tab and the projecting tag is formed on the handle of the scoop. These structures may be reversed in position or otherwise modified.
In a further aspect of the combination, the insert body may be formed as a ring, with the ring having an outside sidewall defining the outer periphery and having an inside wall with the open area defined therein. The insert may further include a projecting rim portion extending outwardly from the outside wall. The projecting rim portion may be adapted to engage the upper rim of the container for positioning the insert body within the container opening. Further, the ring may include a circular form. In addition, frictional ribs or other structures may be provided for engagement of the inside surface of the sidewall of the container.
In a further aspect of the combination, an overcap may be provided for engaging the upper rim of the container and for closing the container opening. The overcap further covers the insert positioned within the opening of the container.
In a further aspect of the combination, a closure rim may be secured to the upper rim of the container. The closure rim may include an inwardly directed flange thereon. The insert may be cooperatively positioned on the flange within the opening of the container.
Other features of the present invention will become apparent from the detailed description to follow, taken in conjunction with the accompanying drawings.
For illustrating the invention, the drawings show one or more forms that are presently preferred. It should be understood that the invention is not limited to the precise arrangements and instrumentalities shown.
In the figures, where like numerals identify like elements, there is shown various combinations of a container and an insert structure. The insert structure supports a utensil, such as a measuring scoop, for use with the container. In
The insert 12 shown in
The scoop 28 is secured to the ring 26 within the open area 42 internally defined within the ring 26. The first connection 44 is created between the bowl 32 and an inwardly projecting tab 40. The tab 40 is connected at its base to the inside wall 46 of the ring 26. The tab further includes a receiving opening 48 therein. The second connection 50 for the utensil 28 is positioned directly opposite the tab 40 on the inside wall surface 46 of the ring 26. Positioned parallel to the utensil 28 is a leveling bar 52. The leveling bar 52 connected at opposite ends to the ring 26. The leveling bar 52 functions to remove excess product from within the bowl 32 of the scoop by scraping the lip 34 across the underside of the bar 52. Hence, the product retained within the bowl 32 is measured to the desired useful quantity.
The insert body 26, utensil 28, tab 40 and leveling bar 52 are contemplated to be integrally formed by an injection molding process using a polymeric material. The connections 44, 50 between the utensil 28 and the body 26 of the insert 12 are contemplated to be frangible, such that the utensil 28 may be removed from the body portion 26, as shown in
The handle 30 of the scoop utensil 28 is provided with a projecting tag 54. The tag 54 is formed with similar dimensions as the receiving opening 48, such that the tag 54 may form a frictional engagement within the opening 48. This frictional engagement between the tag 54 and opening 48 creates a means for secondarily securing the utensil 28 to the ring body 26. This secondary engagement is shown in
In
The insert 112 includes a projecting rim 160 formed on the ring body 126. As shown in the partial cross-section of
In
In
In
The insert is positioned on the flange 374 and rests within the area defined by the internal wall 372, above the flange 374. The insert 12 maybe frictionally retained by the closure rim 370 or may be loosely positioned on the flange 374. It is contemplated that the tab and utensil on the insert will be formed without interference with the flange 374 (or a provided membrane). For example, the bowl portion of the scoop is contemplated to fit within the defined area or otherwise not be obstructed by flange (or membrane).
In the forms shown, the utensil is a scoop having certain useful structures. Other utensils for use with the product retained within a container may also be included on the insert structure. In addition, the frangible connection of the utensil to the body of the insert may also be varied in creating the insert. Variations in the form of a container are also possible, including different shapes for the sidewalls and the opening. Further, the opening into the container is shown at the top end of the container, but may be otherwise positioned. Variations in the form of an overcap or other closure are further possible.
The present disclosure shows and describes one or more exemplary embodiments. It should be understood by those skilled in the art from the foregoing that various other changes, omissions and additions may be made therein, without departing from the spirit and scope of the contemplated invention, with the scope of the invention being defined by the foregoing claims.
Number | Name | Date | Kind |
---|---|---|---|
700653 | Jobson | May 1902 | A |
1607865 | Butler | Nov 1926 | A |
1625335 | Schneider | Apr 1927 | A |
1703185 | White | Feb 1929 | A |
1768771 | La Tourrette | Jul 1930 | A |
1853852 | Estes | Apr 1932 | A |
D123940 | Worth et al. | Dec 1940 | S |
2789608 | Tupper | Apr 1957 | A |
3312366 | Poris | Apr 1967 | A |
3704779 | Nigg | Dec 1972 | A |
3722779 | Chang | Mar 1973 | A |
3955742 | Marshall et al. | May 1976 | A |
4432466 | Allen | Feb 1984 | A |
D302793 | Yamaguchi | Aug 1989 | S |
5042712 | DeRoseau | Aug 1991 | A |
5222622 | Laske, Jr. | Jun 1993 | A |
5695084 | Chmela et al. | Dec 1997 | A |
5706974 | Murdick et al. | Jan 1998 | A |
5775531 | Lowry | Jul 1998 | A |
D416438 | Molo | Nov 1999 | S |
5992667 | Huang | Nov 1999 | A |
6003710 | Huang | Dec 1999 | A |
6116450 | Huang | Sep 2000 | A |
6604646 | Torniainen et al. | Aug 2003 | B2 |
D483988 | Kipperman et al. | Dec 2003 | S |
7040500 | Kipperman et al. | May 2006 | B2 |
7175041 | Ekkert | Feb 2007 | B2 |
7370788 | Otani et al. | May 2008 | B1 |
7464475 | Tsao | Dec 2008 | B2 |
7503464 | McCain | Mar 2009 | B2 |
7562786 | Morrison | Jul 2009 | B2 |
D602775 | Shale | Oct 2009 | S |
7823743 | McKahan et al. | Nov 2010 | B2 |
7909204 | Antal, Sr. | Mar 2011 | B2 |
7971747 | Blomdahl et al. | Jul 2011 | B2 |
8087530 | Stevens | Jan 2012 | B2 |
D661588 | Irani et al. | Jun 2012 | S |
8215167 | Hall | Jul 2012 | B2 |
20030029868 | Davidov et al. | Feb 2003 | A1 |
20040094548 | Laveault | May 2004 | A1 |
20040099566 | Kipperman et al. | May 2004 | A1 |
20080156808 | Perry et al. | Jul 2008 | A1 |
20130001227 | Groubert | Jan 2013 | A1 |