Description of the Drawings
FIG. 1 is a elevational perspective view of the corner construction of the present invention.
FIG. 2 is an enlarged plan view of the corner construction of the present invention.
FIG. 3 is an exploded perspective view of the parts making up the corner construction of the present invention.
FIGS. 4-6 are views similar to FIG. 2 but with exaggerated spacings between the side panels and the different shaped extrusions in each of the views.
Description of the Preferred Embodiment
Referring now to the drawing there is shown the construction of the corner extrusion and side panel facing ends formed in accordance with one embodiment of the present invention and providing a ninety degree corner construction which can be the vertical, the horizontal or other situated corner of a cabinet, rack, display case, display stand, fixture or the like.
The corner construction is made up of three principal elements, a metal corner extrusion 20, such as of aluminum, mating with and joining the ends of a pair of corner meeting side panels 30 and 40. The side panels 30 and 40 can be of any appropriate material such as wood, wood composition, or a combination of elements such as a pressed particle board faced with a hard exterior surface such as laminated plastic sheets 31 and 41. The sheets may be colored or textured as desired to provide a pleasing appearance.
The elongate corner extrusion 20 which has been cut to length to match the width of the side panels 30 and 40 has a plurality of surfaces which are described with reference to the cross-section of the extrusion 20 in the drawing. The extrusion is provided with an elongate rib section 22 which is connected at one end to squaded off corners or a square external corner section 24 having a pair of exposed faces 24b and 24c remote from the rib section 22 and a pair of side faces 24a and 24d adjacent the rib section 22 and mating with the side panels as described in greater detail below. The square section 22 is formed with a diagonal of the square aligned with the length of the rib section 22 so that the side faces 24a and 24d intersect the rib section 22 at an angle of substantially 135 degrees.
Mutually perpendicular external leg or fin sections 26 and 27 are positioned at the opposite end of the rib section 22 from the corner section 24 with the angle between the leg sections 26 and 27 bisected by the length of the rib section 22. The term "external" is used to mean a section that is not bounded on both sides by the side panel in the completed corner joint.
Mutually perpendicular internal leg or fin sections 28 and 29 are located on opposite sides of the rib section 22 substantially midway between the remote corner of the square corner section 24 and the external leg sections 26 and 27. The dimensions of the leg sections 26-29 are selected such that the normal projection of each internal leg section 28 and 29 on the respective adjacent leg section 26 and 27 ends substantially halfway along the length of the external leg section. The portion of the external leg sections 26 and 27 beyond the normal projection of the internal leg sections 28 and 29 are provided with apertures 50 for receiving fastening means, such as screws 52, passing therethrough into the side panel.
The facing ends of the side panels 30 and 40 are cut to mate with the extrusion 20 to form the corner joint with the extrusion square section 24 located at the diagonally outward external end of the joint and the external leg sections 26 amd 27 at the diagonally inward end of the joint. The ends of the side panels 30 and 40 which face the joint are cut at substantially 45 degrees to produce diagonal surfaces 32 and 42, respectively, for mating with the surfaces of the rib section 22 and leaving a squared off surface portion 34 and 44 for mating with the side faces 24a and 24d, respectively, of the corner section 24. With the width of the squared off portions 34 and 44 matching the width of side faces 24a and 24d the external surface of the side panels 30 and 40 will be flush with the exposed faces 24b and 24c respectively, of the corner section. Elongate slots 38 and 49 are cut in the side panels 30 and 40, respectively, parallel with the broad surfaces of the side panels for receiving the extrusion internal leg sections 28 and 29 respectively.
In the preferred embodiment of the present invention the inside surfaces of the side panels 30 and 40 are provided with recesses 36 and 47, respectively, adjacent the diagonal surfaces 32 and 42, respectively, for receiving the external leg sections 26 and 27, respectively. The depth of the recesses 36 and 47 is selected such that the external leg sections 26 and 27 and the attaching means, such as screws 52 when in place in the completed corner construction, are located within the confines of the broad side panel surfaces. With this construction the corner of any shelf that is placed inside the cabinet and reaching the corner joint 10 need not be notched to avoid the structure which joins the corner together.
The slots 38 and 49 are located substantially halfway between the broad outside and inside surfaces of the panels 30 and 40.
For the mass production of cabinets and specifically cabinet corners in accordance with the present invention, a cutting head can be provided to simultaneously make the diagonal, slotting and recess cuts to form the diagonal surfaces 32 and 42, the slots 38 and 49 and the recesses 36 and 47 at the end of each side panel. So that the cutter portion of the cutter head for making the slots 38 and 49 will last as long as the other cutters on the cutting head, the slots are made wider with the end result that the internal leg sections 28 and 29 are thicker, typically half again as thick, as the rib section 22 and external leg sections 26 and 27.
The dimensions of the corner section are selected to provide enough solid metal to avoid bending or defamation by impact with objects. The dimensions of the corner section 24 are also selected such that the inside faces 24a and 24d which may mate exactly with the squared off ends 34 and 44, respectively, of the side panels 30 and 40, do not leave a pointed structure on the end of the side panels 30 and 40 which could be damaged in the handling of the side panels before assembly of the corners.
FIGS. 4-7 illustrate other extrusion embodiments of the present invention. In these figures spacing is added between the extrusion and panel cross-sections to facilitate an appreciation of the different extrusion shapes that can be used with a common side pannel construction to form cabinets of different shapes.
In FIG. 4 the extrusion 120 includes a pair of parallel, spaced apart rib sections 122a and 122b and with the exposed faces 124b and 124c of the squared off corners connected by a continuous, arcuate, external surface section 124e which provides a rounded, structually strong external corner. The external leg or fin sections 126 and 127 continue beyond the rib sections 122a and 122b, respectively, at 126a and 127a and meet at a right angle.
In FIGS. 5 and 6 the extrusions 220 and 320, respectively, provide corners of 225 degrees and 135 degrees, respectively, measured between the external faces of the panels being joined. The extrusion embodiments in each of the figures includes a pair of rib sections 222a and 222b and 322a and 322b, respectively, and wherein the rib sections are joined at their ends adjacent the squared fof corners. The other ends of the rib sections are spaced apart to form an angled corner of the desired angle.
It will be seen that the cut and shape of the facing ends of the side panels in each of the embodiments in FIGS. 2, 4, 5 and 6 are identical. Thus, cabinets of different shapes can be formed from identical panels using the different extrusions.
FIG. 7 illustrates an extrusion 420 similar to the one in FIG. 2 but for connecting the bottom edge of a panel 430 to a support plateform 441. The extrusion 420 includes enternal and internal leg sections 426 and 428 on one side of a rib section 422 and corner section 424 at the end on the other side of the rib section 422 a leg section 427 is provided perpendicular to leg section 426 and for resting on the platform 441. An extension 426a is provided in line with the leg 426 and perpendicular to the leg seation 427, and a bottom section 429 is provided perpendicular to the extension 426a and joining the corner section 424 at surface 424c.
The terms and expressions which have been employed here are used as terms of description and not of limitations, and there is no intention, in the use of such terms and expressions, of excluding equivalents of the features shown and described, or portions thereof, it being recognized that various modifications are possible within the scope of the invention claimed.