Background of the Invention
Many non-viscous liquid products are desirably packaged in pull tab-type containers for easy opening and ready discharge of contents from the container. A good number of such products, however, are intended for discharge from the container into relatively small and confined receptacle inlets; this being particularly well illustrated in the instances where automotive and fuel or lubricant additive materials are packaged in containers intended to be discharged into the openings of gasoline tanks or other storage units. In such cases, the demands of ultimate convenience and efficiency militate against the use of funnels and the like flow-controlling or -directing auxiliaries.
The known easy opening, pull tab-style containers (or, more precisely, the end covers for same) are not well adapted upon being opened to have automatically and effectively thereupon an integral and efficient pour guide resulting from the pulled-up tab with which good and accurate flow control can be achieved for and upon the discharge during entire emptying of the container's contents.
This is despite the fact that most pull tabs for easy opening container ends are capable, regardless of their normal operating orientation, of being pivoted, rocked or otherwise positioned into an attitude more or less perpendicular to the end. This alone, however, is not adequate for the upraised tab to effectively function as a pour guide. For such desideratum, the pour orifice must be sufficiently restricted so that the fluid discharge, especially from a full container, can be controllably poured down the extended open tab which, at the same time, must be positioned sufficiently close to the container wall so that the tab continues its function as a pour guide until the container is effectively empty.
The indicated criteria are not met by containers wherein the operating attitude of the pull tab is in a non-interfering, folded back position. Neither is it fulfilled by containers wherein the upraised pull tab creates too large an opening tending to preclude exercise of effective control over fluid being poured from a full container and/or to lose any possibility or means of control with a partially (say, 1/4 to 1/3) full container. The same applies to containers wherein the opened, upraised tab is positioned too closely to the center of the end panel or where precise partial opening to avoid such an inefficient end location of the upstanding tab would require, on each occasion of container opening, the not automatically and certainly predeterminable final efficient pour guide disposition of the tab but an unreliable and not inherently or easily determinably exercise of unpredictable judgement and experimentation to possibly change the obtention of a good-enough pour guide manipulation for each single operating occassion.
Obviously, the drawbacks and inadequacies of known easy open containers for utilization in the mentioned capacity and for the indicated purpose lead overwhelmingly and literally invariably to disadvantageous, vexatious and usually unavoidably wasteful and undesirable consequences.
Field and Objectives of the Invention
The present invention, and the principal aims and objectives attainable in its practice, pertain(s) and direct(s) to an end cover or closure (of the style frequently designated as a "partial-open" type) for a pour-style container as well as containers enclosed therewith adapted to very effectively and accurately control and direct flow of contents during discharge which end cover is characterized in having a peripherally disposed and situate displaceable portion of the cover panel which is rupturable without tearback to form an opening and is openable by means of a standup pull tab thereon that, in open position, functions as an integral baffle and pour guide for the issuing liquid contents of the container when the latter is appropriately turned or tilted for pouring into any desired channel, such as a gasoline tank fill tube or passageway in a motor vehicle or the like or other storage vessels, and so forth.
Particularized Description of the Invention
Further features and characteristics of the accurate pour guiding container(s) and end cover(s) therefor and in accordance with the present invention are more evident in the explanation and description in the following part of the specification, taken in conjunction with the accompanying drawing, wherein:
FIG. 1 is a top plan view of a container end cover or closure pursuant to the instant invention;
FIG. 2 is an enlarged cross-sectional view of a portion of the cover taken along Line 2--2 in FIG. 1;
FIG. 3, on the same enlarged scale and also taken along Line 2--2 in FIG. 1, is a cross-sectional view of the cover in open position and, additionally, schematically showing it mounted as an end for a container body;
FIG. 4, on a somewhat reduced scale, is a front elevation view, partly in section, taken along Line 4--4 in FIG. 3 further illustrating the container end in open position; and
FIG. 5, in the same scale as the showing of FIG. 1, is a top plan view of the basic cover of the invention devoid of hold-down nibs or the like opening-resistant, safety feature attachments.
For expedience and enhanced clarity of associated components and elements, simultaneous reference is now had to all the included FIGURES in the drawing with explanation thereof in the following catalogued description of parts which are identified by like reference numerals wheresoever they are depicted in the various involved views:
Advantageously in practice of the present invention:
A. The peripheral score line 19 is as close as possible to the flat edge of central panel 12, preferably being situate at closest proximity at a distance of between about 50 and 100 mils from the edge.
B. The radially inward, bendable side or depression turn line 29 of the displaceable portion 18 should be situate on the central panel at a distance from the edge that is approximately between about 1/6 and 1/3 of the radius or other maximum flat dimension of the panel with this distance frequently being more desirable when it is about 1/4 of the radius especially in the more popular sized containers that are commonly utilized.
C. The arcuate, circumferential measure of the peripheral score line 19 should be between about 60.degree. and 150.degree., preferably between about 100.degree. and 120.degree..
D. The reversely curled terminating ends of the peripheral score line 19 should lie somewhere relatively near, if not truly on, the approximate chord line that would be defined as passing through the bendable edge of the displaceable portion 18 (especially in cases where cylindrical containers are involved).
E. The size of the pour opening formed upon inward bending displacement of displaceable portion 18, especially in the popular sized containers that roughly have 2.6 inch diameters, should be between about 4 and about 8%, preferably approximately 6%, of the flat area of central panel 12 and in most cases should also be at least 1/4 square inch and not more than 2/3 or so of a square inch.
F. The length of the tab 22 should at least approximate, if not somewhat exceed, the radius of the end panel 12.
In operation, the tab and displaceable portion of the end are pivoted through 90.degree. to form and provide an opening in the end cover of the container. In this position, the tab is at least substantially, if not perfectly, perpendicular to the plane of the end panel and quite close to the side wall of the container. In this, the tab tends to stop automatically in the vertically upraised situation at the end of the opening action due to the natural course of the tab pulling manipulation coupled with increasing resistance to further bending in the depressable portion as the tab approaches a vertical disposition. In this way, the vertically upraised tab can function as an accurate and very influential pour guide to most advantageously direct the flow of the fluid contents from the container. The use of a reverse curl in the peripheral score line in place of the conventional tear back score provides the desired definite restriction in the size of the opening in the end panel and thereby contributes importantly to and facilitates flow control of the non-viscous products with which practice of the present invention are most beneficially accomplished. The stand-up tab further serves as a deterrent to drinking directly from the container. And, as has been indicated, the tab may be utilized if so desired with adaptations therewith of the above-described and herein illustrated (child) safety hold-down nibs.
The excellent results achieved in practice of the present invention are obtained by the very propitious and functionally adapted inter-relationship and correlation of the stand-up tab positioned and effectively spaced at the inner edge of the peripherally situate opening which is appropriately and adroitly sized to allow the outflowing contents, upon pouring, to be controlled and directly in their passage by the baffle and guide influence of the vertically upstanding tab means.
Many changes and modifications can readily be made and adapted in embodiments in accordance with the present invention without substantially departing from its apparent and intended spirit and scope, all in pursuance of and accordance with same as it is set forth and defined in the hereto appended claims.