This invention relates to containers and more particularly to a container assembly which is particularly well suited for paint and which comprises a pry off plastic closure sealingly nested into a ring attached to the top rim of a container.
Paint cans and lids have been traditionally been made of steel. There are a number of disadvantages associated with steel paint cans including cost; weight, a propensity to rust, and disposal issues.
As a result, a number of steps have been taken toward the development of plastic container assemblies for paint. In general, such an assembly comprises the container itself, an annular ring adapted to be attached to the top rim of the container and defining an upwardly opening U-shaped channel to receive a closure, and a closure or lid having an annular feature which is formed to complementally fit into the upwardly opening U-shaped channel in the ring member to produce a seal. An example is shown in U.S. Pat. No. 6,588,618 assigned to Letica Corporation of Rochester, Mich.
The present invention provides a container assembly of the type generally described above but having a number of features and advantages over prior plastic container assemblies.
According to a first aspect of the invention, the ring assembly adapted to be attached to the top rim of the container has an upwardly opening U-shaped channel defined by inner and outer radially spaced concentric walls. The closure comprises an inner deck portion and a peripheral portion defining annular inner, middle, and outer walls, all made integral with one another by radial bridge sections, and defining both an outermost upwardly opening U-shaped channel at an innermost downwardly opening or “inverted” U-shaped channel. The upwardly opening channel defines a smooth, annular surface which is complemental to and fits nestingly within the upwardly-opening U-shaped channel of the ring member whereas the inverted U-shaped channel receives the upstanding innermost end wall of the ring member and provides seals on both inner and outer surfaces thereof to prevent paint or other contained fluid from entering the space between the two complemental U-shaped channels.
In addition, an undercut-type lock is formed between the outermost wall of the closure and the outer wall of the ring assembly thereby locating the lock in that portion of the overall combination of components which has the largest circumferential dimension thereby giving the lock greater surface area and improving drop test performance. In addition, locating the lock in this area takes advantage of the natural spring effect between the ring member and the outer wall of the closure thereby making it easier to remove the closure. However, in an alternative embodiment, an additional lock may be provided between the inner surface of the inner ring wall and the adjacent closure wall. In this embodiment, multiple locks and multiple seals are provided. The term “lock” is used herein to refer to an undercut, interference fit between two radially adjacent plastic walls which makes disengagement of those walls from one another more difficult, but not impossible, to achieve. This term is commonly used in this manner in the plastic container technology.
In accordance with a further aspect of the invention, the bottom of the pail or container is formed with a downwardly projecting annular tongue and, radially outwardly thereof, an annular groove. The radius of the annular groove is such that, when two such containers are stacked atop one atop the other, before the ring member is attached to the container, the top rim of the container fits into the grove and enhances the stackability of the two containers. At the same time, the downwardly projecting annular tongue fits into a radial gap between the closure and a step formed between the peripheral portion of the ring member and the outer wall of the ring member so as to provide a laterally stable stacking relationship between two containers when a ring member is attached to the bottommost container in the stack. Therefore, as a result of the invention, assembled containers can be stacked both with and without attached ring members while lateral stability in the stack is provided.
The description herein makes reference to the accompanying drawings wherein like reference numerals refer to like parts throughout the several views, and wherein:
Referring to
In accordance with the invention, an annular ring member 20 is secured to the top rim 18 of the container 12 by means of adhesive. Again, other attachment methodologies may be used including spin welding, heat welding and snap-light interference fits.
The ring member 20 comprises a peripheral portion 22 having a downwardly opening annular groove 23 which is adapted and sized to receive the upper rim portion 18 of the container side wall 14 therein. The ring member 20 further comprises a radially innermost portion defining an upwardly opening U-shaped channel having a radially outer annular wall 24 backed by radial bracing ribs 32 and, concentric therewith, a radially inner annular wall 26. The walls 24, 26 are made integral by means of a bight or bridge section 27. A step 28 on the inside of the peripheral portion 22 results in a recessed land 30 which leads into an undercut tab 34 on the inner surface of the outer wall 24 to provide a lock between the ring 20 and a closure 36, hereinafter described.
Continuing with the description of
The complemental second half of the undercut lock is provided by means of a tab 48 formed on the outer surface of the outer closure wall 44 so as to interfit with the tab 34 to provide an undercut lock of large circumferential dimension when the upwardly opening U-shaped channel 36 is complementally interfit into the upwardly opening U-shaped channel of the ring member 20.
A first seal 50 is formed by firm radial contact between the radially innermost wall 26 of the ring member 20 and the inner surface of the inner radially innermost wall 40 of the closure 36. A second seal is formed by close and firm radially contacting relationship between the inner surface of the innermost wall 26 of the ring member 20 and an annular tab 52 on the middle wall 42 of the closure 36. This dual seal arrangement prevents paint from entering into the space 54 between the ring member 20 and the closure 36 thus providing a cleaner paint-free closure when it is first removed from the container by the end user. The closure channel does not bottom out in the ring channel.
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It will be understood that the invention has been described with reference to a specific embodiment thereof and with various features, proportions and dimensions of the embodiment shown can be changed without departing from the spirit and scope of the invention.
Number | Name | Date | Kind |
---|---|---|---|
834191 | Chambers | Oct 1906 | A |
2084084 | Greer | Jun 1937 | A |
2663455 | Sebell | Dec 1953 | A |
3469735 | Burt | Sep 1969 | A |
4180179 | Hoenig et al. | Dec 1979 | A |
4356930 | Roper | Nov 1982 | A |
4378895 | Woinarski | Apr 1983 | A |
4397404 | Blanchette | Aug 1983 | A |
4458825 | Holota | Jul 1984 | A |
4512494 | Von Holdt | Apr 1985 | A |
4530442 | Vogel, Jr. et al. | Jul 1985 | A |
4619373 | Galer | Oct 1986 | A |
4667843 | Galer | May 1987 | A |
606838 | Heins | Jul 1989 | A |
5097977 | Straub | Mar 1992 | A |
5181626 | Daenen et al. | Jan 1993 | A |
5255816 | Trepp | Oct 1993 | A |
5307949 | Von Holdt, Jr. | May 1994 | A |
5568879 | Kovathana | Oct 1996 | A |
5758971 | Goglio et al. | Jun 1998 | A |
5842593 | von Holdt | Dec 1998 | A |
6250494 | Diamond | Jun 2001 | B1 |
6588618 | Davis | Jul 2003 | B1 |
6964348 | Breimon et al. | Nov 2005 | B2 |
20030168465 | Breimon et al. | Sep 2003 | A1 |
20060043095 | Maholm et al. | Mar 2006 | A1 |
Number | Date | Country | |
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20110036804 A1 | Feb 2011 | US |