Seismic shelf restraint
A seismic shelf restraint for use with a shelf structure of a type having a shelf and two front columns on opposite sides of the front ledge of the shelf with each front column having a mounting slot positioned higher than the shelf surface and facing the same direction as the other mounting slot. The seismic shelf restraint preferably is an elongated thin flat bar with two tabs, one at each end, which are seatable in the mounting slots of the two front columns so that the rigid body is wholly positioned alongside the front ledge, for restraining objects from falling from the front ledge.
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The United States Government has rights in this invention pursuant to Contract No. W-7405-ENG-48 between the United States Department of Energy and the University of California for the operation of Lawrence Livermore National Laboratory.
II. BACKGROUND OF THE INVENTIONA. Technical Field
The present invention relates to shelf restraints, and more particularly to an elongated, rigid-body shelf restraint capable of being mounted alongside a shelf ledge using two connector arms (e.g. tabs) at opposite ends of the restraint which are insertably seatable in mounting slots found on two columns located on opposite sides of the shelf ledge, for restraining objects placed on the shelf from falling off the ledge, especially during a seismic event.
B. Description of the Related Art
Seismic events, i.e. earthquakes, can be hazardous to occupants of home or office buildings due to moving or falling objects. In particular, unsecured books and other objects placed on open shelves have been known to fall out and cause damage and/or injury during seismic events.
In an effort to enhance seismic safety, various types of shelf restraints and ledge barriers are known in the art. Many are commercially available, such as for example, elastic stretch cords (either used alone or passed through a rigid-body tube), nets, plastic panels, etc. which span the width of the shelf adjacent the shelf ledge when attached. Even makeshift ledge barriers, such as simple wire straps, or cut-to-length strips of wood, metal or plastic, are sometimes used. In any case, installation and attachment is typically accomplished by fastening (e.g. with screws) the barrier to the shelf structure (e.g. bookcase). Unfortunately, this requires the drilling of holes for attachment which damages the shelf structure, leaves unsightly holes when the barrier is removed, and also has an associated installation cost. Furthermore, cord or wire type ledge barriers in particular may not be sufficiently strong and rigid to withstand the inertia of book volumes moving together during an earthquake.
One type of shelf restraint which does not require drilling for attachment is disclosed in U.S. Pat. No. 5,860,535 to Brown. This shelf restraint includes a pair of book ends 14, 16 and a rod 26 pivotally supported by the book ends at pivot points 28 to span the width of the bookshelf. Double coated adhesive tape 23 is used to attach the book ends to the surface of the bookshelf. The use of such tape, however, is meant for permanent installation of the shelf restraint, and may cause damage to the shelf surface if removed.
Another type of book restraint assembly which does not require drilling for attachment is disclosed in U.S. Pat. No. 5,038,689 to Duffy. This shelf restraint assembly includes a pair of inverted trapezoidal end plates 14 and an elongated tubular restraint member 12 connected at opposite ends to the end plates near the front edges 15 of the end plates. End tabs 22 extend from the rear edges 16 of the end plates, and are capable of being received in end tab slots 22 of post members 28 located at the back of the shelf structure. This arrangement allows the restraint assembly to pivot at the end tabs 22 to raise and lower the elongated tubular restraint member 12 spanning the width of the shelf. However, the attachment location at the rear/back side of the shelf structure may pose some installation difficulty especially when books are already present.
There is a need to effectively restrain the contents of open shelves from falling out during a seismic event. It would be advantageous to provide a seismic shelf restraint with a simplified rigid-body construction enabling simplified fabrication and use (attachment/removal) without the need for professional installation and without damaging the shelf structures.
III. SUMMARY OF THE INVENTIONOne aspect of the present invention includes an apparatus for restraining objects on a shelf of a shelf structure of a type having two front columns on opposite sides of a front ledge of the shelf with each front column having a mounting slot positioned higher than the shelf surface, the apparatus comprising: an elongated substantially linear rigid body having two connector arms one at each end of the rigid body which are seatable in the mounting slots of the two front columns to mount the rigid body thereon whereby the rigid body spans the width of the shelf alongside the front ledge for restraining objects from falling therefrom.
Another aspect of the present invention includes an apparatus for restraining objects on a shelf of a shelf structure of a type having two front columns on opposite sides of a front ledge of the shelf with each front column having a mounting slot positioned higher than the shelf surface and facing the same direction as the other mounting slot, the apparatus comprising: an elongated thin flat bar having front and back faces, and two tabs one at each end of the elongated thin flat bar which are bent to protrude out of plane from the front face in the same direction as each other, said tabs being seatable in the mounting slots of the two front columns to mount the thin flat bar thereon and so that end portions of the front face confront the front columns to be substantially flush therewith and the thin flat bar is positioned alongside the front ledge for restraining objects from falling therefrom.
And another aspect of the present invention includes a shelf restraint comprising: an elongated rigid body having two catches one at each end of the rigid body, with each catch capable of catching a lower edge of a mounting slot on one of two columns on opposite sides of a ledge of a shelf to mount the rigid body on the two columns so that the rigid body spans the width of the shelf alongside the ledge for restraining objects from falling therefrom.
The accompanying drawings, which are incorporated into and form a part of the disclosure, are as follows:
The present invention is a rigid body shelf restraint for seismically restraining objects, e.g. books, notebooks, binders, and other objects, and capable of being quickly and easily attached and removed to a shelf structure or system without damaging or otherwise altering the structure for installation. Generally, the shelf restraint has an elongated, substantially linear, rigid-body structure with two ends, each with an arm, catch, hook, tab, flange, or other type of structural appendage (hereinafter “connector arm”) which extends/projects out from the elongated main rigid body preferably in the same direction as the other structural appendage on the other end. The shelf restraint is preferably made/constructed of a suitably rigid material, such as metals, alloys polymers, composites, etc. using conventional fabrication methods known in the art, so that the elongated rigid body is capable of sufficiently resisting (structurally) a force directed transverse to its longitudinal axis. It is appreciated that the elongated rigid body structure of the present invention can have either a monolithic construction, or a multi-component assembled construction, so long as rigidity in the transverse direction is sufficiently maintained. It is also appreciated that while shown in the drawings as a linear rigid body, other elongated substantially linear rigid body shapes and geometries are possible.
Turning now to the drawings,
The shelf restraint of the present invention is preferably configured for use on and with a shelf structure or system (e.g. a bookcase) of a type having, at a minimum, a shelf with a front ledge, two support columns (i.e. front columns) on opposite sides of the front ledge, and one or more mounting slots (not limited to narrow thin openings) in vertically spaced arrangement along each of the two front support columns for enabling shelf height adjustments. Preferably, the mounting slots on the two front support columns are rear facing, so that they are not viewable from the front of the shelf. An exemplary shelf structure having such rear-facing mounting is the Steelcase® line of bookcases available from Steelcase, Inc. of Grand Rapids, Mich.
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While particular operational sequences, materials, temperatures, parameters, and particular embodiments have been described and or illustrated, such are not intended to be limiting. Modifications and changes may become apparent to those skilled in the art, and it is intended that the invention be limited only by the scope of the appended claims.
Claims
1. An apparatus for restraining objects on a shelf of a shelf structure of a type having two front columns on opposite sides of a front ledge of the shelf with each front column having a mounting slot positioned higher than the shelf surface, the apparatus comprising:
- an elongated substantially linear rigid body having two connector arms one at each end of the rigid body which are seatable in the mounting slots of the two front columns to mount the rigid body thereon whereby the rigid body spans the width of the shelf alongside the front ledge for restraining objects from falling therefrom.
2. The apparatus of claim 1,
- wherein the mounting slots of the front columns are rear-facing mounting slots, and the connector arms protrude from the rigid body in the same direction as each other transverse to a longitudinal axis of the rigid body.
3. The apparatus of claim 2,
- wherein the rigid body is a thin flat bar having front and back faces, and the connector arms protrude out of plane from the front face so that, upon seating the connector arms in the rear-facing mounting slots, end portions of the front face confront the front columns to be substantially flush therewith.
4. The apparatus of claim 3,
- wherein the connector arms are tabs bent to protrude out of plane from the front face.
5. The apparatus of claim 4,
- wherein each of the tabs is bent along a respective bend axis that is parallel to the longitudinal axis of the thin flat bar.
6. The apparatus of claim 5,
- wherein each of the tabs form an acute angle with the front face of the thin flat bar to catch a lower edge of one of the mounting slots.
7. The apparatus of claim 1,
- wherein the elongated substantially linear rigid body has at least two body sections operably connected to adjust the length of the rigid body.
8. An apparatus for restraining objects on a shelf of a shelf structure of a type having two front columns on opposite sides of a front ledge of the shelf with each front column having a mounting slot positioned higher than the shelf surface and facing the same direction as the other mounting slot, the apparatus comprising:
- an elongated thin flat bar having front and back faces, and two tabs one at each end of the elongated thin flat bar which are bent to protrude out of plane from the front face in the same direction as each other, said tabs being seatable in the mounting slots of the two front columns to mount the thin flat bar thereon and so that end portions of the front face confront the front columns to be substantially flush therewith and the thin flat bar is positioned alongside the front ledge for restraining objects from falling therefrom.
9. The apparatus of claim 8,
- wherein each of the tabs is bent along a respective bend axis that is parallel to the longitudinal axis of the thin flat bar.
10. The apparatus of claim 9,
- wherein each of the tabs form an acute angle with the front face of the thin flat bar to catch a lower edge of one of the mounting slots.
11. The apparatus of claim 8,
- wherein the elongated thin flat bar comprises at least two bar sections operably connected to adjust the length of the elongated thin flat bar.
12. A shelf restraint comprising:
- an elongated rigid body having two catches one at each end of the rigid body, with each catch capable of catching a lower edge of a mounting slot on one of two columns on opposite sides of a ledge of a shelf to mount the rigid body on the two columns so that the rigid body spans the width of the shelf alongside the ledge for restraining objects from falling therefrom.
13. The shelf restraint of claim 12,
- wherein the mounting slots face the same direction as each other and the catches protrude from the rigid body in the same direction as each other transverse to a longitudinal axis of the rigid body.
14. The shelf restraint of claim 13,
- wherein the rigid body is a thin flat bar having front and back faces, and the catches protrude out of plane from the front face so that, upon catching the lower edges of the mounting slots with the catches, end portions of the front face confront the columns to be substantially flush therewith.
15. The shelf restraint of claim 14,
- wherein the catches are tabs bent to protrude out of plane from the front face.
16. The shelf restraint of claim 15,
- wherein each of the tabs is bent along a respective bend axis that is parallel to the longitudinal axis of the thin flat bar.
17. The shelf restraint of claim 16,
- wherein each of the tabs form an acute angle with the front face of the thin flat bar to catch the lower edge of one of the mounting slots.
18. The shelf restraint of claim 12,
- wherein the elongated rigid body has at least two body sections operably connected to adjust the length of the rigid body.
Type: Application
Filed: May 31, 2007
Publication Date: Dec 4, 2008
Applicant:
Inventor: William Michael Greenbaum (Salida, CA)
Application Number: 11/809,830