The present invention relates generally to devices for storing articles, and more particularly, to devices for storing and displaying elongate articles.
Traditional support devices for storing bottles, such as wine bottles, generally include a plurality of longitudinal compartments extending orthogonally from a back wall and having circular or square cross-sections. Each compartment generally receives a single bottle such that either a closure-end (also referred to as a “cork-end”) or a bottom-end of the bottle faces outwardly and can be seen through the opening of the compartment. However, this method of storing bottles is problematic for an observer wishing to quickly view a descriptive label provided on a body of the bottle (the portion of the body having the label referred to as the “label-side” of the bottle). In particular, the body of the bottle and the label are disposed within the compartment and thereby generally concealed from view. Accordingly, viewing the label on the bottle requires partially or completely removing the bottle from its storage compartment.
Improved support devices for storing bottles have allowed for aligning a bottle in one or more preferred directions in which a label-side of the bottle is readily visible to an observer without having to fully or partially remove the bottle from its displayed location. For example, in a first direction of a bottle, the bottle may be aligned such that its longitudinal axis extends generally parallel to front and back portions of the support device, such that the body of the bottle faces an observer. In a second direction of the bottle, the bottle may be aligned such that its longitudinal axis extends generally orthogonal to the front and back portions of the support device, such that either the closure-end or the bottom-end of the bottle faces the observer.
However, known support devices for storing bottles remain deficient in providing a structure that is selectively adjustable for displaying a plurality of bottles with label-sides of the bottles visible to an observer. For example, modular support devices include various individual components that must be installed, repositioned, and/or removed depending on the direction in which one or more bottles are to be aligned for display. Other designs minimize the number of components of the support device, but in doing so provide a structure that is limited in its ability to display various quantities and arrangements of bottles aligned in a particular direction. Accordingly, there remains a need for improvement of support devices for storing and displaying bottles.
An exemplary embodiment of a support for storing and displaying elongate articles in accordance with the principles of the invention includes at least one shelf that is selectively adjustably couplable with a support frame in at least first and second orientations. A first locating structure on the shelf is associated with the first orientation and is engagable with at least one elongate article placed in contact with the first locating structure to locate the at least one elongate article on the at least one shelf so that a longitudinal axis of the at least one elongate article is aligned in a first direction. A second locating structure on the shelf is associated with the second orientation and is engagable with an elongate article placed in contact with the second locating structure to locate the elongate article on the at least one shelf so that a longitudinal axis of the elongate article is aligned in a second direction.
In another exemplary embodiment, a method of storing and displaying elongate articles with a support having at least one shelf includes selectively providing a first shelf in a first orientation. The at least one shelf includes a first side with first locating structure and a second side with second locating structure. The at least one shelf is positionable in a first orientation in which the first side faces in a generally upward direction, and a second orientation in which the second side faces in a generally upward direction. The method further includes supporting at least one elongate article on the first shelf anywhere substantially along the entire length of the first shelf, such that the first locating structure engages the at least one elongate article and aligns a longitudinal axis of the at least one elongate article parallel with a first direction defined by a longitudinal axis of the first locating structure.
Various additional features and advantages of the invention will become more apparent to those of ordinary skill in the art upon review of the following detailed description of the illustrative embodiments taken in conjunction with the accompanying drawings.
Referring to
The support 10 includes a shelf 40 that is selectively adjustably couplable with a support frame 30 in at least a first orientation and a second orientation. The first orientation of the shelf 40 is shown in
As shown, the support frame 30 may include one or more horizontally oriented support arms 32, each arm 32 engaging an underside of the shelf 40 for providing the shelf 40 with support in a vertical direction and securing the shelf 40 in a substantially horizontal position. In particular, the support arms 32 may be arranged to engage an underside of the shelf 40 near first and second lateral ends 50, 52 of the shelf 40. Additional support arms 32 may be employed as needed at various locations between the first and second lateral ends 50, 52 for providing the shelf 40 with an adequate degree of vertical support.
Each support arm 32 may be selectively adjustably coupled with a vertically oriented mount 34, shown in this embodiment in the form of an elongate rail, which may be anchored to a vertical surface such as a wall, for example. The mount 34 may include a plurality of slots 36 for adjusting a vertical position of the support arm 32, and thereby a vertical position of the shelf 40. Additionally, though not shown, each mount 34 may be sized to receive a plurality of support arms 32 for supporting a plurality of vertically spaced shelves 40. While the support frame 30 is shown and described herein as including one or more mounts 34 that may be anchored to a vertical surface, such as a wall, it will be appreciated that in alternative embodiments the shelf 40 may be supported by a free-standing frame or similar structure that is independent from walls or other similar surfaces.
Referring to
In the first orientation of the shelf 40, shown in
The first side 42 of the shelf 40 includes first locating structure 54 for engaging and retaining one or more bottles 12 when the shelf 40 is in the first orientation. In the embodiment shown, the first locating structure 54 spans substantially the entire length of the shelf 40 such that one or more bottles 12 may be supported by the first locating structure 54 anywhere substantially along the entire length of the shelf 40. In this manner, substantially the entire length of the first side 42 of the shelf 40 may be employed for supporting one or more bottles 12, as described in greater detail below.
In the embodiment shown, the first locating structure 54 comprises a first set of elongate members 56. The elongate members 56 each define an axis and extend substantially transverse to the longitudinal axis A of the shelf 40 between the first longitudinal end 46 and the second longitudinal end 48. As shown, the elongate members 56 are arranged in a parallel, spaced apart configuration. A first terminal member 56a may define the first lateral end 50 of the shelf 40, and a second terminal member 56b may define the second lateral end 52.
In the embodiment shown, the elongate members 56 are arranged in a series of spaced apart pairs 58. In particular, each pair 58 defines a primary space 60 therebetween that is sized to receive and retain a portion of the body 14 of a bottle 12 to thereby support the bottle 12 on the shelf 40 and to restrain movement of the bottle 12 in directions transverse to the longitudinal axis of the bottle 12. Additionally, each pair 58 of elongate members 56 is separated from an adjacent pair 58 by a secondary space 62, such that the elongate members 56 collectively define a series of alternating primary and secondary spaces 60, 62 along the length of the shelf 40. A tertiary space 64 may be formed between the first and second terminal members 56a, 56b and adjacent pairs 58 of elongate members 56. In use, one or more of the secondary spaces 62 could be used in a manner similar to the primary spaces 60 for receiving and retaining a portion of the body 14 of a bottle 12 as shown and described herein.
In the embodiment shown, the elongate members 56 are uniformly spaced such that the primary spaces 60 each define a common first width, the secondary spaces 62 each define a common second width, and the tertiary spaces 64 each define a common third width. The first width of the primary spaces 62 may be less than the second width of the secondary spaces 62, and the third width of the tertiary spaces 64 may be less than the first width of the primary spaces 60. In alternative embodiments, the elongate members 56 of first locating structure 54 may be non-uniformly spaced in various arrangements such that the primary, secondary, and/or tertiary spaces 60, 62, 64 do not define common first, second, and third widths, respectively. For example, one or more pairs 58 of the elongate members 56 could be arranged to define a primary space 60 having a width that is substantially larger than or smaller than widths of the remaining primary spaces 60. In this manner, the elongate members could receive a bottle 12 having a diameter that is substantially larger than or a substantially smaller than that of other bottles 12 to be supported by the elongate members 56.
In one embodiment, the primary space 60 defined by each pair 58 of elongate members 56 defines a first width that is less than a maximum outer width, such as an outer diameter, of the body 14 of a bottle 12 to be supported by the pair 58. In this manner, and as best shown in
Referring now to
The second side 44 of the shelf 40 includes second locating structure 70 for engaging and retaining one or more bottles 12 when the shelf 40 is in the second orientation. In the embodiment shown, the second locating structure 70 spans substantially the entire length of the shelf 40 such that one or more bottles 12 may be supported by the second locating structure 70 anywhere substantially along the entire length of the shelf 40. In this manner, substantially the entire length of the second side 44 of the shelf 40 may be employed for supporting one or more bottles 12, as described in greater detail below.
In the embodiment shown, the second locating structure 70 comprises a second set of elongate members 72. The elongate members 72 each define an axis and extend substantially parallel to the longitudinal axis A of the shelf 40 between the first lateral end 50 and the second lateral end 52. As shown, the elongate members 72 are arranged in a parallel, spaced apart configuration. A first terminal member 72a may define the first longitudinal end 46 of the shelf 40, and a second terminal member 72b may define the second longitudinal end 48.
Similar to the elongate members 56 of first locating structure 54, the elongate members 72 of second locating structure 70 may be arranged in a series of spaced apart pairs 74. In particular, each pair 74 may define a primary space 80 therebetween that is sized to receive and retain a portion of the body 14 of a bottle 12 to thereby support the bottle 12 on the shelf 40, and to restrain movement of the bottle 12 in directions transverse to the longitudinal axis of the bottle 12. Additionally, each pair 74 of elongate members 72 is separated from an adjacent pair 74 by a secondary space 82, such that the elongate members 72 collectively define a series of alternating primary and secondary spaces 80, 82 along the width of the shelf 40. A tertiary space 84 may be formed between the first and second terminal members 72a, 72b and adjacent pairs 74 of elongate members 72. In use, one or more of the secondary spaces 82 could be used in a manner similar to the primary spaces 80 for receiving and retaining a portion of the body 14 of a bottle 12 as shown and described herein.
In the embodiment shown, the elongate members 72 are uniformly spaced such that the primary spaces 80 each define a common first width, the secondary spaces 82 each define a common second width, and the tertiary spaces 84 each define a common third width. The first width of the primary spaces 80 may be less than the second width of the secondary spaces 82, and the third width of the tertiary spaces 84 may be less than the first width of the primary spaces 80. In alternative embodiments, as described above in connection with first locating structure 54, the elongate members 72 of second locating structure 70 may be non-uniformly spaced in various arrangements such that the primary, secondary, and/or tertiary spaces 80, 82, 84 do not define common first, second, and third widths, respectively.
In one embodiment, and similar to first locating structure 54 described above, the primary space 80 defined by each pair 74 of elongate members 72 of second locating structure 70 defines a first width that is less than a maximum outer width, such as an outer diameter, of the body 14 of a bottle 12 to be supported by the pair 74. In this manner, the pair 74 of elongate members 72 tangentially contacts the body 14 of the bottle 12 on either side of the longitudinal axis of the bottle 12, as shown in
Persons skilled in the art will appreciate that the shelf 40, including the elongate members 56, 72, may be formed of any suitable material or materials, and through any suitable manufacturing method. Additionally, the elongate members 56, 72 may be formed with any suitable cross-sectional shape. For example, in one embodiment, each elongate member 56, 72 may be an independent rod-like structure formed of a metal and having a circular cross-sectional shape. The individual elongate members 56, 72 may be permanently affixed to one another at various points of contact, for example through welding, thereby forming the shelf 40. In other embodiments, the elongate members 56, 72 may be independent rod-like members formed of plastic, wood, and/or various composite materials, for example, and may be joined together using any suitable joining method. In other embodiments, the shelf 40 may be formed as a single monolithic structure, for example through injection molding or various machining operations.
Referring to
Referring to
While the support 10 is shown and described herein for supporting articles in the form of individual bottles 12, it will be appreciated that the support 10 may be employed for bulk storage as well. For example, the shelf 40 may support cases of articles, such as bottles, in place of or in combination with individual articles.
While the present invention has been illustrated by the description of specific embodiments thereof, and while the embodiments have been described in considerable detail, it is not intended to restrict or in any way limit the scope of the appended claims to such detail. The various features discussed herein may be used alone or in any combination. Additional advantages and modifications will readily appear to those skilled in the art. The invention in its broader aspects is therefore not limited to the specific details, representative apparatus and methods and illustrative examples shown and described. Accordingly, departures may be made from such details without departing from the scope or spirit of the general inventive concept.
Number | Name | Date | Kind |
---|---|---|---|
2286831 | Ressinger | Jun 1942 | A |
D190353 | Chesley | May 1961 | S |
3835793 | Goddard | Sep 1974 | A |
3907119 | Franz | Sep 1975 | A |
D323600 | Patke | Feb 1992 | S |
D330987 | Rosenthal | Nov 1992 | S |
5169009 | Bomze | Dec 1992 | A |
5379905 | Bustos | Jan 1995 | A |
5538147 | Fucci | Jul 1996 | A |
5711436 | Moeller | Jan 1998 | A |
5826731 | Dardashti | Oct 1998 | A |
6619489 | Kessel | Sep 2003 | B2 |
6991117 | McCain | Jan 2006 | B2 |
D526168 | Goodman et al. | Aug 2006 | S |
7377397 | Lee | May 2008 | B2 |
7516853 | Murillo, Jr. | Apr 2009 | B1 |
7850017 | McCain | Dec 2010 | B2 |
7882967 | Hynes | Feb 2011 | B2 |
D637427 | Troyner et al. | May 2011 | S |
7984813 | Tapager | Jul 2011 | B1 |
8033402 | Bevis | Oct 2011 | B1 |
8231015 | McCain | Jul 2012 | B2 |
8567617 | Tapager | Oct 2013 | B1 |
D698589 | Troyner et al. | Feb 2014 | S |
8714373 | Danehy | May 2014 | B2 |
8720704 | Gupta | May 2014 | B2 |
8869997 | Collini | Oct 2014 | B2 |
20010025824 | Olivero | Oct 2001 | A1 |
20020066708 | Gerard | Jun 2002 | A1 |
20040089621 | Gangloff | May 2004 | A1 |
20050211648 | Haller | Sep 2005 | A1 |
20060219648 | Vinals Calduch | Oct 2006 | A1 |
20090026157 | Gibert Guasch | Jan 2009 | A1 |
20100252516 | Huang | Oct 2010 | A1 |
20110132853 | Drobot et al. | Jun 2011 | A1 |
20110309220 | Collini | Dec 2011 | A1 |
20120085721 | Michael J. et al. | Apr 2012 | A1 |
20130191987 | Yang et al. | Aug 2013 | A1 |
20130233814 | Gupta | Sep 2013 | A1 |
Number | Date | Country |
---|---|---|
202013105392 | Feb 2014 | DE |
1749459 | Feb 2007 | EP |
100786255 | Dec 2007 | KR |
Entry |
---|
KV, “80 Series Standard & 180/181 Series Bracket System”, http://www.robertscoinc.com/pdf/KANPE%20VOGT%2080%20AND%20180.pdf, copyright 2009, p. 4, accessed Dec. 5, 2014. |
Number | Date | Country | |
---|---|---|---|
20160066713 A1 | Mar 2016 | US |