The present disclosure is directed to closures for dispensing fluid products from squeeze-type containers, and to packages that include such closures and containers.
Fluid dispensing closures for squeeze-type container applications typically are of one-piece integrally molded construction of relatively inexpensive plastic such as polyolefin, typically polypropylene or a polyethylene such as low density polyethylene. However, in many fluid dispensing applications, it is desirable to minimize or eliminate contact between the fluid and polyolefin material to avoid selective adsorption of materials to the polyolefin. It has been proposed in U.S. Pat. No. 3,227,332 to provide a three-piece dispensing closure that includes a shell of polystyrene, an insert of a less rigid more resilient material such as polyethylene, and a separate polyethylene overcap. The insert has a flange that extends along the undersurface of the shell for sealing engagement with the end surface of a container neck finish. However, the insert material and construction do not address or overcome the above-mentioned need in the art.
The present disclosure embodies a number of aspects that can be implemented separately from or in combination with each other.
A dispensing closure, in accordance with one aspect of the present disclosure, includes a closure shell of plastic construction having a skirt for mounting on a container neck finish. An insert of plastic construction different from and more rigid than the shell includes a mid portion mounted to the shell, a base with the skirt for sealing engagement with a container neck finish when the closure is mounted on the neck finish, a tip extending from the mid portion and a through-passage for dispensing product from within the container. An overcap is provided for removable receipt over the tip, and preferably is of one-piece integrally molded construction with the shell and flexibly tethered to the shell. The base of the insert preferably is constructed for sealing engagement with the inside surface of the container neck finish, the end surface of the container neck finish and/or the outside edge of the container neck finish.
A dispensing closure in accordance with another aspect of the disclosure includes a closure shell of plastic construction having a skirt for mounting the closure to a container neck finish. An insert of plastic construction different from the shell has a mid portion mounted to the shell, a base within the skirt for plug-sealing engagement within a container neck finish when the shell is mounted on the container neck finish, a tip extending from the mid portion of the insert and a through-passage for dispensing product from within the container. An overcap is provided for removable receipt over the tip. The insert base preferably has an upwardly concave part-toroidal flange for sealing engagement with the inside surface of the container neck finish when the closure is mounted to the container neck finish. The flange preferably has an outside diameter greater than the inside diameter of the container neck finish so that the flange is force-fit within the container neck finish as the closure is applied to the neck finish. The overcap preferably is of integrally molded construction with the closure shell and connected to the closure shell by a flexible tether. The overcap may be adapted for snap-receipt on the insert tip or on a portion of the closure shell surrounding the insert tip.
The disclosure, together with additional objects, features, advantages and aspects thereof, will best be understood from the following description, the appended claims and the accompanying drawings, in which:
Dispensing closure 22 includes a closure shell 30 and an insert 32 coupled to shell 30. Shell 30 (
Insert 32 preferably is of a plastic material different from, and most preferably more rigid than, that of shell 30, such as injection or compression molded PET or polycarbonate construction. Insert 32 has a mid portion 48 received within opening 42 of base wall 34. An external bead 50 is received by snap-fit over an internal bead 53 on shell collar 44 for mounting insert 32 within shell 30. Other mounting arrangements can be employed. A shoulder 52 on insert mid portion 48 preferably is in abutting engagement with the undersurface of shell base wall 34 around opening 42. A tip 54 extends from insert mid portion 48, and a through-passage 56 extends from mid portion 48 through tip 54. Tip 54 and passage 56 preferably are of cylindrical geometry. Passage 56 includes an orifice 58 in the exemplary embodiment of the disclosure to limit the quantity of fluid that is dispensed when container 24 is squeezed. Tip 54 preferably is a tight fit in opening 46 of collar 44 to limit or eliminate leakage of fluid between tip 54 and collar 44.
Insert 32 also includes a base 60 extending from mid portion 48 within skirt 36. Base 60 in the embodiment of
An overcap 66 is removably received over insert tip 54. In the embodiment of
In the packages of
There thus have been disclosed a dispensing closure and a dispensing package in which fluid dispensed from the package flows through the insert and does not contact the material of the shell. Thus, the shell may be of low density polyethylene, for example, and the insert may be of PET or polycarbonate for example and protect the fluid from contact with the shell. The disclosure has been presented in conjunction with several exemplary embodiments, and additional modifications and variations have been discussed. Other modifications and variations readily will suggest themselves to persons of ordinary skill in the art in view of the foregoing description. The disclosure is intended to embrace all such modifications and variations as fall within the spirit and broad scope of the appended claims.
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