1. Field of the Invention
The present invention is directed to a pin hanging system for track frames used to display photos, art work, objects, diplomas or any other item to be framed.
2. Description of Related Art
Conventional track frames used to frame an photographs, mirrors, diplomas or any other objects are known. These track frames are typically made of metal and represent multiple track frame sections assembled together end-to-end funning, a closed frame, typically in the shape of a rectangle or square.
Picture frames are generally hung from the wall using a wire. The use of a wire creates instability in the object being hung when the wire slides along the hook secured to the wall and/or the object hangs against the wall on which it is hung. Moreover, when hanging a framed object using a wire it is difficult to insure that it is level. It is thus desirable to develop a hanging system and apparatus that eliminates the use or need for any wires and insures that the frame is level, stable and completely flush against the wall or other vertical service to which it is to be mounted.
It would be further desirable to provide a hanging system that may be provided, with but disassembled from a framed object at the time of purchase from a manufacturer, distributor, retail outlet, or any other individual or establishment. On-line retail market sales are increasing every year. Thus, shipment of the framed object with its hanging system is another concern from the standpoint of safety, increased weight and ease of assembly by the consumer once they receive the package. It would be desirable to develop a hanging system that may be shipped to the consumer disassembled from but with the framed object and easily assembled within the frame thereafter using only tools commonly found in consumers homes.
As previously noted, when shipped to the consumer the framed object itself is fully assembled. Therefore, it would be further desirable to develop a hanging system and apparatus that would not require the disassembly of any part of the assembled frame to install. That is, it would be desirable for the hanging system to be fully insertable into/fully removable from any desired location along the assembled track frame using conventional tools available in almost every home without having to disassemble the frame or necessarily remove the pin hanger from the track frame.
The present invention is directed to an inventive hanging system for an assembled framed object to be hung on a wall or other surface that solves the aforementioned problems.
An aspect of the present invention is directed to a system for hanging a framed object that includes a pin hanger comprising: a neck section having a top surface and a width defined by two outer lateral edges defining a single step down transition region; an intermediate shoulder section having a width defined by two outer lateral edges extending outward beyond that of the outer lateral edges of the neck section forming substantially planar ledges; and an inward, tapered section starting from the outer lateral edges of the intermediate shoulder section and terminating in a substantially planar bottom surface that is substantially parallel to the top surface of the neck section; outer lateral edges of the inward tapered section are angled relative to the outer lateral edges of the intermediate shoulder section at an angle less than 90 degrees. A pin projects from the top surface of the neck section at an angle less than 90 degrees relative to the top surface of the neck section. Defined in the pin hanger is a hole extending from the top surface of the neck section to the bottom surface of the tapered section with a screw receivable within the hole.
Another aspect of the present invention is directed to a method for hanging a framed object to a surface using the system in accordance with the system in the preceding paragraph. Initially, the pin hanger is positioned at a desired location along the track frame section with a pointed end of the pin facing outward away from the track frame section. Prior to insertion into the opening, the pin hanger is oriented so that the outer lateral edges the neck section are substantially aligned with terminating edges of the shoulders of track frame section; in this position, the intermediate shoulder section prevents the pin hanger from being fully insertable into the opening of the track frame section. Then one side of the pin hanger is rotated until one of the outer lateral edges of the intermediate shoulder section is insertable via the opening into the track frame section and an associated ledge of the intermediate shoulder section parallel to the top surface of the neck section is received beneath an associated shoulder of the track frame section of the same side. That side of the pin hanger inserted into the opening of the track frame section is shifted towards an interior surface of a side wall of the track frame section. While the one side ledge is maintained within the track frame section beneath the associated shoulder on the same side, the opposite side of pin hanger is rotated by substantially a same amount in an opposite direction relative until an opposing outer edge of the intermediate shoulder section clears the corresponding shoulder passing through the opening into the track frame section whereby the pin hanger is fully inserted within the track frame section. Thereafter, the outer edges of neck section are realigned with the shoulders of the track frame section. The pin hanger is pulled until the ledges of the intermediate shoulder section are in physical contact with respective interior surfaces of the shoulders of the track frame section. Lastly, the pin hanger is releasably secured in place within the track frame section at any desired location.
The foregoing and other features of the present invention will be more readily apparent from the following detailed description and drawings of illustrative embodiments of the invention wherein like reference numbers refer to similar elements throughout the several views and in which:
The present invention is directed to a pin hanger sized and shaped to be received within a conventional standard size track frame section forming part of a frame (typically made of metal, plastic or other rigid material) for an object or picture such as but not limited to a photograph, piece of art, diploma or any other item to be framed and hung on a wall or other surface.
Pin hanger 200 is adapted to be received within and releasably securable at any desired position along the track frame section 100 without having to disassemble the closed frame. Accordingly, the pin hanger may be retrofit to a preassembled closed frame without having to disassemble the frame. The pin hanger in accordance with the present invention is therefore particularly well suited to be retrofit with assembled frames having no open terminating end.
Referring to the end view in
Instead of using a pin having a circular cross-section at all times in an axial direction, a two-dimensional prong having a non-circular cross-section and terminating in a pointed end may be stamped or struck from the material that forms the hanger itself. Due to its non-circular cross-section, the prong embodiment is restricted in use to hanging the framed object in drywall and not able to hold as much weight as the pin embodiment. Such stamped prong preferably has a uniform width with the exception of its pointed end. Once stamped from a metal plate, the manufactured prong may thereafter be mounted to the top surface 205 of the neck section 220.
The pin hanger may be any desired longitudinal length so long as it does not exceed the longitudinal length of the track frame section 100 into which it is to be received. In a lateral direction (perpendicular to the longitudinal direction) the top surface 205 of the neck section 220 has a length LH1. In order to maximize stability by minimizing any movement of the hanger 200 when assembled within the track frame section 100, the length LH1 of the top surface 205 of the neck section 220 is preferably approximately equal to the distance DT1 in a lateral direction of opening 120 of the substantially C-shaped track. Outer lateral edges 222, 222′ of the neck section 220 define a single step down transition of a height HH1 to an intermediate shoulder section 225. The height HH1 of the neck section 220 is preferably substantially equal to the height HT1 of the shoulders 115, 115′ so that when assembled the top surface 205 of the neck section 220 of the hanger 200 is substantially flush with the exposed outer surfaces 117, 117′ of the shoulders 115, 115′ of the track frame section 100. This allows the assembled hanger and frame to be flush with the wall or other surface on which it is hung. In turn, outer lateral edges 223, 223′ of the intermediate shoulder section 225 extend outward in a lateral direction relative to the outer lateral edges 222, 222′ of the neck section 205 forming substantially planar ledges 226, 226′ having a length LH2 that is less than LT1 (the length of the respective shoulders 115, 115′ from its terminating edges 116, 116′ to where it reaches the interior surface of the side walls 110, 110′). Preferably, the top surface 205 of the neck section 220 is substantially parallel to the substantially planar ledges 226, 226′. When the hanger 200 is assembled within the track frame section 100 with the neck section 220 secured between the shoulders 115, 115′, a clearance exists between the outer lateral edges 223, 223′ of the intermediate shoulder section 225 and the respective interior surfaces of the side walls 110, 110′ of the track frame section 100. This clearance is sufficient so that when one of the later edges 223, 223′ is in physical contact with the interior surface of the side walls 110, 110′, by rotating or tilting the pin hanger 200 its opposite edge 223, 223′ is able to clear the terminating end 116, 116′ of the shoulder 115, 115′ allowing the pin hanger 200 to be readily removed at any desired position from the track. Outer lateral edges 223, 223′ of the intermediate shoulder section 225 have a height HH2. Intermediate shoulder section 225 is immediately followed by an inward tapered section 230 starting from the outer lateral edges 223, 223′ of the intermediate shoulder section 225 and terminating at a substantially planar bottom surface 210 that is substantially parallel with that of top surface 205 of the neck section 220. Each outer lateral edges 224, 224′ of the inward tapered section 230 is defined by an angle β (
A hole or aperture 235 is defined in the pin hanger 200 extending therethrough between top surface 205 and bottom surface 210, with an axial direction of the hole being oriented substantially perpendicular to these surfaces. A set screw 240 or other releasable securing hardware is received within the hole or aperture 235 temporarily securing the pin hanger 200 in place at any desired position along the track frame section 100. When the set screw 240 is screwed in tightly securing the pin hanger in place the terminating end of the set screw, opposite its head, extends physically beyond the bottom surface 210 of the pin hanger 210 and is in physical contact with an interior surface of the bottom wall 105 of the substantially C-shaped channel.
Pin 215 is disposed at an angle α of less than 90 degrees with respect to top surface 205. This acute angle assists in drawing the frame flush against the wall. The angle α may be between approximately 50 degrees and approximately 80 degrees. Preferably, the angle α is between approximately 75 degrees and approximately 80 degrees. Most preferably, angle α is approximately 75 degrees. Pin 215 is non-moveably mounted to the neck section.
Removal of the hanger 200 from within the track 100 follows a similar procedure in reverse. Set screw 240 is released from the hole or opening 235 by unscrewing it, preferably until it is at least flush with the bottom surface 210 of the pin hanger 200 so as not to be an obstruction during removal of the pin hanger from the internal cavity 125 of the track frame section. While holding pin 215, the hanger 200 is pushed downward into the internal cavity 125 until the neck section 220 clears the opening 120. The pin hanger 200 is positioned so that one of the outer lateral edges 223, 223′ is moved closer towards and perhaps in physical contact with the interior surface of the associated side wall 110, 110′. Then the user tilts or rotates the hanger about its longitudinal axis until one of the opposite outer lateral edges 223, 223′ of the intermediate shoulder section 225 is able to pass through the opening 120. Once the one side of the pin hanger passes fully through the opening 120, the pin hanger is tiled or rotated about is longitudinal axis in an opposite direction until the other outer lateral edge 223, 223′ of the intermediate shoulder section 225 is able to pass through the opening 120. Now that the hanger has been fully removed from within the track it may be relocated to a new position along, the same or different track frame section.
Instead of removing the hanger from the frame, the pin hanger may be readily repositioned within the track frame section by simply releasing the set screw 240 and sliding the pin hanger 200 within the track 100 to a different location within the same track frame section. Repositioning of the hanger may therefore be realized by either sliding the hanger while being maintained within the internal cavity or, alternatively, by removing the hanger from the track altogether and following the sequence of steps above at the new location.
Once the hanger has been assembled and temporarily secured at a desired location within the metal frame, the assembly may readily be hung on the wall or other surface by simply pushing the framed object until the pointed end of the pin penetrates into the wall and the top surface 205 of the neck section 220 along with the exterior surfaces of the shoulders 115, 115′ are all flush with the wall surface. Automatically, the hung framed object is level, stable (prevents rocking) and flush with the wall.
The present claimed invention has been illustrated and described with respect to a single pin hanger assembled in a metal track frame. It is, however, contemplated and within the intended, scope of the present invention to use more than one pin hanger, with each hanger having its own associated pin, assembled in the same track frame section or different track frame sections that formed a closed assembled frame.
The measurements associated with the conventional track frame are substantially standard. By way of illustrative, non-limiting example, the standardized measurements of the substantially C-shaped channel of the track frame section are typically as follows: HT1 is substantially 7/32″; HT2 is substantially 5/32′; DT1 is substantially ⅜″; LT1 is substantially 3/32″; LT2 is substantially ½″. Exemplary complementary size pin hanger measurements for such an example standardized C-shaped channel are as follows: HH1 is substantially 7/32′; HH2 is substantially 5/32″; HH3 is substantially ⅛″; LH1 is substantially 5/16′″ LH2 is substantially 1/16″; LH4 is substantially 5/16″; α is approximately 75 degrees; and β is approximately 45 degrees.
The measurements of the L-shaped ledge portion of the track frame section have no bearing, whatsoever, on the scope of the present invention. As for the particular measurements of the substantially C-shaped channel section, these measurements may be varied, as desired. In such case, the corresponding measurements of the pin hanger may be appropriately varied to complement those of the substantially C-shaped channel section while satisfying the following conditions: (i) the hanger profile is specifically designed to be fully insertable within the within the substantially C-shaped channel only after tilting/rotating in a longitudinal direction from one side followed thereafter h its opposite side; (ii) once inserted within the cavity of the channel, shifting of the hanger therein is prohibited by its complementary shape hounded between the terminating ends 116, 116′; (iii) once fully inserted within the substantially C-shaped track frame the pin hanger is releasably securable therein at any desired location along the track without having to be removed from the end of the track frame section or disassemble the closed frame; and (iv) when assembled and secured within the substantially C-shaped channel, a top surface 205 of the pin hanger together with the exterior surfaces 117, 117′ of the shoulders 115, 115′, all rest flush against the surface on which the framed object is to be hung.
The present inventive hanging system may be retrofit to preassembled framed objects having a substantially C-shaped track frame without having to disassemble the frame.
Thus, while there have been shown, described, and pointed out fundamental novel features of the invention as applied to a preferred embodiment thereof, it will be understood that various omissions, substitutions, and changes in the form and details of the devices illustrated, and in their operation, may be made by those skilled in the art without departing from the spirit and scope of the invention. For example, it is expressly intended that all combinations of those elements and/or steps that perform substantially the same function, in substantially the same way, to achieve the same results be within the scope of the invention. Substitutions of elements from one described embodiment to another are also fully intended and contemplated. It is also to be understood that the drawings are not necessarily drawn to scale, but that they are merely conceptual in nature. It is the intention, therefore, to be limited only as indicated by the scope of the claims appended hereto.
Every issued patent, pending patent application, publication, journal article, hook or any other reference cited herein is each incorporated by reference in their entirety.