The present invention relates generally to hinges and, more particularly, to a hinge assembly useful in stopping or preventing the movement of a structure carried by the hinge or with which the hinge is operationally affixed. The present invention finds useful application when used with gates that form a part of the enclosure for swimming pools or other potentially hazardous sites, where building codes often require the use of self closing gates to minimize the hazard to children.
It is known in the art that such self closing gates pose an inconvenience in circumstances where continuing ingress and egress from the enclosed area is desired. For example, when a pool or yard is being serviced, the service personnel often have a need to enter and leave the area while carrying equipment and service implements. At such times, it is much more convenient to keep the gate in an open position, and various devices have been proposed for this purpose. However, these prior devices suffer from a variety of disadvantages, such as cost, complexity, difficulty of installation and undesirable aesthetics. Many such prior art locking devices require modifications to the adjoining structures or walkways and may create some obstruction to the passageway serviced by the gate.
The present invention is directed to a device which addresses the above mentioned need, to maintain a self closing gate in an open position, while overcoming the disadvantages of the known prior art. The invention is directed to a simple, inexpensive, easily installed and aesthetically pleasing device which allows a self closing gate to be easily held in one or more open positions thereby facilitating passage into and out of the area enclosed by the gate and its associated fencing. When not in use, the device is inconspicuous and occupies no space or location which might prove inconvenient. In addition, no modifications to the surroundings, such as holes in adjacent walkways, are required.
The present invention, in one preferred embodiment, is directed to a hinge assembly movable between open and closed positions and capable of being held or locked in an open position. The hinge assembly comprises a first hinge leaf including a generally cylindrical first body portion or knuckle and a second hinge leaf including a generally cylindrical second body portion or knuckle. The first and second knuckles of the two hinge leaves have a common longitudinal axis, and cooperate with a hinge pin assembly, so that the first and second hinge leaves are rotatable to move the hinge assembly between the open and closed positions. The hinge pin assembly has first and second segments with aligned internal bores configured with non circular cross sections. A lock bar is movable within the internal bores of the first and second hinge pin segments and has a cross section configured to engage the internal bores and prevent rotation of the hinge leaves. The lock bar is movable longitudinally within the internal bores of the first and second hinge pin segments between a first position and a second position, so that when the lock bar is in the first position the first and second hinge leaves cannot rotate relative to one another and when the lock bar is in the second position the first and second hinge leaves can rotate relative to one another. A magnetic latch member is mounted to one of the first or second hinge members to hold the lock bar in one of the first or second positions.
In accordance with a further preferred embodiment of the invention, the hinge assembly includes a force relief mechanism to prevent catastrophic failure of the hinge in the event substantial force is applied to the gate while the hinge assembly is in the locked position. Due to the large moment arm that is created by the gate itself, forces input to the gate are greatly amplified at the hinge and malfunction or permanent damage may arise without some mechanism to relieve these forces. In one form, the relief mechanism utilizes a set screw positioned to maintain the locking function of the hinge assembly, but allowing the two hinge leaves to rotate even when in the locked position upon application of substantial gate closing forces.
The novel features which are characteristic of the present invention are set forth in the appended claims. However, the invention's preferred embodiments, together with further objects and attendant advantages, will be best understood by reference to the following detailed description taken in connection with the accompanying drawings in which:
With reference to
With reference now to
A magnet 54 is housed within hinge knuckle 22 and held in place between pin 38 and insert 36. The function of magnet 54 will be described below.
A lock bar or rod 60 is employed with the hinge assembly 10 and may be positioned to prevent movement of, or lock, the first and second hinge leaves 20 and 24. The lock bar 60 is configured so that when inserted into the internal bores 30 and 32, it cannot rotate within the hinge pin assembly. In the illustrated embodiment, the lock bar 60 has a hexagonal cross section matching the cross sections of bores 30 and 32. In addition, lock bar 60 has a longitudinal groove 62 and one end 64 composed of a ferrous material. Lock bar 60 is positioned within insert 46 so that its groove 62 is aligned with set screw 50. The inside end of set screw 50 extends into groove 62 and acts as a stop pin to limit the longitudinal movement of the lock bar.
In the embodiment illustrated in
The embodiment illustrated in
While the hinge assembly 10 may be fabricated from a variety of materials, it is desirable that its components be made from plastics or metal alloys, such as stainless steel, which limit or eliminate oxidation.
It will be appreciated by those skilled in the art that various changes and modifications can be made to the illustrated embodiments without departing from the spirit of the present invention. For example, in the illustrated embodiment, the magnetic latch member holds the lock bar in the hinge locking position, but the lock bar might also be held in the hinge free rotation position by the magnet, with the lock bar being pushed down to engage the locking position. Likewise, other means will be apparent to those skilled in the art to retain the lock bar within the hinge assembly.
One alternative would include a radially extending element, such as a collar or other protuberance, on the lock bar which would engage a stop affixed to one of the hinge members to thereby limit the lock bar's longitudinal movement. Also, the disclosed embodiments show the hinge assembly 10 in use with two self closing hinges 16, and it is also apparent that the hinge 10 might be used with only one self closing hinge 16 or some other mechanism designed to bias the gate 12 toward the closed position. All such modifications and changes are intended to be covered by the appended claims.
This application is a continuation in part of U.S. patent application Ser. No. 13/400,803, filed Feb. 21, 2012.
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Number | Date | Country | |
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20130212836 A1 | Aug 2013 | US |
Number | Date | Country | |
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Parent | 13400803 | Feb 2012 | US |
Child | 13757537 | US |