Various embodiments of the present invention are directed to a rack system and support member for supporting a folding rack in a washing appliance, such as a dishwasher.
Conventional dishwashers typically include one or more wire racks for holding, for example, dishware, glassware, or cookware. In order to facilitate the loading and retention of the items to be washed in the dishwasher, each rack may include one or more tines extending generally vertically upward from the rack. For example, where such tines are provided in an upper rack of the dishwasher, the tines may be used to support cups, glasses, or other similar items. However, in some instances, it may be desirable to fold the tines, to a position where the tines are substantially flush with the rack, so as to accommodate other items (i.e., a baking pan) which may not necessarily need the support of the tines.
The tines may be provided in rows, wherein each row of tines is formed as a single piece unit with the tines extending from a main spine. Furthermore, in some such rack configurations, two rows of such tines may be configured to rotate about the axis of each spine so as to fold toward each other. However in conventional dishwashers the tines extending from adjacent main spines may be regularly spaced along each main spine so that the two rows of tines can cooperate to support a single item, such as a plate. Therefore, the tines extending from such adjacent and rotatable (i.e. foldable) main spines may interfere with each other when the two rows are folded to be substantially flush with the rack.
Thus, there exists a need for an apparatus that allows adjacent rows of tines to be aligned with each other when in an unfolded position, but which also do not interfere with each other when the rows of tines are folded to be substantially flush with the rack. There further exists a need for such an apparatus that can be implemented with existing dishwasher racks with relatively low-cost and easily-installed components.
In one aspect, a dishwasher rack system is provided. The dishwasher rack system includes a dishwasher rack having a wire member and a folding rack having a main spine extending along a longitudinal axis perpendicularly to the wire member of the dishwasher rack and a plurality of tines spaced apart and extending perpendicularly from the main spine. The dishwasher rack system also includes a support member operably engaged between the dishwasher rack and the folding rack. The support member defines a first channel configured to engage the main spine of the folding rack, such that the main spine is rotatable with respect to the first channel about the longitudinal axis such that the folding rack is movable between a folded position and an unfolded position with respect to a dishwasher rack. The support member also defines a second channel perpendicularly disposed with respect to the first channel and configured to engage a wire member of the dishwasher rack so as to secure the folding rack thereto. In some cases, the first channel can be configured to engage a second wire member. The support member further defines an aperture configured to receive one of the plurality of tines of the folding rack therethrough. The aperture defines a horizontal and a vertical support portion configured to support the tine when the folding rack is in the folded and unfolded positions, respectively. The aperture also defines an arcuate channel extending between the horizontal support portion and the vertical support portion, the arcuate channel being configured to axially displace the tine along the longitudinal axis as the tine is moved between the horizontal support portion and the vertical support portion.
In some embodiments, the support member can be formed from an injection-molded polymer, or can be machined from a polymer blank. In other embodiments, the support member may include one or more resilient projections defining the second channel for engaging the wire member of the dishwasher rack so as to secure the folding rack thereto. In still other embodiments, the plurality of tines can include a curved section, for example, as where the plurality of tines includes a first straight section extending from the spine, a curved section extending from the first straight section, and a second straight section extending from the curved section. In yet other embodiments, the plurality of tines can rotate approximately 90 degrees when the folding rack is moved from the folded position to the unfolded position.
In some embodiments, the dishwasher rack system may further include a second folding rack comprising a second plurality of tines and a second main spine. Individual tines of the second plurality of tines can be substantially straight. Individual tines of the plurality of tines can have corresponding tines on the second plurality of tines. The plurality of tines can be axially offset from the second plurality of tines when the folding rack is in the folded position but not axially offset from the second plurality of tines when the folding rack is in the unfolded position. A second support member can be operably engaged between the dishwasher rack and the second folding rack, the support member causing the folding rack to be displaced a first distance in a first direction and the second support member causing the second folding rack to be displaced a second distance in a second direction, either the first distance being not equal to the second distance or the first direction being different from the second direction. The second plurality of tines can maintain an axial disposition when the second folding rack is folded so as not to be axially displaced upon folding of the second folding rack.
In another aspect, a support member is provided for operably engaging a folding rack of a dishwasher, where the folding rack is movable between a folded position and an unfolded position with respect to a dishwasher rack and having a main spine extending along a longitudinal axis and a plurality of tines spaced apart and extending perpendicularly from the main spine. The support member includes a body defining a first channel configured to engage the main spine of the folding rack, such that the main spine is rotatable with respect to the first channel about the longitudinal axis, and a second channel perpendicularly disposed with respect to the first channel and configured to engage a wire member of the dishwasher rack so as to secure the folding rack thereto. The body further defines an aperture configured to receive therethrough one of the plurality of tines of the folding rack. The aperture can define a horizontal support portion configured to support the one of the plurality of tines when the folding rack is in the folded position and a vertical support portion configured to support and secure the tine when the folding rack is in the unfolded position. The aperture can further define an arcuate channel extending between the horizontal support portion and the vertical support portion, the arcuate channel being configured to axially displace the tine along the longitudinal axis as the tine is moved between the horizontal support portion and the vertical support portion.
In some embodiments, the body may include one or more resilient projections defining the second channel for engaging the wire member of the dishwasher rack so as to secure the folding rack thereto. In other embodiments, the aperture can be configured to receive therethrough one of a plurality of tines comprising a curved section. In still other embodiments, the aperture can be configured to receive therethrough one of a plurality of tines that rotates approximately 90 degrees when the folding rack is moved from the folded position to the unfolded position.
Thus, the various embodiments of the present invention provide many advantages that may include, but are not limited to: providing a clip member for operably engaging a folding rack with a wire member of a dishwasher rack such that the tines of adjacent folding racks may be axially adjustable relative to one another when the folding racks are disposed in a folded position relative to the dishwasher rack; providing a dishwasher rack system employing a low-cost polymeric clip that is capable of axially adjusting a position of a folding rack as the folding rack is moved to a folded position relative to a dishwasher rack; and providing a relatively simple mechanical clip member for a folding rack that may be easily manufactured via injection molding or other high-volume manufacturing processes while still providing for the axial adjustment of the folding rack.
These and other advantages are provided by various embodiments of the present invention.
Having thus described various embodiments of the invention in general terms, reference will now be made to the accompanying drawings, which are not necessarily drawn to scale, and wherein:
Various embodiments of present invention now will be described more fully hereinafter with reference to the accompanying drawings, in which some, but not all embodiments of the invention are shown. Indeed, the invention may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will satisfy applicable legal requirements. Like numbers refer to like elements throughout.
As shown generally in
As shown generally in
Referring again to
The aperture 5 may also be defined by an arcuate channel 5c extending between the horizontal support portion 5a and the vertical support portion 5b. As shown generally in
In various embodiments, the clip member 1 (and the various channels 2, 3 and apertures 5 defined therein) may be formed using a corresponding variety of manufacturing techniques. For example, in some embodiments, the body of the clip member 1 may be formed from an injection-molded polymer. In other exemplary embodiments, the body of the clip member 1 may be machined from a polymer blank.
Some additional embodiments of the present invention may further comprise a complete dishwasher rack system (see generally,
Furthermore, the clip member 1 of the dishwasher rack system shown generally in
The dishwasher rack system can include two folding racks 20 as noted above. If these racks 20 are spaced far enough apart and their respective tines 23 are aligned, then the racks cooperate to support large flat objects, such as dishes. However, to accommodate large objects, the two folding racks 20 may need to be spaced far enough apart that they could not fold away from each other without striking a rim wire defining the upper edge of the dishwasher rack 10. Thus, the embodiments described herein provide a rack system having two spaced but aligned folding racks 20 that can be folded towards each other without inteference. One of the folding racks 20 may be provided with a clip member 1 as described above while the other folding rack uses a conventional folding mechanism, or both of the folding racks 20 may be provided with clip members 1 provided the clip members do not move the folding racks in the same axial direction by the same axial distance.
Many modifications and other embodiments of the inventions set forth herein will come to mind to one skilled in the art to which these inventions pertain having the benefit of the teachings presented in the foregoing descriptions and the associated drawings. For example, while the embodiments discussed above have generally represented the support member as a clip member, other types of support members are also possible, including a support member formed as an integral part of or otherwise attached to one of the folding racks 20 or the dishwasher rack 10. Therefore, it is to be understood that the inventions are not to be limited to the specific embodiments disclosed and that modifications and other embodiments are intended to be included within the scope of the appended claims. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.
The present application claims priority to U.S. Provisional Patent Application No. 60/916,073 filed on May 4, 2007, which is incorporated herein by reference in its entirety.
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