1. Field of the Invention
The present invention generally relates to pull-out cabinet slides, pantries and drawers that have face plates or fronts attached to match or otherwise complement the visual appearance of an adjacent cabinetry. The present invention particularly relates to a mounting system that facilitates the alignment of a face plate or drawer front.
2. Description of the Prior Art
Typically, when a drawer is installed into a cabinet, the face panel of the drawer may or may not be aligned with the adjacent cabinet in any or all of three dimensions. For both aesthetic and functional reasons, it is desirable that the face of the drawer be in alignment with the faces of any other drawers or cabinet doors that are also installed into the cabinet or adjacent cabinets. The drawer face panel is typically mounted onto the drawer itself, which is mounted onto a drawer slide, or it may be mounted directly to the drawer slide. In either case, the drawer slide is mounted into the cabinet.
One concern for alignment is the tilt of the drawer face panel in the roll direction with respect to adjacent drawer face panels. Tilt in the roll direction of a drawer face panel can result when the bottom of the face panel of a closed drawer may be in contact with the enclosure, but the top is not, yielding a gap between the top of the face and the cabinet. This not only promotes the likelihood of dust and debris entering the drawer through the gap, but also yields a displeasing appearance especially when the adjacent drawer face panels have differing degrees of tilt. Similarly, another concern for alignment is where the drawer face is skewed, i.e., where the left side of the drawer face panel touches against the enclosure when the drawer is closed, but the right side does not so touch. Again, a displeasing appearance is likely when the adjacent drawer face panels have differing degrees of skewing, and the likelihood of dust and debris entering the drawer through the gap is promoted. Other concerns for alignment which can lead to displeasing appearances are when the drawer face panel is not aligned properly in the height, lateral, or pitch directions with respect to adjacent drawer face panels.
In order to yield favorable alignment of the drawer face panel in the past, manufacturers have generally relied on tight tolerancing of the cabinet, the drawer, the drawer slide, and all the associated attachment hardware. These schemes, however, tend to be expensive due to the number of components involved and the tightness of the tolerances required to yield that favorable alignment. Furthermore, these schemes are not required for all cabinet industries. For example, in the low cost cabinet industry, tolerances are not expected to be held sufficiently tight, yet poor drawer face alignment is in fact more common. Presently, various schemes for adjustment of the drawer face position are available. These schemes provide an assortment of components or features, which allow for adjustment of the front panel without requiring expensively tight tolerances. However, most of these schemes are accomplished using the time consuming trial and error method, i.e., an adjustment is made, followed by closing the drawer and checking its position, followed by another adjustment, with this process being repeated until a suitable adjustment has been obtained. Thus, there remains a need for adjustment and alignment of the drawer face panel with an adjacent drawer face panel that can be performed easily, less expensively, and in less time. There also remains a need to adjust easily the drawer face panel in an inward and an outward direction, or a rearward and frontward direction, to compensate for differing degrees of tilt and skew of the drawer face panel with adjacent drawer face panels.
The present invention relates generally to drawers used in cabinets or other enclosures, and more specifically to a means for adjustably mounting the face plate of a drawer so that when the drawer is closed, the drawer face plate is in flush contact with an adjacent drawer face plate and in desired height, pitch, roll, lateral and skew positions with respect to the front surface of the enclosure.
In one embodiment of the present invention, a face plate alignment mounting system for adjusting a face plate of a drawer is provided. The drawer generally has a drawer body including a front panel that has a front surface and a rear surface. The face plate alignment mounting can include a lateral adjustment means engaging the face plate and the drawer front panel. The face plate alignment mounting can also include a first nut fastener and an adjustable fastener. The first nut fastener preferably includes a head portion affixing the first nut fastener to the drawer body and a shaft slidably engaging a first bore of the drawer body. The first nut fastener shaft defines an opening with internal threads. The adjustable fastener can have external threads threadably engaging the internal threads of the shaft opening of the first nut fastener. The adjustable fastener includes a first means for adjusting the adjustable fastener in a frontward direction and a rearward direction to suitably adjust the distance between the face plate and the drawer front panel. The first means is preferably accessible at the rear surface of the drawer front panel.
In another embodiment of the present invention, a face plate alignment mounting system for permitting adjustment of the face plate relative to a perimeter of an enclosure and to adjacent enclosures is provided. The enclosure generally includes an opening defined by the perimeter. The drawer face plate has an outer portion dimensioned to overlap the perimeter. The drawer generally has a drawer body including a front panel that has a front surface and a rear surface, a rear panel, and outer lateral extremities connecting the front and rear panels. A drawer slide assembly having a fixed portion and a movable portion can also be provided. The face plate alignment mounting system can be positioned at each corner of the drawer front panel and can include a lateral adjustment means engaging the face plate and the drawer front panel. The face plate alignment mounting system can also include a T-nut fastener and an adjustable fastener. The T-nut fastener can include a head portion with self-piercing prongs for affixing the T-nut fastener to the drawer body and a shaft slidably engaging the first bore of the drawer body, with the shaft extending from the head portion. The T-nut fastener shaft can define an opening with internal threads. The adjustable fastener can have external threads threadably engaging the internal threads of the shaft opening of the T-nut fastener. The adjustable fastener includes a first means for adjusting the adjustable fastener in a frontward direction and a rearward direction to suitably adjust the distance between the face plate and the drawer front panel, with the first means being accessible at the rear surface of the drawer front panel.
The face plate alignment mounting system of another embodiment of the present invention can further include a threaded fastener that includes a shaft having a first portion with external threads engaging the drawer body through a second bore of the drawer body. The second bore is preferably perpendicular to the drawer front panel. The threaded fastener shaft can also include a second portion extending from the first portion and outward passed the drawer front panel, with the second portion engaging the lateral adjustment means. A head portion can also be provided with the threaded fastener, which can extend from the threaded fastener shaft. The face plate alignment mounting system can also include a second nut fastener that has internal threads for threadably engaging the external threads of the threaded fastener shaft at the rear surface of the drawer front panel. When the second nut fastener is threadably engaged sufficiently tight with the external threads of the threaded fastener shaft, the drawer face plate can be prevented from adjusting in a lateral direction. The face plate alignment mounting system can also include a washer for receiving the threaded fastener shaft and contacting the second nut fastener and the drawer front panel at the rear surface of the drawer front panel. The lateral adjustment means preferably includes a support bracket. The support bracket can include a slot and two parallel edges curved substantially perpendicular. The curved edges can slidably engage with two laterally running, parallel grooves in the drawer front panel for adjusting the face plate in a lateral direction.
A process for adjusting a drawer face plate relative to a drawer and adjacent drawers to insure correct distance between the face plate and a drawer front panel is also provided. The process can includes the steps of providing a drawer having a face plate and a front panel having a front surface and a rear surface, and a face plate alignment mounting system of the aforementioned embodiments of the present invention. The first nut fastener shaft can be inserted and slidably engaged with the first bore of the drawer body. The first nut fastener head can be affixed to the drawer body. Another step can include threadably engaging the adjustable fastener external threads with the internal threads of the opening of the first nut fastener shaft. The adjustable fastener can be movably adjusted fully in the rearward direction until the lateral adjustment means is attached. Another step can include engaging the lateral adjustment means to the drawer front panel, and engaging the drawer face plate to the lateral adjustment means. The adjustable fastener can be movably adjusted in the frontward direction with a tool at the rear surface of the drawer front panel to a desired distance between the drawer face plate and the drawer front panel.
One feature of the present is that the adjustment and alignment of the drawer face panel relative to an adjacent drawer face panel can be performed easily, less expensively, and in less time. The drawer face panel can be easily adjusted in an inward and an outward direction, or a rearward and frontward direction, to compensate for differing degrees of tilt and skew of the drawer face panel with adjacent drawer face panels.
Other features and advantages of the present invention will become apparent to those skilled in the art from the following disclosure of preferred embodiments of the present invention exemplifying the best mode of practicing the invention. The following disclosure references the accompanying drawings illustrating the preferred embodiments.
Referring to
The drawer face plate 12 is secured to the drawer front panel 34 by use of a lateral adjustment means 50 for adjusting the drawer face plate 12 in a lateral direction. The lateral adjustment means 50 preferably includes a support bracket 52 comprising a slot 54 to engage a fastener, an aperture 56, and at least one of two parallel edges 57, 58 curved substantially perpendicular to the drawer front panel 34. The aperture 56 can be used to connect the support bracket 52 to the drawer face plate 12. Typically, pre-drilled holes are provided in a rear side 13 of the drawer face plate 12 to be aligned with the support bracket aperture 56. When mounting the drawer face plate 12 to the support bracket 52, a fastener, typically a wood screw, is threadably engaged with the support bracket 52 and the drawer face plate 12 through the aperture 56.
At least one of the curved edges 57, 58 can provide a support means for inserting into and slidably engaging at least one of two parallel grooves 60, 62, 64 in the drawer front panel 34, as shown in
Referring to
Referring to
Generally referring to
Referring to
Attachment of the drawer face plate 12 and the face plate alignment mounting system 10 is further explained, with general reference to all of the figures. In conventional installations, the face plate alignment mounting system 10 can be attached to each corner of the drawer front panel 34. The grooves 60, 62, 64, the bores 61, 63, and the indentation 65 can be typically machined or cut into the drawer body 32 before installation. The face plate alignment mounting system 10 can be installed by affixing the first nut fastener 70 to the drawer body 32 through the first bore 61 of the drawer body 32. When a T-nut fastener 71 is used, the T-nut fastener 71 can be affixed to the drawer body 32 by applying force to the T-nut fastener head portion 72 with a hammer or the like, thereby causing the self-piercing prongs 73 to penetrate the area surrounding the first bore 61. The external threads 81 of the adjustable fastener 80 can be threadably engaged with the internal threads 76 of the shaft opening 75 of the first nut fastener 70 by rotating the adjustable fastener 80 with an appropriate tool. The adjustable fastener 80 should be recessed within the first nut fastener 70 until the drawer face plate 12 is attached. At least one of the curved edges 57, 58 of the support bracket 52 can then be engaged with the appropriate grooves 60, 62, 64, and the slot 54 of the support bracket 52 can be aligned with at least the second bore 63 of the drawer body 32. Once aligned, the threaded fastener 90 can be inserted through the support bracket slot 54 and through the second bore 63, and threadably engaged with the second nut fastener 92 at the rear side 36 of the drawer front panel 34. The second nut fastener 92 should not fully tightened until the drawer face plate 12 is completely adjusted. After all of the necessary support brackets 52 are attached, the drawer face plate 12 can then be attached. As mentioned previously, pre-drilled holes can be typically provided at the rear side 13 of the drawer face plate 12. The drawer face plate 12 holes can be aligned with the support bracket aperture 56 where a fastener can be attached to affix the drawer face plate 12 to the support bracket 52.
From the foregoing, it can be seen that the invention allows a simple and expedient means of positioning the drawer face plate 12 relative to the enclosure 20. Unlike other means of positioning such panels, it will be appreciated by those skilled in the art that there is no need for trial and error adjustment, i.e., no need to make an initial assessment of the drawer face plate 12 position, make an adjustment, check for desired position with the door closed, readjust, recheck, and readjust. The invention allows for a single act of positioning of the drawer face plate 12, saving installation time and effort, which reduces labor cost and enhances customer satisfaction. In addition, it is important to note that the invention allows for adjustment in all directions. These advantages of the invention are the result of the threaded fastener 90, the support brackets 52 and grooves 60, 62, 64 which allow for lateral, height, and pitch, and the result of the adjustable fastener 80, which allows for roll and skew adjustment of the drawer face plate 12.
Here, the term, height, refers to adjustment in the vertical direction, i.e., up and down; the term, pitch, refers to the adjustment required to prevent the drawer face plate 12 from leaning to the left or to the right, i.e., as if pivoting the drawer face plate 12 about a line perpendicular to and passing through a center of the drawer face plate 12; and the term, roll, pertains to the adjustment necessary to render the drawer face plate 12 in contact with enclosure 20 at both upper and lower extremities of the drawer face plate 12, i.e., as if pivoting the drawer face plate 12 about a horizontal line which passes through the center of that drawer face plate 12. The term, lateral, refers to adjustment of the drawer face plate 12 in a horizontal direction, i.e., to the left and to the right, while the term, skew, pertains to the adjustment required to render the drawer face plate 12 in contact with the enclosure 20 at both left and right extremities of the drawer face plate 12, i.e., as if pivoting the drawer face plate 12 about a vertical line that passes through the center of that drawer face plate 12.
Roll and skew adjustment of the drawer face plate 12 can be accomplished by adjustment of the appropriate adjustable fasteners 80 preferably positioned at each corner of the drawer front panel 34. For example, if one corner of the drawer face plate 12 is not flush with the adjacent corner of the adjacent drawer face plate in the frontward direction 82, the adjustable fastener 80 can be rotatably moved to a desired position by an appropriate tool to make the corners flush. Accordingly, the left and right side and the upper and bottom side of the drawer face plate 12 can be moved in the frontward direction 82 and rearward direction 83 by the adjustable fastener 80.
Height, pitch, and lateral position adjustment of the drawer face plate 12 can be accomplished by adjustment of the appropriate threaded fasteners/second nut fasteners 90, 92 and the support brackets 52 working in conjunction. For example, if the drawer face plate 12 is positioned off-center to the left relative to the adjacent drawer face plate, the threaded fastener 90 can be tightened to only finger tight, and the entire drawer face plate 12 can be moved laterally to compensate for the off-centeredness. Similarly, the adjustment of the height and pitch of the drawer face plate 12 can be adjusted. After adjustment of the drawer face plate 12 to a desired orientation, the second nut fastener 92 can be tightened around the threaded fastener 90.
From the forgoing description of the structure and operation of a preferred embodiment of the present invention, it will be apparent to those skilled in the art that the present invention is susceptible to numerous modifications and embodiments within the ability of those skilled in the art and without exercise of the inventive facility. Accordingly, the scope of the present invention is defined as set forth of the following claims.
Number | Name | Date | Kind |
---|---|---|---|
2316389 | Atkinson | Apr 1943 | A |
3272583 | Averdieck | Sep 1966 | A |
3273952 | Himelreich et al. | Sep 1966 | A |
3666341 | Little | May 1972 | A |
3675883 | Holmes et al. | Jul 1972 | A |
4180298 | Borgerson, Jr. | Dec 1979 | A |
4230382 | Wenzlick et al. | Oct 1980 | A |
4690469 | Grass | Sep 1987 | A |
4902080 | Berger | Feb 1990 | A |
4995683 | Albiez | Feb 1991 | A |
5046861 | Tarver | Sep 1991 | A |
5069411 | Murphy | Dec 1991 | A |
5076723 | Berger | Dec 1991 | A |
5163774 | Lautenschlager | Nov 1992 | A |
5364181 | Scheible | Nov 1994 | A |
5375923 | Hall et al. | Dec 1994 | A |
5505554 | Lautenschlager Horst et al. | Apr 1996 | A |
5536078 | Novikoff | Jul 1996 | A |
5549378 | Grabher | Aug 1996 | A |
5823700 | Poworoznek | Oct 1998 | A |
5895103 | Huber | Apr 1999 | A |
5951133 | Dittberner et al. | Sep 1999 | A |
6390576 | Walburn | May 2002 | B1 |
6431668 | Reddicliffe | Aug 2002 | B1 |
6561605 | Akers | May 2003 | B1 |
6616479 | Jones | Sep 2003 | B1 |
6715953 | Oetlinger et al. | Apr 2004 | B2 |
6854817 | Simon | Feb 2005 | B1 |
6893199 | Michels | May 2005 | B2 |
6948788 | Tai | Sep 2005 | B1 |
7172258 | Bisson et al. | Feb 2007 | B2 |
7207637 | Huang | Apr 2007 | B2 |
7281338 | Ziegmann et al. | Oct 2007 | B2 |
7344346 | Hsu | Mar 2008 | B2 |
7419343 | Nagayama | Sep 2008 | B2 |
D596424 | Noe et al. | Jul 2009 | S |
7625051 | Kim | Dec 2009 | B1 |
20020074914 | Shih | Jun 2002 | A1 |
20040207302 | Kao | Oct 2004 | A1 |
20060091768 | Walburn | May 2006 | A1 |
20100098513 | Wang | Apr 2010 | A1 |
Number | Date | Country | |
---|---|---|---|
20090278431 A1 | Nov 2009 | US |