The present disclosure relates to the field of hinges and carriage mechanisms.
In one form, the disclosure relates to a hinge and carriage mechanism adapted to hang a door, gate, panel, window or the like.
In one particular aspect the present disclosure is suitable for use as a means of providing height adjustment for a door.
It will be convenient to hereinafter describe the disclosure in relation to its application to a door; however it should be appreciated that the present disclosure is not limited to that use only.
Throughout this specification the use of the word “inventor” in singular form may be taken as reference to one (singular) inventor or more than one (plural) inventor of the present disclosure.
It is to be appreciated that any discussion of documents, devices, acts or knowledge in this specification is included to explain the context of the present disclosure. Further, the discussion throughout this specification comes about due to the realisation of the inventor and/or the identification of certain related art problems by the inventor. Moreover, any discussion of material such as documents, devices, acts or knowledge in this specification is included to explain the context of the disclosure in terms of the inventor's knowledge and experience and, accordingly, any such discussion should not be taken as an admission that any of the material forms part of the prior art base or the common general knowledge in the relevant art in Australia, or elsewhere, on or before the priority date of the disclosure and claims herein.
In prior art arrangements, a hinge is often used to ‘hang’ a door. In other words, the hinge enables the door to move freely (open or close) by providing a pivot point about which an edge of the door can be rotated relative to a door frame or opening. The positioning of a hinge on the door frame also determines the height of the door, that is the relative spacing between the door fame and the door surface to ensure the door is substantially free to move. In practice, however, a person hanging a door will not get the door position correct, and some adjustment will be needed.
With this in mind, various prior art hinges incorporate mechanisms which enable adjustment of the vertical height of the door relative to the door frame, such as arrangements where the door is hung on the pivot pin. One of these adjustment mechanisms typically uses a small screw which can bias the pivot pin vertically so the door position relative to the hinge is adjusted. In the case of the screw adjustment, the screw is often quite small and therefore has been easily lost and has also been found to be difficult to adjust by adult sized hands.
Another adjustment mechanism uses a threaded bolt. In this mechanism, the pivot pin comprises a threaded bolt (which forms a part of the pivot of the hinge) and which enables height adjustment by rotation of the threaded bolt relative to the hinge. However, it has been found that as the door is pivoted on the hinge, the threaded bolt also rotates, thus changing the height of the door as it opens and closes. This is considered undesirable.
It is an object of the embodiments described herein to overcome or alleviate at least one of the above noted drawbacks of related art systems or to at least provide a useful alternative to related art systems.
In a first aspect of embodiments described herein there is provided a hinge comprising a first portion adapted to provide a pivot, a second portion adapted to engage a proximate structure and a locking mechanism adapted to be operable in a unlocked position, in which the relative displacement of the first and/or second portion of the hinge is adjustable relative to the proximate structure, and a locked position, in which the displacement of the first and or second portion is substantially not adjustable relative to the proximate structure.
In another aspect of embodiments described herein there is provided a hinge and a method of adjusting the hinge, the hinge having first and second portions moveable relative to each other, and a locking mechanism comprising a locking collar adapted to cooperate with a corresponding seat, the method comprising disengaging a locking collar from its corresponding seat and displacing the first part relative to the second part.
Other aspects and preferred forms are disclosed in the specification and/or defined in the appended claims, forming a part of the description of the disclosure.
In essence, embodiments of the present disclosure stem from the realization that using a releasable locking mechanism in association with a hinge, the relative height of the hinge can be adjusted to a selected position, and thereafter temporarily set, relative to a proximate structure.
Advantages provided by the present disclosure comprise the following:
Further scope of applicability of embodiments of the present disclosure will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the disclosure, are given by way of illustration only, since various changes and modifications within the spirit and scope of the disclosure herein will become apparent to those skilled in the art from this detailed description.
Further disclosure, objects, advantages and aspects of preferred and other embodiments of the present application may be better understood by those skilled in the relevant art by reference to the following description of embodiments taken in conjunction with the accompanying drawings, which are given by way of illustration only, and thus are not limitative of the disclosure herein, and in which:
The present disclosure relates to an adjustable pivot mount for a panel, typically a panel of a door, folding door and/or window or similar closure. The present disclosure is applicable to top, bottom and/or intermediate mounts for a panel. It is also important to note that the present disclosure maybe used for adjustment of the height of a panel, and/or adjustment of the lateral position of a panel. Embodiments described below relate primarily to height adjustment, but the present disclosure should not be construed as being so limited.
The hinge 100 has a support pin 102 (also shown in
In order to adjust the relative displacement of the support pin 102 relative to the proximate structure 101, in the embodiment illustrated, the locking collar 105 maybe moved axially 112, by way of illustration, so the locking collar 105 disengages the locking seat 106. The support pin 102 may then by rotated (preferably together with the locking collar 105) and displaced by action of the threads 113, 114, on the support pin 102 and locking seat 106 respectively. Other suitable ways of adjusting the relative displacement of the support pin 102 and the locking seat (although not illustrated) are contemplated within the scope of the present disclosure, but the manner of displacement as provided in a particular embodiment is not considered essential to the present disclosure.
In
In an alternative embodiment (not shown), the support pin 102 may be displaced relative to the locking collar 105 or locking seat 106. In other words, the support pin 102 may engage the locking collar 105 or locking seat 106, rather than the proximate structure 101, and thus adjustment, in a unlocked position, maybe made relative the point of engagement between the support pin 102 and the (or one of the) portion(s) of the hinge with which the support pin 102 is engaged.
In more detail, turning to
In order to adjust the relative displacement of the support pin 102 relative to the proximate structure 101, in the embodiment illustrated, the locking collar 105 may be moved axially 112, for example up to position Z1 by way of illustration, so the locking collar 105 disengages the engagement portion 117 of the support pin 102. The support pin 102 may then by rotated and displaced by action of the thread 113 in association with the proximate structure 101. It is to be noted, that this embodiment does not include a spring mechanism. Once the locking collar 105 is moved axially 112 and the support pin 102 is rotated and adjusted as desired, the locking collar 105 can be returned to its rest position Z2, again engaging both the protrusion 115 and the engagement portion 117, thus substantially preventing rotation of the support pin 102 relative to the proximate structure 101. Again, other suitable ways of adjusting the relative displacement of the support pin 102 and the locking seat (although not illustrated) are contemplated within the scope of the present disclosure, but the manner of displacement as provided in a particular embodiment is not considered essential to the present disclosure.
In
While this disclosure has been described in connection with specific embodiments thereof, it will be understood that it is capable of further modification(s). This application is intended to cover any variations uses or adaptations of the disclosure following in general, the principles of the disclosure and including such departures from the present disclosure as come within known or customary practice within the art to which the disclosure pertains and as may be applied to the essential features hereinbefore set forth.
As the present disclosure may be embodied in several forms without departing from the spirit of the essential characteristics of the disclosure, it should be understood that the above described embodiments are not to limit the present disclosure unless otherwise specified, but rather should be construed broadly within the spirit and scope of the disclosure as defined in the appended claims. The described embodiments are to be considered in all respects as illustrative only and not restrictive.
Various modifications and equivalent arrangements are intended to be included within the spirit and scope of the disclosure and appended claims. Therefore, the specific embodiments are to be understood to be illustrative of the many ways in which the principles of the present disclosure may be practiced. In the following claims, means-plus-function clauses are intended to cover structures as performing the defined function and not only structural equivalents, but also equivalent structures. For example, although a nail and a screw may not be structural equivalents in that a nail employs a cylindrical surface to secure wooden parts together, whereas a screw employs a helical surface to secure wooden parts together, in the environment of fastening wooden parts, a nail and a screw are equivalent structures.
“Comprises/comprising” and “includes/including” when used in this specification is taken to specify the presence of stated features, integers, steps or components but does not preclude the presence or addition of one or more other features, integers, steps, components or groups thereof. Thus, unless the context clearly requires otherwise, throughout the description and the claims, the words ‘comprise’, ‘comprising’, ‘includes’, ‘including’ and the like are to be construed in an inclusive sense as opposed to an exclusive or exhaustive sense; that is to say, in the sense of “including, but not limited to”.
Number | Date | Country | Kind |
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2010901136 | Mar 2010 | AU | national |
This application is a continuation-in-part of: U.S. patent application Ser. No. 13/635,556, entitled “A HINGE AND METHOD OF ADJUSTMENT”, filed Nov. 28, 2012, which is a National Stage application of PCT/AU2011/000301, filed Mar. 18, 2011, and claims priority to Australian Patent Application No. 2010901136 filed Mar. 18, 2010, the disclosures of which are incorporated by reference herein as if set forth in their entirety.
Number | Date | Country | |
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Parent | 13635556 | Nov 2012 | US |
Child | 14486240 | US |