1. Field of the Invention
The present invention pertains to the art of refrigerators and, more particularly, to an enhanced roller system for supporting a food storage drawer, such as a crisper bin, for sliding movement within a refrigerator compartment.
2. Description of the Related Art
In the art of refrigerators, particularly household refrigerators, it is often desirable to create varying humidity and/or temperature storage zones to enhance the preservation of different food items. For instance, it is common to accommodate the storage requirements for certain food items, such as dairy products, meats, fruits and vegetables, by forming separately enclosed storage areas within a fresh food compartment. In most instances, these storage areas are designed to be maintained at temperatures which are different from the temperature of the remainder of the fresh food compartment.
In at least the case of fruits and vegetables, it is typically desirable to isolate these food items from direct contact with a flow of cooling air, especially any cold air flowing into the fresh food compartment from a freezer compartment of the refrigerator, mainly because this cold air can be fairly dry. Therefore, in order to isolate the fruits and vegetables from the desiccating effects of the cold air so as to maintain the moisture content of the fruits and vegetables, it has heretofore been proposed to provide a specialized storage receptacle, such as a crisper, within a refrigerator fresh food compartment. A crisper generally takes the form of a slidable bin which is sealed to maintain a relatively high humidity level, while the walls of the bin are chilled to establish a desirable temperature within the bin.
Many different designs have been proposed in the art to support such storage receptacles for sliding movement. Basically, there are three main designs: one providing for side flanges on the receptacle to be directly, slidably supported on guide tracks; another employing a roller system wherein each side of the receptacle is mounted through front and rear rollers for movement between extended and retracted positions; and the last design employing ball bearing glides. In general, the direct sliding supports are functional but permit multidirectional movement of the drawer, resulting in a noisy and somewhat cumbersome arrangement. Even the best known roller systems still exhibit hard surface contact along sides of the drawer which cause friction and noise. Although bearing glides exhibit a large improvement in strength and quality perception, they are expensive and can have lubrication and other issues in the cold environment of refrigerators. With the above in mind, there still exists a need for an enhanced roller system for supporting a food storage bin, such as a crisper drawer, for movement within a refrigerator compartment.
The present invention is directed to a slide assembly for a drawer, such as a crisper drawer, inside a refrigerator. The drawer slide assembly employs both side and central rollers which control both horizontal and vertical movement of the drawer. In a preferred embodiment of the invention, six lubricated rollers are employed in preventing any hard surfaces from rubbing together, with four of the rollers constituting a first set which are employed at front and rear portions at each side of the drawer to control vertical movement within a side track while the drawer is moved between an extended or open position and a retracted or closed position. The additional or second set of rollers is mounted along axes which are arranged 90 degrees relative to the first set of rollers and underneath the drawer. This second set of rollers control side-by-side movement of the drawer as it is opened and closed. In one embodiment, the second set of rollers is mounted in a refrigerated compartment and travel within a central guide provided on the bottom of the drawer.
The various rollers are lubricated to dampen noise and movement such that the slide assembly provides for a very smooth, quiet and robust-feeling drawer operation. Additional objects, features and advantages of the invention will become readily apparent from the following detailed description of a preferred embodiment of the invention when taken in conjunction with the drawings wherein like reference numerals refer to corresponding parts in the several views.
With initial reference to
Reference will now be made to
As clearly shown in this figure, side roller track 45 includes a main body 52 provided with a frontal recess 55 in which is located a mechanical fastener 57 used, preferably in combination with rear mounting structure (not shown), in fixedly securing side roller track 45 to base 9. Located rearward of frontal recess 55 is a shaft support housing portion 60 from which laterally or horizontally projects a stub shaft 62 that rotatably supports a roller 64. Behind shaft support housing portion 60 is a roller surface 68, successively including a downward and rearward sloping portion 70, a trough portion 72 and a substantially flat or level portion 74. Side roller track 45 is also shown to include an upstanding side wall 77, a terminal end wall 78 and a cantilevered overhang portion 81. Again, side roller track 46 is correspondingly constructed, thereby including an analogous roller 84 and roller surface 88. At this point, it should be noted that rollers 64 and 84 form part of a first set of rollers employed in slide assembly 40.
Central roller support 48 includes a frontal portion 92 and a rear portion 93. Mounted atop central roller support 48 at frontal portion 92 is a roller 96. Similarly, a roller 97 is also mounted upon rear portion 93. At this point, a few configuration aspects should be noted. First of all, it should be apparent that central roller support 48 is only shown to extend in a front portion of base 9, wherein side roller tracks 45 and 46 extend almost the entire depth of base 9. Actually, in the embodiment shown, central roller support 48 basically extends up to flat portion 74 of roller surfaces 68 and 88. In addition, where rollers 64 and 84 rotate about substantially horizontal axes, rollers 96 and 97, which form a second set of rollers in accordance with the invention, rotate about substantially vertical axes as established by axle defining fasteners 99 and 100.
Also provided on bottom wall 105 is a guide which is generally indicated at 127. Basically, guide 127 is established by a pair of laterally spaced, fore-to-aft extending blocks 130 and 131 between which is defined a guideway 133. As best shown in
In connection with providing the desired smooth and quiet operation, the most preferred form of the invention employs lubricated rollers for each of rollers 64, 84, 96, 97, 118 and 119. Keeping in mind that each of these rollers is shown to be identically constructed, reference will now be made to
Although each roller 64, 84, 96, 97, 118 and 119 could be made from various materials, a preferred embodiment employs acetal for roller body 154 and neoprene rubber for tread 175. Also provided for rotatably supporting and mounting each roller 64, 84, 96, 97, 118, 119 is a screw 180 which defines a respective axle and rotational axis. More specifically, each screw 180 includes a head 182, a shaft 184, a transition region 186 and a threaded region 188. Interposed between head 182 and inner radial portion 156, within outer axial recess 168, is a first washer 191, preferably made of TEFLON. In a similar manner, a second TEFLON washer 192 is provided about shaft 184 within inner axial recess 167. Importantly, lubricant (not shown) is provided in through hole 158 about shaft 184 and washers 191 and 192 effectively hold in this lubricant. In addition, an inner axial washer 196 is preferably press-fit onto transition region 186 to finish each roller so as to minimize slop and hold the parts together prior to mounting. Once mounted, this construction will assure that head 182 stays within the confines of outer axial extension 164, while washer 196 will be substantially flush with inner axial extension 163.
Based on the above, it should be readily apparent that the slide assembly of the invention controls both the permissible vertical and horizontal, i.e., lateral, movement of the drawer within the compartment, while also establishing a high quality and functioning glide system. It has been found that the forward mounting of the central roller arrangement actually simplifies the overall insertion of the drawer into the food compartment after removal for cleaning or the like. Although described with respect to preferred embodiments of the invention, it should be readily apparent that various changes and/or modifications can be made to the invention without departing from the spirit thereof. For instance, the invention has been disclosed for use with the lowermost crisper drawer in the refrigerator, thereby enabling the use of the compartment base for mounting purposes. However, the invention could also be applied to drawers which are arranged vertically above the compartment base by establishing a base or platform directly below the drawer. In addition, it should be recognized that the central roller and guideway configuration could be reversed such that the guideway is established on the base and the central rollers are carried by the drawer. In any event, the invention is only intended to be limited by the scope of the following claims.
Number | Name | Date | Kind |
---|---|---|---|
608130 | Kandle | Jul 1898 | A |
2255290 | Kennedy | Sep 1941 | A |
2889907 | Sullivan | Jun 1959 | A |
3301610 | Packett | Jan 1967 | A |
4095853 | MacDonald | Jun 1978 | A |
4317607 | Gomolka | Mar 1982 | A |
4834557 | Dreinhoff | May 1989 | A |
4979262 | Lautenschlager | Dec 1990 | A |
5090820 | Lautenschlager | Feb 1992 | A |
5882100 | Rock | Mar 1999 | A |
5918959 | Lee | Jul 1999 | A |
20050156494 | Bergmann et al. | Jul 2005 | A1 |
20110241515 | Park et al. | Oct 2011 | A1 |
Number | Date | Country |
---|---|---|
2881472 | Mar 2007 | CN |
3419988 | Apr 2003 | JP |
2008121976 | May 2008 | JP |
2003021799 | Mar 2003 | KR |
2003023801 | Mar 2003 | KR |
2003-0039024 | May 2003 | KR |
1020040064564 | Jul 2004 | KR |
2009106233 | Oct 2009 | KR |
2010018234 | Feb 2010 | KR |
1020100023474 | Mar 2010 | KR |
101028583 | Sep 2010 | KR |
100998369 | Nov 2010 | KR |
101013683 | Jan 2011 | KR |
Number | Date | Country | |
---|---|---|---|
20140265801 A1 | Sep 2014 | US |