1. Field of the Disclosure
The present disclosure relates to a slider zipper for a reclosable package. More particularly, the slider zipper typically is leak-resistant and achieves a high burst strength (i.e., a high force is required to separate the zipper profiles).
2. Description of the Prior Art
While slider zippers are typically well-received by the consumer, many manufacturers find the slider zipper to be too costly and inefficient in their manufacturing process to continue to be viable. Manufacturers may seek improvements in the slider zippers with respect to internal opening force (i.e., burst strength); ability to stay closed over tight radius rollers during conversion; end stomp pull off forces; reduced hermeticity in response to clip or profile preactivation; leakage caused by portions of the clip or slider extending through the zipper profile; and difficulties in duplex installation, due to clip insertion issues.
It is therefore an object of the present disclosure to provide a slider zipper for a reclosable package which is leak-resistant and achieves a high burst strength.
It is therefore a further object of the present disclosure to reduce the concerns or disadvantages which may be associated with some prior art slider zipper designs.
These and other objects are attained by providing a slider zipper with stiff ears added to the top (consumer side) of the zipper profiles of a zipper, typically a zipper with one hinged profile and one non-hinged profile. The slider clip includes a plow that rides above the profiles and between the ears. As the clip slides along the zipper in the opening direction, the plow pushes the ears apart, opening the zipper. Typically, the plow is designed to push preferentially the non-hinged side of the zipper out and away from the center-line of the zipper.
Further objects and advantages of the invention will become apparent from the following description and from the accompanying drawing, wherein:
Referring now to the drawings in detail wherein like numerals indicate like elements throughout the several views, one sees that in
Second zipper profile 14 includes second flange 32 which extends along the side of second zipper profile 14 and terminates on its upward side in second ear 34 with is formed parallel with first ear 28. Rail 36 extends perpendicularly from second flange 32 and is slidably engaged by slider clip 60 in order to keep the slider 60 on the zipper profiles 12, 14. Alternately, second flange 32 can be connected more to the inboard edge of the zipper profile, creating an indentation on which the slider 60 can rest as shown in
First and second flanges 26, 32 are configured for attachment to respective first and second walls of a reclosable package (not shown).
Slider 60 includes a top wall 62, and first and second sidewalls 64, 66. First sidewall 64 terminates with clip portions 68 that engage inverted ledge element 24. Similarly, second sidewall 66 terminates with clip portions that engage rail 36. Slider 60 further includes closing end 69 with a relatively narrower opening 70. That is, when slider 60 is moved toward the right (i.e., the closing direction) in the orientation shown in
First and second ears 28, 34 are intended to be relatively stiff in order to aid in the operation of the slider 60. Typically, first ear 28 (the ear on the non-hinged profile) is intended to be significantly stiffer than second ear 34 (the ear on the hinged profile), so that the non-hinged side of the zipper 10 has increased leverage when the plow 76 of the slider 60 urges against the first ear 28. First and second ears 28, 30 can be stiffened through the use of stiff resins such as high density polyethylene, polypropylene, Topas, mineral-filled polymers, or other high modulus material. Additionally, increased stiffness can be achieved by thickening the ear. Similarly, rail 36 is typically formed of the above-identified relatively stiff materials. The resulting zipper 10 is typically fully scalable through a range of sizes for light, medium and heavy duty applications.
By way of the disclosed structure, it is envisioned that it will be possible to achieve a leak-resistant slider-operated zipper wherein the burst strength per linear inch may be three times the zipper weight per one thousand feet; the joined interlocking elements measure between 68 and 74 thousandths of an inch in height and wherein the burst strength is at least 16 pounds per linear inch; and wherein the zipper weighs no more than 5.5 pounds per 1000 feet. As a result, a small, inexpensive slider zipper with high-burst strength and leak-resistant features is achieved. It is believed that this combination of characteristics has not been satisfactorily achieved in the prior art.
Thus the several aforementioned objects and advantages are most effectively attained. Although preferred embodiments of the invention have been disclosed and described in detail herein, it should be understood that this invention is in no sense limited thereby and its scope is to be determined by that of the appended claims.
This application claims priority under 35 U.S.C. §119(e) of U.S. provisional application Ser. No. 61/368,438 filed Jul. 28, 2010, the disclosure of which is hereby incorporated by reference in its entirety.
Number | Date | Country | |
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61368438 | Jul 2010 | US |