The present invention relates to a foldable locking hinge that can be used to rotate an object secured to an apparatus 180 degrees.
There is a need in the art for an adaptable, foldable hinge that permits an individual to position in object in a first, accessible location when the object is in use, and then conveniently reposition that object in a second, obscured location when the object is not in use, and vice versa. There is an additional need in the art for the an apparatus embodying such a foldable hinge that can be used in public or private settings by securing the apparatus underneath a surface, such as a seat or a table.
It is an object of the present to address these needs in the art.
The present invention relates to a foldable locking hinge that is configured for use in an apparatus. The apparatus may be secured to the underside of a surface, such as a chair or a table, and allow an individual to safely and securely position an object in front of them while in use, and then rotate the object 180° to safely and securely reposition the object under the surface to which the apparatus is attached. The user may, with the apparatus, take an object such as a beverage stored in a cup holder secured to a plank on the apparatus, and when the cup holder is not in use, rotate the cup holder and plank 180° to store the cup holder out of the user's way.
According to a first embodiment of the invention, there is an apparatus comprising a housing and a plank secured to the housing. The housing includes an elongated slot and a cavity positioned adjacent to and parallel with the elongated slot. The elongated slot and the cavity of the housing are each configured to at least partially receive the plank and the plank is configured to rotate 180°.
In the apparatus according to the first embodiment of the invention, the plank may comprise a rod extending through the plank configured to secure the plank to the housing. The cavity of the housing may comprise a track to receive the rod and permit lateral movement of the rod and the plank into or out of the cavity. When the plank is removed from the cavity, the rod is maintained within the track and is configured to allow the plank to pivot towards the housing into the slot. In particular, a portion of the track extends perpendicularly into the elongated slot of the housing and this extended portion of the track is configured to receive the rod to enable the 180° rotation of the plank into and out of the elongated slot.
Further in the apparatus according to the first embodiment of the invention, the plank may comprise a magnetic member and the housing may comprise a first magnetic member. The first magnetic member of the housing is configured to align with the plank magnetic member when the plank is inserted into the slot, which aids to secure the plank in the slot. The housing may also comprise a second magnetic member configured to align with the rod when the plank is inserted into the cavity, which aids to secure the plank in the cavity.
In the apparatus according to the first embodiment of the invention, the housing may comprise a first plate configured to be secured to a second plate. The cavity may formed in a space between the first plate and the second plate and the slot is formed between opposing side walls on the second plate.
The plank in the apparatus according to the first embodiment of the invention is configured to be affixed to an object, such as a cup holder.
The apparatus according to the first embodiment of the invention may comprise one or more bore holes to secure the apparatus to a surface by a bolt or screw inserted through the one or more bore holes.
According to a second embodiment of the invention, the cavity in the housing of the apparatus may comprise a spring element configured to be secured to the rod of the plank and to bias the plank towards the inside of the cavity when the plank is aligned with the cavity.
According to a third embodiment of the invention, the housing of the apparatus may comprise a rotatable latch adjacent to the slot configured to secure the plank in the slot by rotating the latch over the plank. According to the third embodiment, the cavity of the apparatus may be formed between the housing and the surface to which the apparatus is secured.
Having summarized the present invention herein, the invention will now be described in further detail in reference to the accompanying Figures.
According to a first embodiment of the invention, shown in
The plank 110 is an elongated, substantially flattened member capable of supporting an object, such as a cup holder 300. The plank 110 may be configured with an bore hole or plurality of bore holes 112 used to secure the plank 110 to the cup holder 300 or other object by means of a screw or other securing member (not shown) through the plank bore holes 112 and the object 300. The plank 110 may include a means for securing the plank 110 to the housing 120 and preventing the plank 110 from unintentionally rotating away from the slot 124 of the housing 120. In the embodiment shown in
In the embodiment shown in
The top plate 130 can be seen in detail in
The top plate 130 is further configured with a first magnetic member 136 and a second magnetic member 138. As described in further detail below, the first magnetic member 136 is configured so as to be aligned with an opening 146a in the base plate 140, and when the plank 110 is in the slot 124, aligned with the magnetic member 114 of the plank 110. The second magnetic member 138 is positioned within the plank receiving section 132 such that the rod 116, which in this embodiment is metallic, is positioned near and attracted to the second magnetic member 138. This magnetic effect secures the plank 110 within the cavity 122 of the housing 120.
The base plate 140 of the housing 120, as shown in
The base plate 140 further includes a vertical extension 148 of the tracks 134 which aid in providing the 180 degree hinge mechanism according to the invention. In a preferred embodiment, the vertical extensions 148 are positioned on the base plate 140 on an end substantially opposing the opening 146a, and when the base plate 140 is attached to the top plate 130, opposing the first magnetic member 134 and aligning with an end of the tracks 144. The plate 142 is dimensioned in a preferred embodiment so as to be shorter in length than the side walls 144, so that the vertical extensions 148 are constructed in the side walls 144 at a point in between the ends of the side walls 144 and the end of the plate 142. The vertical extensions 148 may be similar in width to the width of the tracks 144 and dimensioned to receive the rod 116 extending from the plank 110.
The 180 degree foldable hinge according to the invention will now be described in reference to
As shown in
As a result of this construction of the apparatus 100 and its hinge mechanism described above, the apparatus 100 can be used in an exemplary embodiment for moving an article into and out of view for convenience. For example, as shown in
The hinge mechanism of the apparatus 100 as shown in
The apparatus 100 may also be used with objects other than a cup holder 300 secured to the plank 110. For example, the apparatus can be used as a table extender for use with tables that may require extensions or variable sizes, such as a massage table. A table extension can be secured to the apparatus 100, which can be secured to the bottom of a massage table. If the massage table needs to be extended in length or width to meet the size of a person using the table, the extension can be rotated from underneath the table into alignment with the table in order to increase the width and/or length of the table. Additionally, the locking hinge described herein can also be used in combination with a box having a snapping lid, a pull out shelf, a pull out table, a pocketbook holder, a makeup mirror, drop down lighting, emergency lighting, a plant holder, a flower pot, a baby changing table or an ashtray, for example. If mounted at 90 degree angle can the apparatus can be used as a privacy partition, cubicle walls, privacy screens, or room dividers.
The apparatus 100 is not limited to any particular set of dimensions, but can vary in size depending on the use. Additionally, although the apparatus 100, including the plank 110, housing 120, top plate 130 and base plate 140 are configured from a suitable plastic material such as polypropylene or polyvinyl chloride, the invention is not limited to being constructed from any particular material substance, but can also be constructed from other materials, including but not limited to metallic materials such as aluminum.
According to a second embodiment of the invention, the apparatus according to the present invention may include a spring to retain the plank within the cavity rather than a magnetic member. This embodiment is discussed herein with reference to
The apparatus 400 according to the second embodiment of the invention is comprises similar components as the apparatus 100 according to the first embodiment of the invention. The apparatus 400 comprises a plank 410 and a housing 420. The housing 420 includes a cavity 422 and a slot 424 in an overlaying and parallel relationship. The cavity 422 and slot 424 are each dimensioned for receiving the plank 410.
The plank 410 may be configured with a bore hole or plurality of bore holes 412 used to secure the plank 410 to an object by means of a screw or other securing member (not shown) through the plank bore holes 412 and the object. The plank 410 may include a means for securing the plank 420 to the housing 420 and preventing the plank 410 from unintentionally rotating away from the slot 424 of the housing 420. In the embodiment shown in
The housing 420 is comprised of two components, a top plate 430 and a base plate 440. The two plates 430 and 440 are secured together by inserting one or more screws or bolts 426b through bore holes 426a in the housing 420. The bore holes 426a and screws or bolts 426b extend through both the top and base plates 430 and 440. The housing 420 includes bore holes 428a which are configured to receive screws or bolts (not shown) in order to affix the housing 420 to a surface 200.
The top plate 430 can be seen in detail in
The top plate 430 is further configured with a magnetic member 436 configured so to be aligned with an opening 446 in the base plate 440, and when the plank 410 is in the slot 424, the magnetic member 414 of the plank 410.
The top plate 430 further includes a spring receiving section 438a and a spring attachment component 438b. The plank 410 according to this embodiment of the invention includes a spring 418a secured to the rod 416 on a first spring end 418c, which may comprise a small loop dimensioned for fitting around the rod 416. The spring receiving section 438a is dimensioned to fit the spring 418a therein, as seen in
The base plate 440 of the housing 420, as shown in
The base plate 440 further includes vertical extensions 448 of the tracks 434 which aid in providing the 180 degree hinge mechanism according to the invention. In a preferred embodiment, the vertical extensions 448 are positioned on the base plate 440 on a side substantially opposing the opening 446, and when the base plate 440 is attached to the top plate 430, opposing the magnetic member 434 and aligning with an end of the tracks 444. The plate 442 is dimensioned in a preferred embodiment so as to be shorter in length than the side walls 444, so that the vertical extensions 448 are constructed in the side walls 444 at a point in between the ends of the side walls 444 and the end of the plate 442. The vertical extensions 448 may be similar in width to the width of the tracks 444 and dimensioned to receive the rod 416 extending from the plank 410.
The 180 degree foldable hinge of the apparatus 400 is similar to that shown in
The apparatus 400 can be used in combination with additional objects, such as cup holder 300, and surfaces 200, in the same manner as the apparatus 100 according to the first embodiment of the invention.
According to a third embodiment of the invention shown in
The apparatus 500 comprises a plank 510 which may similar in configuration to planks 110 and 410 described above. In the embodiment shown in
The hinge mechanism of the apparatus 500 is similar to the hinge mechanism described in the apparatus 100 and 400. The housing comprises a track 534 in cavity 522, which when the apparatus 500 is secured to a surface 200, may be enclosed by the surface 200. The plank 510 is configured to be slid through cavity by sliding the rod of the plank 510 through the track 534. The housing 520 further comprises a vertical extension 548 of the track 534. The plank 510 can be rotated into the slot 524 by moving the rod of the plank 510 vertically into the vertical extension 548 and directing the plank 510 into the slot 524. When the plank 510 is in the slot 524, the latch 550 can be turned to overlay the plank 510 and maintain the plank in the slot 524.
While there have been shown and described and pointed out fundamental novel features of the invention as applied to preferred embodiments thereof, it will be understood that various omissions and substitutions and changes in the form and details of the devices and methods described may be made by those skilled in the art without departing from the spirit of the invention. For example, it is expressly intended that all combinations of those elements and/or method steps which perform substantially the same function in substantially the same way to achieve the same results are within the scope of the invention. Moreover, it should be recognized that structures and/or elements and/or method steps shown and/or described in connection with any disclosed form or embodiment of the invention may be incorporated in any other disclosed or described or suggested form or embodiment as a general matter of design choice. It is the intention, therefore, to be limited only as indicated by the scope of the claims appended hereto. Furthermore, in the claims means-plus-function clauses are intended to cover the structures described herein as performing the recited function and not only structural equivalents, but also equivalent structures. Thus 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, in the environment of fastening wooden parts, a nail and a screw may be equivalent structures.
This application claims the benefit of U.S. Provisional Application No. 61/833,145, filed Jun. 10, 2013, which is hereby incorporated by reference in its entirety.
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