The present invention relates generally to support systems for shelves and the like, and more particularly to systems of this type that can be installed without tools.
There are a wide variety of shelf support systems that are designed to permit a shelf or similar support surface to be installed in place, usually by securing the shelf to a support, such as a stanchion. In many systems of this type, it is necessary to use attachment devices, such as screws, bolts and the like, to obtain a secure connection between the shelf and its support. While these systems do generally provide a proper support for the shelf, they must be manually installed using tools which is time consuming, labor intensive and expensive. Moreover, in time the attachment devices may loosen, which adversely affects the secure connection that supports the shelf.
It is also known to provide self support systems that do not require any special tools to install the shelf, but these systems are relatively complex in structure and difficult to install, and they therefore are relatively expensive. Additionally, in some cases there is not a tight fit between the shelf and its support.
Therefore, there exists a need for a shelf support system that can be installed easily and quickly without the need for tools or manually installed attachment devices, and that provides a secure and tight fitting support for the shelf.
Briefly summarized, the present invention provides a shelf support system that includes a shelf member having a longitudinally extending support surface, and a flange adjacent at least one end of the support surface. The flange includes a downwardly extending wall portion and an inwardly extending wall portion connected thereto, with the inwardly extending wall portion having an edge formed with a notch having a predetermined width. The support system: also includes at least one support bracket for selective attachment to the one end of the shelf member, the support bracket including a generally U-shaped mounting flange having an upwardly extending connecting wall that includes a spacer wall portion having a predetermined length and an engagement wall portion that is connected to the spacer wall portion and that extends beyond the predetermined length of the spacer wall portion. The length of the spacer wall portion of the support bracket is less that the width of the notch in the shelf member to permit the U-shaped mounting flange of the support bracket to engage the downwardly extending wall portion and the inwardly extending wall portion of the shelf member, with the spacer wall portion of the support bracket disposed in the notch of the shelf member and with the engagement wall portion engaging the inwardly extending wall portion of the shelf member to provide a secure connection between the shelf member and the support bracket.
In the preferred embodiment of the present invention, the shelf member includes a second flange adjacent the other end of the support surface having a downwardly extending wall portion and an inwardly extending wall portion connected thereto, with the inwardly extending wall portion having an edge formed with a notch having a predetermined width, and the system includes a second support bracket which is the mirror image of the one support bracket and which is connectable to the second flange of the shelf member in the same manner that the one support bracket is connected to the flange at the one end of the shelf member.
It is also preferred that the length of the spacer wall portion of the support bracket be just slightly less than the length of the notch to provide a close fit therebetween when the support bracket is connected to the shelf member, and that the engagement wall portion of the support bracket extends beyond the length of the spacer wall portion on both sides thereof at a gradually increasing incline with respect to the inwardly extending wall portion of the shelf member when the support bracket is connected to the shelf member.
The U-shaped mounting flange of the support bracket may include a generally horizontally extending wall portion connected to the upwardly extending connection wall, and the width of the horizontally extending wall portion may be substantially equal to the width of the inwardly extending wall portion of the shelf member at the location of the notch. Also, the width of the inwardly extending wall portion of the shelf member at locations other than the notch are preferably greater than the width of the horizontally extending wall portion of the U-shaped mounting flange.
The support bracket may include a vertically extending attachment wall having attachment means for connecting the support bracket to a stanchion, and the U-shaped mounting flange of the support bracket may be connected to the bottom end of the attachment wall.
The present invention also provides a method of mounting a shelf member on a support comprising the steps of providing a shelf member and at least one support bracket as described above; manipulating the support bracket and the shelf member to insert the connecting wall of the support bracket into flange of the shelf member with the spacer wall portion and engagement wall portion initially lying at an angle relative to the inwardly extending wall portion of the shelf member and with the spacer wall portion located adjacent the notch in the inwardly extending wall portion of the shelf member; then rotating the support bracket relative to the shelf member to cause the spacer wall portion to move into the notch and to cause the engagement wall portion to engage the inwardly extending wall portion of the shelf member at each side of the notch to thereby provide a secure connection between the shelf member and the support bracket; and connecting the support bracket to a support.
Preferably, the method includes providing the shelf member with two flanges located at opposed ends of the shelf member; providing two support brackets; connecting one of the support brackets to one of the flanges of the shelf member and connecting the other support bracket to the other flange of the shelf member, and connecting the two support brackets to two stanchions spaced from one another.
Looking now in greater detail at the accompanying drawings which illustrate one preferred embodiment of the present invention,
One of the support brackets 12 is illustrated in
Another support bracket 12 is illustrated in
The shelf member 14, which is best illustrated in
When the shelf member 14 is mounted to one or two of the support brackets 12 in a manner to be described in greater detail below, the exact dimensions of the interacting parts of the support brackets 12 and the shelf member 14 are not critical, and the shelf member 14 will be properly supported if the dimensions vary through an acceptable range of tolerances. However, it has been found that in most applications, a more secure and tighter connection between the support brackets 12 and the shelf member 14 may be obtained if certain dimensional relationships are incorporated into the interacting parts. Therefore, in the preferred embodiment of the present invention, the length (L1) of the spacer wall portion 24 of the support bracket 12 (see
The preferred method of mounting the shelf member 14 on one of the support brackets 12 is illustrated in
Accordingly, it will be appreciated that shelf member 14 may be quickly and easily mounted to one or two support brackets 12 by a simple manipulation of the support brackets 12 relative to the shelf member 14, all without requiring a tool of any kind. The shelf member 14 can also be easily and quickly disconnected from the support brackets by simply reversing the steps of the mounting operation. Moreover, when the shelf member 14 is mounted to one of the support brackets 12 as best illustrated in
In view of the aforesaid written description of the present invention, it will be readily understood by those persons skilled in the art that the present invention is susceptible of broad utility and application. Many embodiments and adaptations of the present invention other than those herein described, as well as many variations, modifications, and equivalent arrangements, will be apparent from or reasonably suggested by the present invention and the foregoing description thereof, without departing from the substance or scope of the present invention. Accordingly, while the present invention has been described herein in detail in relation to preferred embodiments, it is to be understood that this disclosure is only illustrative and exemplary of the present invention and is made merely for purposes of providing a full and enabling disclosure of the invention. The foregoing disclosure is not intended nor is to be construed to limit the present invention or otherwise to exclude any such other embodiments, adaptations, variations, modifications and equivalent arrangements, the present invention being limited only by the claims appended hereto and the equivalents thereof.
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02001000288 | Jan 2001 | JP |
02006280810 | Oct 2006 | JP |