1. Field of the Invention
The present invention relates to a zip fastener or ‘zip’ which may, for example, be used in circumstances where it is desired to fasten panels of fabric performing a sealing function to each other. In such circumstances, it is naturally desirable for the zip fastening the panels not to compromise the integrity of the seal.
2. Description of Related Art
One example of such an application is the use of a zip to fasten seat covers; another is the use of a zip to fasten a cover over a mattress where, for example, it is desired to use cover to seal the mattress against infestation by bed bugs.
The present invention relates to a zip fastener or ‘zip’ which may, for example, be used in circumstances where it is desired to fasten panels of fabric performing a sealing function to each other. In such circumstances, it is naturally desireable for the zip fastening the panels not to compromise the integrity of the seal. One example of such an application is the use of a zip to fasten seat covers; another is the use of a zip to fasten a cover over a mattress where, for example, it is desired to use cover to seal the mattress against infestation by bed bugs.
The present application discloses further embodiments.
Embodiments of the present invention will now be described, by way of example, and with reference to the accompanying drawings, in which:
Referring now to
In the present embodiment, the zip is adapted for use in circumstances where the panels of fabric which it fastens perform a sealing function. Accordingly it is desirable for the zip likewise to act as a seal. To this end, the zip additionally comprises a docking member 50. The front end 40 of the slider 30 is engagable with the docking member 50 to create a seal between the slider and the docking member 50. Where engagement of the front face 40 of the slider 30 and the docking member occurs when the zip is fastended along its length, the result is a sealing between the docking member 50 and slider 30 which, along with the sealing action created by the interdigitation of the fastened zip teeth 10, 12, prevents anything on one side of the two panels of fabric from passing to the other side via the zip.
In the present embodiment the docking member 50 has the form of a further slider. Accordingly, the docking member 50 is mounted to both stringer tapes 20, 22 and is engaged with the teeth 10, 12 in a manner which permits it to move along the rows of teeth 10, 12. The configuration of the further slider forming the docking member 50 is such that it is mounted in the opposite direction to the slider 30. Consequently, motion of the slider 30 and docking member 50 toward each other will cause both to fasten the zip; whilst motion away from each other will cause both to unfasten the zip. This is because motion of the docking member 50 relative to the teeth and tapes 10, 12 and 20, 22 in the direction F is a backwards motion for the docking member 50 (whereas it's a forwards and so fastening motion for the slider 30) and so unfastens the zip; whereas motion in the direction R, being a forwards motion, fastens it (the same motion for the slider 30 being a backwards, unfastening motion).
To provide sealing between the slider 30 and the docking member 50, a surface on the front 40 of the slider 30 is engagable with a correspondingly-shaped surface on the docking member. In the present embodiment, the front end 40 of the slider 30 has a curved, convex configuration. This cooperates with a correspondingly shaped curved, concave surface 60 on the docking member 50 when the two are in engagement to provide the requisite sealing. In one preferred embodiment, one of the cooperating surfaces 40, 60 of the slider 30 and docking member 50 is coated in a resilient coating to aid sealing; in a further preferred embodiment, both surfaces are thus coated. The slider 30 and docking member 50 are shown in their mutually engaged positions in
A locking mechanism is provided which locks the slider 30 to the docking member 50. The locking mechanism preferably includes cooperable elements on the slider 30 and docking member 50 hold them together in mutual engagement and therefore ensure maintenance of the seal when desired. In the present embodiment, the cooperable elements are provided by a hook 70 on the docking member 50—here mounted to its upper surface—and a loop 80 pivotally mounted to the slider 30 thereby to form a hasp. Preferably, as in the present embodiment, the loop 80 also serves as the pull tab for the slider 30. Preferably, as in the present embodiment, the dimension of the loop 80 and spacing of the hook 70 are such that engagement of the loop 80 with the hook 70 retains the slider 30 and docking member 50 in such a manner that force is applied by the front end 40 of the slider 30 to the rear face 60 of the docking member 50 since in this way the seal can be of high integrity. The use of one or more resilient coatings upon the front end 40 and/or rear face 60 assists this since it acts to provide firstly a degree of ‘give’ to accommodate engagement of the hook 70 and loop 80. Further, once the hook 70 and loop 80 are engaged, the resilient coating(s) provides a resilient reaction force which biases the hook 70 and loop 80 into secure engagement.
Referring now to
In a further modification shown in
Further embodiments of the invention will now be described with, where possible, like reference numerals designating like elements.
Referring now to
In the present embodiment, the zip is adapted for use in circumstances where the panels of fabric which it fastens perform a sealing function. Accordingly it is desirable for the zip likewise to act as a seal. To this end, the zip additionally comprises a docking member 150 with which the front ends of at least one of the sliders and, more preferably the front end of each of the two sliders 130, 132 is engagable (on opposing sides of the docking member 150). The docking member 150 is mounted on the zip teeth 10, 12 and is likewise adapted for movement along the teeth 10, 12 of the stringer tapes 20, 22 at a position between the two sliders 130, 132. Thus, the docking member passes over the teeth when the teeth are not in an interdigitated state and the tapes are therefore unfastened in the region of the docking member 150. It follows that sliding motion of the docking member 150 along the zip has no interdigitating or extradigitating action on the zip teeth 10, 12 and that, accordingly, the docking member 150 is not adapted to fasten or unfasten the tapes 20, 22. The function of the docking member 150 is to engage with one or each of the sliders and, thereby, provide mutual connection of the or each of the sliders 130, 132. Preferably this is achieved in a manner which enables the zip to be used as a seal, and therefore the mutual connection provides a suitable sealing between the zip sliders 130, 132 and the docking member 150.
Thus, in the present embodiments, the front ends 140 and 142 of the sliders 130, 132 each have a curved, convex configuration and the two faces 160, 162 of the docking member 150 are correspondingly concave. This configuration provides the mutual engagability of the two sliders 130, 132 with the docking member 150 so that such engagement can seal the zip fastener. In a preferred embodiment, to provide optimal sealing between the sliders 130, 132 and the docking member 150, the front ends 140, 142 of the sliders 130, 132 are curved, convex configuration. This cooperates with a correspondingly shaped curved, concave surfaces 160, 162 on the docking member 150 when the two are in engagement to provide the requisite sealing. In one preferred embodiment, one of each of the pairs of the cooperating surfaces 140, 160 and 142, 62 is coated in a resilient coating to aid sealing; in a further preferred embodiment, both surfaces are thus coated.
As with a convention zip fastener, the sliders 130, 132 are moved along the zip by means of pull tabs 180, 182, each located on the upper face of its respective slider 130, 132 by a bridge member 190, 192. In the present embodiment, the pull tabs each have an asymmetrical configuration such that the distal end of each tab is narrower than its end proximal to the respective bridge.
Further, as with the previous embodiment, the present embodiment includes a locking mechanism actuable to lock one or, more preferably both, sliders 130, 132 to the docking member 150. Thus, each of the distal ends includes an aperture 200, 202 which is adapted to allow an upwardly extending spigot 210 located on the docking member 150 to pass through the respective aperture 200, 202 thereby to form a hasp. The spigots 210 each include an aperture 212 of their own. Accordingly, and referring now additionally to
In a modification, surfaces on the spigots 210 may be adapted to serve as a cam on the interior surfaces of the pull tab apertures 200, 202, thereby to exert a pulling force acting to urge engagement between the respective slider 130, 132 and the docking member 150.
Referring now additionally to
Two trapezoids may be retained or connected to each other by a configuration illustrated in
A further embodiment of zip fastener according to the present invention is illustrated in
In one preferred embodiment, the locking member may be padlocked, thus enabling some security to ensure that the zip is then retained in its fastened state.
The various modifications of the present invention are not limited in their application to the embodiments in connection with which they were first described and, unless stated otherwise, each modification is applicable and has utility in connection with each of the embodiments.
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Entry |
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Oct. 21, 2015 Search Report issued in European Patent Application No. 15 001 853.9. |
Number | Date | Country | |
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20150374075 A1 | Dec 2015 | US |